Generated by All in One SEO v4.9.10, this is an llms.txt file, used by LLMs to index the site. # JMAG ## Sitemaps - [XML Sitemap](https://www.jmag-international.com/sitemap.xml): Contains all public & indexable URLs for this website. ## Pages - [JMAG : Simulation Technology for Electromechanical Design](https://www.jmag-international.com/) - JMAG - [Events ⁄ Seminars](https://www.jmag-international.com/event/) - Events 2026 Archive 9-11 Sep Japan Industrial Furnace Manufacturers Association (JIFMA) Thermotec 2026 (Tokyo, Japan) 6-11 Sep Applied Superconductivity Conference ASC 2026 (Pittsburgh, USA) 6-9 Sep ICEM ICEM 2026 (International Conference on Electrical Machines) (Funchal, Portugal) 5 Aug POWERSYS / JSOL Corp. JMAG Users Conference 2026 in India (Bangalore, India) 15-17 Jul Japan Management Association - [JMAG Document Update Information](https://www.jmag-international.com/doc_news/) - 2026 2025 July 2026 [S0044] - [S0047] JMAG Script Library New Jun 2026 [JAC293] Axial Gap Motor Geometry Optimization Using Surrogate Models Upd [JAC297] Geometry Optimization of a Wound-field Synchronous Motor Including Efficiency Map, Part Temperature, Stress, and Electric Breakdown Evaluations Upd [JAC308] Thermal Analysis of a Three-phase Induction Motor Accounting for Ventilation Cooling Upd - [JMAG Mail News](https://www.jmag-international.com/jmag_mail_news/) - This is the back number of the mail delivered in the past. We will send event information and homepage update information irregularly. If you would like to receive an e-mail, please register for "JMAG WEB MEMBER" from here. After registering to view JMAG technical materials, various technical materials can be viewed. In addition, JMAG-Express Online, - [Update History](https://www.jmag-international.com/whatsnew/) - Recent News 2026 2025 2024 2023 2022 2021 2020 26 May “On-demand Webinar: Brush up on Motor Design!” Vol.073 has been released. 18 May Laboratory interview A case study of Electromagnetic Energy Conversion Device Laboratory, Department of Electrical, Electronics and Computer Engineering, Toyo University (Hane Research Laboratory) was added. 11 May [No. 93] Equivalent circuits - [[Free Software] JMAG-RT Viewer](https://www.jmag-international.com/products/rt-viewer/) - The JMAG-RT Viewer is an application to increase the usability of motor models created using JMAG-RT. The motor models created using JMAG-RT (JMAG-RT models) can be used in control simulators such as Simulink to reproduce phenomena including the nonlinear characteristics and torque variations of motors. Speed versus torque curves and efficiency maps can be created - [Exhibitors](https://www.jmag-international.com/conference2025/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Application Catalog](https://www.jmag-international.com/catalog/) - The Application Catalog provides a variety of examples to allow customers to understand applicable applications and analysis functions in JMAG. Application notes and model data are provided for understanding the flow of analysis and various settings. Please use for checking settings and results. Applications Evaluation Items Modules Axial Gap Type Motor Basic Geometry Bearing Brush - [Solutions](https://www.jmag-international.com/solutions/) - JMAG provides solutions that are most suitable for each application and brings design and development to a higher level. JSOL is dedicated to keeping JMAG on the forefront of simulation technologies. This translates into a commitment to extend and improve JMAG's internal capabilities. At the same time, JSOL recognizes that it is important to develop - [Product Partners](https://www.jmag-international.com/aboutus/product-partners/) - | CAD etc. | CAE | Cloud | Measuring instrument |System level simulator | Real-time simulator | Material | CAD etc. Company Name Product Country Dassault Systemes CATIA France PTC Pro/ENGINEER USA SPATIAL Corp. ACIS, Interop, HOOPS USA CAE Company Name Product Country Ansys, Inc optiSLang USA Convergent Science CONVERGE USA ESTECO SpA modeFRONTIER Italy FEA-Opt Technology Co. Ltd. SmartDO Taiwan Fraunhofer SCAI MpCCI Germany Hexagon Manufacturing - [JMAG-RT Solution Operating Environment](https://www.jmag-international.com/rt_specification/) - Last Updated 2026-6-1 1. Control Simulator Modules for MATLAB Linkage ( i ) Coupling with JMAG-RT JMAG-RT Module MATLAB Module JMAG-Designer Ver.25.1 JMAG-Designer Ver.25.0 JMAG-Designer Ver.24.2 64bit MATLAB/Simulink R2025b, R2025a, R2024b ( ii ) Direct Coupling of JMAG and MATLAB JMAG Version MATLAB Module JMAG-Designer Ver.25.1 JMAG-Designer Ver.25.0 JMAG-Designer Ver.24.2 64bit MATLAB/Simulink R2025b, R2025a, R2024b, - [System requirements](https://www.jmag-international.com/products/specification/) - Last Updated 2026-6-1 System requirements | Versions for Linking JMAG to Third-party Software | SMP and MPP Solver | GPU Support | Supported Job schedulers | Supported Cloud Systems | Using JMAG on Virtual Machines - [Press Release](https://www.jmag-international.com/press/) - | Press Release | News | Press Release 2023 Dec 6, 2023 Hexagon AB: Hexagon and JSOL Corporation enter strategic partnership to accelerate EV powertrain design with virtual prototyping 2022 May 17, 2022 Noesis Optimus: Optimus 2022.1 release supports the latest version of JMAG (21.0) and it introduces the support of the JMAG Efficiency Map studies. February 14, 2022 - [JMAG Users Conference 2025](https://www.jmag-international.com/conference2025/) - JMAG Users ConferenceJapan 2025 December 3 - 4 | Hamamatsucho Convention Hall (Tokyo, Japan) Greeting Presenter Organizer Exhibitors Greeting Hello, this is the Users Conference secretariat. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content will be provided to satisfy - [JMAG-RT Model Library](https://www.jmag-international.com/modellibrary/) - A 1D model that has extracted the characteristics from an FEA model. A highly accurate model that has detailed Characteristic information. Fast-operating, like a traditional 1D model. Free to use (No license necessary, free of charge). - [Poster Session](https://www.jmag-international.com/conference2025/poster/) - Poster Session A poster area is provided where you can freely contemplate the technology topics. This is recommended to better understand the ideas behind analysis and to learn about the development policies of JMAG. Please feel free to use it as a social place to have technical discussions and exchange information. Exhibition time Dec. 3 14:30-16:00 - [Terms and Conditions](https://www.jmag-international.com/terms_and_conditions/) - JMAG Terms and Conditions Current Version (2025-01-01) Terms and Conditions (PDF: 339 KB, Upd 2025-05-07) Archived Versions Terms and Conditions Web Version xx-xx-20xx (PDF) Free Trial Software License Agreement (HTML) JAMG-RT Viewer Software License Agreement (HTML) JMAG-Express Online Software License Agreement (HTML) JMAG-RT Model Library JMAG-RT Model Library Terms of Use (HTML) JMAG Script Library - [Program](https://www.jmag-international.com/conference2025/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference. We appreciate your cooperation so that we can continue to exchange useful information. : Presentations with this mark - [Academic Poster Session](https://www.jmag-international.com/conference2025/academia/) - University students using JMAG in their research will present their achievements in posters. Come and see what they are working on and how JMAG is used in their research. Stop by to hear the presentations and hold discussion with the students. Order of application received Study on induction motor with concentrated winding Digital Manufacturing System, - [Products Catalog](https://www.jmag-international.com/products/catalog_download/) - *To view the PDF files, you need Adobe Reader installed. Adobe Reader download - [JMAG Users Conference Proceedings](https://www.jmag-international.com/documentation/) - The presentation documents published at the JMAG Users Conference can be browsed on pdf files listed below. You need to sign in as a Regular JMAG Software User (paid user) or JMAG WEB MEMBER (free membership). By registering as a JMAG WEB MEMBER, you can browse technical materials and other member-only contents for free. If - [User Support](https://www.jmag-international.com/supports/) - Our company provides not only the technical solutions through JMAG software but also the value and benefits that computer simulation can offer. The more you understand the simulation procedures the more successful the outcome is. To assist the users in efficiently achieving this goal, we provide extensive support services. Our highly-trained technical engineers will assist - [Function Tutorials](https://www.jmag-international.com/tutorial/) - Function Tutorial is a examples of JMAG individual functions. This examples provides instruction manuals (PDFs) and sample data for each function of JMAG. Please make use of the Function Tutorial to learn how to use a given function in detail. Analysis Conditions | Analysis Results | Analysis Templates | Circuits | Geometry | JMAG-RT | - [JMAG-Express](https://www.jmag-international.com/products/jmag-express/) - JMAG-Express quickly performs multifaceted evaluation to obtain machine design that meets performance requirements. Operations are easy with templates for motor geometry and evaluation results. The templates can be reused and you can run multipurpose optimization with the built-in engine. Design exploration covers magnetic, thermal, structural, and control design and tests a wide range at high speed from concept design to detailed design. - [Terms of Use](https://www.jmag-international.com/terms/) - To view this website easily, the following environments are recommended. In other than one of the following enviroments, restrictions may occur in some functions. In addition, please understand that normal operation / displaying may not be possible when accessing from devices other than PCs, such as smartphones or game machines. - [Account Services](https://www.jmag-international.com/account_service/) - Membership Types Regular JMAG Software User (paid user) Services are limited to license administrators and users who are to actually use those services who are within a company that possesses the right to conclude a license agreement with our company. Services may also be used by those who are currently within a free trial period. - [JMAG Distributors](https://www.jmag-international.com/aboutus/members/) - JMAG Group's mission is to provide valuable solutions for the technology. - [JMAG Users Conference 2022](https://www.jmag-international.com/conference2022/) - JMAG Users Conference 2022 December 7 - 8 Hamamatsucho Convention Hall (Tokyo, Japan) Greeting Hello, this is the Users Conference secretariat. We are pleased to announce the 29th JMAG Users Conference. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content - [JMAG-RT](https://www.jmag-international.com/products/jmag-rt/) - INDEX | JMAG-RT | Supported Devices | How to Obtain JMAG-RT Models | How to Check JMAG-RT Motor Models | JMAG-RT Supported System | JMAG-RT JMAG-RT enables model based development with high concurrency, allowing plant design and control design to be performed concurrently. JMAG-RT is a system which generates high-fidelity plant models (JMAG-RT models) in a system level simulation from FEA models. From system design, to - [JMAG Users Conference 2016](https://www.jmag-international.com/conference2016/) - Keynote Speech Wednesday, December 7 11:00 - 12:00 Retrospective of Electric Machines for EV and HEV Traction Applications at General Motors Dr. Sinisa Jurkovic, Engineering Manager, Global Propulsion System, GENERAL MOTORS COMPANY Special Speech Wednesday, December 7 12:00 - 12:50 Model-Based Design Meets FEA Simulation - Improving Motor Control Development using High Fidelity Motor Models - [Events](https://www.jmag-international.com/conference2010/event/) - Exhibition Special Session JMAG Seminars Simulation Park JMAG Orientation for Students Exhibition Daido Electronics Co., Ltd. Technical Strengths and Possibilities of Daido Electronics Daido Electronics will exhibit their strongest product line of bonded magnets and anisotropic ring magnets. The bonded magnets are an original product from Daido Electronics focusing on composites of SmFE (samarium, iron, nitrogen), neodymium, and other - [Exhibition](https://www.jmag-international.com/conference2011/event/) - Daido Electronics Co., Ltd. Website Close Hitachi Metals, Ltd. Website Close JFE Steel Corporation Electrical Steel Sheets of JFE Steel Co. Iron core materials for high frequency reactors and high speed motors Iron core materials for motors Website Close Shin-Etsu Chemical Co.,Ltd. Shin-etsu Rare Earth Magnets Rare earth magnets, which are indispensable for changes to - [Exhibition](https://www.jmag-international.com/conference2012/event/) - *The names of the products and services that are included are the trademarks or registered trademarks held by the copyright owners. JFE Steel Corporation JFE Super Core (for high-frequency application) JFE Super Core is manufactured using an innovative process that is completely different from that for conventional silicon steel sheets.These are the highest grade, non-oriented - [Exhibition](https://www.jmag-international.com/conference2013/event/) - * The product and service names contained herein are the trademarks or registered trademarks of their respective owners. DSP Technorogy Co.,Ltd. A controller that decreased torque ripple using a virtual motor Mounted with a virtual motor supporting JMAG-RT and with a controller capable of cutting torque ripple. By giving the virtual motor inside the controller - [JMAG Users Conference 2013](https://www.jmag-international.com/conference2013/) - Greeting Hello, everyone! My name's Tomomi Igarashi from the Users Conference secretariat. We will hold the JMAG Users Conference again this year; the 20th time we have done so. We at the JSOL Corporation would like to provide a plan for the Users Conference that gives our customers an opportunity to communicate with each other. - [Exhibition](https://www.jmag-international.com/conference2014/event/) - Premium Sponsor Exhibitors Updated November 27th order of application received SCSK Corporation HP Z820 Workstation We are happy to present HP Z820, a high-end workstation that realizes the ultimate in performance. HP Z820 is a machine that can equip a maximum of 24 cores and 512GB memory, and has realized excellent performance and silent operation - [JMAG Users Conference 2014](https://www.jmag-international.com/conference2014/) - Overview Organizer JSOL Corporation Dates December 3 and 4, 2014 Venue Tokyo Conference Center - Shinagawa AREA Shinagawa 1-9-36 Konan, Minato-ku, Tokyo TEL: 03-6717-7000 https://www.tokyo-cc.co.jp/eng/index.html Expected number of participants Approximately 400 Registration Fees JMAG Users: Free General Admission: ¥50,000 (without tax, lunch included) Students: Free (limited to programs for students) Premium Sponsor Exhibitors Updated November - [Exhibition](https://www.jmag-international.com/conference2015/event/) - Premium Sponsor Exhibitors Updated December 2nd order of application received. NEAT Co., LTD. Motor HILS RT-LAB with JMAG-RT RT-LAB is the real-time simulator, developped by OPAL-RT. We can use RT-LAB with JMAG-RT, to have more accurate results. Website Close Motion System Tech. Inc. SPEED Software, Motor-CAD Software, Prototype Development SPEED software introduction (motor / generator - [JMAG Users Conference 2015](https://www.jmag-international.com/conference2015/) - Keynote Speech This year, the key note presentations will be given by two presenters, who are two of the most renowned figures in their fields. Tuesday, December 8 11:00 - 12:00 Optimal Design Using Computational Electromagnetism Dr. Hajime Igarashi, Professor, Graduate School of Information Science and Technology, Hokkaido University Wednesday, December 9 10:00 - 11:00 - [Event](https://www.jmag-international.com/conference2017/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Exhibition](https://www.jmag-international.com/conference2016/event/) - Updated November 21th order of application received. Höganäs Japan K.K. Soft Magnetic Composites Somaloy® Electromagnetic applications have a long history but there is still room for new inventions and smart designs that can have impact on our daily lives. New generations must deal with increased energy efficiency demands and adapt to less material for the - [JMAG-Designer](https://www.jmag-international.com/products/jmag-designer/) - Solver Solver speed is directly related to model accuracy and reliability. Finite element analysis comes down to solving very large matrices. JSOL has developed advanced techniques to solve thesematrices faster and produce more consistent results. JMAG users have some of the most advanced solver algorithms at their fingertips, and can be certain that JSOL will - [Cookie Policy](https://www.jmag-international.com/cookie_policy/) - JSOL Corporation (“us”, “we”, or “our”) understand that your privacy is important to you and are committed to being transparent about the technologies it uses. This Cookie Policy (“Cookie Policy”) explains how and why cookies ( “Cookies”) may be stored on and accessed from your device when you use or visit any website or app that posts a link to this Policy (collectively, our “Sites”). Please read this Cookie Policy carefully before using our Site. This Cookie Policy should be read together with our Privacy Policy and our Terms of Use. - [Evaluation of parts temperature in drive cycle of a traction motor](https://www.jmag-international.com/products/jmag-rt/video4/) - JMAG can output loss maps with temperature dependence. By exporting a JMAG-RT model with temperature-dependent loss map information from the output loss map, system simulations can be performed that take magnet and coil temperatures into account. - [Motor Performance Evaluation Using JMAG-Express with User Geometry](https://www.jmag-international.com/products/jmag-express/video2/) - JMAG-Express allows users to design motors using not only pre-registered geometries, but also geometries created by the user using external CAD software. Once the geometry is registered, the user can follow the on-screen instructions to complete the settings and evaluate the performance in JMAG-Express. - [High-accuracy control simulation of motors using Simscape](https://www.jmag-international.com/products/jmag-rt/video2/) - Directly connect circuits using Simscape Electrical to JMAG-RT models. - [Control simulation of 6-phase induction motors using JMAG-RT](https://www.jmag-international.com/products/jmag-rt/video/) - Harmonic iron loss and AC loss can be considered for 6-phase induction motors in JMAG-RT. The number of poles can be switched within the circuit simulation. - [Control Circuit Simulations Using JMAG-RT](https://www.jmag-international.com/products/jmag-rt/video3/) - Control Circuit Simulations Using JMAG-RT Last modified at 19 Aug 2020 - [Multi-Disciplinary Evaluation of Synchronous Reluctance Motor with JMAG-Express](https://www.jmag-international.com/products/jmag-express/video7/) - Simply enter the specifications of a synchronous reluctance motor and run the program to visualize motor performance related to magnetic, structural, thermal, and electric fields. You can see efficiency maps, component temperature histories, locations and values of maximum stress, and electric breakdown. - [Linking JMAG-Express to External Circuit Simulators](https://www.jmag-international.com/products/jmag-express/video3/) - JMAG-Express, it is possible to export a file for external circuit linkage using the design. Control simulation can be performed by applying the exported file for external circuit linkage to an external circuit simulator. - [Electromagnetic Force Output for Vibration Evaluation From JMAG-Express](https://www.jmag-international.com/products/jmag-express/video4/) - JMAG-Express can output the electromagnetic force of the teeth from motor evaluation results. The output electromagnetic force of the teeth can be used in simulation tools from other companies to evaluate vibration. - [Details of Evaluation Obtained in JMAG-Express](https://www.jmag-international.com/products/jmag-express/video5/) - In JMAG-Express, it is possible to change the fidelity in the model while maintaining the values of the design parameter. Design from the first scenario evaluated can be carried over to other scenarios for evaluation. - [Simultaneous Evaluation of Multiple Maps with JMAG-Express](https://www.jmag-international.com/products/jmag-express/video6/) - JMAG-Express can additionally view various maps in addition to the efficiency map obtained from the evaluation run, allowing multiple maps to be viewed side by side. - [Multifaceted evaluation of motors using JMAG-Express](https://www.jmag-international.com/products/jmag-express/video/) - Visualize motor performance in terms of magnetic field, structure, and heat by simply entering motor specifications. You can check efficiency maps, component temperature histories, and locations and values of maximum stresses. - [Academic Partners](https://www.jmag-international.com/aboutus/academic-partners/) - | Research Partners | Car Racing Partners | Research Partners University Country Contribution / Interview Graz University of Technology Electric Drives and Machines Institute Austria Concordia University Canada McMaster University Canada Chongqing University China Guangxi University China Harbin University of Science and Technology China Hebei University of Technology China Hong Kong Polytechnic University China Huazhong University of Science and - [Implementing JMAG](https://www.jmag-international.com/case/) - Implementing JMAG - [Program](https://www.jmag-international.com/conference2019/program/) - Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is strictly forbidden. Anybody found using such devices will be subjected to steps such as having the offending data erased. We thank you for your understanding and cooperation. DAY1: Wednesday, December 4 DAY2: Thursday, - [List of Academic Papers Related to JMAG](https://www.jmag-international.com/paper_search/) - The list below lets everyone search for academic research papers related to JMAG presented by our academic partners at national and intentional conferences held throughout the world. This list also includes academic papers published by the JSOL Corporation. We hope this information will act as great resource when searching for academic papers. - [JMAG Users Conference 2017](https://www.jmag-international.com/conference2017/) - Keynote Speech / Special Speech Keynote Speech Nissan's EV Motor Development Strategy and History: Vison of Motor Development Strengthening with JMAG. Mr. Shunji Oki, Deputy General Manager, EV and HEV Component Engineering Dep. Motor Engineering Group, Nissan Motor Co., Ltd. This presentation will introduce Nissan's EV strategy with technology trends and market conditions. It will - [Program](https://www.jmag-international.com/conference2016/program/) - Day1: Wednesday, December 7 / Day2: Thursday, December 8 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. REV: Revised Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is - [Program](https://www.jmag-international.com/conference2015/program/) - Day1: Tuesday, December 8 / Day2: Wednesday, December 9 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. REV: Revised Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is - [Program](https://www.jmag-international.com/conference2014/program/) - Day1: Wednesday, December 3 / Day2: Thursday, December 4 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. REV: Revised Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is - [Program](https://www.jmag-international.com/conference2013/program/) - Day1: Wednesday, December 4 / Day2: Thursday, December 5 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. REV: Revised Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is - [New JMAG Ver. 23.0 Out Now](https://www.jmag-international.com/campaign_v23/) - JMAG commemorates 40 years since its initial release. We hope everyone will try JMAG 23.0 in celebration of this milestone. Key Points Enhanced PerformanceUsers can now analyze models and obtain results faster than ever before! JMAG has consistently enhanced performance in every new version. Many users who have adopt JMAG for its speed and accuracy continue - [Poster Session](https://www.jmag-international.com/conference2024/poster/) - Poster Session A poster area is provided where you can freely contemplate the technology topics. This is recommended to better understand the ideas behind analysis and to learn about the development policies of JMAG. Please feel free to use it as a social place to have technical discussions and exchange information. Exhibition time Dec. 4 14:30-16:10 - [Privacy Policy of JSOL Corporation](https://www.jmag-international.com/ourprivacyporicy/) - 1. Protection policy of personal information JSOL Corporation has been certified by JIPDEC to display the Privacy Mark. We guarantees that, in compliance with our "Personal Information Protection Policy", we will implement adequate privacy safeguard for the applicant's personal information, and rigorously manage it. For details, please refer to the following URL: https://www.jsol.co.jp/english/privacy/index.html 2.The purpose - [Module Features](https://www.jmag-international.com/products/module/) - Module Group Overview Output PSL Support Support for educational package Pre/Post Pre/Post A main program of JMAG. From creating geometry to result analysis, this module can run everything except for calculation. It includes convenient tools such as the Geometry Editor, automatic mesh generation, and analysis templates. In addition, it also features application functions such as - [Free Trial](https://www.jmag-international.com/evaluation/) - Sign up to evaluate JMAG for free Discover the Power of JMAG The free trial version of JMAG comes with unlimited access to the Evaluation Center where you can find valuable information to assist you in evaluating the features and functions of JMAG. The free trial version also gives you access to the JMAG Support - [Academic Poster Session](https://www.jmag-international.com/conference2024/academia/) - University students using JMAG in their research will present their achievements in posters. Come and see what they are working on and how JMAG is used in their research. Stop by to hear the presentations and hold discussion with the students. Order of application received A Study of large-scale electromagnetic field analysis of large-scale magnetic - [Program](https://www.jmag-international.com/conference2024/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference. We appreciate your cooperation so that we can continue to exchange useful information. : Presentations with this light - [JMAG Users Conference 2024](https://www.jmag-international.com/conference2024/) - JMAG Users Conference 2024 December 4 - 5Hamamatsucho Convention Hall (Tokyo, Japan) Greeting Hello, this is the Users Conference secretariat. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content will be provided to satisfy a range of skill levels including - [Exhibitors](https://www.jmag-international.com/conference2024/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Program](https://www.jmag-international.com/conference2023/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference. We appreciate your cooperation so that we can continue to exchange useful information. : Presentations with this light - [HPC Experience Workshop in JMAG Users Conference](https://www.jmag-international.com/conference2024/experience-workshop/) - The JMAG Users Conference will hold an HPC experience wrokshop using the JSOL in-house cluster. A machine environment will be prepared at the JMAG Users Conference where you can directly operate the machine. Please take this opportunity to experience the power of calculations with up to 576 cores? Event overview Date Both days of the - [Contact us](https://www.jmag-international.com/contact/) - Please feel free to contact us if you have any comments or questions. General inquiries We will quickly response to various questions on our products. Contact us JMAG-Express Online Contact Click here for inquiries and questions. Motor Design Tool : JMAG-Express Online Contact us JMAG Distributors For technical inquiries, please contact the distributor you purchased - [JMAG Users Conference 2023](https://www.jmag-international.com/conference2023/) - We are pleased to announce the 30th JMAG Users Conference. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content will be provided to satisfy a range of skill levels including JMAG wizards and beginners, as well as those who have not yet participated in the Users Conference. - [Learning How to Use JMAG](https://www.jmag-international.com/howtolearn/) - “Learning how to use JMAG” is an introductory guide that will take you through a step-by-step process on how to start and use JMAG for the first time. Follow the program to learn the operations, the concept of modeling and to deal with problems. A must-see for those who want to use JMAG! - [Software License Agreement](https://www.jmag-international.com/agreement/) - Software License Agreement This is an agreement between JSOL Corporation (hereinafter referred to as "JSOL") and the user whom is licensed to use the JMAG-Express Online software (hereinafter referred to as "this software") license (hereinafter referred to as "the user"). The user may use this software only if the user agrees to this license agreement. - [Software License Agreement](https://www.jmag-international.com/express/agreement/) - JMAG-Express Online This is an agreement between JSOL Corporation (hereinafter referred to as "JSOL") and the user whom is licensed to use the JMAG-Express Online software (hereinafter referred to as "this software") license (hereinafter referred to as "the user"). The user may use this software only if the user agrees to this license agreement. In - [Terms of Use for JMAG interface information](https://www.jmag-international.com/openinterface/subscription/) - Terms of Use for JMAG interface information JSOL Corporation (hereinafter referred to as the “JSOL”) shall stipulate the following terms and conditions of use (hereinafter referred to as the “Agreement”) with respect to the use of JMAG Interface Information provided by JSOL (hereinafter referred to as the “Information”). The party applying for the use of - [Workshops and Seminars](https://www.jmag-international.com/conference2013/workshop/) - We will hold seminars by JMAG technical partners. We will also describe coupling methods for JMAG and tools to help improve your work efficiency. Workshops are a place for exchanging technical information with open discussions between JMAG engineers and customers and among customers about items such as the direction being taken by analysis technologies or - [JMAG Users Conference 2012](https://www.jmag-international.com/conference2012/) - The JMAG Users Conference Organizer JSOL Corporation Dates December 12 and 13, 2012 Venue Tokyo Conference Center - Shinagawa AREA Shinagawa 1-9-36 Konan, Minato-ku, Tokyo TEL: 03-6717-7000 https://www.tokyo-cc.co.jp/eng/index.html Expected number of participants Approximately 400 Registration Fees JMAG Users: Free General Admission: ¥52,500 (with tax, includes lunch) Students: Free (limited to programs for students) Partner Seminar - [JMAG Users Conference 2011](https://www.jmag-international.com/conference2011/) - State of the Event Presentations Seminars Section meetings Section meetings Exhibitions Simulation park Partner Seminar Technical consultation Lunch JMAG Staff Introducing the JMAG Users Conference 2011 The time has come to announce this year's annual JMAG Users Conference. Each day of the program planned for this year is geared toward providing a venue where everyone - [Software License Agreement](https://www.jmag-international.com/products/rt-viewer/subscription/) - Drive Forward with MBD JMAG-RT Viewer This is an agreement between JSOL Corporation (hereinafter referred to as "JSOL") and the user whom is licensed to use the JMAG-RT Viewer software (hereinafter referred to as "this software") license (hereinafter referred to as "the user"). The user acknowledges that they are bound by the terms and conditions - [JMAG Users Conference 2019](https://www.jmag-international.com/conference2019/) - JMAG Users Conference 2019 December 4-5 | Hamamatsucho Convention Hall Information that is only at the conference JMAG Case StudyLecture Program JMAG partner exhibitors Motor Design Course "INDUCTANCE" by Prof. Miller Student Session Poster Session Keynote Speech How to reach the Hamamatsucho Convention Hall - 2-min. walk from Hamamatsucho Station (JR) - Directly connected to - [Program](https://www.jmag-international.com/conference2017/program/) - DAY1: Wednesday, December 6 / DAY2: Thursday, December 7 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is strictly forbidden. - [Program](https://www.jmag-international.com/conference2010/program/) - Day1: Thursday, December 9 / Day2: Friday, December 10 Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is strictly forbidden. Anybody found using such devices will be subjected to steps such as having the offending data erased. We thank you for - [Careers](https://www.jmag-international.com/career/) - JMAG is expanding and we are looking for talented individuals to join our Japan based team of software development and support engineers. JMAG is the leading electromagnetic simulation package developed in Japan. Since 1983 it has been used in industries and universities world-wide and is used by all of the top Japanese automotive companies for - [Motor Design Tool : JMAG-Express Online](https://www.jmag-international.com/express/) - JMAG-Express Online is a parameter-based motor design support tool. Please use it for concept-level electric motor design.On JMAG-Express Online, efficiency maps can be created instantly, and multiple maps can also be compared by using the parametric feature. - [Academic Poster Session](https://www.jmag-international.com/conference2023/academia/) - University students using JMAG in their research will present their achievements in posters. Come and see what they are working on and how JMAG is used in their research. Stop by to hear the presentations and hold discussion with the students. Order of application received Experimental verification of ultra-high-speed magnetic gear Nakamura Laboratory, Tohoku University - [Exhibitors](https://www.jmag-international.com/conference2023/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [GDPR Privacy Statement of JSOL Corporation](https://www.jmag-international.com/gdpr_privacy_statement/) - JSOL Corporation's Personal Information Protection Policy JSOL Corporation ("JSOL", "we", "us" or "our") recognizes the importance of personal information and ensures the protection and safeguarding of our customers' personal information as a fundamental principle of its business and its responsibility to society. Accordingly, JSOL has established the Personal Information Protection Policy ("Privacy Statement") described below - [Program](https://www.jmag-international.com/conference2018/program/) - DAY1: Wednesday, December 5 / DAY2: Thursday, December 6 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is strictly forbidden. - [Program](https://www.jmag-international.com/conference2022/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference. We appreciate your cooperation so that we can continue to exchange useful information. : Presentations with this mark - [Poster Session](https://www.jmag-international.com/conference2022/poster/) - A poster area is provided where you can freely contemplate the technology topics. This is recommended to better understand the ideas behind analysis and to learn about the development policies of JMAG. Please feel free to use it as a social place to have technical discussions and exchange information. 10203040All Rows Date Poster number Title - [Academic Poster Session](https://www.jmag-international.com/conference2022/academia/) - We inform you students of the university who use JMAG in their laboratory have a poster session. Would you look over their posters how is it utilized in each study in the laboratory of the university? Order of application received Study on Cross-Pole Type Flux Reversal Motor SCHOOL OF ENGIEERING, NAKAMURA LAB., TOHOKU UNIVERSITY Mr. - [Exhibitors](https://www.jmag-international.com/conference2022/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Exhibitors](https://www.jmag-international.com/conference2020/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Poster Session](https://www.jmag-international.com/conference2019/poster/) - A poster area is provided where you can freely contemplate the technology topics. This is recommended to better understand the ideas behind analysis and to learn about the development policies of JMAG. White papers and leaflets will be provided at each poster. Please feel free to use it as a social place to have technical - [Poster Session](https://www.jmag-international.com/conference2023/poster/) - A poster area is provided where you can freely contemplate the technology topics. This is recommended to better understand the ideas behind analysis and to learn about the development policies of JMAG. Please feel free to use it as a social place to have technical discussions and exchange information. Exhibition time Dec. 6 15:40-16:50 Dec. 7 08:30-10:30 - [Random Note](https://www.jmag-international.com/conference2023/diary/) - It would be great if there were many things that could be solved based on experience and past achievements, but there are many cases where this is not possible. On the contrary, I think they can become constraints and prevent breakthroughs. One of the great things about CAE is that you can forget those constraints - [Program](https://www.jmag-international.com/conference2021/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference Hybrid. We appreciate your cooperation so that we can continue to exchange useful information. December 1-10:On-demand December 8: - [Exhibitors](https://www.jmag-international.com/conference2021/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [Academic Poster Session](https://www.jmag-international.com/conference2021/academia/) - We inform you students of the university who use JMAG in their laboratory have a poster session. Would you look over their posters how is it utilized in each study in the laboratory of the university? 12/10 Switched Reluctance Motor with a Hex Connection Osaka University Investigation of accelerated analysis using NVIDIA GV100 GPU in - [JMAG Users Conference 2020](https://www.jmag-international.com/conference2020/) - JMAG Users Conference 2020 November 24 – December 11 | Online Hello, this is the Users Conference secretariat. We are pleased to announce the 27th JMAG Users Conference. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content will be provided - [Program](https://www.jmag-international.com/conference2020/program/) - We would like to protect the intellectual property of the speakers who have contributed to the presentations of the JMAG Users Conference. Therefore, the video recording, audio recording and screen capture are prohibited at JMAG Users Conference Online. We appreciate your cooperation so that we can continue to exchange useful information. All Sessionshttps://www202.jmag-international.com/conference2020/program/ JMAG Development - [Academic Poster Session](https://www.jmag-international.com/conference2020/academia/) - We inform you students of the university who use JMAG in their laboratory have a poster session. Would you look over their posters how is it utilized in each study in the laboratory of the university? In addition, we prepare for time to have presentation as a commentary for 15-20 minutes. Order of application received - [Solution Partners](https://www.jmag-international.com/aboutus/solution-partners/) - IAV Automotive Engineering / SEDRIVE AB / Siemens PLM Software / Motion System Tech Inc. - [Accept Application](https://www.jmag-international.com/accept-application/) - Thank you very much for your application. If you have any inquiry, please contact us by E-mail: info@jmag-international.com Personal information and complaints of your application are dealt at: Consultation Service for Personal Information, Yasuhiko Tanaka, Chief Operating Officer, JMAG Division, JSOL Corporation, KUDAN-KAIKAN TERRACE 11th Floor 1-6-5,Kudanminami,Chiyoda-ku,Tokyo 102-0074, Japan Phone: +81(0)3-6261-7361 E-mail:info@jmag-international.com Procedures of information - [Program](https://www.jmag-international.com/conference2012/program/) - Day1: Wednesday, December 12 / Day2: Thursday, December 13 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. Wednesday, December 12 9:00 Registration 9:30 Development planning of JMAG I Dr.Takashi Yamada, JSOL Corp. 10:40 Keynote Speech Loss analysis and shape optimization of rotating - [Program](https://www.jmag-international.com/conference2011/program/) - Day1: Wednesday, December 7 / Day2: Thursday, December 8 * The contents of the program are subject to change without notice. : Presentations with this mark offer simultaneous Japanese-English interpretation. Wednesday, December 7 8:50 Registration 9:20 Opening ceremony 9:25 Development planning of JMAG I Dr.Takashi Yamada, JSOL Corp. 10:10 Keynote Speech Let Us Promote Analysis - [Poster Session by the JMAG Engineers](https://www.jmag-international.com/conference2010/poster/) - Ⅰ: Day 1 11:40 - 13:10Ⅱ: Day 1 14:40 - 16:10Ⅲ: Day 2 11:30 - 13:00Ⅳ: Day 2 14:30 - 16:00 Poster Session ⅠThursday, December 09 11:40 - 13:10 A-1 Analysis Methods for SR Motors B-2 Future Concepts of Magnetic Field Analysis C-3 Efficiently Analysis for Richer Designs Parametric Analysis D-4 Introducing the Periodic Rotational - [Special Session](https://www.jmag-international.com/conference2009/sp_session/) - Discovery and Expansion of IPM Motors The JMAG Users Conference is expanding the theme of the Keynote Speaker to encompass the first day of the JMAG Users Conference this year. This special session is themed "Discovery and Expansion of IPM Motors; (sub-session: Innovation of Mature Devices)." Each of the speakers, whom all play a vital - [Program](https://www.jmag-international.com/conference2009/program/) - Thursday, December 10 / Friday, December 11 Visual or audio recording of the event using items like video or still cameras, mobile phones, audio recording equipment or the like is strictly forbidden. Anybody found using such devices will be subjected to steps such as having the offending data erased. We thank you for your understanding - [Poster Session by the JMAG Engineers](https://www.jmag-international.com/conference2009/poster/) - The poster session that has received high praise each year will once again be held at the JMAG Users Conference 2009. We look forward to a technological exchange related to the development concepts presented for JMAG this year. The next version of JMAG, version 11, is being developed focusing on the concept of a virtual - [Orientation for Students](https://www.jmag-international.com/conference2009/academia/) - The JMAG Users Conference is proud to hold an orientation for students. This orientation aims to provide each participant with an introduction to the magnetic field analysis technology that is used for a variety of applications to develop actual products as well as an opportunity to network with technology professionals. All students interested are welcome. - [JMAG Seminars](https://www.jmag-international.com/conference2009/jmag_seminar/) - Seminars are hosted by the JMAG engineers along with poster sessions that offer a unique and productive experience for all those that attend. Thursday, December 10 15:10-15:35 Parametric Analyses Using JMAG-Designer A parametric analysis function has been implemented in JMAG-Designer version 10.0. This seminar introduces the specific analysis steps required to perform a parametric analysis. - [Exhibition](https://www.jmag-international.com/conference2009/event/) - *The names of the products and services that are included are the trademarks or registered trademarks held by the copyright owners. - [Student Session](https://www.jmag-international.com/conference2019/academia/) - We are pleased to announce that student orientations will be held during the JMAG Users Conference. This orientation aims to provide each participant with an introduction to the magnetic field analysis technology that is used for a variety of applications to develop actual products, as well as an opportunity to network with technology professionals. All - [Exhibitors](https://www.jmag-international.com/conference2019/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [JMAG Users Conference 2018](https://www.jmag-international.com/conference2018/) - JMAG Users Conference 2018 December 5-6, 2018 Tokyo Conference Center - Shinagawa Introduction Hello, this is the Users Conference secretariat. We are pleased to announce the 25th JMAG Users Conference. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth of content will - [Event](https://www.jmag-international.com/conference2018/event/) - Helping you design and create machines is what drives us. Our mission is to continue advancing engineering software you need in order to make exceptional products. The main purpose of the Users Conference is to allow participants to exchange technology, and we would like it to be a place where everyone is brought closer together - [JMAG Users Conference 2010](https://www.jmag-international.com/conference2010/) - Introduction As the hot summer comes to a close, I am excited to announce the JMAG Users Conference 2010. Each day of the program planned for this year is geared toward providing a venue where everyone that attends is able to find new inspiration and technological exchange. I would like to take this opportunity to - [JMAG Open Interface programs](https://www.jmag-international.com/openinterface/) - In recent years, the sophistication of electrical equipment design is required. As known there is a limit to the design of magnetic circuits alone, therefore multifaceted evaluations such as structure, vibration, heat, and control are required at the same time. It is more efficient to perform coupled analysis by linking different software where they have - [JMAG Users Conference 2009](https://www.jmag-international.com/conference2009/) - All of our staff is pleased to announce it is once again time for the JMAG Users Conference. We have been developing a conference aimed at providing programs that offer an optimum venue for networking and new discovery for everyone who participates. We would like to provide you with the latest information about this year's - [JMAG Users Conference 2008](https://www.jmag-international.com/conference2008/) - Overview Organizer JRI Solutions Dates Wednesday, December 10 - Thursday, December 11, 2008 Venue Tokyo Conference Center - Shinagawa AREA Shinagawa 1-9-36 Konan, Minato-ku, Tokyo TEL: 03-6717-7000 https://www.tokyo-cc.co.jp/eng/index.html Expected number of participants Approximately 300 Program Wednesday, December 10 / Thursday, December 11 * The contents of the program may be subject to change without notice. - [Products](https://www.jmag-international.com/products/) - About JMAG JMAG is simulation software for electric device design and development. It accurately models the complex electromagnetic phenomena in a wide range of equipment. Since being released in 1983, JMAG has been used in industries and universities world-wide and has contributed to the development of thousands of products. Continuous communication with our users has - [For first-time users](https://www.jmag-international.com/visitor/) - What if you find yourself in a position where you need to develop a new product without design experience or know-how? What if you need to pursue quality that is more stringent and evaluate on a higher scale? The advantage of simulation software is that design ideas are easy to try out through trial and error. JMAG accurately captures complex physical phenomena and runs multi-faceted high-speed factor analysis to support the development of new product manufacturing and design ideas for its users. - [JMAG Newsletter](https://www.jmag-international.com/newsletter_back/) - You can view past newsletters. * Information that has already ended is also listed because it is information at the time of distribution. Please note the date. - [JMAG Users Conference 2021](https://www.jmag-international.com/conference2021/) - JMAG Users Conference 2021 Hybrid Virtual: December 1-10, 2021 Physical: December 8-9, 2021 Registration Closed Greeting Hello, this is the Users Conference secretariat. We are pleased to announce the 28th JMAG Users Conference. JSOL Corporation would like the Users Conference each year to be an opportunity for users to communicate and share ideas. A wealth - [SEDRIVE AB](https://www.jmag-international.com/aboutus/solution-partners/sedrive/) - SEDRIVE is a consultancy company providing engineering service towards OEMs, Start-ups, Tier1s, and material suppliers to launch their products. The scope of SEDRIVE is on electric drive unit focusing on electrical machine design, control and toolchain. - [For Your Comfort](https://www.jmag-international.com/aboutus/foryourcomfort/) - 1. Services We deliver value through simulation technology. Gaining a better understanding of how to use the software, modeling, and evaluating the results reinforces the value obtained from a simulation. We want our users to gain the best possible outcome. For this to happen we provide comprehensive support services including technical support, training seminars, programs, - [Our Approach to JMAG](https://www.jmag-international.com/aboutus/ourvision/) - Our mission is to provide simulation software that can contribute to developing and manufacturing high-quality products. JMAG has always been driven by the practical needs of our customers. Development started in the early 1980s, when in response to a customer's request , we developed a finite element system for the analysis of an electromagnet. JMAG - [JMAG Users Week 2007](https://www.jmag-international.com/conference2007/) - Tuesday, November 6 / Wednesday, November 7 Tuesday, November 6 9:30 Registration 10:00 Opening Remarks Mr.Toshihiro Hayashi, JSOL Corp. 10:10 [Keynote Speech] Demands for electromagnetic field analysis and problems specific to transformers Dr.Shigekazu Sakabe, Tabuchi Electric CO.,Ltd. 11:00 How simulation can support the automotive EMC development process Prof.Stephan Frei, University Dortmund 11:30 Experiences in 3D - [JMAG Group](https://www.jmag-international.com/aboutus/) - JMAG Group´s mission is to provide valuable solutions for the design and development of electrical devices through simulation technology to our customers all over the world. Our staff are highly experienced experts in simulation engineering and the application and capable of helping you solve a wide range of problems. JMAG Group is comprised of the - [JMAG-Express Online Update Information (202007)](https://www.jmag-international.com/express/n20200730/) - 2020-07-30 2020 July Update Information A report output function has been added. Evaluation results can now be output to PDF files. It is now possible to perform analyses for claw pole alternators. Machine characteristics and efficiency maps can be evaluated. The power factor and phase can now be displayed from brushless motor (IPM), brushless motor - [JMAG-Express Online Update Information (202002)](https://www.jmag-international.com/express/n20200203/) - 2020-02-03 2020 February Update Information Efficiency Maps Multiple maps can be compared when using the parametric function. PC version Select the [Map] button and perform control settings. Mobile version Tap [Pop menu], and select the [Map] button. Next, perform control settings. Temperature Evaluating Generates a thermal equivalent circuit model of the motor and calculates the - [JMAG-Express Online Update Information (201908)](https://www.jmag-international.com/express/n20190805/) - 2019-08-05 2019 August Update Information Template modification Templates can now be modified from the "Dimensions" tab. Templates can be reselected by selecting the [Modify] button next to the part name (rotor, stator). Users are encouraged to try out a variety of templates. Custom material support Custom materials can now be used. Users are now free - [Run NVH Analysis of Drivetrain Using JMAG-MASTA Link with Sample Data Disclosed in the Open Interface Program](https://www.jmag-international.com/openinterface/masta/) - JMAG Model 8p48s electric machine, 1/8 periodicity MASTA Model EV drivetrain demo model with 48 stator tooth motor Import stator geometry with rest of drivetrain casing into MASTA via 3rd party structural FEA mesh and connect to drivetrain model containing gears, shafts, bearings etc. JMAG Data JMAG torque and forces imported into MASTA via JMAG - [Application to Use the JMAG Trial Version](https://www.jmag-international.com/evaluation/try/) - Those wishing to use the free JMAG Trial Version should read the following terms and conditions and then submit a completed application form. A JMAG agent for your country will soon contact you after processing of your application. Eligibility People in positions of responsibility for installing JMAG at companies, universities or other organizations * Students - [JMAG-Express Online RID](https://www.jmag-international.com/express/rid/) - JMAG-Express Online Modified items and RID New Function Items Contents [New Function]A report output function has been added. Evaluation results can now be output to PDF files. [New Function]It is now possible to perform analyses for claw pole alternators. Machine characteristics and efficiency maps can be evaluated. [New Function]The power factor and phase can now - [An engineer’s diary](https://www.jmag-international.com/engineers_diary/) ## White Papers - [[W-MO-212] Wide-band Simulation Method for Inductors](https://www.jmag-international.com/whitepapers/w-mo-212/) - This paper describes an approach for modeling a wide-band impedance analysis using an electromagnetic finite element analysis that takes into account displacement currents (Full-Wave FEA). We also compare the impedance characteristics of the chopper inductor obtained using this analysis against measured results to illustrate the fidelity and reasons for that accuracy. - [[W-MO-213] Common Mode Voltage and Bearing Current Analysis of Permanent Magnet Synchronous Motors](https://www.jmag-international.com/whitepapers/w-mo-213/) - This case study simulates high-frequency pathways accounting for parasitic components of each part via an equivalent circuit and evaluates the high-frequency phenomenon of a permanent magnet synchronous motor using a direct coupled finite element analysis (FEA). We provide some guidelines for modeling equivalent circuits and touch on the accuracy obtained through these approaches. - [[W-SC-215] Quench Analysis of a High-Temperature Superconducting Coil](https://www.jmag-international.com/whitepapers/w-sc-215/) - This paper introduces a simulation to comprehensively analyze the physical phenomenon during a quench event. The case study analyzes a no-insulation pancake coil that uses Rare-earth Barium Copper Oxide (REBCO) tape wires as a high-temperature superconductor presented in Fig. 1. - [[W-VI-192] Proposal for System-level Noise/Vibration Design Process Using Transfer Functions](https://www.jmag-international.com/whitepapers/w-vi-192/) - This paper proposes a new system-level noise and vibration design process that takes advantage of transfer functions to realize designs that account for the magnetic characteristics of the motor as well as the noise and vibration characteristics of the entire system. - [[W-SC-214] High-temperature Superconductor Analysis Accounting for Anisotropy](https://www.jmag-international.com/whitepapers/w-sc-214/) - This paper examines the need to account for anisotropy in electromagnetic field simulations through the analysis of the CORC cable presented in Fig. 1. This case study evaluates the critical current density distribution, current density distribution, and alternating current losses when applying a uniform alternating magnetic field. - [[W-MU-204] Thermal Analysis Validation with Measurements for a Water-Cooled PMSM](https://www.jmag-international.com/whitepapers/w-mu-204/) - To solve this problem, this paper adopts a method that combines the Finite Element Analysis (FEA) and a thermal equivalent circuit. - [[W-MA-195] Influence of Symmetric BH Loop Fluctuations on Hysteresis Loss by Play Model](https://www.jmag-international.com/whitepapers/w-ma-195/) - In this paper, we clarify the influence mechanism from fluctuations of the symmetric BH loops to a resulting minor loop and estimate errors caused by the fluctuations. - [[W-MA-196] Modeling of Excess Loss for Arbitrary Magnetic Flux Density Waveforms](https://www.jmag-international.com/whitepapers/w-ma-196/) - Building upon the Bertotti model, this paper proposes a new modeling technique. More precisely, this approach is grounded in the power of the time derivative of the magnetic flux density and incorporates a flux density-dependent excess loss coefficient. - [[W-MO-164] Investigation in the Accuracy of FEA Based Efficiency Maps for PMSM Traction Machines](https://www.jmag-international.com/whitepapers/w-mo-164/) - In this report, three methods are compared on a PMSM showing that the accurate version is necessary for advanced applications such as EV. It shows that the accurate version based on FEA without any simplification is necessary for creating efficiency maps with high accuracy. - [[W-OP-165] Solving Geometry Conflicts in GA Optimizations with Large Numbers of Geometric Parameters](https://www.jmag-international.com/whitepapers/w-op-165/) - Genetic Algorithm (GA) based optimization with finite element analysis is expected to become a solution for high performance motor designs which need to satisfy many strict requirements. - [[W-MO-12] Comparative Evaluation of Synchronous Impedance of a 2D Model and a 3D Model](https://www.jmag-international.com/whitepapers/w-mo-12/) - This case study makes the differences clear between 2D and 3D models by comparing the synchronous impedances obtained from the analysis results of 2D and 3D models, and shows that all simulation results are very dependent on the nonlinearity of materials. - [[W-MB-181] Validation of JMAG-RT Spatial Harmonic Model Accuracy: Comparison of Differential Equation Models, Integral Method Models, and FEA](https://www.jmag-international.com/whitepapers/w-mb-181/) - JMAG-RT generates models that can simulate nonlinear motor characteristics for use in control circuit designs done with software-in-the-loop (SIL), hardware-in-the-loop (HIL), and other such testing methods. JMAG-RT provides a wide variety of these motor models, but the PMSM motor model is currently the most widely used. - [[W-MB-167] Motor Plant Model Considering AC Loss for Control Calibration](https://www.jmag-international.com/whitepapers/w-mb-167/) - Control parameter calibrations on Model-In-the-Loop Simulation (MILS) with Finite Element Analysis (FEA) based motor models is expected to be a standard procedure in the Model-Based-Design (MBD) for motor drive system developments. - [[W-MB-152] Accuracy of Motor Plant Model Required for ECU testing](https://www.jmag-international.com/whitepapers/w-mb-152/) - ECU testing is performed under various conditions from the normal to the abnormal system. - [[W-MA-100] Introducing the Detailed Analysis Method for Electromagnetic Steel Sheet for High-Precision Loss-Assessment](https://www.jmag-international.com/whitepapers/w-ma-100/) - Here, we use a simple example and consider the significance of taking into account the eddy currents and magnetic hysteresis during magnetic field analysis. - [[W-MO-24] Copper Loss Analysis of a Rotating Machine Using the Zooming Method](https://www.jmag-international.com/whitepapers/w-mo-24/) - In this paper, this method is applied to a copper loss characteristics analysis of wires in a 2D rotating machine as well as a loss analysis of litz wires in a 3D rotating machine, and then an evaluation is performed for improving calculation accuracy and calculation speed. Unless otherwise indicated, this paper will hereafter refer to the method of inheriting vector potential on the boundary as the "zooming method". - [[W-MB-151] Accuracy of Motor Plant Model Required for Control Calibration](https://www.jmag-international.com/whitepapers/w-mb-151/) - Control calibration is time-consuming work because it is carried out for every operating point using the actual machine. - [[W-SE-145] Highly Parallel Solver Performance Evaluation (Induction Heating)](https://www.jmag-international.com/whitepapers/w-se-145/) - This document uses as an example an induction heating model to evaluate the performance of the highly parallel solver. As a result, it was found that even in thermal-magnetic field two-way coupled analysis including non-parallel processing such as mapping, a speed-up of 14 times was obtained using 256 parallel (MPP256) in contrast to the 8 parallel (SMP8). - [[W-SE-113] Reduction of Calculation Time Using Equivalent Circuit Model](https://www.jmag-international.com/whitepapers/w-se-113/) - In electrical machine design, the use of coupled analysis between the electromagnetic FEA and the motor drive control circuit is necessary in order to have an understanding of the harmonic iron loss, hysteresis loss, etc. due to the PWM switching [1]. However, the coupling of a transient FEA study with a control circuit can be time consuming. - [[W-MA-111] Improvements in Accuracy of Anomalous Eddy Current Loss Calculations (2)](https://www.jmag-international.com/whitepapers/w-ma-111/) - The iron loss analysis method the most commonly applied uses measured iron loss data (hereinafter referred to as the conventional method). In the conventional method, since the application range is limited to the measurement conditions, there were problems in evaluating the influence of harmonics and DC superposition. - [[W-VI-97] Correlation Analysis for Matching Stiffness between Actual Machine and Analysis Model](https://www.jmag-international.com/whitepapers/w-vi-97/) - If vibration can be estimated with high accuracy, the cost of prototype and testing can be reduced, and thus the reduction of the overall product development time is achievable. - [[W-MO-23] Measurement of PM Motor Vibration/Noise and Analysis Modeling](https://www.jmag-international.com/whitepapers/w-mo-23/) - While miniaturization and efficiency optimization are always in demand in motor development, demand is also increasing for the reduction of vibration and noise in recent years. As a tool to solve these problems in development, anticipation for the coupled electromagnetic field and structural analysis has been on the rise. - [[W-MB-102] Motor Efficiency Map Evaluation for Model-Based Development (MBD) Using FEA Simulation](https://www.jmag-international.com/whitepapers/w-mb-102/) - In MBD, it is necessary to evaluate devices characteristics without having to wait for the manufacturing of a prototype. - [[W-MB-64] Modeling Loss in JMAG-RT](https://www.jmag-international.com/whitepapers/w-mb-64/) - In this paper, we explain how loss is modeled in a JMAG-RT model. - [[W-MO-85] Efficiency Map Evaluations Considering Harmonic Loss](https://www.jmag-international.com/whitepapers/w-mo-85/) - In this paper, we propose a method that combines two approaches to calculate the efficiency at various operating points considering the influence of time harmonics and other effects in the shorter time. - [[W-MB-156] Improving Motor Plant Model Accuracy by Accounting for Harmonic Iron Loss](https://www.jmag-international.com/whitepapers/w-mb-156/) - Because of the acceleration of the motor and the effect of the PWM drive, it is becoming more important to account for loss in order to improve accuracy even for analysis using motor plant models. - [[W-MO-114] Comparison of Efficiency Map with Measurement](https://www.jmag-international.com/whitepapers/w-mo-114/) - This document compares an efficiency map obtained with simulations with an efficiency map consisting of actual measurements, achieving an error of 1% or less for entire regions. - [[W-SE-101] Detailed Eddy Current Analysis of End Winding with Parallel Processing](https://www.jmag-international.com/whitepapers/w-se-101/) - To accurately obtaining the end-winding eddy current loss at high rotation speed, the influence of the magnetic field flux generated by the eddy current flow in every part of the machine cannot be ignored. - [[W-OP-96] Necessity of GA for Multi-Objective Optimization of Drive Motor](https://www.jmag-international.com/whitepapers/w-op-96/) - Tractions motors for HEVs and EVs require different performances depending on the driving conditions and may be restricted not only in terms of magnetic fields performance but also in terms of structure and heat performances. - [[W-SE-94] Improving Automatic Mesh Generation Speed for 3D Solid Models](https://www.jmag-international.com/whitepapers/w-se-94/) - Magnetic field simulation tends to be run as a large-scale analysis lately, being backed by the remarkable performance improvement of the computer. JMAG features a high-performance parallel solver in response to the need to perform a large-scale analysis in a shorter amount of time during the design and development phase. - [[W-MA-88] Improvements in Accuracy of Anomalous Eddy Current Loss Calculations (1)](https://www.jmag-international.com/whitepapers/w-ma-88/) - In iron loss analysis, conventionally, methods using previously measured iron loss data have been mainly used (hereinafter referred to as conventional methods). - [[W-MA-87] Verification of the Accuracy of Minor Loop Loss Using a Play Model](https://www.jmag-international.com/whitepapers/w-ma-87/) - In this paper, from the minor loop loss with DC superposition being measured and compared with results using the play model, it was verified that the play model can reproduce the minor loop loss actually measured. - [[W-MA-70] Mesh Modeling for Coil AC Loss Analysis](https://www.jmag-international.com/whitepapers/w-ma-70/) - In this report, coil AC loss analysis is examined from the perspective of mesh modeling. - [[W-SE-75] Iterative Calculations and Convergence Characteristics](https://www.jmag-international.com/whitepapers/w-se-75/) - In this report, we will explain the convergence criteria of a local quantity and the improvement of the determination of convergence of ICCG. And then, we describe that these ideas make a good effect to the known problems about the convergence characteristics [5]. - [[W-SE-73] Influence of Element Shapes Near the Coil on Convergence](https://www.jmag-international.com/whitepapers/w-se-73/) - Mesh is essential for the accuracy and convergence of iterative calculations such as ICCG in the finite element method. - [[W-SE-74] Electromagnetic Force Calculations Using the Adaptive Function](https://www.jmag-international.com/whitepapers/w-se-74/) - In this report, we clarify the causes of measurement errors for electromagnetic force as well as show that adaptive analysis can be the way to solve this issue. As a calculation method for electromagnetic force, there is the surface force method and the nodal force method. However, since they are both essentially the same, we will proceed with the nodal force method in this example. - [[W-MB-66] Accuracy Improvements in the JMAG-RT Induction Machine Model](https://www.jmag-international.com/whitepapers/w-mb-66/) - In this paper, improvements in the accuracy of induction machine plant models when applied to automobile drive motors are discussed. - [[W-MB-65] The Necessity of JMAG-RT 3D Models](https://www.jmag-international.com/whitepapers/w-mb-65/) - In this paper, the necessity of 3D FEA models in plant model generation will be discussed. - [[W-MA-67] On the Geometry Edge Effects in Laminated Steel Sheet Eddy Current Loss Analysis](https://www.jmag-international.com/whitepapers/w-ma-67/) - In this white paper, based on the results of this analysis, the scenarios where the 2D + 1D method degrades accuracy are made clear and issues to be addressed in the future are presented. - [[W-MB-63] Method for Determining the Optimum Resolution of JMAG-RT Model](https://www.jmag-international.com/whitepapers/w-mb-63/) - In this paper, we present a method to increase the resolution of a JMAG-RT model iteratively while performing system simulation. - [[W-MA-51] Understanding Electromagnetic Phenomena in Steel Sheets Through Simulation](https://www.jmag-international.com/whitepapers/w-ma-51/) - In the following, detailed physical phenomena in steel sheets can be acquired by simulation through the confirmation of analysis results in JMAG’s latest analysis function of the Play Model + 1D method. - [[W-SE-53] Transition to Steady State in a Short Time](https://www.jmag-international.com/whitepapers/w-se-53/) - In the following, it is shown that the steady state analysis results can be obtained with less number of time steps by using the TP-EEC method. - [[W-MA-50] Effectiveness and Limits of 2D Analysis from Loss Analysis](https://www.jmag-international.com/whitepapers/w-ma-50/) - In electromagnetic field analysis, 2D analysis (FEM) that include iron loss evaluations are widely used as a way to find a balance between finely detailed analysis and convenient analysis. - [[W-MA-47] Toward Practical Application of Iron Loss Analysis Taking Stress into Account](https://www.jmag-international.com/whitepapers/w-ma-47/) - Increasing the accuracy of an iron loss analysis for a magnetic field analysis poses challenges. With conventional iron loss calculation methods, the iron loss characteristics of electromagnetic steel sheet materials that were measured beforehand with methods such as the Epstein method are used to estimate iron loss in machines. - [[W-MA-46] Calculation Method of Eddy Current Loss of Electromagnetic Steel Sheet Using a 1D Finite Element Method](https://www.jmag-international.com/whitepapers/w-ma-46/) - When calculating the eddy current loss in magnetic steel, conventionally, a Fourier transform is taken of the magnetic flux density derived from analysis and compared with actual measurements of the iron loss characteristics to estimate the eddy current loss. However, if the conditions differ from the iron loss characteristic measurements, high precision analysis cannot be carried out. - [[W-MO-17] Alternator Analysis Using Tetrahedral/Pentahedral Mixed Mesh](https://www.jmag-international.com/whitepapers/w-mo-17/) - This paper looks at tetrahedral/pentahedral mixed mesh and aims to generate effective mesh to reduce calculation time. We compared calculation times and accuracy when analysis is run with conventional tetrahedral mesh, and investigated the effects of division size in the axis direction of pentahedral elements for mixed mesh. - [[W-TR-15] Loss Evaluation of a Transformer Shield Based on the Homogenization Method](https://www.jmag-international.com/whitepapers/w-tr-15/) - In this paper, each electromagnetic steel sheet of the shield is not modeled; by applying the homogenization method which replaces magnetically and electrically equivalent materials, a realistic mesh model is proposed and an analysis was performed, which is reported below. - [[W-MA-49] Necessity and Approach of Stray Load Loss Analysis](https://www.jmag-international.com/whitepapers/w-ma-49/) - The main components of loss depend on the operating point. One of these components is stray load loss. - [[W-MO-13] Evaluation of a 2D Brush Motor Analysis Accounting for 3D Geometry](https://www.jmag-international.com/whitepapers/w-mo-13/) - In this applied case, the structure of a 2D analysis model accounting for 3D geometry is evaluated through the comparison with a 3D analysis model. The modeling validity is proved by comparing these results. - [[W-MA-21] Iron Loss Analysis of an SR Motor Accounting for Hysteresis and Eddy Current Distribution](https://www.jmag-international.com/whitepapers/w-ma-21/) - We used a new method which can evaluate iron loss in high accuracy even with magnetic density wave form for SR motors, and gained positive results when comparing with actual measurements. This paper reports on the findings of this research. - [[W-SE-72] Reduction of Time Steps by Using Time Periodic Explicit Error Correction Method](https://www.jmag-international.com/whitepapers/w-se-72/) - In electrical equipment design, Computer Aided Engineering (CAE) software is used to make the best possible products within allowable timelines. - [[W-HU-71] Notes on Performance Evaluation and Hardware Selection of JMAG Parallel Solver](https://www.jmag-international.com/whitepapers/w-hu-71/) - This document can be thought of as pointers and precautions for hardware selection and software operation. - [[W-MB-153] Accuracy and Speed Verification of Motor Plant Models Accounting for Spatial Harmonics](https://www.jmag-international.com/whitepapers/w-mb-153/) - This document uses JMAG-RT, which is a type of plant model, to show the relationship between the resolution and accuracy of each axis (mechanical angle, current amplitude, and current phase) of the inductance and flux linkage tables. In addition, the relationship between the time interval width and accuracy when running JMAG-RT analysis is also shown. - [[W-OP-119] Global Design Search of Multi-Objective Multi-Constraint Optimization Issues by Narrowing Down Design Spaces](https://www.jmag-international.com/whitepapers/w-op-119/) - This document shows a reduction in calculation costs by narrowing down the design space as an optimization calculation pre-process using PM motor optimization issues as an example. Furthermore, and in terms of narrowing-down methods, comparisons are performed between GA which uses an equivalent circuit model, an experimental design method, and GA using an FEA model. It is shown that despite the low calculation cost, the equivalent circuit model and experimental design method cannot perform narrowing-down processes correctly. - [[W-SE-95] Improvement in Generation of Three-Dimensional Skin Mesh](https://www.jmag-international.com/whitepapers/w-se-95/) - We have improved the reliability of skin mesh generation for JMAG-Designer in this work, and thus, its details are introduced in this paper. - [[W-SE-99] High Speed Magnetic Field Analysis with SMP Solver](https://www.jmag-international.com/whitepapers/w-se-99/) - The parallel solver is one way to run magnetic field analysis at high speed. JMAG has an SMP-parallel solver that can easily be used with a single click on the computer. - [[W-MA-76] Material Modeling Method for Electromagnetic Field/Iron Loss Analyses Considering Residual Strain](https://www.jmag-international.com/whitepapers/w-ma-76/) - This paper proposes an electromagnetic field analysis and iron loss analysis based on the assumption that the effect of punching can be expressed as a function of the distance from the cutting surface. - [[W-SE-98] Improved Durability for Automatic Mesh Generation](https://www.jmag-international.com/whitepapers/w-se-98/) - This white paper assesses the durability of JMAG's automatic mesh generation feature. - [[W-OP-166] Sensitivity Study of Configuration of Large Scale Multi-Objective Optimization of a PMSM](https://www.jmag-international.com/whitepapers/w-op-166/) - The feasible solution space of large scale multi-objective optimization schemes is sensitive to the configuration (population size, objectives, constraints, and design variables). - [[W-MB-157] Evaluation of the Effect of Resolver Eccentricity on PM Motor Torque Ripple Control](https://www.jmag-international.com/whitepapers/w-mb-157/) - VR-type resolvers are widely used as angle sensors to control the rotation of traction motors for electric vehicles and hybrid vehicles. - [[W-MB-155] Accuracy of 6-Phase Motor Plant Models for Detecting Faults at Disconnections](https://www.jmag-international.com/whitepapers/w-mb-155/) - Multiphase motors have become widely used, and a fail-safe function can be realized by providing a system with redundancy. ## Implementing JMAG - [Honda R&D Co.,Ltd.](https://www.jmag-international.com/case/honda/) - Employing JMAG as the Common Language of Motor Development Devise Unique Solutions and Accelerate Creative Development - [IMS Co., Ltd.](https://www.jmag-international.com/case/ims/) - Since its founding, IMS Co., Ltd. has continued to support advanced technology development of magnetic application products. - [AISIN CORPORATION(Part l)](https://www.jmag-international.com/case/aisin/) - We spoke with Ms. Okawa, Associate Officer in charge of the Power Train and Electrification Development of the Powertrain Company, the key figure in technology development and production of the “eAxle” traction system for battery electric vehicles (BEVs). - [Power Supply Technology Co., Ltd.](https://www.jmag-international.com/case/pst/) - PST is a specialized manufacturer that develops, designs, manufactures and sells power supplies and magnet rolls. In this interview, we talk with the team from the PST MG Design Section under Engineering Department 1 about their hard work every day to develop and design magnet rolls that achieve the magnetic waveforms and specifications required by our business partners. - [Tamagawa Seiki Co., Ltd.](https://www.jmag-international.com/case/tamagawa-seiki/) - Tamagawa Seiki is celebrating its 85th anniversary in 2023. Their ongoing challenge to achieve higher accuracy in control equipment has led to the application of high-precision technology in their products in aeronautics as well as other areas of industry. Today, we talk to Senior Managing Director, Hideo Kumagai (Ph.D., in Electrical Engineering) who has been at the helm of their technology and development over the years, and the Engineering and Quality Management Department staff who specializes in analysis. - [COSEL CO., LTD.](https://www.jmag-international.com/case/cosel/) - Comparing and Examining the Variability of Regulated DC Power Supplies via Simulation - [SUZUKI MOTOR CORPORATION](https://www.jmag-international.com/case/suzuki/) - JMAG’s Role in Supporting the Electrification of Compact Vehicles - [Takao Kogyo Co., Ltd. / TKE Co., Ltd.](https://www.jmag-international.com/case/takao/) - Since its establishment in 1974, Takao Kogyo Co., Ltd. has been manufacturing automotive parts, industrial machinery parts, EV(electric vehicle) parts, and precision machinery parts. - [Tempel Steel Campany](https://www.jmag-international.com/case/tempel_steel/) - Evaluation and Selection of Electrical Steels using Simulation - [TODA RACING Co., Ltd.](https://www.jmag-international.com/case/toda-racing/) - TODA RACING Co., LTD is focused on parts manufacturing, prototyping, and test stands mainly for racing. We continue to undertake challenges with the motto of "Transforming Automotive Dreams into Reality" and satisfy customers with surprise and sentiment that exceed expectations. - [Sinfonia Technology Co., Ltd.](https://www.jmag-international.com/case/sinfonia/) - As an electrical machine manufacturer, Sinfonia Technology boasts a diverse product lineup that leverages its technological development capabilities centered on rotation machines and power electronic technologies. - [AISIN CORPORATION(Part ll)](https://www.jmag-international.com/case/aisin_2/) - Interview of technical experts working on developing the traction system (eAxle) for BEVs (Battery Electric Vehicle). - [Togami Electric Mfg. Co., Ltd.](https://www.jmag-international.com/case/togami-elec/) - Building on tradition, the Togami Electric Mfg. Co., Ltd., a manufacturer of power distribution and control equipment, makes use of their creativity and ingenuity to evolve with society and meet the various needs of the times. - [Dai-ichi Kiden Co.,Ltd.](https://www.jmag-international.com/case/d-kdn/) - Providing customers with all new devices. Better products, faster service. Understanding the process one step at a time. New challenges with JMAG. - [KTH Royal Institute of Technology](https://www.jmag-international.com/case/univ_kth/) - How the department utilizes JMAG to maximize output for sensorless control operations at low speeds and combat thermal issues for PM motors. - [John Deere](https://www.jmag-international.com/case/john_deere/) - Virtual Prototyping in Developing Next Generation Heavy Equipment - [Shanghai University](https://www.jmag-international.com/case/univ_shanghai/) - Expectations of JMAG’s highly accurate, detailed analyses of loss, control and vibration - [Panasonic Corporation](https://www.jmag-international.com/case/panasonic/) - Taking household appliance technologies and presenting them to industry partners – JMAG is a strategic tool helping bring about a technological revolution – - [Bern University of Applied Sciences](https://www.jmag-international.com/case/bern_univ/) - Choose JMAG moving forward to 3D analysis - [Mazda Motor Corporation](https://www.jmag-international.com/case/mazda/) - Using Simulation to Support Automobile Evolution – JMAG, the de facto tool that anticipates the widespread use of electrical devices – - [Electric Motor Technology Research Center, Taiwan National Cheng Kung University](https://www.jmag-international.com/case/cheng_kung_univ/) - Electric Motor Technology Research Center, Taiwan National Cheng Kung University Use of JMAG in Renewable Energy Research - [Institute for Electrical Energy Conversion, Technische Universität Darmstadt](https://www.jmag-international.com/case/univ_darmstadt/) - Taking on Research for New Motors and Generators - [Fuji Electric FA Components & Systems Co., Ltd.](https://www.jmag-international.com/case/fuji_electric/) - Using a merger with Schneider Electric S.A. and making the leap to become aleading company in the electromagnetic switch market - [SIM-Drive Corporation](https://www.jmag-international.com/case/sim_drive/) - Leading Motor Development for Mass Production Electric Vehicles - [Shibaura Institute of Technology Kan Akatsu M&E Energy Conversion Lab.](https://www.jmag-international.com/case/shibaura/) - Tackling Next Generation Motor Development using JMAG - [MEIDENSHA CORPORATION](https://www.jmag-international.com/case/meidensha/) - Stimulating the Expansion and Reinforcement of the Business Domain with JMAG - [NIDEC CORPORATION](https://www.jmag-international.com/case/nidec/) - Supporting the Success of New Businesses - [SANDEN CORPORATION](https://www.jmag-international.com/case/sanden/) - JMAG-RT Models Connect Companies Changing Energy Management Development - [ASTER CO., LTD.](https://www.jmag-international.com/case/aster/) - AST motor (AST Motor™) was developed based on technology developed for AST coil (AST COIL®), an in-house manufactured product. Aster Co., Ltd. is a proposal-based company that manufactures and sells automotive and industrial equipment parts. We aim to make the world a better place by pursuing innovative technology for the future, starting with the prefecture of Akita. - [NAGAOKA MOTOR DEVELOPMENT CO., LTD.](https://www.jmag-international.com/case/nagaoka-md/) - Established as a venture company originating from the Nagaoka University of Technology to “help people and companies who have problems with motors” - [Yanmar Holdings Co., Ltd.](https://www.jmag-international.com/case/yanmar/) - Based on the concept of “realizing a sustainable resource recycling society that leads to the future” the company continues to make technological advances looking ahead to the next 100 years. - [San-Eisha Ltd.](https://www.jmag-international.com/case/san-eisha/) - A power distribution equipment manufacturer committed to establishing stable power supply and creating a comfortable living environment. A company that manufactures highly reliable products in response to customer and social demand. ## Application Catalog - [[JAC015] Cogging Torque Analysis of an SPM Motor with a Step Skewed Magnet](https://www.jmag-international.com/catalog/15_pmsteppermotorskew_coggingtorque/) - This Application Note presents the use of magnetic field analysis to evaluate the magnetic flux density distribution and cogging torque in each part of an SPM motor with a step skewed magnet. - [[JAC161] Line Start Analysis of a Three-phase Induction Machine](https://www.jmag-international.com/catalog/161_3phaseinductionmachine_linestart/) - This Application Note presents an analysis that simulates the line start of an induction motor and obtains the starting performance of its rotation speed variations. - [[JAC159] Sensitivity Analysis of Dimensional Tolerance in an SPM Motor](https://www.jmag-international.com/catalog/159_spmmotor_dimensionaltoleranceusingmorphing/) - This Application Note presents how to assume a dimensional tolerance of ±0.4 mm for a chamfer, and find out whether changing dimensions within the tolerance range has an effect on motor performance by comparing cogging torque and induced voltage. - [[JAC158] Superimposed Direct Current Characteristic Analysis of a Reactor That Accounts for Minor Hysteresis Loops](https://www.jmag-international.com/catalog/158_reactor_superimposeddirectcurrent/) - This Application Note presents the use of the frozen permeability condition to obtain the superimposed direct current characteristic that includes minor hysteresis loops of a high-frequency reactor. - [[JAC157] Analysis of Eddy Currents in an IPM Motor Using the Gap Flux Boundary](https://www.jmag-international.com/catalog/157_ipmgapfluxboundary_eddycurrents/) - This Application Note explains how to use the gap flux boundary condition to evaluate the eddy current loss in the magnet by changing the number of magnet divisions. This will make it possible to obtain effective results in a shorter period of time than with a normal transient response analysis. - [[JAC126] Magnetization Analysis Accounting for Eddy Currents](https://www.jmag-international.com/catalog/126_eddycurrents_magnetization/) - This Application Note presents how to obtain the magnetization field distribution accounting for eddy currents in the magnetic material to be magnetized, the eddy current density distribution in the magnetic material to be magnetized, and the surface magnetic flux density of the magnet. - [[JAC013] High-Frequency Induction Heating Analysis of a Shaft](https://www.jmag-international.com/catalog/13_driveshaft_inductionheating/) - This Application Note explains how to create a numerical analysis model and analyze the elevated temperature process in order to use the coil geometry and current conditions (power supply frequency, current value) to verify whether or not the target temperature distribution is obtained. - [[JAC016] Analysis of a Hybrid Stepper Motor](https://www.jmag-international.com/catalog/16_hybridsteppermotor_characteristics/) - This document introduces how the detent torque and stiffness torque can be calculated for a hybrid stepper motor. - [[JAC293] Axial Gap Motor Geometry Optimization Using Surrogate Models](https://www.jmag-international.com/catalog/293_axial-optimization-surrogatemode/) - In this example, the dimensions of an axial gap motor are optimized by using surrogate models, then the Pareto curves and the effect of reduction in calculation times when using surrogate models are checked. - [[JAC320] Voltage Characteristics Analysis of a No-Insulation NbTi Superconducting Coil](https://www.jmag-international.com/catalog/320_mrisuperconductorvoltage/) - In this example, an NbTi superconducting magnet for an MRI machine that has a no-insulation structure that has a stabilizing layer with contact between turns and an insulation structure that does not have contact. The results verify the phenomenon that causes a delay in charging when the current flows between turns. - [[JAC306] IPM Efficiency Map Analysis Accounting for Continuous Operation](https://www.jmag-international.com/catalog/306_ipm-continuousratingeffiencymap/) - In this example, we will create an efficiency map for an IPM motor that considers continuous operation and imposes temperature constraints on the components. - [[JAC297] Geometry Optimization of a Wound-field Synchronous Motor Including Efficiency Map, Part Temperature, Stress, and Electric Breakdown Evaluations](https://www.jmag-international.com/catalog/297_wfsm_optimization/) - This case study runs a parametric optimization of a main automotive engine to maximize efficiency and torque while minimizing the temperature and stress as constraint conditions. - [[JAC324] Core Material Optimization for a DC Reactor](https://www.jmag-international.com/catalog/324_reactor-materialoptimization/) - A case study to optimize the dimensions of a DC reactor geometry, the number of turns and core materials simultaneously for minimizing both the maximum temperature and volume is introduced. - [[JAC308] Thermal Analysis of a Three-phase Induction Motor Accounting for Ventilation Cooling](https://www.jmag-international.com/catalog/308_im-ventilation/) - This case study evaluates the temperature variations when using two different fans in an induction motor by taking into account the ventilation cooling. - [[JAC318] Vent Duct Design Optimization of a Three-phase Induction Motor](https://www.jmag-international.com/catalog/318_im-ductoptimization/) - This case study optimizes the vent duct layout of an induction motor by taking into account the ventilation cooling to minimize the core volume and airflow from the cooling fan while satisfying the torque and temperature limits. - [[JAC245] Injector Control and Eddy Current Effects](https://www.jmag-international.com/catalog/245_injector_direct/) - In this example, an example of evaluating the difference in responsiveness of an injector when eddy currents are taken into account or not is presented. - [[JAC095] Analysis of a Universal Motor](https://www.jmag-international.com/catalog/95_universalmotor_characteristics/) - This note presents how the characteristics of a universal motor can be obtained, including torque versus current (T-I), torque versus speed (T-N), and magnetic flux density distribution. - [[JAC131] Stray Capacitance Analysis of a Motor](https://www.jmag-international.com/catalog/131_motor_straycapacitance/) - This note presents the use of analysis to obtain the stray capacitance between an IPM motor’s coil and stator core, between its rotor core and stator core, and between the inner and outer rings of its bearings. - [[JAC211] IPM Motor Wire Joule Loss Analysis](https://www.jmag-international.com/catalog/211_ipm_ac_loss/) - In this example, evaluation of coil joule loss that includes eddy currents during motor rotation is introduced here. - [[JAC262] IPM Motor Thermal Demagnetization Analysis Accounting for Dy-Diffusion Magnet Incomplete Magnetization](https://www.jmag-international.com/catalog/262_ipm-magdemagdydiffused/) - In this example, the thermal demagnetization resistance of a motor is analyzed using Dy-diffusion magnets with a coercive force distribution under incomplete magnetization. - [[JAC148] Loss Analysis of a Power Transformer (Flyback Converter)](https://www.jmag-international.com/catalog/148_flybackconverter_loss/) - A magnetic field analysis simulation based on the finite element method (FEM) can precisely evaluate the complex loss distributions of the coil and core, so it is optimal for an advance study of a switching transformer’s thermal design. - [[JAC103] Efficiency Analysis of a Permanent Magnet Synchronous Motor](https://www.jmag-international.com/catalog/103_pmmotor_efficiency/) - In this example, how to obtain the efficiency with a sinusoidal wave voltage drive at a rotation speed of 1,800 r/min and voltage amplitude of 40 V. - [[JAC165] Creating IPM Motor Efficiency Maps](https://www.jmag-international.com/catalog/165_ipmmotor_efficiencymap/) - In this example, an efficiency map of an IPM motor is created and the loss ratios at each operating point are evaluated. - [[JAC314] Torque Analysis of an SPM Motor Using a Halbach Array](https://www.jmag-international.com/catalog/314_spm-halbacharraymagnet/) - This case study sets the magnetization pattern for a Halbach array to a two-dimensional SPM motor, and then compares it against a standard magnet arrangement. The results demonstrate that a Halbach array provides at least equivalent torque and a lower torque ripple than a standard magnet arrangement. - [[JAC222] Irreversible Thermal Demagnetization Analysis of Incompletely Magnetized Magnets](https://www.jmag-international.com/catalog/222_ipm_mag_demag/) - In this example, analysis is performed while varying the temperature of magnetized magnets, and then the influence on the torque waveform and magnetic flux density distribution is evaluated. - [[JAC257] Topology Optimization of an IPM Motor](https://www.jmag-international.com/catalog/257_ipm-topologyoptimization/) - This case study runs a topology optimization to minimize torque ripple and maximize average torque with the maximum stress on the rotor core and maximum radial displacement below a constant value. - [[JAC237] AC Loss Analysis of an IPM Motor](https://www.jmag-international.com/catalog/237_ipm_ac_loss/) - In this example, we introduce the case study that evaluates AC losses in coils of an IPM motor. - [[JAC322] Loss Analysis of a