Sintered SmCo Magnet
Sintered samarium-cobalt (SmCo) magnets retain stable magnetic performance at temperatures up to 350°C and offer natural corrosion resistance. They are suitable for aerospace, automotive sensors, motors, medical devices and other demanding applications.
- High maximum operating temperature (up to 350°C; special grades above 350°C upon review)
- Natural corrosion and oxidation resistance; coating optional for harsh environments
- Low temperature coefficient of magnetic properties
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Bonded SmCo Magnet
Bonded SmCo magnets are produced by combining SmCo powder with a binder. They enable thinner walls, complex geometries and tighter dimensional tolerances than sintered magnets, with isotropic or anisotropic options available.
- Complex and thin-walled shapes possible
- Tighter dimensional tolerances than typical sintered magnets
- Isotropic and anisotropic grades available
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Sintered NdFeB Magnet
Sintered neodymium-iron-boron (NdFeB) magnets offer the highest maximum energy product among commercial permanent magnets. They enable compact, high-torque motors and strong magnetic assemblies, but generally require protective coatings to prevent corrosion.
- Highest maximum energy product among commercial permanent magnets
- Enables compact motor and actuator designs
- Wide range of commercial grades and coatings
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Bonded NdFeB Magnet
Bonded NdFeB magnets are made by mixing NdFeB powder with a polymer binder and molding into net-shape or near-net-shape parts. They are well suited for complex geometries, tight tolerances, multi-pole magnetization and weight-sensitive assemblies.
- Net-shape and near-net-shape molding reduces machining
- Complex geometries and multi-pole magnetization possible
- Tighter tolerances than typical sintered NdFeB
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Hot-Pressed NdFeB Magnet
Hot-pressed NdFeB magnets are produced by compacting and densifying NdFeB material at elevated temperatures. They can achieve high density and are often used for near-net-shape rings, segments and complex profiles where machining sintered magnets is difficult.
- High density and good mechanical properties
- Near-net-shape rings and segments
- Option for radial or multipole magnetization depending on geometry
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Hard Ferrite Magnet
Hard ferrite (ceramic) permanent magnets are widely used in motors, speakers, sensors and household appliances. They offer good corrosion resistance, electrical insulation and stable performance at moderate cost.
- Excellent corrosion resistance; often used uncoated
- Good electrical resistivity
- Cost-effective for high-volume motor and appliance applications
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Soft Ferrite Core
Soft ferrite is not a permanent magnet; it is a soft magnetic material used in transformers, inductors, chokes, antennas and EMI suppression cores. Selection depends on frequency, permeability, core loss and operating temperature.
- High electrical resistivity reduces eddy-current losses
- Low coercivity and high permeability
- Suitable for power electronics, RF and EMI filters
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