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  1. [RTML-013] PMSM/IPM Constant rating 10(kW) 3-phase

    Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 106(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(Vshaped) | Average torque: 23(N·m)

  2. IMS Co., Ltd.

    Since its founding, IMS Co., Ltd. has continued to support advanced technology development of magnetic application products.

  3. TODA RACING Co., Ltd.

    TODA RACING Co., LTD is focused on parts manufacturing, prototyping, and test stands mainly for racing.We continue to undertake challenges with the motto of "Transforming Automoti…

  4. [JAC070] Analysis of Impedance-Frequency Characteristics of a Cable

    This Application Note explains how to obtain the frequency characteristics of the resistance and inductance in twisted pair cables.

  5. [JAC239] Fault Analysis in an IPM Motor

    In this example, we introduce the case study that simulate the fault of an IPM motor using JMAG-RT. The fault simulated in this case study is an open circuit fault which is caused…

  6. [RTML-023] PMSM/IPM Constant rating 10(kW) 3-phase

    Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 33(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: IPM(flat) | Average torque: 23(N·m)

  7. MEIDENSHA CORPORATION

    Stimulating the Expansion and Reinforcement of the Business Domain with JMAG

  8. From Customer Specification to Prototyping: Three-dimensional Finite Element Simulation for Axial Flux Machines Constructed from Soft Magnetic Composite M…

    Steven Jordan, Höganäs AB

  9. Togami Electric Mfg. Co., Ltd.

    Building on tradition, the Togami Electric Mfg. Co., Ltd., a manufacturer of power distribution and control equipment, makes use of their creativity and ingenuity to evolve with s…

  10. Mazda Motor Corporation

    Using Simulation to Support Automobile Evolution
    – JMAG, the de facto tool that anticipates the widespread use of electrical devices –

  11. [RTML-012] PMSM/SPM Constant rating 1(kW) 3-phase

    Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 16(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.5(N·m)

  12. [RTML-009] PMSM/SPM Constant rating 1(kW) 3-phase

    Type: PMSM | Max Power: 1(kW) | Stator(Outside Diameter): 115(mm) | Height: 14(mm) | Voltage/Current: DC100(V)/20(A) | Rotor/Mover: SPM | Average torque: 3.6(N·m)

  13. Simulation of Magnetization for Anisotropic Rare-Earth Bonded Magnets

    Rie Yoshida, NICHIA CORPORATION

  14. [RTML-015] PMSM/SPM Constant rating 10(kW) 3-phase

    Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 115(mm) | Height: 83(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 23(N·m)

  15. [RTML-021] PMSM/SPM Constant rating 10(kW) 3-phase

    Type: PMSM | Max Power: 10(kW) | Stator(Outside Diameter): 185(mm) | Height: 27(mm) | Voltage/Current: DC240(V)/60(A) | Rotor/Mover: SPM | Average torque: 23(N·m)

  16. [W-MO-85] Efficiency Map Evaluations Considering Harmonic Loss

    In this paper, we propose a method that combines two approaches to calculate the efficiency at various operating points considering the influence of time harmonics and other effec…

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