Superconducting Generator](https://www.jmag-international.com/catalog/322_scgenerator-current/) - This case study describes a quantitative loss evaluation for the field winding of a low-temperature superconducting generator that uses a superconducting analysis model. - [[JAC321] AC Loss Analysis of a Twisted-Stacked Superconducting Cable](https://www.jmag-international.com/catalog/321_superconductorcableacloss/) - This case study evaluates the AC losses of a straight-stack and twisted-stack NbTi cable to verify how the different cable structures affect the size and mechanisms of the losses. - [[JAC312] Impedance Analysis of a Transformer for an LLC Resonant Converter](https://www.jmag-international.com/catalog/312_transformer-impedance/) - In this example, we obtain the minute electromagnetic forces acting on a magnet that is moving translationally. - [[JAC317] Optimization via a Surrogate Model Using Materials as Design Variables](https://www.jmag-international.com/catalog/317_ipm-materialoptsurrogatemodel/) - This case study runs a material optimization of an IPM motor that minimizes the iron losses and material costs to select the best core from three types of materials: electromagnetic steel sheet, amorphous alloy, and nanocrystalline alloy. In addition, one optimization is also run using only FEA and the other via a surrogate model to compare the Pareto fronts and how much a surrogate model can reduce the time required for the optimization. - [[JAC304] Thermal Analysis of an Axial Flux Motor Accounting for Cooling](https://www.jmag-international.com/catalog/304_afm-thermalcooling/) - This case study evaluates the temperature changes of each part of an axial flux motor with and without a cooling jacket during a WLTC drive cycle. - [[JAC319] Design Exploration of an IPM Motor Using an Offline Optimization](https://www.jmag-international.com/catalog/319_ipm-optsurrogatemodeloffline/) - This document introduces a process for an offline optimization run using a surrogate model to explore design solutions that satisfy the requirements in less time while also reducing the computational costs. - [[JAC316] AC Loss Analysis of a CORC Cable](https://www.jmag-international.com/catalog/316_corc-loss/) - This case study evaluates the changes in losses produced in CORC cables with different pitches by a transverse magnetic field. - [[JAC315] Torque Analysis of an Axial Gap Motor Using a Halbach Array](https://www.jmag-international.com/catalog/315_afm-halbacharraymagnet/) - This case study sets the magnetization pattern for a Halbach array for a three-dimensional axial gap motor, and then compares it against a standard magnet arrangement. The results demonstrate that a Halbach array provides at least equivalent torque and a lower torque ripple than a standard magnet arrangement. - [[JAC311] Analysis of Impedance-Frequency of Chopper Inductors](https://www.jmag-international.com/catalog/311_inductor-impedance/) - This case study explains modeling for frequency characteristics of impedance and loss using laminated and spiral-type chopper inductors. - [[JAC263] Stress Analysis of an IPM Motor Accounting for Contact Between the Magnets and Rotor Core](https://www.jmag-international.com/catalog/263_ipm-centrifugalforce/) - This case study compares the von Mises stress obtained by two analysis cases to evaluate the influence the contact between the magnets and rotor core of an IPM motor have on the stress distribution. One analysis case uses a rigid-body model. The other uses a model that accounts for contact as the magnets slip. - [[JAC310] Quench Characteristics Analysis of a Pancake Superconducting Coil](https://www.jmag-international.com/catalog/310_superconductorquench/) - This case study evaluates a pancake superconducting coil to obtain the temperature and current density variations. - [[JAC305] Loss Analysis of IPM Motor During Driving Cycle Considering Temperature Variation](https://www.jmag-international.com/catalog/305_ipm-drivingcyclelossthermal/) - In this example, we evaluate the time variation of losses and temperature during WLTC driving cycles when using an efficiency map with temperature dependency in an IPM motor. - [[JAC069] Iron Loss Analysis of an IPM Motor](https://www.jmag-international.com/catalog/69_ipmmotor_ironloss/) - This Application Note explains a case example that obtains the iron loss and its distribution in a permanent magnet motor. - [[JAC068] Speed Versus Torque Characteristic Analysis of a Three-Phase Induction Motor](https://www.jmag-international.com/catalog/68_threephaseinductionmotor_speedtorque/) - This Application Note explains an analysis that confirms the Speed-Torque curve and current density distribution of an induction motor. - [[JAC221] Confirmation of the Influence from the Reduction of High-Frequency Resistance of a Magnetically Plated Wire Choke Coil](https://www.jmag-international.com/catalog/221_chokecoil_coating/) - In this example, high frequency resistance values are obtained from choke coil copper loss analysis results using JMAG’s layer coating mesh function, and the effectiveness of reducing the resistance value of the coil using magnetically plated wire is confirmed. - [[JAC220] Analysis of the High-Frequency Induction Hardening and Cooling of a Gear](https://www.jmag-international.com/catalog/220_gear_ih_cooling/) - In this example, deals with induction heating and cooling analysis. An example is presented where the cooling rate for a gear differs depending on the cooling conditions. - [[JAC108] Centrifugal Force Rupture Analysis of a Ring Magnet](https://www.jmag-international.com/catalog/108_ringmagnet_centrifugalforcerupture/) - This Application Note presents how to obtain the stress distribution of a ring magnet in an SPM motor rotating at high speeds. - [[JAC307] Topology Optimization of SPM Motor Using the Magnet Orientation Direction as a Design Variable](https://www.jmag-international.com/catalog/307_spm_topologyoptmagorientation/) - This case study runs an optimization to simultaneously explore the magnet topology and orientation directions through design variables to obtain at least the same torque as a Halbach array while minimizing torque ripple and magnet cross-section. - [[JAC218] High-Frequency Induction Hardening Analysis Accounting for Deformation](https://www.jmag-international.com/catalog/218_gear_ih_deformation/) - In this example, using the JMAG magnetic field - thermal stress coupled analysis function, analysis is performed evaluating gear deformation from induction heat hardening. - [[JAC219] Axial Gap Type Motor Cogging Torque Analysis](https://www.jmag-international.com/catalog/219_axial_cogging/) - In this example, presents an example of cogging torque analysis of an axial gap type motor. - [[JAC066] Operating Time Analysis of an Injector](https://www.jmag-international.com/catalog/66_injector_operatingtime/) - This Application Note explains how to apply direct current voltage to a solenoid injector and obtain its response characteristics by accounting for effects from eddy currents. - [[JAC065] Static Thrust Analysis of a Voice Coil Motor](https://www.jmag-international.com/catalog/65_voicecoilmotor_staticthrust/) - This Application Note explains how to obtain the current characteristics and the translation position characteristics of the static thrust in a voice coil motor, which is a type of coreless linear actuator. - [[JAC274] SPM Motor Thermal Demagnetization Analysis Using Bonded NdFeB Magnets](https://www.jmag-international.com/catalog/274_spm-thermaldemag/download/) - DATA File name Size (KB) Model Data JMAG-Designer 20.0 JAC274SPM-ThermalDemag-d.zip 456 Case - [[JAC303] Geometry Optimization of a Motor Considering Vibration at System-level](https://www.jmag-international.com/catalog/303_ipm-nvhoptimization/) - In this document, the dimensional optimization of a single motor is performed to minimize the vibration at the system level. - [[JAC273] Creating IPM Motor Efficiency Maps Accounting for AC Loss](https://www.jmag-international.com/catalog/273_ipm-efficiencymapaccuracypriority/download/) - DATA File name Size (KB) Application Note JAC273IPM-EfficiencyMapAccuracyPriority-e.zip 1,077 Model Data JMAG-Designer 22.0 JAC273IPM-EfficiencyMapAccuracyPriority-d.zip 2,551 Case - [[JAC064] Thrust Force Analysis of a Coreless Linear Motor](https://www.jmag-international.com/catalog/64_corelesslinearmotor_thrustforce/) - In this example, explains how to obtain the thrust variations in a coreless linear motor when it is driven with a three-phase alternating current. - [[JAC217] Creating Efficiency Maps for 3-Phase Induction Motors](https://www.jmag-international.com/catalog/217_im_efficiency_map/) - In this example, the use of JMAG-RT Viewer to create efficiency maps for three-phase induction motors when drive temperatures change. - [[JAC216] Simulation of a Claw-Pole Type Alternator Using a Control Simulator and JMAG-RT](https://www.jmag-international.com/catalog/216_alternator_rt/) - In this example, the output voltage and field current of a claw-pole type alternator is checked when the rotor speed is changed. - [[JAC215] Simulation of an IPM Motor with a Delta Connection Using a Control Simulator and JMAG-RT](https://www.jmag-international.com/catalog/215_ipm_rt_delta/) - In this example, a JMAG-RT model is incorporated into a control/circuit simulator to monitor the circulating current when an IPM motor is being driven. - [[JAC214] Monitoring the Radial Force Acting on the Teeth of IPM Motors Using Circuit Control Simulation](https://www.jmag-international.com/catalog/214_ipm_rt_ef/) - In this example, an IPM motor as a JMAG-RT model is captured in a control/circuit simulator, and radial forces acting on the teeth during motor driving is monitored while changing the operating point (current phase). - [[JAC213] Circuit/Control Simulation of a Wound-Field Synchronous Motor](https://www.jmag-international.com/catalog/213_circuitcontrolsimulation_wound-fieldsynchronousmotor/) - In this example, JMAG-RT is used to obtain the torque of a wound-field synchronous motor (below WFSM) and the coil inductance current dependence, and the spatial harmonic components contained in them. Furthermore, we will simulate the WFSM current control by importing a JMAG-RT motor model created as a plant model into the control/circuit simulator. - [[JAC212] AC Loss Analysis of a Claw Pole Alternator](https://www.jmag-international.com/catalog/212_alternator_ac_loss/) - In this example, we introduce the case study that evaluates AC losses in coils of claw pole alternator. - [[JAC063] Analysis of Torque Characteristics of a Cage Induction Motor](https://www.jmag-international.com/catalog/63_cageinductionmotor_torque/) - This Application Note introduces a case example that obtains the Slip-Torque curve, Torque-Current curve, Current-Voltage curve at maximum torque, and the Current-Joule Loss curve for the cage. - [[JAC290] Design Exploration of IPM Motors, Including Evaluating Part Temperature, Stress, and the Presence of Electric Breakdown](https://www.jmag-international.com/catalog/290_ipm-multipysicsevaluation/) - In this example, the part temperature and stress are evaluated at the same time for the motor design plan, and a design plan that meets the requirements is explored. - [[JAC302] Optimization of IPM Motor Geometry and Coil Turns](https://www.jmag-international.com/catalog/302_ipm-discreteoptimization/) - This case study optimizes IPM motor geometry and coil turns by using objective functions to maximize the average efficiency of several operating points and minimize the volume to lower costs. - [[JAC226] Vibration Characteristics Analysis of SPM Motors](https://www.jmag-international.com/catalog/226_spm_vibration/) - In this example, the acceleration is evaluated by obtaining the electromagnetic force generated in the stator core of the SPM motor at multiple rotation speeds and coupling with the eigenmodes of the motor. In addition, the frequency components of the electromagnetic force and eigenmodes and the spatial modes are analyzed, and the resonance modes are confirmed. - [[JAC062] Attractive Force Analysis of a Solenoid Valve](https://www.jmag-international.com/catalog/62_solenoidvalve_attractiveforce/) - This Application Note obtains the attraction force at each position of the movable core. - [[JAC059] Iron Loss Analysis of an IPM Motor Accounting for PWN -Direct Link-](https://www.jmag-international.com/catalog/59_ipmmotorpwm_ironloss/) - In this analysis, the iron losses of the IPM motor that accounts for the carrier harmonic are obtained by directly linking to a circuit/control simulator. - [[JAC056] Torque Characteristics Analysis of a Self Starting Type Permanent Magnet Motor](https://www.jmag-international.com/catalog/56_selfstartingpermanentmagnetmotor_torque/) - This Application Note shows how to obtain the current density distribution and slip versus torque curve. - [[JAC209] Magnetic Measurement Analysis Accounting for Eddy Currents](https://www.jmag-international.com/catalog/209_accountingforeddy_magneticmeasurementanalysis/) - This document introduces an analysis model is created based on the excitation current method, and the differences in magnetic properties obtained when the frequency is changed are shown. - [[JAC061] Current Distribution Analysis of a Choke Coil](https://www.jmag-international.com/catalog/61_chokecoil_currentdistribution/) - This Application Note explains a case example that obtains the current distribution in a choke coil. - [[JAC208] High Frequency Induction Hardening Analysis Accounting for Deformation (Abaqus Link)](https://www.jmag-international.com/catalog/208_highfrequencyinductionhardening_abaqus/) - This document introduces evaluates how heating ranges change depending on the deformation amount at high temperatures and deformation during heating, with heat generation analysis in JMAG and linking of heat transfer / deformation analysis in Abaqus. - [[JAC207] Transfer Torque and Efficiency Analysis of Magnetic Gear](https://www.jmag-international.com/catalog/207_magneticgear_transfertorqueandefficiency/) - In this example, the transfer torque and transfer efficiency are obtained with magnetic field analysis for the flux modulated type magnetic gear using permanent magnets for the inner and outer rotor and positioning a pole piece between the magnets. In addition, how transfer torque and transfer coefficient are affected due to revolution speed is researched. - [[JAC205] Analyzing the Torque Characteristics of IPM Motors Using a Thermal Equivalent Circuit](https://www.jmag-international.com/catalog/205_ipmmotor_thermalequivalentcircuit/) - Here, we confirm a situation where temperature increases due to eddy current of the iron loss and magnet, which causes demagnetization of the magnet and torque reduction. - [[JAC294] Design Exploration of Wound-Field Synchronous Motors, Including Evaluating Part Temperature and Stress](https://www.jmag-international.com/catalog/294_wfsm-multipysicsevaluation/) - In this example, the efficiency map, part temperature, and stress, are evaluated at the same time for the motor design plan, and a design plan that meets the requirements is explored. - [[JAC073] Analysis of the Capacitance of a Parallel Plate Capacitor](https://www.jmag-international.com/catalog/73_parallelplatecapacitor_capacitance/download/) - DATA File name Size (KB) Application Note JAC073CONDENSER-Capacitance-e.zip 730 Model Data JMAG-Designer 20.0 JAC073CONDENSER-Capacitance-d.zip 16,210 Case - [[JAC038] Starting Performance Analysis of a Single Phase Induction Motor](https://www.jmag-international.com/catalog/38_singlephaseinductionmotor_startingperformance/download/) - DATA File name Size (KB) Application Note JAC038IM-SinglePhase-e.zip 580 Model Data JMAG-Designer 22.2 JAC038IM-SinglePhase-d.zip 1,231 Case - [[JAC235] Reactor Core Stray Loss Analysis](https://www.jmag-international.com/catalog/235_reactor_stray_loss/) - In this example, reactor core stray loss is described. - [[JAC060] Superimposed Direct Current Characteristic Analysis of a Reactor](https://www.jmag-international.com/catalog/60_reactor_superimposeddirectcurrentcharacteristics/) - This Application Note explains a case example that obtains the superimposed direct current characteristics of a high-frequency reactor when the gap width is changed. - [[JAC206] Temperature Analysis of an Oil-Immersed Transformer Using a Coupled Magnetic Field and Thermal Fluid Analysis](https://www.jmag-international.com/catalog/206_oil-immersedtransformer_magneticfieldandthermalfluid/) - This document introduces, examples and steps will be shown to obtain heat distribution in a magnetic field analysis for a forced circulation type oil-immersed transformer, map the thermal distribution to thermal fluid analysis model, and then obtain the temperature by handling the insulating oil as a fluid in a thermal fluid analysis. - [[JAC204] Copper Loss Analysis of Switching Transformers using Litz Wire](https://www.jmag-international.com/catalog/204_switchingtransformers_copperloss/) - This document introduces confirms the effects on copper loss due to the presence or absence of a twisted structure in the winding regarding the copper loss that occurs in the small switching transformer structured with PQ cores. - [[JAC046] Sensitivity Analysis of the Magnetization Pattern of an SPM Motor](https://www.jmag-international.com/catalog/46_spmmotor_magnetizationdirection/) - This Application Note presents the use of a magnetic field analysis to obtain the surface flux density for radial pattern, parallel anisotropic pattern, and polar anisotropy pattern magnets. It also displays the changes in induced voltage and cogging torque caused by differences in the magnetization patterns. - [[JAC267] IPM Motor Topology Optimization Using the Density Method](https://www.jmag-international.com/catalog/267_ipm-topologyoptdensity/) - Magnetic field and structural coupled analysis is run in this example. While accounting for rotor core strength, topology optimization that uses the density method is used to perform searches for a rotor shape that maximizes average torque. - [[JAC246] Analysis of Electromagnetic Force Acting Between a Coil and a Magnet](https://www.jmag-international.com/catalog/246_forcebalance/) - This case study obtains electromagnetic force acting between a coil and magnet using the electromagnetic force calculation correction method and the adaptive mesh function. - [[JAC298] Analysis of an SPM Motor Taking into Account the Effects of Layer Shorts](https://www.jmag-international.com/catalog/298_spm-interturnshortloss/) - Overview Deterioration in the coil insulation may cause a short circuit between adjacent coil layers (layer short). A short-circuit current flowing when the winding has a layer short causes coil losses and temperatures to increase. An unbalanced phase current in a multi-phase motor that has a layer short may even change the magnetic circuit and - [[JAC299] Inverter Changeover Control for an Open-end Winding Motor (Wound-Field Synchronous Motor)](https://www.jmag-international.com/catalog/299_wfsm-openendwinding-rt/) - This case study runs a circuit simulation of an open-end winding motor drive system that switches from using a single inverter to dual inverters during operation in order to mitigate zero-sequence current and control the target torque. - [[JAC241] Single-Phase Synchronous Motor N-T-I Characteristics Analysis](https://www.jmag-international.com/catalog/241_spm_1ph_nt/) - In this example, a use case in which the N-T-I characteristics for a single-phase synchronous motor are obtained is presented. - [[JAC163] Torque-Current Curve Analysis of an SPM Motor](https://www.jmag-international.com/catalog/163_spmmotor_current-torque/) - This Application Note presents how to obtain the torque-current curve as a basic property of one type of permanent magnet synchronous motor, the surface permanent magnet synchronous (SPM) motor. - [[JAC156] Segregation Analysis of Torque Components for an IPM Motor](https://www.jmag-international.com/catalog/156_ipmmotor_torquecomponentseparation/) - In this Application Note, the torque components are separated and the magnetic flux density distributions created by each magnetomotive force are confirmed. - [[JAC154] Calculation of Equivalent Circuit Parameters in a Three-Phase Induction Motor](https://www.jmag-international.com/catalog/154_im-equivarentparameter/) - This Application Note explains how to obtain the secondary resistance, leakage inductance, and excitation inductance of an induction motor when its power supply frequency has been changed with regard to its voltage and current controls. - [[JAC152] Electromagnetic Force Analysis of Short-circuited Power Transformer Coils](https://www.jmag-international.com/catalog/152_shortcircuitedpowertransformer_electromagneticforce/) - This analysis uses different coil positions to evaluate the Lorentz force density and electromagnetic force produced in the coils during a short circuit in order to confirm the effects that the primary and secondary coils have on each other. - [[JAC146] Analysis of Stray Loss in a Transformer](https://www.jmag-international.com/catalog/146_transformer_strayloss/) - This Application Note explains how to obtain losses in a transformer tank and use them to evaluate the temperature distribution in each part. - [[JAC143] Inductance Analysis of an Air Core Coil](https://www.jmag-international.com/catalog/143_aircorecoil_inductance/) - This analysis shows how to obtain an air core coil’s inductance through analysis and compare it with theoretical values. - [[JAC140] Analysis of Electromagnetic Repulsion Produced in Small Contact Bridges](https://www.jmag-international.com/catalog/140_contactbridge_electromagneticrepulsion/) - This Application Note presents the use of a magnetic field analysis to obtain the electromagnetic repulsion when a switch is closed, creating a contact bridge. - [[JAC133] Thermal Analysis of a Three-phase Transformer](https://www.jmag-international.com/catalog/133_threephasetransformer_thermal/) - This Application Note presents an example of how to confirm a temperature distribution using the iron and copper losses of a three-phase transformer as heat sources. - [[JAC132] Loss Analysis of a Three-phase Transformer](https://www.jmag-international.com/catalog/132_threephasetransformer_loss/) - This note presents how to obtain the iron and copper losses of a three-phase transformer. - [[JAC130] Thermal Conductivity Analysis of Basic Geometry](https://www.jmag-international.com/catalog/130_basicgeometry_thermalconductivity/) - In this Application Note, the analysis accuracy is investigated by comparing the temperatures obtained through analysis in each part with theoretical values. - [[JAC129] Analysis of a PM Stepper Motor Accounting for Magnetization](https://www.jmag-international.com/catalog/129_pmsteppermotor_magnetizationcharacteristic/) - In this analysis, a magnetization device model is created and a magnet is magnetized. The magnetization distribution and surface magnetic flux density of the magnetized magnet, and the induced voltage of a PM stepper motor with the magnetized magnet integrated into it, are then obtained. - [[JAC128] Structural Analysis of a Cantilever](https://www.jmag-international.com/catalog/128_cantilever_structural/) - In this Application Note, the displacement is obtained for three simple cantilever beam models with different mesh conditions when their eigenmode or a concentrated load is applied to them, and the displacement is then compared with theoretical values. - [[JAC127] Resistance Heating Analysis of Steel](https://www.jmag-international.com/catalog/127_heatedbody_resistanceheating/) - This Application Note presents how to obtain the temperature distribution, temperature variations, and heat flux distribution in a body heated by ohmic heating. - [[JAC123] Thermal Analysis of a Choke Coil](https://www.jmag-international.com/catalog/123_chokecoil_thermal/) - This Application Note shows the use of a thermal analysis to obtain the temperature distribution using the iron losses and copper losses in the choke coil as the heat source. - [[JAC121] Output Analysis of a Salient-Pole Synchronous Generator](https://www.jmag-international.com/catalog/121_salientpolesynchronousgenerator_output/) - This Application Note presents the use of a magnetic field analysis to obtain the magnetic flux density distribution, no-load saturation curve, and output of a salient-pole synchronous generator. - [[JAC120] Thermal Demagnetization Analysis of an SPM Motor](https://www.jmag-international.com/catalog/120_spmmotor_thermaldemagnetization/) - This Application Note presents how to change the temperature of permanent magnets in an analysis, and then evaluate the effects on the torque waveform, magnetic flux density distribution, etc. - [[JAC119] Torque Characteristic Analysis of a Three Phase Wound Rotor Induction Motor](https://www.jmag-international.com/catalog/119_woundrotorinductionmotor_slipvstorque/) - This Application Note shows how to obtain the current density distribution and slip-torque curve. - [[JAC117] Iron Loss Analysis of a Transformer](https://www.jmag-international.com/catalog/117_transformer_ironloss/) - This Application Note presents how to obtain the iron loss and the ratio of hysteresis loss and joule loss within that iron loss for a three-phase transformer. - [[JAC116] Operating Time Analysis of an Injector by Evaluating the Reduction in Eddy Currents](https://www.jmag-international.com/catalog/116_injector_operatingtimebyeddycurrentreduction/) - This Application Note explains how to apply direct current voltage to a solenoid injector and obtain its response characteristics by accounting for effects from eddy currents. The effectiveness of slots added to reduce eddy currents are evaluated by comparing the analysis results with a model without slots added. - [[JAC112] Starting Thrust Force Analysis of a Linear Induction Motor](https://www.jmag-international.com/catalog/112_linearinductionmotor_startingthrustforce/) - This Application Note presents how to obtain the starting thrust force for a linear inductance motor. - [[JAC111] Starting Performance Analysis of a Universal Motor](https://www.jmag-international.com/catalog/111_universalmotor_startingperformance/) - This document introduces the use of a magnetic field analysis to obtain the speed versus time graph, the current waveform, and the torque versus time graph for a universal motor. - [[JAC106] Iron Loss Analysis of a Brush Motor](https://www.jmag-international.com/catalog/106_brushmotor_ironloss/) - This note presents how to obtain the iron loss in the stator core and rotor core of a brush motor. - [[JAC085] High-Frequency Induction Heating Analysis of a Constant Velocity Joint](https://www.jmag-international.com/catalog/85_constantvelocityjoint_inductionheating/) - This Application Note shows how to run an analysis of the elevated temperature process by using the geometry of a coil to evaluate whether or not the target temperature conditions are fulfilled. - [[JAC084] Electromagnetic Forming Analysis of a Tube](https://www.jmag-international.com/catalog/84_tube_electromagneticforming/) - This Application Note explains how to obtain the Lorentz force density distribution generated in a tube when current is run through a coil. - [[JAC083] Magnetic Shielding Analysis of an Induction Furnace](https://www.jmag-international.com/catalog/83_inductionfurnance_magneticshielding/) - This Application Note displays magnetic flux density distribution to evaluate the differences in magnetic flux with and without yokes. - [[JAC082] Analysis of a Synchronous Reluctance Motor](https://www.jmag-international.com/catalog/82_synchronousreluctancemotor_characteristics/) - This Application Note presents an evaluation of torque variations that occur when the phase of a sinusoidal wave current is changed. - [[JAC081] AL-value Analysis of a Choke Coil](https://www.jmag-international.com/catalog/81_transformer_inductance/) - This Application Note explains a case example that obtains the air gap versus AL characteristics of a choke coil. - [[JAC080] Cogging Torque Analysis of an SPM Motor with Skewed Magnetization](https://www.jmag-international.com/catalog/80_spmmotorskew_magnetization/) - This Application Note presents the use of a magnetic field analysis to obtain the flux density distribution, cogging torque, and induced voltage of an SPM motor that has skewed magnetization applied to its magnet. - [[JAC079] Analysis of an Effect of Magnetic Field Orientation on Magnetization](https://www.jmag-international.com/catalog/79_magneticfieldorientation_magnetization/) - This Application Note explains how to obtain a magnet’s surface magnetic flux density distribution while accounting for the orientation and magnetization processes. - [[JAC078] Loss Analysis of a Sheet Coil Transformer](https://www.jmag-international.com/catalog/78_sheetcoiltransformer_lossanalysis/) - This Application Note shows how to obtain the iron loss of a sheet coil transformer. - [[JAC077] Inductance Analysis of an RFID Tag](https://www.jmag-international.com/catalog/77_rfidtag_inductance/) - This Application Note performs a magnetic field analysis of an RFID tag that has a metallic film and a magnetic sheet with a resonance frequency of 13.56 MHz, and obtains the magnetic field distribution and the RFID tag’s inductance. - [[JAC075] Iron Loss Analysis of a Reactor](https://www.jmag-international.com/catalog/75_reactor_ironloss/) - This Application Note analyzes the iron loss of a reactor. - [[JAC074] Speed Versus Torque Analysis of a Single-Phase Induction Motor](https://www.jmag-international.com/catalog/74_singlephaseinductionmotor_speedvstorque/) - This Application Note explains how to obtain the current density distribution and Speed-Torque curve created by auxiliary winding that uses a capacitor. - [[JAC071] Basic Characteristic Analysis of a Motor with 2 Brushes, 6 Poles, and 19 Slots](https://www.jmag-international.com/catalog/71_2brush6pole19slotmotor_characteristics/) - This Application Note presents an analysis to obtain the speed versus torque and torque versus current for a motor that has 2 brushes, 6 poles, and 19 slots. - [[JAC070] Analysis of Impedance-Frequency Characteristics of a Cable](https://www.jmag-international.com/catalog/70_cable_impedancefrequencycharacteristics/) - This Application Note explains how to obtain the frequency characteristics of the resistance and inductance in twisted pair cables. - [[JAC058] Efficiency Analysis of an IPM Motor](https://www.jmag-international.com/catalog/58_ipmmotor_efficiency/) - This Application Note presents the use of magnetic field analysis to obtain the efficiency of an IPM motor in each current phase with a rotation speed of 1800 rpm and the current amplitude of 4.0 A when the motor is driven by sinusoidal wave current. - [[JAC055] Integrated Magnetization Analysis of an IPM Motor](https://www.jmag-international.com/catalog/55_ipmmotor_magnetization/) - This Application Note explains how to determine the changes that occur in a magnetizing field if the making current is changed during magnetization, as well as how to obtain the induced voltage and cogging torque in the motor using the aforementioned magnets. - [[JAC054] Analysis of the Cogging Force of a Moving Coil Linear Motor](https://www.jmag-international.com/catalog/54_movingcoillinearmotor_cogging/) - This Analysis Note explains how to obtain the magnetic flux density distribution and cogging in a moving coil linear motor with skew applied to its magnets. - [[JAC053] Magnetic Shielding Analysis of a Shield Room](https://www.jmag-international.com/catalog/53_sheildroom_magneticshielding/) - This Application Note explains how to handle the magnetic shielding phenomena used by the shield room when an external magnetic field is applied, and from there how to confirm the magnetic flux density distribution. - [[JAC202] Core Stray Loss Analysis of Power Transformer](https://www.jmag-international.com/catalog/202_powertransformer_corestrayloss/) - This document introduces runs analysis by modeling the short-circuit test that is conducted when evaluating stray loss and obtains stray loss distribution in the core close to the winding. - [[JAC300] Electromagnetic Excitation Force Analysis of an SPM Motor with Step Skew](https://www.jmag-international.com/catalog/300_spm_stepskewexcitationforce/) - This case study runs a magnetic field analysis of an SPM motor with step skew to obtain the electromagnetic force acting on the teeth of the stator core to verify the electromagnetic force waveform. - [[JAC203] No-Load Test Analysis of Power Transformer](https://www.jmag-international.com/catalog/203_transformer-noloadtest/) - This example focuses on modeling in the analysis of no-load tests in JMAG and obtains the magnetic flux line, current, excitation conductance, and excitation susceptance that can be acquired from there. - [[JAC201] Iron Loss Analysis of an SR Motor](https://www.jmag-international.com/catalog/201_srmotor_ironloss/) - This example, to accurately capture iron loss that occurs in the SR motor, we will introduce hysteresis loss accounting for the hysteresis loop of the materials and the iron loss analysis methods accounting for eddy current loss on the inside of the lamination cross section. - [[JAC188] Thermal Demagnetization Analysis of IPM Motors Accounting for Coercive Force Distribution of Magnets](https://www.jmag-international.com/catalog/188_ipmmotor_thermaldemagnetization/) - This example presents whether or not the demagnetization region can be smaller by assigning distribution to the coercive force of permanent magnets. - [[JAC198] Bus Bar Thermal Stress Analysis](https://www.jmag-international.com/catalog/198_busbar_thermalstress/) - Here, temperature distributions for bus bars are obtained when the power supply frequency is changed. - [[JAC296] Torque Characteristic Analysis of an IPM Motor Accounting for Temperature Distribution and Changes in Temperature](https://www.jmag-international.com/catalog/296_ipm_torquetemperature/) - In this example, magnetic field and thermal coupled analysis is run, and changes in torque due to part temperatures and magnet demagnetization are checked. - [[JAC200] Iron Loss Analysis of IPM Motor using Hysteresis Model](https://www.jmag-international.com/catalog/200_ipmmotor_hysteresismodel_ironloss/) - In this example, a hysteresis model accounting for minor loops of the direct current bias magnetism and the lamination analysis function accounting for eddy current distribution in the lamination direction are run simultaneously to evaluate iron loss due to high carrier harmonic components in the IPM motor. - [[JAC041] Positioning Control Analysis of a Permanent Magnet Linear Motor Using the Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/41_permanentmagnetlinearmotor_positioncontrol_rt/) - This Application Note presents how to use the JMAG-RT to obtain the space harmonics and current dependency of the thrust and coil inductance and import them to a circuit/control simulator as a JMAG-RT model. From there, it shows how to perform an analysis that controls the position of the permanent magnet linear motor to the desired value. - [[JAC052] Inductance Analysis of a Sheet Coil Transformer](https://www.jmag-international.com/catalog/52_sheetcoiltransformer_inductance/) - This Application Note explains how to obtain the self-inductance and leakage inductance of a sheet coil transformer. - [[JAC051] High-Frequency Induction Heating Analysis of a Gear](https://www.jmag-international.com/catalog/51_gear_inductionheating/) - This Application Note shows how to create a numerical analysis model when obtaining the optimum coil geometry and current conditions (power supply frequency and current value), analyze the elevated temperature process, and evaluate whether or not the model fulfills the target temperature distribution. - [[JAC038] Starting Performance Analysis of a Single Phase Induction Motor](https://www.jmag-international.com/catalog/38_singlephaseinductionmotor_startingperformance/) - The purpose of this Application Note is to introduce an example of a single phase induction motor that uses a capacitor to set up an auxiliary winding and show its rotation speed versus time, torque versus time, and the magnetic flux density distribution and current density distribution in the bar just after the motor starts. - [[JAC199] Efficiency Analysis of Wireless Power Transfer via Electromagnetic Induction Method using Resonance Circuits](https://www.jmag-international.com/catalog/199_wirelesspowertransfer_efficiency/) - This example presents, an electromagnetic induction-type wireless power supply system using an excitation circuit positioned with a parallel resonance condenser on the receiving end, and a series resonance condenser on the transmission end will be analyzed. An efficiency change in relation to the disposition in the horizontal direction is evaluated from both power transmission efficiency and the coupling coefficient. - [[JAC138] Vibration Analysis of an SR Motor](https://www.jmag-international.com/catalog/138_srmotor_vibration/) - This Application Note presents an example of how to obtain the electromagnetic force generated in the stator core of an SR motor and evaluate the sound pressure by linking it to the motor’s eigenmode. - [[JAC197] Electric field distribution Analysis of a Electroplating](https://www.jmag-international.com/catalog/197_electroplating_electricfielddistribution/) - This document introduces will introduce the electric field distribution in a model with the negative pole geometry facing the positive pole that is not parallel but slanted. - [[JAC050] High-Frequency Induction Heating Analysis of a Steel Wire (Translational Induction Hardening)](https://www.jmag-international.com/catalog/50_steelwire_inductionheating/) - This Application Note explains how to create a numerical analysis model when obtaining the optimum coil geometry, current conditions (power supply frequency, current value), and movement speed. It also shows how to evaluate whether the model fulfills the target heating speed by analyzing the elevated temperature process. - [[JAC049] High-Frequency Induction Heating Analysis of a Steel Sheet](https://www.jmag-international.com/catalog/49_steelsheet_inductionheating/) - This Application Note explains how to create a numerical analysis model when obtaining the optimum coil geometry, current conditions (power supply frequency, current value), and movement speed. It also shows how to evaluate whether the model fulfills the target heating speed by analyzing the elevated temperature process. - [[JAC048] High-Frequency Induction Heating Analysis of a Printer Roller](https://www.jmag-international.com/catalog/48_printerroller_inductionheating/) - This Application Note confirms the non-uniformity in temperature distribution produced by an assumed coil geometry, as well as the temperature elevation in each part caused by rotation. - [[JAC047] High-Frequency Induction Heating Analysis of a Crankshaft](https://www.jmag-international.com/catalog/47_crankshaft_inductionheating/) - This Application Note shows an example of an evaluation performed by creating a numerical analysis model, analyzing the elevated temperature process, and seeing whether or not the desired temperature distribution is achieved. Use this analysis when obtaining the optimum coil geometry, current conditions (power supply frequency, current value), and rotation speed. - [[JAC194] Analysis of High-Speed Rotation Motors Accounting for Eddy Current](https://www.jmag-international.com/catalog/194_ipmmotor_highspeedrotation/) - Here we discuss the steps for accounting for eddy current loss occurring in the magnetic steel sheets during a magnetic field analysis, and then analyze the effects on torque. - [[JAC044] Resistance Heating Analysis of a Steel Sheet](https://www.jmag-international.com/catalog/44_steelsheet_resistanceheating/) - This Application Note presents how to obtain the calculate current density distribution, Joule loss distribution and temperature distribution of steel sheet. - [[JAC195] Torque characteristics analysis of three-phase induction motors using 3D correction function](https://www.jmag-international.com/catalog/195_threephase-im_torque/) - This document introduces introduces a case study which obtains inductance correction values, and then obtains N-T characteristics (revolution speed-torque characteristics) using the 3D correction function. - [[JAC045] High-Frequency Induction Heating Analysis of an IH Cooking Heater](https://www.jmag-international.com/catalog/45_ihcooker_inductionheating/) - This Application Note shows how to obtain the magnetic flux density surrounding an IH cooking heater that uses high frequency induction heating and the temperature distribution of its iron pot. - [[JAC186] Gear Induction Hardening Analysis Using Two Frequencies](https://www.jmag-international.com/catalog/186_ihgear_hardening/) - In this material, the validity of coil geometry used for quenching is evaluated by heating the gear top and bottom at high and low frequencies, respectively, to confirm uniform temperature distribution on the surface of the gear. - [[JAC274] SPM Motor Thermal Demagnetization Analysis Using Bonded NdFeB Magnets](https://www.jmag-international.com/catalog/274_spm-thermaldemag/) - In this example, an SPM motor thermal demagnetization analysis is performed using bonded NdFeB magnets. Both the influence on torque waveforms when changing rotor magnet temperatures and the distribution of the demagnetization ratio within the magnets are evaluated. - [[JAC196] Analysis of coil stray capacitance](https://www.jmag-international.com/catalog/196_wirelesspowertransfer_coilstraycapacitance/) - This document introduces target on the helical coil, changes the distance between windings, and obtains stray capacitance that occurs in each coil. - [[JAC042] Displacement Analysis of a Piezoelectric Actuator](https://www.jmag-international.com/catalog/42_piezoelectricactuator_displacement/) - This note presents the use of structural analysis to evaluate the displacement of a bimorph piezoelectric actuator, caused by the inverse piezoelectric effect. - [[JAC225] Induced Voltage Analysis on Memory Motors Using Variable Magnets](https://www.jmag-international.com/catalog/225_ipm_memory/) - In this example, the change in motor characteristics are checked as the memory motor variable magnet magnetization is changed using the three-phase coil current. One example of modeling using a variable magnet user subroutine is presented as well. - [[JAC192] Response Characteristics Analysis of Solenoid Valves Accounting for Residual Magnetization](https://www.jmag-international.com/catalog/192_injector-residualmagnetization/) - In this example. we will discuss the steps to investigate the effect on responsiveness caused by residual magnetization generated in the magnetic materials, and look at case examples. - [[JAC191] Torque Analysis of Three-Phase Induction Motors Accounting for the Skew Using the Multi-slice Method](https://www.jmag-international.com/catalog/191_im-multislice/) - In this document, the multi-slice method is used to compare torque waveforms of a cage three-phase induction motor with and without skew, and is then used to verify the effects of using skew to reduce torque variations. - [[JAC189] Response Characteristics Analysis of Injectors Accounting for Collision](https://www.jmag-international.com/catalog/189_injector_responsecharacteristics/) - For this case, direct current voltage is applied to the solenoid type injector and the response characteristics is obtained after accounting for the effect of the collision and eddy current. - [[JAC043] Torque Analysis of a Coreless Motor](https://www.jmag-international.com/catalog/43_corelessmotor_torque/) - This Application Note presents an evaluation of the torque waveform of a coreless motor when current is running. - [[JAC040] Cogging Torque Analysis of an SPM Motor](https://www.jmag-international.com/catalog/40_spmmotor_coggingtorque/) - This Application Note presents the use of magnetic field analysis to obtain the cogging torque of an 8-pole, 9-slot SPM motor, which has relatively small period. - [[JAC039] Torque Analysis of a Three Phase Induction Motor Accounting for the Skew](https://www.jmag-international.com/catalog/39_threephaseinductionmotor_torque/) - This Application Note presents a comparison of the torque waveforms of three phase squirrel cage induction motors with and without torque, and introduces the effects of using skew to reduce torque variations. Changes in the higher components caused by skew are also displayed by separating the frequencies of the secondary current, which causes the torque variations. - [[JAC139] Power Transmission Analysis Using Magnetic Resonance Phenomena](https://www.jmag-international.com/catalog/139_powertransmission_magneticresonance/) - This Application Note presents how to confirm the power transmission efficiency and the magnetic flux density distribution. - [[JAC295] Inverter Changeover Control for an Open-end Winding Motor](https://www.jmag-international.com/catalog/295_ipm-openendwinding-rt/) - This case study runs a circuit simulation of an open-end winding motor drive system that switches from using a single inverter to dual inverters during operation in order to mitigate zero-sequence current and control the target torque. - [[JAC289] Efficiency Map Creation for Wound-Field Synchronous Motors](https://www.jmag-international.com/catalog/289_wfsm-efficiencymap/) - In this example, efficiency maps for a wound-field synchronous motor are created to check the combinations of currents that result in maximum efficiency. In addition, the loss breakdowns are also evaluated for the representative operating points. - [[JAC122] Inductance Analysis of an IPM Motor -d/q-axis Inductance Obtained by Actual Measurement-](https://www.jmag-international.com/catalog/122_ipmmotor_inductance/) - This Application Note presents an analysis that obtains d/q-axis inductance in an IPM motor while assuming actual measurements in a stationary rotor. - [[JAC034] Demagnetization Analysis of an SPM Motor](https://www.jmag-international.com/catalog/34_spmmotor_demagnetization/) - This note presents the use of a magnetic field analysis to evaluate the demagnetizing ratio distribution of an of an SPM motor by changing the current flow. - [[JAC031] Iron Loss Analysis of an SPM Motor Including the Effect of Press-fitting Stress](https://www.jmag-international.com/catalog/31_spmmotorpressfit_ironloss/) - This note presents the use of the press fit condition to model a core and frame and obtains iron loss density for when the generated stress is used and not used. - [[JAC292] Evaluating Energy Consumption During Drive Cycle Using Loss Maps with Temperature Dependency for IPM Motors](https://www.jmag-international.com/catalog/292_ipm-effmapdependent/) - In this example, loss maps with temperature dependency for an IPM motor are used to compare and evaluate the energy consumption and efficiency during a WLTC drive cycle while using air cooling and a cooling jacket. - [[JAC183] Agitation Force Analysis of an Induction Furnace](https://www.jmag-international.com/catalog/183_inductionfurnance_agitationforce/) - This analysis will evaluate the size of Lorentz force required to agitate and where this is generated. - [[JAC286] IPM Motor Iron Loss Analysis Accounting for PWM -Evaluation with Different Modulation Methods-](https://www.jmag-international.com/catalog/286_ipm-modulation-pwmloss/) - In this example, the effects on iron loss when the modulation method for PWM control is changed are evaluated. - [[JAC010] Thermal Analysis of a Radiant Heater](https://www.jmag-international.com/catalog/10_radiantheater_thermal/) - This Application Note explains how to carry out a thermal analysis using the thermal radiation phenomenon between a heater and a heated body to obtain the differences in temperature distribution in the heated body with and without a shield. - [[JAC037] Vector Control Analysis of an IPM Motor Using Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/37_ipmmotor_vectorcontrol_rt/) - The purpose of this Application Note is to demonstrate how to import a JMAG-RT model to a control/circuit simulator after using the JMAG-RT to obtain the inductance spatial harmonics of the torque and coil. The model is then used to run an analysis that controls the speed of an IPM motor to its target value. - [[JAC185] Analysis of Stray Loss in a Power Transformer](https://www.jmag-international.com/catalog/185_largetransformer_strayloss/) - This note obtains loss distribution for each component in drive condition and checks local overheating. - [[JAC032] Analysis of a Transformer](https://www.jmag-international.com/catalog/32_transformer_output/) - In this example, the use of a magnetic field analysis to evaluate changes in the secondary voltage caused by load variations in a low frequency transformer. - [[JAC181] Analysis of SR Motor Drive Characteristics](https://www.jmag-international.com/catalog/181_srm-drive/) - This example presents how to confirm drive characteristics such as torque, loss, and efficiency in a motor when its switch timing changes for each rotation speed. - [[JAC184] Reactor Sound Pressure Analysis taking Magnetostriction into Account](https://www.jmag-international.com/catalog/184_reactor_soundpressure/) - These notes will conduct an analysis of changed vibratory force and show a case study of confirming the impact magnetostriction has on vibration noise. - [[JAC030] Magnetization Field Evaluation of an SPM motor](https://www.jmag-international.com/catalog/30_spmmotor_magnetization/) - In this example, carry out SPM motor's magnetization to obtain the magnetization field and magnet's surface magnetic flux density. - [[JAC279] Thermal Analysis Accounting for Cooling of the IPM Motor](https://www.jmag-international.com/catalog/279_ipm-thermalcooling/) - In this example, thermal equivalent circuit is used to run thermal analysis of a 3-phase IPM motor that accounts for cooling, and check the temperature change in the coil. - [[JAC180] Analysis of SR Motor Dynamic Characteristics](https://www.jmag-international.com/catalog/180_srm-dynamic/) - This example presents how to carry out an analysis with different switch timings to evaluate torque and current in SR motors. - [[JAC029] Iron Loss Analysis of an SPM Motor with Overhanging Magnet](https://www.jmag-international.com/catalog/29_spmmotoroverhangingmanget_ironloss/) - This Application Note presents the use of a no-load iron loss analysis of an SPM motor with and without an overhanging magnet. - [[JAC028] Magnetic Field Analysis of a Speed Sensor](https://www.jmag-international.com/catalog/28_speedsensor_magneticfield/) - This Application Note presents the use of magnetic field analysis to evaluate the variation of the voltage signal of a magnetic speed sensor for a range of air gap distances. - [[JAC179] Analysis of SR Motor Static Characteristics](https://www.jmag-international.com/catalog/179_srm-static/) - This example presents an evaluation for each rotor position of the effect on flux linkage (shown as I-Psi characteristics below) when excitation current is changed. - [[JAC027] Head Field Analysis of a Recording Write Head That Accounts for Eddy Currents](https://www.jmag-international.com/catalog/27_recordingwritehead_headfield/) - This Application Note shows how to obtain the responsiveness of recording head field that is generated in the magnetic head. - [[JAC230] 6-Phase SPM Motor Inverter Fault Simulation](https://www.jmag-international.com/catalog/230_spm_rt_multiphase/) - In this example, a JMAG-RT model of a 6-phase SPM is loaded into a control/circuit simulator, and circuit simulation for an inverter failure is carried out. - [[JAC251] Alternator Vibration Analysis](https://www.jmag-international.com/catalog/251_alternator_vibration/) - In this example, the electromagnetic force generated in the stator core of a claw pole alternator is obtained, and acceleration is evaluated with an electromagnetic force - structural coupled analysis on the alternator. In addition, the frequency components of the electromagnetic force and the eigenmodes and spatial modes are analyzed to obtain the sources of resonance. - [[JAC178] Analysis of SR Motor I-Psi Characteristics](https://www.jmag-international.com/catalog/178_srm-ipsi/) - This example presents an evaluation of flux linkage, inductance and torque for each rotor position when the flowing current value is changed. - [[JAC026] Braking Torque Analysis of an Electromagnetic Brake](https://www.jmag-international.com/catalog/26_electromagneticbrake_brakingtorque/) - This Application Note shows how to obtain the braking torque of an electromagnetic brake during drive. - [[JAC018] Thermal Analysis of a Motor](https://www.jmag-international.com/catalog/18_ipmmotor_thermal/) - In this example, how to evaluate a motor's temperature distribution by creating a thermal analysis model that can investigate the loss analysis and temperature distribution in order to obtain the motor's total loss distribution, and then analyzing the elevated temperature process. - [[JAC273] Creating IPM Motor Efficiency Maps Accounting for AC Loss](https://www.jmag-international.com/catalog/273_ipm-efficiencymapaccuracypriority/) - In this example, an IPM motor efficiency map that accounts for AC loss from a PWM is created, and a comparison with an efficiency map that does not account for AC loss is performed. - [[JAC253] Analysis of an Induction Generator](https://www.jmag-international.com/catalog/253_ig/) - In this example, the relationship between the output power and efficiency of the induction generator is shown here. - [[JAC231] Vector Control Simulation of a Synchronous Reluctance Motor](https://www.jmag-international.com/catalog/231_synrm_rt/) - In this example, circuit simulation is carried out simulating the control of current and speed by loading a JMAG-RT model for a SynRM into a control/circuit simulator. In addition, comparison with an ideal motor model is performed. - [[JAC177] Torque Characteristic Analysis of a Three Phase Induction Motor](https://www.jmag-international.com/catalog/177_im-basiccharacteristic-powersupply/) - This Application Note explains how to obtain the torque characteristics in an induction motor when the current amplitude has been changed in a specific slip. - [[JAC176] Drive Characteristic Analysis of a Three-Phase Induction Motor](https://www.jmag-international.com/catalog/176_im-basiccharacteristic-slip/) - This Application Note explains how to confirm drive characteristics such as torque, loss, and efficiency in an induction motor when its rotation speed changes. - [[JAC025] Analysis of a Claw Pole Alternator](https://www.jmag-international.com/catalog/25_clawpolealternator_capacitance/) - This Application Note presents the use of an electromagnetic field analysis to evaluate the output capacity of a claw pole alternator operating at 1500 rpm while accounting for eddy currents in the rotor core. - [[JAC024] Cogging Torque Analysis of an SPM Motor with a Skewed Stator](https://www.jmag-international.com/catalog/24_spmmotorskew_coggingtorque/) - This note presents the use of magnetic field analysis to evaluate the cogging torque of an SPM motor with a skewed stator. - [[JAC173] Basic Characteristic Analysis of an IPM Motor](https://www.jmag-international.com/catalog/173_ipmmotor_basic/) - This Application Note demonstrates an analysis in which an IPM motor's cogging torque, torque, magnetic flux density distribution, and iron loss in the stator core are obtained. - [[JAC172] High-Frequency Induction Heating Analysis of a Test Piece (Rotational Induction Hardening)](https://www.jmag-international.com/catalog/172_crankshaft_inductionheating/) - This Application Note explains how to create a numerical analysis model when obtaining the optimum coil geometry, current conditions (power supply frequency, current value), and rotation speed. It also shows how to evaluate whether the target temperature distribution is being achieved by analyzing the elevated temperature process. - [[JAC023] Eccentricity Analysis of an IPM Motor](https://www.jmag-international.com/catalog/23_ipmmotor_eccentricity/) - This Application Note presents how to obtain variations in electromagnetic force according to changes in the amount of rotor eccentricity. - [[JAC167] Iron Loss Analysis of a Three Phase Induction Motor](https://www.jmag-international.com/catalog/167_inductionmachine_ironloss/) - This Application Note presents an example of how to find the iron loss in the stator core and rotor core at a rotation speed of 3,300 r/min. - [[JAC166] Line Start Simulation of an Induction Machine Using a Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/166_inductionmachine_vectorcontrol/) - This Application Note explains how to use the JMAG-RT to create a JMAG-RT model of an induction motor, import it to a circuit/control simulator, and run an induction motor line start simulation. - [[JAC162] Drive Simulation of an SR Motor using a Control Simulator and JMAG-RT](https://www.jmag-international.com/catalog/162_srmotor_drivesimulation/) - In this Application Note, after using JMAG-RT to obtain an SR motor’s torque and inductance characteristics, the JMAG-RT model is imported into a circuit/control simulator, voltage is applied to drive the SR motor, and the torque pulsation is analyzed. By evaluating the obtained torque pulsation in detail, investigations can be carried out to reduce the torque pulsation (this Application Note does not incorporate actual attempts to reduce torque pulsation). - [[JAC239] Fault Analysis in an IPM Motor](https://www.jmag-international.com/catalog/239_ipm_rt_fault/) - In this example, we introduce the case study that simulate the fault of an IPM motor using JMAG-RT. The fault simulated in this case study is an open circuit fault which is caused due to failure of an IGBT, this is one of the most commonly occurring faults in PMSM operation. - [[JAC288] Synchronous Reluctance Motor Topology Optimization](https://www.jmag-international.com/catalog/288_synrm-topologyoptimization/) - In this example, topology optimization is used to minimize the torque ripple and maximize the average torque when exploring the rotor geometry. - [[JAC151] Insulation Evaluation Analysis of a Power Transformer](https://www.jmag-international.com/catalog/151_powertransformerinsulation_evaluation/) - In this example, how to obtain the electric field intensity distribution when a lightning strike or short circuit occurs and the assumed maximum voltage is applied to the winding. - [[JAC150] Electromagnetic Repulsion Analysis of a Vacuum Circuit Breaker](https://www.jmag-international.com/catalog/150_switchinggear_emrepulsionforce/) - This Application Note presents how to obtain the electromagnetic repulsion in a circuit breaker from the Lorentz force when a 100 kA current is flowing. - [[JAC243] Voice Coil Motor Control Simulation Using a Control Simulator and JMAG-RT](https://www.jmag-international.com/catalog/243_vcm_rt/) - In this example, circuit simulation is performed to control the position of a mover by loading a JMAG-RT model for a voice coil motor into a control/circuit simulator. - [[JAC227] Circuit Control Simulation for Three-Phase Induction Motor](https://www.jmag-international.com/catalog/227_im_rt/) - In this example, we conduct a circuit simulation to control current and speed by incorporating the JMAG-RT model of an induction motor into the control/circuit simulator. - [[JAC134] Speed Control Analysis of a Permanent Magnet Linear Motor Using the Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/134_permanentmagnetlinearmotor_speedcontrol_rt_simulink/) - This Application Note presents how to use JMAG-RT to obtain the spatial harmonics and current dependency of the thrust and coil inductance, and import them to a circuit/control simulator as a JMAG-RT model. From there, it shows how to perform an analysis that controls the speed of the permanent magnet linear motor to the desired value. The system that creates a JMAG-RT model using magnetic field analysis is referred to as JMAG-RT. - [[JAC287] Analysis of Current Conditions for the Maximum Efficiency of a WFSM](https://www.jmag-international.com/catalog/287_wfsm-efficiency/) - In this example, we determine the motor efficiency in relation to the field current for a WFSM when the motor output is kept constant. - [[JAC098] Response Analysis of a Solenoid Valve Using a Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/98_solenoidvalve_response_rt/) - This note presents how JMAG-RT can be used to calculate attraction forces and coil inductance that varies with harmonic and current. The result is the JMAG-RT model used as a reference for a circuit / control simulator that runs a transient analysis to run an analysis that controls the solenoid valve position within the desired Value. - [[JAC291] Control Simulation of Switching Number of Poles in a 6-Phase Induction Machine](https://www.jmag-international.com/catalog/291_im-6phase-rt/) - In this document, the behavior of a 6-phase induction motor during the switching of the number of poles is evaluated by simulation. - [[JAC284] Analysis of Minute Electromagnetic Forces Acting on a Magnet](https://www.jmag-international.com/catalog/284_minuteelectromagneticforce/) - In this example, we obtain the minute electromagnetic forces acting on a magnet that is moving translationally. - [[JAC149] Analysis of Magnetic Force Acting on the Arc of a Vacuum Circuit Breaker](https://www.jmag-international.com/catalog/149_switchinggear_forceonarc/) - This Application Note presents how to calculate the current density and Lorentz force of a vacuum circuit breaker, and obtain its arc-diffusing force. - [[JAC280] Topology Optimization of Induction Heating Coil](https://www.jmag-international.com/catalog/280_ih-topologyoptngnet/) - In this example, magnetic field and thermal coupled analysis is run, and using topology optimization, searches are performed for a heating coil that maximizes the power factor and minimizes the apparent power. - [[JAC264] Creating 6-Phase IPM Motor Efficiency Maps](https://www.jmag-international.com/catalog/264_ipm-efficiencymapsixphase/) - In this example, the efficiency map of a 6-phase IPM motor is created with loss ratios at each operating point also evaluated. - [[JAC265] Creating Synchronous Reluctance Motor Efficiency Maps](https://www.jmag-international.com/catalog/265_synrm-efficiencymap/) - In this example, the efficiency map of a synchronous reluctance motor is created with loss ratios at each operating point also evaluated. - [[JAC276] Six-Phase IPM Motor Harmonic Iron Loss Analysis](https://www.jmag-international.com/catalog/276_pmsm-6phase-pwmloss/) - In this example, confirming the effects of carrier harmonics on the iron loss of a six-phase IPM motor are explained here. - [[JAC278] Creating Six-Phase Induction Motor Efficiency Maps](https://www.jmag-international.com/catalog/278_im-efficiencymapsixphase/) - In this example, a six-phase induction motor efficiency map is created in the concept design stage, and each operating point slip and iron loss are evaluated. - [[JAC190] Arrangement Optimization of Wireless Power Transfer System](https://www.jmag-international.com/catalog/190_wirelesspowertransfer_arrangementoptimization/) - This document introduces the procedure in obtaining the optimum solution for geometries of transmission coils (angle that defines position) for simple magnetic resonance wireless power transfer system. Even if you are a user of applications excluding wireless power transfer systems, please use this document as a function reference material to get a grasp of the optimization procedure and the flow of result evaluation. - [[JAC285] Integrated Magnetization Analysis of an SPM Motor by Magnetizing Multiple Times](https://www.jmag-international.com/catalog/285_spm-multimagnetization/) - In this example, the magnets are magnetized more than once with the rotor at different positions to evaluate the magnetization distribution in the magnets while also accounting for hysteresis. - [[JAC269] Creating Three-Phase Induction Motor Efficiency Maps Accounting for Harmonics](https://www.jmag-international.com/catalog/269_im-efficiencymapaccuracy/) - In this example, efficiency maps are created for a three-phase induction motor accounting for PWM carrier and slot harmonics. These are compared with efficiency maps when harmonics are not accounted for. - [[JAC223] Multi-Objective Optimization of an IPM Motor Accounting for Stress at High-Speed Rotation](https://www.jmag-international.com/catalog/223_ipm_optimization/) - In this example, the optimum current phase that achieves high torque per each geometry is obtained, and the torque characteristics (1,000 r/min) and stress due to centrifugal force at high-speed rotation (10,000 r/min) obtained with that optimum phase are both taken as objective functions for a multi-objective genetic algorithm used to carry out the optimization of rotor geometry. - [[JAC017] Inductance Analysis of an IPM Motor](https://www.jmag-international.com/catalog/17_ipmmotor_inductance/) - This Application Note explains how to obtain the current phase angle characteristics of a dq axis inductance that accounts for magnetic saturation and flux leakage in an IPM motor. - [[JAC224] Wireless Power Transfer Device Stray Loss Analysis](https://www.jmag-international.com/catalog/224_wpt_stray_loss/) - In this example, an example is presented investigating by using electromagnetic field analysis whether stray loss can be suppressed using an aluminum shield. - [[JAC268] SPM Motor Teeth Geometry Topology Optimization](https://www.jmag-international.com/catalog/268_spm-topologyoptngnet/) - In this example, the on / off method is used to search for stator teeth geometry that maximizes average torque and minimizes torque ripple with the entire areas of stator teeth tips as the design region. - [[JAC110] Loss Analysis of a Choke Coil](https://www.jmag-international.com/catalog/110_chokecoil_loss/) - This Application Note shows how to obtain the iron loss and copper loss in a choke coil. - [[JAC272] Thrust Analysis of Linear Actuator with a Curved Section](https://www.jmag-international.com/catalog/272_linear-arbitrarymotion/) - In this example, the thrust characteristics of a linear actuator with a curved section are obtained via analysis, and thrust at the transition from a linear motion to a curved motion is evaluated. - [[JAC107] Current voltage characteristics analysis of flyback converters](https://www.jmag-international.com/catalog/107_flybackconverter_currentvoltagecharacteristics/) - In this example, this case study obtains the current waveform of the primary / secondary winding and the core magnetic flux density distribution, current density distribution inside the winding, joule loss density distribution at each time when the voltage is applied. - [[JAC072] Analysis of Attractive Force between Steel Plates and a Magnet](https://www.jmag-international.com/catalog/72_steelsheetmagnet_attractiveforce/) - This Application Note explains how to obtain the magnetic flux density distribution and attractive force generated between a steel plate and a magnet. - [[JAC233] Induction Heating Coil Optimization](https://www.jmag-international.com/catalog/233_ih_optimization/) - In this example, an example of using an optimization function to design a coil to use for induction hardening a gear is presented. - [[JAC115] Eccentricity Analysis of an SPM Motor](https://www.jmag-international.com/catalog/115_spmmotor_eccentricity/) - This Application Note presents how to evaluate the cogging torque waveform and effects on the electromagnetic force acting on the stator in an SPM motor with and without eccentricity. - [[JAC008] Analysis of an Axial Gap Motor](https://www.jmag-international.com/catalog/8_axialgapmotor_characteristics/) - In this example, how to use JMAG's 3D magnetic field analysis to carry out a load analysis of an axial gap motor, and then obtain the Torque-Speed curve and the Torque-Current curve. - [[JAC228] Induction Motor Thermal Analysis](https://www.jmag-international.com/catalog/228_im_thermal/) - In this example, evaluating induction motor temperature distribution. - [[JAC229] Analysis of the Effect of PWM on the Iron Loss of an Induction Motor](https://www.jmag-international.com/catalog/229_im_pwmloss/) - In this example, we introduce a case study to obtain the iron losses of the induction motor that accounts for the PWM input. - [[JAC242] Solenoid Valve Attractive Force Analysis Taking into Account Movable Part Motion](https://www.jmag-international.com/catalog/242_solenoid_inclination/) - In this example, an example is presented where the influence on the electromagnetic force by the presence or absence of inclination is confirmed at each position of the movable part. - [[JAC113] Power Transmission Analysis of a Wireless Power Transfer System with Opposing Cores](https://www.jmag-international.com/catalog/113_wirelesspowertransfer_opposingcores_powertransmission/) - This Application Note presents how to obtain the power transmission efficiency when the feeder wire’s position is moved in both the horizontal and vertical directions from a reference position, and how to display the flow of magnetic flux. - [[JAC073] Analysis of the Capacitance of a Parallel Plate Capacitor](https://www.jmag-international.com/catalog/73_parallelplatecapacitor_capacitance/) - This Application Note explains how to use JMAG to calculate the capacitance when the dielectric material is air and when it is a high permittivity material, while obtaining the amount of charge in each. - [[JAC271] Axial Gap Type Motor AC Copper Loss Analysis](https://www.jmag-international.com/catalog/271_axial-acloss/) - In this example, the AC copper loss of an axial gap type motor using square wire is evaluated. - [[JAC277] Vibration Analysis of Axial Gap-Type Motor](https://www.jmag-international.com/catalog/277_axial-vibration/) - In this example, phenomena confirmed in axial gap-type motors that occur at maximum sound pressure level, from an electromagnetic excitation force and eigen mode perspective. - [[JAC114] Vibration Analysis of an Outer Rotor Motor](https://www.jmag-international.com/catalog/114_outerrotormotor_vibration/) - This note presents the use of a magnetic field analysis and structural analysis to obtain the sound pressure caused by electromagnetic vibrations in an outer rotor motor with holes fabricated in the rotor core. - [[JAC118] Thermal Analysis of a Bus Bar](https://www.jmag-international.com/catalog/118_busbar_thermal/) - This Application Note presents how to obtain the temperature distribution in a bus bar or the like with changes in the power supply frequency. - [[JAC142] Press Fit Analysis of a Divided Core](https://www.jmag-international.com/catalog/142_dividedcore_pressfit/) - This Application Note presents how to use the Press Fit condition to model an analysis of the stress from fitting a core to a frame, and then obtain the iron loss density of an IPM motor under no load, with and without accounting for the stress. - [[JAC275] IPM Motor Iron Loss Analysis Accounting for the Effect of Residual Strain](https://www.jmag-international.com/catalog/275_ipm-residualstrain/) - In this document, an analysis of an IPM motor accounting for the residual strain that occurs as a result of punching processes, and evaluates the effect on torque, magnetic flux density, and iron loss. - [[JAC240] NT Characteristics Analysis of an IPM Motor Using PAM Drive](https://www.jmag-international.com/catalog/240_ipm_nt_pam/) - In this example, an example of evaluating the performance of an IPM with PAM operation is presented. - [[JAC236] Magnetic Circuit Optimization for Plastic Magnets in an Axial Magnetic Field](https://www.jmag-international.com/catalog/236_plmg_ax_optimization/) - In this example, a use case is presented in which a magnetic circuit of a product-forming mold, in a magnetic field aligned with the mold’s main axis, is optimized, with the mold’s dimensions used as design variables. - [[JAC234] Vibration Characteristics Analysis of an Induction Motor](https://www.jmag-international.com/catalog/234_im_vibration/) - In this example, electromagnetic force generated in the induction motor stator core is obtained, and an example of evaluating sound pressure by linking it with the eigenmode of the motor is shown. - [[JAC210] Torque Decoupling of In-out Magnet Coupling](https://www.jmag-international.com/catalog/210_torquedecoupling_in-outmagnetcoupling/) - In this example, an analysis for finding holding torque and an analysis for transient response during torque decoupling. - [[JAC244] Magnetic Field Strength Analysis at a Sensor Position](https://www.jmag-international.com/catalog/244_sensor_tmr/) - In this example, with the analysis target being a motor and the detection sensor being a TMR sensor, an example where a detection signal waveform is obtained that is based on magnetic field values computed from electromagnetic field analysis is presented. - [[JAC238] Hysteresis Loss Analysis in a Reactor with DC Bias](https://www.jmag-international.com/catalog/238_reactor_hys_loss/) - In this example, we will observe the difference between the hysteresis losses calculation method loop count and the play model for the model that is subjected to a DC bias filed on top of a AC field. - [[JAC232] Reactor Joule Loss Analysis](https://www.jmag-international.com/catalog/232_reactor_ac_loss/) - In this example, investigating Joule loss with respect to the positions of air gaps in a reactor is presented. - [[JAC260] Creating Axial Gap-Type Motor Efficiency Maps](https://www.jmag-international.com/catalog/260_axial-efficiencymap/) - In this example, the motor performance of axial gap-type motors with changes made to the flatness ratios. - [[JAC087] Iron Loss Analysis of an IPM Motor Including the Effect of Shrink Fitting](https://www.jmag-international.com/catalog/87_ipmmotorshrinkfit_ironloss/) - This document will compare the results of iron loss accounting for only the size of stress, and iron loss accounting for changes in magnetic flux density over time for each principle stress. (hereafter referred to as iron loss accounting for stress tensor) - [[JAC258] Magnetic Shield Geometry Optimization](https://www.jmag-international.com/catalog/258_shield-optimization/) - In this example, a case study in which the geometry of a magnetic shield is optimized using topology optimization that uses a sensitivity analysis (density method) is presented. Due to the material density distribution, topology changes, magnetic energy changes, and the optimal case magnetic flux lines can be checked. - [[JAC252] Geometry Optimization of a Solenoid Valve](https://www.jmag-international.com/catalog/252_solenoid_optimization/) - In this example, an example where the geometry of a solenoid valve is optimized using a multi-objective optimization algorithm is presented. - [[JAC261] SPM Motor Magnet Coercive Force Optimization For Obtaining Sinusoidal Magnetization](https://www.jmag-international.com/catalog/261_coercivityoptimizationspm/) - In this example, a magnet is segmented into blocks and coercive force is defined. The coercive force of each block is calculated so that the induced voltage waveform approaches a sine wave through optimization. Coercive force distribution obtained through optimization and the voltage waveform for the same coercive force distribution are compared. - [[JAC259] Automatically Searching for Current Phase that Obtains Maximum Torque and Evaluating Torque Characteristics](https://www.jmag-international.com/catalog/259_torquecurrentphasesearchcharacteristics/) - In this example, the current phase that maximizes the torque is searched for each of three rotor geometries. The motor average currents and torque ripples are evaluated using the obtained current phases. - [[JAC022] Analysis of the Eddy Current in the Magnet of an IPM Motor](https://www.jmag-international.com/catalog/22_ipmmotor_magnetloss/) - This Application Note presents the use of a magnetic field analysis in a state of operation to obtain variations in magnet eddy current losses according to the number of divisions in the magnet. - [[JAC254] Vibration Analysis of a Large Oil-Filled Transformer](https://www.jmag-international.com/catalog/254_transformer_vibration/) - In this example, evaluating vibration caused by electromagnetic excitation in a large transformer. Since large transformers are oil-cooled, in this example the oil, which is the fluid in which the parts are immersed, is treated as an elastic body. The parts that are the source of vibration are mainly the core, tank, and windings, but in this example the core and tank are focused on. - [[JAC020] Sound Pressure Analysis of an SPM Motor](https://www.jmag-international.com/catalog/20_spmmotor_soundpressure/) - In this example, an evaluation of a reactor's sound pressure, when acquiring electromagnetic force generated by a stator core for a SPM motor and linking the eigenmodes of a motor. - [[JAC255] Evaluating the N-T Curve of an IPM motor Using 3D Correction](https://www.jmag-international.com/catalog/255_ipm-rt-3dcorrection/) - In this example, obtains N-T curves using the correction function. - [[JAC247] Magnetic Circuit Optimization for Plastic Magnets in a Radial Magnetic Field](https://www.jmag-international.com/catalog/247_plmg_rd_optimization/) - In this example, a use case of magnetic circuit optimization in a metal mold with radial magnetic field orientation used for ring-shaped magnet production is presented. - [[JAC250] Dielectric Heating Analysis of a High-Frequency Preheater with Roller Electrodes](https://www.jmag-international.com/catalog/250_hfph_roller/) - In this example, a use case is presented where the influence of the pitch of roller electrodes on the temperature distribution of a material (tablets) is evaluated. - [[JAC109] Operating Time Analysis of an Electromagnetic Relay Accounting for Eddy Currents](https://www.jmag-international.com/catalog/109_electromagneticrelay_operatingtime/) - This Application Note presents the use of the motion equation function to evaluate the operating time of an electromagnetic relay with DC voltage drive. Eddy currents generated in the core are considered for this purpose. - [[JAC249] Dielectric Heating Analysis of a High-Frequency Preheater with Parallel Plate Electrodes](https://www.jmag-international.com/catalog/249_hfph_parallel/) - In this example, a use case evaluating the influence on the temperature distribution of materials (tablets) with and without auxiliary electrodes is presented. - [[JAC105] Leakage Inductance Analysis of a Transformer](https://www.jmag-international.com/catalog/105_transformer_leakageinductance/) - This Application Note explains how to obtain self-inductance and leakage inductance for two types of secondary coiling in a transformer: uniform coiling and close coiling. - [[JAC193] Calculation of Equivalent Circuit Parameters of Single-Phase Induction Motors](https://www.jmag-international.com/catalog/193_singlephase-im-equivalentcircuit/) - In this example, we will be obtaining the secondary resistance, leakage inductance and excitation inductance of main winding of capacitor-start single-phase induction motor that has auxiliary winding. - [[JAC097] Sound Pressure Analysis of a Transformer](https://www.jmag-international.com/catalog/97_transformer_soundpressure/) - This example presents the use of a coupled magnetic field and structural analysis to obtain the sound pressure distribution accounting for the electromagnetic force of the core when the transformer is operating on a power supply frequency of 6 kHz. - [[JAC102] Magnetic Field Analysis of a Magnetic Sensor](https://www.jmag-international.com/catalog/102_magneticsensor_magneticfield/) - This Application Note presents how to obtain the magnetic flux density distribution at points in the horizontal and vertical directions away from the magnet. - [[JAC091] Iron Loss Analysis of an IPM Motor Including the Effects of Press Fitting Stress](https://www.jmag-international.com/catalog/91_ipmmotorpressfit_ironloss/) - This Application Note presents modeling the press fitting of a core and frame with the Press Fit condition and then obtaining the iron loss density of an IPM motor with and without accounting for the stress generated at that time. - [[JAC099] Superimposed Direct Current Characteristics Analysis of a High Current Reactor](https://www.jmag-international.com/catalog/99_highcurrentreactor_inductance/) - This Application Note presents how to obtain a high-current reactor’s superimposed direct current characteristics when the gap length is varied. - [[JAC101] AL-value Current Characteristics Analysis of a Choke Coil](https://www.jmag-international.com/catalog/101_chokecoil_currentcharacteristic/) - This note presents the use of a magnetic field analysis to obtain the AL-value current properties of a choke coil. - [[JAC100] Surface Heating Analysis of a Steel Plate](https://www.jmag-international.com/catalog/100_steelplate_surfaceheating/) - This Application Note presents how to confirm the uniformity of the surface temperature distribution in the steel plate facing the coil and check for an eddy current loss density distribution that causes the temperature distribution to be uneven, when a mosquito-coil-shaped coil is in position. - [[JAC104] Thrust Force Analysis of a Linear Induction Motor](https://www.jmag-international.com/catalog/104_linearinductionmotor_thrust/) - This Application Note presents how to obtain thrust force characteristics for a linear inductance motor. - [[JAC094] Analysis of Detent Torque of a PM Stepper Motor](https://www.jmag-international.com/catalog/94_pmstepper_detenttorque/) - This Application Note describes how the detent torque can be calculated for a PM stepper motor. - [[JAC090] Analysis of the Effect of PWM on the Iron Loss of an IPM Motor](https://www.jmag-international.com/catalog/90_ipmmotorpwminverter_ironloss/) - This Application Note demonstrates a case study where the effects of a carrier harmonic against an IPM motor’s iron loss is confirmed using estimated harmonic current waveform as input. - [[JAC089] Stiffness Torque Analysis of a PM Stepper Motor](https://www.jmag-international.com/catalog/89_ipmsteppermotor_stiffnesstorque/) - This Application Note describes how the stiffness torque at 0.5 A of current can be calculated for a PM stepper motor. - [[JAC086] Power Transmission Analysis of a Wireless Power Transfer System](https://www.jmag-international.com/catalog/86_wirelesspowertransfer_powertransmission/) - This Application Note presents how to obtain the power transmission efficiency when the feeder wire’s position is moved in both the horizontal and vertical directions from a reference position, and how to display the flow of magnetic flux. - [[JAC011] Pull-in/pull-out Analysis of a PM Stepper Motor Using a Control Simulator and the JMAG-RT](https://www.jmag-international.com/catalog/11_pmsteppermotor_pullinouttorques/) - This note presents how JMAG-RT can be used to calculate holding torque and coil inductance that varies with current. The result is the JMAG-RT motor model used as a reference for a circuit / control simulator that runs a transient analysis to obtain pull-in and pull-out torques of the stepper motor. By also using a single JMAG-RT motor model and changing the circuit on the circuit/control simulator, it is possible to obtain the characteristics of two types of drives: a bifilar winding with a unipolar drive, and a monofilament winding with a bipolar drive. Other parameters are the same for both analyses. - [[JAC019] Analysis of the Centrifugal Force in an IPM motor](https://www.jmag-international.com/catalog/19_ipmmotor_centrifugalforce/) - This Application Note presents examples of cases that obtain changes and stress distribution from the centrifugal force in the rotor. - [[JAC007] Analysis of a Spindle Motor](https://www.jmag-international.com/catalog/7_spindlemotor_characteristics/) - In this example, how the Speed-Torque curve, the Torque-Current curve and the magnetic flux density distribution of a spindle motor can be obtained. - [[JAC004] Sound Pressure Analysis of a Reactor](https://www.jmag-international.com/catalog/4_reactor_soundpressure/) - This Application Note shows an example of an evaluation of a reactor’s sound pressure when a part of a spacer has been removed. - [[JAC014] Inductance Analysis of a Bus Bar](https://www.jmag-international.com/catalog/14_busbar_inductance/) - This note presents a case study on the current distribution and the frequency versus inductance characteristic of the bus bar. - [[JAC009] Sound Pressure Analysis of a Loudspeaker](https://www.jmag-international.com/catalog/9_speaker_soundpressure/) - This Application Note presents how the frequency characteristics of sound pressure can be obtained using the constant Lorenz force on the voice coil, regardless of the frequency. - [[JAC021] Iron Loss Analysis of an SPM Motor Including the Effect of Shrink Fitting](https://www.jmag-international.com/catalog/21_spmmotorshrinkfit_ironloss/) - This note presents an analysis to obtain the iron loss density of an SPM motor both including and not including the stress caused by shrink fitting. - [[JAC002] Cogging Analysis of a PM Linear Motor](https://www.jmag-international.com/catalog/2_permanentmagnetlinearmotor_cogging/) - This note presents how to obtain cogging torque, a cause of thrust variation, and evaluate the thrust force and attraction force during drive. - [[JAC006] Analysis of the SR Motor Torque Ripple](https://www.jmag-international.com/catalog/6_srmotor_torqueripple/) - This Application Note explains how to carry out a torque analysis that changes the switch conversion timing and evaluate both the torque ripples and average torque in an SR motor. - [[JAC003] Analysis of a Permanent Magnet Brush Motor](https://www.jmag-international.com/catalog/3_permanentmagnetbrushmotor_characteristics/) - This document introduces how the characteristics of the brush-type PM motor can be obtained, including torque versus current (T-I), torque versus speed (T-N), and magnetic flux density distribution. - [[JAC001] Torque Characteristic Analysis of a Three Phase Induction Motor](https://www.jmag-international.com/catalog/1_inductionmotor_characteristics/) - This Application Note introduces a case example of how to obtain the current density distribution of an auxiliary conductor and its rotation speed versus torque characteristics. ## JMAG-RT Model Library - [[RTML-062] WFSM_09 Open-End Winding](https://www.jmag-international.com/modellibrary/062/) - Type: WFSM | Max Power: 75(kW) | Stator(Outside Diameter): 400(mm) | Height: 65(mm) | Voltage/Current: DC300(V)/283(A), DC600(V)/50(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-061] PMSM/IPM Constant rating 100(kW) 3-phase, Open-End Winding](https://www.jmag-international.com/modellibrary/061/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 259(mm) | Voltage/Current: DC350(V)/400(A) | Rotor: IPM - [[RTML-059] IM Constant rating 100(kW)](https://www.jmag-international.com/modellibrary/059/) - Type: IM | Max Power: 100(kW) | Stator(Outside Diameter): 125(mm) | Height: 259(mm) | Voltage/Current: DC600(V)/400(A) | Rotor/Mover: Cage - [[RTML-058] IM Constant rating 10(kW)](https://www.jmag-international.com/modellibrary/058/) - Type: IM | Max Power: 10(kW) | Stator(Outside Diameter): 92.5(mm) | Height: 37(mm) | Voltage/Current: DC440(V)/200(A) | Rotor/Mover: Cage - [[RTML-057] IM Constant rating 1(kW)](https://www.jmag-international.com/modellibrary/057/) - Type: IM | Max Power: 1(kW) | Stator(Outside Diameter): 57.5(mm) | Height: 20(mm) | Voltage/Current: DC100(V)/28.3(A) | Rotor/Mover: Cage - [[RTML-056] WFSM_08](https://www.jmag-international.com/modellibrary/056/) - Type: WFSM | Max Power: 75(kW) | Stator(Outside Diameter): 400(mm) | Height: 65(mm) | Voltage/Current: DC500(V)/283(A), DC600(V)/50(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-055] WFSM_07](https://www.jmag-international.com/modellibrary/055/) - Type: WFSM | Max Power: 75(kW) | Stator(Outside Diameter): 212(mm) | Height: 200(mm) | Voltage/Current: DC600(V)/250(A), DC600(V)/45(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-054] WFSM_06](https://www.jmag-international.com/modellibrary/054/) - Type: WFSM | Max Power: 75(kW) | Stator(Outside Diameter): 212(mm) | Height: 200(mm) | Voltage/Current: DC600(V)/250(A), DC200(V)/20(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-053] WFSM_05](https://www.jmag-international.com/modellibrary/053/) - Type: WFSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 50(mm) | Voltage/Current: DC240(V)/84.8(A), DC300(V)/35(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-052] WFSM_04](https://www.jmag-international.com/modellibrary/052/) - Type: WFSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 40(mm) | Voltage/Current: DC240(V)/84.8(A), DC300(V)/50(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-051] WFSM_03](https://www.jmag-international.com/modellibrary/051/) - Type: WFSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 150(mm) | Voltage/Current: DC240(V)/84.8(A), DC300(V)/15(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-048] WFSM_02](https://www.jmag-international.com/modellibrary/048/) - Type: WFSM | Max Power: 2(kW) | Stator(Outside Diameter): 260(mm) | Height: 60(mm) | Voltage/Current: DC200(V)/20(A),DC100(V)/10(A) | Rotor/Mover: WF | Number of Phases: 6 - [[RTML-046] ALTERNATOR_01](https://www.jmag-international.com/modellibrary/046/) - Type: ALTERNATOR | Stator(Outside Diameter): 140(mm) | Height: 45(mm) | Voltage: DC200(V) | Rotor/Mover: WF - [[RTML-045] LSM_01](https://www.jmag-international.com/modellibrary/045/) - Type: LSM | Max Power: 2(kW) | Voltage: DC400(V) | Rotor/Mover: SPM - [[RTML-044] WFSM_01](https://www.jmag-international.com/modellibrary/044/) - Type: WFSM | Max Power: 2(kW) | Stator(Outside Diameter): 260(mm) | Height: 60(mm) | Voltage/Current: DC200(V)/20(A),DC100(V)/10(A) | Rotor/Mover: WF | Number of Phases: 3 - [[RTML-042] SynRM_01 3-phase](https://www.jmag-international.com/modellibrary/042/) - Type: SynRM | Max Power: 0.01(kW) | Stator(Outside Diameter): 150(mm) | Height: 37.5(mm) | Voltage/Current: DC288(V)/5(A) | Rotor/Mover: RM | Average torque: 0.8(N·m) - [[RTML-040] PMSM/SPM Constant rating 1(kW) 6-phase](https://www.jmag-international.com/modellibrary/040/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 53.4(mm) | Height: 37.5(mm) | Voltage/Current: DC100(V)/10(A) | Rotor/Mover: SPM | Average torque: 4(N·m) - [[RTML-038] IM Constant rating 10(kW)](https://www.jmag-international.com/modellibrary/038/) - Type: IM | Max Power: 10(kW) | Stator(Outside Diameter): 500(mm) | Height: 300(mm) | Voltage/Current: DC500(V)/250(A) | Rotor/Mover: Cage - [[RTML-037] IM Constant rating 1(kW)](https://www.jmag-international.com/modellibrary/037/) - Type: IM | Max Power: 1(kW) | Stator(Outside Diameter): 134(mm) | Height: 42(mm) | Voltage/Current: DC100(V)/5(A) | Rotor/Mover: Cage - [[RTML-036] PMSM/SPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/036/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 63(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: SPM | Average torque: 179(N·m) - [[RTML-035] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/035/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 81(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(flat) | Average torque: 179(N·m) - [[RTML-034] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/034/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 89(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 178(N·m) - [[RTML-033] PMSM/SPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/033/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 51(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: SPM | Average torque: 176(N·m) - [[RTML-032] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/032/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 65(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(flat) | Average torque: 177(N·m) - [[RTML-031] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/031/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 400(mm) | Height: 63(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 177(N·m) - [[RTML-030] PMSM/SPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/030/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 179(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: SPM | Average torque: 178(N·m) - [[RTML-029] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/029/) - Type: PMSM | Max Power: 100(kW)| Stator(Outside Diameter): 250(mm) | Height: 287(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(flat) | Average torque: 178(N·m) - [[RTML-028] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/028/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 340(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 178(N·m) - [[RTML-027] PMSM/SPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/027/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 181(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: SPM | Average torque: 178(N·m) - [[RTML-026] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/026/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 250(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(flat) | Average