Claims
- 1. A method of printing on a Z-fold media from an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, with the Z-fold media comprising a first sheet defining a leading edge and a subsequent second sheet attached to the first sheet in a Z-fold arrangement with a first surface of said first sheet in contact with a first surface of said second sheet, the method comprising the steps of:
- incrementally advancing the leading edge of the Z-fold media from the input toward the printzone in a series of forward steps through frictional engagement with a second surface of the first sheet which is opposite the first surface of the first sheet, with each of the forward steps of the series being separated in time by a pause;
- separating the first surface of the first sheet from the first surface of the second sheet during said advancing step; and
- after the separating step, moving the Z-fold media into the printzone to receive ink ejected from the printhead.
- 2. A method according to claim 1, further including the steps of:
- before the incrementally advancing step, locating the position of the leading edge by advancing the leading edge toward the printzone; and
- after the locating step and before the incrementally advancing step, moving the leading edge away from the printzone.
- 3. A method according to claim 2 wherein:
- the locating step comprises the step of bending the first sheet around a roller member; and
- the method further includes the steps of, during said bending step, also bending the second sheet around the roller member, and separating the first surface of the first sheet from the first surface of the second sheet during said steps of bending the first sheet and bending the second sheet.
- 4. A method according to claim 1, further including the steps of:
- before the incrementally advancing step, moving the leading edge toward the printzone at a first speed; and
- thereafter, moving the first and second sheets away from the printzone at a second speed.
- 5. A method according to claim 1, further including the steps of:
- after the incrementally advancing step, moving the first and second sheets away from the printzone at a first speed; and
- thereafter, moving the leading edge toward the printzone at a second speed which is slower than the first speed.
- 6. A method according to claim 1, further including the steps of:
- adjusting a printhead to media spacing defined by a distance between the printhead and media when in the printzone for printing from a cut-sheet spacing for printing on cut-sheet media to a Z-fold spacing for printing on Z-fold media; and
- monitoring the printhead to media spacing to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 7. A method according to claim 6 wherein the Z-fold media spacing is greater than the cut-sheet media spacing.
- 8. A method according to claim 6 wherein:
- the adjusting step comprises the step of moving a media support member that supports media when in the printzone to a print position;
- the method further includes the step of, prior to the incrementally advancing step, moving the media support member from the print position to a media pick position; and
- the monitoring step comprises the step of monitoring the distance of travel of the media support member between the print position and the pick position to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 9. A method according to claim 8 wherein the step of moving the media support member comprises moving a selection lever to a Z-fold selection location when Z-fold media is loaded in the input, and moving the selection lever to a cut-sheet selection location when cut-sheet media is loaded in the input.
- 10. A method according to claim 1 wherein, after the separating step, the method further includes the steps of:
- moving the first and second sheets away from the printzone; and
- moving the leading edge through an entrance of a feed path coupling the input to the printzone.
- 11. A method according to claim 10 wherein:
- the step of moving the leading edge through the feed path comprises moving the leading edge at a first speed; and
- the step of moving the first and second sheets away from the printzone comprises moving the first and second sheets at a second speed which is faster that the first speed.
- 12. A method according to claim 1 wherein the method further includes the steps of:
- before the incrementally advancing step, locating the position of the leading edge by advancing the leading edge from an initial position in the input through a feed path toward the printzone; and
- after the locating step and before the incrementally advancing step, moving the leading edge away from the printzone and out of the feed path at a first speed and pushing the first and second sheets away from an entrance to the feed path.
- 13. A method according to claim 12 wherein the step of moving the leading edge away from the printzone and out of the feed path, comprises the step of returning the leading edge to a position further away from the feed path entrance than the initial position.
- 14. A method according to claim 12 wherein, before the incrementally advancing step and after the steps of moving the leading out of the feed path and pushing the first and second sheets away from the feed path entrance, the method further includes the steps of:
- moving the leading edge toward the printzone at a second speed which is slower than the first speed; and
- thereafter, moving the first and second sheets away from the feed path entrance at a third speed which is faster than the second speed.
