Induction Motor

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  1. [JAC154] Calculation of Equivalent Circuit Parameters in a Three-Phase Induction Motor

    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…

  2. [JAC161] Line Start Analysis of a Three-phase Induction Machine

    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.

  3. [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.

  4. [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.

  5. [JAC074] Speed Versus Torque Analysis of a Single-Phase Induction Motor

    This Application Note explains how to obtain the current density distribution and Speed-Torque curve created by auxiliary winding that uses a capacitor.

  6. [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.

  7. [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…

  8. [JAC039] Torque Analysis of a Three Phase Induction Motor Accounting for the Skew

    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…

  9. [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.

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