torque: 177(N·m) - [[RTML-025] PMSM/IPM Constant rating 100(kW) 3-phase](https://www.jmag-international.com/modellibrary/025/) - Type: PMSM | Max Power: 100(kW) | Stator(Outside Diameter): 250(mm) | Height: 259(mm) | Voltage/Current: DC500(V)/400(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 178(N·m) - [[RTML-024] PMSM/SPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/024/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 24(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 22(N·m) - [[RTML-023] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/023/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 33(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(flat) | Average torque: 23(N·m) - [[RTML-022] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/022/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 35(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 23(N·m) - [[RTML-021] PMSM/SPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/021/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 27(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 23(N·m) - [[RTML-020] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/020/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 31(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(flat) | Average torque: 23(N·m) - [[RTML-019] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/019/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 37(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 23(N·m) - [[RTML-018] PMSM/SPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/018/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 82(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 23(N·m) - [[RTML-017] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/017/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 115(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(flat) | Average torque: 23(N·m) - [[RTML-016] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/016/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 106(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 23(N·m) - [[RTML-015] PMSM/SPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/015/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 83(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 23(N·m) - [[RTML-014] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/014/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 120(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(flat) | Average torque: 23(N·m) - [[RTML-013] PMSM/IPM Constant rating 10(kW) 3-phase](https://www.jmag-international.com/modellibrary/013/) - Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 106(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 23(N·m) - [[RTML-012] PMSM/SPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/012/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 16(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.5(N·m) - [[RTML-011] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/011/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 25(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(flat) | Average torque: 3.7(N·m) - [[RTML-010] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/010/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 27(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 3.6(N·m) - [[RTML-009] PMSM/SPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/009/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 14(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.6(N·m) - [[RTML-008] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/008/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 22(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(flat) | Average torque: 3.6(N·m) - [[RTML-007] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/007/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 20(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 3.6(N·m) - [[RTML-006] PMSM/SPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/006/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 53(mm) | Height: 46(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.6(N·m) - [[RTML-005] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/005/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 54(mm) | Height: 80(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(flat) | Average torque: 3.6(N·m) - [[RTML-004] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/004/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 54(mm) | Height: 77(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 3.6(N·m) - [[RTML-003] PMSM/SPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/003/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 53(mm) | Height: 36(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.6(N·m) - [[RTML-002] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/002/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 54(mm) | Height: 54(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(flat) | Average torque: 3.6(N·m) - [[RTML-001] PMSM/IPM Constant rating 1(kW) 3-phase](https://www.jmag-international.com/modellibrary/001/) - Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 54(mm) | Height: 51(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 3.6(N·m) - [[RTML-039] SOLENOID_01](https://www.jmag-international.com/modellibrary/039/) - Type: SOLENOID | Voltage: DC12(V) - [[RTML-049] PMSM/IPM Constant rating 75(kW) 3-phase Resolver](https://www.jmag-international.com/modellibrary/049/) - Type: PMSM | Power: 75(kW) | Stator(Outside Diameter): 212(mm) | Height: 200(mm) | Voltage/Current: DC600(V)/250(A) | Rotor/Mover: IPM - [[RTML-050] PMSM/IPM 3-Phases Delta](https://www.jmag-international.com/modellibrary/050/) - Type: PMSM | Power: 150(W) | Stator(Outside Diameter): 112(mm) | Height: 65(mm) | Voltage/Current: DC24(V)/4(A) | Rotor/Mover: IPM - [[RTML-043] SRM_01 3-phase](https://www.jmag-international.com/modellibrary/043/) - Type: SRM | Max Power: 0.5(kW) | Stator(Outside Diameter): 160(mm) | Height: 75(mm) | Voltage: DC150(V) | Rotor/Mover: RM - [[RTML-047] PMSM/IPM Constant rating 75(kW) 3-phase](https://www.jmag-international.com/modellibrary/047/) - Type: PMSM | Power: 75(kW) | Stator(Outside Diameter): 212(mm) | Height: 200(mm) | Voltage/Current: DC600(V)/250(A) | Rotor/Mover: IPM - [[RTML-041] PMSTEP_01](https://www.jmag-international.com/modellibrary/041/) - Type: PMSTEP | Stator(Outside Diameter): 60.0(mm) | Height: 24(mm) | Voltage: DC24(V) | Rotor/Mover: PM - [[RTML-060] IM Constant rating 100(kW)](https://www.jmag-international.com/modellibrary/060/) - Type: IM | Max Power: 100(kW) | Stator(Outside Diameter): 200(mm) | Height: 65(mm) | Voltage/Current: DC500(V)/600(A) | Rotor/Mover: Cage - [Download the JMAG-RT RTT Calculator for use with Simcenter Amesim](https://www.jmag-international.com/modellibrary/download/) - JMAG-RT Model Library Download the JMAG-RT RTT Calculator for use with Simcenter Amesim Last modified at 31 Aug 2022 Use the below versions of RTT Calculator in accordance with your version of Simcenter Amesim. For information on supported versions of Simcenter Amesim and RTT Calculator, please contact Simcenter Amesim support. Simcenter Amesim JMAG-RT RTT Calculator - [JMAG-RT Model Library Terms of Use](https://www.jmag-international.com/modellibrary/jmag_model_library_subscription/) - JMAG-RT Model Library Terms of Use This is an agreement between JSOL Corporation (hereinafter referred to as "JSOL") and the user who is licensed to use this model library (hereinafter referred to as "the user"). The user acknowledges that they are bound by the terms and conditions in this agreement when the user saves all ## Technical Report - [Issue 1 Why is a high-speed calculation engine necessary?](https://www.jmag-international.com/technicalreport/01/) - A Powerful Simulation Engine In recent years, the needs of engineers are diversifying as computer aided engineering (CAE) tools are applied more regularly when designing electromagnetic devices. JMAG answers the diversifying needs of our users by enhancing technical development and functionality. This technical report introduces the scope of JMAG's technological development. For this first issue, - [Issue 2 How JMAG Realized Accelerated Speed](https://www.jmag-international.com/technicalreport/02/) - A Powerful Simulation Engine This technical report introduces content concerning the development of JMAG technology. As the previous section introduced why matrix solvers are necessary for the simulation engine, the following describes how a high-speed solver was implemented into JMAG. Quintupling the Speed Yearly JMAG has been developed to provide a tool that can drastically - [Issue 3 What Does the JMAG Mesh Generation Engine have to Offer?](https://www.jmag-international.com/technicalreport/03/) - A Powerful Simulation Engine These technical reports introduce the scope of JMAG's technological development. This edition introduces the value and future of one of the two major foundations of the simulation engine, the mesh generation engine. Optimized Mesh for Analysis of Electromechanical Machines The JMAG mesh generation engine is for specialized analyses of electromechanical machines. - [Issue 4 Material Modeling and Powerful Analysis Capabilities that Contribute to Limit Design](https://www.jmag-international.com/technicalreport/04/) - Elaborate Modeling Technology The innovations that have been implemented into the technological development of JMAG are introduced in these Technical Reports. This edition, the 4th edition, focuses on the "material modeling" technology. Modeling Complex Nonlinear Materials at a Micro Level \( \Large \nabla \times \frac{ l }{\mu_0}\nabla \times A = J -\sigma \frac{ \partial A - [Issue 5 Versatile Mapping that Supports Multiphysics Simulations](https://www.jmag-international.com/technicalreport/05/) - Elaborate Modeling Technology These technical reports introduce the scope of JMAG's technological development. This, the 5th edition of the technical reports, provides a glimpse of the "physical modeling" utilized in JMAG. Material Modeling and Mapping Technology Supporting Multiphysics Simulations Multiphysics simulations, such as coupled analyses (magnetic field, thermal, structural, electric field), are becoming more widely - [Issue 6 Generating Highly Accurate Machine Models Indispensable to Model Based Design (MBD)](https://www.jmag-international.com/technicalreport/06/) - Elaborate Modeling Technology These technical reports introduce the scope of JMAG's technological development. The final edition for this series provides a deeper look at JMAG's modeling technology. Ideal MBD and Its Challenges Model based design (MBD) has been around the field of circuits/controls for motors for a long time, but has not been at the ## Value of MBD - [Issue 3: Easily Joining Complicated Physical Phenomena and Contributing to Improvements in Development Efficiency](https://www.jmag-international.com/mbd/03/) - Explanation: Model-based Development In the last issue, we introduced the development intention of JMAG-RT that is one of the solutions for model-based development, resulting outcomes or the functions added with JMAG-Designer10.5. This time, entitling the issue 3 as the model-based development that gives an explanation of "Model-based development effectively connects with multi-complicated physical phenomena to - [Issue 1 Asking an LMS engineer -Applying Model Based Development to Vibration and Sound Problems in Electrical Equipment-](https://www.jmag-international.com/mbd/cae_01/) - How far has model based development spread? CAE edition I laid out the logic behind model based development in the series that I wrote last year, so this year I would like to report on how it is actually being used in the field. I plan on interviewing vendors who work alongside JMAG to support - [Final Issue Model-based Development Requires the Ability to Expand, Shrink, and Share the Model](https://www.jmag-international.com/mbd/04/) - Explanation: Model-based Development This series discusses JMAG's contributions to model-based development. Issue 1 talks about the motivation behind developing "JMAG-RT" for control simulations, which have become a typical solution in model based development. In issue 2, I explained how we are approaching the model based development that we have in mind for JMAG by presenting - [Issue 1 Efforts in JMAG for Model-based Design](https://www.jmag-international.com/mbd/01/) - Explanation: Model-based Development Recently, model-based design (development) is a term starting to be used in the development process. These reports discuss what model-based design is and how it is related to you in addition to how JMAG is utilized in model-based design. This report introduces the fundamental characteristics of model-based design. Evolution of Model-based Design - [Issue 2 Upgraded Functions for JMAG-RT](https://www.jmag-international.com/mbd/02/) - Explanation: Model-based Development The fundamental efforts of JMAG for "model-based development (MBD)," which is starting to be applied to the development process as introduced previously, are outlined in this document. The new features of JMAG-Designer Ver.10.5, which was released on July 13th, for MBD are also introduced. Aim of the Latest Version JMAG is being ## event - [2026](https://www.jmag-international.com/event/2026y/) - Date Category Title Venue 9-11 Sep Exhibition Japan Industrial Furnace Manufacturers Association (JIFMA) Thermotec 2026 Japan: Tokyo 6-11 Sep Exhibition Applied Superconductivity Conference ASC 2026 USA: Pittsburgh 6-9 Sep Exhibition ICEM ICEM 2026 (International Conference on Electrical Machines) Portugal: Funchal 5 Aug User Conference POWERSYS / JSOL Corp. JMAG Users Conference 2026 in India India: - [ICEM 2026 (International Conference on Electrical Machines)](https://www.jmag-international.com/event/2026y/icem2026/) - We will be run a booth at the ICEM 2026 (International Conference on Electrical Machines). Overview Organizer ICEM Dates September 6-9, 2026 Location Pestana Casino Park (Funchal, Portugal) Booth number URL https://icem2026.ubi.pt/ - [Thermotec 2026](https://www.jmag-international.com/event/2026y/2026_thermotec/) - We will host an exhibition at the quadrennial Thermotec 2026. At our booth, we will present use cases involving induction heating analysis and hold demonstrations. For those of you thinking of getting into induction heating analysis or performing more advanced simulations, this booth is for you. Please stop by! Overview Organizer Japan Industrial Furnace Manufacturers - [Archive JMAG User Conference](https://www.jmag-international.com/event/jmag-uc_archive/) - 2026 Aug 5 POWERSYS / JSOL Corp. JMAG Users Conference 2026 in India Bangalore, India Jun 3-4 POWERSYS Inc. / JSOL Corp. JMAG User Conference 2026 in Detroit Detroit, USA Apr 9-10 ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 JMAG Users Conference 2026 in Shanghai Shanghai, China 2025 Dec 3-4 JMAG Users Conference 2025 in Japan Tokyo, Japan - [JMAG Users Conference 2026 in India](https://www.jmag-international.com/event/2026y/2026_indiauc/) - Jointly hosted by POWERSYS and JSOL, we are pleased to announce the JMAG Users Conference in India. This event is a unique opportunity to engage with industry leaders and experts at the forefront of electric motor innovation. We look forward to your participation. Overview Organizer POWERSYS / JSOL Corp. Dates Aug. 5th 8:00 –17:10 Location - [LARM2026 – Linear, Actuator & Rotating Machines 2026](https://www.jmag-international.com/event/2026y/larm2026/) - The Europe JMAG distributor POWERSYS will make a presentation at LARM2026. 10:00 - 10:30 AM, July 1st Electrical drive train model abstractions, Reduced order modelling versus Finite element models by Zoltan Nadudvari of Powersys In model electrical drive train development engineers are facing different challenges to deliver safe and robust solutions which meets the requirements - [TECHNO-FRONTIER 2026](https://www.jmag-international.com/event/2026y/2026_techno_frontier/) - We will be run a booth at the TECHNO-FRONTIER 2026. We look forward to seeing you there. Overview Organizer Japan Management Association (JMA) Dates Wednesday, Jul 15, through Friday, Jul 17, 2026 Location Tokyo Big Sight West Hall (Toyo, Japan) Booth Number West Hall 2 #2-W34 URL https://tf.jma.or.jp/en/ - [Automotive Engineering Exposition 2026 YOKOHAMA](https://www.jmag-international.com/event/2026y/2026_expo/) - We will be run a booth at the Automotive Engineering Exposition 2026 YOKOHAMA. We look forward to seeing you there. Overview Organizer Society of Automotive Engineers of Japan, Inc. (JSAE) Dates Venue Wednesday, May 27, through Friday, May 29, 2026 Online Exposition Website Tuesday, May 19, through Tuesday, June 9, 2026 Location PACIFICO YOKOHAMA (Kanagawa, - [MATLAB EXPO 2026 JAPAN](https://www.jmag-international.com/event/2026y/2026-matlab-expo/) - We will be run a booth at the MATLAB EXPO 2026 in Japan. As a key component in electrification, motors must not only realize fantastic standalone performance but also high system-wide compatibility. Model-based design through simulations has become essential to motor development. Our exhibit will introduce the latest innovations in electromagnetic design simulations. This includes - [JMAG User Conference 2026 in Detroit](https://www.jmag-international.com/event/2026y/2026_usauc/) - Jointly hosted by POWERSYS and JSOL, we are pleased to announce the JMAG Users Conference in Detroit. The conference will span two days: the first day will feature "JMAG Innovation Day," followed by "JMAG User Experience Day" on the second day. This will be a great opportunity to gain information on electromagnetic analysis technology trends, - [JMAG Users Conference 2026 in Shanghai](https://www.jmag-international.com/event/2026y/2026_shanghaiuc/) - We are pleased to announce the JMAG Users Conference in China. Overview Organizer ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 Dates Apr 9-10, 2026 Location Holiday Inn Shanghai Pudong 899 Dongfang Road, Pudong New Area, Shanghai, China URL https://mp.weixin.qq.com/s/oXrtihjIl3_7yYFvj-vq9w (Chinese Only) Agenda April 9th, April 10th April 9th China (CST) Japan (JST) Content 9:0010:00JMAG's future development roadmap and - [TAIPEI AMPA 2026](https://www.jmag-international.com/event/2026y/taipeiampa2026/) - TAIPEI AMPA is an international mobility trade fair showcasing electric vehicles (EVs) and electrification, autonomous driving, in-vehicle electronics, and smart mobility. JOTACTIC, the Taiwanese distributor for JMAG, will exhibit at the trade fair. Overview Organizer Taiwan External Trade Development Council, TAITRA Date Tuesday, April 14–Friday, April 17, 2026 Venue Taipei Nangang Exhibition Center, Hall 1 - [ASC 2026](https://www.jmag-international.com/event/2026y/asc2026/) - We will be run a booth at the ASC 2026 (Applied Superconductivity Conference). The Applied Superconductivity Conference is one of the world's largest international conferences dedicated to the applied technologies of superconductivity. Overview Organizer Applied Superconductivity Conference Date September 6(Sunday) – 11(Friday), 2026 Venue David L. Lawrence Convention Center (Pittsburgh, Pennsylvania, USA) Booth number 221 - [2025](https://www.jmag-international.com/event/2025y/) - Date Category Title Venue 22 Dec Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.068] Online 3-4 Dec User Conference JMAG Users Conference 2025 Japan: Tokyo 25 Nov Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.067] Online 30 Oct User Conference EMDYNE Inc. JMAG Users Conference 2025 in Korea Korea: - [ECCE2025](https://www.jmag-international.com/event/2025y/ecce2025/) - We will be run a booth at the ECCE2025 (IEEE ENERGY CONVERSION CONGRESS & EXPO). ECCE is the pivotal international conference and exposition event on electrical and electromechanical energy conversion. We look forward to seeing you there. Overview Organizer IEEE Date Oct. 19(Sunday) – 23(Thursday), 2025 Venue Pennsylvania Convention Center (Philadelphia, USA) Booth number 506 - [JMAG Users Conference 2025 in Korea](https://www.jmag-international.com/event/2025y/2025_koreauc/) - This is to announce that the Korea JMAG distributor EMDYNE will be holding the JMAG Users Conference 2025 in Korea. We look forward to your participation. Overview Organizer EMDYNE Inc. Date October 30th 1:00pm - (KST) Location Courtyard by Marriott Seoul Pangyo (Seoul, Korea) URL http://emdyne.co.kr/?page_id=205 (Korean only) Agenda TimeKST/JST Content 13:00-13:30 Registration 13:30-13:40 Opening - [JMAG Users Conference & Training 2025 in Germany](https://www.jmag-international.com/event/2025y/2025_germanyuc/) - This is to announce that the Europe JMAG distributor POWERSYS will be holding the JMAG Users Conference in Germany. The conference will be held over two days; the first day will be Training, and JMAG Users Conference will consist of the second day. This event is a unique opportunity to engage with industry leaders and - [JMAG Users Conference 2025 in Taiwan](https://www.jmag-international.com/event/2025y/2025_taiwanuc/) - This is to announce that the Taiwan JMAG distributor Jotactic Mobility Consulting Co., Ltd. will be holding the JMAG Users Conference 2025. We look forward to your participation. Overview The annual Taiwan JMAG User Conference is back! We warmly invite JMAG users and motor design professionals to join us for a day of insightful exchange - [EUCAS 2025](https://www.jmag-international.com/event/2025y/eucas2025/) - We will be run a booth at the EUCAS 2025 (17th European Conference on Applied Superconductivity). EUCAS has been for more than three decades a premier event for the dissemination, discussion, and knowledge exchange of breakthroughs and state-of-the-art developments across the several domains of applied superconductivity. Overview Organizer European Society for Applied Superconductivity Date Sep. - [JMAG Users Conference 2025 in India](https://www.jmag-international.com/event/2025y/2025_indiauc/) - This is to announce that the India JMAG distributor PWSIM(POWERSYS) will be holding the JMAG Users Conference in India. This event is a unique opportunity to engage with industry leaders and experts at the forefront of electric motor innovation. We look forward to your participation. Overview Organizer Powersys Dates - Advanced e-Motor Design Conference 2025 - [JMAG Users Conference in Korea](https://www.jmag-international.com/event/2018y/2018_koreauc/) - Invitation Organizer EMDYNE Inc. Date Friday June 29, 2018 Location Courtyard by Marriott Seoul Pangyo(Seoul, Korea) Registration On-Line Registration URL http://emdyne.co.kr/ Program Time Content Speakers 13:00 ~ 14:00 Registration 14:00 ~ 14:10 Opening Speech EMDYNE 14:10 ~ 14:40 JMAG Features Introduction EMDYNE 14:40 ~ 15:10 JMAG-Abaqus coupled analysis Examples of electromagnetic forced vibration analysis of - [JMAG Featured Documents](https://www.jmag-international.com/event/2020y/jmag-web-virtual-booth/) - Documents that we were particularly going to introduce to everyone at the exhibition are now available to view online. Motor / magnetic circuit design Motor / vibration analysis Motor / loss・Efficiency evaluation Motor / temperature evaluation Induction Heating Motor / design exploration Motor / Control・Verification Injectors・Solenoids Transformers/ Wireless power transfer Increasing analysis accuracy・High-speed technology Motor - [The 2017 Annual Meeting of The Institute of Electrical Engineers of Japan](https://www.jmag-international.com/event/2017y/2017_iee_am/) - We will hold an exhibition at The 2017 Annual Meeting of the Institute of Electrical Engineers of Japan. Beginning with an introduction of JMAG-Designer 16.0, we will hold demonstrations and offer advice on optimizations and other ways to increase work efficiency. We will also present a publication released last year for the Japanese market regarding - [TECHNO-FRONTIER 2017](https://www.jmag-international.com/event/2017y/2017_techno_frontier/) - We will hold an exhibition at the 35th annual TECHNO-FRONTIER 2017. Please stop by if you have an interest in motors or simulating electric machines. Using the newest version of JMAG-Designer will introduce popular analysis technologies and newly added case studies. We will have constantly updated information throughout the event. We can't wait to see - [NIWeek 2017](https://www.jmag-international.com/event/2017y/2017_niweek/) - NIWeek is a yearly conference held by National Instruments Corporation, and sees around 3500 engineers from countries around the world gathered under one big conference roof. JMAG's booth will present a linked analysis with JMAG-RT and National Instruments' Motor HILS. Please come and see our demonstration of JMAG-RT for precision plant models. Overview Host National - [The 22th computational engineering conference](https://www.jmag-international.com/event/2017y/2017_keisan_kogaku/) - We will host an exhibition and hold a presentation at the International Conference on Computational Engineering and Science. Please stop by the presentation hall and our booth if you would like to attend. Overview Host The Japan Society for Computational Engineering and Science Date Wednesday, May 31 - Friday, June 2, 2017 Venue Omiya Sonic - [CWIEME Berlin 2017](https://www.jmag-international.com/event/2017y/2017_cwieme_berlin/) - CWIEME, known to be one of the world's largest exhibitions, gathers various products related to coils such as winding machines, motor stators and insulating paper. The JMAG booth will have demonstrations focused on JMAG-Designer Ver.16.1 released in June, as well as analysis case studies of motors and transformers. Please come to the booth to see - [PSIM User Conference 2017](https://www.jmag-international.com/event/2017y/2017_psimuc/) - JMAG will display a booth at the PSIM User Conference hosted by Myway Plus Corporation. At the booth, we will introduce and demonstrate practical application examples of JMAG-RT for model-based development. By all means, please stop by our booth to see the benefits of JMAG-RT. For those who are interested, we will also participate in - [MATLAB EXPO 2017 Japan](https://www.jmag-international.com/event/2017y/2017_matlab_expo/) - We will hold a booth again at this year's MATLAB EXPO. At the JMAG booth, you can have hands-on experience with JMAG-RT and see firsthand its ability to integrate with MATLAB/Simulink. Please visit our booth to see for yourself the value of running a coupled analysis. Overview Host MathWorks Japan Date Tuesday, October 31, 2017 - [ICEMS2016 CHIBA](https://www.jmag-international.com/event/2016y/2016_icems/) - We will hold an exhibition at the 19th International Conference on Electrical Machines and Systems (ICEMS 2016), to be held in Chiba, Japan. - [TECHNO-FRONTIER 2025](https://www.jmag-international.com/event/2025y/2025_techno_frontier/) - We will be run a booth at the TECHNO-FRONTIER 2025. We look forward to seeing you there. Overview Organizer Japan Management Association (JMA) Dates Wednesday, Jul 23, through Friday, Jul 25, 2025 Location Tokyo Big Sight West Hall (Toyo, Japan) Booth Number West Hall 1 #N10 URL https://www.jma.or.jp/tf/en/index.html - [JMAG Users Conference & Workshop 2025 in USA](https://www.jmag-international.com/event/2025y/2025_usauc/) - This is to announce that the North America JMAG distributor POWERSYS will be holding the JMAG Users Conference in Detroit. The conference will be held over second days; the first day will be Workshop, and JMAG Users Conference will consist of the second day. This will be a great opportunity to gain information on electromagnetic - [China Road Show 2025](https://www.jmag-international.com/event/2025y/2025_china_seminar/) - Greeting We would like to inform you that we will be holding a China seminar in Changchun, Beijing, Shanghai, Shenzhen. Each site provides an introduction of the new functions released in the latest version of JMAG V24.0, V24.1 as well as examples of solutions to future technical issues. It will be a great opportunity to - [2024](https://www.jmag-international.com/event/2024y/) - Date Category Title Venue 23 Dec Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.056] Online 4-5 Dec User Conference JMAG Users Conference 2024 Japan: Tokyo 25 Nov Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.055] Online 13-14 Nov User Conference ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 JMAG Users Conference 2024 in - [MATLAB EXPO 2025 JAPAN](https://www.jmag-international.com/event/2025y/2025-matlab-expo/) - We will be run a booth at the MATLAB EXPO 2025 in Japan. As a key component in electrification, motors must not only realize fantastic standalone performance but also high system-wide compatibility. Model-based design through simulations has become essential to motor development. Our exhibit will introduce the latest innovations in electromagnetic design simulations. This includes - [Automotive Engineering Exposition 2025 YOKOHAMA](https://www.jmag-international.com/event/2025y/2025_expo/) - We will be run a booth at the Automotive Engineering Exposition 2025 YOKOHAMA. We look forward to seeing you there. Overview Organizer Society of Automotive Engineers of Japan, Inc. (JSAE) Dates Venue Wednesday, May 21, through Friday, May 23, 2025 Online Exposition Website Wednesday, May 14, through Wednesday, June 4, 2025 Location PACIFICO YOKOHAMA (Kanagawa, - [Workshop on Electrical Machine Design, Control and Diagnostics 2025 (WEMDCD 2025)](https://www.jmag-international.com/event/2025y/wemdcd2025/) - We will be run a booth at the IEEE Workshop on Electrical Machine Design, Control and Diagnostics (WEMDCD). WEMDC is an international workshop where researchers and engineers in electrical machines design, control and diagnosis from the automotive, aviation industries gather to present and discuss the latest research results. Overview Organizer IEEE Date 9 - 10 - [COMPUMAG 2025](https://www.jmag-international.com/event/2025y/compumag2025/) - COMPUMAG is an international conference where engineers from around the world gather to present and discuss recent developments, issues, and practical applications in electromagnetic field analysis technology, which is essential in designing rotating machines, transformers, and various other electromagnetic devices. The 2025 conference will be held in Naples. JMAG will be exhibiting as a sponsor. - [Coiltech Novi 2025](https://www.jmag-international.com/event/2025y/coiltech-us-2025/) - POWERSYS of JMAG Distributor will exhibit at Coiltech Novi 2025. Overview Organizer QUICKFairs Date Jun. 11(Wednesday) - Jun. 12(Thursday) Venue Suburban Collection Showplace (Novi, USA) Booth number #A34 URL https://global.powersys-solutions.com/event/coiltech-novi-2025/ Contact JMAG Distributors POWERSYS Inc. - [Automotive Engineering Exposition 2024 YOKOHAMA](https://www.jmag-international.com/event/2024y/2024_expo/) - We will be run a booth at the Automotive Engineering Exposition 2024 YOKOHAMA. We look forward to seeing you there. Overview Organizer Society of Automotive Engineers of Japan, Inc. (JSAE) Dates Venue Wednesday, May 22, through Friday, May 24, 2024 Online Exposition Website Wednesday, May 15, through Wednesday, June 5, 2024 Location PACIFICO YOKOHAMA (Kanagawa, - [TECHNO-FRONTIER 2016](https://www.jmag-international.com/event/2016y/2016_techno_frontier/) - Overview Host Japan Management Association Dates Wednesday, May 20 - Friday May 22, 2016 Venue Makuhari Messe (Chiba, Japan) Booth No: 8C-212 URL http://www.jma.or.jp/tf/en/ Please stop by if you have an interest in motors or simulating electric machines. The newest version of JMAG-Designer, Ver.15.1, to be released this June, will be introduced along with - [Transformer Technology Symposium](https://www.jmag-international.com/event/2016y/2016_transformer_symposium/) - Overview Host ProSIM R&D Pvt. Ltd. Dates Tuesday, August 9 - Wednesday, August 10, 2016 Venue World Trade Center (Bangalore, India) URL http://pro-sim.com/upcoming-events/transformer-symposium/ We will hold a JMAG seminar focused on transformers at the Transformer Technology Symposium, an event to be hosted by ProSIM, a JMAG Group member based in India. We will introduce JMAG's - [CWIEME Berlin 2016](https://www.jmag-international.com/event/2016y/2016_cwieme_berlin/) - CWIEME, known to be one of the world's largest exhibitions, gather products related to coils such as winding machines, motor stators and insulating paper. At the JMAG booth we will introduce the latest technology on electromagnetic field analyses and demonstrate applied cases for motors, generators, and power transformers. This will also include a demonstration of - [International Symposium on Magnetic Bearings (ISMB15)](https://www.jmag-international.com/event/2016y/2016_ismb15/) - Overview Host The Japan Society of Mechanical Engineers Dates Tuesday, August 3 - Thursday, August 6, 2016 Venue Mojiko HOTEL (Fukuoka, Japan) URL http://www.ismb15.org/ We will host an exhibition at ISMB15, hosted by The Japan Society of Mechanical Engineers. Beginning with an introduction of JMAG-Designer 15.1, higher efficiency strategies and demonstrations will also be performed. - [Powersys User Group 2016](https://www.jmag-international.com/event/2016y/2016_europeanuc/) - Greeting The JMAG Users Conference in Europe will be held this year in Aix-en-Provence, France as one of the programs in Powersys User Group 2016. In addition to presenting the JMAG development roadmap, eight user presentations will also be given. The presentations will address performing electromagnetic simulations on EV and PHEV alternators at their development - [STAR Japanese Conference 2016](https://www.jmag-international.com/event/2016y/2016_star_japanese_conf/) - Overview Host CD-adapco Dates Thursday June 9th - Friday June 10th, 2016 Venue YOKOHAMA ROYAL PARK HOTEL (kanagawa, Japan) URL https://www.star-japanese-conference.com/ STAR Japanese Conference is a conference for Japanese companies hosted by CD-adapco Corporation. The seminar, "Two-Way Coupled Analysis Using Electromagnetic Field Analysis Software JMAG and STAR-CCM+", will be presented by both companies. The JMAG - [2016 IEE-Japan Industry Applications Society Conference](https://www.jmag-international.com/event/2016y/2016_iee_jiasc/) - Overview Host IEEJ Date Tuesday, August 30 - Thursday, September 1, 2016 Venue Gunma University Aramaki Campus (Gunma, Japan) URL http://www.gakkai-web.net/gakkai/jiasc/hp16/index.html (Japanese Only) We will participate in the IEE-Japan Industry Applications Society Conference business exhibition. Beginning with an introduction of JMAG-Designer Ver.15.1, there will be a demonstration as well as advice for increasing efficiency of - [ECCE 2016](https://www.jmag-international.com/event/2016y/2016_ecce/) - Overview Host IEEE Date Sunday, September 18, - Thursday, September 22, 2016 Venue Milwaukee Convention Center (Milwaukee, USA) URL http://www.ieee-ecce.org/ ECCE, hosted by IEEE, is an academic conference on energy. Focusing on JMAG's newest features and design use cases, we will hold demonstrations at our booth. Time September 20th, 10:10am Location Room 101A JSOL's Hiroyuki - [JMAG Users Conference in USA](https://www.jmag-international.com/event/2016y/2016_usauc/) - Greeting We will host a JMAG User's Conference in the United States. We will also hold training with a focus on JMAG features. This will be a great opportunity to gain information on electromagnetic analysis technology trends, usage environments, and so on. Come join us! Overview Organizer POWERSYS Inc. Dates October 11th, 2016 Venue THE - [MATLAB EXPO 2016 Japan](https://www.jmag-international.com/event/2016y/2016_matlab_expo/) - Overview Host MathWorks Japan Date Wednesday, October 19, 2016 Venue GRAND NIKKO TOKYO DAIBA B1F (Daiba, Tokyo, Japan) URL http://matlabexpo.com/jp/ (Japanese Only) We will hold a booth again at this year's MATLAB EXPO. At the JMAG booth, you can have hands-on experience with JMAG-RT and see firsthand its ability to integrate with MATLAB/Simulink. Please visit - [JMAG Users Conference in China](https://www.jmag-international.com/event/2016y/2016_chinauc/) - We are pleased to announce the sixth JMAG Users Conference in China. Case study presentations by users and case study presentations of how to solve future technical issues are expected at the event. This will be an excellent opportunity to collect information on technical trends and application cases of electromagnetic field analysis. We look forward - [Coiltech Deutschland 2025](https://www.jmag-international.com/event/2025y/coiltech-germany-2025/) - POWERSYS of JMAG Distributor will exhibit at Coiltech Deutschland 2025. Overview Organizer QUICKFairs Date Mar. 26(Wednesday) - Mar. 27(Thursday) Venue Messe Augsburg (Augsburg, Germany) Booth number Hall 5 #G08 URL https://global.powersys-solutions.com/event/coiltech-deutschland-2025/ Wednesday, March 26 World Magnetic Conference Hall 5 11:50 “High Performance Computing for Design and Optimization of a PMSM traction motor using Multiphysics modeling“ - [ECCE2023](https://www.jmag-international.com/event/2023y/ecce2023/) - POWERSYS of JMAG Distributor will exhibit at ECCE2023. Overview Organizer IEEE Date Oct. 29(Sunday) – Nov. 2(Thursday) Venue MUSIC CITY CENTER (Nashville, USA) Booth number 436 URL https://global.powersys-solutions.com/events/event-detail/?type=exhibitions&eventid=1328 Tuesday, October 31 Poster Session 2 10:30AM-12:10PM “Multi-Disciplinary Optimization of an Electrically Excited Synchronous Motor” Hiroyuki Sano, Katsuyuki Narita, Kazuki Semba, Yusaku Suzuki and Takashi Yamada Wednesday, - [TECHNO-FRONTIER 2015](https://www.jmag-international.com/event/2015y/2015_techno_frontier/) - Overview Host Japan Management Association Date Wednesday, May 20 - Friday May 22, 2015 Venue Makuhari Messe (Chiba, Japan) Booth No: 1.1/D10 URL http://www.jma.or.jp/tf/en/ TECHNO-FRONTIER is the largest specialist trade show in Asia where development designers and production engineers gather from a wide variety of fields, including motor technologies, EMC and noise reduction. JMAG's - [STAR Japanese Conference 2015](https://www.jmag-international.com/event/2015y/2015_star_japanese_conf/) - Overview Host CD-adapco Date Tuesday June 2, 2015 - Wednesday June 3, 2015 Venue YOKOHAMA ROYAL PARK HOTEL (Yokohama, Japan) URL http://www.cd-adapco.com/node/7560/ STAR Japanese Conference is a conference for Japanese companies hosted by CD-adapco Corporation. The JMAG booth will introduce coupled thermal fluid and electromagnetic field analysis between STAR-CCM+ and JMAG. Combining magnetic field analysis - [MATLAB EXPO 2015 Japan](https://www.jmag-international.com/event/2015y/2015_matlab_expo/) - We will be holding a booth again at this year's MATLAB EXPO. At the JMAG booth, you can have hands-on experience with JMAG-RT and see firsthand its ability to integrate with MATLAB/Simulink. Please visit our booth to see for yourselves the value of running a coupled analysis. For more information on JMAG-RT Overview Host MathWorks - [ECCE2015](https://www.jmag-international.com/event/2015y/ecce2015/) - ECCE (Energy Conversion Congress and Exposition) is a society sponsored by IEEE that focuses on energy. Presentations of JMAG's newest functions, case studies, as well as design demonstrations of JMAG-Express and JMAG-RT Viewer, will be given at our booth. Overview Host IEEE Date Sunday, September 20, - Thursday, September 24, 2015 Venue Palais des congrès - [The Magnetics Society of Japan - Annual Conference](https://www.jmag-international.com/event/2015y/2015_magnetics_conference/) - Overview Host The Magnetics Society of Japan Date Tuesday, September 8 - Friday, September 11, 2015 Venue Nagoya University School of Engineering (Aichi, Japan) URL https://www.magnetics.jp/kouenkai/2015/ (Japanese only) Mr. Yamada from JSOL will host a lecture titled "Finite Element Analysis for Electromechanical Design". The history of FEM and JMAG's involvement will be discussed. Event - [2015 IEE-Japan Industry Applications Society Conference](https://www.jmag-international.com/event/2015y/2015_iee_jiasc/) - We will participate in the IEE-Japan Industry Applications Society Conference business exhibition. Beginning with an introduction of JMAG-Designer Ver.14.1, there will be a demonstration as well as advice for increasing efficiency of your work such as optimization. Please drop by at the JMAG booth when participating in the conference. Overview Host The Institute of Electrical - [JMAG Users Conference in Taiwan](https://www.jmag-international.com/event/2015y/2015_taiwanuc/) - Greeting A JMAG Users Conference will be held in Taiwan. We will discuss the latest information on the recently released JMAG-Designer Ver.14.1. This is an excellent chance to gain insight on current trends and utilization strategies for electromagnetic field analysis. We look forward to your attendance. Overview Organizer FLOTREND CORPORATION Dates August 25th, 2015 Venue - [CWIEME Berlin 2015](https://www.jmag-international.com/event/2015y/2015_cwieme_berlin/) - CWIEME, known to be one of the world's largest exhibitions, gathers various products related to coils such as winding machines, motor stators and insulating paper. The JMAG booth will have demonstrations focused on JMAG-Designer Ver.14.1 released in June, as well as analysis case studies of motors and transformers. Please come to the booth to see - [Design of Brushless Permanent Magnet Machines | Training course](https://www.jmag-international.com/event/2015y/2015_dobpmm/) - POWERSYS is pleased to invite you to a course especially prepared by Professor Tim Miller. Objectives Professor Tim Miller has 45 years' experience in the electrical engineering industry and as manager and leader of research laboratories at the University of Glasgow and at General Electric (USA), where he was a member of the team that - [The 2015 Annual Meeting of The Institute of Electrical Engineers of Japan](https://www.jmag-international.com/event/2015y/2015_iee_am/) - Overview Host The Institute of Electrical Engineers of Japan Date Tuesday March 24, 2015 - Thursday March 26, 2015 Venue TOKYO CITY UNIVERSITY Setagaya Campus (Tokyo, Japan) URL http://www.iee.jp/ We will hold an exhibition at The 2015 Annual Meeting of the Institute of Electrical Engineers of Japan. We will be introducing our latest software, - [STAR Global Conference 2015](https://www.jmag-international.com/event/2015y/2015_star_global_conf/) - We will hold an exhibition at the Global Conference hosted by CD-adapco. The JMAG booth will introduce the linking function between electromagnetic field and thermal fluid of STAR-CCM+ and JMAG. By combining magnetic field analysis with thermal analysis, not only will it allow product evaluation through magnetic field analysis, it will allow evaluations from various - [JMAG Users Conference in China](https://www.jmag-international.com/event/2015y/2015_chinauc/) - Greeting We are pleased to announce the fifth JMAG Users Conference in China. Case study presentations by users and case study presentations of how to solve future technical issues are expected at the event. This will be an excellent opportunity to collect information on technical trends and application cases of electromagnetic field analysis. We look - [JMAG Users Conference in USA](https://www.jmag-international.com/event/2015y/2015_usauc/) - Greeting We will host a JMAG User's Conference in the United States. The conference will be held over two days; the first day will be a "technical day", and user presentations will shown on the second day. We will also hold training with a focus on JMAG features. This will be a great opportunity to - [CWIEME Chicago 2015](https://www.jmag-international.com/event/2015y/cwieme-chicago-2015/) - CWIEME, known to be one of the world's largest exhibitions, gathers various products related to coils such as winding machines, motor stators and insulating paper. At the JMAG booth, we will be doing demonstrations of motor and transformer analysis case examples using JMAG-Designer Ver.14.1. We hope you check of the latest use cases. Overview Host - [JMAG Users Conference in Germany](https://www.jmag-international.com/event/2015y/2015_europeanuc/) - Greeting We will be hosting the JMAG Users Conference in Germany. The event will take place over 2 days: day one will be technical day, and day two will have user presentations. Training focused on the functions will also be provided. Professor Tim Miller from Glasgow University will be making the keynote presentation, and will - [Integrated Electrical Solutions Forum (IESF)](https://www.jmag-international.com/event/2015y/2015_iesf/) - Overview Host Mentor Graphics Date Monday May 19, 2015 Venue Ford Motor Company (Detroit, USA) URL http://www.mentor.com/events/iesf/detroit/ Integrated Electrical Solutions Forum is an exhibition of integrated design environments for electrical-machine design for automobile makers hosted by Mentor Graphics Corporation. We will be presenting a link case study of JMAG-RT and SystemVision that will generate high-speed - [CWIEME Berlin 2024](https://www.jmag-international.com/event/2024y/2024_cwieme_berlin/) - The POWERSYS and JSOL teams will exhibit at CWIEME 2024 the new features of JMAG, the comprehensive software suite for electromechanical equipment design and development. - [JMAG-Designer Web Seminar in KOREA](https://www.jmag-international.com/event/2020y/2020_korea_webseminar/) - Invitation Organizer EMDYNE Inc. Date November 20 (Friday), 2020 Location Online Registration On-Line Registration URL http://emdyne.co.kr/ Contact EMDYNE Inc. TEL: 82-70-7583-9792 E-mail: info@emdyne.co.kr - [JMAG Users Conference & Training 2024 In Germany](https://www.jmag-international.com/event/2024y/2024_germanyuc/) - This is to announce that the Europe JMAG distributor POWERSYS will be holding the JMAG Users Conference in Germany. The conference will be held over two days; the first day will be Training, and JMAG Users Conference will consist of the second day. This event is a unique opportunity to engage with industry leaders and - [ECCE2024](https://www.jmag-international.com/event/2024y/ecce2024/) - We will be run a booth at the ECCE2024 (IEEE ENERGY CONVERSION CONGRESS & EXPO). ECCE is the pivotal international conference and exposition event on electrical and electromechanical energy conversion. We look forward to seeing you there. Overview Organizer IEEE Date Oct. 20(Sunday) – Oct. 24(Thursday) Venue Phoenix Convention Center (Phoenix, USA) Booth number 203 - [JMAG Users Conference 2024 in Shanghai](https://www.jmag-international.com/event/2024y/2024_shanghaiuc/) - We are pleased to announce the JMAG Users Conference in China. Overview Organizer ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 Dates Nov 13-14, 2024 Location Grand Soluxe Zhongyou Hotel Shanghai No.969 Dongfang Road, Pudongxin District, Shanghai, Shanghai URL https://www.atic-cn.cn/article/events/1023.html (Chinese Only) Program November 13th, November 14th November 13th China(CST) Japan(JST) Content 09:30 10:30 Design of motor robustness based - [JMAG Users Conference 2024 in Korea](https://www.jmag-international.com/event/2024y/2024_koreauc/) - This is to announce that the Korea JMAG distributor EMDYNE will be holding the JMAG Users Conference 2024 in Korea. We look forward to your participation. Overview Organizer EMDYNE Inc. Date October 31th 2:00pm to 8:00pm (KST) Location Courtyard by Marriott Seoul Pangyo (Seoul, Korea) URL http://emdyne.co.kr/?page_id=205 (Korean only) Agenda TimeKST/JST Content 14:00-14:20 Registration 14:20-14:30 - [JMAG Users Conference 2023 in Korea](https://www.jmag-international.com/event/2023y/2023_koreauc/) - This is to announce that the Korea JMAG distributor EMDYNE will be holding the JMAG Users Conference 2023 in Korea. We look forward to your participation. Overview Organizer EMDYNE Inc. Date September 21th 1:30pm (KST) Location Courtyard by Marriott Seoul Pangyo (Seoul, Korea) URL http://emdyne.co.kr/?page_id=205 (Korean only) Agenda TimeKST/JST Content 13:30-14:00 Registration 14:00-14:10 Opening Speech - [JMAG Users Conference 2021 in Korea](https://www.jmag-international.com/event/2021y/2021_koreauc/) - This is to announce that the Korea JMAG distributor EMDYNE will be holding the JMAG Users Conference in Korea. We look forward to your participation. Overview Organizer EMDYNE Inc. Date September 30th, 2021 Location Online URL http://emdyne.co.kr/ Agenda TimeKST/JST Content 14:00-14:40 JMAG New Features Pyoung-Won Yoon EMDYNE 14:40-15:10 Lumped Force Method, Calculation of electromagnetic force - [JMAG Users Conference 2024 in Taiwan](https://www.jmag-international.com/event/2024y/2024_taiwanuc/) - This is to announce that the Taiwan JMAG distributor Jotactic Mobility Consulting Co., Ltd. will be holding the JMAG Users Conference 2024. We look forward to your participation. Overview Organizer Jotactic Mobility Consulting Co., Ltd. Dates Thursday, September 12, 2024 from 9:30-16:30 (CST) Venue GIS Taipei Tech Convention Center (Taipei, Taiwan) URL https://jotactic.com/seminar_2024jmag/ (Only Chinese) Agenda - [2014](https://www.jmag-international.com/event/2014y/) - Date Category Title Venue Report Dec 05 Presentation Exhibition Mentor Graphics Japan Co., Ltd.IESF2014 Japan (Tokyo) Tokyo, Japan Event Report Dec 03-04 Users Conference JMAG Users Conference 2014 Tokyo, Japan Dec 02 Presentation Exhibition Mentor Graphics Japan Co., Ltd.IESF2014 Japan (Nagoya) Nagoya, Japan Event Report Nov 18 Users Conference IDAJ-China Co.,LTD.ICSC2014 Shanghai, China Event Report - [2015](https://www.jmag-international.com/event/2015y/) - Date Category Title Venue Report December 08-09 UsersConference JMAG Users Conference 2015 Tokyo, Japan December 02,04 Presentation,Exhibition Mentor Graphics Japan Co., Ltd.IESF 2015 Japan Aichi, Japan (Dec. 02)Tokyo, Japan (Dec. 04) Event Report November 26 Exhibition Siemens Japan K.K.Siemens PLM - Simulation & Test Performance Engineering Conference Tokyo, Japan Event Report November 24 UsersConference IDAJ-China - [NIWeek 2019](https://www.jmag-international.com/event/2019y/niweek-2019/) - NIWeek is an enormous conference held every year by National Instruments, bringing together approximately 3500 engineers from around the world. Overview Organizer National Instruments Corporation Dates From May 20 (Monday) until May 23 (Thursday) 2019 Location Austin Convention Center (Austin, USA) URL http://niweek.ni.com/events/niweek-2019/custom-139-d97121d09fd640009495a009a677af56.aspx He will make a speech at the EV Session Series Part 2 - [Advanced AC Drive Designs Using FEA to Achieve High Performance Control](https://www.jmag-international.com/event/2010y/2010_advanced-ac/) - Objectives and Benefits You are invited to attend this complementary seminar to learn how to overcome challenges in improving the accuracy of AC Machine Drive Designs, including Sensor-less Drives. This course will show you how to use finite element analysis to gain deeper insight into the induced voltage and inductance required to obtain the rotation - [TECHNO-FRONTIER 2011](https://www.jmag-international.com/event/2011y/techno-frontier-2011/) - TECHNO-FRONTIER 2011 MOTORTECH JAPAN 2011 Exhibition Introduction Accurate modeling is required to correctly analyze and capture complex phenomena occurring in motors. JMAG-Designer offers innovative solutions for incorporating various material properties and a broad-range of complex phenomena from magnetic field analyses to thermal and structural analysis. The features built into JMAG-Designer that assist in a standardizing - [Coil Winding, Insulation & Electrical Manufacturing Exhibition](https://www.jmag-international.com/event/2011y/2011-coil-winding/) - Introduction JMAG will be on display once again at the Coil Winding, Insulation & Electrical Manufacturing Exhibition held in Germany. This conference combines coil windings, insulation, and electrical machines drawing more than 4,500 participants. At the exhibition this year, JMAG-Designer will be on display along with the latest application examples. The highly praised presentations offered - [2010](https://www.jmag-international.com/event/2010y/) - Date Title Venue December 9-10 JSOL CORPORATION JMAG Users Conference in Tokyo 2010 Japan November 29 December 13,15 POWERSYS FEM-Assisted Modeling Analysis Design and Control of Electric Machines Germany October 19 FLOTREND CORPORATION JMAG Seminar 2010 Taiwan October 18-20 ELECTRICAL MANUFACTURING & COIL WINDING EXPO Grapevine, USA September 12-16 IEEE Energy Conversion Congress and Exposition - [2016](https://www.jmag-international.com/event/2016y/) - Date Category Title Venue Report December 7-8 UsersConference JMAG Users Conference 2016 Tokyo, Japan November 29, December 1 Presentation,Exhibition Mentor Graphics Japan Co., Ltd.IESF 2016 (Integrated Electrical Solution Forum 2016) Japan Tokyo, Japan (Nov. 29) Aichi, Japan (Dec. 1) Event Report November 23 UsersConference IDAJ-China Co.,LTD.JMAG Users Conference in China Beijing, China Event Report - [2008](https://www.jmag-international.com/event/2008y/) - Date Title Venue December 10-11 JRI Solutions JMAG Users Conference in Tokyo 2008 Japan November 6 Flotrend JMAG Users Conference in Taiwan 2008 Taiwan November 5 Powersimtech Korea Inc. PSIM User Conference 2008 in Korea Korea October 27-30 17th IFHTSE Congress 2008 Kobe,Japan October 17-20 Powersimtech Korea Inc. The 11th International Conference on Electrical Machines - [Electromagnetic field analysis application technologies for motor design](https://www.jmag-international.com/event/2015y/2015_motordesign_technology/) - Overview Host Kodo Polytech Center Date Thursday, September 17 - Friday, September 18, 2015 Venue Kodo Polytech Center (Chiba, Japan) URL http://www.apc.jeed.or.jp/seminar/course/15semiP024.html (Japanese only) Mr. Nishio from JSOL will present on electromagnetic field analysis application technologies using JMAG. Participants will have hands-on experience learning methods to create a plant model extremely similar to the physical - [NI Week 2015](https://www.jmag-international.com/event/2015y/2015_ni_week/) - Overview Host National Instruments Corporation Date Monday, August 3 - Thursday, August 6, 2015 Venue Austin Convention Center (Texas, USA) URL http://www.ni.com/niweek/ NI Week is a yearly conference held by National Instruments Corporation, and sees around 3600 engineers from countries around the world gathered under one big conference roof. JMAG's booth will present a linked - [2018](https://www.jmag-international.com/event/2018y/) - Date Category Title Venue Report Dec 05-06 Users Conference JMAG Users Conference 2018 Japan Nov 14-15 Users Conference IDAJ-China Co.,LTD. User Conference in China China, Shanghai Oct 30 Exhibition The MathWorks, Inc. MATLAB EXPO2018 JAPAN Japan Oct 26 Exhibition Power electronics association Power electronics technician training forum 2018 / PSIM User Conference - [ICEM 2024 (International Conference on Electrical Machines)](https://www.jmag-international.com/event/2024y/icem2024/) - We will be run a booth at the ICEM 2024 (International Conference on Electrical Machines). Overview Organizer ICEM Dates September 1-4, 2024 Location Politecnico di Torino (Torino, Italy) Booth number 17 URL https://old.symposium.it/en/events/2024/26th-international-conference-on-electrical-machines-icem-2024 JMAG related presentations TUTORIALS September 1 16:00-18:30 Tutorial 08: Advanced Massive Simulation and Optimization of Electrical Machines for E-mobility Segment Presenters: Takashi - [ITEC 2023](https://www.jmag-international.com/event/2023y/itec-2023/) - Powersys is excited to participate in ITEC 2023, offering a remarkable platform to present our state-of-the-art turnkey CAE design factory. With over 20 years of expertise in electrical engineering, we bring a wealth of knowledge and experience to the table. The cutting-edge electromagnetics simulation toolchain, JMAG, and our powerful computing capabilities further enhance our offering. - [JMAG Midwest Regional Meeting](https://www.jmag-international.com/event/2014y/2014_usa_jmag-seminar/) - Overview Organizer POWERSYS Inc. Dates October 14th, 2014 Venue HILTON LISLE/NAPERVILLE (Chicago, USA) URL http://www.powersys-solutions.com/event/jmag-seminar-chicago-il/ Program 07:45 Continental breakfast starts 08:30 Opening Remarks 08:45 JMAG Research at IIT 09:15 JMAG Road Map - Dr. Yamada from JSOL 10:00 Coffee Break 10:30 JMAG for high powered computing 11:15 Accurate Loss calculation 12:00 Lunch 13:00 Efficient Use - [NIWeek 2014](https://www.jmag-international.com/event/2014y/2014_niweek/) - Overview A booth will be open. Host National Instruments Corporation Date Monday, August 4 - Thursday, August 7 Venue Austin Convention Center (Texas, United States) Booth number: 1010 URL http://www.ni.com/niweek/ NI WEEK is a large conference gathering approximately 3600 engineers worldwide. At the JMAG booth, we will introduce coupling cases between motor HILS of NI - [Synopsys Saber seminar](https://www.jmag-international.com/event/2014y/2014_saber_seminar/) - Overview Host Nihon Synopsys G.K. Date Friday October 31, 2014 Venue Nagoya Marriott Associa Hotel (Aichi, Japan) URL http://www.synopsys.com/Japan/events/Pages/saber-seminar.aspx We will be presenting coupling case studies of Saber and JMAG-RT in the seminar, "Introducing model-based design with highly efficient motor model JMAG-RT" at the Synopsys Saber Seminar. Event Report We held a presentation at Synopsys - [Saber seminar](https://www.jmag-international.com/event/2015y/2015_saber_seminar/) - Overview Host Nihon Synopsys G.K. Date Friday March 6, 2015 Venue Nihon Synopsys G.K. Tokyo headquarters (Tokyo, Japan) URL http://www.synopsys.com/Japan/events/Pages/saber-seminar-tokyo2015.aspx (Japanese only) The Saber seminar is a seminar hosted by Nihon Synopsys. Mr.Suzuki from JSOL will be making a presentation titled "The Need for JMAG-RT in Drive Motor ECU Development." Electromagnetic field analysis software, JMAG, - [Optimus-JMAG cooperation solution seminar 2015](https://www.jmag-international.com/event/2015y/2015_optimus_jmag_seminar/) - Overview Host CYBERNET SYSTEMS CO.,LTD. Date Tuesday April 21, 2015 Venue CYBERNET SYSTEMS CO.,LTD. Tokyo headquarters 18F seminar room (Tokyo, Japan) URL https://www.cybernet.co.jp/noesis/seminar_event/special/jmag2015/ (Japanese only) Optimus -JMAG Coupling Solution Seminar is a seminar hosted by Cybernet Systems Co., Ltd. Mr.Nishio from JSOL Corporation will be making a presentation titled "Optimization Case Studies of Reactor - [SIMULIA Community Conference](https://www.jmag-international.com/event/2015y/2015_simulia_cc/) - Overview Host SIMULIA - Dassault Systemes Date Monday May 18, 2015 - Thursday May 21, 2015 Venue InterContinental Hotel (Berlin, Germany) URL http://www.3ds.com/events/simulia-community-conference/overview/ SIMULIA Community Conference is a conference hosted by SIMULIA Corporation. The JMAG booth will be introducing coupled structural and electromagnetic field analysis between Abaqus and JMAG. Combining magnetic field analysis and structural - [JMAG Users Conference 2024 in India](https://www.jmag-international.com/event/2024y/2024_indiauc/) - This is to announce that the India JMAG distributor PWSIM(POWERSYS) will be holding the JMAG Users Conference in India. This event is a unique opportunity to engage with industry leaders and experts at the forefront of electric motor innovation. We look forward to your participation. Overview Organizer Powersys Dates - Advanced e-Motor Design Conference Jul. - [2013](https://www.jmag-international.com/event/2013y/) - Date Title Venue Dec 4-5 JMAG Users Conference 2013 Tokyo, Japan Nov 14Synopsys, Inc. Synopsys Automotive Solutions Seminar Detroit, USA Nov 12-13 IDAJ-China Co., LTD.ICSC2013 (IDAJ CAE Solution Conference) Beijing, China Nov 05-07 SMMA SMMA 2013 Fall Technical Conference Florida, USA Nov 01 EMDYNE Inc. JMAG Users Meeting in Korea Seoul, Republic of Korea Oct - [2012](https://www.jmag-international.com/event/2012y/) - Date Title Venue Dec 12-13 JMAG Users Conference 2012 Tokyo, Japan Nov 29 POWERSYS JMAG-Designer V12 Online Webinar Online Nov 22 LMS and POWERSYS JMAG-LMS Virtual.Lab Seminar Paris, France Nov 19-20 IDAJ CAE Solution Conference Shanghai, China Nov 11-14 CEFC2012 Oita, Japan Oct 25 Mentor Graphics Integrated Electrical Solutions Forum(IESF)China Automotive 2012 Shanghai, China Oct - [SIMULIA Community Conference](https://www.jmag-international.com/event/2014y/2014_scc/) - Overview Host Dassault Systemes SIMULIA Date Tuesday, May 20 - Thursday, May 22, 2014 Venue Rhode Island Convention Center (Rhode Island, United States) URL http://www.3ds.com/events/simulia-community-conference/overview/ We will host an exhibition at SIMULIA Conference like last year. At the JMAG booth, we will introduce case examples for clients considering mechanical design / thermal design simultaneously, and - [2023](https://www.jmag-international.com/event/2023y/) - Date Category Title Venue 25 Dec Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.044] Online 6-7 Dec User Conference JMAG Users Conference 2023 Japan: Tokyo 27 Nov Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.043] Online 15-16 Nov User Conference ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 JMAG Users Conference 2023 in - [2022](https://www.jmag-international.com/event/2022y/) - Date Category Title Venue 26 Dec Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.032] Online 7-8 Dec User Conference JMAG Users Conference 2022 Japan: Tokyo 30 Nov-2 Dec User Conference IDAJ-China Co.,LTD IDAJ Conference Online 2022 in Shanghai Online (China: Shanghai) 28 Nov Webinar Prof. Miller On-demand Webinar: Brush up on Motor - [2021](https://www.jmag-international.com/event/2021y/) - Date Category Title Venue Dec 21 Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.020] Online Dec 1-10 User Conference JMAG Users Conference 2021 Hybrid Online, Tokyo Dec 1-3 User Conference IDAJ-China Co.,LTD. JMAG Users Conference 2021 in China Online Nov 29 Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.019] - [2020](https://www.jmag-international.com/event/2020y/) - Date Category Title Venue Dec 22 Webinar Prof. Miller On-demand Webinar: Brush up on Motor Design! [Vol.008] Online Dec 3 - 4 User Conference IDAJ-China Co.,LTD IDAJ CAE Solution Conference 2020 in Shanghai Online Nov 24 - Dec 11 User Conference JMAG Users Conference 2020 Online Online Nov 30 Webinar Prof. Miller On-demand Webinar: Brush - [2019](https://www.jmag-international.com/event/2019y/) - Date Category Title Venue Report Dec 06 Exhibition Prometech Simulation Conference 2019 Tokyo, Japan Dec 04-05 Users Conference JMAG Users Conference 2019 Tokyo, Japan Nov 20-21 Users Conference IDAJ-China Co.,LTD. IDAJ CAE Solution Conference 2019 in Shanghai China : Shanghai Oct 15-17 Users Conference POWERSYS JMAG Users Conference & Workshop 2019 in - [China Road Show 2024](https://www.jmag-international.com/event/2024y/2024_china_seminar/) - Greeting We would like to inform you that we will be holding a China seminar in Changchun, Beijing, Shanghai, Shenzhen. Each site provides an introduction of the new functions released in the latest version of JMAG V23.1, V23.0 as well as examples of solutions to future technical issues. It will be a great opportunity to - [JMAG Users Conference & Workshop 2024 in USA](https://www.jmag-international.com/event/2024y/2024_usauc/) - This is to announce that the North America JMAG distributor POWERSYS will be holding the JMAG Users Conference in Detroit. The conference will be held over second days; the first day will be Workshop, and JMAG Users Conference will consist of the second day. This will be a great opportunity to gain information on electromagnetic - [Automotive Engineering Exposition 2018 Nagoya](https://www.jmag-international.com/event/2018y/2018_expo-nagoya/) - Our company has found itself in the midst of rapid preparations for the Automotive Engineering Exposition 2018 Nagoya exhibition which is opening soon. Here we will introduce one panel to be displayed from the contents of the JMAG booth. The JMAG team continues to make progress in product development from the perspective of how to - [JMAG Users Conference & Training 2023 In Germany](https://www.jmag-international.com/event/2023y/2023_germanyuc/) - The Conference is a premier event that brings together EV automotive professionals and EM design experts to discuss the latest advances in the field of electric motor design using finite element analysis (FEA) and multi-systems simulation software. - [Siemens PLM - Simulation & Test Performance Engineering Conference](https://www.jmag-international.com/event/2015y/2015_siemens_plm/) - We will be holding a booth again at this year's Siemens PLM - Simulation & Test Performance Engineering Conference. At the JMAG booth, you can see live demonstrations of coupled analyses with JMAG-RT and LMS Virtual Lab. Please visit our booth to see for yourselves the value of running a coupled analysis. Overview Host Siemens - [TECHNO-FRONTIER 2019](https://www.jmag-international.com/event/2019y/2019_techno_frontier/) - We will exhibit at the TECHNO-FRONTIER 2019 37th MOTORTECH JAPAN exhibition, which will be held at Makuhari Messe from April 17 (Wed) to April 19 (Fri), 2019. At the JMAG booth, we will present topics on analysis technology and examples, focusing on model-based design and development of motors. Main Exhibit That which is required of - [2011](https://www.jmag-international.com/event/2011y/) - Date Title Venue December 7-8 JSOL CORPORATIONJMAG Users Conference 2011 Japan November 8-10 SMMA Fall Technical Conference Charlotte, North Carolina - USA October 19-20 Virtual Powertrain India Conference 2011 India October 9-13 IAS 2011 Conference Annual Meeting (IAS) Orlando, FL - USA September 18-22 IEEE Energy Conversion Congress and Exposition (ECCE) Phoenix, Arizona - [the Asian Congress of Structural and Multidisciplinary Optimization 2024 (ACSMO2024)](https://www.jmag-international.com/event/2024y/acsmo2024/) - JSOL will Presentation at ACSMO2024, an international conference on structural and multidisciplinary optimal design, focusing on Asia. Please drop by if you are interested in attending this congress. Monday,May 20,2024 17:20-17:40 1D2-5 [D20317] “Mixed-variable IPM Motor Design Optimization Using an RBF Surrogate Model” When we consider the large design space of IPM motors, discrete integer - [International Symposium on Electromagnetic Fields (ISEF 2017)](https://www.jmag-international.com/event/2017y/2017_isef/) - Mr. Katagiri from JSOL will Presentation "Fast Copper Loss Calculation in Three-phase Synchronous Motor by Zooming Method" at the ISEF 2017, hosted by IEEE. Please drop by if you are interested in attending this symposium. Overview Host IEEE Date Thursday, September 14 - Saturday, September 16, 2017 Venue Lodz University of Technology (Lodz, Poland) URL - [JMAG Users Conference in China](https://www.jmag-international.com/event/2017y/2017_chinauc/) - We are pleased to announce the seventh JMAG Users Conference in China. The conference will be held over two days; the first day will be advanced seminar, and user presentations will shown on the second day. Case study presentations by users and case study presentations of how to solve future technical issues are expected at - [ECCE 2019](https://www.jmag-international.com/event/2019y/ecce2019/) - ECCE 2019 is the pivotal international conference and exposition event on electrical and electromechanical energy conversion field. In that frame, Powersys will present its Electromagnetics, power electronics and system-level solutions. We hope to see you there. Overview Organizer IEEE Date September 29 - October 03 Venue Hilton Baltimore Inner Harbor, 401 West Pratt Street, Baltimore, - [ECCE 2014](https://www.jmag-international.com/event/2014y/ecce2014/) - Overview Host IEEE Date Sunday, September 14 - Thursday, September 18, 2014 Venue David L. Lawrence Convention Center (Pittsburgh, U.S.) URL https://www.ieee-ecce.org/ ECCE (Energy Conversion Congress and Exposition) is a society sponsored by IEEE that focuses on energy. Presentations of JMAG's newest functions, as well as design demonstrations of JMAG-Express and JMAG-RT Viewer, will be - [IESF 2015 Japan](https://www.jmag-international.com/event/2015y/2015_iesf_j/) - We will host an exhibition and presentation at IESF 2015 Japan like last year. The JMAG booth will be demonstrating high-accuracy simulation of MILS/SILS/HILS using a highly-accurate motor model from JMAG-RT. Please check out the usability of JMAG-RT. Overview Host Mentor Graphics Japan Co., Ltd. Date, Location Wednesday, December 2nd, 2015 Midland Hall (Japan: Aichi - [JMAG Users Conference 2023 in Shanghai](https://www.jmag-international.com/event/2023y/2023_shanghaiuc/) - We are pleased to announce the JMAG Users Conference in China. Overview Organizer ATIC-China Co., Ltd. 艾迪捷信息科技(上海)有限公司 Dates Nov 15-16, 2023 Location Shanghai URL http://www.idaj.cn/news/show/id/4715 (Chinese Only) Program November 15th / November 16th November 15th China(CST) Japan(JST) Content 10:00 11:00 The Effect of High Voltage 800V on the Performance of EV Motor | Li weiya, - [IDAJ CAE Solution Conference 2019 in Shanghai](https://www.jmag-international.com/event/2019y/2019_chinauc/) - Greeting We are pleased to announce the 9th JMAG Users Conference in China. The conference will be held over two days; the first day will be advanced seminar, and user presentations will shown on the second day. Case study presentations by users and case study presentations of how to solve future technical issues are expected - [JMAG Users Conference in China](https://www.jmag-international.com/event/2018y/2018_chinauc/) - Greeting We are pleased to announce the eighth JMAG Users Conference in China. The conference will be held over two days; the first day will be advanced seminar, and user presentations will shown on the second day. Case study presentations by users and case study presentations of how to solve future technical issues are expected - [IDAJ Conference Online 2022 in Shanghai](https://www.jmag-international.com/event/2022y/2022_shanghaiuc/) - We are pleased to announce the JMAG Users Conference in China. Overview Organizer IDAJ-China Co.,LTD. Dates Nov 30-Dec 2, 2022 Location Online (Shanghai) URL http://www.idaj.cn/news/show/id/4701 (Chinese Only) Program https://www.jmag-international.com/jp/event/2022y/2022_shanghaiuc/ (Japanese only) Reference material for JSOL presentation materials Bharadwaj Raghuraman, Shafigh Nategh, Topology Optimization of Electric Machines for E-mobility Applications, JMAG Users Conference 2021 This presentation - [IDAJ CAE Solution Conference 2020 in Shanghai](https://www.jmag-international.com/event/2020y/2020_shanghaiuc/) - We are pleased to announce the 10th JMAG Users Conference in China. Overview Organizer IDAJ-China Co.,LTD. Dates December 03 (Thursday), 04 (Friday) 2020 Location Online URL http://www.idaj.cn/news/show/id/4615 (Chinese Only) Program DAY1 December 03 (Thursday), 2020 Time Content 09:25 Opening 09:30 Development planning of JMAG icon-building JSOL Corporation 10:30 Application of electromagnetic field simulation in Japanese industry - [IDAJ CAE Solution Conference 2014 (Advanced Forum on Electromagnetic Fields and Motor simulation)](https://www.jmag-international.com/event/2014y/2014_chinauc/) - Greeting We are pleased to announce the fourth China JMAG User's Conference. The latest version of the motor design tool JMAG-Express will be revealed, and presentations discussing case studies for resolving future technical challenges will be held. This is an excellent chance to gain insight on current trends and utilization strategies for electromagnetic field analysis. - [CWIEME Berlin 2018](https://www.jmag-international.com/event/2018y/2018_cwieme_berlin/) - The solutions that JMAG offers in design-based workflow for automobile motor drive systems will be presented on panels displayed at the JMAG booth. What is required for a motor, which is the key component in vehicle electrification, is not only high performance as a component but also high conformance with the system. Model-based development using - [IESF 2016 (Integrated Electrical Solution Forum 2016) Japan](https://www.jmag-international.com/event/2016y/2016_iesf_j/) - Overview Host Mentor Graphics Japan Co., Ltd. Tokyo Nagoya Date Tuesday, November 29th, 2016 Thursday, December 1st, 2016 Venue Tokyo Conference Center Shinagawa (Japan: Shinagawa, Tokyo) Midland Hall (Japan: Nagoya, Aichi) Exhibition contents Simulation software for electromechanical design and development "JMAG" URL http://www.mentorg.co.jp/events/iesf/ (Japanese only) We will host an exhibition and presentation at IESF 2016 - [IESF2014 Japan](https://www.jmag-international.com/event/2014y/2014_iesf/) - Overview Host Mentor Graphics Japan Co., Ltd. Japan: Aichi / Nagoya Japan: Tokyo / Chiyoda Date Tuesday, December 2nd, 2014 Midland Hall Friday, December 5th, 2014 Station Conference Tokyo URL http://www.mentorg.co.jp/events/iesf/iesf2014/ Event Report IESF2014 Japan is a conference related to system simulation that targets automobiles hosted by Mentor Graphics Japan. With "connected engineering" as the - [Realize LIVE Japan 2019](https://www.jmag-international.com/event/2019y/realize_live_japan_2019/) - Overview Organizer Siemens PLM software Computational Dynamics K.K. Dates From July 10(Wednesday) to July 11(Thursday) 2019 Location The Westin Hotel Tokyo(Tokyo,Japan) URL https://www.plm.automation.siemens.com/global/ja/topic/realilzelive-tokyo-2019/56589 JMAG is electromagnetic field analysis software that analyzes complicated physical phenomena inside electrical machinery at high speed and with high accuracy. Since its release in 1983, it has been used by companies - [MATLAB EXPO 2024 JAPAN](https://www.jmag-international.com/event/2024y/2024-matlab-expo/) - We will be run a booth at the MATLAB EXPO 2024 in Japan. In JMAG-Designer Ver.23.1, an open winding model is added to JMAG-RT. The circuit and control simulators can now study the control of open winding motors, further expanding the range of applications for JMAG-RT. Overview Host The MathWorks, Inc. Date May 30, 2024 - [JMAG Users Conference 2019 in Taiwan](https://www.jmag-international.com/event/2019y/2019_taiwanuc/) - Overview Organizer FLOTREND CORPORATION Dates Tuesday August 27, 2019 Venue GIS NTU Convention Center (Taipei, Taiwan) URL https://www.flotrend.com.tw/seminar/2019-jmag-taiwan-users-conference/(Only Chinese) JMAG user conference will be hosted by our distributor, FLOTREND Corporation. Beginning with a keynote speech, there will be case studies introduced by JMAG users, as well as introducing the latest solutions using JMAG. Please join - [Automotive Engineering Exposition 2019 Yokohama](https://www.jmag-international.com/event/2019y/2019_expo/) - We have found ourselves in the midst of rapid preparations for the Automotive Engineering Exposition 2019 YOKOHAMA which is coming soon. Here we will introduce one panel to be displayed from the contents of the JMAG booth. At the JMAG booth, we will present topics on analysis technology and examples, focusing on model-based design and - [Siemens PLM - Simulation & Test Performance Engineering Conference](https://www.jmag-international.com/event/2014y/2014_siemens_plm/) - Overview Host Siemens Industry Software Simulation and Test K.K. Date Thursday November 13, 2014 Venue Tokyo Conference Center (Tokyo ,Japan) URL http://www.plm.automation.siemens.com/ja_jp/about_us/events_webinars/seminars/simulation-and-test-conference2014.shtml (Japanese only) We will host an exhibition at Siemens PLM - Simulation & Test Performance Engineering Conference. Presentation of JMAG and LMS Virtual Lab's coupling case studies will be given at our booth. Event - [CWIEME Berlin 2022](https://www.jmag-international.com/event/2022y/2022_cwieme_berlin/) - The POWERSYS and JSOL teams will exhibit at CWIEME 2022 the V21 new features of JMAG, the comprehensive software suite for electromechanical equipment design and development. INDEX | Overview | Booth | Video | Digital Paper | Overview Organizer Hyve Group PLC. Exhibitor POWERSYS Dates May 10th (Tuesday) to May 12th (Thursday) 2022 Location Messe Berlin, SOUTH ENTRANCE, Messedamm 22, D-14055 Berlin, Germany Booth - [Automotive Engineering Exposition 2019 Nagoya](https://www.jmag-international.com/event/2019y/2019_expo_nagoya/) - Following last year, we will exhibit at Automotive Engineering Exposition 2019 Nagoya. As with the Yokohama event held in May, the JMAG booth will focus on model-based design and development of drive motors such as electric vehicles, and will present demonstration of Ver. 18.1 planned for release in June, topics on analysis technologies and the - [STAR Japanese Conference 2017](https://www.jmag-international.com/event/2017y/2017_star_japanese_conf/) - Overview Host Siemens PLM Software (CD-adapco) Date Thursday July 6th - Friday June 7th, 2017 Venue YOKOHAMA ROYAL PARK HOTEL Banquet Building 3F main banquet hall "Hoh-Sho" (kanagawa, Japan) URL https://www.star-japanese-conference.com/ (Japanese only) STAR Japanese Conference is a conference for Japanese companies hosted by CD-adapco Corporation. The JMAG booth will present a coupled thermal fluid - [Prometech Simulation Conference 2019](https://www.jmag-international.com/event/2019y/psc_2019/) - Overview Organizer Prometech Software, Inc. Dates Decemver 06, 2019 (Friday) 10:00-18:00 Location Belle Salle Tokyo Nihonbashi URL https://www.prometech.co.jp/ - [TECHNO-FRONTIER 2018](https://www.jmag-international.com/event/2018y/2018_techno_frontier/) - Our company has found itself in the midst of rapid preparations for the TECHNO-FRONTIER exhibition which is opening soon. Here we will introduce one panel to be displayed from the contents of the JMAG booth. The JMAG team continues to make progress in product development from the perspective of how to better contribute actual design - [On-Demand Webinar: Simulating Torque Ripple for Motor Control System Design](https://www.jmag-international.com/event/2023y/webinar-mathworks/) - Join our webinar to explore torque ripple's significance in motor drive systems. Gain insights into its impact and discover how high-fidelity motor models using JMAG's Finite Element Analysis data can enhance understanding. Learn the workflow for integrating FEA data into Simscape Electrical to model spatial harmonics and address high-frequency loss accurately. Speakers: Shang-Chuan Lee, Ph.D., - [CWIEME Berlin 2023](https://www.jmag-international.com/event/2023y/2023_cwieme_berlin/) - The POWERSYS and JSOL teams will exhibit at CWIEME 2023 the new features of JMAG, the comprehensive software suite for electromechanical equipment design and development. INDEX / Overview / Booth / Free Motor Design Tool / Digital Paper / Overview Organizer Hyve Group PLC. Exhibitor POWERSYS Dates May 23th (Tuesday) to May 25th (Thursday) 2023 Location MESSE Berlin South Entrance (Berlin, Germany) Booth Number - [CWIEME Berlin 2019](https://www.jmag-international.com/event/2019y/2019_cwieme_berlin/) - Overview Organizer ITE Events Ltd. Dates From May 21st (Tuesday) to May 23rd (Thursday) 2019 Location Messe Berlin South Entrance (Berlin, Germany) Booth Number D10 /Hall 1.1 & A21 / Hall 3.1 URL https://global.powersys-solutions.com/events/event-detail/?type=conferences&eventid=885 CWIEME is known to be one of the world’s largest exhibitions of it’s kind, gathering products related to coil such as - [TECHNO-FRONTIER 2020](https://www.jmag-international.com/event/2020y/2020_techno_frontier/) - Exhibition Summary Days September 08 (Tuesday) to September 18 (Friday), 2020 Venue Online Organized by Japan Management Association URL https://www.jma.or.jp/tf/ (Japanese) - [JMAG Users Conference 2023 in Taiwan](https://www.jmag-international.com/event/2023y/2023_taiwanuc/) - This is to announce that the Taiwan JMAG distributor Jotactic Automotive Consulting Co., Ltd. will be holding the JMAG Users Conference 2023. We look forward to your participation. - [ECCE2022](https://www.jmag-international.com/event/2022y/ecce2022/) - POWERSYS of JMAG Distributor will exhibit at ECCE2022. Overview Organizer IEEE Date October 9 (Sunday) – October 13 (Thursday) Venue HUNTINGTON PLACE (Detroit, USA) Booth number 406 URL https://global.powersys-solutions.com/events/event-detail/?type=exhibitions&eventid=1283 Session S15: PM and IPM Motor Drives Monday, October 10 Room: 140C 3:10PM "A New AC loss Modeling for Motor Model on MILS Toward Control Parameter - [JMAG Users Conference 2022 in Taiwan](https://www.jmag-international.com/event/2022y/2022_taiwanuc/) - This is to announce that the Taiwan JMAG distributor WisEnergy will be holding the JMAG Users Conference 2022 in Hybrid. We look forward to your participation. Overview Organizer WisEnergy Inc. Dates Thursday, September 15, 2022 (9:00-16:30 CST) Venue Hybrid mode: - Physical User Conference (Location: AJ Hotel , Hsinchu) - Online URL https://sites.google.com/wisenergy.com.tw/jmag/event/2022UC (Only Chinese) Agenda - [JMAG Users Conference 2023 in India](https://www.jmag-international.com/event/2023y/2023_indiauc/) - This is to announce that the India JMAG distributor PWSIM will be holding the JMAG Users Conference 2023. The conference will have the chance to discover the latest developments of JMAG in electromagnetic design simulation and to listen real user cases studies. We look forward to your participation. Overview Organizer PWSIM Dates Recent Advances in - [JMAG Users Conference 2022 in Korea](https://www.jmag-international.com/event/2022y/2022_koreauc/) - This is to announce that the Korea JMAG distributor EMDYNE will be holding the JMAG Users Conference in Korea. We look forward to your participation. Overview Organizer EMDYNE Inc. Date October 27th at 1:30pm (KST) Location Courtyard by Marriott Seoul Pangyo (Seoul, Korea) URL http://emdyne.co.kr/?page_id=205 (Korean only) Program TimeKST/JST Content 13:30-14:00 Registration 14:00-14:10 Opening Speech - [JMAG Users Conference & Workshop 2022 in France](https://www.jmag-international.com/event/2022y/2022_europeanuc/) - We will be hosting the JMAG Users Conference in France. The conference will be held over three days; the first and second day will be JMAG Users Conference, and Workshop will consist of the second day and the third day. We will also hold training with a focus on JMAG features. This will be a - [The JMAG-Designer V13 New Function Seminar in in Taiwan](https://www.jmag-international.com/event/2014y/2014-seminar-taiwan/) - JMAG-Designer Ver.13 has been released in December, 2013. Development of Ver.13 saw 40 or more functions newly added, including a high parallel solver, high precision loss modeling and multiphysics function (Small Multiphysics) as its main functions. The high parallel solver will brighten prospects for a new step to the electromagnetic analysis in terms of size - [JMAG Users Conference in Taiwan](https://www.jmag-international.com/event/2016y/2016_taiwanuc/) - Greeting A JMAG Users Conference will be held in Taiwan. We will discuss the latest information on the recently released JMAG-Designer Ver.15.1. This is an excellent chance to gain insight on current trends and utilization strategies for electromagnetic field analysis. We look forward to your attendance. Overview Organizer FLOTREND CORPORATION Dates August 30th, 2016 Venue - [JMAG Users Conference in Taiwan](https://www.jmag-international.com/event/2014y/2014_taiwanuc/) - Overview JMAG user conference will be open. Organizer FLOTREND CORPORATION Dates Tuesday August 19th, 2014 Venue GIS NTU Convention Center (Taipei, Taiwan) URL http://www.flotrend.com.tw/news_center/event/seminar/2014/08_jmag/ (Only Chinese) JMAG user conference will be hosted by our distributor, FLOTREND Corporation. Beginning with a keynote speech, there will be case studies introduced by JMAG users, as well as introducing - [KIEE Summer Conference](https://www.jmag-international.com/event/2023y/kiee2023/) - EMDYNE of JMAG Distributor will exhibit at KIEE Summer Conference. Overview Organizer KIEE (The Korean Institute of Electrical Engineers) Dates 12-15 July 2023 Location Yongpyong Resort Booth Number No.7 URL https://conf.kiee.or.kr/ (Korean only) Company Introduction EMDYNE Inc - [KIEE Summer Conference](https://www.jmag-international.com/event/2022y/kiee2022/) - EMDYNE of JMAG Distributor will exhibit at KIEE Summer Conference. Overview Organizer KIEE (The Korean Institute of Electrical Engineers) Dates 13-16 July 2022 Location Yeosu EXPO convention URL https://conf.kiee.or.kr/ (Korean only) Company Introduction EMDYNE Inc - [JMAG Users Conference & Workshop 2023 in USA](https://www.jmag-international.com/event/2023y/2023_usauc/) - This is to announce that the North America JMAG distributor POWERSYS will be holding the JMAG Users Conference in Detroit. The conference will be held over second days; the first day will be Workshop, and JMAG Users Conference will consist of the second day. This will be a great opportunity to gain information on electromagnetic - [JMAG Users Conference & Workshop 2022 in USA](https://www.jmag-international.com/event/2022y/2022_usauc/) - This is to announce that the North America JMAG distributor POWERSYS will be holding the JMAG Users Conference in Los angeles. Overview Organizer POWERSYS Dates – JMAG workshop Oct. 20th from 8:00am to 4:00pm – 2022 JMAG Users Conference Oct. 21st from 8:00am to 5:00pm Location The Beach House (Los angeles, USA) URL https://events.powersys-solutions.com/the-e-motor-design-revolution/ Agenda - [COMPUMAG 2023](https://www.jmag-international.com/event/2023y/compumag2023/) - COMPUMAG is an international conference where engineers from around the world gather to present and discuss recent developments, issues, and practical applications in electromagnetic field analysis technology, which is essential in designing rotating machines, transformers, and various other electromagnetic devices. The 2023 conference will be held in Kyoto. JMAG will be exhibiting as a platinum - [INTERMAG 2023](https://www.jmag-international.com/event/2023y/2023_intermag/) - We will be run a booth at the INTERMAG 2023. We look forward to seeing you there. Overview Host IEEE Dates May 15th (Monday) to May 19th (Friday) 2023 Location Sendai International Center(Sendai, Japan) Booth Number No.37 URL https://2023.intermag.org/ - [2009](https://www.jmag-international.com/event/2009y/) - Date Title Venue December 23 FLOTREND CORPORATION JMAG 2009 Taiwan User Conference Taiwan December 10-11 JSOL CORPORATION JMAG Users Conference in Tokyo 2009 Japan November 22-26 COMPUMAG2009 Florianopólis,Santa Catarina, Brazil November 15-18 The International Conference on Electrical Machines and Systems (ICEMS2009) Funabori, Tokyo, Japan November 3-5 SMMA - The Motor & Motion Association SMMA 2009 - [How to ensure electric drives efficiency and cooling performance while maintaining NVH targets](https://www.jmag-international.com/event/2021y/how-to-ensure-electric-drives-efficiency-and-cooling-performance-while-maintaining-nvh-targets/) - Overview Organizer POWERSYS Dates Wed, Mar 23, 2021 10:00 AM - 11:00 AM CET Wed, Mar 23, 2021 06:00 PM - 07:00 PM JST Location Online(Zoom) URL https://zoom.us/webinar/register/6816155678322/WN_B6xveMeQQ4SGJnxrgQI2sA Program Webinar Agenda: • Loss and Electromagnetic force calculations in JMAG • Cooling performance and design modifications in scFLOW • Noise and Vibrations analysis in Romax Spectrum - [Motorization and design analysis solution for next generation e-powertrain](https://www.jmag-international.com/event/2018y/2018_powertrain_seminar/) - Overview Organizer Siemens PLM(Product Lifecycle Management) Software Inc. Date July 26(Thursday) 2018 Location AP Shinagawa Annex , Shinagawa Center Bldg 1F·B1F (Tokyo,Japan) [MAP] URL https://www.plm.automation.siemens.com/country/ja-jp/topic/e-powertrain-seminar/32705 - [Symposium Elektromagnetismus](https://www.jmag-international.com/event/2014y/2014-symposium/) - Overview Host Technische Akademie Esslingen Date Tuesday, March 25, 2014 Venue Reinhold-Wurth-Hochschule(Germany: Land Baden-Wurttemberg ) URL http://www.tae.de/de/kolloquien-symposien/elektrotechnik-elektronik-und-energietechnik/symposium-elektromagnetismus/ Event Report Approximately 110 attendees attended the10 seminars that were conducted in German at the session. There were many companies that handled electromagnetics and participants were primarily researchers, designers, engineers, professors, university students and graduate students. At the - [MathWorks Day in Hamamatsu](https://www.jmag-international.com/event/2014y/2014-mathworks-day/) - Overview Host MathWorks Japan Date Tuesday, May 27, 2014 Venue ACT CITY Hamamatsu Congress Center (Japan: Shizuoka-ken, Hamamatsu) URL http://www.mathworks.co.jp/company/events/seminars/seminar90342.html Event Report A lecture regarding model-based development cases and latest simulation technology in the automobile field was held on MathWorks Day. Approximately 150 attendees debated over the trends in the latest automobile industries and simulation - [CDNLive Japan 2017](https://www.jmag-international.com/event/2017y/2017_cdnlive_japan/) - Overview Host Cadence Design Systems, Japan Date Friday, July 21, 2017 Venue Yokohama Bay Hotel Tokyu (Kanagawa:Yokohama, Japan) URL https://www.cadence.com/content/cadence-www/global/en_US/home/cdnlive/japan-2017.html (Japanese Only) Mr. Tanagi from InnoTech and Mr. Hattori from JSOL will present together "モデルベース開発を推進する高精度モータモデルJMAG-RTとOrCAD® PSpice連携事例紹介" (Japanese Only) during CDNLive Japan 2017, hosted by Cadence Design Systems Japan. We will present a simulation use case - [NAFEMS Deutschsprachige Konferenz 2014](https://www.jmag-international.com/event/2014y/2014-nafems/) - Overview Host NAFEMS Ltd Date Tuesday, May 20 - Wednesday, May 21, 2014 Venue Kongresshotel Bamberg (Bamberg, Germany) URL http://www.nafems.org/2014/dach/ We will host an exhibition at a conference hosted by CAE Community international corporation, NAFEM. At our JMAG booth, we will introduce examples using the small multiphysics function that has become easier to use with - [JMAG Users Meeting in Nagoya 2009](https://www.jmag-international.com/event/2009y/200902_technologyexchange/) - Organizer JSOL CORPORATION Dates Friday, February 27, 2009 Venue Industrial Promotion Center URL http://www.city.kariya.lg.jp/wwwe_data/present/sisetu/sisetu1_13.html The JMAG Users Meeting in Nagoya came to a very successful end. The seminars, poster sessions, and technical support held throughout the day provided a great opportunity to exchange information and ideas with all those who participated. We are currently planning - [TECHNO-FRONTIER 2012](https://www.jmag-international.com/event/2012y/2012-techno-frontier/) - Introduction Accurate modeling is required to correctly analyze and capture complex phenomena occurring in motors. JMAG-Designer offers innovative solutions for incorporating various material properties and a broad-range of complex phenomena from magnetic field analyses to thermal and structural analysis. The features built into JMAG-Designer that assist in a standardizing the design process using features and - [MATLAB JMAG Realtime Simulator Motor Solution Seminar 2014](https://www.jmag-international.com/event/2014y/2014_motorseminar/) - Overview Host Hodaka Denshi Co., Ltd. Co-organizer JSOL Corp. , MathWorks Japan , DSP Technorogy Co.,Ltd. Date Tuesday November 18th, 2014 Venue Aichi Industry & Labor Center (Aichi ,Japan) URL http://www.hodaka.co.jp/motorseminar/2014_11.php - Introducing virtual motors and controllers using MATLAB with JMAG coupling abilities - The motor solutions seminar, hosted annually by Hodaka Denshi Co., Ltd., - [JMAG Users Conference in USA](https://www.jmag-international.com/event/2012y/2012-conference_usa/) - Event Overview and Introduction POWERSYS is pleased to announce that the JMAG Users Conference will be held in DETROIT, MICHIGAN, USA on OCTOBER 16th, 2012. The JMAG Users Conference Organizer POWERSYS Date October 16th, 2012 Venue WESTIN DETROIT METROPOLITAN AIRPORT HOTEL 2501 Worldgateway Place Detroit, Michigan 48242Phone: (734) 942-6500 Program of the conference 8:00 Registration / - [MATLAB EXPO 2023 JAPAN](https://www.jmag-international.com/event/2023y/2023-matlab-expo/) - We will be run a booth at the MATLAB EXPO 2023 in Japan. Overview Host The MathWorks, Inc. Date May 31, 2023 Venue GRAND NIKKO TOKYO DAIBA B1F (Daiba, Tokyo, Japan) URL https://www.matlabexpo.com/jp/2023.html (Japanese Only) Company Introduction Product Partner The MathWorks, Inc. - [JMAG Users Conference 2020 in Taiwan](https://www.jmag-international.com/event/2020y/2020_taiwanuc/) - Overview Organizer WisEnergy Inc. Dates Thursday, September 24, 2020 (9:00-17:30) Venue GIS HSP Convention Center (Taiwan) URL https://www.wisenergy.com.tw/event/2020/JMAG_User_Conference/index.asp(Only Chinese) Program Time Content 09:00~09:30 Registration 09:30~09:40 Welcome Kinney Shen, WisEnergy Inc. 09:40~10:15 Keynote Speech :JMAG Roadmap JSOL Corp. 10:15~10:50 JMAG-Designer 19.0/19.1 Ethan Yee, Senior Engineer, Wisenergy Inc. 10:50~11:10 Coffee Break and Exhibition 11:10~11:50 Invited Speech EV - [JMAG Users Conference 2021 in Taiwan](https://www.jmag-international.com/event/2021y/2021_taiwanuc/) - This is to announce that the Taiwan JMAG distributor WisEnergy will be holding the JMAG Users Conference 2021 in Online. We look forward to your participation. Overview Organizer WisEnergy Inc. Dates September 