- 15. A method according to claim 14 wherein, after the incrementally advancing step, the method further includes the steps of:
- moving the first and second sheets away from the printzone at a fourth speed which is faster than the second speed; and
- thereafter, moving the leading edge toward the printzone at a fifth speed which is slower than the first speed.
- 16. A method according to claim 15 wherein, after moving the leading edge toward the printzone at a fifth speed, the method further includes the steps of:
- moving the second sheet away from the printzone; and
- moving the leading edge through a feed path toward the printzone.
- 17. A method according to claim 1 wherein the incrementally advancing step comprises a series of steps of a number selected between five and fifteen.
- 18. A method according to claim 1 wherein the incrementally advancing step comprises pausing between each of the steps for a substantially equal duration of time.
- 19. A method according to claim 1 wherein the incrementally advancing step comprises incrementally advancing the leading edge in steps of substantially equal magnitude.
- 20. A method according to claim 1 wherein the Z-fold media also has a last sheet defining a trailing edge opposite the leading edge, with last sheet also having a lower surface, wherein the input of the inkjet printing mechanism has a friction member in engagement with the lower surface of the last sheet, and wherein the incrementally advancing step comprises the steps of:
- gripping the lower surface of the last sheet with the friction member;
- generating a dynamic frictional engagement with the second surface of the first sheet during each of the forward steps; and
- generating a static frictional engagement with the second surface of the first sheet during each pause.
- 21. A method according to claim 20 wherein the static frictional engagement generated is greater than the dynamic frictional engagement generated with the second surface of the first sheet.
- 22. A method according to claim 1 wherein the Z-fold media also has a last sheet defining a trailing edge opposite the leading edge, with last sheet also having a lower surface, wherein the input of the inkjet printing mechanism has a friction member in engagement with the lower surface of the last sheet, and wherein the separating step comprises the steps of:
- gripping the lower surface of the last sheet with the friction member with a first frictional force; and
- generating a frictional engagement of a second frictional force with the second surface of the first sheet, with the second force being greater than the first frictional force.
- 23. A method according to claim 22 wherein the step of generating the second frictional force comprises the step of generating a static frictional engagement with the second surface of the first sheet during each pause.
- 24. A method according to claim 1 further including the steps of:
- after printing an image on a sheet of cut media supported in the printzone at a first distance from the printhead, loading the input of the inkjet printing mechanism with the Z-fold media; and
- prior to printing on the Z-fold media, increasing the first distance to a second distance to support the Z-fold media in the printzone.
- 25. A method according to claim 24 wherein said step of increasing the first distance to a second distance comprises moving a media support member located in the printzone away from the printhead.
- 26. A method according to claim 1 wherein, the Z-fold media has a last sheet defining a trailing edge and having an outer surface, and the method further comprises the steps of;
- during the incrementally advancing step, gripping the outer surface of the last sheet with a first friction member located at the input;
- during the gripping step, separating the first surface of the first sheet from the first surface of the second sheet by pulling the first sheet with the roller member toward the printzone.
- 27. A method according to claim 26 wherein;
- the incrementally advancing step comprises moving the leading edge with a roller member through a feed path coupling the input with the printzone, with the feed path having an entrance adjacent the input;
- the method further includes the step of, during a portion of the incrementally advancing step, pulling the second sheet through frictional engagement with the first sheet toward the feed path entrance until the first and second sheets are over a second friction member; and
- the member further includes the step of thereafter, pushing the first and second sheets away from the feed path entrance and the second friction member.
- 28. A method according to claim 27 wherein the method further includes the steps of, during the pushing step;
- gripping the outer surface of the last sheet with the second friction member located at the feet path entrance; and
- separating the first surface of the first sheet from the first surface of the second sheet by pushing the first sheet with the roller member away from the feed path entrance while gripping the outer surface of the last sheet with the second friction member.
- 29. A method according to claim 28 wherein;
- said pulling step comprises rotating the roller member in a first direction at a first speed; and
- said pushing step comprises rotating the roller member in a second direction opposite the first direction and at a second speed which is faster than the first speed.
