Claims
- 1. An armature winder for rotatably winding a wire onto an armature, said armature winder having a longitudinal axis, said armature winder comprising:
an adjustable winding arm attached to said armature winder, said winding arm for winding said wire from a wire delivery point located on said winding arm, said winding arm being adjustable such that said wire delivery point may be moved along a path having a component of motion transverse to said longitudinal axis.
- 2. The armature winder of claim 1, wherein said winding arm is adjustable such that said wire delivery point may be moved also along a component of motion parallel to said longitudinal axis.
- 3. The armature winder of claim 1 wherein said winding arm is pivotably attached to said armature winder, said winding arm pivoting around an axis transverse to said longitudinal axis.
- 4. The armature winder of claim 3 further comprising a driving tube for adjusting the position of said winding arm, wherein said winding arm is hingedly attached to said driving tube.
- 5. The armature winder of claim 4 further comprising a command tube coupled to said driving tube, said winding arm, and a counterweight arm, whereby relative movement between said driving tube and said command tube adjusts the position of said wire delivery point.
- 6. The armature winder of claim 5 wherein said driving tube is hingedly attached to said counterweight arm and to said winding arm, wherein relative rotational movement between said command bar and said driving tube cause the winding arm and the counterweight arm to pivot about an axis substantially perpendicular to said longitudinal axis.
- 7. The armature winder of claim 6 wherein said driving tube is constrained to move with said command tube when said winding arm winds said wire onto said armature.
- 8. The armature winder of claim 6 further comprising a clutch plate for allowing said driving bar and said command bar to move relative to one another when said winding arm is being adjusted, and for constraining said driving bar to move with said command bar when said winding arm is winding wire onto said armature.
- 9. The armature winder of claim 6 further comprising a motor mechanically attached to said driving tube, said motor for actuating relative rotational movement between said driving tube and said command tube, said rotational movement for adjusting said winding arm.
- 10. The armature winder of claim 1 further comprising an adjustable counterweight arm attached to said armature winder opposite to said winding arm with respect to said longitudinal axis, said counterweight arm for balancing a centrifugal force generated by a rotation of said winding arm.
- 11. The armature winder of claim 1 further comprising a programmable control for controlling said winding arm.
- 12. The armature winder of claim 1, said armature further comprising a commutator including a plurality of tangs, wherein said winding arm is adjustable to reduce the distance between said wire delivery point and said commutator in order to wrap said wire around at least one of said tangs.
- 13. A method of winding an armature with wire using an armature winder having an adjustable winding arm, said method comprising:
loading an armature into a loading position on said armature winder; adjusting said winding arm to reduce radial distance from a longitudinal axis of said armature winder to a wire delivery point on said winding arm to a minimum while still being able to wind wire onto said armature; winding said wire onto said armature; and removing said armature.
- 14. The method of claim 12 wherein said adjusting further comprises adjusting said wire delivery point in a path including a component of motion along said longitudinal axis.
- 15. The method of claim 13 wherein said adjusting further comprises adjusting said winding arm about an axis perpendicular to said longitudinal axis.
- 16. A method of winding armatures with wire, said armatures being of varying sizes, using an armature winder having an adjustable winding arm, said method comprising:
loading a first armature into a loading position on said armature winder; adjusting said winding arm to reduce radial distance from a longitudinal axis of said armature winder to a wire delivery point on said winding arm; winding said wire onto said armature; removing said armature; replacing said first armature with a second armature having a different size from the first armature; and repeating said adjusting, said winding, and said removing.
- 17. The method of claim 15 wherein said adjusting further comprises adjusting said wire delivery point in a path including a component of motion along said longitudinal axis.
- 18. The method of claim 16 wherein said adjusting further comprises adjusting said winding arm about an axis perpendicular to said longitudinal axis.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional application Nos. 60/075,650, filed Feb. 23, 1998, and 60/077,158, filed Mar. 6, 1998.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60075650 |
Feb 1998 |
US |
|
60077158 |
Mar 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09248931 |
Feb 1999 |
US |
Child |
09981188 |
Oct 2001 |
US |