29th, 2021 Venue Online Program Time Content Taiwan (CST) Japan (JST) 09:30~09:40 10:30~10:40 Welcome WisEnergy 09:40~10:20 10:40~11:20 Keynote Speech: JMAG Road Map Dr. - [Automotive Engineering Exposition 2023 YOKOHAMA](https://www.jmag-international.com/event/2023y/2023_expo/) - We will be run a booth at the Automotive Engineering Exposition 2023 YOKOHAMA. We look forward to seeing you there. Overview Organizer Society of Automotive Engineers of Japan, Inc. (JSAE) Dates Wednesday, May 24, through Friday, May 26, 2023 Location PACIFICO YOKOHAMA (Kanagawa, Japan) URL https://aee.expo-info.jsae.or.jp/en/yokohama/ - [[EU webinar] Next Generation EV Motor Design using JMAG-Designer](https://www.jmag-international.com/event/2022y/eu-webinar-ev-motor/) - Mr. Bernd Cebulski of IAV GmbH, who gave a lecture at JMAG Users Conference 2021 Hybrid in Japan, will be presentation. If you missed it, please participate in the webinar hosted by POWERSYS. Overview Organizer POWERSYS Dates Tue, Apr 19, 2022 02:00 PM CET Tue, Apr 19, 2022 09:00 PM JST Location Online URL https://us06web.zoom.us/webinar/register/7616467316992/WN_XNJY5xltT-udhqtd640xXQ - [[EU webinar] DOE-based Optimization of Electrical Machines](https://www.jmag-international.com/event/2022y/eu-webinar-doe-base-optimizatio/) - Mr. Stephan Guenther of IAV GmbH, who gave a lecture at JMAG Users Conference 2021 Hybrid in Japan, will be presentation. If you missed it, please participate in the webinar hosted by POWERSYS. Overview Organizer POWERSYS Dates Tue, Apr 21, 2022 02:00 PM CET Tue, Apr 21, 2022 09:00 PM JST Location Online URL https://us06web.zoom.us/webinar/register/8516467323662/WN_aC8QrXP9SWWoq1fhybr5LQ - [JMAG Users Conference in Korea 2019](https://www.jmag-international.com/event/2019y/2019_koreauc/) - Invitation Organizer EMDYNE Inc. Date Thursday June 27, 2019 Location Courtyard by Marriott Seoul Pangyo(Seoul, Korea) Registration On-Line Registration URL http://emdyne.co.kr/ Program Time Content Speakers 13:00 ~ 14:00 Registration 14:00 ~ 14:10 Opening Speech EMDYNE 14:10 ~ 15:10 JMAG New Features Introduction & Demo (1st) EMDYNE 15:10 ~ 15:40 Optimum design of induction machine considering - [ECCE 2020](https://www.jmag-international.com/event/2020y/ecce2020/) - ECCE 2020 is the pivotal international conference and exposition event on electrical and electromechanical energy conversion field. In that frame, Powersys will present its Electromagnetics, power electronics and system-level solutions. We will exbit our poster with a title as follows at the IEEE ECCE 2020 online. Date:Tuesday,October 13th 11:00AM-11:30AM (EST) Poster 13: Electric Machine Applications - [MATLAB EXPO 2022 JAPAN](https://www.jmag-international.com/event/2022y/2022-matlab-expo/) - We will be run a booth at the MATLAB EXPO 2022 in Japan. Overview Host The MathWorks, Inc. Date May 25, 2022 Venue Venue GRAND NIKKO TOKYO DAIBA B1F (Daiba, Tokyo, Japan) Online URL https://www.matlabexpo.com/jp/2022.html (Japanese Only) Company Introduction Product Partner The MathWorks, Inc. - [ICEM 2022 (International Conference on Electrical Machines)](https://www.jmag-international.com/event/2022y/icem2022/) - At the coming ICEM 2022 (International Conference on Electrical Machines), we are pleased to announce our participation in the poster session. The Posters will be presented in the following sessions, "Design Issues" session of Poster Session II Wednesday 7 Sept, ICEM22-000090 Nicolas Schneider, Masahiro Kanamaru, Hiroyuki Sano, and Takashi Yamada Solving geometry conflicts in GA - [Altair Info-Tage Elektromagnetismus](https://www.jmag-international.com/event/2015y/2015_altair_infotage/) - Overview Host Altair Engineering, Inc. Date March 5, 12, 17, 19, 2015 Venue Oita University (Oita, Japan) URL URL:http://www.altairhyperworks.de/ (Only German) An electromagnetic field analysis software training seminar for Altair users will be held in Europe. This seminar will teach a series of operation methods in JMAG, from creating the geometry and material modeling to - [Automotive Engineering Exposition 2022 YOKOHAMA](https://www.jmag-international.com/event/2022y/2022_expo/) - We will be run a booth at the Automotive Engineering Exposition 2022 YOKOHAMA. We look forward to seeing you there. Overview Organizer Society of Automotive Engineers of Japan, Inc. (JSAE) Dates / Venue Venue Wednesday, May 25, through Friday, May 27, 2022 Online Exposition Website Wednesday, May 25, through Tuesday, May 31, 2022 Location PACIFICO - [Thermotec 2022](https://www.jmag-international.com/event/2022y/2022_thermotec/) - We will host an exhibition at the quadrennial Thermotec 2022. At our booth, we will present use cases involving induction heating analysis and hold demonstrations. For those of you thinking of getting into induction heating analysis or performing more advanced simulations, this booth is for you. Please stop by! Overview Organizer Japan Industrial Furnace Manufacturers - [Thermotec 2017](https://www.jmag-international.com/event/2017y/2017_thermotec/) - We will host an exhibition at the quadrennial Thermotec 2017. At our booth, we will present use cases involving induction heating analysis and hold demonstrations. For those of you thinking of getting into induction heating analysis or performing more advanced simulations, this booth is for you. Please stop by! Overview Host Japan Industrial Furnace Manufacturers - [9th Advanced E-Motor Technology Conference 2022](https://www.jmag-international.com/event/2022y/9th-e-motor-conference/) - Powersys Inc. of JMAG Distributor will exhibit and presentation at 9th Annual Advanced E-Motor Technology Conference. Join us and don't miss the presentation of our team on 23 February during the session on Advances in e-motor design and materials. Overview Organizer Automotive IQ Exhibitor Powersys Dates 22 - 24 February, 2022 Location Mercure Hotel MOA - [JMAG Users Conference 2021 in China](https://www.jmag-international.com/event/2021y/2021-jmag-uc-in-chinauc/) - This is to announce that the China JMAG distributor IDAJ will be holding the IDAJ Conference Online 2021 in China. We look forward to your participation. Overview Organizer IDAJ-China Co.,LTD. Dates December 01 ~ 03, 2021 Venue Online URL https://appafmxfzpj3817.pc.xiaoe-tech.com/detail/l_617f95ede4b0bb0fa59db936/4(Only Chinese) Program 2021/12/01 Time Content Japan(JST) China(CST) 14:30~14:35 13:30~13:35 Opening IDAJ China 14:35~14:40 13:35~13:40 Introduction - [JMAG & PSIM Users Conference 2021](https://www.jmag-international.com/event/2021y/2021-powersys-conference/) - This is to announce that the European JMAG distributor POWERSYS will be holding the JMAG & PSIM Users Conference 2021. This conference will center around case studies using JMAG and PSIM, and will be held online from September 27th to October 1st, 2021. Experts and developers in the field of electricity and power electronics will - [2017](https://www.jmag-international.com/event/2017y/) - Date Category Title Venue Report Dec 6-7 Users Conference JMAG Users Conference 2017 Tokyo, Japan Nov 14-15 Users Conference IDAJ-China Co.,LTD. JMAG Users Conference in China Shanghai, China Report Nov 8-10 Users Conference POWERSYS JMAG Users Conference & Training Paris, France Oct 31 Exhibition MathWorks Japan MATLAB EXPO 2017 Japan Tokyo, Japan Report Oct 27 - [ICEMS2017](https://www.jmag-international.com/event/2017y/icems2017/) - Overview Host ICEMS Dates Friday, August 11 - Monday, August 14, 2017 Venue International Convention Center (Sydney, Australia) URL http://www.icems2017.org/ We will hold a presentation at ICEMS titled, "Realistic and Very Fast Simulation of Electric Machines and Apparatus by using Massively Parallel Processing". If you are attending ICEMS, please stop by the presentation hall. - [ICEMS 2021 (2021 International Conference on Electrical Machines and Systems)](https://www.jmag-international.com/event/2021y/icems2021/) - Overview Organizer KIEE EMECS (KIEE Electrical Machinery and Energy Conversion Systems) Dates October 31 - November 3, 2021 Location Gyeongju, Korea URL https://www.icems2021.com/ Company Introduction EMDYNE Inc - [Virtual North American JMAG User Conference 2021](https://www.jmag-international.com/event/2021y/north-american-uc-2021/) - Overview Organizer POWERSYS Dates July 27th and 28th 2021 Location Online, USA URL https://events.powersys-solutions.com/2021-north-american-jmag-virtual-user-conference/ Agenda Day 1 July 27, 2021 Day 2 July 28, 2021 Day 1: July 27, 2021 San Diego (PDT) New York (EDT) Japan (JST) University presentation Powersys presentation Developer presentation Partner presentation Industry presentation Keynote speaker 7:30 am 10:30 am 11:30 - [China Road Show 2021](https://www.jmag-international.com/event/2021y/2021_chinauc/) - Greeting We would like to inform you that we will be holding a China seminar in Shanghai, Guangzhou and Changchun. Each site provides an introduction of the new functions released in the latest version of JMAG Ver.20.1 as well as examples of solutions to future technical issues. It will be a great opportunity to obtain - [[US session] JMAG Japan UC Digest webinar](https://www.jmag-international.com/event/2021y/jmag_uc_digest_us/) - We are happy to propose a sum up of some key presentations of the 2020 Japan User Conference which took place digitally from November 24 to December 11. The three thematics covered through these presentations are: Aerospace, Automotive and Multiphysics/Topology optimization. Overview Organizer POWERSYS Dates Tue, Mar 16, 2021 15:00 - 16:00 EDT Wed, Mar - [[EU / INDIA session] JMAG Japan UC Digest webinar](https://www.jmag-international.com/event/2021y/jmag_uc_digest_eu_india/) - We are happy to propose a sum up of some key presentations of the 2020 Japan User Conference which took place digitally from November 24 to December 11. The three thematics covered through these presentations are: Aerospace, Automotive and Multiphysics/Topology optimization. Overview Organizer POWERSYS Dates Tue, Mar 9, 2021 10:00 - 12:00 CET Tue, Mar - [Americas Romax Innovation Summit & User Conference](https://www.jmag-international.com/event/2020y/romax-usa-uc2020/) - Overview Organizer Americas Romax Dates 10th - 11th November, 2020 Location Online - Eastern Time Zone (EST) URL https://romaxtech.com/summit/americas-innovation-summit-user-conference-2020/ Powersys Inc. of JMAG Distributor will be holding the Romax Japan Innovation Summit & User Conference 2020(USA) online. Date: November 10th Time: 3:30 - 4:00pm(EST) - [Romax Technology Innovation Summit & User Conference](https://www.jmag-international.com/event/2020y/2020-romax-technology/) - We will be holding the Romax Japan Innovation Summit & User Conference 2020 online. Time: 3:30 - 4:00pm Title: Interface with JMAG and Romax Nexus Speaker: Yusaku Suzuki, a manager in Sales&Marketing department Overview Organizer Romax Japan Dates October 20, 2020 Location Online (Japan) URL https://hexagon.com/products/product-groups/computer-aided-engineering-software/romax - [GT Global Virtual Conference](https://www.jmag-international.com/event/2020y/gt-global-virtual-conference/) - Overview Organizer Gamma Technologies, LLC Date October 13 - 15, 2020 Venue Virtual Event URL https://globalgtconference2020.gtisoft.com/home In the era of vehicle electrification, a multi-physics, whole-system approach to vehicle modeling is paramount for success. In this presentation, GT-SUITE and JMAG tools can be jointly used throughout the vehicle development process to solve key challenges of vehicle - [Simulation Solutions for Electrification Conference 2020](https://www.jmag-international.com/event/2020y/2020-powersys-conference/) - This is to announce that the European JMAG distributor POWERSYS will be holding the Simulation Solutions for Electrification Conference. This conference will center around case studies using JMAG and PSIM, and will be held online for two weeks from October 5 (Monday) to October 16 (Friday), 2020. Experts and developers in the field of electricity - [North American Virtual User Conference 2020](https://www.jmag-international.com/event/2020y/north-american-uc-2020/) - Overview Organizer POWERSYS Dates July 28th and 29th 2020 Location Online, USA URL https://events.powersys-solutions.com/2020-north-american-jmag-user-conference-workshop/ Program Day 1 (July 28, 2020) Day 2 (July 29, 2020) San Diego (PST) New York (EST) University presentation Powersys presentation Developer presentation Partner presentation Industry presentation Keynote speaker 7:30 am 10:30 am User Conference Introduction Olivier Toury, Powersys Opening Remarks - [JMAG Taiwan User Group Meeting](https://www.jmag-international.com/event/2008y/200811conference_taiwan/) - Organizer FLOTREND CORPORATION Dates Thursday, November 6 , 2008 Venue Taipei International Convention Center URL http://www.flotrend.com.tw/ The Taiwan JMAG user conference was successfully held at Taipei international convention center by Flotrend, the official distributor of JMAG products in Taiwan, gathering many JMAG users and engineers working in the field of electromechanical design and simulation.The conference - [RT20 VIRTUAL EDITION](https://www.jmag-international.com/event/2020y/rt20/) - Overview Organizer OPAL-RT Dates June 18 (Thursday), 19 (Friday) 2020 Location WEB URL https://www.opal-rt.com/events/ JSOL will present at the 12th Real-Time Simulation Conference hosted by OPAL-RT. Recent developments and applications of JMAG-RT; a high fidelity motor model for HIL/MIL June 19,2020 7:00 EDT / 13:00 CEST / 20:00 JST Motor HIL is becoming an - [ITEC 2020](https://www.jmag-international.com/event/2020y/itec-2020/) - Overview Organizer ITEC Date June 22-26, 2020 Venue Online, USA URL https://global.powersys-solutions.com/events/event-detail/?type=exhibitions&eventid=1043 ・Conference Hours Wednesday, June 24th Thursday, June 25th Friday, June 26th 8:30 AM - 5:40PM 8:30AM - 5:40PM 8:30AM - 5:40PM ・Expo Hours Wednesday, June 24th Thursday, June 25th 10:00AM - 5:00PM 10:00AM - 5:00PM - [MATLAB / Simulink Motor Drive Technology Seminar](https://www.jmag-international.com/event/2020y/motor_control/) - Wisenargy will present at the MATLAB/Simulink Motor Drive Technology Seminar hosted by Terasoft. Title: FEA-Based Motor Modeling and Simulation Speaker: Jerry Tung , Wisenargy (JMAG Taiwan Distributor) Organizer Terasoft Dates May 27, 2020 (Wednesday) Location Taiwan URL https://www.terasoft.com.tw/event/seminar/2020/motor_control/index.asp - [JMAG Users Conference 2019 in Michigan](https://www.jmag-international.com/event/2019y/2019_michigan/) - Overview Organizer POWERSYS Dates July 16 (Tuesday), 2019 Location Powersys America | Michigan office 2791 Research Dr Rochester Hills, MI 48309 USA URL http://events.powersys-solutions.com/jmag-michigan-user-conference-2019/ Program Time Content 08:30-09:00 Meet & Greet / Attendee registration 09:00-09:30 Introduction, Powersys team 09:30-10:15 Development roadmap of JMAG, Dr Takashi YAMADA, JSOL Corporation JMAG is constantly being worked on to - [JMAG Users Conference & Workshop 2019 in Strasbourg](https://www.jmag-international.com/event/2019y/2019_europeanuc/) - Greeting We will be hosting the JMAG Users Conference in France. The conference will be held over three days; the first day will be JMAG Users Conference, and Workshop will consist of the second day and the third day. We will also hold training with a focus on JMAG features. This will be a great - [JMAG Users Conference in Taiwan](https://www.jmag-international.com/event/2017y/2017_taiwanuc/) - Greeting A JMAG Users Conference will be held in Taiwan. We will discuss the latest information on the recently released JMAG-Designer Ver.16.1. This is an excellent chance to gain insight on current trends and utilization strategies for electromagnetic field analysis. We look forward to your attendance. Overview Organizer FLOTREND CORPORATION Dates August 22, 2017 Venue - [NIWeek 2018](https://www.jmag-international.com/event/2018y/niweek-2018/) - Overview Organizer National Instruments Corporation Dates From May 21st (Monday) until May 24th (Thursday) 2018 Location Austin Convention Center (Austin, USA) URL http://niweek.ni.com/events/niweek-2018/event-summary-f7bb6219c9594a76898765f63a938776.aspx NIWeek is an enormous conference held every year by National Instruments, bringing together approximately 3500 engineers from around the world. JMAG-RT and HIL link case studies will be introduced at the JMAG - [MATLAB EXPO2019 JAPAN](https://www.jmag-international.com/event/2019y/2019-matlab-expo/) - Overview Host The MathWorks, Inc. Date May 28, 2019 Tuesday Venue GRAND NIKKO TOKYO DAIBA B1F (Daiba, Tokyo, Japan) icon-map-marker GOOGLE MAP URL https://www.matlabexpo.com/jp/2019.html (Japanese Only) We will be run a booth at the MATLAB EXPO 2019 in Japan. Our booth will hold demonstrations showing the ability to interchange models with MATLAB/Simulink with ease. We - [Siemens PLM Connection Japan 2018](https://www.jmag-international.com/event/2018y/2018_siemens_plm/) - Overview Organizer: Siemens PLM(Product Lifecycle Management) Software Inc. Dates: From July 11(Wednesday) to July 12(Thursday) 2018 Location: The Westin Hotel Tokyo(Tokyo,Japan) URL: https://www.plm.automation.siemens.com/country/ja-jp/topic/plm-connection-2018-japan/28630 JMAG is electromagnetic field analysis software that analyzes complicated physical phenomena inside electrical machinery at high speed and with high accuracy. Since its release in 1983, it has been used by companies - [SEMINAR ON ELECTRIC VEHICLE TECHNOLOGY](https://www.jmag-international.com/event/2019y/electric-vehicle-technology/) - Powersys and ProSIM are very pleased to announce the upcoming User Conference in Bangalore on February 27th and 28th Overview Host ProSIM Date 27th – 28th February 2019 Venue World Trade Center Bengaluru, INDIA URL http://www.pwsim.com/Seminar-on-Electric-Vehicle-Technology-India-2019-Bangalore/ Program DAY1 February 27, 2019 / DAY2 February 28, 2019 DAY1 February 27, 2019 (9:30-18:00) Time Content 9.30 - - [The 11th International Conference on Electrical Machines and Systems (ICEMS2008)](https://www.jmag-international.com/event/2008y/200810icems2008/) - Organizer ICEMS 2008 Dates October 17-20 , 2008 Venue Shangri-La Hotel (Wuhan,China) ICEMS (International Conference on Electrical Machines and Systems) is the annual international conference on electric devices and systems held in Asia. The 2008 ICEMS conference took place in Wuhan, China, from October 17 through 20. 1046 papers were submitted and nearly 1000 engineers - [PSIM User Conference 2008 in Korea](https://www.jmag-international.com/event/2008y/200811psim_korea/) - Organizer Powersimtech Korea Inc. Dates Wednesday, November 5 , 2008 Venue Renaissance Seoul Hotel (Seoul, Korea) URL http://powersimtech.co.kr/psim_user_conference_2008/ Presentation of JMAG was held at PSIM Users Conference in Korea. - [JMAG Users Conference & Training in Strasbourg](https://www.jmag-international.com/event/2018y/2018_europeanuc/) - Greeting We will be hosting the JMAG Users Conference in France. The conference will be held over three days; the first day will be JMAG Users Conference, and Traning will consist of the second day and the third day. We will also hold training with a focus on JMAG features. This will be a great - [eDSIM Conference2018](https://www.jmag-international.com/event/2018y/edsim-conference-2018/) - Overview Host Romax Technology Date 25th – 26th September 2018 Venue Maritim Hotel Darmstadt, Germany URL https://romaxtech.com/media/events-webinars/romax-innovation-summit-user-conference-2018/edsim-conference-2018/ There will be presentations at the conference sponsored by Romax Technology focusing on the topic of the electrification of vehicles. September 26 (Wednesday) 10:45 - 11:15 Mr. Yves Thioliere from POWERSYS will be making a presentation titled "Vibration - [JMAG User Conference in Southfield](https://www.jmag-international.com/event/2018y/2018-southfield/) - Overview Organizer POWERSYS Dates October 23, 2018 (8 am - 5.30 pm) - JMAG Users Conference Location THE WESTIN SOUTHFIELD DETROIT 1500 Town Center, 2nd Floor Southfield, MI 48075 USA URL https://global.powersys-solutions.com/JMAG_UC_USA_2018_Southfield/ Contact POWERSYS TEL: +33 (0)4 42 61 02 29 E-mail: marketing@powersys.fr - [IEEE ECCE 2018](https://www.jmag-international.com/event/2018y/ecce2018/) - Overview Date September 23 - 27 Venue Exhibit HallA (Portland, USA) Booth number 604 URL https://global.powersys-solutions.com/events/event-detail/?type=conferences&eventid=872 Powersys will exhibit at the Tenth Annual IEEE Energy Conversion Congress and Exposition (ECCE 2018) which will be held in Portland, Oregon, USA on September 23- 27, 2018. ECCE 2018 is the pivotal international conference and exposition event on electrical - [MATLAB EXPO2018 JAPAN](https://www.jmag-international.com/event/2018y/2018-matlab-expo/) - Overview Host The MathWorks, Inc. Date October 30, 2018 Venue GRAND NIKKO TOKYO DAIBA B1F (Daiba, Tokyo, Japan) icon-map-marker GOOGLE MAP URL http://www.matlabexpo.com/jp/ (Japanese Only) We will hold a booth again at this year's MATLAB EXPO. At the JMAG booth, you can have hands-on experience with JMAG-RT and see firsthand its ability to integrate with - [TECHNO-FRONTIER 2010](https://www.jmag-international.com/event/2010y/2010_techno-frontier/) - MOTORTECH JAPAN 2010 Exhibition POWER SUPPLY JAPAN 2010 Exhibition >> MOTORTECH JAPAN 2010 Introduction The latest version of JMAG-Designer supports products from their conception through their detailed design using a rich set of features. Highly accurate modeling is one of the fundamental requirements to correctly capturing the complex phenomena acting on motors. JMAG-Designer is composed - [TECHNO-FRONTIER 2010](https://www.jmag-international.com/event/2010y/2010_power-supply/) - MOTORTECH JAPAN 2010 Exhibition >> POWER SUPPLYJAPAN 2010 Exhibition POWER SUPPLY JAPAN 2010 Introduction Transformers and reactors are a unique breed of machines used in a variety of systems that have diverse problems requiring ingenious solutions. The pressure to forge the next generation of designs under stringent cost and schedule constraints continues to grow creating - [Cocktail during the BLDC AND IPM Machine Design Course by AMT](https://www.jmag-international.com/event/2014y/2014-the-bldc-and-ipm/) - Overview Host Advanced MotorTech LLC. Date Thursday, January 16, 2014 Venue Hilton Doubletree Hotel -- San Francisco Airport (San Francisco, United States) URL http://www.advancedmotortech.com/training.html Advanced MotorTech LLC. hosted "Cocktail during the BLDC AND IPM Machine Design Course by AMT" and we opened a booth. We gave descriptions of JMAG-Designer Ver. 13.0, using case studies. - [Coil Winding Berlin](https://www.jmag-international.com/event/2014y/2014-coil-winding-berlin/) - Overview Host i2i Events Group Date Tuesday, June 24 -Thursday, June 26, 2014 Venue Messe Berlin (Berlin, Germany) Booth number: 1.1 / C11 URL https://berlin.cwiemeevents.com/home Coil Winding, known to be one of the world's largest exhibitions gather products related to coil such as winding machines, motor stators and insulating paper. The JMAG booth will - [2014 Altair Technology Conference](https://www.jmag-international.com/event/2014y/2014-altair-technology-conference/) - Overview Host Altair Engineering, Inc. Dolce Munich Unterschleissheim (Munich, Germany) ANA Intercontinental Hotel Tokyo (Minato, Tokyo) Date Tuesday, June 24 -Thursday, June 26, 2014 Thursday, July 17 - Friday, July 18, 2014 URL http://altairatc.com/EventHome.aspx?event_id=2 http://altairatc.com/EventHome.aspx?event_id=4 At the JMAG booth, we will introduce case examples for clients considering mechanical design / thermal design simultaneously, - [TECHNO-FRONTIER 2014](https://www.jmag-international.com/event/2014y/2014_techno_frontier/) - Overview Host Japan Management Association Date Wednesday, July 23 - Friday, July 25, 2014 Venue Tokyo Bigsite (Japan: Tokyo / Etou-ku) Booth number: 3C-201 URL http://www.jma.or.jp/tf/en/ TECHNO-FRONTIER is the largest specialist trade show in Asia where development designers and production engineers gather from a wide variety of fields, including motor technologies, EMC and noise reduction. - [International Conference on Electrical Machines (ICEM 2014)](https://www.jmag-international.com/event/2014y/2014_iecm/) - Overview Host VDE Pruf- und Zertifizierungsinstitut GmbH Date Tuesday, September 2 - Friday, September 5, 2014 Venue Andel's Hotel (Berlin, Germany) Booth number: 2 URL http://conference.vde.com/icem/pages/welcome.aspx ICEM is an international exhibition and conference pertaining to electric devices. Presentations of JMAG's newest functions, as well as demonstrations of JMAG-Express, will be given at our booth. - [JMAG Users Conference in Germany](https://www.jmag-international.com/event/2014y/2014_europeanuc/) - Greeting The Europe JMAG User's conference will be held. The event will take place over two days: The first day will be a technical day, and the second day will have user presentations. Workshops focusing on iron loss and efficiency maps functions as well as workshops covering the electric automobile industry will be held. They - [Coil Winding, Insulation & Electrical Manufacturing Exhibition (CWIEME CHICAGO)](https://www.jmag-international.com/event/2014y/2014_cwieme/) - Overview Host i2i Events Group Date Tuesday, September 30 - Wednesday, October 1, 2014 Venue DE Stephens Convention Center (Chicago, U.S.A) Booth number: Hall 1-5 / 1815 URL http://www.coilwindingexpo.com/chicago/ (Japanese only) Coil Winding is an exhibition presenting products relating to winding machines, motor stators and insulating paper. At the JMAG booth, we will be - [MATLAB EXPO 2014 Japan](https://www.jmag-international.com/event/2014y/2014_matlab_expo/) - Overview Host MathWorks Japan Date Wednesday October 29, 2014 Venue GRAND PACIFIC LE DAIBA (Daiba, Tokyo ,Japan) URL http://matlabexpo.com/jp/ We will host an exhibition at MATLAB EXPO 2014 Japan. JMAG's booth will offer a chance to try using JMAG-RT, which can be combined with MATLAB/Simulink. Come and see how useful coupled analysis can be. - [CWIEME Chicago 2016](https://www.jmag-international.com/event/2016y/2016_cwieme_chicago/) - Overview Host i2i Events Group Date Tuesday October 4 - Wednesday October 5, 2016 Venue Donald E. Stephens Convention Center (USA: Chicago) URL http://www.coilwindingexpo.com/chicago/ CWIEME, known to be one of the world's largest exhibitions, gathers various products related to coils such as winding machines, motor stators and insulating paper. At the JMAG booth, we will - [2017 IEE-Japan Industry Applications Society Conference](https://www.jmag-international.com/event/2017y/2017_iee_jiasc/) - Overview Host IEEJ Date Tuesday, August 29 - Thursday, August 31, 2017 Venue Hakodate arena (Hokkaido, Japan) URL https://gakkai-web.net/jiasc/program/hp17/index.html (Japanese only) We will participate in the IEE-Japan Industry Applications Society Conference business exhibition. At the JMAG booth, there will be an introduction of a new version of JMAG-Designer as well as a demonstration and consultation - [The 11th SystemSimulationSymposium](https://www.jmag-international.com/event/2017y/2017_system_simulation_symposium/) - Overview Host NewtonWorks Corporation Date Friday, July 14, 2017 Venue Tokyo Convention Hall Large Hall (Tokyo, Japan) URL https://www.newtonworks.co.jp/event-seminar/2017/0714090000.html (Japanese only) System Simulation Symposium is a symposium hosted by NewtonWorks Corporation. At the JMAG booth, we will present JMAG-RT, which has a wide range of uses from the system design to ECU verification using HILS. It - [JMAG Users Conference & Traning](https://www.jmag-international.com/event/2017y/2017_europeanuc/) - Greeting We will be hosting the JMAG Users Conference in France. The conference will be held over three days; the first day will be JMAG Users Conference, and Traning will consist of the second day and the third day. We will also hold training with a focus on JMAG features. This will be a great - [The 2018 Annual Meeting of The Institute of Electrical Engineers of Japan](https://www.jmag-international.com/event/2018y/2018_iee_am/) - Overview Host: The Institute of Electrical Engineers of Japan Date: Wednesday March 14, 2018 - Friday March 16, 2018 Venue: Kyushu University, Ito Campus (Fukuoka, Japan) Exhibition contents: Simulation software for electric device design and development "JMAG" URL: http://www.iee.jp/?page_id=4347 (Japanese Only) We will hold an exhibition at The 2018 Annual Meeting of the Institute of ## Motor Design and Development - [Supporting Excelled Motor Development - Challenges of Motor Development and the Increasing Role of JMAG -](https://www.jmag-international.com/motor_design_develop/motor-development_01/) - Motor Development Using JMAG This series of technical reports discusses the challenges of motor development and the increasing role of JMAG. In the first edition of this series, we focus on "energy conservation and higher efficiency." Overview There are an infinite number of motors that surround us in our daily lives. These motors are used - [DC Brush Motor Design Example](https://www.jmag-international.com/motor_design_develop/express_01/) - Motor Design with JMAG-Express In the latest version of JMAG-Express Public released in July 2013, a DC brush motor calculation function has been added. In this issue, we'll give you an example of an actual motor design utilizing JMAG-Express Public's properties as an example of the DC brush motor functions that were recently added. What - [Issue 1 Why have a JMAG Motor Design Course](https://www.jmag-international.com/motor_design_develop/01/) - Motor Design Course Many JMAG Newsletter readers have expressed an interest in motor design, so we decided to do a series on the subject from this issue. But, having said that, we're analyzers and not motor design specialists. That makes it a bit rich to say we're holding a course. Nonetheless, we kick off this - [Issue 2 Moving Forward with Motor Concept Design](https://www.jmag-international.com/motor_design_develop/02/) - Motor Design Course In the September 2013 issue of this newsletter,the first of these ongoing columns, I gave an explanation about the background to starting a course on motor design. In this issue and the second column, I'll finally get around to explaining what's involved in designing motors. The theme of this column will be - [Starting With Vibration Noise Analyses Vol. 1 (Motor Edition 1)](https://www.jmag-international.com/motor_design_develop/motor_01/) - Motor Development Using JMAG Vibration noise has become an unavoidable issue when dealing with electrical equipment in recent years and it seems magnetic circuit designers are somewhat distant from vibration sound analyses. In this series, I would like to give a description of initiatives toward a vibration noise analysis where electromagnetic force obtained from JMAG - [PM Motor Design in JMAG-Express](https://www.jmag-international.com/motor_design_develop/express_02/) - Motor Design with JMAG-Express Handy features are constantly added in our motor design tool, JMAG-Express. This article will use PM motors as an example and introduce case studies of motor design using the unique functions of JMAG-Express. We hope you will make use of JMAG-Express in improving efficiency in your motor design work. What is - [Issue 3 How to Perform Detailed Motor Design](https://www.jmag-international.com/motor_design_develop/03/) - Motor Design Course This series features descriptions of our thoughts about motor design, targets beginning motor designers and provides information about design themes for those seeking to acquire basic knowledge about the subject. In the previous issue we discussed initial designs, arranging concept design plans as a starting point for detailed designs. In this edition, - [Three-Phase Induction Motor Design with JMAG-Express](https://www.jmag-international.com/motor_design_develop/express_03/) - Motor Design with JMAG-Express Handy features are constantly added in our motor design tool, JMAG-Express. This article will use three-phase induction motors as an example and introduce case studies of design. We hope you will make use of JMAG-Express in improving efficiency in your design work. What is JMAG-Express? JMAG-Express is a motor design tool ## Leaflet - [[L-OP-61] Smooth and robust optimization process in JMAG](https://www.jmag-international.com/leaflet/l-op-61/) - The optimization is indispensable in machines design. Especially the optimization must consider not only the magnetic design issues but also the mechanical and the thermal design issues. JMAG supports the multiphysics simulation and makes it easy to set up the optimization considering the multiphysics. - [[L-TR-224] Impedance Characteristics Evaluation of Transformers in Resonant LLC Converters](https://www.jmag-international.com/leaflet/l-tr-224/) - This case study analyzes a transformer in a resonant LLC converter to obtain the frequency characteristics of the inductance and resistance. - [[L-MA-227] Precise AC Loss Analyses Supporting Superconducting Machine Design](https://www.jmag-international.com/leaflet/l-ma-227/) - This case study analyzes the losses when applying alternating current to round superconducting wire. - [[L-AU-226] Fully Leveraging the Power of JMAG via AI Using the JMAG Script Library](https://www.jmag-international.com/leaflet/l-au-226/) - JMAG Script can automate almost every function in JMAG. The JMAG Script Library makes sample scripts for the various operational procedures to use for AI training or reference. - [[L-AU-225] Accelerating Data-Driven Design to the Limit with AI](https://www.jmag-international.com/leaflet/l-au-225/) - We are transitioning from an era of "humans operating tools" to a new paradigm where "AI agents operate JMAG to deliver autonomous design." Through synergy with AI, JMAG is accelerating the reality of data-driven design. - [[L-TR-221] Impedance Characteristic Analysis of a Chopper Inductor Used in a DC-to-DC Converter](https://www.jmag-international.com/leaflet/l-tr-221/) - This case study examines the frequency characteristics of impedance in a chopper inductor with a laminated winding structure and one with a spiral winding structure. The results indicate resonance at 46 MHz in the laminated winding and 27 MHz in the spiral winding. - [[L-MA-191] Prediction of Quenching Behavior in High-temperature Superconducting Coils](https://www.jmag-international.com/leaflet/l-ma-191/) - This case study runs an overcurrent analysis of a no-insulation pancake coil that uses rare-earth barium copper oxide (REBCO) tape as a high-temperature superconductor to predict quenching behavior. - [[L-MA-220] Evaluations of CORC Cable Characteristics Accounting for Anisotropy](https://www.jmag-international.com/leaflet/l-ma-220/) - This case study compares the critical current density distributions of CORC cable formed by helically winding REBCO tape around a core obtained through simulations with and without the anisotropy of the magnetic flux density. - [[L-OP-218] Optimization of Materials as Design Variables](https://www.jmag-international.com/leaflet/l-op-218/) - This case study runs a multi-objective geometry and material optimization of an IPM motor to minimize the iron losses and material costs. The material optimization evaluates nine combinations of three different materials for the rotor and stator cores. The results indicate that a rotor core made of electromagnetic steel sheet and a stator core that uses amorphous or nanocrystalline alloy as a low-loss material best balances lower iron losses against the material costs. - [[L-HT-219] N-T Curve Evaluations Accounting for Short-Time Operation Characteristics](https://www.jmag-international.com/leaflet/l-ht-219/) - This case study obtains the N-T curves for a nabla-shaped IPM motor under various duty cycles while taking into account the temperature limits of each part. The analysis results indicate that the IPM motor can operate for up to 10 minutes to sustain the target torque at 5,000 rpm. - [[L-MO-216] Evaluating Motors Designs via Efficiency Maps While Accounting for Power Limits](https://www.jmag-international.com/leaflet/l-mo-216/) - This case study evaluates the efficiency maps and operating points of an IPM motor during the drive cycle while accounting for the power limits. - [[L-HT-217] Modeling Forced Air Cooling](https://www.jmag-international.com/leaflet/l-ht-217/) - This case study simulates a forced air cooling system inside an induction machine using two different types of fans. The results illustrated how different airflow rates of the fans affect the saturation temperatures in each part. - [[L-OP-211] Offline Optimizations Using Surrogate Models](https://www.jmag-international.com/leaflet/l-op-211/) - This case study runs an offline optimization to explore the optimal geometry for an axial gap motor to maximize average torque and minimize losses. A constraint condition anticipates the inverter voltage will change from 120 volts to 100 volts. The use of a surrogate model reduces the time required for the optimization to about 1/25th that of one using only FEA. - [[L-OP-190] Standalone Simulations to Evaluate Magnetic, Thermal, Structural, and Control Designs](https://www.jmag-international.com/leaflet/l-op-190/) - This case study runs an optimization on the initial nabla-shaped IPM drive motor design to maximize torque and minimize magnet mass for greater fuel economy during the WLTC drive cycle. The simulation also limits magnet and coil temperatures as well as stress at high speeds. The results show that design solutions with the highest torque exceed temperature and torque tolerances. This demonstrates the necessity of multi-disciplinary evaluations in finding optimal design solutions without any rework. - [[L-HT-210] Evaluation of Temperature Variations in Motor Parts During the Drive Cycle](https://www.jmag-international.com/leaflet/l-ht-210/) - Overview Motor development must pursue a wide range of performance and other requirements from greater miniaturization, higher efficiency and heat management to reductions in costs and lead times. High-speed analyses and evaluations of the entire drive system are necessary to satisfy each and every requirement. However, conventional design processes force cooling system designers to assess - [[L-HT-203] Efficiency Map Evaluations Accounting for Continuous Operation Characteristics](https://www.jmag-international.com/leaflet/l-ht-203/) - This case study creates an efficiency map for the continuous operation of a nabla-shaped IPM motor that takes into account the temperature constraints. The analysis shows the motor design has a safe operating area at or below roughly 5,000 rpm. Designers can even use these results to examine the system design, whether investigating a cooling method suitable for the usage conditions or a magnetic circuit to reduce the losses. - [[L-SE-194] Many-Case Distributed Calculations: Performance of Large-Scale Optimization](https://www.jmag-international.com/leaflet/l-se-194/) - Optimization with many design variables requires exploring a large design space, leading to increased computational cost. In these scenarios, leveraging distributed processing on multi-core systems is highly effective for cutting down calculation time. - [[L-HU-193] Performance of Highly Parallel 3D Calculations for Virtual Prototyping](https://www.jmag-international.com/leaflet/l-hu-193/) - Achieving virtual prototyping demands high-fidelity 3D models with well over a million elements. This level of detail leads to long calculation times, which makes using parallel solvers crucial for speeding up simulations. - [[L-MB-202] Driving the Future with Precision -JMAG powers the complex motion of humanoids-](https://www.jmag-international.com/leaflet/l-mb-202/) - To achieve smooth and powerful motion that closely resembles the movement of human joints, including the neck, shoulders, elbows, wrists, fingers and hips it is essential to accurately understand the characteristics of the motors installed at each joint. - [[L-OP-201] Storing and Reusing Simulation Data](https://www.jmag-international.com/leaflet/l-op-201/) - In this case study, JMAG Design Explorer is used to reference and compare ten different optimization results for two types of motors—IPM motors and induction motors—each with different magnet layouts and the cross-sectional shapes of secondary conductor. - [[L-OP-187] Multi-disciplinary Evaluation for Optimal Design Without Rework](https://www.jmag-international.com/leaflet/l-op-187/) - In this case study, we optimize a wound field synchronous motor (EESM) with two objective functions - average efficiency under the WLTC driving cycle and maximizing torque. - [[L-OP-188] High-Speed Large-Scale Design Space Exploration Using Surrogate Model-Assisted Optimization](https://www.jmag-international.com/leaflet/l-op-188/) - In this case study, we used JMAG to optimize the geometry of an induction heating coil with surrogate models. - [[L-MB-186] System Integration and Verification Using High Accuracy Plant Models](https://www.jmag-international.com/leaflet/l-mb-186/) - In this case study, the detection of current anomalies was verified by simulating an open winding fault. - [[L-MA-185] Virtual Prototyping Enables Immediately to Validate the Machine Performance](https://www.jmag-international.com/leaflet/l-ma-185/) - In this case, invisible losses were confirmed at the operating point in the high-speed range (12,000 rpm), where phenomena are complicated by weak field magnetization and high frequencies, etc., for the drive motor. - [[L-HT-184] Cooling Performance Evaluation for Motor Magnetic Design](https://www.jmag-international.com/leaflet/l-ht-184/) - Industrial motors, especially those with high power density, must take the cooling performance into account even for the magnetic performance with cooling. To improve the magnetic performance of a motor, it is necessary to evaluate the temperature rise due to heat generation, along with the cooling performance. - [[L-VI-183] Evaluation of System-Level Vibration Caused by Motor Electromagnetic Forces and Torques](https://www.jmag-international.com/leaflet/l-vi-183/) - Motors are the power source that is incorporated into a system like eAxle, and the torque and electromagnetic force (excitation force) generated by the motor is transferred through the shaft and stator to the system. - [[L-MB-31] Monitoring Internal Condition of the Motor Using JMAG-RT Model](https://www.jmag-international.com/leaflet/l-mb-31/) - Quietness and safety are required from a motor as equipment such as electric vehicles and robots that utilize motors have been in great demand. For this reason, motor control is required to utilize the information that has not been used, such as controlling the waveform of the magnetic flux in a form of the sine wave. In motor designing, a measure such as limiting the change of excitation force, when controlling the motor, to below the threshold value is required as well. In order to achieve this goal, it is effective to observe the inside of the motor during the control. - [[L-OP-57] Quick Evaluation of Diverse Designs](https://www.jmag-international.com/leaflet/l-op-57/) - In order to pursue higher-performance machine design, it is necessary to grasp the influence of small changes in design proposals on machine characteristics. - [[L-TR-44] Winding Vibration Analysis of a Power Transformer](https://www.jmag-international.com/leaflet/l-tr-44/) - Winding vibration originating from a transformer is a vibration phenomenon that uses Lorentz force as the vibration force, which occurs when leakage flux from the winding acts on the current inside the winding. - [[L-OP-27] Instantly Extracting the Necessary Information from a Large Amount of Analysis Data with JMAG-Explorer](https://www.jmag-international.com/leaflet/l-op-27/) - JMAG-Explorer is a tool for quickly finding files from large amounts of JMAG-related files (project files, JCF files, and result files). - [[L-MO-54] JMAG-Express Online](https://www.jmag-international.com/leaflet/l-mo-54/) - JMAG-Express Online is a Web service to support your motor design work anytime, anywhere. - [[L-SE-59] Detailed Modeling for Harmonic Loss Analysis](https://www.jmag-international.com/leaflet/l-se-59/) - In IPM motors driven by PWM inverters, eddy current losses occur due to carrier higher harmonics. For higher efficiency, it is important to evaluate higher harmonic loss at design time. - [[L-MB-30] Accurately Identifying Motor Characteristics During Control with JMAG-RT](https://www.jmag-international.com/leaflet/l-mb-30/) - In general, the characteristics of motor models used in control circuit simulation of a motor drive system are often assumed to be constant when the motor is in drive mode. - [[L-SE-163] High Performance Massive Case Calculations](https://www.jmag-international.com/leaflet/l-se-163/) - Taking the traction motor, auxiliary motor, and reactor as models to be analyzed, presented in this report is the performance for simultaneously running 100 cases by using Power Simulation License. A 63 to 76 times speed-up was obtained compared to the case-by-case sequential computation. - [[L-SE-116] Accuracy Improvement of Electromagnetic Force Calculation Using Correction](https://www.jmag-international.com/leaflet/l-se-116/) - In precision equipment analysis that requires high accuracy of operation, high accuracy is also required for the minute electromagnetic force generated by leakage flux and so on. - [[L-SE-81]Mesh Verifications at Higher Speeds](https://www.jmag-international.com/leaflet/l-se-81/) - The speed of JMAG mesh creation functions has been made even faster. With the new mesher, checking contact recognition and interference on free-form surfaces, etc., and pre-processing has been made considerably more efficient. A large degree of effectiveness can be expected for models with multiple parts and multiple faces. - [[L-OP-25] Utilizing JMAG in Cloud Services](https://www.jmag-international.com/leaflet/l-op-25/) - More cloud services for CAE continue to be offered. This allows sufficient computational resources to be used when needed to perform analysis work. - [[L-OP-109] Exploration of New Ideas Using Topology Optimization](https://www.jmag-international.com/leaflet/l-op-109/) - The requirements for motor design are getting more advanced, satisfying torque ripple, line voltage limit, stress of core, as well as maximize the torque at low and high speeds. In order to meet such severe requirements, to consider combining the parameter optimization and the topology optimization can yield effective results. - [[L-MO-77] Motor Concept Design with JMAG-Express and JMAG-RT Viewer](https://www.jmag-international.com/leaflet/l-mo-77/) - Within upstream system designs in a development process, elements that satisfy motor requirements are all roughly determined. This includes the rotor type, the number of poles, the number of slots, the number of coils, and the rotor diameter, etc. Design has typically been conducted based on experience and rules, but it is possible to explore a wider range of design spaces with considerable speed through a liberal use of simulations. - [[L-MO-106] Prototype and Performance Evaluation with Model-based Efficiency Map (Accuracy Priority Mode)](https://www.jmag-international.com/leaflet/l-mo-106/) - The maximum efficiency of the drive motor for EV vehicles exceeds 95%. As further efficiency improvement is in the order of 1%, the efficiency error with the actual machine in the Model-Based Development (MBD) solution also requires to be evaluated with an accuracy of 1%. - [[L-MA-04] New & Improved Iron Loss Analysis Function](https://www.jmag-international.com/leaflet/l-ma-04/) - When performing iron loss analysis, it is necessary to select optimal methods accounting for the likes of analysis targets, objectives, accuracy, types of usable data, and more. - [[L-MB-28] The Incorporation of JMAG into Model Based Design](https://www.jmag-international.com/leaflet/l-mb-28/) - The JMAG-provided plant model (JMAG-RT) simulates the characteristics of an actual machine with high-fidelity information, acquired by means of FEA, and realizes a highly reliable MBD. - [[L-MU-169] Comparing Thermal Circuit Modeling with Experimental Result for an Axial Gap Motor](https://www.jmag-international.com/leaflet/l-mu-169/) - Comparison of a thermal circuit model with experimental results has been performed in this leaflet. In the thermal circuit, thermal characteristics of each parts are modelled by a thermally equivalent components, and the whole model is constructed by placing thermal resistance between each components. - [[L-HU-168] Fast Solving of Large Scale Model Using Massive Parallel Processing](https://www.jmag-international.com/leaflet/l-hu-168/) - One option for accurate loss analysis is 3D analysis. However, the number of elements often reaches into the millions, limiting its use in terms of calculation cost. In order to incorporate sufficient analysis results into design, calculations must be completed in a practical timeframe, and for models with millions of elements, the performance of massive parallel calculations is important. - [[L-MO-09] Easily Creating Complex Coil Ends Geometry in a Template](https://www.jmag-international.com/leaflet/l-mo-09/) - The introduction of square wire coils and higher motor speeds no longer allow coil AC losses to be ignored as a loss factor. Coil AC losses are caused by the skin effect and proximity effect due to frequencies, wire geometry and wire placement, as well as by current density distribution concentrated in wires arising from leakage flux that links coil ends. - [[L-MO-115] Performance Evaluation of Induction Motors Using Efficiency Maps](https://www.jmag-international.com/leaflet/l-mo-115/) - To analyze an induction motor's maximum efficiency, the voltage and slip is varied to find the combination with the highest efficiency. - [[L-MU-07]Multiphysics Analysis by Linking with Specialized Tools](https://www.jmag-international.com/leaflet/l-mu-07/) - The mapping function between models with different dimensions in a JMAG multiphysics analysis can also be used when running a coupled analysis with other tools. JMAG makes it possible to perform mapping spatially and in a time domain (average times and perform mapping), and physical amounts can be efficiently sent to third-party products. This allows calculation times to be greatly reduced for two-way coupled analyses which require a lot of time for calculations. - [[L-MU-93] JMAG/Adams/Simulink Coupled Vehicle Drive Simulation](https://www.jmag-international.com/leaflet/l-mu-93/) - Generally, it is said that drive motors used in electric cars have less vibration than engines, however, vibration caused by torque ripple may be transmitted to the entire vehicle becoming an issue. Conventionally, vehicle drive simulation using an ideal motor as input has been used to evaluate vibration during electric vehicle driving, but in order to properly evaluate vibration while driving, detailed motor characteristics such as torque spatial harmonics must be taken into account. - [[L-MB-55] High Fidelity Behavior Models Generation for Control/Circuit Simulation using JMAG-RT](https://www.jmag-international.com/leaflet/l-mb-55/) - The electrification in the automotive industries produces many new components with the complicated circuit network. For example, the three phase motors have been commonly used in EV/HEV. However, due to the high requirement for the system reliability, the use of multi-phase motors are getting attention, so the needs of the system level simulation of multi-phase motors with higher accuracy are increasing. - [[L-MB-33]Supporting Motor Drive Development with a JMAG-MATLAB/Simulink Coupling](https://www.jmag-international.com/leaflet/l-mb-33/) - Together with Mathworks, the company that develops MATLAB/Simulink (hereafter referred to as "Simulink"), JMAG strongly supports model-based development (hereafter referred to as MBD), which is utilized for developing motor drives such as EV/HEV. - [[L-MB-32] Simulating Responsiveness of Electric Machinery During Control with High Accuracy Using a Direct Coupling Analysis](https://www.jmag-international.com/leaflet/l-mb-32/) - For machines requiring high-speed responsiveness for controllers such as solenoid valves and injectors, level of accuracy required in simulation have increased following the advancement of controls. - [[L-MU-110] Reaching Steady-State at an Early Stage Using a Control Circuit Containing a JMAG-RT Model](https://www.jmag-international.com/leaflet/l-mu-110/) - Many motor performance evaluations are performed at steady-state. If transients occur during control/circuit coupling, it is necessary to calculate the number of electrical angle periods taken to reach steady-state. - [[L-MO-108] Motor Performance Evaluation Considering Control](https://www.jmag-international.com/leaflet/l-mo-108/) - At the motor component design stage, motor performance is evaluated using an ideal sinusoidal current. - [[L-MO-29] Creating Efficiency Maps with JMAG (FEA)](https://www.jmag-international.com/leaflet/l-mo-29/) - JMAG now offers a tool which uses finite element analysis (FEA) calculations to output an efficiency map. The advantage of using FEA to calculate an efficiency map is accuracy. In addition to the method using a plant model, an efficiency map can be created by incorporating dynamic effects, such as eddy currents in magnets and coil wires. - [[L-MO-105] System Design with Model-based Efficiency Map (Speed Priority Mode)](https://www.jmag-international.com/leaflet/l-mo-105/) - Electrical Vehicle drive require high efficiency of 95% or more over a wide operating range. - [[L-SE-117] Dealing with Non-Conforming Mesh](https://www.jmag-international.com/leaflet/l-se-117/) - In an analysis using FEA, the motion region and stationary region connection surface meshes are made to conform. To do this the step displacement is adjusted to be an integral multiple of a mesh division. - [[L-OP-107] Parameterize the Number of Poles and Slots](https://www.jmag-international.com/leaflet/l-op-107/) - In the initial stage of motor design, combinations of various motor types, numbers of poles, and numbers of slots are considered to find a design that meets the requirements. When you use a combination of a winding editor and geometry library, you can perform parametric analysis changing the number of poles and slots. - [[L-MU-91] NVH analysis of EV drivelines with JMAG and Romax Nexus](https://www.jmag-international.com/leaflet/l-mu-91/) - NVH is the one of most critical issues in the drivelines development of EV/ HEV. There are several points to be considered for the NVH analysis of the driveline. To evaluate the NVH of the driveline properly, it is necessary to consider not only electric machines but also other components such as the housing, bearings and the gear box. It is also essential to evaluate not only one single operating condition, but a wide range of them. - [[L-MU-92] JMAG/Particleworks Coupled Motor Cooling Analysis](https://www.jmag-international.com/leaflet/l-mu-92/) - Motor temperature control is an important issue. Due to temperature rise, demagnetization occurs in PM motor magnets leading to a loss of high efficiency. - [[L-MO-90] Detailed Coil Modelling for Motors](https://www.jmag-international.com/leaflet/l-mo-90/) - Motors require higher power densities and lowered heights. This calls for high-fidelity simulations that make it possible to view the effects of the detailed geometry of a coil. In the newest version of JMAG, a new wire modeling function has been developed and coil template functions have been improved, which models coils with end sections included. - [[L-MO-89]JMAG-Express Motor Design Tool](https://www.jmag-international.com/leaflet/l-mo-89/) - JMAG-Express is a motor design tool that instantly calculates unique motor characteristics in order to output design specifications to meet design requirements. As it uses the finite element method as a base, it is possible to account for detailed motor shapes and magnetic saturation at periods of high load. - [[L-MB-82]FEA Models to Plant Models within Short Time Periods](https://www.jmag-international.com/leaflet/l-mb-82/) - In model-based development (MBD), plant models that can simulate actual machines at a high accuracy are required. For this reason, the use of plant models using FEA that are capable of extracting highly accurate characteristic information is increasing. As accuracy increases, however, model creation time also becomes an important issue. - [[L-MB-79] Accounting for Circuit Coupling Functions with Control Systems](https://www.jmag-international.com/leaflet/l-mb-79/) - In order to evaluate transitional response characteristics within magnetic design, there are situations where control systems must be accounted for, as well as basic characteristics. Within magnetic devices with drive systems especially, a consideration of control systems makes it possible to express actual states of motion in more detail. - [[L-OP-78]User-Defined Geometry Library](https://www.jmag-international.com/leaflet/l-op-78/) - The geometry library that manages model geometry used in analyses has been newly added to JMAG. Users can register / share created geometry information themselves. It is possible to edit registered geometry data with any user-defined variable. These can be used not only as geometry data themselves, but also as geometry templates. - [[L-HU-43] Many Cores Supported by Desktop Parallel Solver SMP](https://www.jmag-international.com/leaflet/l-hu-43/) - As performance of desktop PCs has been greatly improving, PCs equipped with not only multi-core (4-8 core equipped CPUs) but with many cores (CPUs equipped with 10 or more cores) have been increasing. In order to make full use of the capabilities of hardware, the calculation speed using parallel solver SMP (parallel calculation using multi-cores in a computer) for multi-core PCs has further been improved. - [[L-MB-36] Highly-Accurate Estimation of Motor Behavior Using Detailed Motor Characteristics Obtained from JMAG-RT](https://www.jmag-international.com/leaflet/l-mb-36/) - In order to achieve high responsiveness in motor control, it is necessary to accurately predict the behavior of a running motor. Since motor parameters used in observer models are conventionally composed of constant terms independent of the operating points on the controller side, there was a problem with the tracking capability of the output for command values. For this reason, in the end, a physical machine was needed for parameter tuning. - [[L-OP-34] Using MATLAB's Optimization Engine in JMAG](https://www.jmag-international.com/leaflet/l-op-34/) - MATLAB is widely used in the engineering field, and the MATLAB Global Optimization Toolbox is often used for optimization calculations also. - [[L-OP-26] Reducing License Costs for Multi-Case Calculations](https://www.jmag-international.com/leaflet/l-op-26/) - A new license system has been implemented to lower license costs for multi-case calculations, such as parametric analyses, optimizations, and JMAG-RT model generation. - [[L-OP-03] Multi-Objective Optimization with JMAG](https://www.jmag-international.com/leaflet/l-op-03/) - It is even possible to analyse the relationship between design variables and response values in a correlation graph by visualizing the design space from optimization calculation results. - [[L-HU-08] Complex 3D Models to FEA Models Within Short Timeframes](https://www.jmag-international.com/leaflet/l-hu-08/) - Amounts of processing required will increase proportionately to the number of parts. By applying parallel processing, mesher processing speed increases, and mesh generation time is reduced considerably. - [[L-HU-01] High Performance Parallel Solver Analyzing Complex Phenomena in Rotating Machines As Is](https://www.jmag-international.com/leaflet/l-hu-01/) - JMAG's high parallel solver exhibits high performance and has answers to a wide range of problems for in practice. ## JMAG Users Conference Proceedings - [Motor control improved by using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2014_42/) - DSP Technology Co.,Ltd. would like to show that JMAG-RT can not only be used as a virtual motor to evaluate and test controllers, but can also be used for “torque ripple reduction control” and “direct torque control” in the motor control. - [JMAG solution: Higher fidelity motor HILS of FPGA-based by model-based development](https://www.jmag-international.com/conference_doc/uc2014_41/) - This seminar gives information about comparison of dq model and spatial harmonics model on HILS, and some solutions to the issue of increase of the motor parameters due to the tests with higher accuracy. - [Well-Developed Numerical Techniques and Future Expectation for Magnetic Field](https://www.jmag-international.com/conference_doc/uc2006_02/) - Koji Fujiwara, Doshisha University - [Effectiveness of Si-Gradient Electrical Steel for High-Efficiency Motor -Combined Experimental and Numerical Evaluation](https://www.jmag-international.com/conference_doc/uc2025_05/) - Soichiro Yoshizaki, JFE Steel - [Advanced Cooling Techniques for Automotive Electrical Machines: Thermal Modelling and Experimental Validation](https://www.jmag-international.com/conference_doc/uc2025_15/) - FENGYU ZHANG, University of Nottingham - [A Modular Generator Design for Large Wind Turbines: Concept and Case Study](https://www.jmag-international.com/conference_doc/uc2025_13/) - Masaya Inoue, Albatross technology inc. - [Advancing CSC Electrical Steels: From Material Development to Measurement and Prototype Applications](https://www.jmag-international.com/conference_doc/uc2025_06/) - Chen Guan-Ming, China Steel Corporation - [Modeling the Life Cycle of PM Rotor Performance from Magnetizing to Demagnetizing](https://www.jmag-international.com/conference_doc/uc2025_03/) - Alireza Fatemi, General Motors - [What Is the Role of JMAG in the Electric Machine Design?](https://www.jmag-international.com/conference_doc/uc2025_20/) - Po-Chang Hung, Gogoro Inc. - [Acceleration of Shape Search for Axial Flux-Switching Motors with Surrogate Models](https://www.jmag-international.com/conference_doc/uc2025_33/) - Yuto Kimura, YANMAR HOLDINGS CO.,LTD. - [Introduction to a New Motor Design Approach and BEV Optimization for Product Planning](https://www.jmag-international.com/conference_doc/uc2025_27/) - Seiji Fukui, Mazda Motor Corporation - [Challenges for Wide Frequency Band Operation of Inverter Drive Motors](https://www.jmag-international.com/conference_doc/uc2025_18/) - Kazumasa Ide, Nagoya University - [Importance of Wide-Band Support in Motor Loss Evaluations - Measurements and Analyses Accounting for Ringing Loss](https://www.jmag-international.com/conference_doc/uc2025_39/) - Masakazu Akahane, HIOKI E.E. CORPORATION / Hiroyuki Sano, JSOL Corp. - [High Fidelity 3D Virtual Prototype Integration into a Rapid Innovation Loop](https://www.jmag-international.com/conference_doc/uc2025_19/) - Jacob Krizan, Ford Motor Company - [Large-Scale Analysis of High-Efficiency Induction Motor for Railway Traction Applications](https://www.jmag-international.com/conference_doc/uc2025_35/) - Hiroshi Yoda, Railway Technical Research Institute - [Design Approach for Anisotropic Sm₂Fe₁₇N₃ Bonded Magnets Considering Alignment and Magnetization](https://www.jmag-international.com/conference_doc/uc2025_04/) - Rie Yoshida, NICHIA CORPORATION - [Eddy Current Loss Analysis in Solid Rotor Squirrel-Cage Induction Motors](https://www.jmag-international.com/conference_doc/uc2025_37/) - Sho Uchiyama, MEIDENSHA CORPORATION - [AC Loss Analysis of Superconducting Magnets for Magnetic Refrigerators](https://www.jmag-international.com/conference_doc/uc2025_09/) - Yuki Kihira, Kawasaki Heavy Industries, Ltd. - [Exploration of Motor Skew Specifications Using Parametric Optimization](https://www.jmag-international.com/conference_doc/uc2025_34/) - Yoshiki Sakuma, AISIN CORPORATION - [Machine learning in traction motor design – fragile hype or real revolution? An experience report.](https://www.jmag-international.com/conference_doc/uc2025_30/) - Louis Jäkel, IAV Japan Co., Ltd. - [Induction Heating Analysis and Coil Shape Optimization Accounting for Cooling and Rotation/Translation Motion](https://www.jmag-international.com/conference_doc/uc2025_11/) - Kenji Tani, NT TECHNO CORP. - [Data-Driven Optimization of E-Machines Considering the Powertrain of Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2025_31/) - Maximilian Clauer, Dr. Ing. h.c. F. Porsche AG - [JMAG Product Vision Design Driven by Data, but What’s Next…](https://www.jmag-international.com/conference_doc/uc2025_01/) - Takashi Yamada, JSOL Corp. - [A Comprehensive Overview of Excess Loss Modelling Including Skin and Thermal Effects in a Permanent Magnet Assisted Synchronous Reluctance Machine Example](https://www.jmag-international.com/conference_doc/uc2025_07/) - Sigrid Jacobs / Jan RENS, ArcelorMittal - [A Study on Optimal Combinations of Winding and Cooling Methods for Downsizing Power Units in Motorcycles Utilizing JMAG 1D Thermal Analysis](https://www.jmag-international.com/conference_doc/uc2025_14/) - Ryota Otaki, YAMAHA MOTOR CO., LTD. - [Development Plan - Toward Data Driven Design -](https://www.jmag-international.com/conference_doc/uc2025_17/) - Hiroyuki Sano, JSOL Corp. - [Shape Optimization to Improve the Coupling Coefficient of a Power Transformer](https://www.jmag-international.com/conference_doc/uc2025_26/) - Ryosuke Takayama, DIAMET CORPORATION - [Application Research of JMAG in Large Turbine Generators](https://www.jmag-international.com/conference_doc/uc2025_38/) - Baichuan Xu, SHANGHAI GENERATOR PLANT - [Combining FEM-Based Torque Ripple and Switching Inverter Dynamics for Electric Drive Controller Validation on Speedgoat Test Systems](https://www.jmag-international.com/conference_doc/uc2025_45/) - Lu-Dac, Speedgoat GmbH - [Development of a High-Speed Optimization Workflow Utilizing HPC-Based Multi-Case Distributed Computing](https://www.jmag-international.com/conference_doc/uc2025_23/) - Takuya Yoshioka, DENSO CORPORATION - [Multi-physics Design Optimization of an Externally Excited Axial Flux Machine](https://www.jmag-international.com/conference_doc/uc2025_21/) - Martin Bruell, Schaeffler AG - [Comparison Between Analysis and Actual Testing Using an Induction Motor by Magnetic Field-Thermal Coupling Analysis](https://www.jmag-international.com/conference_doc/uc2024_23/) - Wataru Morokuma, Mitsubishi Logisnext Co., Ltd. - [Characteristic Analysis of 12/10 Switched Reluctance Motor Using Control Circuit Function of JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2024_06/) - Nozomu Takemura, Osaka University / LG Japan Lab Inc. - [Advanced 3D Simulation and Optimization of Dual-Rotor Radial-Flux Electric Machines Using JMAG](https://www.jmag-international.com/conference_doc/uc2024_14/) - Adrian Wanner, DeepDrive GmbH - [An Effect of Leakage Flux from the Traction Motor to the Resolver](https://www.jmag-international.com/conference_doc/uc2024_15/) - Kan Akatsu, Yokohama National University - [JMAG Thermal Analyses for Higher Efficiency in Cooling System Design During Motor Product Development](https://www.jmag-international.com/conference_doc/uc2024_22/) - Manabu Kawaji, AISIN CORPORATION - [Improvement of Motor Design Process through Topology Optimization and Parametric Multi-Objective Optimization](https://www.jmag-international.com/conference_doc/uc2024_03/) - Hisayoshi Takeuchi, DAIHATSU MOTOR CO.,LTD. - [Case Study of Data-driven Design in Electric Motor Development](https://www.jmag-international.com/conference_doc/uc2024_04/) - Naoki Ohmura, IHI Corporation - [Large-scale Loss Analysis of Large Capacity Synchronous Motors and Comparison with Actual Measurements.](https://www.jmag-international.com/conference_doc/uc2024_12/) - Kohei Matsuura, TMEIC Corporation - [Optimization Calculation of Induction Hardening Condition by Using PSL on a Cloud Computing Service](https://www.jmag-international.com/conference_doc/uc2024_26/) - Tomohiro Kishi, KYB Corporation - [Electromagnetic Vibration and Noise Analysis of Induction Motor Using JMAG and Actran for Realizing Virtual Prototyping](https://www.jmag-international.com/conference_doc/uc2024_25/) - Hayato Naojima, Fuji Electric Co., Ltd. - [Effect of High Voltage System on Drive Motor Performance](https://www.jmag-international.com/conference_doc/uc2024_07/) - Nathan Li, NIO Inc. - [Optimization and High-precision Modeling of Permanent Magnet-free Motors](https://www.jmag-international.com/conference_doc/uc2024_18/) - Daisuke Sato, Nagaoka Motor Development Co., Ltd. - [Development Plan](https://www.jmag-international.com/conference_doc/uc2024_13/) - Hiroyuki Sano, JSOL Corp. - [Smart Motor Control Technology Evolving with AI - Virtual Sensors and Fault Detection -](https://www.jmag-international.com/conference_doc/uc2024_34/) - Atsushi Katagiri, MathWorks Japan - [Topology Optimization of Induction-Coil for Steel Strip Heating](https://www.jmag-international.com/conference_doc/uc2024_31/) - Masato Taira, NIPPON STEEL CORPORATION - [Large-scale Simulation and Optimization Using PSL](https://www.jmag-international.com/conference_doc/uc2024_29/) - Kim Bergsro, Volvo Cars - [Ultra Efficient and Power Dense Motors for Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2024_28/) - Emad Dlala, Lucid Motors - [High Performance, Sustainable and Affordable Rare-Earth Free Electric Machines.](https://www.jmag-international.com/conference_doc/uc2024_17/) - Philippe FARAH, YEESMA - [Design And Simulation Of High-Performance Permanent Magnet Synchronous Machines for Next Generation of Systems](https://www.jmag-international.com/conference_doc/uc2024_16/) - Bulent Sarlioglu, University of Wisconsin-Madison - [Thermal Analysis of Traction Motors Using JMAG: A Case Study and Future Perspectives](https://www.jmag-international.com/conference_doc/uc2024_09/) - Victor Rosa, Magna Powertrain - [High Voltage IWM Lightweight Development](https://www.jmag-international.com/conference_doc/uc2024_08/) - David Chu, FUKUTA ELEC. & MACH. CO, LTD. - [The Future of R&D and Design: What Can Electromagnetic Field Analysis and Artificial Intelligence Do for You?](https://www.jmag-international.com/conference_doc/uc2024_02/) - Hajime Igarashi, Hokkaido University - [JMAG Product Vision](https://www.jmag-international.com/conference_doc/uc2024_01/) - Takashi Yamada, JSOL Corp. - [Sustainable Motor Architecture through Optimization Techniques in JMAG](https://www.jmag-international.com/conference_doc/uc2023_04/) - BALASUBRAMANI K, SIMPSON & COMPANY LIMITED - [Integrated Framework for Design Synthesis and Optimization of IPM Machine for Off Highway Applications](https://www.jmag-international.com/conference_doc/uc2018_08/) - John Deere India Pvt. Ltd. presents an integrated framework to enable the radical design changes which are essential to achieve higher performance and low-cost to ensure longer team targets are met. - [The Faster Analysis of the Axial Gap Motor using JMAG](https://www.jmag-international.com/conference_doc/uc2023_08/) - Satoru Ota, MEIDENSHA CORPORATION - [Hybrid Method of Topology and Parameter Optimization Considering Magnetic and Circuit Properties of Power Electronic Devices -The Application Example to Wireless Power Transfer-](https://www.jmag-international.com/conference_doc/uc2023_06/) - Kazuki Sato, OMRON Corporation - [Initiatives in Induction Hardening Simulation by coupling JMAG and Simufact](https://www.jmag-international.com/conference_doc/uc2023_33/) - Ippei Ohnuma, NDK Inc. - [Practical use of JMAG-Designer in motor development](https://www.jmag-international.com/conference_doc/uc2012_10/) - Kengo Takao, RYOBI LIMITED - [Development of the IPM motor using JMAG-SuperExpress](https://www.jmag-international.com/conference_doc/uc2012_11/) - Takashi Ogawa, Panasonic Corporation,Appliances Company - [Magnetic Field Analysis of Parts of an Oil-Immersed Transformer Full-Scale Analysis Model](https://www.jmag-international.com/conference_doc/uc2012_06/) - Takayuki Suzuki, Fuji Electric Co., Ltd. - [Taking On Torque Ripple Analysis and Torque Ripple Reduction in SR Motors](https://www.jmag-international.com/conference_doc/uc2012_05/) - Futoshi Yamane, SAMSUNG YOKOHAMA RESEARCH INSTITUTE - [Magnetization Analysis for Magnets in Small Motors](https://www.jmag-international.com/conference_doc/uc2012_04/) - Michitaka Hori, NIHON DENJI SOKKI CO., LTD - [Efforts to Make Magnetic Field Analysis-Centered CAE Prevalent at Miki Pulley Co., Ltd.](https://www.jmag-international.com/conference_doc/uc2012_09/) - Shigeyuki Hattori, MIKI PULLEY CO.,LTD. - [Development of Advanced Keyless System Using Magnetic Field CAE](https://www.jmag-international.com/conference_doc/uc2012_26/) - Toshihide Yoshida, Mazda Motor Corporation - [Comparative Study of Field-Excitation Flux-Switching Motor Against PMSM for ISG Application](https://www.jmag-international.com/conference_doc/uc2013_37/) - Kwanghee Nam, Pohang University of Science and Technology (POSTECH) - [Development of Cylindrical Linear Motor for Lift-Motion](https://www.jmag-international.com/conference_doc/uc2012_03/) - Akihito Toyota, Yaskawa Electric Corporation - [Study of Magnetic Structure for Capturing Magnetic Particles in Fluid](https://www.jmag-international.com/conference_doc/uc2023_19/) - Shigeru Yamamoto, Hitachi High-Tech Corporation - [Applied Cases of EV Motor Controller Tuning by MILS using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2023_29/) - Nobuo Morimura, SUBARU CORPORATION - [Operating Characteristics of Adjustable-Field Permanent Magnet Motors with 3D Magnetic Paths and Asymmetric Magnet Arrangement](https://www.jmag-international.com/conference_doc/uc2023_09/) - Yutaro Hiyoshi, Yamaha Motor Co., Ltd. - [Comparison between IPM and SPM based on Experiment and Analysis Result(Report of Harumi Project1)](https://www.jmag-international.com/conference_doc/uc2008_18/) - Kan Akatsu,Katsuyuki Narita,Yoshuki Sakashita,Takashi Yamada, Tokyo University of Agriculture and Technology/JRI Solutions, Ltd. - [Practice of JMAG by e-learning](https://www.jmag-international.com/conference_doc/uc2008_17/) - Edmund Soji Otabe, Kyushu Institute of Technology - [Using JMAG in a Laboratory](https://www.jmag-international.com/conference_doc/uc2008_16/) - Kenji Nakamura, Tohoku University - [Efficiency improvement of non-contact power supply systems](https://www.jmag-international.com/conference_doc/uc2008_15/) - Hiroyasu Tomita, MURATA MACHINERY,LTD. - [Analysis of Switching Transformers Using Common and Specialized JMAG Features](https://www.jmag-international.com/conference_doc/uc2008_14/) - Hideo Matsumoto, Tabuchi Electric Co.,Ltd. - [Estimation of Inductance Variation in Small, Low Profile Transformers](https://www.jmag-international.com/conference_doc/uc2008_13/) - Masahiro Shima,Shinji Ikeda, COSEL CO., LTD./Toyama National College of Technology - [Scaling ICCG Performance in Multicore: The Current and Future Perspective](https://www.jmag-international.com/conference_doc/uc2008_12/) - Shigeki Gunji, Sumisho Computer Systems Corporation - [Technology for accelerating electromagnetic field analyses](https://www.jmag-international.com/conference_doc/uc2008_11/) - Takeshi Iwashita, Kyoto University - [Use of JMAG as CAE: Case Studies of Users](https://www.jmag-international.com/conference_doc/uc2008_09/) - Yusaku Suzuki, JRI Solutions, Ltd. - [Evaluation of eddy current characteristic for applied high frequency voltage to the giant magnetrostrictive material](https://www.jmag-international.com/conference_doc/uc2008_08/) - Masayuki Sugasawa, Sony EMCS Corporation - [Introduction to the electromagnetic field analysis software for transformer design](https://www.jmag-international.com/conference_doc/uc2007_09/) - Yusaku Suzuki, JRI Solutions, Ltd. - [Temperature analysis og non-invasive hyperthermia system using JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2007_06/) - Kazuo Kato, Meiji University - [Electromagnetic and Thermal Characterization of a Permanent-Magnet Tubular Machine using JMAG software](https://www.jmag-international.com/conference_doc/uc2007_12/) - VESE Ioama-Comelia, Technical University of Cluj-Napoca - [Object lesson og electric equipment design that users JMAG in Mie University](https://www.jmag-international.com/conference_doc/uc2007_07/) - Masao Syuto, Fuji Electric FA Components & Systems Co.,Ltd. - [The Effective Use of Magnetic Property Database](https://www.jmag-international.com/conference_doc/uc2007_03/) - Koji Fujiwara, Doshisha University - [Investigation of Error Factors between Measurement and Analysis Results of Torque in a Permanent Magnet Synchronous Motor under High Speed Rotation](https://www.jmag-international.com/conference_doc/uc2023_36/) - Masatsugu Takemoto, Okayama University - [Modern Hardware-In-the Loop Simulation Technology for Fuel Cell Hybrid Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2007_14/) - Christian Dufour, OPAL-RT Technologies Inc. - [Computer Analysis of Dual Frequency Induction Heating using JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2007_16/) - Takashi Horino, NETUREN CO.,LTD. - [Demands for electromagnetic field analysis and problems specific to transformers](https://www.jmag-international.com/conference_doc/uc2007_01/) - Shigekazu Sakabe, Tabuchi Electric Co.,Ltd. - [EXPERIENCES IN 3D FEM ANALYSIS](https://www.jmag-international.com/conference_doc/uc2007_02/) - Akira Chiba, Tokyo University of Science - [An analysis of the inductance for gapped magnet-core reactor](https://www.jmag-international.com/conference_doc/uc2007_08/) - Toshikazu Ninomiya, Tamura Coporation - [Large Torque and High Effectiency Permanent Magnet Reluctance Motor for A Hybrid Truck](https://www.jmag-international.com/conference_doc/uc2007_10/) - Masanori Arata, Toshiba Corporation - [Evaluation of the acoustic noise of DC permanent magnet motor](https://www.jmag-international.com/conference_doc/uc2007_11/) - Frank Hsieh, Chi-Hua Fitness Co.,Ltd. - [How Simulation Can Support the Automotive EMC-Development Process](https://www.jmag-international.com/conference_doc/uc2007_15/) - Stephan Frei, University Dortmund - [JMAG Development Plans 2006-2007](https://www.jmag-international.com/conference_doc/uc2006_01/) - Takashi Yamada, JRI Solutions, Ltd. - [Comparing Coupled Analysis with Experimental results for IPMSM](https://www.jmag-international.com/conference_doc/uc2006_04/) - Kan Akatsu, Tokyo University of Agriculture and Technology - [The Axial Air Gap Permanent Magnet Motor for Air Conditioners](https://www.jmag-international.com/conference_doc/uc2006_05/) - Takushi Fujioka, FUJITSU GENERAL LIMITED - [Magnetization Patterns and Motor Effeciency of the NEOQUENCH-DR](https://www.jmag-international.com/conference_doc/uc2006_06/) - Takao Yabumi, Daido Steel Co., Ltd. - [Electromagnetic and Thermal Modeling of a PermanentMagnet Synchronous Machine with Either a Laminated orSMC Stator](https://www.jmag-international.com/conference_doc/uc2006_07/) - Dave Farnia, Burgess-Norton Manufacturing Company - [Evaluation of Motors Using Powder Magnetic Cores by JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2006_08/) - Kinji Kanagawa, MITSUBISHI MATERIALS CORPORATION - [Analysis of the Magnetic Force Acting on the Toner in the Black Image Area and White Image Area in the Magnetic Printer](https://www.jmag-international.com/conference_doc/uc2006_09/) - Norio Kokaji, Meisei University - [Large Stroke Linear Oscillators based on Giant Magnetostrictive Material](https://www.jmag-international.com/conference_doc/uc2006_11/) - Yoshio Mitsutake, Matsushita Electric Works,Ltd. - [Analysis of Transformer using JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2006_12/) - Hidenori Uematsu, Panasonic Electronic Devices Co.,Ltd - [Development of the In-wheel Multipolar SR motor for an Electric Vehicle based on Magnetic Circuit Method](https://www.jmag-international.com/conference_doc/uc2006_14/) - Kenji Nakamura, Tohoku University - [Inductance simulation for Bus Bar](https://www.jmag-international.com/conference_doc/uc2006_15/) - Motomichi Ohto, Yaskawa Electric Corporation - [Motor Design Technologies Considering Detailed Magnetic Properties in Magnetic Core](https://www.jmag-international.com/conference_doc/uc2006_16/) - Akihiro Daikoku, Mitsubishi Electric Corporation - [Magnetic Field Analysis of Concentrated Winding PM Motor](https://www.jmag-international.com/conference_doc/uc2006_17/) - Yukihiro Noda, Toyo Electric Mfg .Co.,Ltd - [Evolution of Recent Electric Motors](https://www.jmag-international.com/conference_doc/uc2006_18/) - Masayuki Morimoto, Tokai University - [Transition of IPMSM for Air-Conditioners, and a Future Trend.](https://www.jmag-international.com/conference_doc/uc2006_20/) - Yuichi Yoshikawa, Motor Company Matsushita Electric Industrial Co.,Ltd. - [Resent Progress of Non-oriented Electrical Steel and Measurement Techniques](https://www.jmag-international.com/conference_doc/uc2006_21/) - H.Mogi, Nippon Steel Corporation - [Current Status of NdFeB Magnet and Analysis method](https://www.jmag-international.com/conference_doc/uc2006_22/) - Yasuhiro Marukawa, NEOMAX CO.,LTD. - [Analysis of the Third Harmonic Voltage Method Using the Finite Element Method](https://www.jmag-international.com/conference_doc/uc2006_23/) - Kyushu Institute of Technology - [Achievements for Research Using JMAG at the Sawa Laboratory in the Department of Science and Technology of Keio University](https://www.jmag-international.com/conference_doc/uc2006_24/) - Keio University - [Magnetic Field Analysis of Write Head Recording for Perpendicular Magnetic Recording](https://www.jmag-international.com/conference_doc/uc2006_25/) - Niigata Institute of Technology - [Utilizing Electromagnetic Field Analysis for High-frequency Devices and EMC Design](https://www.jmag-international.com/conference_doc/uc2006_26/) - Mie University - [AC Loss Reduction of Superconducting Power Transmission Cables Comprising Coated Conductors](https://www.jmag-international.com/conference_doc/uc2006_27/) - Yokohama National University - [PSIM: An Expandable Dynamic Simulation Platform for the Analysis and Design of Power Electronics and Motor Drivee Systems](https://www.jmag-international.com/conference_doc/uc2005_13/) - Hua Jin, Powersim Inc. - [200 KW PERMANENT MAGNET ALTERNATOR ANALYSIS & COMPARISON TO TEST RESULTS](https://www.jmag-international.com/conference_doc/uc2005_12/) - James R Hendershot, Motorsoft Div & Fisher Electric Technology - [The SPEED Motor Design Software](https://www.jmag-international.com/conference_doc/uc2005_11/) - Malcolm McGilp, University of Glasgow - [JMAG Development Plans 2005-2006](https://www.jmag-international.com/conference_doc/uc2005_10/) - Takashi Yamada, The Japan Research Institute,Limited. - [The future trend of real time Simulation technique](https://www.jmag-international.com/conference_doc/uc2005_09/) - Hirotoshi Tonou, Fujitsu Ten Limited - [Comparison to Measurements of Combined Simulation with RT Model of IPM Motor](https://www.jmag-international.com/conference_doc/uc2005_08/) - Yukari Toide, Mitsubishi Electric Corporation - [Practical Use of Connected Electro-circuit Simulation with Electromagnetic Analysis in the Development of Robot Actuator](https://www.jmag-international.com/conference_doc/uc2005_07/) - Takeo Kishida, Sony Corporation - [Analysis of RF devices using JMAG-Studio -Evaluation of transmission characteristics of RFID and RF splitters-](https://www.jmag-international.com/conference_doc/uc2005_06/) - Takashi Takeo, Mie University - [Promotion to Spread JMAG to Actuator Development and Applications](https://www.jmag-international.com/conference_doc/uc2005_05/) - Hideyuki Watanabe, Keihin-corp.co.jp - [Dynamic Analysis of the PM stepping motor by behavior model and circuit simulator](https://www.jmag-international.com/conference_doc/uc2005_04/) - Kaoru Miyazaki, SANYO Seimitsu Co.,Limited - [3D Design of Electrical Machines using JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2005_03/) - Goran Nord, Hoganas AB - [Electromagnetic Modelling in Teaching and Research Projects at the Unibersity of Auckland, New Zealand](https://www.jmag-international.com/conference_doc/uc2005_02/) - Dariusz Kacprzak, The University of Auckland - [Development of 2005 Model Year ACCORD Hybrid](https://www.jmag-international.com/conference_doc/uc2005_01/) - Masaaki Kaizuka, Honda R&D Co., Ltd. - [Expectation of the Mchatro Total Simulation System and Subjects to that Completion](https://www.jmag-international.com/conference_doc/uc2004_23/) - Ryuichi Oguro, Kyushu Institute of Technology - [Magnetic Field Analysis on Motor Design](https://www.jmag-international.com/conference_doc/uc2004_22/) - Motomichi Ohto, Yaskawa Electric Corporation - [Modeling and Simulation of EMI in Power Electoronics Systems](https://www.jmag-international.com/conference_doc/uc2004_21/) - Satoshi Ogasawara, Utsunomiya University - [Simulation Analysis for Power Electronic Systems](https://www.jmag-international.com/conference_doc/uc2004_20/) - Masahiro Kimata, Mitsubishi Electric Corporation - [Practical Applications of Electro-magnetic Analysis Combined with Simulation of Drive Systems for Rotating Machines](https://www.jmag-international.com/conference_doc/uc2004_19/) - Haruyuki Kometani, Mitsubishi Electric Corporation - [The Motor Control Technologies for New-Generation Prius](https://www.jmag-international.com/conference_doc/uc2004_18/) - Ryoji Mizutani, TOYOTA MOTOR CORPORATION - [Design Method for reducing Cogging Torque](https://www.jmag-international.com/conference_doc/uc2004_17/) - Mitsutoshi Natsumeda, NEOMAX CO.,LTD. - [Improvement technique of Cogging Torque for PMSM](https://www.jmag-international.com/conference_doc/uc2004_16/) - Hideo Dohmeki, Musashi Institute of Technology - [Sensorless Control Scheme and Experimental Characteristics for Permanent Magnet Synchronous Motors](https://www.jmag-international.com/conference_doc/uc2004_15/) - Takaharu Takeshita, Nagoya Institute of Technology - [Automatic and optimum design method of SPMSM](https://www.jmag-international.com/conference_doc/uc2004_14/) - Kan Akatsu, Tokyo University of Agriculture and Technology - [Recent Large Scale 3-D Finite Element Analysis and Applications](https://www.jmag-international.com/conference_doc/uc2004_13/) - Yoshihiro Kawase, Gifu University - [JRI Annpuncement](https://www.jmag-international.com/conference_doc/uc2004_12/) - Hiroshi Kawakami, The Japan Research Institute,Limited. - [Loss Analysis of Rotating Machines Considering Carrier Harmonics](https://www.jmag-international.com/conference_doc/uc2004_11/) - Katsumi Yamazaki, Chiba Institute of Technology - [Multi-objective Optimization of Electric Motor and its Driving Parameter using modeFRONTIER and JMAG-Simulink Co-simulation Model.](https://www.jmag-international.com/conference_doc/uc2004_10/) - Asahiko Otani, CD-adapco JAPAN Co.,LTD. - [Model Based Control for IPMSM](https://www.jmag-international.com/conference_doc/uc2004_09/) - Shigeo Morimoto, Osaka Prefecture University - [A simulation of the electromagnetic wave distribution in the microwave oven designed by 3-dimensional CAD (CATIA)](https://www.jmag-international.com/conference_doc/uc2004_08/) - Koji Yoshino, Matsushita Electric Industrial Co., Ltd. - [Analysis of Toner Motion in Electrophotography Development Process](https://www.jmag-international.com/conference_doc/uc2004_07/) - Masao Nakano, Canon Inc. - [A Study on the Correlation between Core Loss andResistivity of Powder Cores](https://www.jmag-international.com/conference_doc/uc2004_04/) - Takao Yabumi, Daido Steel Co., Ltd. - [Performance Analysis of DC-DC Power Converter](https://www.jmag-international.com/conference_doc/uc2004_05/) - Katsuhiro Hirata, Matsushita Electric Works,Ltd. - [Magnetic characteristics analysis of bulk high-Tc superconductor using JMAG](https://www.jmag-international.com/conference_doc/uc2004_06/) - Katsuhiro Fukuoka, Polytechnic University - [Local Magnetic Properties in Operating Brushless DC Motor](https://www.jmag-international.com/conference_doc/uc2004_03/) - Kunihiro Senda, JFE Steel Corporation - [Motor Core Iron Loss Analysis Evaluating Shrink Fit and Stamping Effect](https://www.jmag-international.com/conference_doc/uc2004_02/) - Keisuke Fujisaki, Nippon Steel Corporation - [JMAG Development Plans 2004](https://www.jmag-international.com/conference_doc/uc2004_01/) - Takashi Yamada, The Japan Research Institute,Limited. - [What is Effective CAE? -CAE for Diverse Automotive Development and Educating CAE Engineers](https://www.jmag-international.com/conference_doc/uc2003_08/) - Naofumi Hotta, Toyota Techno Service Corp. - [Recent Progress and Future Work in Analyzing Magnetic Recording Write Head Field](https://www.jmag-international.com/conference_doc/uc2003_02/) - Yasushi Kanai, Niigata Institute of Technology - [3-Dimensional Analysis of Perpendicular Magnetic Recording Mechanism Using JMAG](https://www.jmag-international.com/conference_doc/uc2003_03/) - Weixing Xia, Tohoku University - [Cogging Torque Calculation Considering Magnetic Anisotropy for Permanent Magnet Synchronous Motors](https://www.jmag-international.com/conference_doc/uc2003_04/) - Shinichi Yamaguchi, Mitsubishi Electric Corporation - [The practical use example of the magnetic field analysis of IPMSM](https://www.jmag-international.com/conference_doc/uc2003_05/) - Akio Yamagiwa, DAIKIN AIR-CONDITIONING R&D LABORATORY,LTD - [Development of Broadband Splitter for CS Satellite N-SAT-110 Adaptive CATV systems](https://www.jmag-international.com/conference_doc/uc2003_06/) - Takashi Takeo, Nagoya Municipal Industrial Research Institute - [Optimization of a Choking Coil using JMAG and AMDESS](https://www.jmag-international.com/conference_doc/uc2003_07/) - Hidenori Uematsu, Matsushita Electronic Components Co.,Ltd - [Furthering CAE for the Development of AVC Equipment](https://www.jmag-international.com/conference_doc/uc2003_09/) - Hiroto Inoue, AVC Networks Company Panasonic - [Toward More Effective Use of Electromagnetic Field Analysis-Factors Suffocating Extension of CAE and Provisions for them-](https://www.jmag-international.com/conference_doc/uc2003_10/) - Koji Fujiwara, Okayama University - [Cultivating Personnel for Electromagnetic Field CAE](https://www.jmag-international.com/conference_doc/uc2003_11/) - Yoshihiro Kawase, Gifu University - [Introduction of New jeatures on JMAG-Studio Ver.8](https://www.jmag-international.com/conference_doc/uc2003_12/) - Takayuki Nishio, The Japan Research Institute,Limited. - [Optimizaton of form and materials for IPM motor using JMAG-Studio and mode FRONTIER](https://www.jmag-international.com/conference_doc/uc2003_13/) - Yasumori Kanai, CD-adapco JAPAN Co.,LTD. - [Iron loss analysis of smalll motor using JMAG](https://www.jmag-international.com/conference_doc/uc2003_15/) - Masaki Shimizu, DENSO CORPORATION - [Calculation of starting torques of a motor of the outboard rotor type](https://www.jmag-international.com/conference_doc/uc2003_16/) - Takushi Fujioka, FUJITSU GENERAL LIMITED - [Coupled analysis combining magnetic field analysis and structural analysis of IPM motor](https://www.jmag-international.com/conference_doc/uc2003_17/) - Hideaki Matsuo, Motor Company Matsushita Electric Industrial Co.,Ltd. - [Electromagnetic Force Analysis of DC Motors Taking Commutation Characteristics into Account](https://www.jmag-international.com/conference_doc/uc2003_18/) - Xiaochun Sun, ASMO Co.,Ltd - [Introduction of JMAG Structural analysis (DS)](https://www.jmag-international.com/conference_doc/uc2003_19/) - Yusaku Suzuki, The Japan Research Institute,Limited. - [Integration of Parallel ICCG into JMAG and Performance Test](https://www.jmag-international.com/conference_doc/uc2003_20/) - Kazuhiro Hashiba, VINAS Co.,Ltd - [Application examples of the grid technology to the large-scale problem of JMAG](https://www.jmag-international.com/conference_doc/uc2003_21/) - Yoshiaki Suzuki, Japan IBM Ltd. - [Calculation Method of demagnetization for parmanent magnet,and its application to magnetic circuit](https://www.jmag-international.com/conference_doc/uc2003_22/) - Mitsutoshi Natsumeda, Hirofumi Takabayashi, Sumitomo Special Metals CO.,LTD - [Electromagnetic Analysis for Motor Iron Core Considering Stress and Magnetic Anisotropic](https://www.jmag-international.com/conference_doc/uc2003_23/) - Keisuke Fujisaki, Nippon Steel Corporation - [Loss Analysis of Rotating Machines Considering Harmonic Electromagnetic Fields in Stator and Rotor](https://www.jmag-international.com/conference_doc/uc2002_01/) - Katsumi Yamazaki, Chiba Institute of Technology - [Recording Field Analysis of Narrow Track Single Pole Type Head](https://www.jmag-international.com/conference_doc/uc2002_08/) - Yasushi Kanai, Niigata Institute of Technology - [A 3D-FEM Calculation Of a Small 3-phase permanent Magnets Generate mode of isotoropic Soft Magnetic Composit(SMC) material](https://www.jmag-international.com/conference_doc/uc2002_15/) - Goran Nord, Hoganas AB - [Magnetic calculation considering hysteresiswith Hysteron model using JMAG](https://www.jmag-international.com/conference_doc/uc2002_02/) - Yasuo Fujioka, TOYOTA MOTOR CORPORATION - [PWM Carrier Loss Analysis for Coreless PM Motors](https://www.jmag-international.com/conference_doc/uc2002_03/) - Takashi Kosaka, Nagoya Institute