Electromagnetic FEA and Efficiency Simulation for Custom Motor Topologies
Pain Points (Public)
Hardware teams developing novel electric motor architectures—such as unconventional stator interlocking or modular winding schemes—often lack specialized in-house electromagnetic modeling expertise and high-end software licenses, preventing them from quickly evaluating core saturation, torque ripple, and thermal-efficiency maps before investing in expensive prototype tooling.
Suggested Approach (Public)
Deliver fast-turnaround 2D and 3D electromagnetic finite element analysis (FEA) using ANSYS Maxwell, importing concept CAD files to model transient magnetic flux paths, core/copper losses, and cogging torque, and providing quantified geometric adjustments to optimize efficiency ahead of physical fabrication.
Metrics (Public)
Statistics window:Weekly(2026-08-27) · Data updated:2026-08-27
Opportunity assessment PRO
Development brief PRO
- Position as a specialized rapid-turnaround electromagnetic analysis service and workflow tool for non-standard electric motor concepts such as 'Tab-and-Stab' stator interlocking.
- Develop parameterized CAD/FEA input parsers capable of ingesting novel modular stator geometry and winding definitions.
Competitor evidence PRO
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