Claims
- 1. A q-phase reluctance type motor comprising:a rotor having 2n rotor protrusions with an arc angle X°; a stator having 2m stator protrusions with an arc angle Y° and m pairs of exciting coils, each of said exciting coils being disposed around one of said stator protrusions, the exciting coils in each of said pairs being spaced apart at 180° in mechanical angle; and a driver for sequentially energizing said exciting coils at intervals of 360°/(2n x q), wherein q≧5, X°, Y°>360°/(n×q), X°+Y°=180°/n−α°, where α° is a counter torque marginal angle which is larger than 0, and n and m are positive integers.
- 2. A q-phase reluctance type motor including a rotor having 2n rotor protrusions with an arc angle X°, a stator having 2m stator protrusions with an arc angle Y°, m pairs of exciting coils and a driver configured to sequentially energize said exciting coils in such a way that, at any given time, two adjacent pairs of said exciting coils are energized, whereineach of said pairs of exciting coils is disposed around one of said stator protrusions, the exciting coils in each of said pairs being spaced apart at 180° in mechanical angle, and q≧5, X°, Y°>360°/(n×q), X°+Y°=180°/N×α°, where α° is a counter torque marginal angle which is larger than 0, and n and m are positive integers.
- 3. The reluctance type motor as claimed in claim 2, whereinat least one of said rotor protrusions and stator protrusions have a plurality of slits.
- 4. The reluctance type motor as claimed in claim 2, whereineach of said stator protrusions has a base portion that is wider than portions of said stator protrusions other than said base portion.
- 5. The reluctance type motor as claimed in claim 2, wherein,said driver energizes said exciting coils at intervals of 360°/(2n×q).
- 6. A method of driving a q-phase reluctance type motor including a rotor having 2n rotor protrusions with an arc angle X°, a stator having 2m stator protrusions with an arc angle Y° and m pairs of exciting coils, wherein each of said pairs of exciting coils is disposed around one of said stator protrusions and the exciting coils in each of said pairs are spaced apart at 180° in mechanical angle, and wherein q≧5, X°, Y°>360°/(n×q), X°+Y°=180°/n−α°, where α° is a counter torque marginal angle which is larger than 0, and n is a positive integer, whereinsaid exciting coils are energized at an angle not larger than α° in mechanical angle in advance of said rotor every 360°/(2n×q) in mechanical angle.
Priority Claims (2)
Number |
Date |
Country |
Kind |
11-046464 |
Feb 1999 |
JP |
|
11-329836 |
Nov 1999 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
The present application is based on and claims priority from Japanese Patent Applications Hei 11-46464 filed Feb. 24, 1999, and Hei 11-329836 filed Nov. 19, 1999, the contents of which are incorporated herein by reference.
US Referenced Citations (6)
Foreign Referenced Citations (2)
Number |
Date |
Country |
63-283457 |
Nov 1988 |
JP |
1-318579 |
Dec 1989 |
JP |
Non-Patent Literature Citations (1)
Entry |
Denki Gakkai Kenkyuukai Shiryou RM-96-1-5, Ohno et al. “Performance Characteristic of Switched Reluctance Motor”, Published on Mar. 1, 1996. |