- 30. A method of printing on either cut-sheet medial or on Z-fold media when loaded in an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, the method comprising the steps of:
- adjusting a printhead to media spacing defined by a distance between the printhead and media when in the printzone for printing to a cut-sheet spacing for printing on cut-sheet media or to a Z-fold spacing for printing on Z-fold media;
- monitoring the printhead to media spacing to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing; and
- advancing the loaded media from the input to the printzone to receive ink ejected from the printhead;
- wherein when loaded in the input, the Z-fold media comprises a first sheet defining a leading edge and a subsequent second sheet attached to the first sheet in a Z-fold arrangement with a first surface of said first sheet in contact with a first surface of said second sheet;
- wherein when Z-fold media is loaded in the input, the advancing step comprises the step of incrementally advancing the leading edge of the Z-fold media from the input toward the printzone in a series of forward steps through frictional engagement with a second surface of the first sheet which is opposite the first surface of the first sheet, with each of the forward steps of the series being separated in time by a pause; and
- separating the first surface of the first sheet from the first surface of the second sheet of the Z-fold media during said advancing step.
- 31. A method according to claim 30 further including the steps of:
- before the incrementally advancing step, locating the position of the leading edge of the Z-fold media by advancing the leading edge toward the printzone; and
- after the locating step and before the incrementally advancing step, moving the leading edge away from the printzone.
- 32. A method according to claim 31 wherein:
- the locating step comprises the step of bending the first sheet of the Z-fold media around a roller member; and
- the method further includes the steps of, during said bending step, also bending the second sheet of the Z-fold media around the roller member, and separating the first surface of the first sheet from the first surface of the second sheet during said steps of bending the first sheet and bending the second sheet.
- 33. A method of printing on either cut-sheet media or on Z-fold media when loaded in an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, the method comprising the steps of:
- adjusting a printhead to media spacing defined by a distance between the printhead and media when the printzone for printing to a cut-sheet spacing for printing on cut-sheet media or to a Z-fold spacing for printing on Z-fold media, wherein the adjusting step comprises the step of moving a media support member that supports media when in the printzone to a print position;
- monitoring the printhead to media spacing to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing;
- advancing the loaded media from the input to the printzone to receive ink ejected from the printhead;
- prior to the advancing step, moving the media support member from the print position to a media pick position; and
- wherein the monitoring step comprises the step of monitoring the distance of travel of the media support member between the print position and the pick position to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 34. A method according to claim 33 wherein the step of moving the media support member comprises moving a selection lever to a Z-fold selection location when Z-fold media is loaded in the input, and moving the selection lever to a cut-sheet selection location when cut-sheet media is loaded in the input.
- 35. A method according to claim 33 wherein the Z-fold media spacing is greater than the cut-sheet media spacing.
- 36. A method according to claim 33 wherein:
- prior to the step of moving the media support member to the media pick position, the method further includes the step of engaging a clutch mechanism to couple the media support member to a drive motor, with the clutch mechanism including a cam surface having a feature thereon;
- the step of moving the media support member to the media pick position comprises the step of driving the media support member and the clutch mechanism with the drive motor; and
- the monitoring step comprises the step of monitoring the distance of travel of the media support member by monitoring the cam surface of the clutch mechanism.
- 37. A method according to claim 36 wherein:
- the method further includes the step of carrying the printhead across the printzone with a carriage mechanism;
- the engaging step comprises moving an actuator with the carriage mechanism until the actuator moves the clutch mechanism to couple the media support member to the drive motor, with the actuator having a cam follower portion; and
- the monitoring step comprises engaging the cam surface of the clutch mechanism with the cam follower portion of the actuator.
- 38. A method according to claim 37 wherein, during the step of moving the media support member from the media print position to the pick position:
- the engaging step comprises holding the actuator cam follower portion in engagement with the cam surface of the clutch mechanism using the carriage mechanism;
- the method further includes the step of monitoring the location of the carriage mechanism to determine the carriage location;
- the method further includes the steps of encountering the cam feature with the actuator cam follower, and in response to said encountering step, moving the actuator and carriage mechanism from a first location before said encountering step to a second location after said encountering step;
- the monitoring step comprises the step of monitoring a rotation segment of the drive motor from a beginning of rotation when the media support member is in the media print position until an ending time when the carriage mechanism moves to the second location as determined by the step of monitoring the location of the carriage; and
- quantifying the rotation segment of the drive motor from said beginning of rotation to said ending time.
