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[JAC219] Axial Gap Type Motor Cogging Torque Analysis
In this example, presents an example of cogging torque analysis of an axial gap type motor.
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[JAC293] Axial Gap Motor Geometry Optimization Using Surrogate Models
DATAFile nameSize (KB)Application NoteJAC293AXIAL-Optmization-SurrogateModel-e.zip738Model DataJMAG-Designer 24.0JAC293AXIAL-Optmization-SurrogateModel-d.zip11,212Case
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[JAC303] Geometry Optimization of a Motor Considering Vibration at System-level
DATAFile nameSize (KB)Application NoteJAC303IPM-NVHOptimization-e.zip820Model DataJMAG-Designer 24.0JAC303IPM-NVHOptimization-d.zip20,684Case
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[JAC293] Axial Gap Motor Geometry Optimization Using Surrogate Models
In this example, the dimensions of an axial gap motor are optimized by using surrogate models, then the Pareto curves and the effect of reduction in calculation times when using s…
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[JAC015] Cogging Torque Analysis of an SPM Motor with a Step Skewed Magnet
DATAFile nameSize (KB)Application NoteJAC015SPM-Stepskew-e.zip745Model DataJMAG-Designer 23.1JAC015SPM-Stepskew-d.zip1,878Case
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[JAC015] Cogging Torque Analysis of an SPM Motor with a Step Skewed Magnet
This Application Note presents the use of magnetic field analysis to evaluate the magnetic flux density distribution and cogging torque in each part of an SPM motor with a step sk…
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[JAC294] Design Exploration of Wound-Field Synchronous Motors, Including Evaluating Part Temperature and Stress
In this example, the efficiency map, part temperature, and stress, are evaluated at the same time for the motor design plan, and a design plan that meets the requirements is explo…
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[JAC303] Geometry Optimization of a Motor Considering Vibration at System-level
In this document, the dimensional optimization of a single motor is performed to minimize the vibration at the system level.
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[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
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[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
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[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…
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[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
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[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.
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[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
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[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.
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[JAC241] Single-Phase Synchronous Motor N-T-I Characteristics Analysis
DATAFile nameSize (KB)Application NoteJAC241SinglePhaseSM-e.zip591Model DataJMAG-Designer 23.0JAC241SinglePhaseSM-d.zip383Case


