Claims
- 1. A sheet feeding apparatus, comprising:a take-away nip; a pneumatic sheet feeder being selectively actuable to acquire a sheet from a stack and transport the sheet towards the take-away nip, the sheet feeder having a feedhead, the feedhead having an acquisition surface, the acquisition surface being substantially aligned with the take-away nip, the feedhead being moveable from a first position at which the sheet is acquired from the stack to a second position at which the sheet is handed off to the take-away nip, wherein the acquisition surface remains substantially aligned with the take-away nip as the feadhead acquires the sheet from the stack and hands the sheet off to the take-away nip; and a drive mechanism operating to reciprocate the feed head between the first and second positions.
- 2. A sheet feeding apparatus according to claim 1, further comprising a stack height sensor, the stack height sensor being coupled to the drive mechanism to move the stack height sensor between a sensing position in contact with the stack and a home position disengaged from the stack at a preselected time coordinated with the reciprocating motion of the feedhead.
- 3. A sheet feeding apparatus according to claim 2, wherein the stack height sensor is a multiple position stack height sensor capable of detecting at least three stack height zones.
- 4. A sheet feeding apparatus according to claim 2, wherein the feedhead receives a negative air pressure, a magnitude of the negative air pressure being varied in response to a sheet parameter.
- 5. A sheet feeding apparatus according to claim 2, further comprising:a cam member coupled to the drive mechanism; and a slider-crank drive coupled between the cam member and the feed head.
- 6. A sheet feeding apparatus according to claim 5, further comprising:a cam follower attached to stack height sensor and biased into contact with the cam member.
- 7. A sheet feeding apparatus according to claim 6, wherein the drive mechanism is a motor operating in a unidirectional mode for rotating the cam in a single direction.
- 8. A sheet feeding apparatus according to claim 1, further comprising a stack height sensor, the stack height sensor having a stack height sensing arm, the stack height sensor being coupled to the drive mechanism to drop the stack height sensing arm onto the stack and to lift the stack height sensing arm from the stack.
- 9. A sheet feeding apparatus according to claim 8, wherein the stack height sensor further comprises a plurality of sensor flags mounted on the sensing arm for detecting at least three stack height zones.
- 10. A sheet feeding apparatus according to claim 8, wherein the stack height sensing arm is dropped onto the stack after a trail edge of the sheet passes the stack height sensor.
- 11. A sheet feeding apparatus according to claim 1, further comprising:a source of sheet parameter information; and a variable drive source coupled to the take-away nip and varying one of the speed and acceleration of said take-away nip dependent upon the sheet parameter information.
- 12. A sheet feeding apparatus according to claim 1, wherein the feedhead remains in substantially the same plane as the feedhead reciprocates between the first and second positions.
- 13. A sheet feeding apparatus according to claim 1, wherein the feedhead remains in substantially the same plane as the feedhead reciprocates between the first and second positions, the plane being substantially parallel to the acquisition surface.
- 14. A sheet feeding system, comprising:a stack support for supporting a stack of sheets; a take-away nip; a pneumatic feedhead, the feedhead being coupled to receive a negative pressure from a vacuum source, the pneumatic feedhead being selectively actuable to acquire a sheet from the stack on the support and transport the sheet towards the take-away nip, the feedhead having an acquisition surface, the acquisition surface being substantially aligned with the take-away nip, the feedhead being moveable from a first position at which the sheet is acquired from the stack to a second position at which the sheet is handed off to the take-away nip, wherein the acquisition surface remains substantially aligned with the take-away nip as the feedhead acquires the sheet from the stack and hands the sheet off to the take-away nip; and a drive mechanism operating to reciprocate the feedhead between the first and second positions.
- 15. A sheet feeding system according to claim 14, further comprising a stack height sensor, the stack height sensor being coupled to the drive mechanism to move the stack height sensor between a sensing position in contact with the stack and a home position disengaged from the stack at a preselected time coordinated with the removal of a sheet from the stack.
- 16. A sheet feeding system according to claim 15, wherein the stack height sensor is a multiple position stack height sensor capable of detecting at least three stack height zones.
- 17. A sheet feeding system according to claim 15, further comprising:a cam member coupled to the drive mechanism; a cam follower attached to stack height sensor and biased into contact with the cam member; and a slider-crank drive coupled between the cam member and the feedhead.
- 18. A sheet feeding system according to claim 17, wherein the drive mechanism is a motor operating in a unidirectional mode for rotating the cam in a single direction.
- 19. A sheet feeding system according to claim 15, wherein the stack height sensor is dropped onto the stack after a trail edge of the sheet passes the stack height sensor.
- 20. A sheet feeding system according to claim 15, wherein the stack supportis repositioned to adjust a stack height in response to a stack position determined by the stack height sensor and information identifying a predetermined property of the sheets.
- 21. A sheet feeding system according to claim 14, wherein a magnitude of the negative air pressure is varied in response to a sheet parameter.
- 22. A sheet feeding system according to claim 14, further comprising:a source of sheet parameter information; and a variable drive source coupled to the take-away nip and varying one of the speed and acceleration of said take-away nip dependent upon the sheet parameter information.
- 23. A sheet feeding apparatus, comprising:a take-away nip; a pneumatic feedhead, the pneumatic feedhead being selectively actuable to acquire a sheet from a stack and transport the sheet towards the take-away nip, the feedhead being moveable between at least a first position at which the sheet is acquired from the stack and a second position at which the sheet is handed off to the take-away nip, the feedhead having an acquisition surface, the acquisition surface remaining substantially aligned with the take-away nip as the feedhead moves from the first position to the second position; a drive mechanism coupled to the feedhead, the drive mechanism operating to reciprocate the feed head between the first and second positions when the drive mechanism is driven in a single direction; and stack height sensor movable between a sensing position in contact with a top sheet of the stack and a home position disengaged from the top sheet of the stack, the stack height sensor being coupled to the drive mechanism to move the stack height sensor between the sensing position and the home position at a preselected time coordinated with the movement of the feedhead.
- 24. A sheet feeding apparatus according to claim 23, wherein the stack height sensor is a multiple position stack height sensor capable of detecting at least three stack height zones.
- 25. A sheet feeding apparatus according to claim 23, wherein the drive mechanism includes:a motor; a cam member coupled to the motor; and a slider-crank drive coupled between the cam member and the feed head.
- 26. A sheet feeding apparatus according to claim 25, further comprising:a cam follower attached to stack height sensor and biased into contact with the cam member.
- 27. A sheet feeding apparatus according to claim 25, wherein the motor operates in a unidirectional mode for rotating the cam in a single direction.
Parent Case Info
This application is a divisional of application Ser. No. 09/220,973, filed Dec. 23, 1998.
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