- 39. A method according to claim 38 wherein;
- when the media support member is in a cut-sheet printing position to define the cut-sheet spacing for printing on cut-sheet media, the step of engaging the cam surface of the clutch mechanism with the cam follower portion of the actuator comprises contacting the cam surface with the cam follower portion at a first location on the cam surface, with the rotation segment having a first quantity corresponding to travel of the cam follower portion from the first location to the cam feature; and
- when the media support member is in a Z-fold printing position to define the Z-fold spacing for printing on Z-fold media, the step of engaging the cam surface of the clutch mechanism with the cam follower portion of the actuator comprises contacting the cam surface with the cam follower portion at a second location on the cam surface, with the rotation segment having a second quantity corresponding to travel of the cam follower portion from the second location to the cam feature, with the second quantity being distinguishable from said first quantity.
- 40. A method according to claim 38 wherein:
- said drive motor comprises a stepper motor that generates step counts when rotating, and the method further includes the step of counting the number of step counts during the rotation segment; and
- said quantifying step comprises quantifying the rotation segment of the drive motor from said beginning of rotation to said ending time with a number of steps counted during the rotation segment.
- 41. A method of printing on a Z-fold media from an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, with the Z-fold media comprising a first sheet defining a leading edge and a subsequent second sheet attached to the first sheet in a Z-fold arrangement with a first surface of said first sheet in contact with a first surface of said second sheet, the method comprising steps of:
- advancing the leading edge of the Z-fold media from the input toward the printzone through frictional engagement of a roller member with a second surface of the first sheet which is opposite the first surface of the first sheet;
- during the advancing step, simultaneously bending the first sheet and the second sheet around the roller member;
- during the bending step, separating the first surface of the first sheet from the first surface of the second sheet; and
- after the separating step, moving the Z-fold media into the printzone to receive ink ejected from the printhead.
- 42. A method according to claim 41 further including the steps of:
- during the bending step, locating the position of the leading edge by advancing the leading edge toward the printzone; and
- after the locating step and before the step of moving the Z-fold media into the printzone, moving the leading edge away form the printzone.
- 43. A method according to claim 42 wherein;
- the advancing step further comprises the step of incrementally advancing the leading edge of the Z-fold media from the input toward the printzone in a series of forward steps of the roller member, with each of the forward steps of the series being separated in time by a pause; and
- the method further includes the steps of separating the first surface of the first sheet from the first surface of the second sheet of the Z-fold media during said advancing step.
- 44. A method according to claim 41 further including the steps of:
- adjusting a printhead to media spacing defined by a distance between the printhead and media when in the printzone for printing from a cut-sheet spacing for printing on cut-sheet media to a Z-fold spacing for printing on Z-fold media; and
- monitoring the printhead to media spacing to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 45. A method according to claim 44 wherein:
- the adjusting step comprises the step of moving a media support member that supports media when in the printzone to a print position;
- the method further includes the step of, prior to the advancing step, moving the media support member from the print position to a media pick position; and
- monitoring step comprises the step of monitoring the distance of travel of the media support member between the print position and the pick position to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 46. A method of printing on a Z-fold media from an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, with the Z-fold media comprising a first sheet defining a leading edge and a subsequent second sheet attached to the first sheet in a Z-fold arrangement with a first surface of said first sheet in contact with a first surface of said second sheet, with the Z-fold media having a last sheet defining a trailing edge and having an outer surface, the method comprising the steps of:
- advancing the leading edge of the Z-fold media from the input toward the printzone through frictional engagement of a roller member with a second surface of the first sheet which is opposite the first surface of the first sheet;
- during the advancing step, gripping the outer surface of the last sheet with a first friction member located at the input;
- during the gripping step, separating the first surface of the first sheet from the first surface of the second sheet by pulling the first sheet with the roller member toward the printzone; and
- after the separating step, moving the Z-fold media into the printzone to receive ink ejected from the printhead.
