Claims
- 1. A sheet lateral registration system for sequentially laterally registering and feeding sheets moving in a sheet path direction, comprising:at least two spaced apart sheet feeding rollers providing defined intermittent sheet engagement and sheet disengagement nips, a rotatable drive system for said at least two spaced apart sheet feeding rollers, a lateral shifting system for laterally moving a sheet by laterally shifting said at least two spaced apart sheet feeding rollers laterally relative to said sheet path direction while a sheet is engaged in said intermittent sheet engagement nips of said at least two sheet feeding rollers, and said lateral shifting system having a home position and intermittently laterally shifting said at least two spaced apart sheet feeding rollers towards said home position of said lateral shifting system without laterally moving said sheet while a sheet is in said intermittent sheet disengaged nips of said at least two sheet feeding rollers.
- 2. The sheet lateral registration system of claim 1, wherein said at least two spaced apart sheet feeding rollers provide said defined intermittent sheet engagement and sheet disengagement nips by said at least two sheet feeding rollers having at least two different radii in at least two different circumferential areas which alternately engage and disengage the sheet as said at least two sheet feeding rollers are rotated by said rotatable drive system to provide increased time for said laterally shifting of said at least two sheet feeding rollers towards said home position of said lateral shifting system by disengaging from a sheet substantially before the sheet leaves said sheet lateral registration system.
- 3. The sheet lateral registration system of claim 1, wherein opposing idlers are mounted for lateral movement together with said at least two spaced apart sheet feeding rollers, and said two spaced apart sheet feeding rollers have similar major larger radius cylindrical circumferential lengths and minor smaller radius non-cylindrical circumferential lengths respectively automatically providing with said rotation thereof closed nip sheet feeding and open nip sheet release relative to said opposing idlers.
- 4. The sheet lateral registration system of claim 3, wherein said larger radius circumferential lengths of said at least two spaced apart sheet feeding rollers are coordinated to the downstream distance to a subsequent sheet acquisition system.
- 5. The sheet lateral registration system of claim 1, wherein said sheet lateral registration system is integral a high speed printer with an image transfer station in said sheet path, said high speed printer having a subsequent sheet acquisition system comprising non-slip sheet feeding nips positioned in said sheet path between said sheet lateral registration system and said image transfer station of said high speed printer.
- 6. The sheet lateral registration system of claim 1, wherein said at least two spaced apart sheet feeding rollers provide sheet deskewing by differential rotation as well as said lateral sheet registration.
- 7. The sheet lateral registration system of claim 1, wherein said sheet lateral registration system is integral a high speed printer sheet path having closely sequentially spaced print media sheets moving at high speed therein, and said sheet lateral registration system provides lateral registration of said print media sheets.
- 8. The sheet lateral registration system of claim 1, wherein;said at least two spaced apart sheet feeding rollers have opposing idlers, said at least two spaced apart sheet feeding rollers provide said defined intermittent sheet engagement and sheet disengagement nips by said at least two sheet feeding rollers having at least first and second different radii in at least first and second different circumferential areas which respectively alternately engage and disengage opposing idlers to provide respective opened and closed sheet feeding nips as said at least two sheet feeding rollers are rotated by said rotatable drive system, said opened sheet feeding nips provide said increased time for said laterally shifting of said at least two sheet feeding rollers towards said home position of said lateral shifting system by disengaging from a sheet substantially before the sheet leaves said sheet lateral registration system, and said defined intermittent sheet engagement nips are automatically closed before a sheet is received therein.
