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  1. [JAC294] Design Exploration of Wound-Field Synchronous Motors, Including Evaluating Part Temperature and Stress

    DATAFile nameSize (KB)Application NoteJAC294WFSM-MultipysicsEvaluation-e.pdf382Model DataJMAG-Designer 24.0JAC294WFSM-MultipysicsEvaluation-d.zip2,769Case

    • [JAC219] Axial Gap Type Motor Cogging Torque Analysis

      DATAFile nameSize (KB)Application NoteJAC219AXIAL-Cogging-e.zip1,113Model DataJMAG-Designer 24.0JAC219AXIAL-Cogging-d.zip3,603Case

      • [JAC267] IPM Motor Topology Optimization Using the Density Method

        Magnetic field and structural coupled analysis is run in this example. While accounting for rotor core strength, topology optimization that uses the density method is used to perf…

      • [JAC267] IPM Motor Topology Optimization Using the Density Method

        DATAFile nameSize (KB)Application NoteJAC267IPM-TopologyOptDensity-e.zip802Model DataJMAG-Designer 22.2JAC267IPM-TopologyOptDensity-d.zip1,352Case

        • [JAC246] Analysis of Electromagnetic Force Acting Between a Coil and a Magnet

          This case study obtains electromagnetic force acting between a coil and magnet using the electromagnetic force calculation correction method and the adaptive mesh function.

        • [JAC246] Analysis of Electromagnetic Force Acting Between a Coil and a Magnet

          DATAFile nameSize (KB)Application NoteJAC246ForceBalance-e.zip432Model DataJMAG-Designer 23.0JAC246ForceBalance-d.zip216Case

          • [JAC241] Single-Phase Synchronous Motor N-T-I Characteristics Analysis

            In this example, a use case in which the N-T-I characteristics for a single-phase synchronous motor are obtained is presented.

          • [JAC241] Single-Phase Synchronous Motor N-T-I Characteristics Analysis

            DATAFile nameSize (KB)Application NoteJAC241SinglePhaseSM-e.zip591Model DataJMAG-Designer 23.0JAC241SinglePhaseSM-d.zip383Case

            • [JAC298] Analysis of an SPM Motor Taking into Account the Effects of Layer Shorts

              DATAFile nameSize (KB)Application NoteJAC298SPM-InterTurnShortLoss-e.zip1,070Model DataJMAG-Designer 22.2JAC298SPM-InterTurnShortLoss-d.zip1,467Case

              • [JAC298] Analysis of an SPM Motor Taking into Account the Effects of Layer Shorts

                OverviewDeterioration in the coil insulation may cause a short circuit between adjacent coil layers (layer short). A short-circuit current flowing when the winding has a layer sho…

              • [JAC008] Analysis of an Axial Gap Motor

                DATAFile nameSize (KB)Application NoteJAC008AXIAL-e.zip636Model DataJMAG-Designer 18.1JAC008AXIAL-d.zip8,948Case

                • [JAC300] Electromagnetic Excitation Force Analysis of an SPM Motor with Step Skew

                  This case study runs a magnetic field analysis of an SPM motor with step skew to obtain the electromagnetic force acting on the teeth of the stator core to verify the electromagne…

                • [JAC299] Inverter Changeover Control for an Open-end Winding Motor (Wound-Field Synchronous Motor)

                  This case study runs a circuit simulation of an open-end winding motor drive system that switches from using a single inverter to dual inverters during operation in order to mitig…

                • [JAC299] Inverter Changeover Control for an Open-end Winding Motor (Wound-Field Synchronous Motor)

                  DATADownload FileFile nameSize (KB)Application NoteSingle DownloadJAC299WFSM-OpenendWinding-RT-e.zip814Model DataJMAG-Designer 23.2MATLAB/Simulink R2024aSingle DownloadJAC299WFSM-…

                  • [JAC300] Electromagnetic Excitation Force Analysis of an SPM Motor with Step Skew

                    DATAFile nameSize (KB)Application NoteJAC300SPM-StepskewExcitationForce-e.zip862Model DataJMAG-Designer 23.2JAC300SPM-StepskewExcitationForce-d.zip1,046Case

                    • [JAC290] Design Exploration of IPM Motors, Including Evaluating Part Temperature, Stress, and the Presence of Electric Breakdown

                      In this example, the part temperature and stress are evaluated at the same time for the motor design plan, and a design plan that meets the requirements is explored.

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