
Injection Molded Ferrite Radial Magnetic Ring
Ferrite Injection Molded Multi-pole Radial Ring is a new type of ring magnet created using advanced technology. Surface magnetic flux can be increased by 50%-100% using this technology, compared to arc magnets and radial ring magnets. The surface flux is distributed using a sine wave. Because of its high surface gauss, it can significantly improve motor efficiency, as well as make the motor lighter and save raw materials. As a result, it is an excellent choice for high-performance motors.
Injection Molded Ferrite Radial Magnetic Ring
Ferrite Injection Molded Multi-pole Radial Ring is a new type of ring magnet created using advanced technology. Surface magnetic flux can be increased by 50%-100% using this technology, compared to arc magnets and radial ring magnets. The surface flux is distributed using a sine wave. Because of its high surface gauss, it can significantly improve motor efficiency, as well as make the motor lighter and save raw materials. As a result, it is an excellent choice for high-performance motors.

Product Features
Ferrite Radial Magnetic rings are reshaping the permanent magnet space for synchronous motors, stepping motors, and DC brushless motors, which are widely used in automotive, computers, electronics, communications, office, school equipment, and everyday household products. Until recently, full magnetic rings were made of individual magnets that were joined together to form the desired ring shape. New technology now allows for the production of super-strong, one-piece multi-pole radial magnetic rings.

Advantage:
1. Greater flux density
2.The motor shaft can be made of a non-magnetic material to reduce motor weight without sacrificing magnet performance.
3.Increased use of permanent magnets
4.Motor assembly is simplified by installing one or more rings rather than gluing arcs into place.
5.Radial sintering ensures that there are no "weak spots."
6.Because magnets are multi-poled, the ring has no effect on their magnetic properties.
7.The radial orientation produces a super strong magnet due to superior metallurgy developed specifically for radial orientation.
Innovation
Combining nanocrystalline base powders, pressing the resulting material, and then baking or sintering the resulting ring to achieve a radially magnetized product are the steps in this process. This new technology improves magnetic flux, resulting in increased efficiency and performance.
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