- 9. In a sheet lateral registration system for sequentially laterally registering and feeding sheets moving in a sheet path direction with at least two laterally spaced apart sheet feeding and registration rollers forming sheet feeding nips with opposing idlers;said at least two laterally spaced apart sheet feeding and registration rollers are laterally moveable relative to said sheet path direction towards and away from a lateral home position, said at least two laterally spaced apart sheet feeding and registration rollers have at least first and second different circumferential surface areas respectively having a larger radius and a smaller radius, a roller rotational drive system selectively intermittently partially rotates said at least two sheet feeding and registration rollers to intermittently form a closed sheet feeding nip with said first and larger radius circumferential surface areas with said idlers, said roller rotational drive system selectively intermittently further partially rotating said at least two sheet feeding and registration rollers to intermittently form an open non sheet feeding gap from said idlers with said second and smaller radius of said second circumferential surface areas, a lateral movement system for intermittently laterally shifting said at least two spaced apart sheet feeding rollers laterally relative to said sheet path direction while a sheet is engaged in said closed sheet feeding nip of said at least two sheet feeding rollers for laterally registering the sheet, and said lateral movement systems intermittently laterally shifting said at least two spaced apart sheet feeding rollers towards said home position thereof without laterally moving a sheet while a sheet is in said intermittent sheet disengaged nips of said at least two sheet feeding rollers to provide increased time for said laterally shifting of said at least two sheet feeding rollers towards said home position.
- 10. In a sheet lateral registration method for sequentially laterally registering and feeding sheets moving in a sheet path direction with at least two laterally spaced apart sheet feeding and registration rollers forming sheet feeding nips with opposing idlers;said at least two laterally spaced apart sheet feeding and registration rollers being laterally moveable relative to said sheet path direction towards and away from a lateral home position, said at least two laterally spaced apart sheet feeding and registration rollers having at least first and second different circumferential surface areas respectively having a larger radius and a smaller radius, selectively intermittently partially rotating said at least two sheet feeding and registration rollers to intermittently form a closed sheet feeding nip with said first and larger radius circumferential surface areas with said idlers, selectively intermittently further partially rotating said at least two sheet feeding and registration rollers to intermittently form an open non sheet feeding gap from said idlers with said second and smaller radius of said second circumferential surface areas, intermittently laterally shifting said at least two spaced apart sheet feeding rollers laterally relative to said sheet path direction while a sheet is engaged in said closed sheet feeding nip of said at least two sheet feeding rollers for laterally registering the sheet, and intermittently laterally shifting said at least two spaced apart sheet feeding rollers towards said home position thereof without laterally moving a sheet while a sheet is in said intermittent sheet disengaged nips of said at least two sheet feeding rollers to provide increased time for said laterally shifting of said at least two sheet feeding rollers towards said home position.
- 11. The sheet lateral registration method of claim 10, wherein said opposing idlers laterally move together with said at least two spaced apart sheet feeding rollers, and said two spaced apart sheet feeding rollers have similar major larger radius cylindrical circumferential lengths and minor smaller radius non-cylindrical circumferential lengths respectively automatically providing with said rotation thereof closed nip sheet feeding and open nip sheet release relative to said opposing idlers.
- 12. The sheet lateral registration method of claim 10, wherein said larger radius circumferential lengths of said at least two spaced apart sheet feeding rollers are greater than the downstream distance to a subsequent sheet acquisition system.
- 13. The sheet lateral registration method of claim 10 is integral a high speed printer with an image transfer station in said sheet path, having a sheet acquisition system downstream in said sheet path comprising non-slip sheet feeding nips positioned in said sheet path between said sheet lateral registration method and said image transfer station of said high speed printer.
- 14. The sheet lateral registration method of claim 10, wherein said at least two spaced apart sheet feeding rollers provide sheet deskewing by differential rotation as well as said lateral sheet registration.
- 15. The sheet lateral registration method of claim 10, wherein said at least two spaced apart sheet feeding rollers are integral a high speed printer sheet path having closely sequentially spaced print media sheets moving at high speed therein, and said at least two spaced apart sheet feeding rollers provide both lateral registration and deskewing of said closely sequentially spaced print media sheets.
Parent Case Info
Cross-reference and incorporation by reference is made to a copending commonly assigned U.S. application Ser. No. 09/916,993, filed Jul. 27, 2001, by Lloyd A. Williams, et al, entitled “Printer Sheet Lateral Registration and Deskewing System.”
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