of Technology - [Examination about the analysis method of demagnetization of a permanent magnet](https://www.jmag-international.com/conference_doc/uc2002_04/) - Mitsutoshi Natsumeda, Sumitomo Special Metals CO.,LTD - [Influence of Magnetic Force Distribution on Cogging Torque of Permanent Magnet Motor](https://www.jmag-international.com/conference_doc/uc2002_05/) - Takao Yabumi, Daido Steel Co., Ltd. - [Numerical Calculation of AC Loss of Superconductor](https://www.jmag-international.com/conference_doc/uc2002_07/) - Edmund S.Otabe, Kyushu Institute of Technology - [Temperature Distribution Analysis of Optical Disk Using JMAG](https://www.jmag-international.com/conference_doc/uc2002_09/) - Masahiro Matsumaru, Victor Company of Japan, Limited - [Introduction of "SOL!BOX" -the Platform integrating CAE](https://www.jmag-international.com/conference_doc/uc2002_10/) - Toshiyuki Kondo, DENSO INFORMATION TECHNOLOGY CORPORATION - [A sstudy of the tip electric field of other materials in XLPE cable](https://www.jmag-international.com/conference_doc/uc2002_11/) - Masahiko Nakade, TEPCO - [Optimization Method for Inner Magnetic Shield in CRT](https://www.jmag-international.com/conference_doc/uc2002_12/) - Miyoko Okutani, Matsushita Electric Industrial Co., Ltd. - [JMAG Development Plans 2002-2003](https://www.jmag-international.com/conference_doc/uc2002_13/) - Takashi Yamada, The Japan Research Institute,Limited. - [Application Technology and Products Development of Non-oriented Electricall Steel](https://www.jmag-international.com/conference_doc/uc2002_14/) - Hiroyoshi Yashiki, Sumitomo Metal Industries, Ltd - [Developed Evalulation Technique and Iron Loss Analysis for Motor Core Applied Electrical Steel](https://www.jmag-international.com/conference_doc/uc2002_16/) - Keisuke Fujisaki, Nippon Steel Corporation - [Non-oriented Electrical steel for high frequency motor and some points of concern for use](https://www.jmag-international.com/conference_doc/uc2002_17/) - Yoshihiko Oda, NKK Corp. - [Influence of Processing Strain on Iron loss of Brushiless DC motor](https://www.jmag-international.com/conference_doc/uc2002_18/) - Kunihiro Senda, Kawasaki Steel Corporation - [Vibration and acoustic noise analysis of motor](https://www.jmag-international.com/conference_doc/uc2002_19/) - Fuminori Ishibashi, Shibaura Institute of Technology - [Development of a coupled simulation tool of coaxial motor driver by compound current for HEV](https://www.jmag-international.com/conference_doc/uc2002_20/) - Kan Akatsu, Nissan Motor Co., Ltd. - [Examples of motor analysis using FEMAP as a pre-processor](https://www.jmag-international.com/conference_doc/uc2002_21/) - Masanori Nakamura, Toyo Electric Mfg .Co.,Ltd - [Neutral Point Signal Characteristics of IPMSM](https://www.jmag-international.com/conference_doc/uc2002_22/) - Akio Yamagiwa, DAIKIN AIR-CONDITIONING R&D LABORATORY,LTD - [Electromagnetic Force Analysis of Multipule Power Source Synchronous Generator](https://www.jmag-international.com/conference_doc/uc2002_23/) - Takayuki Fujikawa, Shin-Daiwa-Kogyo Co.,Ltd - [Recent Analysis Method of Actuators Using 3-D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2002_24/) - Yoshihiro Kawase, Gifu University - [A New Method of PM Motor Drive Control -Analysis of PM Motor Using by JMAG-Works-](https://www.jmag-international.com/conference_doc/uc2000_09/) - Hideshi Ohtsuka,Masaji Nakatani, SHARP Corporation - [Characteristics Analysis of Scroll-Actuator using 3-D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2000_21/) - Katsuhiro Hirata, Matsushita Electric Works,Ltd. - [Measuremant of the Magnetic Characteristic and modelling of The Magnetic Material For Magnetic Field Analysis](https://www.jmag-international.com/conference_doc/uc2000_01/) - Yoshiyuki Ishihara, Doshisha University - [Effects of some factors on magnetic properties of Non-oriented electrical steel sheets](https://www.jmag-international.com/conference_doc/uc2000_02/) - Yoshihiko Oda, Materials & Processing Research Center, NKK Corp. - [How to handle a permanent magnet in the magnetic field analysis](https://www.jmag-international.com/conference_doc/uc2000_03/) - Sumitomo Special Metals CO.,LTD - [Analysis of Electromagnetic waves using the FDTD Method](https://www.jmag-international.com/conference_doc/uc2000_04/) - Tatsuya Kashiwa, Kitami Institute of Technology - [Development of Surface-wave Interferde Plasma Source Using JMAG-Works WV](https://www.jmag-international.com/conference_doc/uc2000_05/) - Nobumasa Suzuki, Canon Inc. - [Numerical results of receiving characteristics of a large crane in madium frequency](https://www.jmag-international.com/conference_doc/uc2000_06/) - Tomita Hajime, National Institute of Industrial Safety - [Fast multigrid solver for high frequency electromagnetic analysis](https://www.jmag-international.com/conference_doc/uc2000_07/) - David Dibben, The Japan Research Institute,Limited. - [Studies on Deformation of the Yoke of a DC Motor Caused by Electromagnetic Force](https://www.jmag-international.com/conference_doc/uc2000_08/) - Yoshiji Nakagawa, ASMO Co.,Ltd - [Magnetic Field and Thermal Analysis of Motors Using JMAG](https://www.jmag-international.com/conference_doc/uc2000_10/) - Daiki Matsuhashi, MEIDENSHA CORPORATION - [Use of JMAG-Studio and AMDESS for the Optimaization of Transformer Shape](https://www.jmag-international.com/conference_doc/uc2000_11/) - Matsushita Electronic Components Co.,Ltd - [New features in JMAG V6](https://www.jmag-international.com/conference_doc/uc2000_12/) - Takashi Yamada, The Japan Research Institute,Limited. - [Introduction of Electrical Steel Sheet & Magnet Database](https://www.jmag-international.com/conference_doc/uc2000_13/) - Hiroshi Hashimoto, The Japan Research Institute,Limited. - [How to use JAMG-Studio Script](https://www.jmag-international.com/conference_doc/uc2000_14/) - Yoshikazu Hayami, The Japan Research Institute,Limited. - [Integrated Development Environment for Motor Drive Control System Using JMAG and Matlab/Simulink](https://www.jmag-international.com/conference_doc/uc2000_15/) - Chen Hui, NSK Ltd. - [Degaussing Process Analysis Taking Account of Hysteresis for CRT](https://www.jmag-international.com/conference_doc/uc2000_16/) - Matsushita Electric Industrial Co., Ltd. - [Application of Electromagnetic Coupling with motion for High Speed Circuit Breaker](https://www.jmag-international.com/conference_doc/uc2000_17/) - Toshie Takeuchi, Mitsubishi Electric Corporation - [Eddy Current Analysis of Narrow Track Write Heads for Hard Disk Drives -Coparison Longitudinal and Perpendicular Recording Heads-](https://www.jmag-international.com/conference_doc/uc2000_18/) - Yasushi Kanai, Niigata Institute of Technology - [Design of a thin film write head using transient magnetic field analysis](https://www.jmag-international.com/conference_doc/uc2000_20/) - Ken-ichi Kitamura, Sony Corporation - [Alternator Three-dimensional Analysis that Incorporates Rectifier Circuit](https://www.jmag-international.com/conference_doc/uc2000_22/) - Yuji Naruse,Masao Ichikawa,Atsuo Ishizuka, DENSO CORPORATION,NIPPON SOKEN,INC. - [New Practical Analysis of Actuators by 3-D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2000_23/) - Yoshihiro Kawase, Gifu University - [Developments of high-Bs heads with small core for high-speed recording](https://www.jmag-international.com/conference_doc/uc2000_19/) - Yoshihiro Nakano,Tamaki Toba,Hiriaki Honjo,Shinsaku Saito,Tsutomu Ishi,Mikiko Saito,Nobuyuki Ishiwata,Keishi Ohashi, NEC Corporation - [Trend and Vision for Magnetic Field Simulation Technology](https://www.jmag-international.com/conference_doc/uc1999_01/) - Keio University - [Transient Analysis of Stepping Motors for Clocks using JMAG-Works](https://www.jmag-international.com/conference_doc/uc1999_03/) - Seiko Epson Corporation - [Magnetic Field Analysis of Linear Oscillatory Actuator](https://www.jmag-international.com/conference_doc/uc1999_04/) - Yoshio Tomigashi, SANYO Electric Co., Ltd. - [Analysis of Flat Coil Motors](https://www.jmag-international.com/conference_doc/uc1999_05/) - Kusatsu Electric Co., Ltd./The Japan Research Institute,Limited. - [Analysis of Electromagnetic waves using the FDTD Method](https://www.jmag-international.com/conference_doc/uc1999_06/) - Tatsuya Kashiwa, Kitami Institute of Technology - [Analysis of a Chip Inductor Using JMAG (TD)](https://www.jmag-international.com/conference_doc/uc1999_07/) - Michio Ohba, Matsushita Electronic Components Co.,Ltd - [Analysis of wave-absorption-property for ferromagnetics by FDTD method](https://www.jmag-international.com/conference_doc/uc1999_08/) - Morihiko Matsumoto, Nippon telegraph and telephone east corp., - [New Features and Future Development of the JMAG Series](https://www.jmag-international.com/conference_doc/uc1999_09/) - Takashi Yamada, The Japan Research Institute,Limited. - [Applications of Optimal Design Methods in Magnetic Field Problems](https://www.jmag-international.com/conference_doc/uc1999_10/) - Shinji Wakao, Waseda University - [Electromagnetics CAE Engineers Education at Mitsubishi Electric](https://www.jmag-international.com/conference_doc/uc1999_12/) - Hiroshi Hisha, Mitsubishi Electric Corporation - [Coating Simulation of Ion Plating](https://www.jmag-international.com/conference_doc/uc1999_13/) - Koichiro Maki, Sumitomo Metal Minimg Co.Ltd. - [Magnetic Field analysis of write heads for 20-100Gb/in^2 recordings](https://www.jmag-international.com/conference_doc/uc1999_14/) - Yasushi Kanai, Niigata Institute of Technology - [3-dimensional Analysis of Magnetic Recording Head Using JMAG](https://www.jmag-international.com/conference_doc/uc1999_15/) - Akira AHSGON, Matsushita Electric Industrial Co., Ltd. - [Latest 3-dimensional Magnetic Field Analysis Utilizing Motion](https://www.jmag-international.com/conference_doc/uc1999_16/) - Yoshihiro Kawase, Gifu University - [Magnetic Field Analysis System Utilizing a Personal Computer](https://www.jmag-international.com/conference_doc/uc1999_17/) - Motomichi Ohto, Yaskawa Electric Corporation - [Magnetic Field Analysis of a Synchronous Permanent Magnet Motor -Understanding Motor Operation Using JMAG Analyses -](https://www.jmag-international.com/conference_doc/uc1999_18/) - Munekatsu Shimada, Nissan Motor Co., Ltd. - [Practical Robust Optimization Method using HPC](https://www.jmag-international.com/conference_doc/uc2023_32/) - Takuya Yoshioka, DENSO CORPORATION - [A study on analysis of PM stepping motor](https://www.jmag-international.com/conference_doc/uc2007_13/) - Kaoru Miyazaki, SANYO Seimitsu Co.,Limited - [Analysis and Optimization of Motors for Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2023_05/) - ChiLu Lee, Vast Power Corporation - [Multi-physics simulation between JMAG and Abaqus, and its applicability to three-field simulation of cell phone speaker acoustic response](https://www.jmag-international.com/conference_doc/uc2012_33/) - Brad Heers, Dassault Systemes SIMULIA - [Ideal to Electrical Implementation: SaberRD & JMAG-RT Case Study in a Motor Drive System](https://www.jmag-international.com/conference_doc/uc2012_32/) - Kurt Mueller, Synopsys, Inc. - [High fidelity HILS and RCP for motor control development](https://www.jmag-international.com/conference_doc/uc2012_31/) - Takashi Miyano, dSPACE Japan K.K. - [Design of Switched Reluctance Motor by JMAG for Automotive traction application](https://www.jmag-international.com/conference_doc/uc2012_30/) - Yusuke Makino, NIDEC CORPORATION - [Simulation of the IPM Motor in a HILS Environment](https://www.jmag-international.com/conference_doc/uc2012_24/) - Nobuyuki Suzuki, Toshiba Corporation - [Case study of JMAG application at Mitsuba Corporation](https://www.jmag-international.com/conference_doc/uc2012_18/) - Ryuichi Takakusagi, Mitsuba Corporation - [Integrated Acoustic Simulation of a Switched Reluctance Motor Drivetrain as part of a Multi-physics approach to Electric Vehicle Optimization](https://www.jmag-international.com/conference_doc/uc2012_12/) - Koen De Langhe, LMS International - [Application and Development Environment of Virtual Motor Torque Ripple Reduction Control](https://www.jmag-international.com/conference_doc/uc2013_29/) - Yoshihiko Ozaki, DSP Technorogy Co.,Ltd. - [The Comparison of the real motor and motor HILS using spatial harmonics model](https://www.jmag-international.com/conference_doc/uc2013_28/) - Kazumichi Kaneko, A&D Company, Limited - [System Design and Component Design (Saber-JMAG's Coupling to Revolutionize the Design Process): What Benefits does Model-Based Development have for Motor Designers?](https://www.jmag-international.com/conference_doc/uc2013_21/) - Kurt Muller, Synopsys, Inc. / Takashi Yamada, JSOL Corp. - [Thermal Fluid Analysis of a PM Motor Multi-phase Flow](https://www.jmag-international.com/conference_doc/uc2013_16/) - Toshinobu Tanimura, Komatsu Ltd. - [Abaqus - JMAG Cosimulation of Induction Heating and Induction Forming Processes](https://www.jmag-international.com/conference_doc/uc2013_15/) - Kazuhiro Maeda, Dassault Systemes SIMULIA - [Computer simulation of induction heating contains thermal deformation in large ring metal parts.](https://www.jmag-international.com/conference_doc/uc2013_14/) - Takashi Horino, NETUREN CO,.LTD. - [High-Frequency Induction Heating Simulation using a Coupling of JMAG and COSMAP](https://www.jmag-international.com/conference_doc/uc2013_12/) - Yohei Awata, Denki Kogyo Co., Ltd. - [Actuality and Scope on Simulation of Heat Treatment](https://www.jmag-international.com/conference_doc/uc2013_11/) - Dong-Ying JU, Saitama Institute of Techinoligy - [Magnet temperature analysis and prototype verification in permanent magnet synchronous motor](https://www.jmag-international.com/conference_doc/uc2013_09/) - Ken Takeda, AISIN AW Co.,LTD. - [The Coupling of JMAG with Virtual.Lab Acoustics in view of predicting Transformer Noise due to Magnetostriction](https://www.jmag-international.com/conference_doc/uc2013_05/) - Koen De Langhe, LMS, A SIEMENS BUSINESS / Yusaku Suzuki, JSOL Corp. - [Multi-objective optimization with wide-range shape parametric design space for IPM motor](https://www.jmag-international.com/conference_doc/uc2014_27/) - AISIN CORPORATION presents that it is enabled multi-objective optimization for IPM Motor from among a wide-range of design space and complicated combinations of shape design parameters with evading above problem. - [Introduction to magnetic field design support system using JMAG](https://www.jmag-international.com/conference_doc/uc2014_24/) - AISIN CORPORATION will be introducing case studies as they have developed a magnetic field design support system that is meant to efficiently proceed with design work that uses magnetic field analysis. - [JMAG-RT as a tool in the development of EV/HEV powertrain components](https://www.jmag-international.com/conference_doc/uc2014_23/) - JMAG is being used at DENSO for design of e-motors for hybrid and electric vehicle powertrain applications. The features in JMAG-RT have proven to be a valuable part of the development of e-motors as well as the corresponding inverter and control software. - [Development plan of co-simulation framework of Star-CCM+ and JMAG](https://www.jmag-international.com/conference_doc/uc2014_14/) - Beginning with an explanation of loss, temperature, displacement, etc. exchanged between both parties, CD-adapco will be also covering case studies where linked interfaces are applied to the coupled magnetic field-thermal fluid analyses of motors and solenoids. - [Temperature analysis of the outer rotor type AC generator using JMAG-Designer and STAR-CCM+](https://www.jmag-international.com/conference_doc/uc2014_13/) - Mitsubishi Electric Engineering Company propose a method for estimating the temperature of a winding in PMG using JMAG-Designer and STAR-CCM+. - [Thermal simulation of an oil-cooled permanent magnet synchronous motor](https://www.jmag-international.com/conference_doc/uc2014_12/) - This paper describes a 3D thermal methodology for a permanent magnet synchronous motor by coupling 2D electromagnetic losses analysis with 3D thermal simulation. - [Computer simulation of high-frequency induction heating using a coupling of JMAG, FLUENT and ANSYS.](https://www.jmag-international.com/conference_doc/uc2014_10/) - At the first step of life evaluation of heating coil using CAE, KOYO THERMO SYSTEMS CO., LTD. report evaluation result of thermal stress distribution in induction heating with JMAG, FLUENT, and ANSYS. - [Applying HILS in the Development of Sensorless Motor Control](https://www.jmag-international.com/conference_doc/uc2015_30/) - HILS environment is developed to run a conformance check of control embedded in ECU with an accurate motor model. - [Analytical Predictions for Residual Stress in Crankshaft Subjected to Induction Hardening](https://www.jmag-international.com/conference_doc/uc2015_24/) - In this work, analysis technology to reproduce changes of temperature, phase fraction and stress-strain is built, and predict the residual stress. - [Metal Induction Heating Analysis with Two-Way Coupling of JMAG and STAR-CCM+](https://www.jmag-international.com/conference_doc/uc2015_23/) - Fuji Electric Co.,Ltd. will report on a case study using two-way coupling analysis of JMAG and STAR-CCM+. - [Noise and Vibration of Oil-Immersed Transformer Generated by Load Current](https://www.jmag-international.com/conference_doc/uc2015_07/) - JMAG was used in sound pressure analysis by the vibration of the tank filled with insulating oil. Meidensha Corporation will describe the examples of numerical analysis. - [Detailed Evaluation of High-frequency Transformers/Reactors](https://www.jmag-international.com/conference_doc/uc2016_13/) - In this seminar, we will discuss how to solve the typical problems on high-frequency transfoermes/reactors effectively using JMAG. - [Cooperation analysis of optimization and quality engineering by modeFRONTIER and JMAG](https://www.jmag-international.com/conference_doc/uc2016_10/) - I would now like to introduce examples of how it has become possible to smoothly implement quality engineering designs using optimization algorithms from modeFRONTIER and magnetic field analysis from JMAG. - [Study on Robust Optimization Method for Cogging Torque Reduction Accounting for Manufacturing Errors of the Motor](https://www.jmag-international.com/conference_doc/uc2016_08/) - Mitsubishi Electric Corporation, several types of manufacturing error in motor geometry were examined to reduce cogging torque to an acceptable level using design method that combining JMAG and the optimization software modeFRONTIER. - [Development of JMAG for Model Based Design](https://www.jmag-international.com/conference_doc/uc2016_07/) - JSOL Corp. will review the technical issues from the perspective of model based design and our approaches for them. - [Prediction of Solenoid Valve Motion by Magnetic Field - Fluid Two-Way Coupled Analysis](https://www.jmag-international.com/conference_doc/uc2016_04/) - Hitachi Automotive Systems, Ltd. proposed an analysis technique, which can predict solenoid valve motions based on a two-way coupled analysis of magnetic field and fluid, and applied it in new product development. - [Model-Based Design Meets FEA Simulation - Improving Motor Control Development using High Fidelity Motor Models](https://www.jmag-international.com/conference_doc/uc2016_03/) - MathWorks will describe Model-Based Design, with emphasis on motor modeling and the joint efforts between JMAG and MathWorks to improve importing motor model data from JMAG FEA software into Simulink. - [Permanent Magnet Motor Vibration Simulation for Compressor Application](https://www.jmag-international.com/conference_doc/uc2017_32/) - This report introduces a method to simulation motor vibration using JMAG and Virtual.Lab. The material properties is calibrated to make simulation vibration match test vibration. - [Case Study of Optimization by modeFRONTIER Using Linkage Function of JMAG with Solidworks (The Present Situation for the Process of Making the Workflow for Optimization)](https://www.jmag-international.com/conference_doc/uc2017_20/) - MAHLE Electric Drives Japan Corporation hopes that venders would improve time reduction which users take time for the optimization through the introduction of the actual trouble cases in this presentation. - [Improvements of JMAG-RT Model of Induction Motors in Automotive Traction Drive](https://www.jmag-international.com/conference_doc/uc2017_13/) - In the improved model, magnetic saturation and frequency dependence are considered. In addition, problems associated with induction motor analysis are presented. - [Predicting Electromagnetic Pump Operation Using a Simulink-JMAG Coupled Analysis](https://www.jmag-international.com/conference_doc/uc2017_11/) - IWAKI CO., LTD. will directly link the magnetic field analysis of a solenoid in JMAG with a fluid model constructed by Simulink (Simscape), and evaluate the effectiveness of the simulation by comparing the analysis results with measured values. - [Shape Optimization of Induction Heating Coil by JMAG - Optimus Cooperation](https://www.jmag-international.com/conference_doc/uc2017_09/) - KOYO THERMO SYSTEMS CO.,LTD. will introduce a case where they worked on the shape optimization of the heating coil which can hold the soak by cooperation of JMAG and Optimus for pulley. - [Design Exploration of Heating Coil Shape by Cooperation of JMAG and HEEDS](https://www.jmag-international.com/conference_doc/uc2017_08/) - NTN corporation introduces a case where the design of coil shape is automated using HEEDS which is design exploration software. - [Investigations in Coil Design for Induction Heating Using JMAG and the Optimization Tool HEEDS](https://www.jmag-international.com/conference_doc/uc2017_07/) - AW ENGINEERING CO.,LTD. will introduce their efforts to shorten calculation times for optimization operations. - [Nissan's EV Motor Development Strategy and History: Vison of Motor Development Strengthening with JMAG](https://www.jmag-international.com/conference_doc/uc2017_02/) - Nissan Motor Co., Ltd. will showcase the history of NISSAN’s motor development for electrified vehicles, the role JMAG has played in it, and our hopes for the future. - [Oil cooling Electric machine using multi-time scale CHT and Hybrid Multiphase](https://www.jmag-international.com/conference_doc/uc2018_39/) - This session introduces Simcenter STAR-CCM+ multiphase model property and utilization of multiphase transition and multi time scale CHT for oil cooling. - [Electromagnetic Force Analysis of Permanent Magnet Synchronous Motor Driven by PWM Inverter](https://www.jmag-international.com/conference_doc/uc2018_34/) - Vibration of traction motor is defined by electromagnetic force which is acting as vibration source and vibration transmission structure of the motor.In automotive applications, the motor generates electromagnetic force including high frequency by a battery driven inverter. - [A Temperature Prediction Technique of Motors by the Combination Between Harmonic Loss Simulation by JMAG-Designer and Thermal Simulation by FloTHERM.](https://www.jmag-international.com/conference_doc/uc2018_31/) - Aisin Seiki Co., Ltd. , since it became possible to build an SILS environment in JMAG from version 17.1, we tried a coupled analysis with harmonic loss calculation using this new function and thermal fluid analysis FloTHERM. - [Analysis of the Electromagnetic NVH of Electrical Machines](https://www.jmag-international.com/conference_doc/uc2018_29/) - The presentation deals with the electromagnetic NVH of electrical machines for electric vehicle application. It aims at presenting the current AVL-workflow for the calculation of NVH related issues in electrical machines and at discussing important time and spatial orders with regard to the NVH behavior. - [Low Oscillation Actuator for Force-controlled Medical Robot Arm](https://www.jmag-international.com/conference_doc/uc2018_28/) - Because of the necessity of these direct operation, what is expected of the arm is actuators that move smoothly with little vibration. As so to realize a motor with low cogging, low torque, and a lack of vibrations, investigations are carried out with both JMAG and analyses linked with vibration and control. - [Development of Control Circuit Model for Multi Injection Solenoid Valve Motion Prediction](https://www.jmag-international.com/conference_doc/uc2018_21/) - Hitachi Automotive Systems, Ltd. incorporated the injector drive control program into solenoid valve motion simulator, and propose the control circuit model for multi injection solenoid valve motion prediction. - [Electromagnetic Field - Thermal Stress Coupled Analysis and Experiment Verification in High Frequency Induction Hardening](https://www.jmag-international.com/conference_doc/uc2018_16/) - Denki Kogyo Co.,Ltd. reports on electromagnetic field-thermal stress coupled analysis performed on cylindrical shaped parts, in addition to verifications carried out with real experiments. - [Development of a Simulation Method for Electromagnetic Stirring in Levitation Melting Furnace Using a JMAG-STAR-CCM+ Two-Way Coupled Analysis](https://www.jmag-international.com/conference_doc/uc2018_14/) - Daido Steel Co., Ltd. will introduce the flow phenomenon of molten metal using a JMAG-STAR-CCM+ two-way coupled analysis. - [JMAG-RT Case Studies Using 3D Analysis](https://www.jmag-international.com/conference_doc/uc2018_12/) - To increase accuracy in analyses for flat geometry, however, 3D analysis becomes necessary, and the time required for creating RT models greatly increases.Mitsuba Corporation will introduce case study content that deals with the above issues using HPC. - [Development of High-Power-Density Machines for Aircraft Applications](https://www.jmag-international.com/conference_doc/uc2018_03/) - This study is focused on identifying the requirements and challenges associated with designing high-performance machines for aircraft applications with increasing levels of electrification. - [Analysis of Multi-Degree-of-Freedom Spherical Actuators in JMAG](https://www.jmag-international.com/conference_doc/uc2019_27/) - Factors that influence analysis accuracy were examined alongside an investigation into improving that accuracy in relation to the simulation of torque for a spherical actuator. - [Arc Plasma Interruption Process Modeling in Electromagnetic Relays Based on JMAG and ANSYS Fluent](https://www.jmag-international.com/conference_doc/uc2019_17/) - OMRON Corporation is going to introduce arc interruption simulation technology based on magnetohydrodynamic model by JMAG and ANSYS Fluent, examples that I have simulated arc interruption experiment, and improvement result of calculatiton processing time. - [FET Switching Control of PAM Inverter Circuit and Motor Characteristics Optimization of PWM Inverter Circuit](https://www.jmag-international.com/conference_doc/uc2019_16/) - Aisin Seiki Co., Ltd. worked in analyses with the objective of increasing efficiency with timing optimization using JMAG, focusing on FET switch timing in motors using our PAM inverter circuit. - [Automated Electric-Machine Design Workflow in the Cloud for Aviation Applications](https://www.jmag-international.com/conference_doc/uc2019_13/) - Rolls-Royce Hungary Kft. goal is to increase our agility with an automated electric machine design workflow in the cloud. JMAG software is fundamental in the design process and plays a major role to create a coupled multiphysics environment. - [Agile Electrical Machine Development for Hybrid Electric Aircraft](https://www.jmag-international.com/conference_doc/uc2019_07/) - In this presentation a use case of a hybrid- electric 4-seater aircraft (H3PS project) electrical drive system and an electric starter motor/generator will be introduced. - [Fuel Consumption Simulations for Vehicles Equipped with HUB Bearings with Motor Generator (eHUB)](https://www.jmag-international.com/conference_doc/uc2019_06/) - NTN Corporation, in NTN, also use the analytical model of fuel consumption of a vehicle and the motor model by JMAG-RT to explore the motor specification and control algorithm of eHUB motor to minimize the vehicle fuel consumption. Here, I will present a closer look at the performance of the simulation model, based on actual motor tests and real fuel consumption data. - [Case Study of Developing an IPM Motor Drive System with Model-Based Development (MBD) - Using JMAG-RT and HILS -](https://www.jmag-international.com/conference_doc/uc2019_03/) - In this report Shimadzu Corporation introduces a case study of MBD in developing an IPM motor drive system using JMAG-RT and HILS (Hardware-in-the-Loop Simulation). - [Electromagnetic Field Thermal Fluid Coupled Analysis for In-Vehicle Motors 2.0](https://www.jmag-international.com/conference_doc/uc2020_17/) - TODA RACING Co., Ltd. with a simple model, heat distribution was obtained from JMAG, mapped in the similarly domestic software scFLOW, and then handled in an electromagnetic field thermal fluid coupled analysis. As an additional second phase to this, coupled analysis was performed on the actual model, and detailed analysis results were verified and optimized. - [JMAG & GT-SUITE Link for EV Traction Motor 1D Thermal Analysis](https://www.jmag-international.com/conference_doc/uc2020_05/) - AISIN SEIKI CO., LTD. introduce a case study of estimating the transition of temperature during continuous motor drive in a 1D thermal analysis via the coupling between JMAG and GT-SUITE. - [Calculation Cost Reduction Method in Multi-Objective Optimization Using Machine Learning: Case Study on Actuator Development](https://www.jmag-international.com/conference_doc/uc2021_10/) - AISIN CORPORATION was able to speed up calculations by using this predictive model in optimization calculations, and they show a case study for reducing calculation costs significantly in this presentation. - [Performance Analysis Method of IPM Motor for EV Using Electromagnetic Simulation(JMAG)](https://www.jmag-international.com/conference_doc/uc2021_08/) - Honda R&D Co.,Ltd explains the methods for calculating motor characteristics and analysis methods required for IPMSM design and reports the methods taken into account for calculating iron loss in order to accurately estimate the output characteristics of the actual machine. - [Model-Based Solution for Efficient Motor Control System Development](https://www.jmag-international.com/conference_doc/uc2022_31/) - MathWorks Japan will focus on motor control and present a workflow from system study to implementation using electrification-ready products as the subject. In doing so, MathWorks Japan will introduce the key points to use in conjunction with JMAG-RT and MATLAB, Simulink - [Electrical Machine Loss Simulation and Model Validation Using JMAG and MATLAB Simulink](https://www.jmag-international.com/conference_doc/uc2022_22/) - In Rolls-Royce Electrical, we were able to develop a process to simulate the power electronics effect on the electrical machine at the earliest phase of the design by connecting JMAG and MATLAB-Simulink. - [Building the Prediction Process for Motor Noise by Co-Simulation Electromagnetic Circuit and Structure Transfer System](https://www.jmag-international.com/conference_doc/uc2022_13/) - Mazda Motor Corporation introduces prediction method for electromagnetic force cause of motor noise by construct electro/magnetic circuit model and Co-simulate them. - [Solenoid Valve Development Using Magnetic Field Analysis Coupled Technology](https://www.jmag-international.com/conference_doc/uc2022_07/) - In the design of solenoid valves, which require high response and miniaturization, Aisan Industry Co., Ltd. has developed a method for "shape study" and "response evaluation" in simulation. - [Initiatives in Improving the Design Accuracy and Performance of Magnetic Bearings](https://www.jmag-international.com/conference_doc/uc2023_21/) - Ryoma Yamamoto, Kawasaki Heavy Industries, Ltd. - [Investigation of the Effect on Electromagnetic Excitation Force Considering Dynamic Eccentricity in Ultra-High Rotation Motor](https://www.jmag-international.com/conference_doc/uc2023_17/) - Takashi Maeda, ESTECH Corporation - [Verification of Motor Component Losses using Large-Scale Analysis](https://www.jmag-international.com/conference_doc/uc2023_10/) - Daisuke Misu, Toshiba Infrastructure Systems & Solutions Corporation - [Magnetic, Thermal and Vibration Evaluation of Permanent Magnet Synchronous Motor Considering High Frequency Component of Electric Current by PWM](https://www.jmag-international.com/conference_doc/uc2023_03/) - Takeshi Hara, YANMAR HOLDINGS CO.,LTD. - [Application of the Heat Generation Analysis Function to Motor Optimization](https://www.jmag-international.com/conference_doc/uc2023_12/) - Kyohei Yanagisawa, ASTER CO.,LTD - [Modeling Study of Magnetic Properties in Stator Cores with Splits in the Core Back Region and Study of Application to Design](https://www.jmag-international.com/conference_doc/uc2023_24/) - Yu Hirotani, Mitsubishi Electric Corporation - [Topology Optimization of SynRM using Gabor Filter](https://www.jmag-international.com/conference_doc/uc2023_07/) - Yushi Kido, AISIN CORPORATION - [Thermal Problem of the 200kW Class High-Speed Rotation Axial Gap Motor Applied to the Uniaxial Electric Pump for the Cryogenic Propellant Supply of the 30kN Thrust Class Liquid Rocket Engine (Study using JMAG Results and CFD-Thermal Coupled Analysis)](https://www.jmag-international.com/conference_doc/uc2023_13/) - Mitsuru Shimagaki, Japan Aerospace Exploration Agency - [Optimizing Motor Shrink Fitting Process Conditions using Induction Heating](https://www.jmag-international.com/conference_doc/uc2023_34/) - Keisuke Ando, NIPPON THERMONICS CO.,LTD - [Analysis of Electromagnetic Force Acting on a Workpiece During Induction Heating](https://www.jmag-international.com/conference_doc/uc2023_35/) - Go Hagimoto, NSK Ltd. - [Optimized Design of Extrusion Molding System using Multi-Step Magnetization Function](https://www.jmag-international.com/conference_doc/uc2023_23/) - Mayu Maruyama, Power Supply Technology Co., Ltd. (Abbreviated: PST) - [1 : JMAG-Ansys-Optimus Electromagnetic Field-Structure Analysis 2 : AI and PIDO Integration -Fast non-parametric shape optimisation-](https://www.jmag-international.com/conference_doc/uc2023_38/) - Two themes will be presented on Optimus, which supports optimal design. The first is the introduction of a solution that uses Optimus as a platform and JMAG-Ansys to carry out electromagnetic field and structural analysis. The second theme will show how Optimus can be used to integrate surrogate AI models with Optimus, including fast non-parametric optimisation. - [SIMBA, Reinventing Motor Drive Simulation](https://www.jmag-international.com/conference_doc/uc2023_40/) - Ryoko Imamura, Powersys - [Model-Based Calibration Enables Optimal Torque Control of Synchronous Motors in a Short Time](https://www.jmag-international.com/conference_doc/uc2023_37/) - Atsushi Katagiri, MathWorks Japan - [Electrical Power & Propulsion Systems for Advanced Air Mobility 3D Design Space Exploration](https://www.jmag-international.com/conference_doc/uc2023_31/) - Florian Birnkammer, Rolls-Royce Deutschland Ltd & Co KG - [Coupled Optimization of Active and Passive Components in Electric Machines: Towards Performance, Efficiency, Reliability and EMC Objectives](https://www.jmag-international.com/conference_doc/uc2023_30/) - Mohamed Essam Ahmed, AVL List GmbH - [Enabling Full EDU Optimization and Losses Analysis Under Different PWM Strategies and DC Voltages Employing Combined JMAG-MATLAB Simulation Environments](https://www.jmag-international.com/conference_doc/uc2023_27/) - Nicola Rossi, Rimac Technology - [Validated Efficiency Simulation of Electrical Machine Based on JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2023_26/) - Li Chen, United Automotive Electronic Systems Co.,Ltd. - [H3X Integrated Motor Drives: Delivering World-Class Power Density for Maximum Vehicle Range](https://www.jmag-international.com/conference_doc/uc2023_25/) - Max Liben, H3X Technologies - [Comparing Numerical with Statistical Iron Core Loss Modelling Approaches for Application in Automotive Traction Electrical Machines](https://www.jmag-international.com/conference_doc/uc2023_20/) - Sigrid JACOBS / Jan RENS, ArcelorMittal - [Implementing JMAG into the Design and Development Process and the Challenges Involved](https://www.jmag-international.com/conference_doc/uc2023_18/) - Taisuke Miyazono, Taisan Industrial Co., Ltd - [Development of a Detailed 3D Eccentric eMotor Model for Electric Vehicle NVH Simulations](https://www.jmag-international.com/conference_doc/uc2023_16/) - Jacob Krizan, Ford Motor Company - [Coupled Analysis of Induction Motor using JMAG-Express](https://www.jmag-international.com/conference_doc/uc2023_11/) - Ryuki Haruna, TEIKOKU ELECTRIC MFG. CO., LTD. - [Best of Bosch – The Computational Concerto Orchestrating Finite Element Analysis, Network Methods, and Machine Learning](https://www.jmag-international.com/conference_doc/uc2023_02/) - Stefan KURZ, Robert Bosch GmbH - [Electromagnetic Materials Suited for Electrified Transport](https://www.jmag-international.com/conference_doc/uc2020_14/) - ArcelorMittal , 2 specific linear machines for high-speed rail applications are optimized regarding ferromagnetic material selection, and analysed regarding core losses. - [Heating property of re-entrant type resonant cavity applicator for brain tumor hyperthermia](https://www.jmag-international.com/conference_doc/uc2003_14/) - Kazuo Kato, Meiji University - [Automatic Design System for Permanent Magnet Synchronous Motors Using Deep Generative Model](https://www.jmag-international.com/conference_doc/uc2022_09/) - This lecture explains the data generation using JMAG, the training method for the system, and the optimization results. - [Magnetic Analysis for Wireless Power Transfer via Magnetic Resonant Coupling - Effect of Foreign Object -](https://www.jmag-international.com/conference_doc/uc2017_27/) - Limitations that can be modeled by an equivalent circuit model and range that can be modeled by magnetic field analysis are described. In addition, The University of Tokyo will explain the influence of metal foreign object size and material. - [Application of Hysteresis Model to Improve Accuracy of Iron Loss Estimation for Rotating Machine](https://www.jmag-international.com/conference_doc/uc2018_18/) - DENSO CORPORATION reports on the accuracy when the iron loss estimation model using hysteresys model to the single sheet and the motor, and the problems clarified in the application. - [Structure, Characteristics and Analysis of Poly-Phase Induction Motor for Automotive Traction Applications](https://www.jmag-international.com/conference_doc/uc2022_25/) - The rare-earth permanent magnet motors have been installed in most cases, however, the price and supply of the rare-earth material may be limited. A few electrical vehicles employ induction motors. - [Performance Calculation of Wound Field Synchronous Motors as the Traction Motor for Vehicles](https://www.jmag-international.com/conference_doc/uc2022_17/) - MEIDENSHA CORPORATION calculated the torque performance and efficiency of WFSM as the traction motor for vehicles, and compared with IPMSM. - [Next Generation EV Motor Design Using JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2021_12/) - IAV GmbH will present modern approaches and design flows to face the most demanding FEA simulation tasks. The efficient deployment of JMAG-Designer will be demonstrated in typical phases of modern electric motor design. - [Model Based Development of Dual Inverter with JMAG-RT Model and Motor HILS](https://www.jmag-international.com/conference_doc/uc2021_02/) - MIRISE Technologies Corporation introduces the dual inverter HILS equipped with the JAMG-RT model for shortening the development time of the dual inverter control logic. - [Cooperation Between JMAG and MSC Products in Motor CAE](https://www.jmag-international.com/conference_doc/uc2020_41/) - The primary purpose of CAE for motors is to pursue efficiency, but in order to evaluate performance, it is necessary to solve the problems of heat and noise. These problems can be solved by linking JMAG, and MSC Software’s thermo-fluid analysis software scFlow and acoustic analysis software Actran. - [Ultra-high Fidelity Hardware in the Loop (HIL) Simulation for EV Motor Drives with Seamless Integration with JMAG-RT](https://www.jmag-international.com/conference_doc/uc2020_39/) - Typhoon HIL, Inc. will demonstrate Typhoon HIL’s ultra-high fidelity power electronics and motor drive Hardware in the Loop (HIL) solution, including vertically integrated hardware and software, with seamless integration with JMAG RT machine models. - [How to Leverage JMAG-RT for MBD and Its Prospects](https://www.jmag-international.com/conference_doc/uc2020_12/) - Honda has set a target achieving two-thirds of total global sales to be electrified by 2030.In this session, We introduce the merit of simulation with JMAG-RT for developing motor and motor control, which developing with Invertor. - [Application of Topology Optimization Analysis Technology for Traction Motor of Automotive](https://www.jmag-international.com/conference_doc/uc2020_09/) - Hitachi Automotive Systems, Ltd. has tried to explore the best rotor core design applying topology optimization analysis technology of JMAG. - [Traction Motor Design Using Power Simulation License](https://www.jmag-international.com/conference_doc/uc2019_31/) - NIDEC CORPORATION, the author introduce utilization example of power simulation licenses that reduce license costs to traction motor design and reduce calculation time. - [Electromagnetic Field Thermal Fluid Coupled Analysis for In-Vehicle Motors](https://www.jmag-international.com/conference_doc/uc2019_18/) - TODA RACING Co., Ltd. provides total support from motor design and development to prototyping and evaluation, with test machines included. In consideration of cooling to improve the performance of in-vehicle motors, thermal fluid analysis with simulations is crucial. - [Electric Noise in Cars from Inverter Current to Noise](https://www.jmag-international.com/conference_doc/uc2019_09/) - This paper shows first how this tonal noise can be simulated and show the comparison to measurement. - [Right First Time Design of e-Drive NVH](https://www.jmag-international.com/conference_doc/uc2018_40/) - Hiroshi Koyama, Romax Technology Japan Limited - [Analysis and Optimization of a High Speed Induction Motor in an EV Application using JMAG](https://www.jmag-international.com/conference_doc/uc2018_32/) - Milind Paradkar, AVL Software and Functions GmbH - [Effects of the Aluminum Coil on the WPT System](https://www.jmag-international.com/conference_doc/uc2018_27/) - With the Tabuchi electric’s technology of the joint between the aluminum litz wire and the Copper terminal, the Aluminum coil for the WPT system is realized. - [Optimum Design of Wireless Power Transfer Coils for EVs Calculated by JMAG](https://www.jmag-international.com/conference_doc/uc2018_26/) - The presentation will be shown the examples of the optimum design of WPT coils for EV using gene analysis calculated by JMAG. - [Design of IPM Machines with Hairpin Windings for Electric Vehicle Applications](https://www.jmag-international.com/conference_doc/uc2018_17/) - Some new approaches of inverse design method will be discussed as well as some topics to find and optimize solutions for a good winding design that can be produced easily in high volumes and still keep a good compromise between cost and performance. - [Magnetic Field Analysis of Permanent Magnet Synchronous Motor Using JMAG-Designer Ver.17.1 with Control Circuit Modeling Functions](https://www.jmag-international.com/conference_doc/uc2018_11/) - Mitsubishi Electric Corporation introduces numerical results of PWM drive using JMAG-Designer Ver.17.1 with control circuit modeling functions. - [Research the Heavy Rare Earth-Free Motor for Hybrid Vehicle](https://www.jmag-international.com/conference_doc/uc2017_33/) - In this study, a new motor was developed using heavy rare-earth-free hot deformed magnets with performance and marketability equal to or higher than those of traction motors equipped in one-motor sport hybrid systems. - [Study on Iron-Loss Analysis Method under Distorted Sinusoidal Waveform Excitation](https://www.jmag-international.com/conference_doc/uc2017_23/) - SUZUKI MOTOR CORPORATION presents an iron loss calculation method considering hysteretic property with play model under distorted waveform excitation and its experimental verification of FE-analysis accuracy. - [Verification By Measuring and Analyzing Motor Gap Magnetic Flux Using Sheet State Search Coils](https://www.jmag-international.com/conference_doc/uc2017_17/) - The magnetic flux of a motor gap during actual operation was measured using specially designed sheet state search coils (very thin magnetic flux sensors) and compared with a JMAG magnetic flux calculation. - [Development of Measurement Method of Three-dimensional Demagnetization Distribution in Permanent Magnets for Motors](https://www.jmag-international.com/conference_doc/uc2017_16/) - MagHEM developed the measurement method of the three-dimensional demagnetization distribution of the subdivided permanent magnets at the working point that the magnets are installed in a motor, and verificated the simulation result by JMAG-Designer. - [Power measurement using large current/high frequency sensors](https://www.jmag-international.com/conference_doc/uc2016_33/) - When users try to evaluate a large inverter driven motor, large current sensors are essential. Yokogawa Meters & Instruments Corporation introduces points of power consumption measurement of those devices. - [Development of Motors for SPORT HYBRID SH-AWD for New NSX](https://www.jmag-international.com/conference_doc/uc2016_28/) - Development of the motor focused on the slot combination, the shape of the magnetic circuits,seeking to reduce motor noise and vibration. - [COMPARATIVE STUDY OF INDUCTION MACHINE AND PERMANENT MAGNET ASSISTED SYNCHRONOUS RELUCTANCE MACHINE](https://www.jmag-international.com/conference_doc/uc2016_06/) - VALEO makes a quantitative comparison between IM and PMA-SynRM for (HEV) application, in terms of electromagnetic and mechanical performance. - [2-Step Multi Objective Optimization of EV System by 1D and 3D Integration](https://www.jmag-international.com/conference_doc/uc2015_37/) - Cybernet Systems Co., Ltd., 2-step multi objective optimization of EV system integrating 1D and 3D simulations is introduced. - [Electromagnetic design method of wireless charging coil mounted under a vehicle](https://www.jmag-international.com/conference_doc/uc2015_14/) - TOYOTA MOTOR CORPORATION measured electromagnetic performance under a vehicle, confirmed of the gap between the analysis and the actual measurement, and clarified loss distribution by leakage magnetic flux. - [Development of a wireless power transfer technology and electromagnetic field analysis](https://www.jmag-international.com/conference_doc/uc2015_13/) - Technova Inc. reports on design considerations of the both systems and test results of the prototype, including analysis results by JMAG. - [The effort of fast numerical simulation of large scale electromagnetic field analysis](https://www.jmag-international.com/conference_doc/uc2015_09/) - SUZUKI MOTOR CORPORATION will report on calculation speed using 320 parallels in distributed memory-type parallelization. - [Multi-Physics Machine Design Optimization Based on Finite Element Analysis Using High-Throughput Computing](https://www.jmag-international.com/conference_doc/uc2015_05/) - This research introduces an approach for overcoming this obstacle using a high-throughput computing (HTC) environment that harnesses the parallel processing capabilities of large numbers of computers to evaluate many candidate designs simultaneously. - [Electromagnetic-thermal coupled multi-objective optimization on HPC systems for rotating electrical machines used in phev applications](https://www.jmag-international.com/conference_doc/uc2015_04/) - For the developed optimization algorithm the electromagnetical-thermal coupled analysis in JMAG designer is used to optimize an expert design using multicore high performance computing systems. - [Measurement of magnetic flux density on permanent magnet surfaces for IPM motor](https://www.jmag-international.com/conference_doc/uc2014_32/) - NIPPONSOKEN,LTD. established the measurement technique of magnetic flux density on permanent magnet surfaces when IPM motor operates using small and thin 2 type sensors. - [Fast numerical simulation of 3D electromagnetic analysis using HPC](https://www.jmag-international.com/conference_doc/uc2014_30/) - DENSO CORPORATION attacked to develop HPC (High Performance Computing) method in the case of 3D-Motor model with JSOL Corporation. - [Application-Oriented Motor Design by using the electromagnetic field analysis in TOYOTA](https://www.jmag-international.com/conference_doc/uc2014_02/) - TOYOTA MOTOR CORPORATION will discuss solution case studies using FEM, focusing on specific motor design issues taking into account motor needs such as performances and driving conditions. - [Development of High power & High efficiency Motor for EV using magnetic field analysis.](https://www.jmag-international.com/conference_doc/uc2013_35/) - Takeshi Ikemi, NISSAN MOTOR CO.,LTD - [Enhancing Precision in Superimposed Direct Current Characteristics Computations using a Powder Soft Magnetic Core](https://www.jmag-international.com/conference_doc/uc2013_31/) - Kinji Kanagawa, MITSUBISHI MATERIALS CORPORATION - [High-precision HILS Solution for EV/HEV Control Development (JMAG-RT Support, Spatial Harmonic Model)](https://www.jmag-international.com/conference_doc/uc2013_27/) - Koji Fukusumi, dSPACE Japan K.K. - [An Initiative to Reduce Vibration in an Electric Vehicle Motor](https://www.jmag-international.com/conference_doc/uc2013_17/) - Tsutomu Tanimoto, NISSAN MOTOR CO., LTD. - [The study of calculation accuracy improvement for magnetic loss of motor](https://www.jmag-international.com/conference_doc/uc2013_07/) - Kohichi Tanimoto, DENSO CORPORATION - [Characteristics Improvement of Skewed Permanent-magnet Motors](https://www.jmag-international.com/conference_doc/uc2012_28/) - Kenji Endo, SIM-Drive Corporation - [Development of Reduced Rare Earth Magnets by Partial Diffusion Method](https://www.jmag-international.com/conference_doc/uc2012_22/) - Masashi Inoue, Honda R&D Co.,Ltd. - [Development of an Automation System for Preliminary Design of HEV and EV Motors](https://www.jmag-international.com/conference_doc/uc2012_19/) - Masahiro Aoyama, SUZUKI Motor Corporation - [Miniaturization Design Method and Performance Evaluation of Prototype Permanent-Magnet Synchronous Motor Optimally Designed by Thermo-Magnetic Field Coupling Analysis](https://www.jmag-international.com/conference_doc/uc2012_14/) - Norihisa Iwasaki, Hitachi, Ltd. - [Development of a Ferrite Permanent Magnet Axial Gap Motor with Segmented Rotor Structure](https://www.jmag-international.com/conference_doc/uc2011_23/) - Masatsugu Takemoto, Hokkaido University - [Voltage Boost Type Drive Circuit without Additional Reactor for Switched Reluctance Motor](https://www.jmag-international.com/conference_doc/uc2011_22/) - Nobukazu Hoshi, Tokyo University of Science - [Variable Characteristics Motors (Matrix motor and CMMF motor)](https://www.jmag-international.com/conference_doc/uc2011_21/) - Kan Akatsu, Shibaura Institute of Technology - [Eddy-Current Rotor Position Sensor](https://www.jmag-international.com/conference_doc/uc2011_20/) - Seiji Shimizu, Sumida Electric Co.,Ltd. - [JMAG-RT apply to the design quality verification of motor control ECU](https://www.jmag-international.com/conference_doc/uc2011_09/) - Yoshinori Takeuchi, DENSO CORPORATION - [A Case Example of JMAG-RT Application in an Electrical Automotive MBD](https://www.jmag-international.com/conference_doc/uc2011_08/) - Kei Yonemori, MAZDA Motor Corporation - [Vibration and Noise Analysis of The Motor for Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2011_06/) - Takayuki Miyakawa, Nissan Motor Co.,LTD - [Researches on the Behavior of Vibration and Noise of an IPM Motor on HEV](https://www.jmag-international.com/conference_doc/uc2011_05/) - Zeng Jinling, CHINA FAW CORPORATION LIMITED R&D CENTER - [Multiscale Noise and Vibration models for a Switched Reluctance-based drivetrain for EV and HEV](https://www.jmag-international.com/conference_doc/uc2011_04/) - Koen De Langhe, LMS International - [Example of Using JMAG-RT for High-Voltage Systems in the Toyota Hybrid System Application to Verification of Feasibility Before Actual Machine Test](https://www.jmag-international.com/conference_doc/uc2022_23/) - As a result, in addition to the fact that the period of vehicle evaluation was greatly reduced, it became possible to judge the feasibility before the hardware was made. - [Noise and Vibration Development for a Motor in Drive-Unit Using JMAG and ROMAX](https://www.jmag-international.com/conference_doc/uc2022_15/) - Honda Motor Co., Ltd. introduces their initiative in the evaluation methods utilized in the noise and vibration development for a motor in the drive-unit by linking Romax and JMAG-Designer. - [An Introduction of Cloud Computing Application for Motor Design Speed Improvement](https://www.jmag-international.com/conference_doc/uc2022_04/) - Nissan Motor Co., Ltd. uses Microsoft Azure as one of the Cloud computing services, perform the 3D magnetic field transient analysis, evaluate if the provided computing performance is sufficient for the calculation, and examine the possibility of improving the efficiency during the design process by utilizing the Cloud. - [Optimization (multi-objective, multi-physical) and Verification of E-Motor Design Using Real Test Bench Data](https://www.jmag-international.com/conference_doc/uc2021_26/) - In this presentation a proven development approach based on multi objective, multi physical optimization is explained.With the displayed verified approach, it is possible to meet future e-motor development demands today. - [Application of Automation of Design Utilizing Optimization to Traction Motor](https://www.jmag-international.com/conference_doc/uc2021_25/) - NIDEC CORPORATION's presentation, the author introduce utilization example of range finder and power simulation licenses for traction motor design. - [Topology Optimization of Electric Machines for E-mobility Applications](https://www.jmag-international.com/conference_doc/uc2021_23/) - Volvo Car Corporation demonstrates the electrical machine design process using both the parametric and topology optimization methods for e-mobility application. - [EV IPM Motor Continuous Operation Loss Evaluation Based on Hysteresis Play Model](https://www.jmag-international.com/conference_doc/uc2021_09/) - Rimac Automobili d.o.o. describes loss calculation of main motor components using JMAG Designer with high emphasis on the hysteresis play model used for iron loss calculations. - [Efficiency Map Generation and Simulation of Dual Three-Phase PMSM](https://www.jmag-international.com/conference_doc/uc2020_13/) - Mercedes Benz AG utilizes the dual three-phase PMSM to introduce a machine design and simulation workflow considering a multiphase approach. - [Application of SIMP-based Topology Optimization in JMAG](https://www.jmag-international.com/conference_doc/uc2020_08/) - DENSO CORPORATION reports on an effectiveness and challenges of SIMP-based topology optimization in JMAG through case studies. - [Motor Loss Calculation under PWM Switching](https://www.jmag-international.com/conference_doc/uc2020_07/) - General Motors, motor loss is evaluated under PWM switching including core loss, AC copper loss and magnet loss and compared with sine current showing noticeable difference in calculation result. - [Initiatives in Toyota Vehicle Electrification and Developing Electrified Vehicles: Anticipating JMAG’s Support in the Development of Electrified Vehicles](https://www.jmag-international.com/conference_doc/uc2019_02/) - We will introduce TOYOTA’s approach to electrification that requires immediate action and the history of electrified vehicle development so far. Both JMAG applied case studies within development and future expectations for JMAG are indicated also. - [Application of Machine Learning and Enhanced 3D Modeling on HPC Systems for End-Winding AC Loss Model Identification](https://www.jmag-international.com/conference_doc/uc2018_10/) - Robert Bosch GmbH presents a method to combine basic machine learning approaches with highly complex 3D modeling and parallel solving using HPC systems for ac loss model identification. - [Virtual motor-drive development & validation platform suite : SaberRD + JMAG-RT](https://www.jmag-international.com/conference_doc/uc2014_40/) - Synopsys, Inc. will discuss how Synopsys’ SaberRD tool suite with JMAG-RT models can help you leverage output from tools in your process and your supplier’s process to develop, integrate, optimize and validate motor-drive systems using repeatable, automatable processes. - [Vibration problems in mechanical systems driven by electric motor](https://www.jmag-international.com/conference_doc/uc2014_39/) - NewtonWorks Corporation, the concept of physical modeling is introduced and cases of noise/vibration analyses by SimulationX, a physical modeling analysis tool, will be seen. Some models using JMAG-RT files are also introduced. - [Power measurement technique for inverter and motor evaluation](https://www.jmag-international.com/conference_doc/uc2014_38/) - Yokogawa Meters & Instruments Corporation would like to explain the basic of power measurement for energy-saving devices and power measurement techniques of inverter and motor in which the driven waveform is distorted including high frequency components. - [JMAG's responses to user proposals](https://www.jmag-international.com/conference_doc/uc2014_37/) - Many discussions took place at the Users Conference where users shared both compliments and constructive criticisms regarding JMAG. - [Accuracy evaluation of litz wire resistance by using transformer analysis module](https://www.jmag-international.com/conference_doc/uc2014_36/) - Toyota Industries Corporation will discuss evaluating coil resistance when design parameters such as gap length are assigned. - [Gap loss analysis of cut core inductor](https://www.jmag-international.com/conference_doc/uc2014_35/) - DENSO CORPORATION will introduce a modeling method of the cut core inductor and analysis result of the iron loss, and methods to reduce the gap loss. - [High-precision iron loss analysis using JMAG](https://www.jmag-international.com/conference_doc/uc2014_34/) - To improve accuracy of reactor loss analysis, Tabuchi Electric Co.,Ltd. will discuss the advantages of adopting the high-precision hysteresis loss analysis function of JMAG V13. - [Development of the new motor for SPORT HYBRID i-DCD system for the Fit3 Hybrid](https://www.jmag-international.com/conference_doc/uc2014_33/) - Honda R&D Co., Ltd. will introduce a drive motor for one-motor SPORT HYBRID system i-DCD, which is optimized for the compact car. - [Efforts for Thermal Analysis of a Motor at JFE Techno-Research Corporation](https://www.jmag-international.com/conference_doc/uc2022_10/) - JFE Techno-Research Corporation created a motor analysis model that resembles the actual situation using methods such as simplified thermo-fluid analysis (CFD) to devise an analysis model by applying their measurement technology to measure contact thermal resistance and temperature measurement between parts. - [Analysis of brush motors by JMAG](https://www.jmag-international.com/conference_doc/uc2014_31/) - NIDEC Corporation describes proper use of three and two dimensional simulation, and JMAG adapting method for brush motor magnetic simulation. - [Large scale 3D electromagnetic field analysis for electric machine design](https://www.jmag-international.com/conference_doc/uc2014_29/) - Yaskawa Electric Corporation will introduce about their approach to large scale analysis, and its necessity in design and development. - [GPU computing research initiatives of Japan Automobile Manufacturers Association, Inc.](https://www.jmag-international.com/conference_doc/uc2014_28/) - Japan Automobile Manufacturers Association, Inc. would like to introduce effort including benchmark test results of electromagnetic field analysis software, JMAG. - [Demagnetization analysis of IPM motor with Dy diffused magnet using JMAG-Designer Ver.13.1](https://www.jmag-international.com/conference_doc/uc2014_26/) - Hitachi Metals, Ltd., offers a practical example by both programs which do the demagnetization analysis of IPM motor applying Dy-diffusion magnets. - [Design of switched reluctance motors considering manufacture impact](https://www.jmag-international.com/conference_doc/uc2014_25/) - In this research, the effects of annealing on the recovery of the punching damage are first investigated. - [A case of benchmarking of brushless motor using JMAG-Express](https://www.jmag-international.com/conference_doc/uc2014_22/) - Analysis in JMAG-Designer has made it possible for NSK Ltd. to perform the benchmarking of highly-accurate motors, and this presentation will be introducing these case studies. - [Study of SPM,IPM,IPM vernior Motor using JMAG-Experss](https://www.jmag-international.com/conference_doc/uc2014_21/) - Comparison two types of interior permanent magnet vernior synchronous motors with surface permanent magnet synchronous motor and interior permanent magnet synchronous motor, using JMAG Express. - [Analysis of responsiveness of air pressure solenoid valves using JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2014_20/) - CKD Corporation, to evaluate whether JMAG-Designer can predict responsiveness (switch time of valve) which is an important characteristic of portable pressure valves (hereonafter referred to as solenoid valves), their main product. - [Magnetic field analysis of solenoid actuator using JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2014_19/) - JMAG-Designer provides two methods for problems. Mitsubishi Electric Corp. introduce the knowledge gained from magnetic field analysis of Solenoid actuator with these methods. - [Attraction force analysis of a solenoid valve and system control simulation](https://www.jmag-international.com/conference_doc/uc2014_18/) - JSOL Corp. will introduce the effect of eddy current and residual magnetization on the response properties through some case studies. This presentation also introduces some cases that analyzed response properties of the entire system including solenoid valves. - [Large-scale numerical analysis of induction motors](https://www.jmag-international.com/conference_doc/uc2014_17/) - Toshiba Corporation, the influence that the three-dimensional shape of the rotor exerts on an analysis will be confirmed through comparison of 2D/3D analysis in an induction motor. - [Development of a rail brake for railway vehicles derived from linear motor technology](https://www.jmag-international.com/conference_doc/uc2014_16/) - This article reports on design considerations of the linear-rail-brake and test results of the prototype, including calculated performances by JMAG. - [Litz Wire Analysis with JMAG](https://www.jmag-international.com/conference_doc/uc2014_15/) - JSOL Corp. will discuss effects of the twisted state on the characteristics, as well as the current state of analysis environments through JMAG’s Litz wire analysis. - [Electromagnetic and heat transfer analysis of HFW steel pipe](https://www.jmag-international.com/conference_doc/uc2014_11/) - JMAG-Designer is used to perform the electromagnetic and heat transfer analyses for the HFW steel pipes, and JFE TECHNO-RESEARCH CORPORATION established FEM calculation model. - [Applied cases to production technology development using magnetic field - thermal coupling analysis](https://www.jmag-international.com/conference_doc/uc2014_09/) - OMRON Corporation will be presenting two case studies applied in production technology and possible future examples in the fields of production and design for application of the magnetic field – thermal coupling analysis. - [Practical application of stress analysis of stator coil-end portion of turbine generator](https://www.jmag-international.com/conference_doc/uc2014_08/) - Fuji Electric Co., Ltd. will introduce an example of the automated coupled magnetic-field and stress analysis by JMAG on a turbine generator stator coil end. - [Vibration analysis of transformer core with magnetostriction by using JMAG](https://www.jmag-international.com/conference_doc/uc2014_07/) - Hitachi Ltd. introduces the developing 3D electromagnetic analysis technology to estimate the core noise of large transformers. First, they indicate the validation of efficiency of magnetostriction analysis function in JMAG, and the comparison of measured and calculated results of the natural vibration modes of a three-phase model core. - [Electromagnetic force as a noise source generated by leakage flux in transformer tank](https://www.jmag-international.com/conference_doc/uc2014_06/) - As part of initiatives for predicting load current noise or noise reduction, MEIDENSHA CORPORATION used JMAG for an analysis of electromagnetic force during current flow. They will describe the examples of numerical analysis. - [Magnetic feedback sensor positioning and determination of harmonic distortion](https://www.jmag-international.com/conference_doc/uc2014_05/) - In custom BLDC motor design some customers request or require “non-standard” feedback methods. In these cases it is required to determine an acceptable location for the position of the sensors, based on magnetic field distribution. - [JMAG case examples for developing electric components for motorcycle engines](https://www.jmag-international.com/conference_doc/uc2014_04/) - YAMAHA MOTOR ELECTRONICS CO.,LTD., will report on case examples of magnetos (generators) and starter motors using JMAG. - [Influence of the manufacturing process on the behaviour of a claw-pole generator](https://www.jmag-international.com/conference_doc/uc2014_03/) - Valeo Equipement Electrique Moteur decided to carry out simulation with JMAG for each imperfections in order to understand their influence on the behaviour of claw Pole machines. - [Development planning of JMAG](https://www.jmag-international.com/conference_doc/uc2014_01/) - JSOL Corp. will be reporting the development roadmap of JMAG and its latest features. Stay tuned to the continuous evolution of JMAG. - [Aiming for Further Improved High Power Density Motor](https://www.jmag-international.com/conference_doc/uc2022_02/) - This presentation introduces the technology and trends for achieving high efficiency and high power density in electrical motors used in traction and aircraft applications. - [Stray Loss Analysis of Large Power Transformer Using 3D Magnetic Field Analysis](https://www.jmag-international.com/conference_doc/uc2022_03/) - Fuji Electric Co., Ltd. will introduce an example of applying 3D magnetic field analysis to a large power transformer. The following will be described: the difference between frequency analysis and transient analysis, computational time with parallel computing. - [Future of Tools for Real-Time Test](https://www.jmag-international.com/conference_doc/uc2015_40/) - This presentation will describe the strategic alliance between NI and OPAL-RT to develop power electronic teaching tools as well as for the development of a rich library of fast power electronic converter and motor models compatible with JMAG and optimized for HIL simulation and testing for automotive and industrial applications. - [JMAG-RT Running in a 260mm×190mm×84mm Box](https://www.jmag-international.com/conference_doc/uc2015_39/) - ディエスピーテクノロジ株式会社は、260mm×190mm×84mmボックスにJMAG-RTを搭載し、トルクリップル低減制御やモータ信号発生器(バーチャルモータ)としての使用例を紹介します。 - [JMAG Parallel Execution Environment using a PC Cluster](https://www.jmag-international.com/conference_doc/uc2015_38/) - SCSK Corporation, the difference between WS and PC cluster, as well as how calculation can be more efficient by using a PC cluster and job management system will be introduced. - [On the modeling, prediction and solutions for acoustic emission of Reluctance Machines (RM)](https://www.jmag-international.com/conference_doc/uc2015_36/) - Koen De Langhe, SIEMENS PLM Software - [From circuit to virtual integrated system, Model-Based reliability verification and analysis](https://www.jmag-international.com/conference_doc/uc2015_35/) - Reliability stress data and system loop stability verification can be captured in models with automatic extraction flow. - [Innovative process of design exploration using JMAG and HEEDS](https://www.jmag-international.com/conference_doc/uc2015_34/) - CD-adapco Co., Ltd, the following useful techniques that take full advantage of JMAG based design space exploration will be demonstrated. - [JMAG's responses to user proposals](https://www.jmag-international.com/conference_doc/uc2015_33/) - We hope to share these ideas and criticisms with the participants and open them up for discussion to push JMAG even further. - [In-orbit magnetic attitude disturbance in LEO small satellites](https://www.jmag-international.com/conference_doc/uc2015_32/) - The presentation will show examples of magnetic analyses in the development of the small sized satellites. - [The design of magnetic circuit for magnetostrictive sensor](https://www.jmag-international.com/conference_doc/uc2015_31/) - YAMAHA MOTOR CO., LTD., a process to determine the optimum specifications based on the analysis results of JMAG-Designer will be shown. - [Applied Cases of Control Development and Verification for Motor HILS using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2015_29/) - Fuji Heavy Industries Ltd. will present applied cases of software development for JMAG-RT. - [Measurement and evaluation for the iron loss of electrical steel sheets considering the compressive stress.](https://www.jmag-international.com/conference_doc/uc2015_28/) - Toyota Central R&D Labs., INC will show the features of the measurement apparatus, and measurement results. - [Evaluation of performances of a PMSM taking into account the impact of the lamination cutting](https://www.jmag-international.com/conference_doc/uc2015_26/) - This paper describes a complete workflow, from the material data analyses obtained on samples to the numerical simulation. - [Evaluation of Iron Loss Analysis and Material Modeling Accounting for Residual Strain](https://www.jmag-international.com/conference_doc/uc2015_25/) - This presentation will report on evaluation results for the material modeling method and effects of loss due to punching. - [Feedback control assisted IH analysis](https://www.jmag-international.com/conference_doc/uc2015_22/) - NTN Corporation employed the method feedback temperature to control current during coupled analysis. - [Eddy Current Loss Evaluation and Temperature Rise Verification of Stator Core Clamping Stud Bolts in Alternating Current Rotational Machines](https://www.jmag-international.com/conference_doc/uc2015_20/) - TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION reports eddy current loss analysis evaluation and temperature rise verification test of stator core clamping stud bolts in 3500HP induction motor. - [Thermal Demagnetization Analysis of Neodymium-Iron-Boron Sintered Magnets With Non-Uniform Coercivity Distribution by Diffusing Heavy Rare Earth Element Using JMAG](https://www.jmag-international.com/conference_doc/uc2015_19/) - TDK Corporation, the influence of non-uniform coercivity distribution by diffusing Dy and Tb as heavy rare earth element in thermal demagnetization is studied and the simulation results by JMAG are reported. - [Some JMAG Designing Technique on IPMSM under a Magnet-Saving Scheme](https://www.jmag-international.com/conference_doc/uc2015_18/) - Centrifugal force-resistant analyses are also done and confirmed the effectiveness of its structure by DS module. - [Study on the Application of the JMAG Optimization Function in Motor Design](https://www.jmag-international.com/conference_doc/uc2015_17/) - PUES Corporation evaluated whether the use of the optimization function in JMAG will assist in the increase of efficiency in design and deepen their technical understanding for motor design in their company. - [The Electric Machine Designer in the 21st Century](https://www.jmag-international.com/conference_doc/uc2015_16/) - In all aspects of the technological system, software is essential for vital functions, especially simulation, control, and communication. - [Useful Tips for JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2015_15/) - In this presentation, a demonstration will be given on the small but convenient tips that developers of JMAG-Designer want to tell you about. - [Application of Thin Wire of Soft Magnetic Pure Iron to AC Solenoid](https://www.jmag-international.com/conference_doc/uc2022_05/) - KOBE STEEL, LTD. introduces examples of optimization of wire diameter and analysis of responsiveness for the movable core using JMAG. - ["Fusion of Simulation Technology and Additive Manufacturing" (JMAG & 3D Printer)](https://www.jmag-international.com/conference_doc/uc2022_26/) - The difficulty in designing and manufacturing heating coils which is the most important in induction heating has been greatly reduced. We have verified the possibility of revolutionizing the world of induction heating in the future. - [Application of Multi Optimization Analysis Technology of Magnet Size and Flux Barrier Topology for Automotive Traction Motor](https://www.jmag-international.com/conference_doc/uc2022_29/) - Recently, multi optimization analysis of magnet size and flux barrier topology has become possible by new version JMAG. - [Activity in the Visualization in Non-contact Sensing for Assurance Accuracy](https://www.jmag-international.com/conference_doc/uc2022_20/) - Tosei Engineering corp. introduces their initiative in the visualization of magnetic flux and current densities of the eddy current displacement sensor using JMAG. - [Development of Magnet Unit for the Endurance Test Equipment of Flexible Devices](https://www.jmag-international.com/conference_doc/uc2022_16/) - This presentation introduces a development example using JMAG for the magnet unit that drives the specimens without contact. - [Simple Motor Vibration Prediction Method and Vibration Suppression Appropriate Analysis Case Study](https://www.jmag-international.com/conference_doc/uc2022_14/) - As an example of this, an overview of the simple method VMFS, in which the excitation force acting on a single salient pole is obtained by magnetic field analysis, and the vibration value is obtained based on this, is presented. - [Examination of Motor Thermal Evaluation by Combining FEA and Thermal Equivalent Circuit](https://www.jmag-international.com/conference_doc/uc2022_11/) - One of the solutions is thermal analysis using JMAG. In JMAG, a method that combines FEA and a thermal equivalent circuit has been proposed. - [Design of a High-Density and High-Output Motor Using Optimization Analysis by GA](https://www.jmag-international.com/conference_doc/uc2022_08/) - Tamagawa Seiki Co.,Ltd. introduces an example of evaluation using optimization analysis by GA for the design of the motor part. - [Motor Design Study Using Optimization and Thermal Simulation Functions](https://www.jmag-international.com/conference_doc/uc2022_06/) - This presentation is an introduction to the study of motors using JMAG optimization and thermal simulation. - [Introduction to the Difference between Electromagnetic Induction and Magnetic Resonance Coupling](https://www.jmag-international.com/conference_doc/uc2015_12/) - Based on these discoveries, the difference between electromagnetic induction and magnetic resonance coupling will be explained. - [JMAG Case Study Presentation for Developing Electric Components of a Motorcycle Engine](https://www.jmag-international.com/conference_doc/uc2015_11/) - YAMAHA MOTOR ELECTRONICS CO.,LTD., will report on using JMAG with the goal of increasing efficiency and performance of starter motors of the same size first produced 10 years ago. - [Coupled Thermal/Structural/Magnetic Field Analysis Using JMAG](https://www.jmag-international.com/conference_doc/uc2015_10/) - JFE Techno-Research Corporation will introduce magnetic property distribution analysis around the welding area of the stator core as an example of an analysis using JMAG. - [Starting performance analysis of solid salient poles synchronous motor by Finite Element Method](https://www.jmag-international.com/conference_doc/uc2015_08/) - We suggest high-precision analysis of 2D FEM with consideration of leakage inductance and magnetic pole resistivity for starting characteristics. - [Analysis of a Claw Pole Rotating Machine Regeneration](https://www.jmag-international.com/conference_doc/uc2015_06/) - Taiga Komatsu, Electromechanical Systems Department, Advanced Technology R&D Center, Mitsubishi Electric Corporation - [Optimization of Electric Motors for Automotive Applications](https://www.jmag-international.com/conference_doc/uc2015_03/) - IAV GmbH Chemnitz will be shown how JMAG can be efficiently being used for even the most sophisticated ideas. - [Optimal Design Using Computational Electromagnetism](https://www.jmag-international.com/conference_doc/uc2015_02/) - In this talk, the fundamentals of GA and its state-of-the-art applications will be presented. - [Simulation based design validation and optimisation of Electrical machines for automotive applications](https://www.jmag-international.com/conference_doc/uc2016_27/) - Lucas-TVS Ltd. covers the modelling efforts for design validation, design optimisation using parametric modelling and also correlation of the model results with test results. - [Magnetic field analysis of Rectifier](https://www.jmag-international.com/conference_doc/uc2016_19/) - Fuji Electric co.,Ltd. reports the result of improvement of analysis precision, the case study method for outline or materials decision of rectifier under the magnetic field analysis of the rectifier by JMAG. - [Verification by impedance measurement and analysis of large capacity synchronous motor](https://www.jmag-international.com/conference_doc/uc2016_18/) - TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION, the comparison of subtransient impedance between measurement by Dalton – Cameron test and analysis by FEM was focused on. - [Tips and Suggestions for Using JMAG](https://www.jmag-international.com/conference_doc/uc2016_14/) - In this seminar, JMAG’s engineers will demonstrate some useful tips for operating JMAG-Designer, it would be helpful for you to utilize JMAG’s functionality effectively. - [Miniaturization and low noise Design of the transformer for train](https://www.jmag-international.com/conference_doc/uc2016_11/) - ICHIKAWA ELECTRIC CO., LTD., for noise reduction due to the difference of the core material and the gap structure, they report a comprehensive assessment which takes into account the cost on the basis of the JMAG simulation results. - [Improvement of analysis operation using multi-case parallel calculation](https://www.jmag-international.com/conference_doc/uc2016_09/) - Kawasaki Heavy Industries, Ltd., a case study that the multi-objective optimization calculation time was shorten using the distributed processing functions of JMAG-Designer will be presented. - [Development of Variable Flux Hybrid Excitation Motor](https://www.jmag-international.com/conference_doc/uc2017_31/) - Nagoya Institute of Technology, as an example of researches and developments of VFM in NITech, a Hybrid Excitation Motor (HEM) employing both a wound excitation and a permanent magnet as field sources is introduced. - [New Technologies of Motors with Variable Machine Constants and Electronics Motor Systems for an Energy Saving and New Feature](https://www.jmag-international.com/conference_doc/uc2017_30/) - Toyo University introduces new motor technologies. One is machine technology allow motors to operate at varying motor constants. - [Loss Analysis of Permanent-Magnet Synchronous Machines Considering In-Plane Eddy Current in Electrical Steel Sheets Using 3D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2017_29/) - Fuji Electric Co.,Ltd. investigates the losses caused by the in-plane eddy current in the stator cores of permanent-magnet synchronous machines by using a three-dimensional finite element method. - [Enhanced 3D Finite Element Analysis of AC Losses in the End-Winding Structure of Bar Wound Windings](https://www.jmag-international.com/conference_doc/uc2017_28/) - In this paper the end-winding strayfield is analyzed and the additional AC losses in the bar wound winding coils are presented and assessed. - [The Development of Magnetic Property Evaluation Techniques in Accordance with Solenoid Coil Methodology Using JMAG](https://www.jmag-international.com/conference_doc/uc2017_26/) - In order to reduce effort during these times, DENSHIJIKI INDUSTRY CO.,LTD. introduces a test case where they design solenoid coil which analyzed uniform magnetic field and magnetic field intensity by JMAG and minimized the influence of demagnetizing field. - [6 kW Axial Flux Motor Based on Soft Magnetic Composites for Hand Held Power Tools](https://www.jmag-international.com/conference_doc/uc2017_19/) - A study has been performed with the help of JMAG and its 3D capabilities to evaluate an Axial Flux Motor (AFM) made of Soft Magnetic Composites (SMC). - [The Role of JMAG on Powertrain Development](https://www.jmag-international.com/conference_doc/uc2017_14/) - Gogoro Inc. will introduce the powertrain on electrical scooter and the key concepts of powertrain development. - [3-D Magnetic Field Analysis of Large Power Transformer Using Parallel Calculation](https://www.jmag-international.com/conference_doc/uc2017_06/) - It is expected that the study and development of transformers will be efficient owing to the realization of the analysis in practical time. - [Comparison of Axial Gap Motor with SMC Between Analysis and Experimental](https://www.jmag-international.com/conference_doc/uc2020_27/) - Sumitomo Electric Industries, Ltd. will introduce the details of electromagnetic design examples and actual machine evaluation results of the axial gap motors’ efficiency map, and examples of iron loss considering the influence of harmonics. - [Loss Distribution Analysis for 4-pole air Cooled Turbine Generator Using 3D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2017_04/) - TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION introduces a case study of the loss distribution of the stator and the rotor core of the large capacity 4-pole air cooled turbine generator by the transient analysis using three-dimensional finite element method. - [Current Challenges and Future Solutions in Traction Motor Design for Electric Vehicles](https://www.jmag-international.com/conference_doc/uc2017_03/) - Finite element simulation is one of the key factors in predicting performance and optimization of the numerous parameter combinations and find suitable design solutions. - [Higher Radial Suspension Force of Magnetic Bearing on Centrifugal Compressor for HVAC](https://www.jmag-international.com/conference_doc/uc2018_33/) - DAIKIN INDUSTRIES, LTD. describes Jmag analysis case examples of magnetic bearing with higher radial suspension force which is key technology to achieve higher speeds and compressor size reduction. - [Investigating the Possibility of Improving Performance by Applying CFRP to Outer Rotor Housing](https://www.jmag-international.com/conference_doc/uc2018_30/) - We report on the result of examining the possibility of not only realizing light weight and high strength which is a general feature of CFRP but also the possibility of mitigating the disadvantage of magnetic performance and structural aspect by applying CFRP as outer rotor support material. - [Deep Motor Development Based on JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2018_22/) - A post-processing software based on JMAG-Designer named FAW-AutoPost_Motor is developed by FAW and IDAJ-China. - [Optimization of Solenoid Attraction using JMAG Optimization Function](https://www.jmag-international.com/conference_doc/uc2018_20/) - In order to further optimize, CKD Corporation report magnetometric force to the level and report the result of optimization calculation which calculated while executing tradeoff between magnetomotive force and magnetic path area. - [Induction Heating Analysis Using Current Control](https://www.jmag-international.com/conference_doc/uc2018_15/) - At Koyo Thermo Systems, we have developed a “ultra rapid carburizing treatment” using the direct heating method of induction heating.This is a dramatically accelerated process of carburizing treatment. - [Analyzing Permanent Magnet Motors with Magnetic Field + Structural Coupling Using PSL (Power Simulation Licenses)](https://www.jmag-international.com/conference_doc/uc2018_09/) - This reports on the use of the optimization engine equipped with PSL and JMAG to calculate permanent magnet motor properties and rotor centrifugal stress, and attempts to analyze a model that satisfies both requirements. - [3D Magnetic Field Analysis of Large Power Transformer with Parallel Calculation Processing](https://www.jmag-international.com/conference_doc/uc2018_06/) - Fuji Electric Co.,Ltd. describes an example in which the three-dimensional magnetic field analysis of a large-scale transformer is performed at a real scale level via parallel calculation processing using an actual PC held in their company. The utility of the process of parallelization is evaluated also. - [New Opportunities for Motor Design - Electric and Hybrid Propulsion of Aircraft](https://www.jmag-international.com/conference_doc/uc2018_02/) - In first section, Dr. Sarlioglu will present the most recent developments in electric and hybrid propulsion of aircraft. In the second section, the needs, requirements, and power densities for motor topologies will be addressed. - [Verification of Temperature Distribution and Thermal Strain Level with Induction Heating for Thin Plates](https://www.jmag-international.com/conference_doc/uc2019_33/) - Y-tec Corporation has now analyzed thin plate induction heating with JMAG, in addition to dealing with the recreation of changes in temperature distribution. - [Computer Simulation of Double Hardened Layer Induction Hardening](https://www.jmag-international.com/conference_doc/uc2019_32/) - NETUREN CO., LTD. introduces that dimensional change, residual stress and hardness distribution after double hardened layer induction hardening can be predicted using this system. - [Development of Analysis and Design Technologies for Motors in Technology Research Association of Magnetic Materials for High-Efficiency Motors (MagHEM).](https://www.jmag-international.com/conference_doc/uc2019_30/) - DAIKIN INDUSTRIES, LTD. introduced about an analysis of a motor using JMAG including the efficiency map of the IPM motor using high performance magnet. - [Analysis of Magnet Clutch Motion Considering Rotation and Translation of Mover](https://www.jmag-international.com/conference_doc/uc2019_29/) - Marelli Corporation will report on the results of an analysis that accurately reproduces the characteristics of the suction behavior of a real electromagnetic clutch by coupling magnetic field analysis of its electromagnetic clutch in JMAG and translational and rotational motion equations produced in Simulink. - [The Influence of Material Hysteresis in Electromagnetic Pump Operation Analysis](https://www.jmag-international.com/conference_doc/uc2019_28/) - With the objective of improving analysis accuracy, results are reported on analysis that considers hysteresis in addition to obtaining material magnetic characteristics data. - [Calculation of Iron Loss of Variable Inductor for Electric Power Control](https://www.jmag-international.com/conference_doc/uc2019_26/) - Since variable inductor’s core is commonly composed of laminated steel sheets, its iron loss depends on the composition of the core. Hence the evaluation method of the variable inductor’s iron loss based on simulation is desired. - [Improvement of Convergence in 3D Magnetic Field Analysis of Large Power Transformer](https://www.jmag-international.com/conference_doc/uc2019_25/) - MEIDENSHA CORPORATION, an example of the improvement of convergence in the three-dimensional magnetic field analysis of large power transformers conducted by their company is introduced, where the cause of convergence deterioration is identified and the countermeasure is described. - [Analysis of Rotor Surface Loss and Temperature Rise of Solid Rotor Synchronous Motor (SM)](https://www.jmag-international.com/conference_doc/uc2019_24/) - TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION, magnetic pole surface loss and temperature are estimated using 3D finite element methods (FEM). - [Loss Modelling for the Hyperloop Propulsion Motor](https://www.jmag-international.com/conference_doc/uc2019_23/) - Virgin Hyperloop One will introduce some of those unique challenges and illustrate how JMAG helps to overcome them. - [Measurement Technique for Magnetic Flux in a Motor Core under Operating Conditions](https://www.jmag-international.com/conference_doc/uc2019_22/) - TOYOTA CENTRAL R&D LABS., INC. explains measuring method of the magnetic flux in the motor core by using developed magnetic sensor in operating condition. - [Load Influence on AC Resistance of a High-Speed Permanent Magnet Electric Machine for Electric Vehicle Applications](https://www.jmag-international.com/conference_doc/uc2019_21/) - The results of AC resistance variation as well as the impacts to the efficiency maps are illustrated. The ways how JMAG help set up AC copper losses models and generate efficiency maps are also presented. - [Design of Three-Phase Wireless Power Transfer System with 12 Coils](https://www.jmag-international.com/conference_doc/uc2019_20/) - Nagaoka Motor Development Co., Ltd., Design method of the coils using JMAG-Designer is introduced. - [Development of a Wireless Power Transfer System for Railway Vehicles Using JMAG](https://www.jmag-international.com/conference_doc/uc2019_19/) - We have developed a wireless power supply system for railway vehicles. In our system, it is required to design in consideration of losses in the rails because the transmission coil is installed near a rail. In this report, we will introduce the calculation of the losses in the rail using JMAG. - [Guided Optimization of Rotor Topologies in Electric Machines](https://www.jmag-international.com/conference_doc/uc2019_15/) - Due to general limitations in rotor design according to short circuit current or open circuit voltage the degrees of freedom in rotor design are somewhat limited. Using pre-calculated maps from known and typical rotor magnet arrangements the calculation time for optimization can be greatly reduced. - [Optimization Design of IPMSM for Off-Highway Vehicle Using JMAG](https://www.jmag-international.com/conference_doc/uc2019_14/) - Specifications that satisfy high torque, low torque ripple as well as magnetic material reduction were examined by aid of JMAG magnetic field analysis and optimization function. The results of this examination will be reported and discussed. - [Application of Deep Learning to Optimal Design](https://www.jmag-international.com/conference_doc/uc2019_12/) - In this talk, some engineering examples for reduction of computing time of topology optimization by use of deep learning will be presented. - [Challenges Moving from Static to Dynamic Analyses: The Merits of Introducing Transient Response Analysis](https://www.jmag-international.com/conference_doc/uc2019_11/) - High-voltage switches for 6.6kV are the main product of our company, using solenoids as the source of drive.These solenoid designs are used in JMAG static magnetic field analyses, but transient response analysis was additionally introduced in anticipation of the move towards a future of investigating new forms with the objective of the differences from actual circuits used, in addition to reductions in cost. - [Problems and Problems Resolved after JMAG Introduction](https://www.jmag-international.com/conference_doc/uc2019_10/) - TEIKOKU ELECTRIC MFG. CO., LTD introduced JMAG from last year in order to improve the efficiency of motor design, and we have faced various issues in using it.This time, I will introduce the problems I encountered after the introduction and the solutions to the problems. - [Electromagnetic Excitation Force Generated on High Power Density High Rotation SPM Motor Rotor of Rocket Engine Propellant Supply Electric Pump](https://www.jmag-international.com/conference_doc/uc2019_08/) - In this research, it aims at grasping the behavior of electromagnetic force by the analysis which considered the whirling movement supposing pump fluid force. Here, the vibration analysis for determining whether or not the rotor system becomes unstable due to the electromagnetic excitation force is not focused. - [Comprehensive System to Component xEV Simulation Using Gamma Technologies and JMAG](https://www.jmag-international.com/conference_doc/uc2019_05/) - In this presentation, Gamma Technologies will show how GT and JMAG tools can be jointly used throughout the vehicle development process to solve key challenges