
Every magnetizing application requires a purpose-built coil or fixture to convert the magnetizer’s stored electrical energy into the required magnetic field. We design the magnetic circuit, conductor geometry, cooling and mechanical location around your part and target pole pattern.
Our fixture range covers axial, diametric, radial inner- and outer-multipole, axial face multipole, radial-ring and skewed magnetization. We also support misalignment magnetization and embedded magnetization for traditional, combined and spoke-type rotors.
Fixtures can be supplied as standalone tooling or integrated with magnetizing, magnetic-field testing and automated loading equipment for development laboratories and volume-production lines.
| Configuration | Typical components | Customization focus |
|---|---|---|
| Axial / diametric | Discs, rings and compact magnets | Field strength, working gap and part location |
| Radial multipole | Inner- or outer-magnetized rings and rotors | Pole count, pole pitch and angular accuracy |
| Axial face multipole | Flat rings, encoder magnets and couplings | Face pole pattern and transition control |
| Radial ring / skewed | Motor rotors and sensor rings | Skew angle, waveform and field uniformity |
| Embedded rotor | Traditional, combined and spoke rotors | Rotor geometry, loading method and cycle time |

The strongest permanent magnet material available today — the core choice for high-end manufacturing and precision instruments. Grades N35 to 45TH.
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Outstanding thermal stability and corrosion resistance, engineered for extreme environments with working temperatures up to 550 °C.
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Injection- and compression-molded into complex net shapes with high dimensional precision — ideal for automated assembly.
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