Analysis Conditions

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  1. Function Tutorials

    [JFT034] Eccentricity Setting for Parallelly Offsetting the Rotation Axis

    This document shows setting to move the rotation axis in parallel.

    • Function Tutorials

      [JFT035] Eccentricity Setting for Inclining the Motion Region Axis

      This document shows setting to tilt the motion region axis.

      • Function Tutorials

        [JFT036] Eccentricity Setting for Inclining the Rotation Axis

        This document shows setting to tilt the rotation axis.

        • Function Tutorials

          [JFT102] Setting 3D Model Coils Using the Winding Editor

          This document explains methods for setting the coils of a 3D model using the winding editor.

          • Function Tutorials

            [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.

            • Function Tutorials

              [JFT117] Parametric Analysis Method for Motors Possessing Wire Geometry with the Number of Poles and Slots as Design Variables

              This document describes the method for performing wire geometry parametric analysis for motors with the number of poles and the number of slots as design variables.

              • Function Tutorials

                [JFT090] Iron Loss Analysis Using a Play Model and Lamination Analysis (Excess Eddy Current Loss Taken Into Account)

                In this document, describes an analysis procedure for calculating iron loss using play model and lamination analysis that accounts for anomalous eddy current loss.

              • Function Tutorials

                [JFT087] Iron Loss Analysis Using Iron Loss Characteristics Data

                In this document, describes an analysis procedure for calculating iron loss using iron loss characteristics data.

              • Function Tutorials

                [JFT089] Iron Loss Analysis Using a Play Model and Lamination Analysis

                In this document, describes an analysis procedure for calculating iron loss using play model and lamination analysis.

              • Function Tutorials

                [JFT088] Iron Loss Analysis Using Iron Loss Characteristics Data (Isolation of Excess Eddy Current Loss)

                In this document, describes an analysis procedure for the isolation of anomalous eddy current loss, and calculating iron loss using iron loss characteristics data.

              • Function Tutorials

                [JFT091] Taking into Account Iron Loss in Magnetic Field Analysis

                In this document, describes an analysis procedure accounting for iron loss in magnetic field analysis.

              • Function Tutorials

                [JFT109] Comparing Efficiency Maps and Loading External Data

                Using a JMAG-Designer efficiency map study, this document describes the method for creating efficiency maps with external data as output and confirming the differences between tho…

              • Function Tutorials

                [JFT111] Accounting for Arbitrary Motions

                This document describes a method of accounting for arbitrary motions in the moving parts of electrical equipment.

              • Function Tutorials

                [JFT106] Multistage Analysis Using a Vector Potential Boundary Condition

                In this document, how to perform multistage analysis using a vector potential boundary condition is presented.

              • Function Tutorials

                [JFT081] Creating an Induction Motor Efficiency Map Using JMAG-Designer (Speed Priority Mode)

                In this document, how to create an efficiency map of an induction motor using an efficiency map study (speed priority mode) in JMAG-Designer is presented.

              • Function Tutorials

                [JFT078] Stopping an Analysis Automatically After Reaching Steady-State

                In this document, how to automatically stop analysis after steady-state is reached is presented.

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