of vehicle electrification. - [Improvement of Calculation Model on Induction Motors](https://www.jmag-international.com/conference_doc/uc2020_28/) - A model for calculating the output and efficiency of induction motors is developed by Nagaoka Motor Development Co., Ltd.. To improve the calculation accuracy by the model, it corresponds to the parameter change of the equivalent circuit depending on the operating conditions. - [Design of Electric Machine for Electric Aircraft Using Power Simulation License](https://www.jmag-international.com/conference_doc/uc2020_26/) - Mitsubishi Electric Corporation studied the motor performance of rotor-stator configurations using power simulation license. - [Electromagnetic Field Analysis of AB Phases and Z Phase Magnetic Interference in a Magnetic Encoder](https://www.jmag-international.com/conference_doc/uc2020_25/) - Tamagawa-seiki Co.,Ltd. found that countermeasures should be taken against the magnetic interference phenomenon between AB phases and Z phase, which was an undetectable error until the high-precision angle detection is realized. - [The Value of Magnetic FEA Simulation in Magnetic Sensing Applications](https://www.jmag-international.com/conference_doc/uc2020_24/) - Coto Technology uses JMAG to provide guidance to customers of their line of small size, high sensitivity and very low power TMR sensors. - [Induction Motor Noise Reduction using JMAG](https://www.jmag-international.com/conference_doc/uc2020_23/) - JEUMONT Electric shows how they used JMAG to reduce electromagnetic noise of an induction motor. - [Motor Efficiency Improvement Toward New Energy Vehicle Drive Cycle based on Multi-objective Optimization Algorithm](https://www.jmag-international.com/conference_doc/uc2020_22/) - China FAW Group Co.,Ltd combines typical points and multi-objective optimization algorithm to optimize the working efficiency of EV motors, which greatly simplifies the optimization process and reduces the calculation time. - [Study of Optimum IH Coil Design for the Improved Induction Hardening Pattern](https://www.jmag-international.com/conference_doc/uc2020_19/) - TAKAO KOGYO Co.,Ltd. will present their progress, approaches, and the newly addressed subject of “A search for the optimum shape of IH coil to get the best macro-pattern”. - [3D Magnetic Field Analysis of Large Power Transformer Using Transient Analysis](https://www.jmag-international.com/conference_doc/uc2020_10/) - MEIDENSHA CORPORATION, an example of three-dimensional magnetic field analysis of large power transformers using transient analysis is introduced, where the following topics are described: the condition of transient analysis, the comparison between results using frequency response and transient analysis, and the computation time when using parallel computing. - [3D Design of Magnetic Components by Gaussian Kernel Regression -Forward Design and Inverse Design-](https://www.jmag-international.com/conference_doc/uc2020_04/) - Texas Instruments Japan Limited, the both modeling methods using Gaussian kernel regression are introduced with 3D inductor model. - [Reduction of Optimal Design Time for IPMSMs for Automotive Applications Using Machine Learning](https://www.jmag-international.com/conference_doc/uc2020_03/) - Osaka Prefecture University proposed a learning method for accurately predicting the speed-torque characteristics of IPMSMs for automotive applications. In this lecture, they explain the learning method using JMAG and optimization results. - [AI Technology with Aid of Data-driven Method Makes EM Simulation and Optimization More Effective](https://www.jmag-international.com/conference_doc/uc2020_02/) - Hokkaido University presents the various methods based on AI, in a broad sense, and data-driven methods that make EM simulations and optimizations more effective. - [A Study of Improving Demagnetization Resistance Performance by JMAG Topology Optimization](https://www.jmag-international.com/conference_doc/uc2021_24/) - Toshiba Corporation report the results of an attempt to derive a core shape that is effective in improving demagnetization resistance performance, using JMAG topology optimization method. - [Analytical/Experimental Verification of Thermal Characteristics of Axial Gap Motors, and Comparison Between Axial and Radial Gap Motors](https://www.jmag-international.com/conference_doc/uc2021_21/) - Okayama University , thermal characteristics of the axial gap motor is investigated by both thermal analysis in JMAG and experiments, and comparison between axial and radial gap motors is shown. - [Introduction of New Coils (AST COIL) Using Motor Analysis Developed with Proprietary Manufacturing Methods](https://www.jmag-international.com/conference_doc/uc2021_20/) - ASTER CO., LTD. has developed a new type of coil (AST COIL) via original manufacturing methods. This technology of coils realized a high slot fill factor with an entirely new shape, and that stimulate market demand for motors with AST COIL. - [Examination of Refinement of the Method for Calculating the Starting Characteristics of Induction Motors](https://www.jmag-international.com/conference_doc/uc2021_18/) - Toshiba Mitsubishi-Electric Industrial Systems Corporation analyzed the starting characteristics of the induction motor using JMAG and examined an improved evaluation method. - [Speeding up Induction Heating Analysis by Utilizing the Cloud](https://www.jmag-international.com/conference_doc/uc2021_17/) - KOYO THERMO SYSTEMS CO.,LTD. will introduce the realization of highly parallel calculations by using the cloud computing and its effects. - [Relationship of Parallel Number of Analyzes to Analysis Time with Outer Rotor Type Fan Motor](https://www.jmag-international.com/conference_doc/uc2021_16/) - In this presentation, with the Daikin Industries ODM (Outer rotor DC Motor) as the verification target, we introduce a case study of the effects of reducing analysis time using PSL. - [Analysis of Gas Proportional Solenoid Valve Using JMAG](https://www.jmag-international.com/conference_doc/uc2021_15/) - PURPOSE CO.,LTD. explains the analysis of the gas proportional solenoid valve that used for gas volume adjustment using JMAG. - [Development of Axial-Gap motor for AGV](https://www.jmag-international.com/conference_doc/uc2021_14/) - DAIHATSU MOTOR CO., LTD. introduces a double-sided axial-flux permanent-magnet synchronous motor with a three-phase fractional-slot winding system in an 18-slot/20-pole configuration with reduced torque ripple for electric transport vehicles-designed using JMAG-as well as a comparison of efficiency maps with the actual machine. - [Improvement of Calculation Speed by AMD CPU and Parallel Calculation in Medium-sized Model](https://www.jmag-international.com/conference_doc/uc2021_13/) - NSK Ltd. was able to shorten the analysis time by adopting an AMD CPU, so they will introduce the hardware selection. - [DOE-based Optimization of Electrical Machines](https://www.jmag-international.com/conference_doc/uc2021_11/) - The design process developed by IAV deals with the efficient solution of these large-scale optimization problems based on a specific DOE approach coupled with Kriging surrogate models using JMAG and MATLAB. - [Application of Electromagnetic Field and Structural Coupled Analysis to Transformer](https://www.jmag-international.com/conference_doc/uc2021_07/) - Fuji Electric Co., Ltd. explains the methods for calculating motor characteristics and analysis methods required for IPMSM design and reports the methods taken into account for calculating iron loss in order to accurately estimate the output characteristics of the actual machine. - [Vibration Prediction of Permanent Magnet Synchronous Motors by Aid of JMAG](https://www.jmag-international.com/conference_doc/uc2021_05/) - In order to predict the vibration characteristics of a motor, it is necessary to calculate the exciting force by aid of electromagnetic field analysis and vibration transfer by appropriate modeling of the structural system. - [Electric Pump Vibration Analysis (Establishment of the Magnetic Field-Structural Coupled Analysis Method)](https://www.jmag-international.com/conference_doc/uc2021_04/) - In Panasonic Corporation presentation, the derived electromagnetic force is then coupled with structural analysis, and the establishment of a method for pump vibration analysis is examined. - [JMAG implementation on K-computer and accelerating computational speed of electromagnetic field analysis (Introduction of JAMA research activities)](https://www.jmag-international.com/conference_doc/uc2016_20/) - Outlines of the JAMA activities and current status of development tasks on accelerating computational speed and upsizing computational model. - [Research on an integration motor to achieve high efficiency and high torque density](https://www.jmag-international.com/conference_doc/uc2016_17/) - A concept of many power electronics for the electric machine is explained. As an example, a MATRIX motor which has many inverters in the machine is introduced. - [Potential of FEM Analysis](https://www.jmag-international.com/conference_doc/uc2016_15/) - The future potential of FEM analysis is discussed and the development of products for which FEM analyses have been used by the presenter so far is introduced by showing case examples and others. - [Magnetic Field Analysis of a Transformer Using JMAG and Modeling Improvements](https://www.jmag-international.com/conference_doc/uc2016_12/) - During this seminar, modeling effects will be verified through the comparison between a magnetic analysis performed on a transformer and measured values. - [Proposal of Electromagnetic Noise-generating Mechanism on Carrier Harmonics](https://www.jmag-international.com/conference_doc/uc2016_05/) - Toshiba Corporation reports the results and consideration based on the investigation for the relationship between the electromagnetic-force modes in career frequency and the natural vibration modes. - [Development planning of JMAG](https://www.jmag-international.com/conference_doc/uc2016_01/) - JSOL Corp reports to all of you the challenges and direction of development of JMAG. - [Using JMAG to simulate control of a brushless flux-switching rotating machine](https://www.jmag-international.com/conference_doc/uc2016fr_06/) - Technelec Ltd explains some of the reasons for doing this simulation in JMAG, demonstrates some results and shows how JMAG can be used to compare and contrast the flux-switching motor with other topologies through control simulation. - [Comparison of electromagnetic and thermal modelling with JMAG with electromagnetic and thermal equivalent circuit models and experimental test results](https://www.jmag-international.com/conference_doc/uc2016fr_05/) - The results of electromagnetic and thermal analysis using JMAG are presented. The comparative analysis with thermal experimental test is provided. - [BLDC motor model using JMAG RT table for control development of an electromechanical actuator integrated in a sport car](https://www.jmag-international.com/conference_doc/uc2016fr_02/) - The actuator model is represented by the mechanical parts and electrical parts with a well detailed BLDC motor characteristics using the RT table from the JMAG FEM model. - [Model-Base Virtual Verification Method With Advanced PCB Simulation Technics](https://www.jmag-international.com/conference_doc/uc2016_32/) - SystemVision also addresses capture, simulation for circuit behavior and thermal analysis and process know-how through Mentor Graphics PCB/hardware design flow against legacy cut and try approach for system performance refinement. - [The coupling of JMAG and Simcenter 3D in view Noise and Vibration analysis of Electric Machines](https://www.jmag-international.com/conference_doc/uc2016_30/) - SIEMENS will focus on the new process coupling Simcenter 3D with JMAG, including a representative example. - [Analysis of stray fields in electric motors for automotive applications](https://www.jmag-international.com/conference_doc/uc2016_26/) - The torque generated in automotive drives has to satisfy strong requirements regarding dynamic behaviour and accuracy. - [Analysis of transformer circuit considered the mutual inductance](https://www.jmag-international.com/conference_doc/uc2016_25/) - By using circuit simulation, Toshiba industrial products and systems corporation confirmed the validity of self inductance and mutual inductance defined by JMAG. - [Electric field analysis of the Tape Lapped Joint for power cable](https://www.jmag-international.com/conference_doc/uc2016_24/) - As a result of the analysis, Tokyo Electric Power Company Holdings, Inc. was able to confirm that the electric field which generated in the gap did not lead to breakdown. - [Studies about condition based maintenance of drive unit for metal clad switch gear using the electromagnetic field analysis](https://www.jmag-international.com/conference_doc/uc2016_23/) - In this presentation, result of the investigation for equipment controlled by electromagnet is reported. - [Utilization of JMAG-RT Using Multi-Case Parallel Calculation](https://www.jmag-international.com/conference_doc/uc2017_15/) - NIDEC CORPORATION introduces utilization example of power simulation licenses that reduce license costs to JMAG-RT model generation and reduce calculation time. - [Introduction and Application of JMAG on Induction Heating](https://www.jmag-international.com/conference_doc/uc2017_12/) - DAI-ICHI KIDEN CO., LTD. will introduce the background of introducing JMAG and the process from introduction to application in our case. - [Development of Power Transmission Coupling in Superconducting Levitation Pump by Magnetic Field Analysis](https://www.jmag-international.com/conference_doc/uc2017_10/) - Seikow Chemical Engineering and Machinery, Ltd. optimized arrangement of the magnetic coupling for power transmission by magnetic field analysis. - [Magnetic Field Analysis of Rectifiers](https://www.jmag-international.com/conference_doc/uc2017_05/) - It was possible to realize higher speeds using highly parallel SMP. Also, only an analysis based on Joule loss density was conducted previously, but since a thermal analysis has also been conducted, Fuji Electric Co.,Ltd. has included it in this report. - [Development Planning of JMAG](https://www.jmag-international.com/conference_doc/uc2017_01/) - JMAG has been and will focus even more on accelerating development for simpler and smarter tools based on powerful simulation technology. We would like to spell out the development roadmap of JMAG with examples and demonstrations. - [From Customer Specification to Prototyping: Three-dimensional Finite Element Simulation for Axial Flux Machines Constructed from Soft Magnetic Composite Materials](https://www.jmag-international.com/conference_doc/uc2017_37/) - Höganäs AB provides a large number of services to enable customers to obtain an optimal solution. - [Development of Thin and High Torque Axial Gap Motor Using Soft Magnetic Powder Cores](https://www.jmag-international.com/conference_doc/uc2017_36/) - Sumitomo Electric Industries, Ltd., will also introduce the influence on the performance of core shape detail considering powder compacting. - [Introduction of Coupled Analysis Case Giving New Added Value to Electromagnetic Field Analysis: - Electromagnetic Field - Fluid, Electromagnetic Field - Powder -](https://www.jmag-international.com/conference_doc/uc2017_35/) - Some case examples will be introduced, such as 1) oil cooling of motor and transformer, etc. 2) oil lubrication between parts making up EPS and transmission, etc., and 3) water spraying on four-wheeled vehicle. - [Simulation of Magnetization for Anisotropic Rare-Earth Bonded Magnets](https://www.jmag-international.com/conference_doc/uc2017_25/) - NICHIA CORPORATION,as a means of expecting the magnetic flux density of the anisotropic rare earth bonded magnet, while taking an analysis of the speaker magnet developed by their company as an example, they introduce a technique that utilizes alignment characteristics and thick-ness magnetization properties. - [Loss Analysis for a Reactor Using a Hysteresis Model](https://www.jmag-international.com/conference_doc/uc2017_24/) - To evaluate the performance of JMAG-Designer’s loss analysis function, Tabuchi Electric Co., Ltd. will present comparisons between measured values using a physical prototype and analysis values using a JMAG-Designer model for multiple superimposition waveforms. - [Approaches for Topology Optimization](https://www.jmag-international.com/conference_doc/uc2017_22/) - In this presentation, approaches to topology optimization will be introduced. - [Application Studies of the JMAG Optimization Function in the Design of Wristwatch Motors](https://www.jmag-international.com/conference_doc/uc2017_21/) - Seiko Instruments Inc., the ideas behind topology optimization will be outlined, and several examples to applications will be presented. - [Modeling and Reduction Techniques for Bundle- and Strand- level Proximity Losses in High-Speed AC Machines](https://www.jmag-international.com/conference_doc/uc2018_19/) - Simple stranding does not solve the problem, as well as extreme stranding. Additionally, with the movement of designs towards solid conductors, AC copper losses are significant factor in machine design. - [Introduction of JMAG for Magnet Rail Analysis](https://www.jmag-international.com/conference_doc/uc2018_07/) - SANSHIN KINZOKU KOGYO CO.,LTD. will introduce the background of introducing JMAG and the process from Introduction. - [Analysis of Winding Losses of Shunt Reactor using “Zooming Analysis”](https://www.jmag-international.com/conference_doc/uc2018_05/) - It is expected that the accurate distribution of currents and losses in the windings can be obtained by using “Zooming Analysis” in the multiscale problem. - [Application Studies of JMAG Topology Optimization in the Design of Wristwatch Motors](https://www.jmag-international.com/conference_doc/uc2018_04/) - The challenge this year was therefore the optimization of topology with a higher degree of geometric freedom compared to parametric optimization, with the added possibility of reducing designer preconceptions and prior mindsets towards design. - [Linear Motor & Eddy Current Brake Design For The Worlds First Hyperloop Test Track](https://www.jmag-international.com/conference_doc/uc2018_24/) - This presentation will give insight into the hyperloop system and the design and analysis of the DevLoop linear motor and the eddy current braking system. - [Analysis of LIM-type Eddy-Current Rail Brakes using Large Scale Model](https://www.jmag-international.com/conference_doc/uc2018_25/) - JMAG is used for the design of an LIM-type eddy-current rail brakes(LIM-ECB) that is possible to operate without an external power source, supplying excitation power by self power generation as a linear induction machine. - [Development of Thin and High Torque Axial Gap Motor Using Soft Magnetic Powder Cores](https://www.jmag-international.com/conference_doc/uc2018_37/) - Sumitomo Electric Industries, Ltd. will introduce the latest situation of the development of softmagnetic powder core contributing to high performance of various motors including the above-mentioned motors and examples of application to motors. - [Introduction to Motor Thermal Analysis in Motor-CAD](https://www.jmag-international.com/conference_doc/uc2018_38/) - Romax Technology Japan Limited will be focused on thermal analysis of motors using Motor-CAD. Motor-CAD can be used for time efficient evaluation and comparison of several motor designs at the early design phase. - [Heat Balance of 90kW Class 50,000rpm SPM Motor for Rocket Engine Propellant Supply -Modeling by Linking JMAG-RT and AMESIM Software-](https://www.jmag-international.com/conference_doc/uc2020_06/) - Japan Aerospace Exploration Agency decided to input the motor information designed by JMAG into Siemens AMESIM to understand the cooling fluid characteristics and gain insight on the details as an electric pump model. - [Numerical Analytic Approach for Oil Immersed Transformer Electrical Insulation Design using JMAG CB Option](https://www.jmag-international.com/conference_doc/uc2020_11/) - This presentation introduces the challenges of upgrading the electrical insulation of Fuji Electric oil-immersed transformers. - [Integrated Electromagnetics-Thermal Analysis of Electric Motor: Benefits and Pitfalls of Multi-physics Modeling](https://www.jmag-international.com/conference_doc/uc2020_15/) - General Motors, different levels of coupling between the electromagnetics and the thermal analysis are examined, from stand-alone thermal analysis to fully coupled two-way multi-physics analysis. - [The Need for Large-Scale Calculations in Induction Heating](https://www.jmag-international.com/conference_doc/uc2020_16/) - The “ultra rapid carburizing process” developed by KOYO THERMO SYSTEMS CO.,LTD. is a technology that dramatically faster than the conventional carburizing process, i.e., gas carburizing, by using induction heating for rapid heating and high temperature treatment. - [Practical Power Circuit Design of Power Electronics Equipment and Analysis Evaluation of Power Inductors](https://www.jmag-international.com/conference_doc/uc2020_18/) - As a practical circuit design for power electronics equipment, Murata Manufacturing Co., Ltd. reports on the analysis and evaluation of power inductors that make up energy management systems. - [JMAG Analysis of Spot Induction Heating to Design a Soldering Head](https://www.jmag-international.com/conference_doc/uc2020_20/) - S-FINX Technologies will introduce an example of applying JMAG to the analysis of the induction heating head part in S-WAVE. - [Initiatives in Engineer Education Focusing on Magnetic Field Analysis at Miki Pulley Co., Ltd.](https://www.jmag-international.com/conference_doc/uc2020_21/) - MIKI PULLEY Co.,Ltd. introduces their ongoing efforts in resolving issues such as these over the span of several years, wherein they discuss that while convenient tools such as CAE gain widespread use, there exists a lack of techniques for correctly using analysis. - [Torsional Vibration Analysis of an Electric-Drive Powertrain Via System Simulations with Simcenter Amesim and JMAG-RT](https://www.jmag-international.com/conference_doc/uc2020_31/) - Siemens will present the 1D Simcenter Amesim, a multi-physic simulation tool, in combination with JMAG-RT to address relevant use case of the TVA of an electric drive. - [A Multidisciplinary Approach to Integrated Motor Modeling using GT-SUITE and JMAG](https://www.jmag-international.com/conference_doc/uc2020_32/) - Gamma Technologies, LLC will detail several avenues for increased collaboration of motor integration to improve NVH behavior. - [Recent update of electric machine thermal management with CFD How to employ the oil cooling method (pros and cons)](https://www.jmag-international.com/conference_doc/uc2020_36/) - This seminar will present the recent CFD analysis updates for motor thermal management with oil cooling presented by siemens at the JMAG user conference 2018. - [RecurDyn Dynamic Simulation of Drivetrain System with Electric Motors](https://www.jmag-international.com/conference_doc/uc2020_40/) - FunctionBay, Inc., a typical process of simulation is introduced to analyze an entire system of drivetrain. - [Motor Drive Verification Using HILS Implemented with JMAG-RT Models](https://www.jmag-international.com/conference_doc/uc2021_03/) - HILS (Hardware In the Loop Simulation) has recently become indispensable for Mitsubishi Electric in the development process for drive control products. - [Optimal Design of Instantaneous High-output Motor for Basketball Robots](https://www.jmag-international.com/conference_doc/uc2021_06/) - In TOYOTA MOTOR CORPRATION presentation, along with an overview of the instantaneous high-output power motor for robots, we will explain the optimum design that was obtained using the optimization function in JMAG-Designer Ver.20.0. - [High Speed Measurement System for Improving Accuracy of Magnetic Properties of Material Database](https://www.jmag-international.com/conference_doc/uc2021_28/) - BRIGHTEC Co., Ltd developed the magnetic flux density waveform control system mounted FPGA hardware, instead of software control. It makes shorten the measurement time by 1/50, and provide more accurate magnetic properties by decreasing distortion and amplitude ratio. - [Combining Computational Fluid Dynamics and Electromagnetic Finite Element Simulations for Transient and Steady State Motor Cooling Simulations](https://www.jmag-international.com/conference_doc/uc2021_29/) - Convergent Science, Inc. use JMAG to provide electromagnetic loss data and CONVERGE to perform conjugate heat transfer simulations of motors utilizing an array of cooling methodologies and compare solid temperatures to experimental data under steady state and transient conditions. - [Re-consideration of E-machine Thermal Management Using Recent Capabilities of Numerical Simulation](https://www.jmag-international.com/conference_doc/uc2021_30/) - In recent years, however, there has been a growing demand for high accuracy and high computational speed in thermal design, as represented by the use of ROM. - [Modelling schemes for Transformers and Chokes](https://www.jmag-international.com/conference_doc/uc2012de_04/) - Holzinger, Sumida Electric Co.,Ltd. - [JMAG-CFD coupling by using MpCCI interface](https://www.jmag-international.com/conference_doc/uc2012de_08/) - Pascal Bayrasy, Fraunhofer SCAI - [2D Magnetic, structural and 3D Thermal modeling of Interior PM Synchronous Machine using JMAG](https://www.jmag-international.com/conference_doc/uc2012de_07/) - Mha Prins, Optimal Energy Pty Ltd - [JMAG: Recent development and road map](https://www.jmag-international.com/conference_doc/uc2012de_01/) - Takashi Yamada, JSOL Corp. - [Using JMAG and ANSYS for coupled thermal solution of a high current bus bar exit in GSU transformers](https://www.jmag-international.com/conference_doc/uc2012de_02/) - Costin Ruja, Trafo Proiect SRL - [Finite Elements performance evaluation of a Transverse Flux Machine using Somaloy 500 1P, 700 3P and 5P](https://www.jmag-international.com/conference_doc/uc2012de_03/) - Cristofaro Pompermaier, HÖganÄs AB - [Acoustic Noise Analysis of a High-Speed High-Power Switched Reluctance Machine: Frame Effects](https://www.jmag-international.com/conference_doc/uc2015us_02/) - Berker Bilgin, McMaster University - [Introduction of the two development platform of JMAG](https://www.jmag-international.com/conference_doc/uc2015cn_10/) - Zhong xiulin, IDAJ-China Co.,LTD. - [Induction Motor Sound and Co-simulation with JMAG and Virtual.lab](https://www.jmag-international.com/conference_doc/uc2015cn_08/) - Li xin, EMERSON Climate Technologies - [JMAG in RT-Lab HIL Simulator](https://www.jmag-international.com/conference_doc/uc2015cn_07/) - Qiu huajing, ShangHai KeLiang Information Tech. & Eng. Co., Ltd. - [Stator of variable speed permanent magnet synchronous motor based on Designer JMAG Study on the calculation of optimal skew slot angle](https://www.jmag-international.com/conference_doc/uc2015cn_06/) - Xiong haifang, Tempel Changzhou - [Optimization calculation of JMAG and its application in proportional solenoid valve](https://www.jmag-international.com/conference_doc/uc2015cn_04/) - Zhou Wangjing, Wuxi Fuel Injection Equipment Research Institute, FAW, China - [The thermal field simulation analysis of the JMAG platform for the FAW Technology Center](https://www.jmag-international.com/conference_doc/uc2015cn_03/) - Zeng jingling, China FAW Group Corporation R&D Center - [Customer case: Computation of no-loadtorque for slotlessmachine withnon-cylindricalairgap](https://www.jmag-international.com/conference_doc/uc2015de_08/) - Eduardo E. Montalvo-Ortiz, POWERSYS USA - [sunlight© pump - a small solar powered water pump developed using the JMAG toolchain](https://www.jmag-international.com/conference_doc/uc2015de_06/) - Andrea Vezzini, Institute for Energy and Mobility Research – Bern University of Applied Sciences - [Optimization of Electric Motors for Automotive Applications](https://www.jmag-international.com/conference_doc/uc2015de_05/) - Stephan Paul, IAV GmbH Chemnitz - [Design and analysis of high-performance small wind generators and integrated assessment in Taiwan (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_06/) - Chun-Yu Hsiao, Shang-Chih Lin, National Taiwan University of Science and Technology, Saint John's University - [Optimal design and performance analysis of an ironless permanent-magnet linear motor (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_05/) - Zwe-Lee Gaing, Kao-Yuan University - [Properties variations and influence evaluations of the electrical steel after motor manufacturing processes using JMAG (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_04/) - Sheng-Yang Lin, China Steel Corporation - [The application for JMAG in magnetizing yoke-aided design (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_03/) - Chien Ming-Hung, Metal Industries Research & Development Center - [Design and analysis of synchronous reluctance motors (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_02/) - Min-Fu Hsieh, NCKU Electric Motor Technology Research Center - [Design and analysis of flux-switching permanent magnet motor (Chinese-only)](https://www.jmag-international.com/conference_doc/uc2014tw_01/) - Min-Fu Hsieh, NCKU Electric Motor Technology Research Center - [JMAG-RT as a tool in the development of EV/HV powertrain components](https://www.jmag-international.com/conference_doc/uc2014de_04/) - Markus Özbek, DENSO International Europe - [Design of a large tidal generator](https://www.jmag-international.com/conference_doc/uc2014de_02/) - Liam Naugher, Newcastle University - [Linking Saber and JMAG for an integrated System Simulation Approach for Motor Drive Applications](https://www.jmag-international.com/conference_doc/uc2013de_09/) - Andre Jennert, Synopsys Inc. - [Optimizing the Acoustic Performance of a Switched Reluctance Motor using a combined multi-physics & FEA simulation approach](https://www.jmag-international.com/conference_doc/uc2013de_07/) - Koen Vansant, LMS International N.V - [Simulation of a reduced size demonstrator of a direct drive PM wind generator used for loss measurement](https://www.jmag-international.com/conference_doc/uc2013de_06/) - Dr.-Ing. Bogdan Funieru, Technische Universitat Darmstadt - [Virtual Motor bench for high bandwidth ECU testing using JMAG-RT modeling approach on a FPGA chip](https://www.jmag-international.com/conference_doc/uc2013de_05/) - Sebastien Cense, Opal-RT - [Enhanced Simulation Quality for Electric Drives in Hardware-in-the-Loop Applications](https://www.jmag-international.com/conference_doc/uc2013de_04/) - Bjoern Bobe, dSPACE GmbH - [Evaluation of Different Electrical Steels in IPM Hybrid Rotating Machines](https://www.jmag-international.com/conference_doc/uc2012us_10/) - C.R. Frontczak,Tempel - [Multiscale Noise and Vibration models for a Switched Reluctance-based drivetrain for EV and HEV](https://www.jmag-international.com/conference_doc/uc2012us_09/) - Ramana Kappagantu, LMS Americas - [Designing Novel Brushless Doubly Fed Machines Using JMAG](https://www.jmag-international.com/conference_doc/uc2012us_07/) - Andy Knight, University of Alberta - [Inductor loss-simulation using JMAG-Designer and comparison with measurement results](https://www.jmag-international.com/conference_doc/uc2012us_03/) - Kayoko Seto, TOYOTA MOTOR CORPORATION - [Resistivity analysis of stacked planar Litz structure using Finite Element Method](https://www.jmag-international.com/conference_doc/uc2012us_02/) - Tsuyoshi Nomura, TOYOTA Research Institute of North America - [Magnetic Gears](https://www.jmag-international.com/conference_doc/uc2012us_01/) - Hamid A. Toliyat, Texas A&M University - [Multi-objective optimization of electric motors using modeFRONTIER coupled with JMAG](https://www.jmag-international.com/conference_doc/uc2012de_06/) - Marco Carriglio, ESTECO - [Magnetic and thermal 3D imulation of a conical bearingless PM synchronous machine with JMAG](https://www.jmag-international.com/conference_doc/uc2012de_05/) - Bogdan Funieru, Technische Universitat Darmstadt - [JMAG Development Plans 2008](https://www.jmag-international.com/conference_doc/uc2008_19/) - Takashi Yamada, JRI Solutions, Ltd. - [Speeding Up JMAG Solver for Large Scale Analysis](https://www.jmag-international.com/conference_doc/uc2008_10/) - Kazuki Semba, JRI Solutions, Ltd. - [Finite Element Analysis of a Steering Rack Shaft Subjected to the High-Frequency Induction Hardening Process](https://www.jmag-international.com/conference_doc/uc2008_07/) - Manabu Fukumoto,Katsuhiko Kizawa,Kazuo Okamura,Atsuhiko Ohta, Sumitomo Metal Industries, Ltd/JTECT Corporation - [Electromagnetic Field Analysis of a Giant Magnetostrictive Actuator Using JMAG](https://www.jmag-international.com/conference_doc/uc2008_05/) - Hisashi Yajima,Nobuhiro Fujiwara,Yoshikazu Tatsumi,Hiroyuki Wakiwaka, SMC Corporation/Shinshu University - [Streamlining Electromagnetic Field Analysis and Supporting the Decision-Making Using modeFRONTIER](https://www.jmag-international.com/conference_doc/uc2008_04/) - Yasushi Fujishima, CD-adapco JAPAN Co.,LTD. - [Novel Design of Flux-Intensifying Interior Permanent Magnet Synchronous Machine](https://www.jmag-international.com/conference_doc/uc2010_04/) - Yuichi Shibukawa, Nissan Motor Co., Ltd. - [The introduction of JMAG-Designer Optimization problem, using modeFRONTIER Direct Interface.](https://www.jmag-international.com/conference_doc/uc2011_35/) - Seiji Nishita, CD-adapco JAPAN Co., LTD. - [Model Based Development and HILS for motor control development](https://www.jmag-international.com/conference_doc/uc2011_34/) - Takashi Miyano, dSPACE JAPAN K.K. - [The State-of-the-Art in Hardware-in-the-Loop Simulation of Motor Drives](https://www.jmag-international.com/conference_doc/uc2011_33/) - Simon Abourida, OPAL-RT Technologies Inc. - [Development of Bicycle Generator Hub Dynamo Using JMAG](https://www.jmag-international.com/conference_doc/uc2011_32/) - Takeshi Fujiwara, SHIMANO INC. - [Development and design of a loudspeaker using JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2011_31/) - Yoshihide Toyoshima, Onkyo Corporation - [JMAG-Designer Script Course (Practice Version)](https://www.jmag-international.com/conference_doc/uc2011_30/) - Motohito Hirose, JSOL Corp. - [Making JMAG analysis handy by CATIA models](https://www.jmag-international.com/conference_doc/uc2011_29/) - Yajima Hisashi, SMC Corporation - [Magnetic Shield Design Optimization in HDD Writer](https://www.jmag-international.com/conference_doc/uc2011_28/) - Kenkichi Anagawa, TDK Corporation - [Approach of a transformer analysis using JMAG](https://www.jmag-international.com/conference_doc/uc2011_27/) - Kazuki Semba, JSOL Corp. - [Core Loss Analysis of the Transformers for Vehicle Power Supplies](https://www.jmag-international.com/conference_doc/uc2011_26/) - Masato Kabetani, Toyota Industries Corporation - [DC Superposition Characteristic Measurement of Reactors and Comparison with the measured values](https://www.jmag-international.com/conference_doc/uc2011_25/) - Kouhei Ueda, TABUCHI ELECTRIC CO., LTD. - [The magnetic simulation using JMAG and Simpleware](https://www.jmag-international.com/conference_doc/uc2011_24/) - Yosuke Iijima, TAIYO YUDEN CO., LTD. - [A Case of Coupled Analysis of JMAG-RT and Circuit Simulator](https://www.jmag-international.com/conference_doc/uc2011_19/) - Hideki Ohguchi, Fuji Electric Co.,Ltd. - [A Vibration Analysis Using Numerical Results of Electromagnetic Analysis of the IPM Motor (D-model of IEEJ), Using package softwares, JMAG & CAEFEM](https://www.jmag-international.com/conference_doc/uc2011_18/) - Takushi Fujioka, Fujitsu General Limited - [Demagnetization Analysis Method using Dy Diffused Magnets and the Most Suitable Dy Diffusion Methods and their Effects for Motor Applications](https://www.jmag-international.com/conference_doc/uc2011_17/) - Mitsutoshi Natsumeda, Hitachi Metals, Ltd. - [Effect of magnetic property on the accuracy of induction heating analysis](https://www.jmag-international.com/conference_doc/uc2011_15/) - Hiroshi Yuki, NTN Corporation - [Development of the self fluxing alloy fusing process with the control system using the simulation](https://www.jmag-international.com/conference_doc/uc2011_14/) - Tomoji Osada, NIPPON THERMONICS Corporation. - [A System of Coordination With Analysis Engineers and the Successes That Follow](https://www.jmag-international.com/conference_doc/uc2011_13/) - Norihide Fujiyama, KOYO THERMO SYSTEMS CO.,LTD - [Expanding and Utilizing JMAG-Bus for Developing Motor Systems](https://www.jmag-international.com/conference_doc/uc2011_12/) - Takehiro Miyoshi, Honda R&D Co.,Ltd. - [Optimizing Designs with High Throughput Computing](https://www.jmag-international.com/conference_doc/uc2011_11/) - Brooklin J. Gore, University of Wisconsin-Madison - [Leveraging JMAG-RT and FEA-based Models for High Fidelity Real-Time Test in FPGA](https://www.jmag-international.com/conference_doc/uc2011_10/) - Ben Black, National Instruments - [Electric Drives for Off-Road Mobile Equipment](https://www.jmag-international.com/conference_doc/uc2011_03/) - Jim Shoemaker, John Deere - [Low-frequency Electromagnetic Field Analysis](https://www.jmag-international.com/conference_doc/uc2011_02/) - Noboru Kikuchi, University of Michigan - [Where will JMAG go from here?](https://www.jmag-international.com/conference_doc/uc2011_01/) - Takashi Yamada, JSOL Corp. - [Analysis of Permanent Magnet Eddy-current Loss Using JMAG-SuperExpress](https://www.jmag-international.com/conference_doc/uc2012_29/) - Shinsuke Kayano, Mitsubishi Electric Corporation - [Attraction force analysis using remanent magnetization](https://www.jmag-international.com/conference_doc/uc2012_27/) - Yoshiaki Shinozaki, USUI KOKUSAI SANGYO KAISHA, LTD. - [Approach of electromagnetic-field analysis in digital AV equipment](https://www.jmag-international.com/conference_doc/uc2012_25/) - Hirotsugu Fusayasu, Panasonic Corporation - [Vibration Optimization of Concentrated Stator and IPM Rotor](https://www.jmag-international.com/conference_doc/uc2012_23/) - Alvin Lee, Emerson - [Evaluation of Different Electrical Steels and Iron Loss evaluation of inter-locks vs welds vs bonded lamination cores in IPM Hybrid Motor using JMAG.](https://www.jmag-international.com/conference_doc/uc2012_21/) - Charles R. Frontczak, Tempel Steel Company - [Electromagnetic Field Analysis of the High-Speed Electric Motor Using the JMAG-GPU Solver](https://www.jmag-international.com/conference_doc/uc2012_20/) - Daisuke MITSUOKA, SHIMADZU CORPORATION - [Efficient 3-dimensional optimization technology for high-precise magnetic rotation angle sensor](https://www.jmag-international.com/conference_doc/uc2012_17/) - Takaomi Kojima, Tamagawa-Seiki Co., Ltd. - [JMAG for machinery design in electric power generation systems](https://www.jmag-international.com/conference_doc/uc2012_16/) - Hiroyuki Sano, JSOL Corp. - [New Features of JMAG-Designer Ver.12](https://www.jmag-international.com/conference_doc/uc2012_15/) - Tetsuo Ogawa, JSOL Corp. - [Creating Simulation Models based on Measuring Results of Brushed DC-Motors using JMAG-Designerr](https://www.jmag-international.com/conference_doc/uc2012_13/) - Matthias SCHONDELING, Valeo Wiper System, Bietigheim - [Large Rotating Machine design using FEM analysis](https://www.jmag-international.com/conference_doc/uc2012_07/) - Yuichi Tsuboi, TOSHIBA MITSUBISHI-ELECTRIC INDUSTRIAL SYSTEMS CORPORATION - [Loss analysis and geometry optimization in rotating machines](https://www.jmag-international.com/conference_doc/uc2012_02/) - Katsumi Yamazaki, Chiba Institute of Technology - [JMAG Development Plans 2012](https://www.jmag-international.com/conference_doc/uc2012_01/) - Takashi Yamada, JSOL Corp. - [JMAG Development Plan 2013](https://www.jmag-international.com/conference_doc/uc2013_42/) - Takashi Yamada, JSOL Corp. - [Development of the Highly Functional Integrated Magnetic Transformer for Power Electronics](https://www.jmag-international.com/conference_doc/uc2013_41/) - Tatsuya Hosotani, Murata Manufacturing Co., Ltd. - [Easy Simulation Method of the Inductor Devices.](https://www.jmag-international.com/conference_doc/uc2013_40/) - Hidenori Uematsu, Panasonic Corporation Automotive & Industrial Systems Company - [Comparison of Actual Measurements of a Reactor Natural Frequency and JMAG Simulation (Refined Modeling of Elements)](https://www.jmag-international.com/conference_doc/uc2013_39/) - Kouhei Ueda, TABUCHI ELECTRIC CO., LTD. - [Study on Self-Excitation Wound-Field Motor with Field Poles Excited by Space Harmonics](https://www.jmag-international.com/conference_doc/uc2013_38/) - Masahiro Aoyama, Shizuoka University, Suzuki Motor Corporation - [Magnetic Field Analysis of a Claw Pole Rotating Machine](https://www.jmag-international.com/conference_doc/uc2013_36/) - Toshiyuki Yoshizawa, Mitsubishi Electric Corporation - [Analysis of Magnet Segmentation for an Electrical Machine used in Hybrid-Cars and Comparison with Calorimetric Measurement](https://www.jmag-international.com/conference_doc/uc2013_34/) - David Bauer, Robert Bosch GmbH - [The Effect of Stress in Iron Loss Analysis Evaluation: Verification through the Steel Sheet Processing Method](https://www.jmag-international.com/conference_doc/uc2013_33/) - Motomichi Ohto, Yaskawa Electric Corporation - [Role of Electrical Machines in Electrification](https://www.jmag-international.com/conference_doc/uc2013_32/) - Ayman M. EL-Refaie, General Electric Global Research Center - [A Transient Core Loss Calculation Algorithm for Soft Magnetic Composite Material](https://www.jmag-international.com/conference_doc/uc2013_30/) - Masaki Wasekura, TOYOTA MOTOR CORPORATION - [A Model-Based Development Process of Automobile Using JMAG-RT and PSIM](https://www.jmag-international.com/conference_doc/uc2013_26/) - Minoru Miyakoshi, Hirotaka Toda, Hisayuki Kabashima, Mazda Motor Corporation - [An Example of Motor Control ECU Software Verification from HILS using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2013_25/) - Tomohiro Morita, Fuji Heavy Industries Ltd. - [A Tubular Hydro-Generator Through Bolts Failure Analysis](https://www.jmag-international.com/conference_doc/uc2013_24/) - Li Jianfu, Dongfang Electrical Machinery Co. Ltd - [Stress analysis of stator coil-end portion of turbine generator](https://www.jmag-international.com/conference_doc/uc2013_23/) - Kohei Kuroda, Fuji Electric Co.,Ltd. - [Coupling JMAG with a Structural Analysis and CFD Software](https://www.jmag-international.com/conference_doc/uc2013_22/) - Yusaku Suzuki JSOL Corp. Abstract Design of electrical device products involves not only electromagnetivity, but also indispensable is evaluation of a variety of areas including intensity, vibration and thermals. JMAG is not limited only to electromagnetic field analysis but is also capable of multiphysics analysis including thermal and structural analyses. We are also focusing on - [Useful Tips for JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2013_20/) - Masayuki Kawai, JSOL Corp. - [Case Studies Using JMAG in Electric Motor Development](https://www.jmag-international.com/conference_doc/uc2013_19/) - Miho Shimada, KYB Corporation - [JMAG-Designer Case Studies and Issues for Magnetic Separators](https://www.jmag-international.com/conference_doc/uc2013_18/) - Takashi Watanabe, Nippon Magnetics, Inc. - [Crankshaft optimization of induction heat treatment using computer aided engineering(The second report)](https://www.jmag-international.com/conference_doc/uc2013_13/) - Akiko Inami, Fuji Heavy Industries LTD. - [Newly introduced non-oriented electrical steel sheets to JMAG material database and the influence of magnetic properties of non-oriented electrical steels on switched reluctance motor's characteristics](https://www.jmag-international.com/conference_doc/uc2013_10/) - Hiroaki Toda, JFE Steel Corporation - [Numerical Validation of Magnetic Measurement method of Motor Core using JMAG Designer.](https://www.jmag-international.com/conference_doc/uc2013_08/) - Takao Imagawa, Hitachi,Ltd. - [JMAG’s Searching Quest for Large Scale, Faster Electromagnetic Analysis - HPC Solver Introduction -](https://www.jmag-international.com/conference_doc/uc2013_06/) - Kazuki Semba, JSOL Corp. - [Magnetic Field Analysis of Large Transformers in Direct Current Bias Magnetism](https://www.jmag-international.com/conference_doc/uc2013_04/) - Kenichi Tanaka, Fuji Electric Co.,Ltd. - [Coil Vibration as a Noise Source Generated by Transformer Load Current](https://www.jmag-international.com/conference_doc/uc2013_03/) - Kiyoshi Wakimoto, MEIDENSHA CORPORATION - [Handling Cores and Core Materials in Numerical Analyses for Motor Design and Analysis](https://www.jmag-international.com/conference_doc/uc2013_02/) - Chikara Kaido, Kitakyushu National College of Technology - [JMAG Development Plans 2013](https://www.jmag-international.com/conference_doc/uc2013_01/) - Takashi Yamada, JSOL Corp. - [Model-based development of PMSM (Permanent Magnet Synchronous Motor) control systems & NI Electric Motor Simulation Toolkit](https://www.jmag-international.com/conference_doc/uc2014_43/) - Yusuke Minami, National Instruments Japan Corporation - [Development planning of JMAG](https://www.jmag-international.com/conference_doc/uc2015_01/) - Takashi Yamada, JSOL Corp. - [There are no presentation materials included. Investigation of Proximity Losses in a Permanent Magnet Machine for electric vehicles](https://www.jmag-international.com/conference_doc/uc2013de_02/) - David Bauer, Robert Bosch GmbH - [Development of electric motors in automotive applications using JMAG Software](https://www.jmag-international.com/conference_doc/uc2013de_03/) - Mohamed Hadjali, Nidec motors & actuators - [Simulation of acoustic noise induced by electromagnetic forces in claw-pole alternators](https://www.jmag-international.com/conference_doc/uc2013de_08/) - Antoine Tan-Kim, VALEO EEM - [Analysis of an induction-heating fusing unit using JMAG](https://www.jmag-international.com/conference_doc/uc2008_06/) - Tetsuya Kagawa, KONICA MINOLTA BUSINESS TECHNOLOGIES, INC. - [Customized Development of Automotive Motor System using JMAG-Studio](https://www.jmag-international.com/conference_doc/uc2008_03/) - Ryoma Matsuo, PUES Corporation - [Numerical Magnetic Field Analysis in Electric Performance Calculation in Large Rotating Machines.](https://www.jmag-international.com/conference_doc/uc2008_02/) - Kazumasa Ide, Hitachi, Ltd. - [The history of JMAG](https://www.jmag-international.com/conference_doc/uc2008_01/) - Takashi Yamada, JRI Solutions, Ltd. - [Multi-Physics Applications and Opportunities Enabled Through JMAG and Abaqus Co-simulation](https://www.jmag-international.com/conference_doc/uc2012us_14/) - Brad Heers, Dassault Systemes SIMULIA - [JMAG Roadmap and Introduction to JMAG V12](https://www.jmag-international.com/conference_doc/uc2012us_12/) - Takashi Yamada, JSOL Corp. - [Effects of manufacturing process on IPM motor losses](https://www.jmag-international.com/conference_doc/uc2012us_08/) - Hossein Dadkhah, Chrysler - [High Fidelity Hardware-in-the-Loop Simulation with JMAG-RT and NI VeriStand](https://www.jmag-international.com/conference_doc/uc2012us_05/) - Nick Keel, National Instruments - [Estimating the effects of partial flux linkages on the resistance of PMAC motor windings](https://www.jmag-international.com/conference_doc/uc2012us_04/) - John Suriano, NIDEC Corp. - [The Design of Superconducting Magnets Using JMAG](https://www.jmag-international.com/conference_doc/uc2012_08/) - Jun Yoshida, Sumitomo Heavy Industries, Ltd. - [Test and Analysis of Superconducting Electromagnetic Tornado Stirring System](https://www.jmag-international.com/conference_doc/uc2010_22/) - Hirofumi KASAHARA, Central Research Institute of Electric Power Industry - [JMAG: From Implementation to Efficient Operation](https://www.jmag-international.com/conference_doc/uc2010_s6/) - Yoshiyuki Sakasita, JSOL Corporation - [Introduction of Features Contributing to an Easy-to-Use JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2010_s5/) - Yuya Yamashita, JSOL Corporation - [Approaches and Future of Iron Loss Analysis in JMAG](https://www.jmag-international.com/conference_doc/uc2010_s4/) - Katsuyuki Narita, JSOL Corporation - [Logic and Strategies When Analysis and Measured Results Don't Match](https://www.jmag-international.com/conference_doc/uc2010_s3/) - Tetsuya Hattori, JSOL Corporation - [EMC for Motor Drive Systems](https://www.jmag-international.com/conference_doc/uc2010_s2/) - Akinori Shiga, JSOL Corporation - [New Features of JMAG](https://www.jmag-international.com/conference_doc/uc2010_s1/) - Yuya Yamashita, JSOL Corporation - [Motor Vibration/Noise Simulation Analysis and Its Features](https://www.jmag-international.com/conference_doc/uc2010_33/) - Noda Shinichi, Toshiba Corporation - [Thermal-demagnetization Analysis and Research on Physical Properties of Nd-Fe-B Sintered Magnets](https://www.jmag-international.com/conference_doc/uc2010_31/) - Dai Higuchi, Shin-Etsu Chemical Co., Ltd. - [Utilizing JMAG Designer for 3D Magnetic Field Analysis Models](https://www.jmag-international.com/conference_doc/uc2010_30/) - Yuichi Yoshikawa, Home Appliances Company,Panasonic Corporation - [Expanding and Utilizing JMAG-Designer as Designers](https://www.jmag-international.com/conference_doc/uc2010_29/) - Akihiko Furuto, TOHOKU PIONEER Corporation - [Introduction for the utilization techniques of JMAG for transformer design](https://www.jmag-international.com/conference_doc/uc2010_28/) - Takayuki NISHIO, JSOL Corporation - [Characteristic Analysis Chip Inductance Under Stress](https://www.jmag-international.com/conference_doc/uc2010_27/) - Yosuke Iijima, TAIYO YUDEN CO., LTD. - [Study of local heating on by IPB connection box and around metallic parts of large power transformer by 3-D Magnetic field analysis](https://www.jmag-international.com/conference_doc/uc2010_26/) - Hirokazu Hayashida,Japan AE Power Systems Corporation - [Trends and Challenges of Induction Heating Analyses](https://www.jmag-international.com/conference_doc/uc2010_25/) - Hiroshi Hashimoto, JSOL Corp. - [Guidelines for Generating Mesh in Induction Heating Simulations](https://www.jmag-international.com/conference_doc/uc2010_24/) - Jun Iwanaga, JSOL Corporation - [Measurement of Magnetic Properties at High Temperature and Application to Magneto-Thermal Coupled Analysis of Induction Heater](https://www.jmag-international.com/conference_doc/uc2010_23/) - Norio Takahashi, Department of Electrical and Electronic Engineering/The Graduate School of Natural Science and Technology/Okayama University - [Study on Electromagnetic Vibration of Magnetic Gear](https://www.jmag-international.com/conference_doc/uc2010_21/) - Noboru Niguchi, Dept. of Adaptive Machine Systems/Graduate School of Engineering/Osaka University - [Basic Investigation on Magnetic Pole Changing Type Linear Stepping Actuator using Inverse Magnetostrictive Effect. (With JMAG Simulation)](https://www.jmag-international.com/conference_doc/uc2010_20/) - Masayuki Sugasawa, Systems and Information Engineering Department of Intelligent Interaction, Technologies, University of Tsukuba - [Electromagnetic Field Analysis for Smart Key Antenna](https://www.jmag-international.com/conference_doc/uc2010_19/) - Yuji Okada, AISIN SEIKI CO.,LTD - [Development of an Electric Drive Motor for the Honda FCX Clarity](https://www.jmag-international.com/conference_doc/uc2010_17/) - Akinobu Iwai,Honda R&D Co.,Ltd. - [The Future of JMAG-RT for Furthering Model Based Design](https://www.jmag-international.com/conference_doc/uc2010_16/) - Toshie FURUBAYASHI, JSOL Corporation - [Developing Motor Drive Systems Using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2010_15/) - Masaya Harakawa, Mitsubishi Electric Corporation - [Coupled Analysis of IPM(Interior Permanent Magnet) Motor](https://www.jmag-international.com/conference_doc/uc2010_14/) - Nobuyuki Suzuki, Toshiba Corporation - [Implementation and Case Study of High Performance/Low Cost Motor HILS using JMAG-RT](https://www.jmag-international.com/conference_doc/uc2010_13/) - Shusaku Hayakawa, National Instruments Japan Corporation - [Introducing the modeFRONTIER JMAG-Designer Direct Interface](https://www.jmag-international.com/conference_doc/uc2010_12/) - Seiji Nishita, Home Appliances Company Panasonic Corporation - [Latest Advancements in Motor Hardware-In-the-Loop Simulation (HILS) based on JMAG-RT](https://www.jmag-international.com/conference_doc/uc2010_11/) - Simon Abourida, Opal-RT Technologies, Inc. - [Multi-Physics Analysis with JMAG-Designer: Current Capabilities and Future Directions](https://www.jmag-international.com/conference_doc/uc2010_10/) - David Dibben, JSOL Corporation - [On the role of Process Integration and Design Optimization in ECO Electric Motor Design; a proposition](https://www.jmag-international.com/conference_doc/uc2010_09/) - Nick Tzannetakis, Noesis Solutions - [Latest advancements in noise and vibration simulation in support of electrical motors and power electronics.](https://www.jmag-international.com/conference_doc/uc2010_08/) - Koen De Langhe,LMS International - [Studies on Less Rare-Earth Permanent Magnet Hybrid Excitation Motor with High Power Density](https://www.jmag-international.com/conference_doc/uc2010_05/) - Takashi Kosaka, Omohi College, Graduate School of Engineering, Nagoya Institute of Technology - [Variable-Magnetic-Flux Motors for Opening up a World of the New Motor-Drive Technology](https://www.jmag-international.com/conference_doc/uc2010_03/) - Kazuto Sakai, Toyo University - [Novel Permanent Magnet Brushless Machines and Applications](https://www.jmag-international.com/conference_doc/uc2010_02/) - Z.Q. Zhu, University of Sheffield, UK - [Development planning of JMAG](https://www.jmag-international.com/conference_doc/uc2010_01/) - Takashi Yamada, JSOL Corp. - [Utilizing Motor Models for Control Design](https://www.jmag-international.com/conference_doc/uc2009_s6/) - Katsuyuki Narita,JSOL Corp. - [Reducing the Time Required for Analyses Using JMAG's Distributed Processing and Parallel Solver](https://www.jmag-international.com/conference_doc/uc2009_s5/) - Kazuki Semba,JSOL Corp. - [Designing Transformers and Estimating Problems and Countermeasures](https://www.jmag-international.com/conference_doc/uc2009_s4/) - Yusaku Suzuki,JSOL Corp. - [Technical Challenges Related to Induction Heating Analyses- Modeling Material Properties -](https://www.jmag-international.com/conference_doc/uc2009_s3/) - Hiroshi Hashimoto,JSOL Corp. - [Practical Electromagnetics for Electrical Device Analysis](https://www.jmag-international.com/conference_doc/uc2009_s2/) - Takayuki Nishio,JSOL Corp. - [Parametric Analyses Using JMAG-Designer](https://www.jmag-international.com/conference_doc/uc2009_s1/) - Tetsuya Hattori,JSOL Corp. - [Report of Harumi-1 Project](https://www.jmag-international.com/conference_doc/uc2009_23/) - Katsuyuki Narita, Tetsuya Hattori,JSOL Corp. - [Engineer's Education using Electromagnetics CAE at Mitsubishi Electric](https://www.jmag-international.com/conference_doc/uc2009_22/) - Hidenobu Itagaki,Mitsubishi Electric Corporation - [Analysis of nonlinear characteristics in high temperature superconductor rotating machine](https://www.jmag-international.com/conference_doc/uc2009_21/) - Taketsune Nakamura,Kyoto University - [Parametrizing the Coil Construction and Coupling Coefficients of Inverter Transformers in JMAG](https://www.jmag-international.com/conference_doc/uc2009_20/) - Masahiro Kitagawa,MINEBEA CO.,LTD - [Considerration of the Joule Loss in Windings for Power Reactor](https://www.jmag-international.com/conference_doc/uc2009_19/) - Tsutomu Hamada,Tamura Coporation - [Development and Performance Evaluation of a Contactless Inductive Power Supply (IPS) System for Electric-driven Vehicles](https://www.jmag-international.com/conference_doc/uc2009_18/) - Yushi Kamiya,Waseda University - [Simulation of Small Wind Power Generating System Using PMSG](https://www.jmag-international.com/conference_doc/uc2009_17/) - Katsumi Kesamaru,Kyushu University - [Utilizing a Magnetic Field Analysis for a Hybrid Stepping Motor](https://www.jmag-international.com/conference_doc/uc2009_16/) - Masaru Kobori,Oriental Motor Co., LTD - [Examination of an induction heating simulation using the B-H curve](https://www.jmag-international.com/conference_doc/uc2009_14/) - Takashi Horino,NETUREN CO.,LTD. - [Examples Utilizing JMAG](https://www.jmag-international.com/conference_doc/uc2009_12/) - Shunsuke Funaji,Mitsui Engineering & Shipbuilding co.,ltd - [Expectations from Control Technology to Magnet Field Analyses](https://www.jmag-international.com/conference_doc/uc2009_11/) - Shinji doki, Nagoya University. - [Examination of a torque estimation method by using JMAG-RT.](https://www.jmag-international.com/conference_doc/uc2009_10/) - Hajime Hida, Yoshio Tomigashi, Kenji Ueyama, SANYO Electric Co., Ltd. - [The Newest Developments of Rare-earth Magnets](https://www.jmag-international.com/conference_doc/uc2009_09/) - Dai Higuchi, ShinEtsu Chemical Co., Ltd. - [Virtual Motor Capable of Connecting to an Inverter that Supports Nonlinear Response (JMAG-RT Compatible)](https://www.jmag-international.com/conference_doc/uc2009_07/) - Yoshihiko Ozaki, DSP Technology Co.,Ltd. - [AcuSolve: 3D Thermal Flow Analysis of JMAG Results](https://www.jmag-international.com/conference_doc/uc2009_06/) - Farzin Shakib, ACUSIM Software, Inc. - [Loss Analysis and Shape Optimization of Interior Permanent Magnet Motors](https://www.jmag-international.com/conference_doc/uc2009_05/) - Katsumi Yamazaki, Chiba Institute of Technology. - [Interior PM Synchronous Machines: Historical Perspectives, Current Status, and Future Directions](https://www.jmag-international.com/conference_doc/uc2009_02/) - Thomas M. Jahns, University of Wisconsin - [JMAG Development Plans](https://www.jmag-international.com/conference_doc/uc2009_01/) - Takashi Yamada, JSOL Corp. - [Recent Analysis Method of Motors Using 3-D Finite Element Method](https://www.jmag-international.com/conference_doc/uc2001_23/) - Yoshihiro kawase, Gifu University - [Analysis of Characteristics of Permanent Magnet-Field Type Synchronous Generator using JMAG-Studio(DP)](https://www.jmag-international.com/conference_doc/uc2001_22/) - Takayuki Fujikawa, Shin-Daiwa-Kogyo Co.,Ltd - [Analysis of A New Motor Drive Control Technology Using by JMAG](https://www.jmag-international.com/conference_doc/uc2001_21/) - Hideshi Ohtsuka, SHARP Corporation - [Magnetic Printing Simulation for Hard Disk Drives by Using Finite Element Method](https://www.jmag-international.com/conference_doc/uc2001_20/) - Akira AHSGON, Matsushita Electric Industrial Co., Ltd. - [Transient Analysis of Write Head for Hard Disk Drives -Comparison Analysis and Electron Beam Tomography Measurement-](https://www.jmag-international.com/conference_doc/uc2001_19/) - Kimio Nakamura, Hitachi, Ltd. - [Head Field analysis of high-density recording write heads](https://www.jmag-international.com/conference_doc/uc2001_18/) - Yasushi Kanai, Niigata Institute of Technology - [Eddy current loss analysis of electrical steel sheet and permanent magnet using JMAG](https://www.jmag-international.com/conference_doc/uc2001_17/) - Munekatsu Shimada,Hideaki Ono, Nissan Motor Co., Ltd. - [Cogging Torque Analysis of Thin-Shaped Permanent Motor With Pole-Orientations Taking into Account of Material Properties](https://www.jmag-international.com/conference_doc/uc2001_16/) - Takushi Fujioka,Youichi Tanabe, FUJITSU GENERAL LIMITED - [Design of magnetic circuit on linear DC motor using by JMAG](https://www.jmag-international.com/conference_doc/uc2001_15/) - Hisashi Yajima,Hiroyuki Wakiwaka, SMC Corporation,Shinshu University - [Application Examples in Sumitomo Metal Mining](https://www.jmag-international.com/conference_doc/uc2001_14/) - Koichiro Maki, Sumitomo Metal Minimg Co.Ltd. - [Electromagnetic Field Analysis of AC Relay By 3D Model and Auto Mesh](https://www.jmag-international.com/conference_doc/uc2001_13/) - Katsumi Takahashi,Takeshi Nishiyama, OMRON Corporation - [Development of Fast Frequency Sweep for JMAG's High Frequency Solver](https://www.jmag-international.com/conference_doc/uc2001_11/) - David Dibben, The Japan Research Institute,Limited. - [Mechanism Investigation and Source Improvement of Surface-wave Interfered Plasma Using JMAG WV](https://www.jmag-international.com/conference_doc/uc2001_10/) - Nobumasa Suzuki, Canon Inc. - [FDTD Calculations of Heating Characteristics of Thin Coaxial Antennas for Medical Treatments](https://www.jmag-international.com/conference_doc/uc2001_09/) - Kazuyuki Saito, Chiba University - [The design of microwave circuits using the simulation technology](https://www.jmag-international.com/conference_doc/uc2001_08/) - Tatsuya Kashiwa, Kitami Institute of Technology - [Numerical Calculation of AC Loss of Superconductor including Magnetic Field Dependence of Critical Current](https://www.jmag-international.com/conference_doc/uc2001_07/) - Edmund S.Otabe, Kyushu Institute of Technology - [Numerical Analysis of AC Loss in High-Tc Superconducting Cables](https://www.jmag-international.com/conference_doc/uc2001_06/) - Shoichi Honjo, Tokyo Electric Power Company - [Simulation of Electromagnetic Phenomena in the Superconductor](https://www.jmag-international.com/conference_doc/uc2001_05/) - Hiroyuki Ohsaki, The University of Tokyo - [Mold design for pole anisotropic injection molding bonded magnet by magnetic field analysis](https://www.jmag-international.com/conference_doc/uc2001_04/) - DAIDO ELECTRONICS CO.,LTD. - [Improvement of Motor Core Performance by Practical Use Developed Evaluation Technique for Electrical Steel](https://www.jmag-international.com/conference_doc/uc2001_03/) - Masao Yabumoto,Takeaki Wakisaka,Chikara Kaido, Nippon Steel Corporation - [Analysis of 2-D Magnetization Property using by JMAG](https://www.jmag-international.com/conference_doc/uc2001_02/) - Hiroshi Hashimoto, The Japan Research Institute,Limited. - [A Method for Nonlinear Magnetic Field Analysis Taking Account of the 2-D Magnetization Property](https://www.jmag-international.com/conference_doc/uc2001_01/) - Koji Fujiwara, Okayama University - [Key Points of Numerical Analysis -Present Challenges Related to Material Properties -](https://www.jmag-international.com/conference_doc/uc1998_19/) - Koji Fujiwara, Okayama University - [Analysis and Design Challenges of Complex Regions](https://www.jmag-international.com/conference_doc/uc1998_18/) - H.Miura Engineering (USA) - [Simulating the Coating Process](https://www.jmag-international.com/conference_doc/uc1998_17/) - Koichiro Maki, Sumitomo Metal Minimg Co.Ltd. - [Behavior Analysis of Toner for Digital Photo Processing](https://www.jmag-international.com/conference_doc/uc1998_16/) - Masao Nakano, Canon Inc. - [Development of Fully Superconducting Linear Actuator Actuator with Bi/Ag Sheathed Tape Windings and YBCO Bulk Thruster](https://www.jmag-international.com/conference_doc/uc1998_15/) - A.Kobayashi, Yokohama National University - [JMAG-Works Capabilities on Electromagnetic Analysis on North-American Affairs](https://www.jmag-international.com/conference_doc/uc1998_14/) - Adam Skorek, Université du Québec à Montréal - [Evaluating AC Loss of Spiral Conductors for Superconducting Cables](https://www.jmag-international.com/conference_doc/uc1998_13/) - Shoichi Honjo, Tokyo Electric Power Company - [Challenges for Magnetic Field Analysis of Narrow Magnetic Heads](https://www.jmag-international.com/conference_doc/uc1998_12/) - Fujitsu Japan - [Numerical Simulation Analysis of Magnetic Recording](https://www.jmag-international.com/conference_doc/uc1998_11/) - Yasushi Kanai, Niigata Institute of Technology - [Introducing New Features of JMAG-Works and JMAG-Studio -Electromagnetic Field Analysis System for Personal Computers -](https://www.jmag-international.com/conference_doc/uc1998_10/) - Takashi Yamada, The Japan Research Institute,Limited. - [Analysis of a Permanent Magnet Motor](https://www.jmag-international.com/conference_doc/uc1998_09/) - Akio Yamagiwa, DAIKIN INDUSTRIES, Ltd. - [High-frequency Induction Heating, etc.](https://www.jmag-international.com/conference_doc/uc1998_08/) - Ishikawajima-Harima Heavy Industries Co., Ltd. - [Analysis of a Liner Drive System](https://www.jmag-international.com/conference_doc/uc1998_07/) - Tokyo University of Agriculture and Technology - [Analysis of Impedance Characteristics of Chip Inductor](https://www.jmag-international.com/conference_doc/uc1998_06/) - Michio Ohba, Shyouichi Mimura, Matsushita Electronic Components Co.,Ltd - [Optics Analysis of Solar Batteries Using FEM and FDTD](https://www.jmag-international.com/conference_doc/uc1998_05/) - SANYO Electric Co., Ltd. - [Particle/Electromagnetic Wave Simulation](https://www.jmag-international.com/conference_doc/uc1998_04/) - Hokkaido University - [Cogging Torque of a Divided Iron Core Type Motor](https://www.jmag-international.com/conference_doc/uc1998_03/) - Fuji Electric Corporate Research and Development, Ltd. - [Realizing 3D Magnetic Field Analysis of Rotating Machines](https://www.jmag-international.com/conference_doc/uc1998_02/) - Haruyuki Kometani, Mitsubishi Electric Corporation - [Latest Magnetic Field Analysis Using the Finite Element Method and Its Application](https://www.jmag-international.com/conference_doc/uc1998_01/) - Yoshihiro Kawase, Gifu University ## seminar - [The classification or "family tree" of electric machines today](https://www.jmag-international.com/seminar/prof_miller_seminar/) - Prof. Miller’s Webinar is released once a month on our website. You can watch it again and again on your own time, so please take a look. - [Material Measurement Technology Workshop](https://www.jmag-international.com/seminar/workshop-mmt/) - Highly precise prediction of losses remains a major challenge in electric machine design. That is why engineers are always searching for new material models and other tools. Regardless of the type of development or use, exceptionally reliable material measurement data is crucial. Material measurement technology influences the reliability of loss prediction. Measurement technology continues to ## Function Tutorials - [[JFT213] Offline Optimization Using Response Value Surrogate Model and Geometry Check Surrogate Model](https://www.jmag-international.com/tutorial/jft213_checksurrogateofflineopt/) - This tutorial describes the procedures to export a geometry check surrogate model from an optimization run with a response value surrogate model to execute an optimization that references the geometry check surrogate model. - [[JFT220] Anisotropy Analysis of High-Temperature Superconductors](https://www.jmag-international.com/tutorial/jft220_superconductoranisotropy/) - This tutorial describes the procedures for performing HTS analysis in JMAG while taking this anisotropy into account. - [[JFT219] Simulation Database Visualization Using JMAG-Design Explorer](https://www.jmag-international.com/tutorial/jft219_designexplorervisualization/) - This tutorial describes the procedures necessary to extract and visualize design solutions from importing data into the simulation database to running cluster analyses, applying Pareto filters, and displaying parallel coordinates charts in JMAG Design Explorer. - [[JFT217] Motor Thermal Analysis Model Configuration Using the Thermal Modeling Feature](https://www.jmag-international.com/tutorial/jft217_thermalmodelmotor/) - This tutorial describes the procedures to configure a thermal analysis model using the thermal modeling features while confirming the cooling channels and geometry. - [[JFT070] Creating PM Motor Efficiency Maps Using JMAG-Designer (Accuracy Priority Mode)](https://www.jmag-international.com/tutorial/jft070_efficiencymapstudyaccuracy/) - This document describes how to create efficiency map studies (accuracy priority mode) using a JMAG-Designer efficiency map study (speed priority mode). - [[JFT215] Two-Dimensional Fourier Transform for Section Graphs](https://www.jmag-international.com/tutorial/jft215_2dfouriertransformation/) - This tutorial describes the procedures to use two-dimensional Fourier transform for section graph data, and then display a new graph. - [[JFT214] Optimization with Constraints on Dependent Dimension Parameters](https://www.jmag-international.com/tutorial/jft214_constraintsondependentdimensions/) - Overview Geometry optimization is a promising technique to produce innovative designs but imposing proper constraints on dimension parameters is crucial to exclude unmanufacturable and insufficient-strength designs. JMAG enables users to impose optimization constraints on any dimensions without changing geometry constraint settings. This tutorial describes the procedures to run an optimization with a constraint on a - [[JFT212] Hysteresis Curve Distortion Correction When Using Measured Results](https://www.jmag-international.com/tutorial/jft212_hysteresisloopdistortioncorrection/) - This tutorial describes the procedures to correct measured hysteresis curve data using the JMAG Hysteresis Curve Creator to generate data compatible with analyses. - [[JFT211] Parametric Analysis and Optimization in JMAG-Express Using Custom User Geometry](https://www.jmag-international.com/tutorial/jft211_usergeometryexpressopt/) - This tutorial describes the procedures to run a parametric analysis and optimization in JMAG-Express using two-dimensional geometry data created in external CAD software. - [[JFT195] The Use of Custom Geometry in JMAG-Express Using Auto Constraint](https://www.jmag-international.com/tutorial/jft195_autoconstraintexpress/) - This tutorial describes the procedures to use geometry modeled in an external CAD software and evaluate the performance in JMAG-Express. - [[JFT210] Drive Cycle Analysis Accounting for Voltage Change Over Time](https://www.jmag-international.com/tutorial/jft210_efficiencymapvt/) - This tutorial describes the procedures to display the efficiency and losses during a drive cycle while taking into account changes in the bus voltage over time. - [[JFT207] Offline Optimization Using a Surrogate Model](https://www.jmag-international.com/tutorial/jft207_surrogatemodelofflineopt/) - This tutorial describes the procedures to run an offline optimization using only a surrogate model created via an optimization in advance. - [[JFT197] Eddy Current Loss Analysis of Motor Magnets Using the Zooming Method](https://www.jmag-international.com/tutorial/jft197_zoomingipm/) - This tutorial describes the procedures to run a multi-stage analysis using the vector potential boundary condition to obtain the eddy current losses. - [[JFT209] Thermal Design in JMAG-Express Using Custom User Geometry](https://www.jmag-international.com/tutorial/jft209_thermaldesignexpress/) - This tutorial describes the procedures to apply an analysis template for design scenarios to a model created in JMAG-Designer, and then run an evaluation of the motor performance. - [[JFT038] Automation of JMAG using MATLAB](https://www.jmag-international.com/tutorial/jft038_matlabtojmag/) - In this document, a script is introduced that automatically executes a MATLAB script file from MATLAB, displays the results in MATLAB after launching JMAG-Designer, and then closes JMAG-Designer. - [[JFT198] Rapid Design Exploration Using Surrogate Models](https://www.jmag-international.com/tutorial/jft198_sizing_withsurrogate_model/) - This document provides a sample file of a book with Excel macros that explore designs using surrogate models. This document describes how to use this book with Excel macros to obtain response values according to design variables and how to obtain combinations of design variables that satisfy constraints. - [[JFT208] The Use of Custom Three-Dimensional Geometry in JMAG-Express](https://www.jmag-international.com/tutorial/jft208_guideusergeometryexpress/) - This tutorial describes the procedures to use three-dimensional geometry data modeled in an external CAD software to evaluate the performance in JMAG-Express. - [[JFT202] Analysis of a Superconductor](https://www.jmag-international.com/tutorial/jft202_superconductor/) - This tutorial describes the procedures to run an analysis of a superconductor in JMAG. - [[JFT185] Use of Custom Two-dimensional Geometry in JMAG-Express 23.0 and Later](https://www.jmag-international.com/tutorial/jft185_guideusergeometryexpress/) - This tutorial describes the procedures to evaluate radial gap motor performance in JMAG-Express using custom two-dimensional geometry data created in an external CAD software. - [[JFT206] Creation of Efficiency Maps Accounting for Power Limits](https://www.jmag-international.com/tutorial/jft206_efficiencymappowerlimit/) - This tutorial describes the procedures to create an efficiency map by applying an input power limit. - [[JFT196] Creating Efficiency Maps from JMAG-RT Models](https://www.jmag-international.com/tutorial/jft196_rtefficiencymap/) - This tutorial describes the procedures to create integration studies in JMAG and then create efficiency maps from JMAG-RT models. - [[JFT204] Remote Execution of Analyses Using SSH and the JMAG Job System](https://www.jmag-international.com/tutorial/jft204_optimizationusingssh/) - This tutorial describes the procedures to run an optimization using SSH and the JMAG Job System. - [[JFT188] Creation and Use of Surrogate Models Using Multiple Analysis Case Results](https://www.jmag-international.com/tutorial/jft188_createusesurrogatemodel/) - This document describes the procedures to create a surrogate model using results from an analysis with multiple cases to review response value maps by calling that surrogate model using a script. - [[JFT205] Model Update Feature for SOLIDWORKS 3D CAD Software](https://www.jmag-international.com/tutorial/jft205_solidworksinterface/) - This tutorial imports a new SOLIDWORKS geometry file to a study with a model while retaining the same material and condition settings. - [[JFT200] Function to Convert JMAG Thermal Circuits into MATLAB Thermal Circuits](https://www.jmag-international.com/tutorial/jft200_exportthermalcircuit/) - This tutorial describes the procedures to convert thermal circuits arranged in JMAG into MATLAB/Simulink thermal circuits to run system simulations. - [[JFT140] Motor Design Using JMAG-Express](https://www.jmag-international.com/tutorial/jft140_motordesignusingexpress/) - This tutorial describes the procedures for motor design using JMAG-Express. - [[JFT203] Optimization with Periodicity Support Using Magnet Orientations as Design Variables](https://www.jmag-international.com/tutorial/jft203_topologymagnetorientationperiodic/) - This tutorial sets up a model with magnets that have a periodic orientation direction and runs a topology optimization using the orientation directions of the magnets as design variables. - [[JFT201] Distributed Processing Using the JMAG Job System and Computers Running Windows](https://www.jmag-international.com/tutorial/jft201_jobsystemdistributedcalculation/) - This tutorial describes the procedures to distribute multiple cases from a local computer to a remote machine running Windows using the JMAG Job System. - [[JFT199] Transfer Function Creation and Vibration Calculation Using JMAG-Designer (Ver. 24.1 and later)](https://www.jmag-international.com/tutorial/jft199_transferfunctionsurface/) - This tutorial describes the procedures to create transfer functions for a motor using a JMAG structural analysis to run a vibration analysis. Users can also use the transfer function created in JMAG as input for the [Vibration Evaluation with Transfer Function] script provided with JMAG-Designer. - [[JFT194] Display of Multiple File/Case Results Using JMAG Design Explorer](https://www.jmag-international.com/tutorial/jft194_designexplorer/) - This tutorial describes the procedures to display results from multiple files and cases using the JMAG Design Explorer. - [[JFT138] Creating Vector Expression Data and Using Vector Expressions](https://www.jmag-international.com/tutorial/jft138_vectorequations/) - This document describes creating vector expression data before running the analysis, and the method for creating vector expressions based on that information. - [[JFT153] Topology Optimization Calculations Using CNN Surrogate Models](https://www.jmag-international.com/tutorial/jft153_topologyoptwithsurrogatemodel/) - This document describes as the workflow for topology optimization calculations using CNN surrogate models running topology optimization for creating a CNN surrogate model, creating the CNN surrogate model, verifying the accuracy of the CNN surrogate model, and using the CNN surrogate model to run topology optimization calculation. - [[JFT152] Output of Response Values Using Surrogate Models](https://www.jmag-international.com/tutorial/jft152_usingsurrogatemodel/) - In this document, a macro is provided for quickly evaluating the results obtained by design parameter combinations using surrogate models. This document, as a workflow for parametric calculation using surrogate models, explains how to create a case that combines design parameters randomly, obtain response values and create graphs from the response values. - [[JFT146] Optimization Calculation Using Surrogate Models](https://www.jmag-international.com/tutorial/jft146_optimizationwithsurrogatemodel/) - This document describes as the workflow for optimization calculations using surrogate models creating training data, creating the sample case, and using a surrogate model in running optimization calculations. - [[JFT193] Creating Thermal Circuits Using JMAG-RT](https://www.jmag-international.com/tutorial/jft193_rtthrmalcircuit/) - This tutorial describes the procedures to create a thermal circuit in MATLAB-Simulink equivalent to a thermal circuit created in JMAG and run a system simulation. - [[JFT094] Parametric Analysis of Material Properties](https://www.jmag-international.com/tutorial/jft094_parametricmaterial/) - In this document, a parametric analysis is run varying coefficients for an iron loss equation from case to case, and a procedure for obtaining Joule loss and hysteresis loss is presented. - [[JFT191] Automatic Export of Result Tables Using Script](https://www.jmag-international.com/tutorial/jft191_scripttableoutput/) - This tutorial describes the procedures to distribute and run an analysis group consisting of an efficiency map analysis study (speed priority mode) and a parametric optimization using a magnetic field analysis study across remote computers. - [[JFT189] Creation of a Transfer Function and the Vibration Analysis using JMAG-Designer](https://www.jmag-international.com/tutorial/jft189_transferfunction/) - In this document, you will learn the steps to create a transfer function of a motor and perform the vibration analysis. - [[JFT192] User-defined Thermal Resistance Settings Using Python](https://www.jmag-international.com/tutorial/jft192_definedthermalresistanceusingpython/) - This tutorial describes the procedures to specify thermal resistance using Python scripts. - [[JFT164] Searching for a Parameter Range that Reduces Geometry Collapse During Optimization Calculation (For Ver.22.0 or later)](https://www.jmag-international.com/tutorial/jft164_geometrycollapseopt_preevaluation/) - This document explains how to use this useful function to search for parameter ranges that reduce geometry collapse during optimization calculations. - [[JFT092] Mesh Model Skew Deformation](https://www.jmag-international.com/tutorial/jft092_applyskew/) - In this document, how to apply skew to a mesh model is presented. - [[JFT052] Creating a Motor Geometry Using a Geometry Template](https://www.jmag-international.com/tutorial/jft052_geometrytemplatemotor/) - In this document, how to create a motor geometry using pre-installed stator and rotor geometries is presented. - [[JFT075] Procedure for Dimensional Multi-Objective Optimization Calculations](https://www.jmag-international.com/tutorial/jft075_multiobjectiveoptimization/) - This document describes the procedure for running multi-objective optimization calculations with dimensions as design variables and correlative evaluation items. - [[JFT122] Executing Optimization Calculations Using Reduced Order Models](https://www.jmag-international.com/tutorial/jft122_reducedordermodelopt/) - This document describes the method for executing single analysis and optimization using a reduced order model. - [[JFT190] Distributed Optimization Run with an Efficiency Map Analysis Study (Speed Priority Mode)](https://www.jmag-international.com/tutorial/jft190_distributedeffmapspeedopt/) - This tutorial describes the procedures to distribute and run an analysis group consisting of an efficiency map analysis study (speed priority mode) and a parametric optimization using a magnetic field analysis study across remote computers. - [[JFT001] Wire Modeling Using the Sweep Function](https://www.jmag-international.com/tutorial/jft001_sweepfunction/) - This document contains sample data and the operation procedures for learning how to use the sweep function. Sweep is a function to push out the cross-section geometry along a path. - [[JFT005] Function to Control Air Region Mesh Density](https://www.jmag-international.com/tutorial/jft005_airregionmesh/) - This tutorial describes the procedures to adjust the mesh density in the air region around the coil of a reactor. - [[JFT086] Generating Variable Size Extruded Mesh](https://www.jmag-international.com/tutorial/jft086_variableextrudedmesh/) - In this document, you will learn how to coarseness set up the extrusion direction and create an extruded mesh. - [[JFT166] Building Analysis Models with User-Defined Geometry and Thermal Design Scenarios](https://www.jmag-international.com/tutorial/jft166_userdefinedusingscenario/) - This document explains how to load user defined 2D models and build thermal analysis models. - [[JFT129] Adding Efficiency Map (Speed Priority Mode) Response Values](https://www.jmag-international.com/tutorial/jft129_efficiencymapresvalueset/) - This document describes the procedure for registering maximum torque, output power, and maximum speed as response values, and confirming each of those values. - [[JFT085] Detailed Rotation Periodic Mesh Settings](https://www.jmag-international.com/tutorial/jft085_detailedperiodicmesh/) - In this document, you will learn the procedure from detailed setting of rotation period mesh to generation of mesh. - [[JFT002] Parametric Analysis of Geometry Using Direct Modeling](https://www.jmag-international.com/tutorial/jft002_directmodeling/) - This document describes the procedures necessary to run a parametric analysis of geometry using direct modeling. - [[JFT187] Direct Coupled Magnetic Field and Structural Analysis Accounting for Changes Over Time](https://www.jmag-international.com/tutorial/jft187_magds2waycoupling/) - This document describes the procedures to run a direct two-way coupled magnetic field and structural analysis that takes into account the changes over time. - [[JFT186] Automatic Winding Scheme Selection](https://www.jmag-international.com/tutorial/jft186_windingalgorithm/) - This document describes this unique feature and the procedures to switch between several automatic winding schemes available in JMAG. - [[JFT184] Using a Script to Remove Unnecessary Steps From Result Files](https://www.jmag-international.com/tutorial/jft184_reducestep/) - This document explains how to remove unnecessary steps from a result file. - [[JFT101] Condition Settings Using the Response Values of Other Studies](https://www.jmag-international.com/tutorial/jft101_analisysgroupresponsedata/) - This document explains the procedure of referencing the analysis results of other studies, and using those as input values for calculations in further analyses. - [[JFT100] Material Allotment per Element](https://www.jmag-international.com/tutorial/jft100_changematerialperelement/) - In this document, how to set a different material for each element of a part and how to create multiple cases with different material specifications for the elements is presented. - [[JFT093] Shape Modification Using the Morphing Function (Moving Only Nodes on a Specified Edge)](https://www.jmag-international.com/tutorial/jft093_movenodesmorphing/) - In this document, the procedure for moving only nodes in a mesh model on specified edges using the morphing function is presented. - [[JFT091] Taking into Account Iron Loss in Magnetic Field Analysis](https://www.jmag-international.com/tutorial/jft091_ironlosscalculation_e/) - In this document, describes an analysis procedure accounting for iron loss in magnetic field analysis. - [[JFT090] Iron Loss Analysis Using a Play Model and Lamination Analysis (Excess Eddy Current Loss Taken Into Account)](https://www.jmag-international.com/tutorial/jft090_ironlosscalculation_d/) - In this document, describes an analysis procedure for calculating iron loss using play model and lamination analysis that accounts for anomalous eddy current loss. - [[JFT089] Iron Loss Analysis Using a Play Model and Lamination Analysis](https://www.jmag-international.com/tutorial/jft089_ironlosscalculation_c/) - In this document, describes an analysis procedure for calculating iron loss using play model and lamination analysis. - [[JFT088] Iron Loss Analysis Using Iron Loss Characteristics Data (Isolation of Excess Eddy Current Loss)](https://www.jmag-international.com/tutorial/jft088_ironlosscalculation_b/) - In this document, describes an analysis procedure for the isolation of anomalous eddy current loss, and calculating iron loss using iron loss characteristics data. - [[JFT087] Iron Loss Analysis Using Iron Loss Characteristics Data](https://www.jmag-international.com/tutorial/jft087_ironlosscalculation_a/) - In this document, describes an analysis procedure for calculating iron loss using iron loss characteristics data. - [[JFT083] Automating the Multi-Purpose File Export Tool with Command Lines](https://www.jmag-international.com/tutorial/jft083_automationofmpfetool/) - This document describes the method for automating the multi-purpose file export tool. - [[JFT028] Procedure for Adding Cases Using Materials (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft028_parametricanalysis_b/) - This document shows the procedure of advance preparation using materials. - [[JFT115] Recalculating Electromagnetic Force and Torque Waveforms](https://www.jmag-international.com/tutorial/jft115_recalcforce/) - This document describes the method for calculating electromagnetic force as the post-processing of magnetic field analysis. - [[JFT180] Topology Optimization Including Magnet Orientation Directions as Design Variables](https://www.jmag-international.com/tutorial/jft180_topologymagnetorientation/) - This document describes the procedures for running topology optimization, including the magnet orientation directions as design variables. - [[JFT165] Running JMAG Using a Python Development Environment](https://www.jmag-international.com/tutorial/jft165_scripteditortojmag/) - This document explains how to run a Python script on a third-party integrated development environment, then configure the settings for conditions in JMAG. - [[JFT116] Creating Rotating Machine Coil Geometry Accounting for Arbitrary Winding Methods](https://www.jmag-international.com/tutorial/jft116_tabledesignationcoiltemplate/) - This document describes the method for creating a rotating machine coil using the coil template Edit Winding Table function. - [[JFT181] Using 2D CAD Data for Motor Design in JMAG-Express (Ver.22.1 and later)](https://www.jmag-international.com/tutorial/jft181_express2dcad/) - This document describes the procedures for evaluating performance with JMAG-Express using geometry created from external CAD. - [[JFT179] Simultaneous Multi-Case Execution from CUI on HPC/Cluster](https://www.jmag-international.com/tutorial/jft179_jobsysteminputfileexport/) - This document describes the procedures for running multi-case calculations from the CUI of the calculation machine in environments where jobs cannot be directly submitted from the client machine to calculation machines including HPCs or clusters. - [[JFT178] Customizing Display Items in the JMAG-Express View](https://www.jmag-international.com/tutorial/jft178_expressview/) - This document describes the procedure for running parametric analysis with the JMAG-Express View using a generic model. - [[JFT182] Using User Geometry in JMAG-Express](https://www.jmag-international.com/tutorial/jft182_userdefinedgeometryexpress/) - This document describes the procedures to let you run performance evaluation in JMAG-Express by using geometry created with external CAD. - [[JFT015] Procedure for Direct Coupled Analysis with JMAG and STAR-CCM+ Taking Thermal Fluid into Account (Ver.22.0 and After)](https://www.jmag-international.com/tutorial/jft015_starfor170/) - This document presents the procedure for two way coupled analysis considering thermal fluid by using JMAG and STAR-CCM+. - [[JFT132] Simultaneous Parameter and Topology Optimization](https://www.jmag-international.com/tutorial/jft132_hybridoptimization/) - This document describes the method for optimizing parameters and topology simultaneously. - [[JFT139] Coil Modeling for Axial Gap Type Rotating Machines Using Coil Template and Winding Editor](https://www.jmag-international.com/tutorial/jft139_coiltemplateaddaxial/) - This document explains how to create coil shapes and set conditions for an axial gap type motor. - [[JFT136] Sending SSH Settings to Remote Machines](https://www.jmag-international.com/tutorial/jft136_sendsshtoremotemachine/) - This document describes the method for sending SSH settings configured on local machines to remote machines for executing other case calculations. - [[JFT135] Distributed Execution of Topology Optimization Calculation Using SSH](https://www.jmag-international.com/tutorial/jft135_topologyoptimizationssh/) - This document describes how to perform topology optimization calculations with the on/off method on a Linux remote machine via SSH. - [[JFT118] Distributed Processing for Parameter Optimization Calculations Using SSH](https://www.jmag-international.com/tutorial/jft118_parameteroptimizationssh/) - This document describes a method for running optimization calculations with a Linux remote machine by using SSH. - [[JFT113] Running Calculations by Grouping Multiple Jobs Using SSH](https://www.jmag-international.com/tutorial/jft113_groupedjobrunnerssh/) - JMAG is capable of grouping multiple jobs and registering them to the job management system. - [[JFT106] Multistage Analysis Using a Vector Potential Boundary Condition](https://www.jmag-international.com/tutorial/jft106_zooming/) - In this document, how to perform multistage analysis using a vector potential boundary condition is presented. - [[JFT095] Obtaining Distribution Data from a Results File](https://www.jmag-international.com/tutorial/jft095_jplotaccessapi/) - In this document, how to use APIs to obtain physical quantity data from a results file is presented. - [[JFT077] Creating JMAG-RT Models with Generic Circuit Topology](https://www.jmag-international.com/tutorial/jft077_rtgenericmodel/) - This document describes the method for creating plant models (JMAG-RT models) with generic circuit topology. - [[JFT073] Current Control with Induction Heating Work Temperature as Feedback Using User Subroutines](https://www.jmag-international.com/tutorial/jft073_currentcontrolbytemperature/) - This document explains how to control work piece surface temperature by using user subroutines and the coil current amplitude as a manipulated variable. - [[JFT054] Output Types for the Spatial Modes of Electromagnetic Force Using FFT](https://www.jmag-international.com/tutorial/jft054_spacialmodeofforce/) - This document describes the procedure to confirm the spatial modes of the electromagnetic force acting on a stator using a radar graph from electromagnetic force analysis results obtained with JMAG. - [[JFT053] Magnet Magnetization Direction Inheritance Using an Analysis Template](https://www.jmag-international.com/tutorial/jft053_analysistemplateedge/) - In this document, the method for inheriting the magnetization direction of a magnet using an analysis template is detailed. - [[JFT051] Creating and Using Geometry Templates](https://www.jmag-international.com/tutorial/jft051_geometrytemplate/) - In this document, the procedure for registering geometry and using the registered geometry is described. - [[JFT050] Procedure for Exporting a Selected Study from a Project](https://www.jmag-international.com/tutorial/jft050_exportproject/) - In this document, the procedure for exporting 1 study is presented. - [[JFT049] Grouping FEM Coil Conditions](https://www.jmag-international.com/tutorial/jft049_coilgroup/) - In this document, how to group FEM coil conditions and associate them with macro component wave windings is explained. - [[JFT048] Brush / Commutator Component](https://www.jmag-international.com/tutorial/jft048_brushcommutator/) - In this document, how to use the Brush / Commutator component is described. - [[JFT046] Analysis Group Inheritance Using an Analysis Template](https://www.jmag-international.com/tutorial/jft046_analysistemplategroup/) - In this document, how to set analysis groups using an analysis template is explained. - [[JFT045] Inheriting Settings when Updating CAD](https://www.jmag-international.com/tutorial/jft045_updatemodelfromfile/) - This