Basic Characteristic Analysis

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  1. [JAC156] Segregation Analysis of Torque Components for an IPM Motor

    In this Application Note, the torque components are separated and the magnetic flux density distributions created by each magnetomotive force are confirmed.

  2. Novel Design of Flux-Intensifying Interior Permanent Magnet Synchronous Machine

    Yuichi Shibukawa, Nissan Motor Co., Ltd.

  3. Development of Bicycle Generator Hub Dynamo Using JMAG

    Takeshi Fujiwara, SHIMANO INC.

  4. Development of a Ferrite Permanent Magnet Axial Gap Motor with Segmented Rotor Structure

    Masatsugu Takemoto, Hokkaido University

  5. Researches on the Behavior of Vibration and Noise of an IPM Motor on HEV

    Zeng Jinling, CHINA FAW CORPORATION LIMITED R&D CENTER

  6. Multiscale Noise and Vibration models for a Switched Reluctance-based drivetrain for EV and HEV

    Koen De Langhe, LMS International

  7. Design of Switched Reluctance Motor by JMAG for Automotive traction application

    Yusuke Makino, NIDEC CORPORATION

  8. Approach of electromagnetic-field analysis in digital AV equipment

    Hirotsugu Fusayasu, Panasonic Corporation

  9. Evaluation of Different Electrical Steels and Iron Loss evaluation of inter-locks vs welds vs bonded lamination cores in IPM Hybrid Motor using JMAG.

    Charles R. Frontczak, Tempel Steel Company

  10. Efficient 3-dimensional optimization technology for high-precise magnetic rotation angle sensor

    Takaomi Kojima, Tamagawa-Seiki Co., Ltd.

  11. Creating Simulation Models based on Measuring Results of Brushed DC-Motors using JMAG-Designerr

    Matthias SCHONDELING, Valeo Wiper System, Bietigheim

  12. Development of the IPM motor using JMAG-SuperExpress

    Takashi Ogawa, Panasonic Corporation,Appliances Company

  13. Evaluation of Different Electrical Steels in IPM Hybrid Rotating Machines

    C.R. Frontczak,Tempel

  14. Designing Novel Brushless Doubly Fed Machines Using JMAG

    Andy Knight, University of Alberta

  15. Finite Elements performance evaluation of a Transverse Flux Machine using Somaloy 500 1P, 700 3P and 5P

    Cristofaro Pompermaier, HÖganÄs AB

  16. Easy Simulation Method of the Inductor Devices.

    Hidenori Uematsu, Panasonic Corporation Automotive & Industrial Systems Company

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