Permanent Magnetic Motor Parts of Inner Rotor or Outer Rotor

Short Description:

Magnet material: NdFeB / SmCo / Ferrite

Magnet grade: Customizable

Size: Customizable

Coating: Customizable


Product Detail

Product Tags

Product Description

Magnetic Motor Parts, which are made from segment magnets glued to the inside or outside of the steel sleeve, are an important part of motors named rotors. These motor parts are widely used in stepping motors, BLDC motors, PM motors, and other motor applications.

EAGLE assembled magnetic motor parts as rotor and stator with glued permanent magnets and metal body according to customers' requirements. We have a modern assembly line and first-rate machining equipment, including the CNC lathe, internal grinder, plain grinder, milling machine, etc. The magnetic motor parts we offer are applied to the servo motor, linear motor and PM motor, etc.

Material Neodymium / SmCo / Ferrite Magnet
Certification ROHS
Size Customized magnet size
Tolerance ±0.05mm
Description Motor magnets

Applications

These motor parts are widely used in stepping motors, BLDC motors, PM motors, and other motor applications.

Permanent-Outer-Rotor

DK Series: Outer rotor

Item code

House

Magnet

OD (mm)

L (mm)

Magnet type

Poles number

DKN66-06

66

101.6

NdFeB

6

DKS26

26.1

45.2

SmCo

2

DKS30

30

30

SmCo

2

DKS32

32

42.8

SmCo

2

DFK82/04

82

148.39

Ferrite

2

DKF90/02

90

161.47

Ferrite

2

Permanent-Inner-Rotor

DZ Series: Inner rotor

Item code

House

Magnet

OD (mm)

L (mm)

Magnet type

Poles number

DZN24-14

14.88

13.5

NdFeB

14

DZN24-14A

14.88

21.5

NdFeB

14

DZN24-14B

14.88

26.3

NdFeB

14

DZN66.5-08

66.5

24.84

NdFeB

8

DZN90-06A

90

30

NdFeB

6

DZS24-14

17.09

13.59

SmCo

14

DZS24-14A

14.55

13.59

SmCo

14

The magnetic rotor or permanent magnet rotor is the nonstationary part of a motor. The rotor is the moving part in an electric motor, generator, and more. Magnetic rotors are designed with multiple poles. Each pole alternates in polarity (north & south). Opposite poles rotate about a central point or axis (basically, a shaft is located in the middle). This is the principal design for rotors.


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