document demonstrates how to inherit settings for CAD files when updating them using a script that assumes when to use optimization tools. - [[JFT044] Pre-Post and Solver Parallel Distributed Processing Using SSH](https://www.jmag-international.com/tutorial/jft044_twostepsssh/) - In this document, how to set pre-post and solver parallel distributed processing is explained. - [[JFT043] Frequency Filter Calculation on Distribution Amounts Obtained with Transient Response Analysis](https://www.jmag-international.com/tutorial/jft043_frequencyfilter/) - This document describes a method for displaying filtered distribution amounts only in specific frequency components by using the frequency filter calculation function. - [[JFT042] A Method for Obtaining a Steady-State Solution at an Early Stage (Time Periodic Explicit Error Correction)](https://www.jmag-international.com/tutorial/jft042_tp-eec/) - In this document, obtaining steady-state in less time steps using TP-EEC function will be presented. - [[JFT041] Simple Skew Analysis Using Results Data](https://www.jmag-international.com/tutorial/jft041_skewgraph/) - In this document, how to use the skew graph function is described. - [[JFT040] Creating Specified Outputs Using Distribution Results](https://www.jmag-international.com/tutorial/jft040_usercomponents/) - In this document, how to define an expression of an output and how to display its contour plot is described. - [[JFT039] Procedure for Removing Overlapping Sections of Two Parts](https://www.jmag-international.com/tutorial/jft039_boolean/) - In this document, the procedure for removing the overlapping sections of two solids is described. - [[JFT036] Eccentricity Setting for Inclining the Rotation Axis](https://www.jmag-international.com/tutorial/jft036_eccentricity_d/) - This document shows setting to tilt the rotation axis. - [[JFT035] Eccentricity Setting for Inclining the Motion Region Axis](https://www.jmag-international.com/tutorial/jft035_eccentricity_c/) - This document shows setting to tilt the motion region axis. - [[JFT033] Eccentricity Setting for Parallelly Moving the Motion Region Initial Location](https://www.jmag-international.com/tutorial/jft033_eccentricity_a/) - This document shows how to set the eccentricity to account for the moving part’s axis remaining parallel to the central axis while moving from the initial position and afterwards. - [[JFT032] Evaluation Graph Displaying for Design Parameters (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft032_parametricanalysis_ef/) - This document describes the procedure for setting response data and the procedure for generating response graphs from response data. - [[JFT031] Procedure for Adding Dimension Cases Using Equations (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft031_parametricanalysis_d2/) - This document shows the procedure of advance preparation using an equation for dimensions. - [[JFT030] Procedure for Adding Cases with a Dimension as a Design Parameter (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft030_parametricanalysis_d1/) - This document shows the procedure to set a dimension as a design parameter in advance preparation. - [[JFT029] Procedure for Adding Cases Using Point Sequences (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft029_parametricanalysis_c/) - This document shows the procedure of advance preparation using point sequences. - [[JFT027] Procedure for Adding Cases Using Equations (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft027_parametricanalysis_a2/) - This document shows the procedure of advance preparation using select parameters. - [[JFT167] Adding Arbitrary Circuits to JMAG Model Equivalent Circuits](https://www.jmag-international.com/tutorial/jft167_rtarbitrarycomponents/) - This document explains how to add arbitrary circuits when running JMAG-RT models with MATLAB/Simulink. - [[JFT011] Tooth Electromagnetic Force Monitoring During Control Simulation](https://www.jmag-international.com/tutorial/jft011_rtuserspecified/) - This document describes the preparation involved for outputting tooth electromagnetic force when creating a JMAG-RT model, MATLAB/Simulink settings, and the displaying of the obtained electromagnetic force. - [[JFT056] Using an Electromagnetic Force Output Script for NVH](https://www.jmag-international.com/tutorial/jft056_exportforconteeth/) - This document presents sample data and procedures to learn how to use an "electromagnetic force output for NVH" script. - [[JFT176] Workflow and Key Points for Creating a JMAG-RT Model](https://www.jmag-international.com/tutorial/jft176_rtbasic/) - Overview This document covers the general flow of using JMAG to create a JMAG-RT model and provides the key points for each step and useful functions. It is intended for intermediate level users who are able to use technical references to improve accuracy and efficiency in their analysis. Therefore, basic information and detailed procedures are - [[JFT172] Workflow and Key Points of Parametric Analysis](https://www.jmag-international.com/tutorial/jft172_parametricanalysisbasic/) - It is intended for intermediate-level users who are able to use technical references to improve accuracy and efficiency of their analysis. Therefore, basic information and detailed procedures are not included. - [[JFT169] Run Distributed Processing Efficiently](https://www.jmag-international.com/tutorial/jft169_speedupdistributedcalculation/) - This document explains how to configure settings so that the waiting time for analysis is as short as possible by using the PBS option for the remote machine SSH function. - [[JFT168] Creating Geometry to Reduce Geometry Corruption](https://www.jmag-international.com/tutorial/jft168_robustgeometry/) - This document explains how to create geometry that is less likely to result in geometry corruption. - [[JFT173] Workflow and Key Points in Efficiency Map Analysis](https://www.jmag-international.com/tutorial/jft173_efficiencymapbasic/) - It is intended for intermediate-level users who are able to use technical references to improve accuracy and efficiency of their analysis. Therefore, basic information and detailed procedures are not included. - [[JFT174] Workflow and Key Points of Parameter Optimization](https://www.jmag-international.com/tutorial/jft174_parameteroptimizationbasic/) - This document is intended for intermediate-level readers who can use the technical materials to improve the accuracy and operational efficiency of the analyses that they are involved in. Therefore, basic notes and detailed procedures are omitted. - [[JFT171] Evaluation of Results for Multi-Case Calculations That Do Not Load Result Files](https://www.jmag-international.com/tutorial/jft171_loadoptimization/) - This document explains how to run an analysis on the remote machine and check the analysis results without transferring the result file to the local machine. - [[JFT170] Distributed Processing Using JMAG-RemoteSystem](https://www.jmag-international.com/tutorial/jft170_calculationusingjrs/) - This document describes how to distribute the execution of multiple cases using the JMAG-RemoteSystem. - [[JFT175] Workflow and Key Points of Topology Optimization](https://www.jmag-international.com/tutorial/jft175_topologyoptimizationbasic/) - It is intended for intermediate level users who are able to use technical references to improve accuracy and efficiency in their analysis. Therefore, basic information and detailed procedures are not included. - [[JFT004] Two-way coupled analysis function with JMAG and STAR-CCM+](https://www.jmag-international.com/tutorial/jft004_star-ccm_coupled/) - This document contains sample data and operation procedures for learning about external solver coupling conditions and procedures for two-way coupled analysis with STAR-CCM+. - [[JFT084] Procedure for Two-Way Coupled Analysis Taking into Account Fluid Force with JMAG and STAR-CCM+](https://www.jmag-international.com/tutorial/jft084_jmag_starccm_motion/) - In this document, how to set up a two-way coupled analysis that takes into account fluid force with JMAG and STAR-CCM+ is presented. - [[JFT058] Creating Efficiency Maps Using JMAG-Designer (Speed Priority Mode)](https://www.jmag-international.com/tutorial/jft058_efficiencymapstudyspeed/) - This document describes how to create efficiency maps using a JMAG-Designer efficiency map study (prioritizing speed). - [[JFT081] Creating an Induction Motor Efficiency Map Using JMAG-Designer (Speed Priority Mode)](https://www.jmag-international.com/tutorial/jft081_efficiencymapstudyspeed-im/) - In this document, how to create an efficiency map of an induction motor using an efficiency map study (speed priority mode) in JMAG-Designer is presented. - [[JFT109] Comparing Efficiency Maps and Loading External Data](https://www.jmag-international.com/tutorial/jft109_efficiencymapfromexternaldata/) - Using a JMAG-Designer efficiency map study, this document describes the method for creating efficiency maps with external data as output and confirming the differences between those efficiency maps. - [[JFT114] Correcting Efficiency Maps Using Scripts](https://www.jmag-international.com/tutorial/jft114_efficiencymapscript/) - This document uses a JMAG-Designer efficiency map study (speed priority) to describe the method for correcting the response values of created efficiency maps with Python scripts. - [[JFT121] Calculating Energy Consumption During Drive Cycle Using Efficiency Maps](https://www.jmag-international.com/tutorial/jft121_drivemodeefficiencymap/) - This document describes the method for calculating energy consumption during a drive cycle using an obtained efficiency map and tools. - [[JFT125] Inheriting Operating Points Between Modes in Efficiency Map Studies](https://www.jmag-international.com/tutorial/jft125_efficiencymapoperatingpoint/) - This document describes the method for using operating point information obtained with speed priority mode in accuracy priority mode. - [[JFT128] Evaluating Drive Cycle Time Using Efficiency Maps](https://www.jmag-international.com/tutorial/jft128_drivemode/) - This document describes the method for using obtained efficiency maps to confirm the efficiency history, operating points, cluster points, and total energy, etc., for drive cycle time. - [[JFT133] System Loss Evaluations in System-Level Simulations](https://www.jmag-international.com/tutorial/jft133_systemsimusingrtemap/) - This document describes the method to output an efficiency map / loss map obtained with JMAG and using a circuit simulation to comprehend drive cycle system loss. - [[JFT141] JMAG-RT Model Data File Creation Function in JMAG-Designer](https://www.jmag-international.com/tutorial/jft141_creatertemapfunction/) - This document will show you how to export the efficiency map/loss map obtained in JMAG as a JMAG-RT model data file and to check the plot in JMAG RT-Viewer. - [[JFT149] How to Create JMAG-RT Model with JMAG Designer and Run Consecutive Control Simulation](https://www.jmag-international.com/tutorial/jft149_specifyefficiencymaprt/) - This document explains the procedure on how to create a JMAG-RT model in JMAG-Designer and how to use the created model to run consecutive control simulation. - [[JFT159] How to Create Motor Design Using Models & Scenarios](https://www.jmag-international.com/tutorial/jft159_motordesignusingscenario/) - This enables you to create motor models, run analysis and evaluate the results in fewer steps. This document explains the procedure on how to create models using the templates and to run parametric analysis using [Analysis Parameter View]. - [[JFT151] Coil Creating Method Using Beams](https://www.jmag-international.com/tutorial/jft151_beamcoil/) - This document explains how to calculate using line current conditions in magnetic field analysis. - [[JFT012] JMAG-RT Model Generation of Wound-Field Synchronous Motor](https://www.jmag-international.com/tutorial/jft012_rtwfsm/) - This document shows how to generate a JMAG-RT model of a wound-field synchronous motor and how to execute control simulation using a JMAG-RT model in MATLAB/Simulink. - [[JFT047] Performing Harmonic Loss Calculations with Current Control in JMAG-Designer](https://www.jmag-international.com/tutorial/jft047_feedbackcontrol/) - In this document, how to calculate the harmonic loss of a current controlled (PWM controlled) motor is described. - [[JFT134] Inheritance Between Current Waveform Studies](https://www.jmag-international.com/tutorial/jft134_reusecurrentwaveform/) - This document describes the method for setting a current waveform obtained from a 2D analysis to a 3D analysis automatically by using a post calculation script. - [[JFT110] Evaluating the Effect of the Large Number of Holes Generated by Topology Optimization](https://www.jmag-international.com/tutorial/jft110_topologyoptsensitivity/) - This document describes how to efficiently analyze the presence or absence of an effect on hole response values when a large number of holes are generated as a result of topology optimization. - [[JFT082] Automatic Report Creation Including Contour Plots When Running Multi-case Calculations](https://www.jmag-international.com/tutorial/jft082_outputimageduringoptimization/) - This document describes the method for outputting report files while calculating multiple cases. - [[JFT069] Performing Harmonic Loss Calculations Accounting for Current Control with JMAG-Designer and JMAG-RT](https://www.jmag-international.com/tutorial/jft069_feedbackcontrol-rt/) - In this document, how to calculate the harmonic loss of a current controlled (PWM controlled) PM motor at high speed using a JMAG-RT model is presented. - [[JFT034] Eccentricity Setting for Parallelly Offsetting the Rotation Axis](https://www.jmag-international.com/tutorial/jft034_eccentricity_b/) - This document shows setting to move the rotation axis in parallel. - [[JFT023] Frequency Component Analysis of Distributions Obtained by Transient Response Analysis](https://www.jmag-international.com/tutorial/jft023_fouriertransform/) - This document shows how to display output results ij vector form using the Fourier transform calculation function. - [[JFT022] File Export of a Physical Quantity by Multi-Purpose File Export Tool](https://www.jmag-international.com/tutorial/jft022_multi-purposefileexporttool/) - This document shows how to export one physical quantity from JMAG using a multi-purpose file export tool. - [[JFT021] Setting Magnet Material with Coercive Force Distribution and Residual Magnetic Flux Distribution Considering Temperature Dependence](https://www.jmag-international.com/tutorial/jft021_coerciveforcedistributionmagnet/) - This document describes how to set a magnet material with coercive force and residual magnetic flux density taking into account temperature dependence. - [[JFT020] Inheritance of Analysis Content by Analysis Template](https://www.jmag-international.com/tutorial/jft020_analysistemplate/) - This document shows how to inherit conditions and materials using an analysis template. - [[JFT019] Setting an FEM Conductor Condition for a Set of Parts](https://www.jmag-international.com/tutorial/jft019_femconductorscript/) - This document describes how to set the FEM conductor conditions collectively for many wires using a script pre-installed in JMAG. - [[JFT016] Controlling Mesh Generation Method for Each Part](https://www.jmag-international.com/tutorial/jft016_meshgenerationmethod/) - This document describes how to control the mesh generation method for each part by using the extruded direction function. - [[JFT014] Physical Amount Calculation for Any Cross Section](https://www.jmag-international.com/tutorial/jft014_arbitraryfacecalculation/) - This document shows how to define any cross section, using that defined cross section and settings to calculate physical amounts, and how to confirm results. - [[JFT003] Evaluation of Hysteresis Loops and Loss Density Distributions inside an Electromagnetic Steel Sheet](https://www.jmag-international.com/tutorial/jft003_ironlosspostfunction/) - In this document, the procedure for evaluating iron loss distribution for the thickness direction of steel sheets is presented. - [[JFT112] Defining Response Values with Scripts in Topology Optimization Using NGnet](https://www.jmag-international.com/tutorial/jft112_topologyopt_postscript/) - In this document, response values are calculated using a Python script, and a method for performing topology optimization used as an objective function is described. - [[JFT163] How to Output the Input Files for the Calculation of Multiple Cases at a High Speed](https://www.jmag-international.com/tutorial/jft163_exportparametricjcf/) - This document describes how to output the input files for calculations with changes made to the input conditions. - [[JFT062] Creating a Geometry Using a Geometry Template (Python)](https://www.jmag-international.com/tutorial/jft062_geomtempusingpython/) - In this document, how to create geometry templates using JMAG is described. - [[JFT071] Creating User-Defined Calculation Components](https://www.jmag-international.com/tutorial/jft071_userdefinedcalculationcomponents/) - This document describes methods for creating user-defined calculation components. - [[JFT161] Remote Execution for Analysis Using SSH and PBS Options](https://www.jmag-international.com/tutorial/jft161_calculationusingssh_pbs/) - This document describes how to use PBS options with the remote machine SSH function to run the analysis of local machine data with remote machines, then importing the results on a local machine. - [[JFT108] Creating a 3D Mesh Model from a 2D Mesh Model](https://www.jmag-international.com/tutorial/jft108_meshmodeling/) - In this document, how to create a 3D mesh model from a 2D mesh model using Geometry Editor is presented. - [[JFT102] Setting 3D Model Coils Using the Winding Editor](https://www.jmag-international.com/tutorial/jft102_windingeditor3d/) - This document explains methods for setting the coils of a 3D model using the winding editor. - [[JFT067] Preview of Output Electromagnetic Force Using the Multi-Purpose File Export Tool](https://www.jmag-international.com/tutorial/jft067_previewofemforcefq/) - In this document, how to preview output electromagnetic force distributions using the multi-purpose file export tool is presented. - [[JFT026] Procedure for Adding Cases Using Select Parameters (Parametric Analysis)](https://www.jmag-international.com/tutorial/jft026_parametricanalysis_a1/) - This document shows the procedure of advance preparation using select parameters. - [[JFT037] Displaying Differences in Distributions](https://www.jmag-international.com/tutorial/jft037_resultdifference/) - This document shows how to display the distribution difference contour plot using the result difference calculation function. - [[JFT017] Geometry Creation Using Wire Template](https://www.jmag-international.com/tutorial/jft017_geometrycreationusingwiretemplate/) - This document shows how to create many wires at once using the wire template. - [[JFT025] Creating a Graph Showing the Correlation between Time History Physical Quantities](https://www.jmag-international.com/tutorial/jft025_graphmanaer/) - In this document, the procedure for displaying the correlation between two physical quantities on a graph is presented. - [[JFT013] Create of a Truncated Pyramid Shape Using the Loft Function](https://www.jmag-international.com/tutorial/jft013_loftfunction/) - This document describes how to create a 3D geometry by using the Loft function. - [[JFT105] A CAD Link Function to 3D CAD Software NX](https://www.jmag-international.com/tutorial/jft105_cadlink-nx/) - In this document, how to open an NX .prt file in JMAG-Designer and change dimensions is presented. - [[JFT060] Processing Measured Hysteresis Curves](https://www.jmag-international.com/tutorial/jft060_hysteresisloopcorrection/) - This document explains how to process measured hysteresis curves using the hysteresis curve creator tool. - [[JFT160] How to Run Parametric Analysis With Changes Made to the Number of Model Slots and Poles for Motor Thermal Analysis Accounting for Cooling](https://www.jmag-international.com/tutorial/jft160_thermalparametric/) - This example describes how to run parametric analysis with changes made to the number of slots and the number of poles for a motor model that uses a thermal equivalent circuit. - [[JFT158] Several Circuit Conversion Sets](https://www.jmag-international.com/tutorial/jft158_circuitconversion/) - This document explains the procedure on how to set the conversion of multiple circuits in a cage type induction motor model. - [[JFT157] How to Output the Physical Quantities of Multiple Cases to Files in Batches by Using the Multi-Purpose File Export Tool](https://www.jmag-international.com/tutorial/jft157_fileexportformultiplecases/) - This document describes how to output the physical quantities of multiple cases in batches by using the Multi-Purpose File Export tool. - [[JFT156] Creating Shapes Using NGnet Weight](https://www.jmag-international.com/tutorial/jft156_topologyoptngnetgeometry/) - This document describes how to restore only the necessary shapes from NGnet weight after running topology optimization using NGnet. - [[JFT010] Function for Adding User Subroutine Parameters](https://www.jmag-international.com/tutorial/jft010_subroutinecircuit/) - This document is a tutorial on how to set new functions and write user subroutines. - [[JFT018] Creating Rotating Machine Coil Geometry Using Coil Templates](https://www.jmag-international.com/tutorial/jft018_coiltemplate/) - This document describes the method for creating distributed winding coils using coil templates. - [[JFT024] Remote Execution of Analysis Using SSH](https://www.jmag-international.com/tutorial/jft024_calculationusingssh/) - This document shows how to set SSH on a local machine, how to execute on the local machine and how to import results from a remote machine to the local machine. - [[JFT103] Performing Topology Optimization Using Density Method](https://www.jmag-international.com/tutorial/jft103_topologyoptimizationsensitivity/) - In this document, how to execute topology optimization using sensitivity analysis using JMAG is presented. - [[JFT080] Direct Coupling between MATLAB/Simulink and JMAG](https://www.jmag-international.com/tutorial/jft080_directcoupling/) - In this document, direct coupling between MATLAB/Simulink and JMAG is presented. - [[JFT059] How to Account for Harmonic Current (JMAG-RT)](https://www.jmag-international.com/tutorial/jft059_harmoniccurrent-rt/) - This document explains how to use harmonic current waveforms in magnetic field analyses when obtained from running circuit simulation using plant models (JMAG-RT models). - [[JFT143] How to Run Control Simulations Using Only JMAG-RT and a Circuit](https://www.jmag-international.com/tutorial/jft143_integrationstudy/) - This document describes the method for creating an integration study to run a control simulation in JMAG. - [[JFT079] Applying the Extended Slide Function to a Translation Motion Model](https://www.jmag-international.com/tutorial/jft079_extendedslidefortranslationmotion/) - In this document, how to apply the extended slide function to a translation motion model is presented. - [[JFT124] Searching for the Parameter Range Reducing Geometry Collapse During Optimization Calculations](https://www.jmag-international.com/tutorial/jft124_geometrycollapseoptimization/) - This document describes the method for using the functions useful in searching parameter ranges that reduce geometry collapse during optimization calculations. - [[JFT065] Obtaining Part Face Area and How to Set Conditions](https://www.jmag-international.com/tutorial/jft065_areavoulumefunction/) - This document explains how to set current values for a coil area. - [[JFT154] Automatic Generation of Motor Thermal Analysis Model of Rotating Machine that Accounts for Cooling](https://www.jmag-international.com/tutorial/jft154_thermalmodelbuilder/) - This document shows how to run scripts from a JMAG project file with any model to create a thermal analysis model with batch settings of circuit components and each thermal condition based on the exported JCF file. - [[JFT150] Running Calculations of Multiple Studies Connected on Circuits](https://www.jmag-international.com/tutorial/jft150_multifeedbackcontrol/) - This documents explains the procedures on how to run analysis of multiple FEM analysis connected on circuits in JMAG-Designer. - [[JFT148] How to Set an Electrical Component for Each Wire Using Winding Editor](https://www.jmag-international.com/tutorial/jft148_coilwindingoption/) - In this document, the difference in the connection status of the circuit wire by selecting/clearing in the optional function of Winding Editor is checked. - [[JFT097] Optimization Execution Using Material Characteristics as Design Variables](https://www.jmag-international.com/tutorial/jft097_materialoptimization/) - In this document, how to perform optimization with material characteristics used as design variables is presented. - [[JFT120] The Symmetric Hysteresis Loop Creation Function for Play Models](https://www.jmag-international.com/tutorial/jft120_playbh/) - This document describes the method for creating groups of symmetric hysteresis loops by using tools from the measurement data of a single BH loop. - [[JFT142] Creating Shapes Using a Local Coordinate System](https://www.jmag-international.com/tutorial/jft142_localcoordinate/) - This document describes the method for using local coordinate systems to create shapes and changing the shapes parametrically. - [[JFT147] Creating a Lookup Table Using Parametric Analysis](https://www.jmag-international.com/tutorial/jft147_createlutformatlab/) - This document explains how to run parametric analysis in JMAG-Designer and register it as a lookup table for MATLAB. - [[JFT145] How to Arrange Windings That Are in Parallel Circuits on Specified Layers](https://www.jmag-international.com/tutorial/jft145_windingeditorparallel/) - This document explains the procedure on how to set series-parallels of coils and switch the position in slots. - [[JFT144] Flux Linkage Calculations in a Specified Position](https://www.jmag-international.com/tutorial/jft144_fluxlinkagecalculation/) - This document explains the procedure to set user-selected points in air regions and calculate flux linkage at these points. - [[JFT137] Current Restraints using Conditional Branches of Equation](https://www.jmag-international.com/tutorial/jft137_conditionalbranche/) - This document explains how to restrain current value that is fed into the coils when geometry and electric resistance change. - [[JFT131] Evaluating Degrees of Similarity for Geometry Using NGnet Weight](https://www.jmag-international.com/tutorial/jft131_topologyoptngnet/) - This document describes a method where after executing topology optimization using NGnet, degrees of similarity for geometry from NGnet weight are evaluated. - [[JFT127] Changing Settings for Parallel Computing When Executing Calculations](https://www.jmag-international.com/tutorial/jft127_parallelcalcsettings/) - This document describes the procedure for changing settings for parallel computing when executing calculations. - [[JFT126] Vectorizing Signals in a Control Circuit (MUX, DEMUX)](https://www.jmag-international.com/tutorial/jft126_mux/) - This document describes the methods for using a signal vectorization component (MUX) and vector disassembling component (DEMUX) in a control circuit. - [[JFT123] Accounting for Residual Strain](https://www.jmag-international.com/tutorial/jft123_residualstrain/) - This document explains the procedure for executing magnetic field analysis and iron loss analysis that account for residual strain. - [[JFT104] Application of an Anomalous Eddy Current Loss Factor Dependent on Magnetic Flux Density and Frequency](https://www.jmag-international.com/tutorial/jft104_extractionofabnormaleddycurrentloss/) - In this document, an anomalous eddy current loss factor table is created in which an anomalous eddy current loss correction factor is dependent on frequency and magnetic flux density, and an iron loss calculation procedure using it is presented. - [[JFT098] Automatic Thread Allocation During Local Job Execution](https://www.jmag-international.com/tutorial/jft098_affinity/) - In this document, how to optimally allocate threads to cores is presented. - [[JFT096] Performing Parametric Analysis Using an Analysis Parameter View](https://www.jmag-international.com/tutorial/jft096_parametricanalysis_parameterview/) - In this document, how to perform parametric analysis using an analysis parameter view and how to check the results is presented. - [[JFT078] Stopping an Analysis Automatically After Reaching Steady-State](https://www.jmag-international.com/tutorial/jft078_automaticcalculationuntilsteadystate/) - In this document, how to automatically stop analysis after steady-state is reached is presented. - [[JFT076] Methods for Running Geometry Optimization Using Multiple Studies](https://www.jmag-international.com/tutorial/jft076_optimizationusinganalysisgroup/) - This document describes how to run geometry optimization using multiple studies. - [[JFT074] High Accuracy Electromagnetic Force Calculation with the Correction Method and Adaptive Mesh](https://www.jmag-international.com/tutorial/jft074_accurateforcecalculation/) - This document describes methods for calculating electromagnetic force working a coil and magnet at a high accuracy. - [[JFT072] Specifying Stress Distribution with CSV File](https://www.jmag-international.com/tutorial/jft072_stressdependentcsv/) - This document describes methods for accounting for stress distribution with CSV file. - [[JFT068] Specifying Three-Phase Synchronous Motor dq Axis Current](https://www.jmag-international.com/tutorial/jft068_idiqcommand/) - This document explains how to specify a dq axis current and drive a motor. - [[JFT066] Coil Settings Using Winding Editor](https://www.jmag-international.com/tutorial/jft066_windingeditor/) - This document explains methods for setting coils using the winding editor. - [[JFT064] Methods for Motor Vibration Analysis Accounting for Skew Effect with 2D Model](https://www.jmag-international.com/tutorial/jft064_vibrationusestepskew2d/) - This document explains methodology for motor vibration analysis accounting for 2D step skew. - [[JFT063] A Method for Performing Parametric Analysis on a Motor Using the Number of Poles and Number of Slots as Design Variables](https://www.jmag-international.com/tutorial/jft063_parametricparts/) - In this document, how to perform parametric analysis on a motor with the number of poles and the number of slots as design variables is presented. - [[JFT061] Creating Line Shapes Using Functions](https://www.jmag-international.com/tutorial/jft061_geometrycreationusingfunction/) - In this document, a method to perform geometry creation automatically using JMAG is presented. - [[JFT057] How to Run Topology Optimization](https://www.jmag-international.com/tutorial/jft057_topologyoptimization/) - This document describes how to run topology optimization using JMAG. - [[JFT009] Providing Tools Using Scripts - Capacitance Coefficient Calculations](https://www.jmag-international.com/tutorial/jft009_scriptcapacitance/) - This document describes how to use the script for electrostatic capacitance coefficient calculations. - [[JFT117] Parametric Analysis Method for Motors Possessing Wire Geometry with the Number of Poles and Slots as Design Variables](https://www.jmag-international.com/tutorial/jft117_wiretemplateparametric/) - This document describes the method for performing wire geometry parametric analysis for motors with the number of poles and the number of slots as design variables. - [[JFT111] Accounting for Arbitrary Motions](https://www.jmag-international.com/tutorial/jft111_arbitrarymotion/) - This document describes a method of accounting for arbitrary motions in the moving parts of electrical equipment. - [[JFT099] Mixing Manual Mesh and Auto Mesh](https://www.jmag-international.com/tutorial/jft099_manualmesh/) - In this document, how to import a mesh model in which quadrilateral elements have been set for some parts in Geometry Editor into JMAG-Designer and generate mesh for other parts with triangular elements is presented. ## Press Release - [Notice of Temporary Suspension of JMAG-Express Online WEB Service (May 25, 2026)](https://www.jmag-international.com/press/nr20260518/) - May 18, 2026 JMAG Business Company, JSOL Corporation Notice of Temporary Suspension of JMAG-Express Online WEB Service (May 25, 2026) Services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to change without notice. The service to - [Notice of Temporary Suspension of JMAG-Express Online WEB Service (March 23, 2026)](https://www.jmag-international.com/press/nr20260317/) - March 17, 2026 JMAG Business Company, JSOL Corporation Notice of Temporary Suspension of JMAG-Express Online WEB Service (March 23, 2026) Services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to change without notice. The service to - [Notice: Data Retention Policy for Inactive JMAG-Express Online Accounts](https://www.jmag-international.com/press/nr20260220/) - To our valued users: February 20, 2026 JMAG Business Company JSOL Corporation Notice: Data Retention Policy for Inactive JMAG-Express Online Accounts We would like to first thank everyone for using JMAG-Express Online. To ensure a secure and stable service environment, we would like to inform you about the data retention policy for accounts that have - [Notice of Temporary Suspension of JMAG-Express Online WEB Service (January 19, 2026)](https://www.jmag-international.com/press/nr20260107/) - January 7, 2026 JMAG Division, JSOL Corporation Notice of Temporary Suspension of JMAG-Express Online WEB Service (January 19, 2026) Services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to change without notice. The service to be - [Notice: Changes to JMAG License and Renewal Process](https://www.jmag-international.com/press/nr20250521/) - To our valued users: May 21, 2025 JMAG Business Company JSOL Corporation Notice: Changes to JMAG License and Renewal Process All of us at the JMAG Business Company would first like to thank you for your ongoing use of JMAG. We are changing the way JMAG licenses are issued to make the process much more - [Notice: Support Ending for JMAG-RT-EFFICIENCY MAP Licenses](https://www.jmag-international.com/press/nr20250114/) - To our valued users: January 14, 2025 Last Updated March 4, 2025 JMAG Business Company JSOL Corporation Notice: Support Ending for JMAG-RT-EFFICIENCY MAP Licenses We would first like to thank you for your ongoing use of JMAG. As of December 31, 2025, the JMAG Business Company will no longer support the JMAG-RT features to create - [Notice of Access Resumed to the JMAG Download Site (2023-12-08)](https://www.jmag-international.com/press/nr20231208/) - Dec 8, 2023 JMAG Division, JSOL Corporation Notice of Access Resumed to the JMAG Download Site (2023-12-08) Access to the JMAG download site, which had previously been suspended since November 27, has now been resumed. We apologize for any inconvenience that this may have caused. Download service suspension period: From November 27 2023 19:50 to - [Notice of JMAG License Server Migration](https://www.jmag-international.com/press/nr20200403/) - November 5, 2020 JMAG Division, JSOL Corporation Notice of JMAG License Server Migration The JMAG-Designer license server standard will be changed as below from FLEXlm to LM-X. While we apologize for any inconvenience that this change may cause, LM-X licenses will be issued during the next update to customer contracts. For those who wish to - [JMAG-Express Online services Maintenance (Nov 11-12, 2024)](https://www.jmag-international.com/press/nr20241029-2/) - To everyone visiting our website: October 29, 2024 (Updated: November 12, 2024) JMAG Business Company JSOL Corporation JMAG-Express Online services Maintenance (Nov 11-12, 2024) JMAG-Express Online services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to - [Sincere Apologizes for the JMAG-Express Online Service Interruption and Issue Displaying User Data](https://www.jmag-international.com/press/nr20241114/) - To all our valued JMAG-Express Online users, November 14, 2024 JMAG Business Company JSOL Corporation Sincere Apologizes for the JMAG-Express Online Service Interruption and Issue Displaying User Data We would like to first thank everyone for using JMAG-Express Online. The system maintenance conducted on November 11, 2024 encountered some unexpected problems, which caused a prolonged - [Discontinuation of JMAG-Designer Installation DVD](https://www.jmag-international.com/press/nr20241029/) - October 29, 2024 JMAG Business Company, JSOL Corporation Discontinuation of JMAG-Designer Installation DVD The JMAG Business Company has been providing a DVD to install JMAG-Designer based on the request of some of our current customers. However, we will no longer provide a DVD installation option as of December 2024. Users can continue to download the - [Changes to the JMAG-RT Viewer Type 2 (Free) License Key Acquisition Process](https://www.jmag-international.com/press/nr20240902/) - September 2, 2024 JMAG Business Company, JSOL Corporation Changes to the JMAG-RT Viewer Type 2 (Free) License Key Acquisition Process All of us at the JMAG Business Company would like to thank you for visiting the JMAG website. We have modified the process to acquire the JMAG-RT Viewer Type 2 (Free): Ld/Lq Maps/Speed-Torque Curves license - [Notice: End of Support for RedHat Enterprise Linux 6 in JMAG](https://www.jmag-international.com/press/nr20220907/) - September 7, 2022 JMAG Division, JSOL Corporation Notice: End of Support for RedHat Enterprise Linux 6 in JMAG Behavior verification in RedHat Enterprise Linux 6 will end as of the December 1, 2022 release version. We ask that all users consider upgrading to RedHat Enterprise Linux 7 or 8 . Details: End of Support Software - [Changes to Notice Regarding JMAG’s Standard Feature Link to SOLIDWORKS to End](https://www.jmag-international.com/press/nr20220712/) - July 12, 2022 Last Updated Feb 2, 2023 JMAG Division, JSOL Corporation Changes to Notice Regarding JMAG’s Standard Feature Link to SOLIDWORKS to End In December 2021, a notice was provided to inform you that a standard JMAG feature, the link to SOLIDWORKS will be changed to an option requiring a separate license. This is - [Notice of Temporary Suspension of JMAG-Express Online WEB Service (July 4, 2022)](https://www.jmag-international.com/press/nr20220627/) - June 27, 2022 JMAG Division, JSOL Corporation Notice of Temporary Suspension of JMAG-Express Online WEB Service (July 4, 2022) Services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to change without notice. The service to be - [Notice: Announcing end of support for Python 2.7](https://www.jmag-international.com/press/nr20220425/) - April 25, 2022 JMAG Division, JSOL Corporation Notice: Announcing end of support for Python 2.7 Thank you for using JMAG. Support for Python2.7 installed JMAG-Designer will be discontinued as follows: Please upgrade to Python3.8 Details: Subject software - Python 2.7 End of support date: End of support will vary depending on the JMAG version. JMAG-Designer - [End of support for LM-X JMAG License Server Windows 32bit version](https://www.jmag-international.com/press/nr20211217-2/) - December, 2021 JMAG Division, JSOL Corporation Notice: End of support for LM-X JMAG License Server Windows 32bit version This is to announce that support for the LM-X JMAG License Server Windows 32bit version ends with the release of the December 2022, JMAG service pack. We ask that all LM-X JMAG License Server Windows 32bit version - [Notice of License Change for JMAG’s Standard Feature Link to SOLIDWORKS](https://www.jmag-international.com/press/nr20211217/) - 2022-07-12 Further Information: Click here for the latest information. December 17, 2021 JMAG Division, JSOL Corporation Notice of License Change for JMAG’s Standard Feature Link to SOLIDWORKS As of December 2022, JMAG’s standard feature link to-SOLIDWORKS will change to an optional feature and will no longer be a standard feature. In relation to this change, - [The authentication method for JMAG User Support site has been changed](https://www.jmag-international.com/press/nr20211130-2/) - November 30, 2021 JMAG Division, JSOL Corporation The authentication method for JMAG User Support site has been changed We thank all our users for there patronage of JMAG. The authentication method of the JMAG User Support site has been changed from basic authentication to application authentication. The License/User ID and password that we are providing - [Request to reset password for stronger security.](https://www.jmag-international.com/press/nr2021-resetpassword/) - November 30, 2021 JMAG Division, JSOL Corporation Request to reset password for stronger security. Thank you for using the JMAG Website. As of November 30, 2021, the requirements for the “JMAG WEB MEMBER (free membership)” password for the JMAG Website will be changed as follows: We would appreciate your cooperation in creating a stronger security - [Notice Regarding Discontinued Support for Internet Explorer](https://www.jmag-international.com/press/nr20210726/) - July 26, 2021 JMAG Division, JSOL Corporation Notice Regarding Discontinued Support for Internet Explorer We would first like to thank all our users for their continued use of the JMAG website. In order to continue improving the quality and security of our products and services, it is with regret that we announce the removal of - [JMAG uses FUJITSU Supercomputer PRIMEHPC (hereafter referred to as PRIMEHPC) to run massively parallel computing](https://www.jmag-international.com/press/nr20210624/) - June 24, 2021 JMAG Division, JSOL Corporation JMAG uses FUJITSU Supercomputer PRIMEHPC (hereafter referred to as PRIMEHPC) to run massively parallel computing JMAG, a simulation software for electromechanical design and development, validated operations for using the supercomputer Fugaku and the PRIMEHPC series (technology based on Fugaku). JMAG was able to achieve results by using Fugaku’s - [JSOL and voestalpine Announce Partnership Strengthening Electromagnetic Field Simulations](https://www.jmag-international.com/press/nr20210216/) - February 16, 2021 JMAG Division, JSOL Corporation JSOL and voestalpine Announce Partnership Strengthening Electromagnetic Field Simulations JSOL Corporation (hereafter referred to as "JSOL") and voestalpine Stahl GmbH, one of the world's leading steel companies headquartered in Austria, announced the formation of a partnership to integrate voestalpine's electrical steel data into JSOL's JMAG, simulation software for - [Notice of Temporary Suspension of JMAG-Express Online WEB Service (January 18, 2021)](https://www.jmag-international.com/press/nr20210107/) - January 07, 2021 JMAG Division, JSOL Corporation Notice of Temporary Suspension of JMAG-Express Online WEB Service (January 18, 2021) Services will be temporarily suspended due to system maintenance. We regret any inconvenience this may cause and appreciate your understanding and cooperation. Note that the schedule is subject to change without notice. The service to be - [To those using Google Chrome (Resolved)](https://www.jmag-international.com/press/nr20201001/) - October 1, 2020 (Updated: October 14, 2020) JMAG Division, JSOL Corporation To those using Google Chrome (Resolved) Signin errors occurred when viewing some of our contents online. This issue was resolved as of 19:00 October 14. We apologize for any inconvenience that this issue may have caused. Occurred: 09:00 October 1, 2020 Resolved: 19:00 October - [The IEEE Nikola Tesla Award 2021 won by Professor ZI-QIANG ZHU of The University of Sheffield, U.K.](https://www.jmag-international.com/press/nr20200720/) - July 20, 2020 JMAG Division, JSOL Corporation The IEEE Nikola Tesla Award 2021 won by Professor ZI-QIANG ZHU of The University of Sheffield, U.K. Professor ZI-QIANG ZHU of The University of Sheffield, U.K. received the IEEE Nikola Tesla Award 2021. Professor Zhu has been using JMAG in his research. We extend our warmest congratulations on - [JMAG's Response to Countermeasures Against COVID-19](https://www.jmag-international.com/press/nr20200414/) - April 14, 2020 JMAG Division, JSOL Corporation JMAG's Response to Countermeasures Against COVID-19 We understand that work-from-home initiatives are being implemented for customer work environments as so to ensure safety against the effects of the expanding COVID-19 situation. We request that customers discuss with their company distributors the matter of remote access and borrowing licenses. - [Notice of JMAG License Server Migration](https://www.jmag-international.com/press/nr20180110/) - January 10, 2018 (Updated: December 03, 2018) JMAG Division, JSOL Corporation Notice of JMAG License Server Migration The JMAG-Designer license server standard will be changed as below from FLEXlm to LM-X with JMAG-Designer Ver. 17.1 to be released in June 2018. Issue Details: Target software: JMAG-Designer License server migration period: June, 2019 - May, 2020 - [Concerning Issues with the Website Search Function](https://www.jmag-international.com/press/nr20180216/) - February 16, 2018 JMAG Division, JSOL Corporation Concerning Issues with the Website Search Function Dear JMAG users Due to technical issues, the JMAG website search function is currently suspended temporarily. We ask for your kind cooperation and apologize for the inconvenience caused to our users. In the event of content required from the JMAG website, - [Notice Regarding Cessation of Technical Support for Windows 32-bit JMAG-Designer](https://www.jmag-international.com/press/nr20170427/) - April 27, 2017 JMAG Division, JSOL Corporation Notice Regarding Cessation of Technical Support for Windows 32-bit JMAG-Designer We will cease providing technical support for Microsoft Windows 32-bit versions of JMAG-Designer with the release of the service pack for JMAG-Designer Ver.15.1 in April 2017. For those who would like to use future versions of JMAG-Designer, please - [Notice of JMAG Technical Support Discontinuation for Windows Vista](https://www.jmag-international.com/press/nr20160620/) - June 20, 2016 JMAG Division, JSOL Corporation Notice of JMAG Technical Support Discontinuation for Windows Vista As of JMAG version 15.1, operational guarantees and support for Windows Vista has ended. Windows Vista support will continue for version 15.0 for the duration of its service pack support lifecycle. Details: Support End Date: June 20, 2016 Relevant - [Notice Regarding Cessation of Technical Support for Windows 32-bit JMAG-Designer](https://www.jmag-international.com/press/nr20160106/) - January 6, 2016 JMAG Division, JSOL Corporation Notice Regarding Cessation of Technical Support for Windows 32-bit JMAG-Designer We will cease providing technical support for Microsoft Windows 32-bit versions of JMAG-Designer following 15.1 (tentative release date: June, 2016). The final service pack is expected for release on April, 2017. However, download for the final 32-bit version - [Notice Regarding Cessation of Technical Support for Microsoft Windows XP](https://www.jmag-international.com/press/nr20131029/) - Octber 29, 2013 JMAG Division, JSOL Corporation Notice Regarding Cessation of Technical Support for Microsoft Windows XP Microsoft Corporation will cease providing technical support for Microsoft Windows XP from April 9, 2014. Windows XP operation guarantees or support services related to JMAG will also end on the same day. Continued use of JMAG will be - [JSOL and ArcelorMittal Announce Partnership Strengthening Electromagnetic Field Simulations](https://www.jmag-international.com/press/nr20160510/) - May 10, 2016 JMAG Division, JSOL Corporation JSOL and ArcelorMittal Announce Partnership Strengthening Electromagnetic Field Simulations TOKYO, Japan - May 10, 2016 - JSOL Corporation (President and CEO: Mitsutaka Nakamura, hereafter referred to as "JSOL") and ArcelorMittal, the world's leading steel and mining company headquartered in Luxembourg, announced today the formation of a partnership to - [MathWorks and JMAG's joint cooperation to advance Model-Based Design using FEA Models.](https://www.jmag-international.com/press/nr20161118/) - November 18, 2016 JMAG Division, JSOL Corporation MathWorks and JMAG's joint cooperation to advance Model-Based Design using FEA Models. PDF (92KB) JSOL Corporation (Representative: Mitsutaka Nakamura, President and CEO, hereafter "JSOL") is collaborating with MathWorks (headquarters in Natick, Massachusetts, USA) to help control engineers export FEA-based motor models into Simulink, enhancing the use of Model-Based - [Caution: Spoofed Emails](https://www.jmag-international.com/press/nr20240415/) - April 15, 2024 JMAG Business Company, JSOL Corporation Caution: Spoofed Emails We would like to inform you that recently emails have been sent by individuals claiming to be employees of "jmag-international.com". Such emails are fraudulent and have no connection to JMAG and JSOL Corporation. From the example found, the sender's address was our address. However, - [Reissue license ID for enhanced security (JMAG Software (paid-users))](https://www.jmag-international.com/press/nr2024-resetpw-paid/) - Dear Regular JMAG Software Users (paid users), March 28, 2024 JMAG Division, JSOL Corporation Reissue license ID for enhanced security In order to strengthen security, license IDs will be reissued sequentially from March 26, 2024. The IDs issued by March 22, 2024 will gradually cease to be used. If you are unable to sign in - [Request to reset your password to enhance security (JMAG WEB MEMBER)](https://www.jmag-international.com/press/nr2024-resetpw-free/) - To our valued customers, March 27, 2024 JMAG Division, JSOL Corporation Request to reset your password to enhance security Thank you for using the JMAG Website. We would like to ask JMAG WEB MEMBER (free membership) to change their password for the JMAG website at least once to strengthen online security. We would appreciate your - [Motor Design Anywhere, Anytime"JMAG-Express Online" Launched](https://www.jmag-international.com/press/nr20180626/) - June 26, 2018 JMAG Division, JSOL Corporation Motor Design Anywhere, Anytime"JMAG-Express Online" Launched PDF (139KB) The JSOL Corporation (hereafter "JSOL") releases the Web version of the motor design tool, JMAG-Express Online from June 2018. JMAG-Express Online is now available on the Web. Motor design can be carried out on tablets, smartphones, as well as personal ## Product Partners - [NIPPON KINZOKU Co.,Ltd.](https://www.jmag-international.com/aboutus/product-partners/nipponkinzoku/) - NIPPON KINZOKU Co.,Ltd. Contact Us Company Name NIPPON KINZOKU Co.,Ltd. Development Sector Address G-BASE TAMACHI, 5-29-11,Shiba, Minato-ku, Tokyo 108-0014,Japan TEL +81-3-5765-8100 Email soumu@nipponkinzoku.co.jp URL https://www.nipponkinzoku.co.jp/en/ Company Name NIKKIN DENJI KOGYO Co.,Ltd. Sales Department Address 1308-1 Angyoryonegishi, Kawaguchi-shi, Saitama, 333-0834, Japan TEL +81-48-283-1001 Email contact_us1@nikkindenjikogyo.co.jp URL https://nikkindenjikogyo.co.jp/en/ - [Smart Manufacturing Technology Ltd.](https://www.jmag-international.com/aboutus/product-partners/smartmt/) - SMT aspires to be the global market leader in mechanical transmission innovation by exceeding expectations in CAE software and technical services whilst delivering confidence in fulfilment of services and providing next generation software and ideas. - [Synopsys, Inc.](https://www.jmag-international.com/aboutus/product-partners/synopsys/) - The Synopsys Saber Simulator incorporates Robust Design/DFSS methodologies to enable design teams to model, analyze, and optimize system-level interactions for multiple technologies including, electrical, mechanical, hydraulic and magnetic systems. - [SIMULIA - Dassault Systemes](https://www.jmag-international.com/aboutus/product-partners/simulia-dassault-systemes/) - SIMULIA Abaqus provides a powerful and complete solution for performing linear, nonlinear, and multiphysics simulation which helps reduce product development time and costs, while improving reliability. - [Siemens Industry Software S.A.S.](https://www.jmag-international.com/aboutus/product-partners/lms_international_amesim/) - LMS Imagine.Lab offers all the necessary modeling and analysis tools as well as structured and collaborative methods to run the most complex multi-domain simulations. - [Prometech Software, Inc.](https://www.jmag-international.com/aboutus/product-partners/prometech/) - Prometech Software, Inc. Particleworks is a CFD software based on an advanced numerical method known as the Moving Particle Simulation (MPS) method. The mesh-free nature of MPS allows for robust simulation of free-surface flows at high resolutions, saving the need to generate meshes for the fluid domain. Product name Product Outline Particleworks adapts a method - [Romax Technology](https://www.jmag-international.com/aboutus/product-partners/romax/) - Romax Technology are rotating machinery experts for geared and electro-mechanical systems providing simulation software and global services for design, performance simulation and manufacturing. - [Powersim Inc.](https://www.jmag-international.com/aboutus/product-partners/powersim/) - Powersim Inc. PSIM is a simulation and design software specifically for power electronics and motor drives. Product name Product detail PSIM is the leading simulation and design software specifically for power electronics and motor drives. It empowers engineers and accelerates their pace of innovation with a fast, reliable, and easy-to-use tool. Key attributes include comprehensive - [Noesis Solutions](https://www.jmag-international.com/aboutus/product-partners/noesis_solutions/) - As a state-of-the-art automation & optimization software, Optimus offers a number of direct interfaces to a wide range of leading simulation softwares – and to JMAG-Designer in particular. Optimus for JMAG-Designer automates the creation of a simulation workflow that contains JMAG-Designer model entries. - [OPAL-RT Technologies Inc.](https://www.jmag-international.com/aboutus/product-partners/opal-rt/) - RT-LAB, fully integrated with MATLAB/Simulink®, is the open Real-Time Simulation software environment that has, through its flexibility and scalability, revolutionized the way Model-based Design is performed. - [Maplesoft](https://www.jmag-international.com/aboutus/product-partners/maplesoft/) - The MapleSim Connector for JMAG®-RT allows users to combine the powerful finite element analysis (FEA) abilities of JMAG with the advanced physical modeling approach of MapleSim to produce high-fidelity system models that seamlessly incorporate components from each system. - [Höganäs AB](https://www.jmag-international.com/aboutus/product-partners/hoganas/) - Höganäs AB Material detail Höganäs AB Somaloy® is a family of iron-based powder materials for the manufacturing of Soft Magnetic Components (SMC). They are made from high purity iron powders with nanometre-size inorganic surface insulation. The iron powders are available in several grades with particle sizes of between 50 – 250 micrometres. The Somaloy® family - [Gamma Technologies](https://www.jmag-international.com/aboutus/product-partners/gamma_technologies/) - Gamma Technologies GT-SUITE is a simulation software package for the engine, powertrain, and vehicle industries. Product name GT-SUITE Product detail GT-SUITE is a CAE software for engine, vehicle, and powertrain development. Many automotive manufacturers, suppliers, and universities have used GT-SUITE since 1995. GT-SUITE is capable of rapidly simulating virtually any system, from very simple to - [Fraunhofer SCAI](https://www.jmag-international.com/aboutus/product-partners/fraunhofer/) - Fraunhofer SCAI Fraunhofer SCAI’s business area Multiphysics offers research capabilities, software development and applications modeling services to its customers and partners. The institute combines mathematical and computational knowledge with a focus on algorithms bringing benefits to customers. Multiphysics s simulations still is an open and active field of research with respect to numerical algorithms as - [FEA-Opt Technology Co. Ltd.](https://www.jmag-international.com/aboutus/product-partners/fea-opt/) - FEA-Opt Technology Co. Ltd. SmartDO (A Smart Design Optimization System), stands out from the competitors in many ways. (Literally) Push-Button Automatic Design Optimization Technology. No need for manual sensitivity study. 100+ successful stories across various disciplines. Industry-proven technology. Tcl/Tk based programmable platform. Sophisticate mathematics and smart algorithms. Applicable to different disciplines and applications. Product name - [ESTECO SpA](https://www.jmag-international.com/aboutus/product-partners/esteco/) - modeFRONTIER is the leading software solution for simulation process automation and design optimization. Engineers rely on modeFRONTIER to explore the design space with AI-empowered methods and accelerate product development. - [ESI ITI GmbH](https://www.jmag-international.com/aboutus/product-partners/iti/) - Combining the powerful modeling techniques of the system simulation software SimulationX and the finite element analysis (FEA) platform JMAG for electromechanical components delivers what is essential: High accuracy and realistic results! - [dSPACE GmbH](https://www.jmag-international.com/aboutus/product-partners/dspace/) - JMAG-RT Compatible : FPGA Based High Precision Motor HIL Simulator - [DENSO TEN Limited.](https://www.jmag-international.com/aboutus/product-partners/denso-ten/) - CRAMAS, a DENSO TEN-manufactured HIL simulator, is used by many automakers, suppliers and research organizations that use it in a wide array of tasks which includes control development of hybrid and electric vehicles that Japan proudly offers to the world. - [Convergent Science](https://www.jmag-international.com/aboutus/product-partners/convergent-science/) - Convergent Science Created by Convergent Science, CONVERGE is an innovative computational fluid dynamics (CFD) software package ideal for simulating heat transfer in electromagnetic systems. With fully autonomous meshing, CONVERGE drastically reduces simulation setup time and easily handles complex geometries with moving boundaries. Product name CONVERGE features fully automated mesh generation, which eliminates the need to - [Ansys, Inc](https://www.jmag-international.com/aboutus/product-partners/ansys/) - Ansys, Inc Ansys, Inc. is a American multinational company with its headquarters based in Canonsburg, Pennsylvania. It develops and markets multi-physics engineering simulation software for product design, testing and operation and offers its products and services to customers worldwide. Product name Product details Ansys optiSLang is the leading software solution for simulation process integration and - [thyssenkrupp Steel Europe AG](https://www.jmag-international.com/aboutus/product-partners/thyssenkrupp/) - thyssenkrupp Steel Europe AG Contact Us Company Name thyssenkrupp Steel Europe AG Address Kaiser-Wilhelm,-Str. 100, 47166 Duisburg Email info.auto@thyssenkrupp-steel.com URL https://www.thyssenkrupp-steel.com/en/products/electrical-steel/electrical-steel-non-grain-oriented/electrical-steel-non-grain-oriented.html - [Smart Energy Laboratory Co.,Ltd.](https://www.jmag-international.com/aboutus/product-partners/smartenergy/) - Smart Energy Laboratory Co.,Ltd. Product name Scideam Product detail Scideam is a high-speed circuit simulator specialized in power electronics developments. With over 30 years of proven computational algorithms, along with a newly developed circuit editor and a waveform viewer, it provides a comfortable simulation environment. Product features Scideam is built on a unique simulation algorithm - [FunctionBay, Inc.](https://www.jmag-international.com/aboutus/product-partners/functionbay/) - FunctionBay, Inc. Our software solutions, which include the internationally-recognized RecurDyn, integrate many disciplines into a single seamless package. The core of these solutions is Multi-Flexible Body Dynamics (MFBD), which tightly integrates multibody dynamics analysis with non-linear finite element analysis. In addition, our solutions include tightly integrated control design, fatigue analysis, as well as automated design ## JMAG-Designer - [Introducing JMAG-Designer Ver.25.1](https://www.jmag-international.com/products/jmag-designer/index_v251/) - JMAG is being developed to automate design. To this end, Ver. 25.1 has even more improved functionality. In order to achieve automated design, Ver. 25.1 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 25.1. - [Introducing JMAG-Designer Ver.25.0](https://www.jmag-international.com/products/jmag-designer/index_v250/) - JMAG is being developed to automate design. To this end, Ver. 25.0 has even more improved functionality. In order to achieve automated design, Ver. 24.2 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 25.0. - [Introducing JMAG-Designer Ver.24.2](https://www.jmag-international.com/products/jmag-designer/index_v242/) - JMAG is being developed to automate design. To this end, Ver. 24.2 has even more improved functionality. In order to achieve automated design, Ver. 24.2 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 24.2. - [Introducing JMAG-Designer Ver.24.1](https://www.jmag-international.com/products/jmag-designer/index_v241/) - JMAG is being developed to automate design. To this end, Ver. 24.1 has even more improved functionality. In order to achieve automated design, Ver. 24.1 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 24.1. - [Optimization](https://www.jmag-international.com/products/jmag-designer/optimization/) - JMAG offers a number of functions to provide strong support for design optimization. JMAG optimization calculation functions are characterized by the integration of both analysis and optimization. This means that factor analysis and optimization can be carried out with ease, allowing for the effective evaluation of a large number of design proposals. Result analysis and - [Guideline](https://www.jmag-international.com/products/jmag-designer/guidelines/) - Easy-to-use for the beginner, useful for the expert, this is the user interface JMAG is aiming for. Context sensitive Help Simply click the help button to view detailed help on the current item. JMAG Self Learning System : JMAG-SLS JMAG-SLS is a practical video tutorial that shows you how to use JMAG, provides analysis tips, - [JMAG Design Explorer](https://www.jmag-international.com/products/jmag-designer/guidelines/jmag-design-explorer/) - JMAG Function Videos Multiple Model/Case Result Comparisons Using JMAG Design Explorer - [Video for Introducing the Functions:Multiple Model/Case Result Comparisons Using JMAG Design Explorer](https://www.jmag-international.com/products/jmag-designer/guidelines/jmag-design-explorer/video/) - Multiple Model/Case Result Comparisons Using JMAG Design Explorer Last modified at 25 Jun 2025 JMAG Design Explorer lets users compare and review optimization results for multiple models and cases. - [Scripts](https://www.jmag-international.com/products/jmag-designer/customization/scripts/) - Pre- and post-processors and solvers can be controlled by scripts. VBScript, Python, or Jscript can be used for scripts.These scripts can be used for automatic processing from model creation to results display, making it possible to construct optimization systems, etc. Automatic analysis processing using scripts JMAG-Designer now supports running user-defined scripts, which enables general purpose - [Retaining Boundary Conditions When Geometry Is Changed by the Set Function](https://www.jmag-international.com/products/jmag-designer/parametrics/video2/) - Retaining Boundary Conditions When Geometry Is Changed by the Set Function Last modified at 14 Jan 2025 By using a set to specify a plane, you can set conditions to the edges and faces on that plane. When running geometry parametric analysis, even if the angle of the partial model or the number of edges - [Solver [Function]](https://www.jmag-international.com/products/jmag-designer/solver/function/) - High-Speed Magnet Eddy Current Calculation Examining the eddy currents that occur in the magnets of motors has required a significant amount of time because analyses using a three-dimensional model has been required. The high-speed magnet loss calculation of rotation machines provides the fastest possible analysis. Conventional methods to calculate the eddy current loss of magnets - [Checking the efficiency map that takes into account the temperature change in magnets and coils](https://www.jmag-international.com/products/jmag-designer/guidelines/efficiency-map/video3/) - In JMAG, it is possible to check multiple efficiency maps at different temperatures by specifying the magnet and coil temperatures in the efficiency map analysis study. The magnet and coil temperatures can be changed from the efficiency map dialog, and various combinations of temperatures can be displayed. - [Create Input File for Multi-Case Calculation by Command](https://www.jmag-international.com/products/jmag-designer/parametrics/video/) - Create Input File for Multi-Case Calculation by Command Last modified at 07 Sep 2022 Documents [JFT163] How to Output the Input Files for the Calculation of Multiple Cases at a High Speed - [Parametrics](https://www.jmag-international.com/products/jmag-designer/parametrics/) - JMAG offers a number of functions to provide strong support for design optimization. The use of JMAG parametric analysis functions allows for the effective evaluation of a large number of design proposals Parametric The use of JMAG parametric analysis functions allows for the effective evaluation of a large number of design proposals When changing design - [Video for Introducing the Functions:Use of Range Finder for shape collapse problem](https://www.jmag-international.com/products/jmag-designer/optimization/video/) - Use of Range Finder for shape collapse problem Last modified at 21 Dec 2022 The shape judgment tool automatically judges whether the rangefinder function is necessary or not, and if it is difficult, the rangefinder function can be used to search for the range where the shape can be formed, enabling high-speed acquisition of the - [Efficient evaluation method for multi-case calculation results](https://www.jmag-international.com/products/jmag-designer/optimization/video-2/) - By reading only the response values, the relationship between variables can be understood using response graphs and correlation matrices. Even if the number of cases increases, loading is completed in a few seconds. - [Part Temperature Calculation Using Thermal Analysis Speed Priority Mode Study](https://www.jmag-international.com/products/jmag-designer/multiphysics/function/video2/) - Description For thermal analysis, a velocity-first mode study has been introduced. You can quickly evaluate the temperature of motor components. - [Multiphysics [Function]](https://www.jmag-international.com/products/jmag-designer/multiphysics/function/) - Coupled Analysis Subcycling A much greater degree of freedom for coupled analysis timing in JMAG! Choose either magnetic field or thermal analysis as time standard for coupled analysis Choose multiple studies in slave analysis Multi-frequency Heating Account for multiple frequencies in coupled magnetic field thermal analysis! Estimation of dual wave properties in high-frequency induction heating - [Video for Introducing the Functions:Electric field analysis using 2D model](https://www.jmag-international.com/products/jmag-designer/multiphysics/electric-field-analysis/video/) - Electric field analysis using 2D model Last modified at 21 Dec 2022 Electric field analysis of a 2D model enables fast and easy evaluation of dielectric strength and capacitance. Documents SLS: PM Motor Electric Field Analysis - [Geometry Modeling [Function]](https://www.jmag-international.com/products/jmag-designer/geometry_modeling/function/) - Geometry Library A library that has basic 2D and 3D geometries Geometry can be created by simply entering geometry parameters, eliminating the need to create sketches and set features Boxes, spheres, cylinders, cones, prisms, tori, and spirals for 3D geometry are supported Rectangles, polygons, circles, and ellipses for 2D geometry are supported JMAG Function Videos - [Mesh Modeling [function]](https://www.jmag-international.com/products/jmag-designer/mesh/function/) - Adaptive mesh JSOL's unique development methods run high-speed adaptive analyses for rotating machines that are highly accurate. They can achieve speeds over ten times faster than traditional methods. Of course, it produces results for more than rotating machine meshes, as well. Mesh Division through Adaptive Meshing JMAG Function Videos Generate an optimal mesh (Adaptive mesh) - [Material Modeling [Function]](https://www.jmag-international.com/products/jmag-designer/material/function/) - Magnetization JMAG can perform a magnetization analysis that reproduces magnetization distribution in a more realistic manner, allowing you to analyze the magnetization process in greater detail. Magnetic properties that define the magnetization distribution for the parts to be magnetized can be created as a material, referred to in JMAG as a "magnetization material." Furthermore, the - [Video for Introducing the Functions:Modification of motor control method using macro components](https://www.jmag-international.com/products/jmag-designer/guidelines/macro-components/video/) - Modification of motor control method using macro components Last modified at 21 Dec 2022 By replacing the macro element, you can evaluate the motor characteristics due to the difference in the modulation method. - [Video for Introducing the Functions:Run a design scenario with your own geometry](https://www.jmag-international.com/products/jmag-designer/guidelines/motor-thermal-analysis/video-2/) - Run a design scenario with your own geometry Last modified at 21 Dec 2022 User-created geometries can be used to design motors according to predefined scenarios. Documents [JFT166] Building Analysis Models with User-Defined Geometry and Thermal Design Scenarios - [Video for Introducing the Functions](https://www.jmag-international.com/products/jmag-designer/guidelines/efficiency-map/video/) - Automatic Generation of Induction Motor Accuracy-priority Efficiency Map Studies Last modified at 31 Aug 2022 - [Creation of efficiency maps for wound-field synchronous motors](https://www.jmag-international.com/products/jmag-designer/guidelines/efficiency-map/video2/) - Creation of efficiency maps for wound-field synchronous motors Last modified at 22 May 2023 Documents [JAC289] Efficiency Map Creation for Wound-Field Synchronous Motors - [Video for Introducing the Functions:Controlling JMAG using an external script development environment](https://www.jmag-international.com/products/jmag-designer/customization/scripts/video/) - Controlling JMAG using an external script development environment Last modified at 21 Dec 2022 Controlling JMAG-Designer from a third-party external development environment improves the efficiency of script development. Documents [JFT165] Running JMAG Using a Python Development Environment - [Geometry Library](https://www.jmag-international.com/products/jmag-designer/customization/geometry_library/) - A library that has basic 2D and 3D geometries Geometry can be created by simply entering geometry parameters, eliminating the need to create sketches and set features Boxes, spheres, cylinders, cones, prisms, tori, and spirals for 3D geometry are supported Rectangles, polygons, circles, and ellipses for 2D geometry are supported JMAG Function Videos Create a - [Support for HPC](https://www.jmag-international.com/products/jmag-designer/solver/hpc_environment/) - Fast processing and an appropriate environment are indispensable for modeling phenomena in machines in detail, and for mass processing to investigate a design space. This page introduces the world created by JMAG HPC and the construction of this environment. Where HPC Is Used Rectangular Wire Coil Permanent Magnet Synchronous Rotating Machine AC Loss Analysis Use - [Introducing JMAG-Designer Ver.23.0](https://www.jmag-international.com/products/jmag-designer/index_v230/) - *** - [Introducing JMAG-Designer Ver.17.0](https://www.jmag-international.com/products/jmag-designer/index_v170/) - 2017-12-28 / Last Updated:2018-01-16 JMAG-Designer Ver.17.0 will be released in December 2017. JMAG-Designer Ver. 17.0 has implemented performance improvements for multi-case processing, optimization, and large-scale processing. A new type, the "Generic model" was added to JMAG-RT. By all means please use the latest JMAG to smoothly carry out analysis work. Feel free to contact us - [Introducing JMAG-Designer Ver.17.1](https://www.jmag-international.com/products/jmag-designer/index_v171/) - 2018-06-14 / Last Updated:2018-07-24 June 2018 JMAG-Designer Ver.17.1 has been released. In JMAG-Designer Ver.17.1, an environment is provided where designers can repeatedly test and verify their ideas. Even in Ver.17.1, improvements in performance continue to be made. By all means please use the latest JMAG to smoothly carry out analysis work. Please notify JMAG support - [Introducing New Functions of JMAG-Designer Ver.17.1](https://www.jmag-international.com/products/jmag-designer/index_v171/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.17.1. This will also include demonstrations using JMAG-Designer Ver.17.1 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.18.0](https://www.jmag-international.com/products/jmag-designer/index_v180/) - 2019-02-01 / Last Updated:2019-02-28 Feb 2019 JMAG-Designer Ver.18.0 has been released. This new version of JMAG-Designer will provide many new functions, with improved usability and calculation accuracy. Please enjoy taking full advantage of it. Please notify JMAG support concerning unclear points, impressions, requests, etc. What is JMAG-Designer Version 18.0 ? Winding editorFast and easy creation - [Introducing New Functions of JMAG-Designer Ver.18.0](https://www.jmag-international.com/products/jmag-designer/index_v180/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.18.0. This will also include demonstrations using JMAG-Designer Ver.18.0 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.18.1](https://www.jmag-international.com/products/jmag-designer/index_v181/) - Feb 2019 JMAG-Designer Ver.18.1 has been released. This new version of JMAG-Designer will provide many new functions, with improved usability and calculation accuracy. Please enjoy taking full advantage of it. - [Introducing New Functions of JMAG-Designer Ver.18.1](https://www.jmag-international.com/products/jmag-designer/index_v181/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.18.1. This will also include demonstrations using JMAG-Designer Ver.18.1 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.19.0](https://www.jmag-international.com/products/jmag-designer/index_v190/) - 2020-01-16 / Last Updated: 2020-02-17 In January 2020, JMAG-Designer Ver.19.0 has been released. JMAG-Designer Ver.19.0 is advanced tools that allow searching a wide design space in a short period of time. In addition, functions such as efficiency maps and zooming analysis of existing functions have been enhanced. Please enjoy taking full advantage of it. What - [Introducing New Functions of JMAG-Designer Ver.19.0](https://www.jmag-international.com/products/jmag-designer/index_v190/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.19.0. This will also include demonstrations using JMAG-Designer Ver.19.0 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.19.1](https://www.jmag-international.com/products/jmag-designer/index_v191/) - In June 2020, JMAG-Designer Ver.19.1 has been released. In JMAG-Designer Ver.19.1, the analysis parameter view and dashboard which was implemented in the previous version have been updated for easier use. While continuing to enhancement the solver and mesher the base of the FEA engines, we have also added and enhanced functions for optimization and the creation of efficiency maps. - [Introducing JMAG-Designer Ver.20.0](https://www.jmag-international.com/products/jmag-designer/index_v200/) - JMAG-Designer Ver.20.0 was released in December 2020. In JMAG-Designer Ver.20.0, analysis parameter views and the dashboard have been made even simpler to use. The solver and mesher have continued to be enhanced so that the analysis of large-scale models for high-accuracy evaluations can be performed with ease. Optimization with improvements in performance and support for coupled analysis can now be experienced by a wide multitude of users. A large amount of function enhancements is included for rotating machines, such as coil template enhancements, and accounting for the AC copper loss of efficiency maps (speed priority mode). - [Introducing New Functions of JMAG-Designer Ver.20.0](https://www.jmag-international.com/products/jmag-designer/index_v200/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.20.0. This will also include demonstrations using JMAG-Designer Ver.20.0 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.20.1](https://www.jmag-international.com/products/jmag-designer/index_v201/) - JMAG-Designer Ver.20.1 was released in May 2021. - [Introducing New Functions of JMAG-Designer Ver.20.1](https://www.jmag-international.com/products/jmag-designer/index_v201/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.20.1. This will also include demonstrations using JMAG-Designer Ver.20.1 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.20.2](https://www.jmag-international.com/products/jmag-designer/index_v202/) - 2021-09-09 / Last Updated: 2021-10-22 JMAG-Designer Ver.20.2 was released in September 2021. In JMAG-Designer Ver.20.2, enhancements to software performance and improvements to the analysis parameter view (APV) provides an analysis environment that is now even easier to use. JMAG now additionally offers an environment where whole complex physical systems such as those for electrical, thermal, - [Introducing New Functions of JMAG-Designer Ver.20.2](https://www.jmag-international.com/products/jmag-designer/index_v202/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.20.2. - [Introducing JMAG-Designer Ver.21.0](https://www.jmag-international.com/products/jmag-designer/index_v210/) - 2022-02-07 / Last Updated: 2022-03-14 JMAG-Designer Ver. 21.0 was released in February 2022, In JMAG-Designer Ver.21.0, creating models for control, circuits, and windings has become easier than ever, and the calculation speed and processing speed of operations have been increased to improve the efficiency of analysis work. An efficiency map analysis study in accuracy-priority mode - [Introducing New Functions of JMAG-Designer Ver.21.0](https://www.jmag-international.com/products/jmag-designer/index_v210/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.21.0. This will also include demonstrations using JMAG-Designer Ver.21.0 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Introducing JMAG-Designer Ver.21.1](https://www.jmag-international.com/products/jmag-designer/index_v211/) - In July 2022, JMAG-Designer Ver. 21.1 was released. We encourage all our users to make the most of this latest version of JMAG with its many new enhancements. - [Introducing JMAG-Designer Ver.21.2](https://www.jmag-international.com/products/jmag-designer/index_v212/) - In September 2022, JMAG-Designer Ver. 21.2 was released. We encourage all our users to make the most of this latest version of JMAG with its many new enhancements. - [Introducing JMAG-Designer Ver.23.2](https://www.jmag-international.com/products/jmag-designer/index_v232/) - JMAG is being developed to automate design. To this end, Ver. 23.2 has even more improved functionality. In order to achieve automated design, Ver. 23.2 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 23.2. - [Introducing JMAG-Designer Ver.22.2](https://www.jmag-international.com/products/jmag-designer/index_v222/) - Ver. 22.2 improves the calculation speed of 3D analysis. In addition, the scope of application of JMAG-Express has been expanded and calculation speed has been improved. Here we pick up some of those improvements and introduce them. - [Introducing JMAG-Designer Ver.22.0](https://www.jmag-international.com/products/jmag-designer/index_v220/) - 21 Dec 2022 / Last modified at 6 Jan 2023 In December 2022, JMAG-Designer Ver. 22.0 was released. By avoiding geometry breakdown, a trouble that occurs during dimensional optimization, 100% of the number of individuals required for optimization calculations can now be obtained. Range Finder can be used to ensure that the established geometry required - [Introducing JMAG-Designer Ver.22.1](https://www.jmag-international.com/products/jmag-designer/index_v221/) - Ver. 22.1 significantly improves JMAG-Express so that a wider range of motor performance evaluations can be performed at high speed. In addition, WFSM has been added to the lineup of efficiency maps that are essential for evaluating motor efficiency. Improvements are not limited to motors. We have improved the calculation speed and post-processing usability of many case calculations, which are the prerequisites for optimization and parameter studies. Here we pick up some of those improvements and introduce them to you. - [Customization](https://www.jmag-international.com/products/jmag-designer/customization/) - A flexible framework is provided allowing the user to customize JMAG to his needs. Being able to use scripts and user subroutines, analysis and results analysis with the use of the user's own algorithms can be performed. In addition, a geometry library and templates facilitate in creating desired geometries. Script Pre- and post-processors and solvers - [Model Based Development](https://www.jmag-international.com/products/jmag-designer/model-base/) - JMAG-RT enables model based development with high concurrency, allowing plant design and control design to be performed concurrently. JMAG-RT is a system which generates high-fidelity plant models (JMAG-RT models) in a system level simulation from FEA models. From system design, to ECU verification using HILS, JMAG-RT has a wide range of uses. Using a virtual - [Multiphysics](https://www.jmag-international.com/products/jmag-designer/multiphysics/) - As computational power has increased, companies have started incorporating multiphysics models into their analyses. JMAG began offering this functionality to its users in 1994, when magnetic field/thermal coupled analysis functionality was implemented for induction heating device design. Since then, a considerable amount of development has taken place in the area of multiphysics. With such a - [Modeling](https://www.jmag-international.com/products/jmag-designer/geometry_modeling/) - JMAG leads the field in material modeling technology. Fast, detailed modeling methods are developed based on our understanding of characteristics for magnetic steel sheets, magnets, and powdered metals. Many companies use JMAG to help develop new materials, which ensures JMAG is always capable of capturing precise material responses. 