- 47. A method according to claim 46 wherein:
- the moving step comprises moving the leading edge with the roller member through a feed path coupling the input with the printzone, with the feed path having an entrance adjacent the input;
- the method further includes the step of, during a portion of the advancing step, pulling the second sheet through frictional engagement with the first sheet toward the feed path entrance until the first and second sheets are over a second friction member; and
- the method further includes the step of thereafter, pushing the first and second sheets away from the feed path entrance and the second friction member.
- 48. A method according to claim 47 wherein the method further includes the steps of, during the pushing step:
- gripping the outer surface of the last sheet with the second friction member located at the feed path entrance; and
- separating the first surface of the first sheet from the first surface of the second sheet by pushing the first sheet with the roller member away from the feed path entrance while gripping the outer surface of the last sheet with the second friction member.
- 49. A method according to claim 48 wherein:
- said pulling step comprises rotating the roller member in a first direction at a first speed; and
- said pushing step comprises rotating the roller member in a second direction opposite the first direction and at a second speed which is faster than the first speed.
- 50. A method according to claim 46 further including the steps of:
- during the advancing step, simultaneously bending the first sheet and the second sheet around the roller member; and
- during the bending step, separating the first surface of the first sheet from the first surface of the second sheet.
- 51. A method according to claim 46 further including the steps of:
- during the bending step, locating the position of the leading edge by advancing the leading edge toward the printzone; and
- after the locating step and before the step of moving the Z-fold media into the printzone, moving the leading edge away from the printzone.
- 52. A method according to claim 46 wherein:
- the advancing step further comprises the step of incrementally advancing the leading edge of the Z-fold media from the input toward the printzone in a series of forward steps of the roller member, with each of the forward steps of the series being separated in time by a pause; and
- the method further includes the steps of separating the first surface of the first sheet from the first surface of the second sheet of the Z-fold media during said advancing step.
- 53. A method according to claim 46 further including the steps of:
- adjusting a printhead to media spacing defined by a distance between the printhead and media when in the printzone for printing from a cut-sheet spacing for printing on cut-sheet media to a Z-fold spacing for printing on Z-fold media; and
- monitoring the printhead to media spacing to determine whether the printhead to media spacing is at the cut-sheet spacing or at the Z-fold spacing.
- 54. A method of printing on a Z-fold media from an input of an inkjet printing mechanism having an inkjet printhead that prints on media in a printzone, with the Z-fold media comprising a first sheet defining a leading edge and a subsequent second sheet attached to the first sheet and arranged in Z-fold stack with a first surface of said first sheet in contact with a first surface of said second sheet, the method comprising the steps of:
- advancing the leading edge of the Z-fold media from the input toward the printzone at a first speed through frictional engagement with a second surface of the first sheet which is opposite the first surface of the first sheet;
- after the advancing step, moving the Z-fold stack away from the printzone through frictional engagement with the second surface of the first sheet at a second speed; and
- during said advancing step, separating the first surface of the first sheet from the first surface of the second sheet.
- 55. A method according to claim 54 further including the steps of:
- after the moving step, repeating the advancing step;
- and thereafter, repeating the moving step.
- 56. A method according to claim 54 further including the step of after the moving step, incrementally advancing the leading edge of the Z-fold media from the input toward the printzone in a series of forward steps through frictional engagement with the second surface of the first sheet, with each of the forward steps of the series being separated in time by a pause.
- 57. A method according to claim 54 wherein:
- the method further includes the step of, prior to the advancing step, moving the Z-fold stack toward a roller member;
- the advancing step comprises frictionally engaging the second surface of the first sheet with the roller member; and
- the method further includes the steps of, during the moving step:
- maintaining frictional contact between the roller member and a portion of the first sheet adjacent the leading edge; and
- moving the Z-fold stack away from the roller member.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation of application Ser. No. 08/739,334 filed on Oct. 29, 1996, now abandoned.
US Referenced Citations (14)
Continuations (1)
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Number |
Date |
Country |
Parent |
739334 |
Oct 1996 |
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