Europe + US / motor engineering

Compact motors, designed around the real load.

We help robotics, drone, pump, and industrial teams move from a difficult motor requirement to a tested prototype.

250 W–5 kW
Initial design range
Axial flux
PCB-stator expertise
Measured
Prototype evidence

One loop, two products

Engineering work becomes design intelligence.

01

Specify

Translate torque, speed, voltage, envelope, duty cycle, cooling, and cost into a controlled motor brief.

02

Design

Compare axial-flux topologies, electromagnetic tradeoffs, thermal paths, mechanics, and manufacturability.

03

Prove

Build the prototype, measure it under load, and feed the evidence back into the next design.

Ways to work together

Start with the risk you need removed.

Design to prototype

Motor development

Electromagnetic design, PCB stator, rotor and housing CAD, manufacturing package, assembly, and loaded testing.

250 W–5 kWOriginal source files
Discuss your motor

For repeat programs

Design workbench

A structured workflow for teams that need several motor variants, revision control, simulation, and test-data feedback.

Private betaBuilt around your data
Join the conversation

First engineering tool

Check the operating point before the CAD.

Ideal first-pass sizing only. It does not replace electromagnetic, thermal, mechanical, or safety validation.

Continuous torque2.39 N m
Approx. DC input current23.15 A
Angular speed418.88 rad/s

Change an input to update the estimate.

Project intake

Bring the hard constraints.

Tell us what the motor must do. We will reply with the right next step, not a generic brochure.

No confidential design files required at this stage.