2D/3D modeler that easily creates geometry There - [Material](https://www.jmag-international.com/products/jmag-designer/material/) - Providing highly a reliable analysis requires faithfully implementing realistic physical mechanisms into simulation models as best as possible. We continue to develop modeling technology for JMAG to provide the best models at each stage, from micro behavior inside materials, to multi-physics phenomenon and control systems. Material Database JSOL has developed partnerships with material manufacturers to - [Mesh Modeling](https://www.jmag-international.com/products/jmag-designer/mesh/) - It goes without saying that a high quality mesh is critical for a high precision analysis. JMAG gives users several options to create mesh: from automatic to manual mesh, users can choose the method that works best for them. The mesher within JMAG is both advanced and easy to use, which means that JMAG can - [Solver](https://www.jmag-international.com/products/jmag-designer/solver/) - Solver speed is directly related to model accuracy and reliability. Finite element analysis comes down to solving very large matrices. JSOL has developed advanced techniques to solve these matrices faster and produce more consistent results. JMAG users have some of the most advanced solver algorithms at their fingertips, and can be certain that JSOL will - [Introducing JMAG-Designer Ver.24.0](https://www.jmag-international.com/products/jmag-designer/index_v240/) - JMAG is being developed to automate design. To this end, Ver. 24.0 has even more improved functionality. In order to achieve automated design, Ver. 24.0 has even more improved functionality. This section picks up on the functional improvements and new features in Ver. 24.0. - [Introducing JMAG-Designer Ver.23.1](https://www.jmag-international.com/products/jmag-designer/index_v231/) - JMAG-Designer Ver. 23.1 will be released in April 2024. JMAG is being developed to automate design. To this end, Ver.23.1 has even more improved functionality. This section picks up on the functional improvements and new features in Ver.23.1. - [Distributed Processing](https://www.jmag-international.com/products/jmag-designer/solver/distributed/) - Distributed Processing Using General-Purpose Batch Systems Jobs can be directly added to the LSF/PBS management server Since existing general-purpose management servers can be utilized, the JMAG distributed processing environment can be easily created without having to change existing environments. Job progress can be confirmed from the user's personal computer. Example of general-purpose batch system Click - [Support for SMP/MPP/GPU Solver](https://www.jmag-international.com/products/jmag-designer/solver/hpc/) - JMAG has a track record of continued pursuit for acceleration through the development and fine-tuning of calculation algorithms. JMAG utilizes the speed of single core acceleration. It also effectively uses hardware to deal with large-scale models to work in parallels. JMAG released a GPU solver and High parallel solver with enhanced highly parallel processing (HPC) - [Efficiency Map](https://www.jmag-international.com/products/jmag-designer/guidelines/efficiency-map/) - Automatic Generation of Induction Motor Accuracy-priority Efficiency Map Studies For induction motors, you can create an efficiency map analysis study for accuracy priority mode with one click from the efficiency map analysis study for speed priority mode. Since the inheritance of the operating point and the generation of the control circuit are automatically performed, it - [Introducing New Functions of JMAG-Designer Ver.19.1](https://www.jmag-international.com/products/jmag-designer/index_v191/v-up/) - A video complete with voice audio has been prepared to offer our users a better understanding of the new functions in JMAG-Designer Ver.19.1. This will also include demonstrations using JMAG-Designer Ver.19.1 itself. Demonstration data can be downloaded from JMAG function tutorials. We encourage all of our users to take a look for themselves to experience - [Setting the motor control method using macro components](https://www.jmag-international.com/products/jmag-designer/guidelines/macro-components/) - Description By replacing the macro element, you can evaluate the motor characteristics due to the difference in the modulation method. - [Electric Field Analysis](https://www.jmag-international.com/products/jmag-designer/multiphysics/electric-field-analysis/) - Electric field analysis of a 2D model enables fast and easy evaluation of dielectric strength and capacitance. JMAG Function Videos Electric field analysis using 2D model Documents SLS: PM Motor Electric Field Analysis - [Motor Thermal Analysis Model Generation Function](https://www.jmag-international.com/products/jmag-designer/guidelines/motor-thermal-analysis/) - Reduced model creation time by automatically generating thermal circuits and adding necessary conditions (contact resistance, boundary conditions, etc.). - [Recommended Parameter Setting When Using FEM Conductor](https://www.jmag-international.com/products/jmag-designer/guidelines/fem-conductor/) - In a 3D model using FEM conductors, parameters related to the convergence of calculations can be easily changed to recommended values. By setting the recommended value, the calculation time for transient response analysis can be shortened. ## Value of FEA - [Issue 1 Prevalence and background of FEA](https://www.jmag-international.com/fea/01/) - Effectiveness of FEA in the Development Process Electromagnetic field finite element analysis (FEA) has been rapidly expanding as a tool used in the development process over the last 15 years. The application of FEA varies based on the needs of each development process, but why has FEA expanded so rapidly as a tool for development? - [Issue 2 Reproducing Phenomena Authentically using FEA](https://www.jmag-international.com/fea/02/) - Explaining FEA Effectiveness of FEA in the Development Process Electromagnetic field finite element analysis (FEA) has been rapidly expanding as a tool used in the development process over the last 15 years. The application of FEA varies based on the needs of each development process, but why has FEA expanded so rapidly as a tool - [Issue 3 FEA Expansion to the Product Development Process](https://www.jmag-international.com/fea/03/) - FEA Expansion to the Product Development Process Among those reading this magazine there are most likely some who think that, because they began development in an era when there was no FEA and their design process is already set in stone, there is no point in starting to develop with FEA at this late stage. - [Final Issue Failure Mode Simulation Using FEA](https://www.jmag-international.com/fea/04/) - Effectiveness of FEA in the Development Process This report introduces FEA's characteristics, which include an excellent analytical ability, in order to examine both the advantages they bring to the development process and the utilization methods for applying them. In this, the final issue, I will introduce applications to failure modes, which is a new way - [Applying JMAG to Power Transformer Designs - Preventing Insulation Breakdowns Ahead of Time -](https://www.jmag-international.com/fea/trans/) - What Advantages Does FEA Bring to Development? I would like to clarify how much value there is in introducing finite element analysis (FEA) to the electrical equipment design field. In this issue, I will examine the ways in which FEA can be applied to transformers, and to large scale power transformers in particular. In general, - [The Goal of Induction Heating Analysis](https://www.jmag-international.com/fea/ih/) - What are FEA's Effects in the Development Process? The purpose of this session is to show the merit of using simulation for the design of induction heating apparatus. Please consider the merits of analysis when you try to improve your heating method. Overview Induction heating is a kind of the electromagnetic induction phenomenon. When applying - [Issue 1 Let's utilize it in initial design](https://www.jmag-international.com/fea/motor_01/) - Is FEA effective in motor design? This issue is aimed at those designing or using motors, we let you know the effects of utilizing simulations. We would be happy if this is used as a reference for designing better motors. Overview Along with the progress in computers and software, finite element magnetic field analysis (FEA - [Issue 2 Making Use of FEA in Detailed Design](https://www.jmag-international.com/fea/motor_02/) - Is FEA Effective in Motor Design? This issue is aimed at those designing or using motors, to let you know the effectiveness of utilizing simulation. We hope you will find this useful as a reference for designing better motors. Overview As computer hardware and software becomes more advanced, finite element method electromagnetic field analysis (hereafter - [Issue 3 FEA for Understanding Detailed Phenomena](https://www.jmag-international.com/fea/motor_03/) - Is FEA Effective in Motor Development? This issue is aimed at those designing or using motors, to let you know the effectiveness of utilizing simulation. We hope you will find this useful as a reference for designing better motors. Overview This series has explained the issue of "Why is finite element method electromagnetic field analysis ## Solutions - [Magnetic Component](https://www.jmag-international.com/solutions/magnetic-component/) - These analyses elevate the level of magnetic component design by not only accurately obtaining impedance and other characteristics but also accounting for nonlinear material properties, the skin effect caused by eddy currents, stray capacitance, and other such phenomena. - [Electromagnetic Energy Conversion Device Laboratory, Department of Electrical, Electronics and Computer Engineering, Toyo University (Hane Research Laboratory)](https://www.jmag-international.com/solutions/academia/toyout/) - The Endeavor of Innovative Research: Breathing New Life into the Long History of Electric Machine Research - [Ohguchi Lab, Department of Electrical and Electronic Engineering, School of Engineering, Tokai University](https://www.jmag-international.com/solutions/academia/tokaiut/) - “Imagination Is More Important than Knowledge” Development of Human Resources with the Critical Thinking and Practical Skills to Contribute to Society - [Academic Field](https://www.jmag-international.com/solutions/academia/) - A special package, for the introduction of JMAG, is available for the research and educational institutions, hoping JMAG can be more accessible to wide range of the people. - [Laboratory interview](https://www.jmag-international.com/solutions/academia/laboratory/) - In "Laboratory Interview", introduction of laboratories, initatives in education and the daily progress of research topics and cases are provided in the form of interviews. - [Superconductivity](https://www.jmag-international.com/solutions/superconductivity/) - Superconductivity breaks down into two major types of wires: low-temperature metallic superconducting wire that is already in practical use and high-temperature superconducting wire pioneered in research and development since its inception in 1986. - [Robotics](https://www.jmag-international.com/solutions/robotics/) - The technological growth in the robotics field, including humanoid robots, has been remarkable in recent years, with advancements in motors and actuators, which are key to drive and control technologies. - [Electrical, Electronics and Information Engineering, Engineering, Nagaoka University of Technology](https://www.jmag-international.com/solutions/academia/nagaokaut/) - Value the challenges in developing new technologies, and taking the initiative in motor structure innovations - [Axial Gap Type Motor](https://www.jmag-international.com/solutions/axialgapmotor/) - Axial-gap motors use an axial magnetic flux to rotate a disc-shaped rotor and stator facing each other. The advantage is that it can be constructed thinner than a radial-gap motor, and if properly designed, a high torque can be obtained relative to the magnetic flux density. The use of axial-gap motors expands to a wide variety of applications, including automobiles, and can meet market requirements with a design that takes advantage of its unique structure. - [Automotive](https://www.jmag-international.com/solutions/automotive/) - The motors and sensors used for automobiles are required to have high reliability as well as high performance. To achieve these goals, it is critical to examine prototypes thoroughly during the design stage. JMAG supports the design process of automobiles by offering excellent modeling and analysis capabilities. - [Home Appliance](https://www.jmag-international.com/solutions/homeappliance/) - JMAG uses multiphysics simulation technology to allow you not only to predict product performance but also to comprehend invisible phenomena such as magnetic field distributions and thus obtain the fundamental solution to a problem. - [Digital Equipment](https://www.jmag-international.com/solutions/digitalequipment/) - Furthermore, they may require a special design process or method, including unique types of materials, leading to the need for simulation analysis. - [Factory Automation](https://www.jmag-international.com/solutions/factoryautomation/) - JMAG allows engineers to optimize this type of equipment by allowing a great number of designs to be examined very easily. The performance of a device under actual control can also be predicted precisely by linking JMAG to a control simulator. - [Electric Power Facilities](https://www.jmag-international.com/solutions/electricpowerfacilities/) - JMAG allows our customers to easily perform various tests and evaluations with rigorous constraints during development, reducing the costs compared to evaluation through actual testing. - [Power Transformer](https://www.jmag-international.com/solutions/transformer/) - JMAG enables the visualization of the phenomena and ease in moving forward with analyzing causes. It also makes possible quantitative evaluations of temperature rising inside objects or noise where measurement is difficult. - [Solenoid](https://www.jmag-international.com/solutions/solenoid/) - JMAG can optimize the design of a solenoid to maximize the force while minimizing the volume. This type of problem typically requires a realistic drive excitation. - [Wound Field Synchronous Motor](https://www.jmag-international.com/solutions/wound-field-synchronous-motor/) - Wound-field and electrically-excited synchronous motors (WFSM/EESM) are given attention as traction motor that requires high efficiency in a wide operating range. - [Induction Heating](https://www.jmag-international.com/solutions/induction-heating/) - JMAG correctly reproduces and visualizes the induction-heating phenomenon that changes intricately, and realizes the optimal design for various purposes using induction heating. - [Linear Motor](https://www.jmag-international.com/solutions/linearmotor/) - This requires very accurate mesh that can account for model symmetry. If the mesh is not symmetrical, it may produce numerical errors in the force calculation. Accurate mesh is also necessary when testing precise movements of the components. - [Wireless Power Transfer](https://www.jmag-international.com/solutions/wirelesspowertransfer/) - JMAG makes it possible to carry out investigations ranging from basic RLC analyses to efficiency predictions. To determine the efficiency of a wireless power transfer design, you must analyze the power transfer as a function of position and angle. - [Motor Drive System](https://www.jmag-international.com/solutions/motordrivesystem/) - “JMAG-RT” is capable of completing the bridging the gap between these two development teams. JMAG RT creates a block for control development based on the machine characteristics determined by the motor designers. - [Motor](https://www.jmag-international.com/solutions/motor/) - The advantages of JMAG to electric machine analysis have been proven time and again. Since JMAG’s release, it has been utilized in a number of motor development projects around the world. - [Electric Vehicle](https://www.jmag-international.com/solutions/electric-vehicle/) - With the advancement of EV components, traction motors, in particular, are expected to exert high product performance in terms of low power consumption, high efficiency, high output, low vibration and noise, small size, and low cost. In addition to the performance of the motor alone, it is also necessary to satisfy the requirements and consistency of the inverters, ECU, gearboxes, etc. at the system level and JMAG contributes to the design and verification of these requirements. - [Pump](https://www.jmag-international.com/solutions/pump/) - In order to increase pump efficiency, it is necessary that motor efficiency is also increased by driving the motor appropriately.The inside of the motor is analyzed via magnetic flux density and current density. Not only that, but the motor is also evaluated via N-T curves and efficiency maps. ## Academic Partners - [Tohoku University](https://www.jmag-international.com/aboutus/academic-partners/tohoku-university/) - Tohoku University Information Professor Kenji Nakamura NAKAMURA LAB. Department of Management Science and Technology, Graduate School of Engineering, Tohoku University Web Site Applications:Motor, Power Generator, Magnetic Gear Technical Themes:IPM、SR Markets:Automotive, Electric Appliance, Power Equipment Introduction The Nakamura Laboratory at Tohoku University is working on their objective to “generate, transport, convert, and develop technology for the ## Motor Design using SMC Materials - [Soft Magnetic Composite Application Examples - Single Sided Axial Flux Machines -](https://www.jmag-international.com/motordesign-material/hoganas_001/) - The past decade has seen significant development in the field of soft magnetic composite (SMC) materials and their application in electrical machines. A large part of this can be attributed to their isotropic magnetic properties, allowing for relatively complex structures to support magnetic flux whilst supressing losses. Furthermore, the material isotropy benefits the thermal performance, allowing heat to dissipate in all directions. - [Soft Magnetic Composite Application Examples - Double-Sided Axial Flux Machines -](https://www.jmag-international.com/motordesign-material/hoganas_002/) - The past decade has seen significant development in the field of soft magnetic composite (SMC) materials and their application in electrical machines. ## Features - [The Future of Data-Driven Design Unleashed by AI](https://www.jmag-international.com/features/artificial_intelligence/) - With the evolution of AI, we are transitioning from an era where "humans operate tools" to one where "AI agents operate JMAG to autonomous design." Through synergy with AI, JMAG will drastically accelerate the reality of data-driven design. - [Thermal Analysis for Motor Design in JMAG](https://www.jmag-international.com/features/thermal-analysis_motor-design/) - Within increasing demand for even higher efficiency and power in motor development, there is also the increase in demand for thermal design from electromagnetic design engineers. Electromagnetic design must be able to suppress the temperature of the windings within the upper temperature limit that is determined for each insulation class Electromagnetic design and thermal design - [Motor Design](https://www.jmag-international.com/features/motor_design/) - The advantages of JMAG to electric machine analysis have been proven time and again. Since JMAG’s release, it has been utilized in a number of motor development projects around the world. - [JMAG's Contribution to Thermal Design](https://www.jmag-international.com/features/therma_design/) - JMAG strives to improve loss analysis techniques every day, and can evaluate loss with high accuracy. From this, prediction of heat generation can be done with high accuracy, and measures against heat at the design stage can be taken. - [Model-Based Development](https://www.jmag-international.com/features/model_based_development/) - Model-Based development using simmulation is also bocomming indispensable for motor development. JMAG,which has a high track record in motor design, proposes a new workflow for model-based development. - [Multi-Physics Evaluation for Magnetic and Thermal Design](https://www.jmag-international.com/features/thermal-analysis_motor-design/video/) - Multi-Physics Evaluation for Magnetic and Thermal Design Last modified at 22 Nov 2022 - [Utilizing JMAG in Cloud Services](https://www.jmag-international.com/features/cloud/) - Cloud services enable analysis work using sufficient computation resources anytime, anywhere. Cloud services are also effective for using MPP solvers for large scale model computations. - [JMAG's Contribution to Vibration Analysis](https://www.jmag-international.com/features/vibration_analysis/) - JMAG accurately obtains electromagnetic and magnetostrictive forces, computes generated vibrations based on these forces, and further, obtains sound pressure distributions in surrounding areas. - [JMAG's Value in System Design](https://www.jmag-international.com/features/system_design/) - In this phase, component requirements are specified from a system design based on the required performance. In other words, the design is broken down to requirement specifications of the motor. Traditionally motor specifications have been determined using experience and rule-based processes. However we determine motor specifications meeting system requirements with heavy use of simulations. Simulations ## JMAG Script Library - [[S8477] Script for calculating and graphing induced voltage (dφ/dt)](https://www.jmag-international.com/scriptlibrary/s8477/) - I want to calculate the induced voltage (dφ/dt) using a script and display a graph. - [[S8451] Script to create probes in 1deg increments in the circumferential direction](https://www.jmag-international.com/scriptlibrary/s8451/) - I want to create probes in 1deg increments in the circumferential direction in a script. - [[S0044] Create a sphere solid in the Geometry Editor](https://www.jmag-international.com/scriptlibrary/s0044_create_sphere/) - Create a spherical solid part with its center position and radius defined by equation variables. - [[S0045] Get the number of mesh elements and nodes](https://www.jmag-international.com/scriptlibrary/s0045_get_num_nodes_and_elements_of_mesh/) - Get the number of elements and nodes of the mesh created in a study. - [[S0046] Group the selected parts by specifying a box area](https://www.jmag-international.com/scriptlibrary/s0046_make_partsgroup_from_seleted_by_box_range/) - Select parts by specifying a box range in the model coordinate space and create a part group from the selected parts. - [[S0047] Select faces oriented in the specified normal direction located within the cylindrical range](https://www.jmag-international.com/scriptlibrary/s0047_select_faces_in_specified_cylinderarea_normaldirection/) - Specify a cylindrical region in the model coordinate space, then select faces within that region and match to the specified normal direction. - [[S0041] Create composite result display definition to display multiple distribution plots on a single screen](https://www.jmag-international.com/scriptlibrary/s0041_setting_composite_result_definition/) - Create a composite result definition to plot different result types or different components for each part and display on a single screen. - [[S0040] Create an equation in the case control](https://www.jmag-international.com/scriptlibrary/s0040_create_equation_for_case_control/) - Create an equation of an expression type with specifying the display order on equation list. - [[S0043] Set parameter using a function to a condition of transient response analysis](https://www.jmag-international.com/scriptlibrary/s0043_create_function_obj/) - Set parameters such as current and electric potential, which change depending on time, angle, etc., using functions. - [[S0042] Create an efficiency map that has the drive cycle](https://www.jmag-international.com/scriptlibrary/s0042_create_efficiency_map_definition_with_drivecycle/) - Create an efficiency map with a drive cycle for the result evaluation of the efficiency map study. - [[D0025] NVH Force Export (Surface Force)](https://www.jmag-international.com/scriptlibrary/d0025_nvh_surface_force_export/) - Export toque and force to the CSV file for motor NVH. - [[D0009] Recommended settings for 3D FEM conductor conditions](https://www.jmag-international.com/scriptlibrary/d0009_conductor_settings/) - Apply recommended settings for 3D FEM conductor conditions. - [[S0037] Create a 2D shape of the I-shaped rotor of an IPM motor](https://www.jmag-international.com/scriptlibrary/s0037_create_i_shaped_ipm_rotor_2d_geometry/) - Create the 2D shape of the I-shaped rotor of an IPM motor as a 1/4 model with 4 poles and mirror symmetry. - [[S0038] Retrieve the parts and sets information of the analysis template, associate them and apply to a model](https://www.jmag-international.com/scriptlibrary/s0038_analysis_template_get_information_and_application/) - Retrieve information on parts and sets from the analysis template, including parts and sets that are not automatically associated. If the names match within certain rules, create pairs and the analysis template is applied to the model. - [[S0039] Create a full model from a partial model using the assembly pattern feature](https://www.jmag-international.com/scriptlibrary/s0039_expand_to_full_model_using_assembly_pattern_feature/) - Load a CAD file prepared as a partial model and create a full model using assembly pattern features. - [[S0036] Set the Halbach array as the magnetization pattern for a permanent magnet](https://www.jmag-international.com/scriptlibrary/s0036_set_halbach_array_magnetization_pattern/) - Set a parallel pattern (circular Halbach array) to permanent magnets arranged in the circumferential direction. - [[S0035] Create a response table with corrections and skew applied in an efficiency map study](https://www.jmag-international.com/scriptlibrary/s0035_create_response_table_correction_and_skew/) - Apply correction parameters to the results of the efficiency map analysis study and create a new response table. - [[S0033] Define a 2D harmonic amplitude response value from a section graph data set](https://www.jmag-international.com/scriptlibrary/s0033_create_2d_harmonic_amplitude_response_value/) - Create and register a 2D harmonic amplitude response value from a dataset of calculation results obtained on the time and spatial axes. - [[S0034] Get the settings of measurement variables](https://www.jmag-international.com/scriptlibrary/s0034_get_measurement_variable_setting/) - Retrieved and display the settings of the measurement variables according to the measurement type. - [[S0030] Create a custom superconductor material](https://www.jmag-international.com/scriptlibrary/s0030_create_custom_superconductor_material/) - Create a custom superconductor material with properties that depend on angle, temperature, and magnetic flux density. - [[S0032] Create a rectangular prism in the Geometry Editor](https://www.jmag-international.com/scriptlibrary/s0032_create_rectangular_prism/) - Create a solid part of a rectangular prism by specifying the length, width and height. - [[S0029] Set a point array property to the analysis condition](https://www.jmag-international.com/scriptlibrary/s0029_set_pointarray_to_condition_parameter/) - Create and set a point array to the table type parameter in the analysis condition. - [[S0031] Perform a 2D Fourier transform in time and space axes](https://www.jmag-international.com/scriptlibrary/s0031_fourier_transform_2d_time_space/) - Perform a 2D Fourier transform on a dataset of calculation results defined by the time axis and the spatial axis. - [[S0025] Generate a multi-layer coating mesh for the specified part](https://www.jmag-international.com/scriptlibrary/s0025_create_multi_layer_coating_mesh/) - Set multi-layer coating mesh that generates layered mesh automatically on the surface of a region in the 2D analysis. - [[S0027] Register a user-defined response value](https://www.jmag-international.com/scriptlibrary/s0027_set_user_response_variable_value/) - Register the user-defined response values using a proprietary calculation method from the analysis results output by JMAG. - [[S0028] Retrieve the values ​​of winding parameters calculated based on the input parameters.](https://www.jmag-international.com/scriptlibrary/s0028_check_winding_coil_calculated_parameters/) - Get the values ​​of coil parameters in the winding setting calculated from the input ​​and the slot area on the model. - [[S0026] Check the warnings and error messages in the study](https://www.jmag-international.com/scriptlibrary/s0026_check_study_messages/) - Get the number of errors and warnings occurring in the study, along with their message content. - [[S0024] Set to use subroutines and its user variables](https://www.jmag-international.com/scriptlibrary/s0024_set_usersub_and_subroutineparameter/) - Set the electric potential of the electric potential source to be supplied by a user subroutine, and set user variables for this subroutine. - [[S0020] Create a parts set by specifying the part names](https://www.jmag-international.com/scriptlibrary/s0020_create_part_set_from_names/) - Create a part set for multiple parts specified by names. - [[S0022] Submit batch execution job of specified studies within an analysis group](https://www.jmag-international.com/scriptlibrary/s0022_study_within_analysisgroup_for_batchexecution/) - When submitting a job of an analysis group, run only the selected studies within the group instead of all of them. - [[S0018] Set topology optimization option settings](https://www.jmag-international.com/scriptlibrary/s0018_set_topology_optimization_option/) - Set parameters and evaluation options for a genetic-algorithm-based topology optimization. - [[S0021] Setup coil end cooling and set CSV output for terminal temperature](https://www.jmag-international.com/scriptlibrary/s0021_setup_coilendcooling_and_csvfileoutput/) - Create and link a coil end cooling component and an equivalent temperature boundary pattern (rotation) condition to model the cooling of the coils of a rotating machine. - [[S0017] Create a 3-phase coil winding setting to a magnetic field analysis study using the coil winding function](https://www.jmag-international.com/scriptlibrary/s0017_add_windingsettingfunction_of_windingthreephasecoil/) - Setup coil winding settings to a rotating machine model using the coil winding function. Add a winding component to the circuit, set winding areas, and set winding parameters. - [[S0019] Export an RTT file from the results of an efficiency map study](https://www.jmag-international.com/scriptlibrary/s0019_export_rttfile_from_efficiencymap_study/) - Export the RTT file with information such as the author and winding conductor information from the results of the efficiency map analysis study in speed-priority mode. - [[S0023] Performs a Fourier transform on the specified dataset](https://www.jmag-international.com/scriptlibrary/s0023_fourier_transform_to_dataset/) - Performs a Fourier transform on the time history result obtained from a transient response analysis. - [[S0012] Get the analysis results in table format](https://www.jmag-international.com/scriptlibrary/s0012_get_result_table_data/) - Get analysis results in table format, including units. For transient response analysis, also get a step time. - [[S0013] Change the setting of items in [Tools]-[Preferences]](https://www.jmag-international.com/scriptlibrary/s0013_set_preference/) - Change the setting of items in JMAG-Designer's [Tools]-[Preferences]. Here is an example of changing the background color, font etc. of the graphics window. - [[S0014] Create a custom material with electric properties](https://www.jmag-international.com/scriptlibrary/s0014_create_custommaterial_with_electricalpropertyparameter/) - Create an insulation material by defining only the electric properties required for the electric field analysis. - [[S0016] Define response values ​​from a result in table format](https://www.jmag-international.com/scriptlibrary/s0016_create_responsedata_from_table_format_result/) - Create response values ​​from a result in table format as a indicator representing the analysis results for comparing multiple analysis results. - [[S0015] Create the probe, vector and contour](https://www.jmag-international.com/scriptlibrary/s0015_create_probe_vector_contour/) - Create contour, vector and probe definitions to visualize distributed analysis results. - [[S0010] Set up the automatic meshing property with Method 3: Automatic element size](https://www.jmag-international.com/scriptlibrary/s0010_set_meshproperty_to_method3_automatic_element_size/) - Set the mesh properties for the 2D magnetic field analysis to slide mesh method 3 (automatic element size). - [[S0002] Set the rotation motion condition to all parts within a specified radius from the origin](https://www.jmag-international.com/scriptlibrary/s0002_set_rotationmotion_toinnerrotor_byradius/) - In the model of a magnetic field analysis study, set the rotation motion condition to parts within a specified radius from the origin - [[S0008] Get the applied conditions by specifying the analysis condition type name](https://www.jmag-international.com/scriptlibrary/s0008_get_condition_specified_type/) - Retrieve the conditions applied to the study by specifying the type name of the analysis condition. This method does not use the title or index of the condition. - [JMAG Script Library MIT License](https://www.jmag-international.com/scriptlibrary/jmag_script_library_mit/) - JMAG Script Library MIT License Copyright © JSOL Corporation. Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the “Software”), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of - [[S0011] Apply heat transfer boundary condition to the part surfaces](https://www.jmag-international.com/scriptlibrary/s0011_set_heattransferboundary_to_surfaceofpart/) - In a thermal analysis study, apply heat transfer boundary condition to the faces defined by the set. - [[S0009] Add result calculation of parts, faces, or edges for mesh groups](https://www.jmag-international.com/scriptlibrary/s0009_add_part_face_edge_calculation_for_meshgroups/) - Create result calculation definition of part, face or edge that target mesh groups. - [[S0007] Export an image specifying the size to the same folder as the project file](https://www.jmag-international.com/scriptlibrary/s0007_export_image_to_project_file_folder/) - Export an image of the JMAG-Designer model display as a file to the same folder as the opened project file. - [[S0006] Get the area or volume of a part with a specified name](https://www.jmag-international.com/scriptlibrary/s0006_get_volume_or_area/) - Get the volume in 3D or the area in 2D of a part or parts group with specified name - [[S0005] Set the orientation pattern of the magnetization material parts to a parallel pattern (circular any direction)](https://www.jmag-international.com/scriptlibrary/s0005_set_parallel_circular_any_direction_pattern_to_magnetizationmaterial/) - In a magnetic field analysis, set the orientation pattern to a parallel pattern (circular any direction) in the properties of the part with the magnetization material - [[S0004] Add steady conditions to the step control in the study properties of a magnetic field transient analysis](https://www.jmag-international.com/scriptlibrary/s0004_add_steady_conditions_to_stepcontrol/) - In a magnetic field transient analysis, add steady conditions to the step control to stop the analysis when a steady state is reached. - [[S0003] Place a PWM 120deg conduction system (3-phase) component in the circuit](https://www.jmag-international.com/scriptlibrary/s0003_create_pwm120degconductionsystem3phase/) - Place a PWM 120deg conduction system (3-phase) macro component in the circuit of a magnetic field transient analysis study or an integration analysis study - [[S0001] In 2D magnetic field analysis, set the rotation periodic boundary condition to all edges on the X axis](https://www.jmag-international.com/scriptlibrary/s0001_set_periodicboundary_toedgesonxaxis/) - In 2D magnetic field analysis model, set the periodic boundary condition to all edges on the X axis where X>=0 - [[D0030] Allow Eddy Current for selected parts](https://www.jmag-international.com/scriptlibrary/d0030_set_eddy_current_flag_on/) - This script sets the "Allow Eddy Current" flag for selected parts. - [[D0024] NVH Force Export (Nodal Force)](https://www.jmag-international.com/scriptlibrary/d0024_nvh_force_export/) - Export toque and force to the CSV file for motor NVH. - [[D0007] Electrostatic Capacitance Coefficient Calculation](https://www.jmag-international.com/scriptlibrary/d0007_coefficient_of_electrostatic_capacitance/) - Outputs the capacitance coefficient of a system consisting of multiple conductors in CSV file format. - [[S8415] Script to display the results of section graphs for all cases in a single graph and output CSV files.](https://www.jmag-international.com/scriptlibrary/s8415/) - The following is an example of a script that displays the results of section graphs for all cases in a single graph and outputs a CSV file. - [[S8329] Script to create a sectiongraph and export the results to a CSV file](https://www.jmag-international.com/scriptlibrary/s8329/) - The following is an example of a script to export a CSV file after setting up a new arc graph from the displayed model using “Results” > ‘Section’ > “Arbitrary Region” > “New Arc ...”. - [[S9390] Script for setting the switching timing of the PAM inverter](https://www.jmag-international.com/scriptlibrary/s9390/) - The following is an example of a script for setting the switching timing of a PAM inverter. - [[S9210] Script to create a DC superimposed current sequence and set it as the current condition](https://www.jmag-international.com/scriptlibrary/s9210/) - I want to create a DC superimposed current sequence using a script and set it as the current condition. - [[S8626] Script for setting skin depth based on material and frequency](https://www.jmag-international.com/scriptlibrary/s8626/) - The following is an example of a script for setting the skin depth based on material and frequency. - [[S8570] Script to remove duplicate nodes in the Geometry Editor](https://www.jmag-international.com/scriptlibrary/s8570/) - The following is an example of a script for removing duplicate nodes in the Geometry Editor. - [[S8545] Script to set concentrated load conditions at nodes on a circle](https://www.jmag-international.com/scriptlibrary/s8545/) - The following is an example of a script for setting concentrated load conditions at nodes on a circle. - [[S8507] Script to output a result table of nodes with nodal forces above the threshold value](https://www.jmag-international.com/scriptlibrary/s8507/) - The following is an example of a script that outputs a result table of nodes with nodal forces above the threshold. - [[S8493] Script to calculate the induced voltage constant Ke from the analysis results and register it in the response value](https://www.jmag-international.com/scriptlibrary/s8493/) - The following is an example of a script that calculates the induced voltage constant Ke from the analysis results and registers it in the response value. - [[S8481] Script for placing the starting point of flux line rendering circumferentially in a 3D model](https://www.jmag-international.com/scriptlibrary/s8481/) - The following is an example of a script that places the starting point of the flux line rendering in a circular direction in a 3D model. - [[S8467] Create a project file in the folder containing the script.](https://www.jmag-international.com/scriptlibrary/s8467/) - I want to create a project file in the folder where the script is located using a script. - [[S8458] Script to obtain the coordinates of the vertices of parts](https://www.jmag-international.com/scriptlibrary/s8458/) - The following is an example of a script that obtains the coordinates of the vertices of parts. - [[S8447] Script to add a case with modified design parameters including geometry dimensions.](https://www.jmag-international.com/scriptlibrary/s8447/) - I want to add a case and change design parameters including geometry dimensions with a script. - [[S8441] Script for performing FFT on torque waveforms and extracting the maximum amplitude from each frequency component](https://www.jmag-international.com/scriptlibrary/s8441/) - The following is an example of a script that performs FFT on torque waveforms and extracts the maximum amplitude from each frequency component. - [[S8436] Script to acquire set value information for [Current Source (1 Terminal)] and [Electric Potential Source (1 Terminal)].](https://www.jmag-international.com/scriptlibrary/s8436/) - I want to get the setting value information of [Current Source (1 Terminal)] or [Electric Potential Source (1 Terminal)] by a script. - [[S8434] Script for selecting elements by circular selection and writing out the result table.](https://www.jmag-international.com/scriptlibrary/s8434/) - I want to use a script to select elements by circular selection and write out the result table. - [[S8426] Script to create response data by determining duplicates and create response graphs](https://www.jmag-international.com/scriptlibrary/s8426/) - The following is an example of a script that checks for duplicates, creates response data, and creates a response graph. - [[S8406] Script to launch multiple JMAG-Designers](https://www.jmag-international.com/scriptlibrary/s8406/) - The following is an example of a script that launches multiple JMAG-Designer instances. - [[S8401] Script for specifying parts by coordinates and setting conditions](https://www.jmag-international.com/scriptlibrary/s8401/) - The following is an example of a script that specifies parts by coordinates and sets conditions. - [[S8389] Script to obtain vertex coordinates from the Geometry Editor](https://www.jmag-international.com/scriptlibrary/s8389/) - The following is an example of a script that obtains the coordinates of vertices in the Geometry Editor. - [[S8384] Script to check the number of jobs that have not been completed in JMAG-Scheduler](https://www.jmag-international.com/scriptlibrary/s8384/) - The following is an example of a script for checking the number of jobs that have not been completed in JMAG-Scheduler. - [[S8376] Script to export csv with model ID, study ID and case number](https://www.jmag-international.com/scriptlibrary/s8376/) - I want to specify model ID, study ID and case number in a script and export the results in csv. - [[S8374] Script for specifying part colors and grouping parts](https://www.jmag-international.com/scriptlibrary/s8374/) - The following is an example of a script that specifies part colors and performs grouping. - [[S8369] Script for performing Boolean operations by specifying part names in the Geometry Editor](https://www.jmag-international.com/scriptlibrary/s8369/) - The following is an example of a script that performs Boolean operations on specified parts using the Geometry Editor. - [[S8366] Script for manipulating the perspective of the model display](https://www.jmag-international.com/scriptlibrary/s8366/) - The following is an example of a script that manipulates the perspective of the model display. - [[S8356] Script for running analysis by specifying a folder using JMAG-Scheduler](https://www.jmag-international.com/scriptlibrary/s8356/) - The following is an example of a script that uses JMAG-Scheduler to specify a folder and execute analysis. Open in JMAG-Designer the model that contains the study to be calculated using JMAG-Scheduler in advance, and then run it from the script editor. - [[S8352] Script to export the results of any case from multiple cases to a single CSV file](https://www.jmag-international.com/scriptlibrary/s8352/) - The following is an example of a script that writes the results of any case from multiple cases to a single CSV file. - [[S8350] Script for importing CSV files with conditions, circuits, and materials](https://www.jmag-international.com/scriptlibrary/s8350/) - The following is an example of a script that reads CSV files on conditions, circuits, and materials. - [[S8346] Script to output the results of multiple case probes in a batch to a csv file](https://www.jmag-international.com/scriptlibrary/s8346/) - The following is an example of a script that outputs the results of a multi-case probe in a batch to a csv file. - [[S8341] Script to get the maximum flux density of a contour plot for any part](https://www.jmag-international.com/scriptlibrary/s8341/) - The following is an example script to obtain the maximum flux density of a contour plot on an arbitrary part. - [[S8339] Script to add cases with different current amplitude values and output the results of each case to a csv file](https://www.jmag-international.com/scriptlibrary/s8339/) - The following is an example script that adds cases with different current amplitude values and outputs the results of each case to a csv file. - [[S8333] Script to FFT and output csv](https://www.jmag-international.com/scriptlibrary/s8333/) - I want to automate the process of performing FFT on the results and outputting them as a CSV file. - [[S8332] Script to add cases and specify the direction of magnetization for each](https://www.jmag-international.com/scriptlibrary/s8332/) - The following is an example of a script that adds three cases and sets the direction of the reference axis for the magnetization direction for each. - [[D0008] Switch all FEM coils to FEM conductors](https://www.jmag-international.com/scriptlibrary/d0008_coil_to_conductor/) - This script will replace all FEM coils with FEM conductor in the current study. Requires Version 15.1 or later. - [[D0040] Contact Resistance between Stator Core and Case](https://www.jmag-international.com/scriptlibrary/d0040_stator_case_contact/) - Contact Resistance between Stator Core and Case - [[D0038] Contact Resistance between Magnet and Rotor Core](https://www.jmag-international.com/scriptlibrary/d0038_magnet_rotor_contact/) - Set Contact Heat Resistance between Magnet and Rotor Core - [[D0036] Heat Transfer at Airgap](https://www.jmag-international.com/scriptlibrary/d0036_airgap_transfer/) - Set Heat Transfer at Airgap - [[D0017] Generate sampling cases](https://www.jmag-international.com/scriptlibrary/d0017_generate_sampling_cases/) - Generate sampling cases. - [[D0013] Create transfer function csv file](https://www.jmag-international.com/scriptlibrary/d0013_create_transfer_function_csv/) - Create a csv file of a transfer function. - [[D0014] Calculate Efficiency from Drive Mode](https://www.jmag-international.com/scriptlibrary/d0014_drive_cycle_efficiency/) - Uses results of the efficiency map analysis study to calculate efficiency of electric vehicles in a specified drive mode. - [[D0016] Extract anomalous eddy current loss coefficient](https://www.jmag-international.com/scriptlibrary/d0016_extract_anomalous_coefficient/) - Make anomalous eddy current loss coefficient table from a Custom material. - [[D0031] Set FEM Conductors for Parts in a set](https://www.jmag-international.com/scriptlibrary/d0031_set_fem_conductors/) - This script set FEM conductor conditions on all wires of a set in the current study. Requires V15.1 or later. - [[D0001] Add magnetic field strength contour](https://www.jmag-international.com/scriptlibrary/d0001_add_contour_result/) - Add magnetic field strength contour definition to the current study. - [[D0015] Export Jcf For External Circuit Link](https://www.jmag-international.com/scriptlibrary/d0015_exportjcf_for_external_circuit_link/) - Export Jcf For External Circuit Link. - [[D0002] Run all studies](https://www.jmag-international.com/scriptlibrary/d0002_run_all_projects/) - Run all studies in the project. - [[D0010] Switch all FEM conductors to FEM coils](https://www.jmag-international.com/scriptlibrary/d0010_conductor_to_coil/) - This script replace all FEM conductors with FEM coils in the current study. Requires Version 15.1 or later - [[D0005] All case create mesh](https://www.jmag-international.com/scriptlibrary/d0005_all_case_create_mesh/) - Create mesh for all cases if the case does not have a mesh. - [[D0003] Add current condition to coils](https://www.jmag-international.com/scriptlibrary/d0003_set_current/) - Set a current condition on all parts named "Coil" in the current study. - [[D0019] Highlight parts that allow eddy current](https://www.jmag-international.com/scriptlibrary/d0019_highlight_eddy_current_part/) - This script highlights parts where eddy currents will be calculated. - [[D0035] Vibration Evaluation with Transfer Function](https://www.jmag-international.com/scriptlibrary/d0035_vibration_evaluation_with_transfer_function/) - Evaluate the vibration of an observation point using the transfer function. - [[D0039] Set Cooling (Natural Convection)](https://www.jmag-international.com/scriptlibrary/d0039_natural_convection/) - Set Cooling by Natural Convection - [[D0032] Setup study for transfer function creation](https://www.jmag-international.com/scriptlibrary/d0032_setup_study_for_transfer_function_creation/) - Set up a frequency analysis study for transfer function creation. - [[D0021] Loading Topology Optimization Geometry](https://www.jmag-international.com/scriptlibrary/d0021_loading_topology/) - Loading selected topology optimization geometry - [[D0004] Set the coil material](https://www.jmag-international.com/scriptlibrary/d0004_set_material/) - Sets the material for parts in the current study named "Coil" to copper. - [[D0037] Set Cooling (Forced Convection)](https://www.jmag-international.com/scriptlibrary/d0037_forced_convection/) - Set Cooling by Forced Convection - [[D0028] Search Size Range in Optimization Table](https://www.jmag-international.com/scriptlibrary/d0028_search_optimization_size_range/) - Search for the maximum value and the minimum value of the parametric variable range of optimization. ## Datasheet - [[DD-001] Performance of Massive Parallel Processing Magnetic Field Analysis Solver for Medium and Large Models](https://www.jmag-international.com/data_sheet/dd-001/) - This datasheet presents the computational speed-up performance of the MPP solver with respect to the number of parallels. ## An engineer's diary - [[No. 95] Actuator agony](https://www.jmag-international.com/engineers_diary/095/) - Electromagnetic actuators (solenoids, relays, torque motors, etc.) comprise an important class of electromagnetic devices with a wide range of applications. - [[No. 94] The Axial-flux Machine and Faraday’s Law](https://www.jmag-international.com/engineers_diary/094/) - Sometimes I get a request to have a look at a disused electric machine in an old factory or even in a barn. Often the question is ‘does it work?’, or ‘can we make it run on single-phase AC?’, or ‘is it worth anything?’ - [[No. 93] Equivalent circuits and the finite-element method](https://www.jmag-international.com/engineers_diary/093/) - We are sometimes told that there are two theories of electric machines: the field theory and the circuit theory. - [[No. 92] The Phasor Diagram and the Finite-element Method](https://www.jmag-international.com/engineers_diary/092/) - The phasor diagram is fundamental in the theory and calculation of the steady-state operation of the synchronous machine (including both wound-field and permanent-magnet types). - [[No. 91] Synchronous machine operating characteristics](https://www.jmag-international.com/engineers_diary/091/) - The wound-field synchronous machine was one of the first electric machines to benefit from the development of numerical field-analysis techniques in the 1960s. - [[No. 90] Did Potier solve the problem of calculating saturation in synchronous machines?](https://www.jmag-international.com/engineers_diary/090/) - The work of Alfred Potier (1840-1905) belongs securely in the foundations of the theory of the wound-field synchronous machine. - [[No. 89] Cognitive Science and Engineering Analysis — Ideas from an Unexpected Source](https://www.jmag-international.com/engineers_diary/089/) - There is a curious parallel between a live musical performance and a large engineering computation involving Big Data (Engineer’s Diary No. 87). - [[No. 88] The Case for Minimal Data](https://www.jmag-international.com/engineers_diary/088/) - I asked my grandson the price of a postage stamp in binary, and pretty quickly he reported the result, 10100101 (pennies). And how many bytes is that? One byte. - [[No. 87] The Case for Big Data](https://www.jmag-international.com/engineers_diary/087/) - What is Big Data, and why do we need it? Let’s try to answer this question with very little specialist knowledge of numerical analysis software. Big Data refers to a computing environment in which all the numbers are big: the tens of millions of discrete elements in the mesh, the number of parallel processors, the very high clock speed, the gigabytes of memory, the terabytes of storage, and the days or weeks of processing time. - [[No. 86] Sanity check](https://www.jmag-international.com/engineers_diary/086/) - There is an old story about the engineer who was asked to multiply 4 × 3, who took out a slide-rule, and who declared the result to be “about 12”. While this is a cruel caricature of an engineer, it would be less disrespectful had the question been to find 3.8π. - [[No. 85] Machines with Carbon Brushes](https://www.jmag-international.com/engineers_diary/085/) - I can already hear a certain reaction to the idea of machines with carbon brushes: ‘We got rid of those many years ago’ . That is true in many industries. It is even true that many modern electric motors and generators have no antecedents in commutator machines or slip-ring machines. So why should we show any interest in machines with carbon brushes? - [[No. 84] How to generate a sinusoidal EMF](https://www.jmag-international.com/engineers_diary/084/) - In a practical rotating electric machine it is not possible to generate a perfect sinewave EMF waveform of the form sin ωt. We are, however, concerned with sinusoidal waveforms, in which the suffix ‘-al’ or ‘-oidal’ means ‘like a sinewave, but not necessarily the same as a pure sinewave’. - [[No. 83] Steady-state short-circuit operation of a PM brushless machine](https://www.jmag-international.com/engineers_diary/083/) - One of the most important test conditions for a brushless permanent-magnet machine is the steady-state short-circuit condition, sometimes called the ‘sustained’ short-circuit. - [[No. 82] Electromagnetic nutcracker](https://www.jmag-international.com/engineers_diary/082/) - Powersys has just announced a seminar on the use of JMAG ‘to simulate, optimize, and co simulate the most critical small components: frameless motors, actuators, encoders, and beyond’. - [[No. 81] Flummoxed by Flux-Waves?](https://www.jmag-international.com/engineers_diary/081/) - Electric machine engineers often speak of the flux wave in the air-gap of an electric machine, yet when we look at a flux-plot such as Fig. 1 we cannot see it. - [[No. 80] The Shadow-Winding](https://www.jmag-international.com/engineers_diary/080/) - The shadow-winding is useful for measuring generated EMF and inductance in prototype electric machines. Typically it consists of a complete phase winding wound in the same slots as one of the main phase windings, but with fewer turns and much thinner wire. - [[No. 79] The Alexanderson Alternator — An Axial-flux Marvel](https://www.jmag-international.com/engineers_diary/079/) - Alexanderson alternators had these design parameters: Electric machine designers will surely look on these figures with admiration—even with astonishment—given that the era of the Alexanderson alternator (including its antecedents) was from about 1900 to about 1930. - [[No. 78] Atomic Simulation](https://www.jmag-international.com/engineers_diary/078/) - Atomic simulation — Imagine the simulation of a system or an electric machine atom by atom, indivisible particle by indivisible particle, in which there is one discrete finite element for each and every atom. - [[No. 77] Mathematics in Action](https://www.jmag-international.com/engineers_diary/077/) - In a recent session of the Biggar Science Café entitled Mathematics in Action, I found it very easy to borrow some examples of applied mathematics from the world of modern automotive engineering, illustrated with one or two published images from seminars presented by J.R. Hendershot. - [[No. 76] Maxwell’s Apprentice and the Flux Gusher](https://www.jmag-international.com/engineers_diary/076/) - Video 54 introduced a short series of three or four videos with an attempt to compare flux-linkage captured at the terminals of an electric machine with oil captured at the well-head in an oil-field. - [[No. 75] What finite-element analysis can and cannot do](https://www.jmag-international.com/engineers_diary/075/) - Is FE Man telling the truth? Let’s pretend somebody has sued him for making false claims. We’re in the High Court, and the lawyers pose two carefully-worded questions: 1 Can the finite-element method analyse every structure that can be manufactured? 2 Can the finite-element method analyse any structure that cannot be manufactured? - [[No. 74] Uncertainties in design calculations for electric machines](https://www.jmag-international.com/engineers_diary/074/) - Although these are the words of a forlorn princess wringing her hands in a castle, concerned about uncertainties in her design space, they could surely have been expressed by any engineer. - [[No. 73] Butt joints and other gaps in electric machines](https://www.jmag-international.com/engineers_diary/073/) - There are several gaps and joints (or interfaces) in any electric machine, and we can classify them as follows. A. Intended gaps. The air-gap between the stator and the rotor is the most obvious example. - [[No. 71] p.u.](https://www.jmag-international.com/engineers_diary/071/) - The first time I saw the expression “p.u.” was in an examination paper on electric power-systems, when I was a student-apprentice. Fortunately it was the previous year’s paper, not the one I would face a few months later. The expression “p.u.” caught my eye. - [[No. 72] Properties of the dq-axis transform](https://www.jmag-international.com/engineers_diary/072/) - In any system of calculations using dq-axis theory for synchronous machines, the question will arise, as to which transform should be used. The two transforms shown in Fig. 1 are by no means the only ones, but they are both common and they certainly serve to bring the most important considerations into view. - [[No. 70] Don’t make your eddy-currents angry !](https://www.jmag-international.com/engineers_diary/070/) - Imagine a block of permanent magnet material in an IPM, Fig. 1. Our line of sight is parallel to the direction of magnetization, at right angles to the plane of the diagram. - [[No. 69] Animation](https://www.jmag-international.com/engineers_diary/069/) - The educational and commercial importance of animation can hardly be overstated. We see it almost everywhere, and it now has a significant role in even the most traditional areas of education. - [[No. 68] Torque waves (and the insane simplicity of the torque equation)](https://www.jmag-international.com/engineers_diary/068/) - Smooth torque. Isn’t that what we get from electric machines? They certainly appear to produce smooth torque. Unlike internal combustion engines, they have no flywheels or balancing shafts, and no reciprocating valve-gear. They are more like turbines, which seem to produce constant torque with no discernible ripple. - [[No. 67] Harmonic waves in AC machines](https://www.jmag-international.com/engineers_diary/067/) - The famous Park’s equations for the d- & q-axis voltages in synchronous machines were developed from the concept of sine-distributed armature ampere-conductors. The fundamental or ‘working’ harmonic was isolated from a complex pattern of space-harmonics by Fourier series. - [[No. 66] Axial flux](https://www.jmag-international.com/engineers_diary/066/) - Axial-flux machines are currently in vogue. With an internet search we can quickly find numerous examples, including many videos of home-made machines and some notable products and prototypes with very high power/weight ratios. Virtually all the current machines are nonsalient-pole machines using high-energy permanent-magnets, and various pole-numbers are used. - [[No. 65] Inductance](https://www.jmag-international.com/engineers_diary/065/) - Inductance may come as a shock to anyone who thinks that V = I × R. That delightfully simple expression of Ohm’s law is not the whole story. For sure, if we have a coil connected to a battery, Ohm’s law will give the relationship between the voltage, the current, and the resistance of the coil. - [[No. 64] Eddy-currents](https://www.jmag-international.com/engineers_diary/064/) - Eddy-currents flow in closed loops. It follows that for any physical device in which eddy-currents arise, only a three-dimensional analysis can be complete. Any two-dimensional analysis will be incomplete, because it neglects the end-effects which represent the closure of the current-loops. - [[No. 63] Oh no! No magnets!](https://www.jmag-international.com/engineers_diary/063/) - Scarcity is nothing new in human history, and in electrical products we hear about it all the time in relation to lithium or rare earths, or even copper. So the poem might seem light-hearted, but actually it attempts to be serious. Let’s analyze it as though we were back at school. - [[No. 62] OK — the laws of Ohm and Kirchhoff](https://www.jmag-international.com/engineers_diary/062/) - OK — We’ve reached letter ‘O’ in the alphabetic sequence of Diary topics, and Ohm’s law immediately comes to mind. When I was a student, one of my room-mates (a medical student) had to sit a physics test, and he prepared notes, one of which concerned Ohm’s law. - [[No. 61] Nervous about Neumann?](https://www.jmag-international.com/engineers_diary/061/) - Continuing the more-or-less alphabetic sequence of initial letters for the titles of Engineer’s Diary, we arrive at the letter N. What topic could be more relevant in finite-element analysis than the so-called Neumann boundary condition? - [[No. 60] Mystery, Magic and Mappings](https://www.jmag-international.com/engineers_diary/060/) - Mystery is not confined to novels.We have it in abundance in engineering.I remember as an apprentice in the 1960s working alongside a service engineer on a new DC drive system, and he had some commissioning documents with control system diagrams and circuit diagrams. - [[No. 57] L and Linkage and Leakage](https://www.jmag-international.com/engineers_diary/057/) - Readers may have noticed that Engineer’s Diary has been trying to follow the alphabet in selecting monthly topics, and some letters provide more ideas than others. - [[No. 59] Mutual inductance](https://www.jmag-international.com/engineers_diary/059/) - Mutual inductance M is one of the most common concepts in electromagnetic engineering. Indeed we can argue that it is also one of the most fundamental concepts. - [[No. 58] Maxwell](https://www.jmag-international.com/engineers_diary/058/) - Almost exactly 10 years ago I made a ‘pilgrimage’ to visit the grave of James Clerk Maxwell at Parton Kirk in Dumfries and Galloway in the south-west of Scotland. - [[No. 56] Lèse-Majesté](https://www.jmag-international.com/engineers_diary/056/) - It is easy to imagine the IPM (interior permanent-magnet motor) as the monarch of electric motors. Indeed to question its supremacy could be said to be lèse-majesté. - [[No. 42] Diameter](https://www.jmag-international.com/engineers_diary/042/) - D is for diameter! — surely the most fundamental of all engineering dimensions, at least in electric machine design. It is so important, we might ask ourselves why computer monitors are rectangular instead of circular! When we look at the cross-section of a machine, everything is bounded by the O.D., the outside diameter (except of course the terminal box). What else is there to see? - [[No. 37] Some essential features of the induction motor - 2](https://www.jmag-international.com/engineers_diary/037/) - In Column 36 we studied the cross-section of an induction motor with 36 slots, 30 rotor bars, and a 4-pole distributed winding. Just by looking at the features of the winding, we were able to determine the number of poles. We made several observations about the design of the winding, and we understood the concepts of synchronous speed and phase sequence. We did all this without any speeches or animated videos; and we used only one diagram without labels, so as to use our imagination to the fullest extent. - [[No. 38] What has the automobile ever done for the electric motor?](https://www.jmag-international.com/engineers_diary/038/) - From the provocative tone of the question, we might be led to expect an even more provocative answer : “nothing much”. Let’s see how wrong this is, and why. - [[No. 39] The magnetic vector potential](https://www.jmag-international.com/engineers_diary/039/) - A is commonly used as the symbol for magnetic vector potential, just as B is used for flux-density or "induction", and H for magnetic field strength or magnetizing force. It is a vector with three components in the coordinate directions x, y, z, and this is generally written Ā or A = (Ax, Ay, Az). - [[No. 40] Flux density](https://www.jmag-international.com/engineers_diary/040/) - The six images are listed below in the wrong order. Please, before you read this, try to decide what the Bees are showing. The answer is given at the end. - [[No. 41] Coils and Conductors](https://www.jmag-international.com/engineers_diary/041/) - The two previous Engineer’s Diaries were titled A and B: A for vector potential and B for flux-density. This is C, for coils and conductors — and maybe for “crocodile clips” (croc-clips)! Indeed C stands for many things in electrical engineering : current, connectors, circuits, capacitance, . . . but here we will focus on coils and conductors. - [[No. 55] L : Library](https://www.jmag-international.com/engineers_diary/055/) - A personal library can be a valuable asset. Before the internet, it was usually the first ‘port of call’, the first available source of reference material on engineering theory and practice. And it is something one can value and cherish, like an old friend. - [[No. 54] K : Kron](https://www.jmag-international.com/engineers_diary/054/) - Last month the letter K failed to provide a ready supply of suitable electrical engineering topics for the Diary, so we borrowed the German term Kennlinie. - [[No. 53] K : Kennlinie, ken-lines, and cissoids](https://www.jmag-international.com/engineers_diary/053/) - Progressing through the alphabet of electrical engineering topics, we come to the letter K, and for this Diary I have to say I had some difficulty finding a suitable topic beginning with K. So I borrowed the term Kennlinie from German, a language that is extremely rich in electrical engineering terms. It means characteristic curve. - [[No. 52] JMAG goes to work](https://www.jmag-international.com/engineers_diary/052/) - This new book is written for engineers concerned with the design and development of electric machines. - [[No. 51] Current-density J](https://www.jmag-international.com/engineers_diary/051/) - Next in alphabetic sequence is J — which could stand for 'JMAG' or 'JAPAN', but instead let us think of J as the common symbol for current-density. Sometimes when I think about current-density I’m reminded of the notice that is printed on cigarette packets: SMOKING KILLS. The same notice could be put on the name-plate of every electric motor! - [[No. 50] Insulation](https://www.jmag-international.com/engineers_diary/050/) - In this series of Engineer’s Diary, the topics are selected by following the letters of the alphabet, giving an almost random walk through the field of electrical engineering. ‘I’ is next…; so let’s think about insulation. - [[No. 49] Hair-pin winding](https://www.jmag-international.com/engineers_diary/049/) - The hair-pin winding has become prominent in drive-train motors for electric and hybrid vehicles, with many creative examples in manufacturing. Although ‘push-through’ hair-pin coils have long been used in other industries, especially in heavy machines, it is probably fair to say that relatively few changes took place before the more recent impact of the automotive industry [2]. - [[No. 48] Helical winding](https://www.jmag-international.com/engineers_diary/048/) - The helical winding (Figs. 1 and 2) was originally examined as a candidate air-gap winding for large 2-pole superconducting alternators at International Research and Development Co. (now part of Rolls-Royce) in the early 1970s; [2]. - [[No. 31] Some essential features of the switched reluctance motor](https://www.jmag-international.com/engineers_diary/031/) - Every type of electric motor has certain essential features. One way to begin to understand them is to make a drawing, and at the same time make a list of observed features and characteristics. - [[No. 47] Harmonic poles again — this time produced by the stator!](https://www.jmag-international.com/engineers_diary/047/) - In Engineer’s Diary No. 46 we discussed the harmonic poles of a 2-pole rotary machine. ‘Harmonic poles’ refers to the space-harmonics of the flux distribution around the air-gap. We calculated this distribution using JMAG, and then we made a Fourier series analysis to obtain and display its space- harmonic components. - [[No. 46] Harmonic poles](https://www.jmag-international.com/engineers_diary/046/) - The number of poles is perhaps the most basic parameter in the design of an electric machine. When we speak of this parameter, we usually mean the number of working poles. Fig. 1 shows, for example, a machine with 2 poles which we count as the number of magnets. More precisely, we might count the succession of N and S (north and south) polarities at the rotor surface. In Fig. 1 the result is 2, and we often write this as p = 1 pole pair. Fig. 1(a) is just about the most primitive configuration possible, with a radially-magnetized magnet and no slots or stator winding. But still we can learn several important principles from it. - [[No. 26] The remarkable work of Rosa and Grover](https://www.jmag-international.com/engineers_diary/026/) - One of my teachers (Dr. Thomas Foord) gave undergraduate lectures that were so clear, I feel as though I could repeat them nearly 55 years later. Of course I could not do it. That teaching gift is given to very few. Yet it seems to remind us of the enormous importance of the teacher, in an age when so much of the limelight goes to inventors and researchers. - [[No. 20] Equipotentials](https://www.jmag-international.com/engineers_diary/020/) - Sometimes I wonder why we don’t see equipotentials in finite-element flux-plots. Strictly speaking, at least in 2D flux-plots, we generally do see them because the flux-lines are contours of constant values of the vector-potential. But here I’m referring to the contours of the orthogonal conjugate functions which cross the flux-lines at right-angles to make the so-called curvilinear squares. - [[No. 10] RW](https://www.jmag-international.com/engineers_diary/010/) - All electric machines use wire — usually of copper, but sometimes of aluminium. The electrical resistance R determines the I2Rloss (Joule loss) in each winding when the RMS current is I amperes. Since this loss is usually the largest component of the total loss, it has a strong effect on the efficiency, so it is clearly important to estimate R as accurately as possible. Although “resistance” is a simple concept, it is not easy to determine an accurate value in design calculations. - [[No. 8] Hysteresis](https://www.jmag-international.com/engineers_diary/008/) - At the JMAG Users’ Conference in Strasbourg last October, Hiroyuki Sano (JSOL) and Yves Thiolière (Powersys) gave a detailed class tutorial on the hysteron, a defined trapezoidal shape that is part of JMAG’s “play model” for magnetic hysteresis and the power loss that arises in laminated electrical steel. As a class we were given exercises, and I must say that while I was struggling with mine, I noticed the engineer sitting next to me (Didier Zefack of Powersys) had already finished his! - [[No. 7] Peripheral, marginal, second-order, inexact . . . and IMPORTANT!](https://www.jmag-international.com/engineers_diary/007/) - The finite-element method is very rarely exactly correct. Now surely that is an outrageous thing to say on the JMAG website! But what do we mean by exactly? The finite-element method begins with discretization : dividing the solution domain into a large number of small elements (triangles, rectangles, etc.) so that the continuous partial differential equations of the physics can be replaced by a large number of simultaneous algebraic equations. - [[No. 6] The Periodic Table of Electric Machines](https://www.jmag-international.com/engineers_diary/006/) - When the archaeologists dig us up in 5,000 years’ time, they will find a large number of electric motors and generators. Who knows if they will understand what they find? They will surely marvel at some of the winding configurations, and they might even rediscover high-energy magnets. When they find very large machines, they will ask “how big were those people?”, and when they find wristwatches and nano-motors, they will ask “how small were those people?” And did the large people and the small people inhabit the Earth at the same time? - [[No. 5] Formulas and Equations](https://www.jmag-international.com/engineers_diary/005/) - What’s the difference between a formula and an equation? Take the examples, - [[No. 4] The Historic Claw-Pole Machine](https://www.jmag-international.com/engineers_diary/004/) - My grandson is interested in mathematics and history. Maybe it is an unusual combination, but both these subjects are helpful in looking forwards as well as backwards. In engineering we are often looking forwards, to find new and better ways. It has always seemed to me to be a good idea to look backwards for new ideas! If it works in history and mathematics, then why not in engineering? At least, by studying the works of previous generations, we can understand their logic and ingenuity. - [[No. 3] Görges diagram](https://www.jmag-international.com/engineers_diary/003/) - The polygonal diagram of H. Görges (Das Görgessche Durchflutungspolygon) dates from 1907. Although it is highly developed in German literature, until recently it has been rare in English-language publications. Fig. 1 shows an example for a single-layer winding with 12 slots and 10 poles. - [[No. 1] When is a fluxmeter not a fluxmeter?](https://www.jmag-international.com/engineers_diary/001/) - A fluxmeter is an integrating voltmeter. It never measures flux directly. It measures flux-linkage, the integral of voltage with respect to time. It is true that flux can be estimated from flux-linkage, but only by dividing by the number of turns in the winding. However, this concept, flux-linkage = flux × turns, assumes that all the flux links all the turns. In an electric machine or transformer, this is never the case, because of leakage flux and partial linkages, which are important for certain aspects of performance. - [[No. 2] ABC of engineering calculations today](https://www.jmag-international.com/engineers_diary/002/) - Most engineering calculations take the path of analysis or simulation, shown in Fig. 1, A. Analysis has been established for a long time; but simulation is more recent, especially with digital computers. The process usually begins with physical dimensions and material properties as input data, and the results usually include performance data (such as power, torque, efficiency), together with “intensity data” or “utilization data” (such as current-density, flux-density, power-to-weight ratio, etc.). Specialist tools B (such as the finite-element method) improve the accuracy and help with complicated cases. - [[No. 28] Notional equations in engineering](https://www.jmag-international.com/engineers_diary/028/) - On the telephone recently my 8-year-old grandson asked if I knew the equation E = mc^2. When I said I’d heard of it, he proceeded to explain: E is energy, m is mass, and c is the speed of light. - [[No. 30] Rotational EMF](https://www.jmag-international.com/engineers_diary/030/) - In electrical machine theory we often hear the term rotational EMF. What exactly does it mean? “EMF” means “electro-motive force”. In electrical machine theory it is a voltage induced in a closed circuit by the rate of change of flux-linkage ψ. It always obeys Faraday’s law: - [[No. 45] Gaps](https://www.jmag-international.com/engineers_diary/045/) - Fig. 1 shows a 2-pole IPM (interior permanent-magnet motor) that nobody would want to build. It has so many 'departures from the ideal', yet all of its imperfections can arise in real products to a greater or lesser degree. When we do our design studies using idealised perfect models, we are to some extent hiding from the realities that can cause trouble in the product, even after many thousands have been produced. - [[No. 44] Frequency](https://www.jmag-international.com/engineers_diary/044/) - The figure shows a sketch of the Epstein square that is used for the measurement of BH data of laminated core-plate in the form of strips arranged in a square with overlapping ends at the corners. A set of coils establishes a sinusoidal flux-density waveform B in the steel, and the magnetic field strength H is measured. At least under linear conditions, before the saturation becomes extreme, we can consider both B and H to be sinusoidal with peak values Bpk and Hpk. The test is conducted at standard frequencies of 50 Hz and 60 Hz, and sometimes at other frequencies as well. - [[No. 43] Exponential function and complex numbers in electrical engineering](https://www.jmag-international.com/engineers_diary/043/) - Euler [1707-1783] is closely associated with this equation which has been described as the most beautiful equation in mathematics. It is sometimes regarded as having mystical significance; at the very least, it contains a great deal for the pure mathematicians to ponder. Not only does it relate the five elements 0, 1, e, j and π in an apparently simple and elegant formula; but it also leads to the precept j = √(−1), which undoubtedly makes it even more mystical. - [[No. 36] Some essential features of the induction motor - 1](https://www.jmag-international.com/engineers_diary/036/) - In Column 34 we deduced several inherent features of the synchronous reluctance motor merely by inspecting its cross-section and considering the main flux-paths, and here we will do the same for the induction motor, Fig. 1. In order to encourage close inspection of the drawing, and to practise the common terminology, Fig. 1 is presented without labels. - [[No. 35] The position of wires in the slot](https://www.jmag-international.com/engineers_diary/035/) - In the armature of a permanent-magnet DC motor, the wires usually occupy a rather untidy pattern in the slot — not because there is anything wrong, but simply as a result of the winding process. A similar pattern is found in induction motors with random windings (sometimes called mush windings). A typical cross-section is shown in Fig. 1, in which the individual wires are depicted in just one of the slots, slot 3. - [[No. 34] Some essential features of the synchronous reluctance motor](https://www.jmag-international.com/engineers_diary/034/) - In Column 31 we deduced several inherent features of the switched reluctance motor merely by inspecting its cross-section and considering the main flux-paths, and here we will do the same for the synchronous reluctance motor, Fig. 1. The term synchronous refers to the fact that the rotor rotates in synchronism with the rotating magnetic field, at the so-called synchronous speed which is equal to the supply frequency divided by the number of pole-pairs. - [[No. 33] Transformations; and passing thoughts about rigour](https://www.jmag-international.com/engineers_diary/033/) - It is probably fair to say that most of us do not have much to do with the mathematics of transformation theory, yet much of what we do relies on the theory of one or more transformations. One of the commonest is the Fourier transform, which arises in many branches of engineering. - [[No. 32] Work of detent](https://www.jmag-international.com/engineers_diary/032/) - Every type of electric motor has certain essential features. One way to begin to understand them is to make a drawing, and at the same time make a list of observed features and characteristics. - [[No. 29] Theory and practice in engineering training](https://www.jmag-international.com/engineers_diary/029/) - The training and education of engineers is hurt by the pandemic and the associated restrictions imposed everywhere We hear of the difficulties experienced by schools and colleges, and the heroic efforts of teachers and students alike in continuing their work on-line. - [[No. 27] Loss Segregation](https://www.jmag-international.com/engineers_diary/027/) - Like many quotations, this is a shocking example of quoting someone out of context. It comes from Cyril G. Veinott, writing in 1935, [1]. That sentence is followed by seven others which completely change the message. - [[No. 25] Constructing and reading the flux-weakening phasor diagram](https://www.jmag-international.com/engineers_diary/025/) - This article concerns the permanent-magnet brushless AC motor. We’re going to review the phasor diagram, which has been the basis of AC motor theory for about 120 years. We will consider two cases : low speed (Fig. 1) and high speed (Fig. 2). In the high-speed case we will see the effect of flux-weakening, and we will see how a control strategy could be devised for flux-weakening operation at high speed. - [[No. 24] Synchronous torques in induction motors](https://www.jmag-international.com/engineers_diary/024/) - Fig. 1 shows two types of irregularity in the speed/torque characteristic of an induction motor — the asynchronous torque dip and the synchronous torque dip. These are sometimes called “cusps” or “hooks”. If the speed/torque characteristic of the load intersects with the motor curve in the region of a dip, the motor can run at a fraction of its normal speed (“crawling” or “cogging”) and fail to start normally. This condition is generally very noisy. The motor may even fail to start (“standstill locking”). - [[No. 18] Is it time to celebrate?](https://www.jmag-international.com/engineers_diary/018/) - In Finite Elements in Electrical and Magnetic Field Problems, edited by M.V.K. Chari and P.P. Silvester, (Wiley, 1980, ISBN 0 471 27578 6), A.L. Frisiani, G. Molinari and A. Viviani in the Introduction wrote, - [[No. 22] What can we do when we can’t go to work?](https://www.jmag-international.com/engineers_diary/022/) - Many engineers are at home because of the pandemic, unable to go to work. Although many can work “from home” by internet links, it’s not the same. - [[No. 17] Classification of electric machines](https://www.jmag-international.com/engineers_diary/017/) - The diagram shows most of the electric machines in common use, together with the two reluctance machines which are rare but interesting. Classification is much more than an academic exercise: it reflects the organization of the electric machinery industry and all its applications and markets. - [[No. 19] The number of poles in a rotary electrical machine](https://www.jmag-international.com/engineers_diary/019/) - The figure shows the some of the effects of pole-number on the magnetic field in a rotary electrical machine.It is a highly idealised figure: the winding is a current-sheet in the middle of the air-gap between two cylindrical iron cores of high permeability. - [[No. 21] What is a space-vector?](https://www.jmag-international.com/engineers_diary/021/) - A space-vector — let us say, a space-vector of current — is a single complex number representing the combined effect of all three phase currents in an AC machine at a particular instant of time. - [[No. 23] The complexity of the single-phase induction motor in your refrigerator](https://www.jmag-international.com/engineers_diary/023/) - The single-phase induction motor is one of the most common electric motors. For many years the annual production levels world-wide have been 100,000,000 in round numbers. You can find it in refrigerator compressors, but also in many other household appliances and small industrial equipment. It is also very old, dating back to the 1890s. - [[No. 16] Four rules of saliency](https://www.jmag-international.com/engineers_diary/016/) - We often hear the terms "salient-pole" or "non-salient-pole" in relation to electric machines."Saliency" is the idea of "projecting beyond the general outline", and it refers to the poles in an electric machine which project or "stand out" from the otherwise-smooth circle of the stator or rotor surface. - [[No. 15] Reading a winding diagram](https://www.jmag-international.com/engineers_diary/015/) - Winding diagrams come in many different formats. There is no universal standard, but several common conventions can be found in the winding diagrams used by different manufacturing companies. Many winding diagrams are incomplete, in one respect or another. For example, the example in the figure does not show any interconnectors or terminals. Consequently the polarities of the coils are not defined, although we might be able to infer them by studying the layout carefully. - [[No. 14] Synthesis of AC motor windings](https://www.jmag-international.com/engineers_diary/014/) - How should we synthesize a suitable winding layout for an AC brushless PM motor? While the properties of existing windings can easily be analysed using a spreadsheet program, it is not so obvious to create a new winding layout from scratch. So here is an example of a systematic approach that will work in many cases. - [[No. 9] Can a magnetic circuit work without air ?](https://www.jmag-international.com/engineers_diary/009/) - Recently the U.K. Magnetics Society sent a list of 10 questions for their magazine MagNews, in which the first question was “What is your favourite magnetic material?” In a hurry, I replied “Fresh air. No magnetic circuit can work without it. And you can breathe it.” - [[No. 11] What is the finite-element method?](https://www.jmag-international.com/engineers_diary/011/) - The idea in the finite-element method is to divide a difficult problem into a number of simpler problems which can be solved simultaneously; the solution to the difficult problem is then obtained by combining the solutions to the simpler problems. - [[No. 12] The IPM](https://www.jmag-international.com/engineers_diary/012/) - The IPM or interior permanent-magnet motor started its history as a line-start motor in the 1950s. At that time Alnico magnets were the best available, but their low coercivity meant low resistance to demagnetization, and this was a serious limitation because of the huge demagnetizing MMF experienced during synchronization (or even worse during pullout due to overload). - [[No. 13] Winding diagram for an AC motor](https://www.jmag-international.com/engineers_diary/013/) - Here we see a winding diagram for a 3-phase AC induction motor or brushless PM motor (IPM), having 4 poles and 36 slots. This winding could in fact be used with any AC machine, including a synchronous reluctance motor or a wound-field synchronous motor or generator. In most respects it is a regular classical example, and the objective here is to review some of the features of the diagram and its conventions, rather than the winding itself or any particular machine. ## Article - [other](https://www.jmag-international.com/./other/) - [Application Catalog](https://www.jmag-international.com/./catalogs/) - [White Papers](https://www.jmag-international.com/./whitepapers/) - [JMAG-RT Model Library](https://www.jmag-international.com/./modellibraries/) - [Function Tutorials](https://www.jmag-international.com/./tutorials/) - [An engineer's diary](https://www.jmag-international.com/./engineers_diary/) - [Value of MBD](https://www.jmag-international.com/./mbd/) - [Value of FEA](https://www.jmag-international.com/./fea/) - [Technical Report](https://www.jmag-international.com/./technicalreport/) - [Implementing JMAG](https://www.jmag-international.com/./cases/) - [Motor Design and Development](https://www.jmag-international.com/./motor_design_develop/) - [JMAG Users Conference Proceedings](https://www.jmag-international.com/./conference_doc/) - 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[Superconductivity](https://www.jmag-international.com/applications/superconductivity/) - [Resistance Heating](https://www.jmag-international.com/applications/resistance-heating/) - [Electroplating](https://www.jmag-international.com/applications/electroplating/) - [Electromagnetic Forming](https://www.jmag-international.com/applications/electromagnetic-forming/) - [Electromagnetic Brake](https://www.jmag-international.com/applications/electromagnetic-brake/) - [Electromagnetic Relay](https://www.jmag-international.com/applications/electromagnetic-relay/) - [Transformer / Reactor](https://www.jmag-international.com/applications/transformer_reactor/) - [Bus Bar](https://www.jmag-international.com/applications/busbar/) - [Generator](https://www.jmag-international.com/applications/generator/) - [Heater](https://www.jmag-international.com/applications/heater/) - [Physical Property Testing](https://www.jmag-international.com/applications/physical-property-testing/) - [Brush Motor / Universal Motor](https://www.jmag-international.com/applications/brush-motor_universal-motor/) - [Bearing](https://www.jmag-international.com/applications/bearing/) - [Wound-Field Synchronous Motor](https://www.jmag-international.com/applications/wound-field-synchronous-motor/) - [Magnet Coupling](https://www.jmag-international.com/applications/magnet-coupling/) - [Induction Heating](https://www.jmag-international.com/applications/induction-heating/) - [Induction Motor](https://www.jmag-international.com/applications/induction-motor/) - [Linear Solenoid / Linear Actuator](https://www.jmag-international.com/applications/linear-solenoid_linear-actuator/) - [Linear Motor](https://www.jmag-international.com/applications/linear-motor/) - [Wireless Power Transfer](https://www.jmag-international.com/applications/wireless-power-transfer/) - [Motor](https://www.jmag-international.com/applications/motor/) - [Converter](https://www.jmag-international.com/applications/converter/) - [Resolver](https://www.jmag-international.com/applications/resolver/) - [Magnetic Component](https://www.jmag-international.com/applications/magnetic-component/) ## Evaluation Items - [Basic Characteristic Analysis](https://www.jmag-international.com/evaluationitems/basic/) - [N-T Characteristic Analysis / T-I Characteristic Analysis](https://www.jmag-international.com/evaluationitems/n-tcharacteristic/) - [Thrust Analysis](https://www.jmag-international.com/evaluationitems/thrust/) - [Cogging Analysis](https://www.jmag-international.com/evaluationitems/cogging/) - [Braking Torque Analysis](https://www.jmag-international.com/evaluationitems/brakingtorque/) - [Pull-In / Pull-Out Torques Analysis](https://www.jmag-international.com/evaluationitems/pull-outtorque/) - [Detent Torque / Stiffness Torque Analysis](https://www.jmag-international.com/evaluationitems/stiffnesstorque/) - [Lorentz Force Analysis](https://www.jmag-international.com/evaluationitems/lorentzforce/) - [Efficiency Analysis](https://www.jmag-international.com/evaluationitems/efficiency/) - [Starting Performance Analysis](https://www.jmag-international.com/evaluationitems/startingperformance/) - [Torque Ripple Analysis](https://www.jmag-international.com/evaluationitems/torqueripple/) - [Electromagnetic Force Analysis](https://www.jmag-international.com/evaluationitems/electromagneticforce/) - [Inductance Analysis](https://www.jmag-international.com/evaluationitems/inductance/) - [Magnetic Shielding Analysis](https://www.jmag-international.com/evaluationitems/magneticshielding/) - [Magnetic Field Analysis](https://www.jmag-international.com/evaluationitems/magneticfield/) - [Optimization](https://www.jmag-international.com/evaluationitems/optimization/) - [Speed Control Analysis](https://www.jmag-international.com/evaluationitems/speedcontrol/) - [Iron Loss Analysis / Loss Analysis](https://www.jmag-international.com/evaluationitems/ironloss/) - [Current Distribution Analysis](https://www.jmag-international.com/evaluationitems/currentdistribution/) - [Eddy Current Analysis](https://www.jmag-international.com/evaluationitems/eddycurrent/) - [Magnetization Analysis](https://www.jmag-international.com/evaluationitems/magnetization/) - [Demagnetization Analysis](https://www.jmag-international.com/evaluationitems/demagnetization/) - [Surface Magnetic Flux Density](https://www.jmag-international.com/evaluationitems/surfacemagneticfluxdensity/) - [Eccentricity Analysis](https://www.jmag-international.com/evaluationitems/eccentricity/) - [Displacement Analysis](https://www.jmag-international.com/evaluationitems/displacement/) - [Response Characteristic Analysis](https://www.jmag-international.com/evaluationitems/response/) - [Vector Control Analysis](https://www.jmag-international.com/evaluationitems/vectorcontrol/) - [Positioning Control Analysis](https://www.jmag-international.com/evaluationitems/positioningcontrol/) - [Operating Time Analysis](https://www.jmag-international.com/evaluationitems/operatingtime/) - [Centrifugal Force Analysis](https://www.jmag-international.com/evaluationitems/centrifugal/) - [Vibration Analysis / Sound Pressure Analysis](https://www.jmag-international.com/evaluationitems/soundpressure/) - [Stress Analysis](https://www.jmag-international.com/evaluationitems/stress/) - [Insulation Analysis](https://www.jmag-international.com/evaluationitems/insulation/) - 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[Superimposed Direct Current Characteristic Analysis](https://www.jmag-international.com/evaluationitems/superimposed/) ## Module - [DP](https://www.jmag-international.com/modules/dp/) - Transient Magnetic (2D/Axisymmetric) - [DS](https://www.jmag-international.com/modules/ds/) - Static/Dynamic Structural (2D/3D) - [EL](https://www.jmag-international.com/modules/el/) - Electrostatic/Time Harmonic Electric (3D) - [FQ](https://www.jmag-international.com/modules/fq/) - Time Harmonic Magnetic (2D/3D) - [HT](https://www.jmag-international.com/modules/ht/) - Steady/Transient Thermal (3D) - [LS](https://www.jmag-international.com/modules/ls/) - Iron Loss Calculation - [RT](https://www.jmag-international.com/modules/rt/) - Behavior Model Generation for Use in a Circuit/Control Simulator - [ST](https://www.jmag-international.com/modules/st/) - Magnetostatic (2D/3D) - [TR](https://www.jmag-international.com/modules/tr/) - Transient Magnetic (3D) - [TS](https://www.jmag-international.com/modules/ts/) - Transformer Analysis - [TRANSFORMER_TEMPLATE](https://www.jmag-international.com/modules/transformertemplate/) - Transformer Modeling - [EFFICIENCYMAP](https://www.jmag-international.com/modules/efficiencymap/) - Creating Efficiency Map - [Pi](https://www.jmag-international.com/modules/pi/) - Bus Bar Inductance Calculation - [ABAQUS2](https://www.jmag-international.com/modules/abaqus2/) - Abaqus Link - [CB](https://www.jmag-international.com/modules/cb/) - Electromagnetic Field Calculation - [JMAG-Integration](https://www.jmag-international.com/modules/jmag-integration/) - Integration analysis - [ExpressFR](https://www.jmag-international.com/modules/express_fr/) - Simple Evaluation - [ML](https://www.jmag-international.com/modules/ml/) - Surrogate model - [DesignExplorer](https://www.jmag-international.com/modules/designexplorer/) - Multi-case Result Analysis:JMAG Design Explorer - [SOLIDWORKS](https://www.jmag-international.com/modules/solidworks/) - SOLIDWORKS Data Import ## years - [2017](https://www.jmag-international.com/years/2017/) - [2016](https://www.jmag-international.com/years/2016/) - [2015](https://www.jmag-international.com/years/2015/) - [2014](https://www.jmag-international.com/years/2014/) - [2013](https://www.jmag-international.com/years/2013/) - [2012](https://www.jmag-international.com/years/2012/) - [2012 in Germany](https://www.jmag-international.com/years/2012_germany/) - [2013 in Germany](https://www.jmag-international.com/years/2013_germany/) - [2014 in Germany](https://www.jmag-international.com/years/2014_germany/) - [2015 in Germany](https://www.jmag-international.com/years/2015_germany/) - [2012 in USA](https://www.jmag-international.com/years/2012_usa/) - [2015 in USA](https://www.jmag-international.com/years/2015_usa/) - [2014 in Taiwan](https://www.jmag-international.com/years/2014_taiwan/) - [2015 in China](https://www.jmag-international.com/years/2015_china/) - [2016 in France](https://www.jmag-international.com/years/2016_france/) - [2011](https://www.jmag-international.com/years/2011/) - [2010](https://www.jmag-international.com/years/2010/) - [2009](https://www.jmag-international.com/years/2009/) - [2008](https://www.jmag-international.com/years/2008/) - [2007](https://www.jmag-international.com/years/2007/) - [2006](https://www.jmag-international.com/years/2006/) - [2005](https://www.jmag-international.com/years/2005/) - [2004](https://www.jmag-international.com/years/2004/) - [2003](https://www.jmag-international.com/years/2003/) - [2002](https://www.jmag-international.com/years/2002/) - [2001](https://www.jmag-international.com/years/2001/) - [2000](https://www.jmag-international.com/years/2000/) - [1998](https://www.jmag-international.com/years/1998/) - [1999](https://www.jmag-international.com/years/1999/) - [2018](https://www.jmag-international.com/years/2018/) - [2019](https://www.jmag-international.com/years/2019/) - [2020](https://www.jmag-international.com/years/2020/) - [2021](https://www.jmag-international.com/years/2021/) - [2022](https://www.jmag-international.com/years/2022/) - [2023](https://www.jmag-international.com/years/2023/) - [2024](https://www.jmag-international.com/years/2024/) - [2025](https://www.jmag-international.com/years/2025/) ## Coupled Analysis - [Abaqus](https://www.jmag-international.com/coupled_analysis/abaqus/) - [MATLAB/Simulink](https://www.jmag-international.com/coupled_analysis/matlab-simulink/) - [PSIM](https://www.jmag-international.com/coupled_analysis/psim/) - [STAR-CCM+](https://www.jmag-international.com/coupled_analysis/star-ccm/) - [ADINA](https://www.jmag-international.com/coupled_analysis/adina/) - [Ansys Fluent](https://www.jmag-international.com/coupled_analysis/ansys-fluent/) - [COSMAP](https://www.jmag-international.com/coupled_analysis/cosmap/) - [LMS imagine.Lab AMESim](https://www.jmag-international.com/coupled_analysis/amesim/) - [HEEDS](https://www.jmag-international.com/coupled_analysis/heeds/) - [Optimus](https://www.jmag-international.com/coupled_analysis/optimus/) - [modeFRONTIER](https://www.jmag-international.com/coupled_analysis/modefrontier/) - [Saber](https://www.jmag-international.com/coupled_analysis/saber/) - [NASTRAN](https://www.jmag-international.com/coupled_analysis/nastran/) - [FloTHERM](https://www.jmag-international.com/coupled_analysis/flotherm/) - [Ansys MotorCAD](https://www.jmag-international.com/coupled_analysis/ansys-motor-cad/) - [Ansys Mechanical](https://www.jmag-international.com/coupled_analysis/ansys-mechanical/) - [LMS Virtual.Lab](https://www.jmag-international.com/coupled_analysis/lms/) - [SPICE (includes LTspice)](https://www.jmag-international.com/coupled_analysis/spice/) - [Simufact](https://www.jmag-international.com/coupled_analysis/simufact/) - [Isight](https://www.jmag-international.com/coupled_analysis/isight/) - [Actran](https://www.jmag-international.com/coupled_analysis/actran/) ## Markets - [Automotive](https://www.jmag-international.com/markets/automotive/) - [Home Appliance](https://www.jmag-international.com/markets/homeappliance/) - [Digital Equipment](https://www.jmag-international.com/markets/digitalequipment/) - [Factory Automation](https://www.jmag-international.com/markets/factoryautomation/) - [Electric Power Facilities](https://www.jmag-international.com/markets/electricpowerfacilities/) - [Academic Field](https://www.jmag-international.com/markets/academia/) - [Other](https://www.jmag-international.com/markets/other/) - [Pump](https://www.jmag-international.com/markets/pump/) - [Electric Vehicle](https://www.jmag-international.com/markets/electric-vehicle/) - [Robotics](https://www.jmag-international.com/markets/robotics/) ## Products - [JMAG-Designer](https://www.jmag-international.com/product/designer/) - [JMAG-Express](https://www.jmag-international.com/product/express/) - [JMAG-RT](https://www.jmag-international.com/product/jmagrt/) - [JMAG-RT Viewer](https://www.jmag-international.com/product/rtviewer/) - [JMAG Design Explorer](https://www.jmag-international.com/product/design-explorer/) ## Technical Themes - [Large-Scale Processing](https://www.jmag-international.com/technicalthemes/large-scale-processing/) - [Design Exploration / Optimization](https://www.jmag-international.com/technicalthemes/design-exploration_optimization/) - [Material Modeling / Loss Analysis](https://www.jmag-international.com/technicalthemes/material-modeling_loss-analysis/) - [Multiphysics](https://www.jmag-international.com/technicalthemes/multiphysics/) - [MBD](https://www.jmag-international.com/technicalthemes/mbd/) - [Efficiency Map](https://www.jmag-international.com/technicalthemes/efficiency-map/) - [AI / Machine Learning](https://www.jmag-international.com/technicalthemes/ai_machine-learning/) ## Physical Phenomena - [Magnetic Field](https://www.jmag-international.com/physicalphenomena/magnetic-field/) - [Electric Field](https://www.jmag-international.com/physicalphenomena/electric-field/) - [Thermal](https://www.jmag-international.com/physicalphenomena/thermal/) - [Structural](https://www.jmag-international.com/physicalphenomena/structural/) - [Circuit / Control](https://www.jmag-international.com/physicalphenomena/circuit-control/) - [Material](https://www.jmag-international.com/physicalphenomena/material/) ## Functional - [Materials](https://www.jmag-international.com/functional/materials/) - [Meshing](https://www.jmag-international.com/functional/meshing/) - [User subroutine](https://www.jmag-international.com/functional/user-subroutine/) - [Running Analysis](https://www.jmag-international.com/functional/running-analysis/) - [Analysis Results](https://www.jmag-international.com/functional/analysis-results/) - [Tools](https://www.jmag-international.com/functional/tools/) - [Scripts](https://www.jmag-international.com/functional/scripts/) - [Projects / Models / Basic Settings](https://www.jmag-international.com/functional/pmb/) - [Circuits](https://www.jmag-international.com/functional/circuits/) - [JMAG-RT](https://www.jmag-international.com/functional/jmagrt/) - [Parametric Analysis / Optimization](https://www.jmag-international.com/functional/parametric/) - [Analysis Templates](https://www.jmag-international.com/functional/analysis-templates/) - [Analysis Conditions](https://www.jmag-international.com/functional/analysis-conditions/) - [Geometry](https://www.jmag-international.com/functional/geometry/)