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Time Harmonic Magnetic (2D/3D)
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[JAC278] Creating Six-Phase Induction Motor Efficiency Maps
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.
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[JAC224] Wireless Power Transfer Device Stray Loss Analysis
In this example, an example is presented investigating by using electromagnetic field analysis whether stray loss can be suppressed using an aluminum shield.
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[JAC233] Induction Heating Coil Optimization
In this example, an example of using an optimization function to design a coil to use for induction hardening a gear is presented.
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[JAC217] Creating Efficiency Maps for 3-Phase Induction Motors
In this example, the use of JMAG-RT Viewer to create efficiency maps for three-phase induction motors when drive temperatures change.
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[JAC113] Power Transmission Analysis of a Wireless Power Transfer System with Opposing Cores
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 refer…
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[JAC032] Analysis of a Transformer
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.
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3D Magnetic Field Analysis of Large Power Transformer Using Transient Analysis
Yasuhisa Ito, MEIDENSHA CORPORATION
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The Need for Large-Scale Calculations in Induction Heating
Ayaka Nakata, KOYO THERMO SYSTEMS CO.,LTD.
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Practical Power Circuit Design of Power Electronics Equipment and Analysis Evaluation of Power Inductors
Tatsuya Hosotani, Murata Manufacturing Co., Ltd.
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Study of Optimum IH Coil Design for the Improved Induction Hardening Pattern
Masaomi Kawabe, TAKAO KOGYO Co.,Ltd.
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JMAG Analysis of Spot Induction Heating to Design a Soldering Head
Takeshi Usuda, S-FINX Technologies
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Improvement of Calculation Model on Induction Motors
Daisuke Sato, Nagaoka Motor Development Co., Ltd.
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[JFT073] Current Control with Induction Heating Work Temperature as Feedback Using User Subroutines
This document explains how to control work piece surface temperature by using user subroutines and the coil current amplitude as a manipulated variable.
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Development of a Wireless Power Transfer System for Railway Vehicles Using JMAG
Keigo Ukita, Railway Technical Research Institute
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Design of Three-Phase Wireless Power Transfer System with 12 Coils
Daisuke Sato, Nagaoka Motor Development Co., Ltd.
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Improvement of Convergence in 3D Magnetic Field Analysis of Large Power Transformer
Yasuhisa Ito, MEIDENSHA CORPORATION