Claims
- 1. A method for manufacturing an armature of an electric motor to reduce brush arching, the method comprising:
forming an armature having a plurality of circumferentially arranged slots for winding thereon a plurality of coils; segmenting a first coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said first coil around a first pair of spaced apart ones of said slots with a first plurality of winding turns; winding said second subcoil portion of said first coil around a second pair of spaced apart slots, which are circumferentially shifted from said first pair of slots, with a second plurality of winding turns; segmenting a second coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said second coil around said second pair of spaced apart ones of said slots a number of turns in accordance with a third plurality of winding turns; winding said second subcoil portion of said second coil around a third pair of spaced apart slots shifted circumferentially from said second pair of spaced apart ones of said slots, with a fourth plurality of winding turns; segmenting a third coil into first and second subcoil portions in series with one another; and winding said first subcoil portion of said third coil in the same slots of said lamination stack as said first subcoil portion of said second coil, and winding said second subcoil portion of said third coil in the same slots as said second subcoil of said second coil.
- 2. The method of claim 1, further comprising:
forming said first subcoil portion of said third coil with a different number of windings than said first subcoil portion of said second coil.
- 3. The method of claim 1, further comprising:
forming said second subcoil portion of said third coil with a different number of windings than said second subcoil portion of said second coil.
- 4. The method of claim 3, further comprising:
segmenting a fourth coil into first and second subcoil portions; and winding said first subcoil portion in a pair of slots that is circumferentially offset by one said slot from said first subcoil portion of said third coil.
- 5. The method of claim 4, further comprising:
forming said first and second subcoil portions of said fourth coil with different numbers of winding turns.
- 6. A method for manufacturing an electric motor, comprising:
forming a gear reduction assembly; coupling an armature having an output shaft to said gear reduction assembly; forming said armature with a plurality of circumferentially arranged slots for winding thereon a plurality of coils; segmenting a first coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said first coil around a first pair of spaced apart ones of said slots with a first plurality of winding turns; winding said second subcoil portion of said first coil around a second pair of spaced apart slots, which are circumferentially shifted from said first pair of slots, with a second plurality of winding turns; segmenting a second coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said second coil around said second pair of spaced apart ones of said slots a number of turns in accordance with a third plurality of winding turns; winding said second subcoil portion of said second coil around a third pair of spaced apart slots shifted circumferentially from said second pair of spaced apart ones of said slots, with a fourth plurality of winding turns; segmenting a third coil into first and second subcoil portions in series with one another; and winding said first subcoil portion of said third coil in the same slots of said lamination stack as said first subcoil portion of said second coil, and winding said second subcoil portion of said third coil in the same slots as said second subcoil of said second coil.
- 7. The method of claim 6, further comprising:
forming said first subcoil portion of said third coil with a different number of windings than said first subcoil portion of said second coil.
- 8. The method of claim 6, further comprising:
forming said second subcoil portion of said third coil with a different number of windings than said second subcoil portion of said second coil.
- 9. The method of claim 6, further comprising:
segmenting a fourth coil into first and second subcoil portions; and winding said first subcoil portion in a pair of slots that is circumferentially offset by one said slot from said first subcoil portion of said third coil.
- 10. The method of claim 9, further comprising the step of winding said second subcoil portion of said fourth coil in a pair of slots that is circumferentially offset by one said slot from said first subcoil portion of said fourth coil.
- 11. A method of forming an electric motor, comprising:
forming an armature with a plurality of circumferentially arranged slots; segmenting a first coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said first coil around a first pair of spaced apart ones of said slots with a first plurality of winding turns; winding said second subcoil portion of said first coil around a second pair of spaced apart slots, which are circumferentially shifted from said first pair of slots, with a second plurality of winding turns; segmenting a second coil into first and second subcoil portions in series with one another; winding said first subcoil portion of said second coil around said second pair of spaced apart ones of said slots a number of turns in accordance with a third plurality of winding turns; winding said second subcoil portion of said second coil around a third pair of spaced apart slots shifted circumferentially from said second pair of spaced apart ones of said slots, with a fourth plurality of winding turns; segmenting a third coil into first and second subcoil portions in series with one another; and winding said first and second subcoil portions of said third coil in the same slots as first and second subcoil portions of said second coil.
- 12. The method of claim 11, further comprising winding a fourth coil in a pair of slots of said armature that are shifted circumferentially by one slot position from said third coil.
- 13. The method of claim 11, further comprising:
forming a fourth coil into first and second subcoil portions; winding said first subcoil portion of said fourth coil in the same said slots on said armature as said second subcoil portion of said third coil; and winding said second subcoil portion of said fourth coil in slots that are shifted circumferentially by one slot position from said second subcoil portion of said third coil.
- 14. A method for manufacturing an electric motor, comprising:
a) forming an armature with a plurality of slots circumferentially there around; b) winding a first coil within a plurality of slots on said armature; c) winding a second coil within a second plurality of slots on said armature that are shifted circumferentially by one slot position from said first plurality of slots; d) winding a third coil in a third plurality of slots on said armature, said third plurality of slots being identical to said second plurality of slots; e) winding a fourth coil in a fourth plurality of slots on said armature, said fourth plurality of slots being circumferentially offset by one slot position form said third plurality of slots; and f) repeating steps b) through e).
- 15. The method of claim 14, further comprising forming said first coil with first and second subcoil portions.
- 16. The method of claim 14, further comprising forming said second coil with first and second subcoil portions.
- 17. The method of claim 14, further comprising forming said third coil with first and second subcoil portions.
- 18. The method of claim 14, further comprising forming said fourth coil with first and second subcoil portions.
- 19. The method of claim 14, further comprising:
forming said first coil with first and second subcoil portions; forming said second coil with first and second subcoil portions; forming said third coil with first and second subcoil portions; and forming said fourth coil with first and second subcoil portions.
- 20. The method of claim 19, further comprising:
said first and second subcoil portions of said first coil being formed with different numbers of turns; said first and second subcoil portions of said second coil being formed with different numbers of turns; said first and second subcoil portions of said third coil being formed with different numbers of coils; and said first and second subcoil portions of said fourth coil being formed with differing numbers of turns.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of U.S. Ser. No. 09/594,357, filed Jun. 14, 2000, presently allowed.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09594357 |
Jun 2000 |
US |
| Child |
10404857 |
Apr 2003 |
US |