
Torque & Motor Envelope
Material grade, geometry and magnetic circuit inputs are reviewed against the torque target and available motor space.
Application.
Custom permanent magnets for robot joints, servo systems and precision actuators, designed around motor size, torque target, thermal load and positioning requirements.
Application.
Robot joints and servo axes combine compact motor envelopes with dynamic loads and positioning requirements. We review magnet design against topology, duty cycle and assembly limits.

Material grade, geometry and magnetic circuit inputs are reviewed against the torque target and available motor space.

Material selection accounts for repeated starts, dynamic loads and heat buildup.

Pole strength, spacing and magnetization angle are reviewed as inputs to torque ripple and motion control.

Geometry and magnetization align with rotor interfaces, air-gap targets and assembly tolerances.

Inspection verifies pole strength, orientation and batch consistency from prototype to production.
Application.
Custom arc, ring and segmented geometries for compact rotors and controlled assembly.
Application.
Define topology, geometry, magnetization and assembly details for engineering review.
| Design Factor | Common Options |
|---|---|
| Motor Topology | Inner rotor, outer rotor, slotless, frameless, axial or radial flux |
| Assembly & Samples | Bonding, rotor kits, magnet assemblies, prototype and validation needs |
| Surface Protection | Coating or passivation selected for material and operating environment |
| Dimensional Tolerance | Drawing-based control for rotor fit, air gap and assembly interfaces |
| Working Temperature | Project operating range, duty cycle, cooling method, heat exposure |
| Magnetization | Radial, axial, diametrical, multipole or application-specific pole layouts |
| Magnet Shape | Arc segment, ring, segmented ring, block, custom geometry |

Send your motor layout, load profile and operating conditions for a focused engineering review.
Application.
Custom magnets for collaborative robots, industrial axes, servo systems and precision actuators, from prototype builds to repeat production.
Application.
We translate motor topology, load profile and assembly constraints into a manufacturable magnet specification.
We review motor topology, torque profile, duty cycle, temperature and available space.
We align material, pole layout, geometry, air gap and rotor assembly interfaces.
We produce samples and inspection data for fit, magnetic output and assembly checks.
We control dimensions, pole consistency, magnetization, surface condition and traceability.

Share your CAD, motor topology and operating conditions. We will review a practical magnet and assembly route.