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  1. [L-MU-07]Multiphysics Analysis by Linking with Specialized Tools

    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 poss…

  2. [L-MO-89]JMAG-Express Motor Design Tool

    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 fin…

  3. [L-MO-90] Detailed Coil Modelling for Motors

    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. I…

  4. [L-HU-01] High Performance Parallel Solver Analyzing Complex Phenomena in Rotating Machines As Is

    JMAG's high parallel solver exhibits high performance and has answers to a wide range of problems for in practice.

  5. [L-MU-110] Reaching Steady-State at an Early Stage Using a Control Circuit Containing a JMAG-RT Model

    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 …

  6. [L-MA-04] New & Improved Iron Loss Analysis Function

    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.

  7. [L-MO-115] Performance Evaluation of Induction Motors Using Efficiency Maps

    To analyze an induction motor's maximum efficiency, the voltage and slip is varied to find the combination with the highest efficiency.

  8. [L-HU-08] Complex 3D Models to FEA Models Within Short Timeframes

    Amounts of processing required will increase proportionately to the number of parts. By applying parallel processing, mesher processing speed increases, and mesh generation time i…

  9. [L-HU-43] Many Cores Supported by Desktop Parallel Solver SMP

    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) …

  10. [L-MB-79] Accounting for Circuit Coupling Functions with Control Systems

    In order to evaluate transitional response characteristics within magnetic design, there are situations where control systems must be accounted for, as well as basic characteristi…

  11. [L-OP-78]User-Defined Geometry Library

    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 …

    • [L-SE-81]Mesh Verifications at Higher Speeds

      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-proces…

    • [L-MB-82]FEA Models to Plant Models within Short Time Periods

      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 capab…

    • [L-MO-105] System Design with Model-based Efficiency Map (Speed Priority Mode)

      Electrical Vehicle drive require high efficiency of 95% or more over a wide operating range.

    • [L-MO-106] Prototype and Performance Evaluation with Model-based Efficiency Map (Accuracy Priority Mode)

      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…

    • [L-MB-33]Supporting Motor Drive Development with a JMAG-MATLAB/Simulink Coupling

      Together with Mathworks, the company that develops MATLAB/Simulink (hereafter referred to as "Simulink"), JMAG strongly supports model-based development (hereafter referred to as …

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