Claims
- 1. A hole punching apparatus comprising:
one or more punches, a punching die, and a bore formed in the punching die for slidable insertion of the one or more punches; a slot formed within the punching die configured to receive a material to be punched; one or more cams coupled to a camshaft and configured to linearly drive the one or more punches through the bore formed in the punching die and at least one slidable cam selectively positionable along the camshaft between a first position and a second position; an electric motor configured to rotate the camshaft; a housing configured to hold the one or more punches, punching die, one or more cams, and electric motor and further having a material slot formed in an upper surface configured to align a material to be punched relative to the one or more punches; a modality switch moveable between a first mode position and a second mode position and further configured to move the at least one slidable cam between said first position and said second position and further configured to insert a spacer into the slot when in said second position.
- 2. The hole punching apparatus of claim 1, further comprising a reversing switch configured to reverse the direction of the motor upon activation.
- 3. The hole punching apparatus of claim 1, further comprising a cam switch having a switch arm carrying a cam follower configured to follow the cross section of the camshaft, the camshaft having a portion of its cross-section configured to allow the cam follower and accompanying switch arm to extend thereby disconnecting the cam switch.
- 4. The hole punching apparatus of claim 3, further comprising a capacitor for providing electrical current to the motor after the start switch has been disconnected.
- 5. The hole punching apparatus of claim 1, further comprising a slidable cam assembly having a first cam and a second cam spaced a fixed distance apart and slidable along the camshaft between a first position and a second position, and further having a first punch and a second punch wherein positioning the slidable cam assembly in the first position locates the first cam adjacent the first punch in a punch driving position and positioning the slidable cam assembly in the second position locates the second cam adjacent the second punch in a punch driving position.
- 6. The hole punching apparatus of claim 1, further comprising one or more cam harnesses coupled to the one or more punches and configured to translate a withdrawing force from the one or more cams to the one or more punches.
- 7. A hole punching device comprising:
a plurality of punches; a motor for driving said punches; and a modality switch moveable between a first position and a second position for selecting between two or more punching modes.
- 8. The hole punching device of claim 7, further comprising a plurality of cams mounted to a camshaft and configured for driving engagement with said punches.
- 9. The hole punching device of claim 8, wherein said camshaft is operatively coupled to a motor by a gear train for transferring the output torque of the motor to the camshaft.
- 10. The hole punching device of claim 8, wherein each of said cams has a corresponding punch.
- 11. The hole punching device of claim 10, wherein at least one cam is slideably disposed on said camshaft such that said cam is selectively engageable with its corresponding punch.
- 12. The hole punching device of claim 7, wherein one or more of the plurality of punches are selectively positionable to result in varying spacing between the plurality of punches.
- 13. The hole punching device of claim 7, wherein the two or more punching modes result in a plurality of holes having varying spacing therebetween.
- 14. The hole punching device of claim 7, wherein said punching modes include two-hole and three-hole punching modes.
- 15. The hole punching device of claim 7, wherein said motor sequentially drives said punches.
- 16. The hole punching device of claim 7, further comprising a reversing switch configured to reverse the operating direction of the motor.
- 17. The hole punching device of claim 7, further comprising a cam switch configured to automatically continue rotation of the camshaft for one complete revolution.
- 18. The hole punching device of claim 7, further comprising a slot for receiving a sheave of material to be punched, the slot configured to guide the material into an appropriate punching position.
- 19. The hole punching device of claim 18, further comprising a spacer moveable between a first position and a second position, wherein the second position places the spacer in the slot.
- 20. The hole punching device of claim 19, wherein moving the modality switch moves the spacer between its first position and second position.
- 21. A hole punching device for creating a plurality of holes in a sheet of material, comprising:
a motor; a plurality of punches configured to create spaced apart holes in the sheet of material; a punch driver configured to receive output of the motor and further configured to engage and linearly drive the plurality of punches between a retracted position and an extended position; and a modality switch configured to vary the distance between the spaced apart holes.
- 22. The hole punching device of claim 21, further comprising a switch configured to allow electricity to flow to the motor until the plurality of punches have been driven from a retracted position, to an extended position, and back to a retracted position.
- 23. The hole punching device of claim 21, wherein the modality switch varies the distance between the spaced apart holes by selectively engaging the punch driver with the plurality of punches.
RELATED APPLICATIONS
[0001] This application claims priority to the U.S. provisional patent application having serial No. 60/352628 and filed on Jan. 28, 2002, the entire contents of which are hereby expressly incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60352628 |
Jan 2002 |
US |