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Transient Magnetic (2D/Axisymmetric)

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  1. [JFT142] Creating Shapes Using a Local Coordinate System

    This document describes the method for using local coordinate systems to create shapes and changing the shapes parametrically.

    • [JFT135] Distributed Execution of Topology Optimization Calculation Using SSH

      This document describes how to perform topology optimization calculations with the on/off method on a Linux remote machine via SSH.

    • [JFT147] Creating a Lookup Table Using Parametric Analysis

      This document explains how to run parametric analysis in JMAG-Designer and register it as a lookup table for MATLAB.

      • [RTML-043] SRM_01 3-phase

        Type: SRM | Max Power: 0.5(kW) | Stator(Outside Diameter): 160(mm) | Height: 75(mm) | Voltage: DC150(V) | Rotor/Mover: RM

      • [JFT138] Creating Vector Expression Data and Using Vector Expressions

        This document describes creating vector expression data prior to executing analysis, and the method for creating vector expressions based on that information.

        • [JFT137] Current Restraints using Conditional Branches of Equation

          This document explains how to restrain current value that is fed into the coils when geometry and electric resistance change.

          • [JFT144] Flux Linkage Calculations in a Specified Position

            This document explains the procedure to set user-selected points in air regions and calculate flux linkage at these points.

            • [JFT141] JMAG-RT Model Data File Creation Function in JMAG-Designer

              This document will show you how to export the efficiency map/loss map obtained in JMAG as a JMAG-RT model data file and to check the plot in JMAG RT-Viewer.

            • [JFT145] How to Arrange Windings That Are in Parallel Circuits on Specified Layers

              This document explains the procedure on how to set series-parallels of coils and switch the position in slots.

              • [RTML-050] PMSM/IPM 3-Phases Delta

                Type: PMSM | Power: 150(W) | Stator(Outside Diameter): 112(mm) | Height: 65(mm) | Voltage/Current: DC24(V)/4(A) | Rotor/Mover: IPM

              • [RTML-049] PMSM/IPM Constant rating 75(kW) 3-phase Resolver

                Type: PMSM | Power: 75(kW) | Stator(Outside Diameter): 212(mm) | Height: 200(mm) | Voltage/Current: DC600(V)/250(A) | Rotor/Mover: IPM

              • [RTML-048] WFSM_02

                Type: WFSM | Max Power: 2(kW) | Stator(Outside Diameter): 260(mm) | Height: 60(mm) | Voltage/Current: DC200(V)/20(A),DC100(V)/10(A) | Rotor/Mover: WF | Number of Phases: 6

              • [JAC264] Creating 6-Phase IPM Motor Efficiency Maps

                In this example, the efficiency map of a 6-phase IPM motor is created with loss ratios at each operating point also evaluated.

              • [JAC210] Torque Decoupling of In-out Magnet Coupling

                This document, presents an analysis for finding holding torque and an analysis for transient response during torque decoupling.

              • [JAC265] Creating Synchronous Reluctance Motor Efficiency Maps

                In this example, the efficiency map of a synchronous reluctance motor is created with loss ratios at each operating point also evaluated.

              • [JAC276] Six-Phase IPM Motor Harmonic Iron Loss Analysis

                In this example, confirming the effects of carrier harmonics on the iron loss of a six-phase IPM motor are explained here.

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