Claims
- 1. A DC brushless motor comprising:
- an armature; and
- an interior permanent magnet rotor comprising:
- a rotor yoke having at least two main poles arranged on a periphery of said rotor and along a d-axis of said rotor;
- a slot with a radial-direction size of L.sub.m disposed on at least one of said main poles;
- a magnetic-field permanent magnet with an approximate thickness of L.sub.m disposed in said slot, and wherein L.sub.g is defined as a length of an air gap between said rotor and said armature, and wherein a relationship 0<L.sub.m +L.sub.g .ltoreq.2 mm is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2, and a q-axis inductance being greater than the d-axis inductance; and
- a protruding portion of said rotor yoke defining an auxiliary salient pole disposed between adjacent ones of said main poles on said rotor yoke and arranged along the q-axis of said rotor, and wherein said auxiliary salient pole and said armature are spaced apart by a predetermined air gap.
- 2. The DC brushless motor of claim 1, wherein D is defined as a maximum outer diameter of said rotor, and wherein a relationship 0<L.sub.m +L.sub.g .ltoreq.2D/51 is satisfied.
- 3. The DC brushless motor of claim 1, wherein said magnetic-field permanent magnet is polarized by an armature coil of said armature.
- 4. A DC brushless motor of claim 1, wherein a relationship 0.3 mm.ltoreq.L.sub.m +L.sub.g .ltoreq.2 mm is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2.
- 5. The DC brushless motor of claim 1, wherein a relationship 0.3 mm.ltoreq.L.sub.m +L.sub.g .ltoreq.1.3 mm is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2.
- 6. A DC brushless motor comprising:
- an armature; and
- an interior permanent magnet rotor comprising:
- a rotor yoke having at least two main poles arranged on a periphery of said rotor and along a d-axis of said rotor;
- a slot with a radial-direction size of L.sub.m disposed on at least one of said main poles;
- a magnetic-field permanent magnet with an approximate thickness of L.sub.m disposed in said slot, and wherein L.sub.g is defined as a length of an air gap between said rotor and said armature, and wherein D is defined as a maximum outer diameter of said rotor, and wherein the relationship 0<L.sub.m +L.sub.g .ltoreq.2D/51 is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2, and a q-axis inductance being greater than the d-axis inductance; and
- a protruding portion of said rotor yoke defining an auxiliary salient pole disposed between adjacent ones of said main poles on said rotor yoke and arranged along the q-axis of said rotor, and wherein said auxiliary salient pole and said armature are spaced apart by a predetermined air gap.
- 7. The DC brushless motor of claim 6, wherein said magnetic-field permanent magnet is polarized by an armature coil of said armature.
- 8. The DC brushless motor of claim 6, wherein a relationship 0.3 mm.ltoreq.L.sub.m +L.sub.g .ltoreq.2 mm is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2.
- 9. The DC brushless motor of claim 6, wherein a relationship 0.3 mm.ltoreq.L.sub.m +L.sub.g .ltoreq.1.3 mm is satisfied for increasing a maximum rotational speed to attain a speed increase ratio of at least 2.
Priority Claims (2)
Number |
Date |
Country |
Kind |
7-66577 |
Mar 1995 |
JPX |
|
8-2691 |
Jan 1996 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a divisional of U.S. patent application Ser. No. 08/620,633, filed Mar. 22, 1996; now U.S. Pat. No. 5,844,344, which is incorporated herein by reference in its entirety.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
3117350 |
May 1991 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
620633 |
Mar 1996 |
|