N-T Characteristic Analysis / T-I Characteristic Analysis

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  1. [JAC056] Torque Characteristics Analysis of a Self Starting Type Permanent Magnet Motor

    This Application Note shows how to obtain the current density distribution and slip versus torque curve.

  2. [JAC119] Torque Characteristic Analysis of a Three Phase Wound Rotor Induction Motor

    This Application Note shows how to obtain the current density distribution and slip-torque curve.

  3. [JAC095] Analysis of a Universal Motor

    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 distri…

  4. [JAC068] Speed Versus Torque Characteristic Analysis of a Three-Phase Induction Motor

    This Application Note explains an analysis that confirms the Speed-Torque curve and current density distribution of an induction motor.

  5. [JAC063] Analysis of Torque Characteristics of a Cage Induction Motor

    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…

  6. Development of the In-wheel Multipolar SR motor for an Electric Vehicle based on Magnetic Circuit Method

    Kenji Nakamura, Tohoku University

  7. The Axial Air Gap Permanent Magnet Motor for Air Conditioners

    Takushi Fujioka, FUJITSU GENERAL LIMITED

  8. [JAC001] Torque Characteristic Analysis of a Three Phase Induction Motor

    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.

  9. [JAC003] Analysis of a Permanent Magnet Brush Motor

    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 de…

  10. Practical Use of Connected Electro-circuit Simulation with Electromagnetic Analysis in the Development of Robot Actuator

    Takeo Kishida, Sony Corporation

  11. Simulation of Performance Test fo Direct Gurrent Brush-less Motor by FEM

    Aoki Koushi, MITSUBA Corporation

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