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Want to boost efficiency and torque density in your e-motor designs?Ā Our e-stamping technologies deliver scalable precision and stable performance from prototype to production. Letās discuss your project!
E‑motor performance starts in the stack. Our advanced technologies enable scalable, high‑precision manufacturing of rotors and stators for complete e‑motor cores.
E‑motor performance starts in the stack. Our advanced technologies enable scalable, high‑precision manufacturing of rotors and stators for complete e‑motor cores.
See how precision laminations boost torque density, efficiency and compactness. Our engineering expertise turns complex designs into stable, scalable core assemblies.
Every eāmotor has unique performance goals. Our eBook shows how geometry, bonding, and process precision meet them across industries.
Our e‑motor technologies ensure precise geometry, stable bonding, and uniform thermal
behavior - delivering consistent torque and reliability in high‑volume production.
High flexibility for rapid prototyping and lamination geometry validation with minimal thermal distortion.
Tight tolerances and smooth edges for optimal magnetic flux paths and repeatable lamination quality in high-volume production.
Automated stacking systems ensure precise alignment, consistent layer pressure, and stable mechanical integrity.
Uniform adhesive joining that reduces vibration, noise, and thermal stress.
Precise encapsulation of rotor and stator assemblies for enhanced rigidity, heat transfer, and dimensional accuracy.
Controlled heat treatment process that cures bonding layers, stabilizes insulation coatings, and improves long-term stack durability.
From traction drives to servo and HVAC motors, our technologies balance torque,
NVH, and efficiency for dependable performance.
Compact, high-precision servo drives and robot actuators designed for low inertia, high torque, and smooth control.
Traction, auxiliary, and interior e-motors engineered for maximum torque density, low losses, and reduced weight.
Energy-efficient e-motors for compressors, pumps, and cooling fans with stable thermal and acoustic performance.
We combine precision processes with automation to boost efficiency, torque, and compactness - ensuring repeatable performance and design flexibility.
Smooth lamination edges reduce magnetic and eddy-current losses.
Optimized geometry and tight tolerances enable compact, high-output designs.
Precision manufacturing and thin-gauge laminations allow smaller, lighter e-motor assemblies.
Controlled bonding and stack rigidity enhance heat dissipation and motor lifespan.
glulockĀ® bonding minimizes vibration and resonance within the stack.
Automated inspection ensures identical tolerances from prototype to volume series.
Design & Engineering Fundamentals
Manufacturing Technologies & Processes
Industry-Specific Applications
Every eāmotor project starts with a target - higher torque, lower losses, or a smaller footprint. Our engineers collaborate directly with OEM and supplier teams to turn complex designs into scalable, repeatable production.
Want to boost efficiency and torque density in your e-motor designs?Ā Our e-stamping technologies deliver scalable precision and stable performance from prototype to production. Letās discuss your project!
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