Claims
- 1. A printing system, comprising:a media transport assembly adapted to route media through a media path of the printing system; a motor adapted to drive the media transport assembly; and a power transmission arrangement operatively coupling the motor with the media transport assembly, wherein the media transport assembly includes a pick assembly adapted to draw the media into the media path and a feed assembly adapted to feed the media through the media path, and wherein a portion of the power transmission arrangement is adapted to rotate in a first direction to couple the motor with the pick assembly and the feed assembly and rotate in a second direction opposite the first direction to couple the motor with the feed assembly and decouple the motor from the pick assembly.
- 2. The printing system of claim 1, further comprising:a carriage assembly adapted to hold a printhead and traverse the media, wherein the power transmission arrangement is adapted to selectively couple the motor with the pick assembly and the feed assembly when the carriage assembly is in a position to traverse the media.
- 3. The printing system of claim 1, wherein the media transport assembly further includes a drive assembly adapted to advance the media through the media path, and wherein the motor is coupled with the drive assembly.
- 4. The printing system of claim 3, wherein the motor is adapted to drive the drive assembly in a first drive direction and, via the power transmission arrangement, drive the pick assembly and the feed assembly in a second drive direction opposite the first drive direction.
- 5. The printing system of claim 3, wherein the motor is adapted to drive the drive assembly in a first drive direction and, via the power transmission arrangement, drive the feed assembly in the first drive direction.
- 6. The printing system of claim 1, wherein the power transmission arrangement includes:a drive shaft; a drive gear mounted on the drive shaft; a swing arm supported by the drive shaft and rotatable between a first position and a second position; and a transfer gear supported by the swing arm, engaged with the drive gear, and movable between an engaged position with the pick assembly and an engaged position with the feed assembly when the swing arm is rotated between the first position and the second position.
- 7. The printing system of claim 6, wherein rotation of the drive shaft in the first direction is adapted to rotate the swing arm to the first position and rotation of the drive shaft in the second direction opposite the first direction is adapted to rotate the swing arm to the second position.
- 8. The printing system of claim 6, wherein the power transmission arrangement further includes:a first idler gear supported by the swing arm and engaged with the drive gear; a second idler gear supported by the swing arm and engaged with the first idler gear; and a third idler gear supported by the swing arm and engaged with the second idler gear, wherein the third idler gear is adapted to engage the feed assembly when the swing arm is in the first position.
- 9. The printing system of claim 8, wherein a drag force on the first idler gear is adapted to rotate the swing arm to the first position with rotation of the drive gear in the first direction and rotate the swing arm to the second position with rotation of the drive gear in the second direction opposite the first direction.
- 10. The printing system of claim 6, wherein the swing arm is adapted to rotate about an axis of the drive shaft.
- 11. A method of operating a printing system, the method comprising:routing media through a media path of the printing system via a media transport assembly, including drawing the media into the media path with a pick assembly and feeding the media through the media path with a feed assembly; and driving the media transport assembly with a motor, including rotating a portion of a power transmission arrangement interposed between the motor and the media transport assembly in a first direction to couple the motor with the pick assembly and the feed assembly, and rotating the portion of the power transmission arrangement in a second direction opposite the first direction to couple the motor with the feed assembly and decouple the motor from the pick assembly.
- 12. The method of claim 11, further comprising:traversing the media with a carriage assembly, wherein driving the media transport assembly includes selectively coupling the motor with the pick assembly and the feed assembly via the power transmission arrangement when the carriage assembly is in a position to traverse the media.
- 13. The method of claim 11, wherein routing the media further includes advancing the media through the media path with a drive assembly, and wherein driving the media transport assembly includes coupling the motor with the drive assembly.
- 14. The method of claim 13, wherein driving the media transport assembly includes driving the drive assembly in a first drive direction and, via the power transmission arrangement, driving the pick assembly and the feed assembly in a second drive direction opposite the first drive direction.
- 15. The method of claim 13, wherein driving the media transport assembly includes driving the drive assembly in a first drive direction and, via the power transmission arrangement, driving the feed assembly in the first drive direction.
- 16. The method of claim 11, wherein the power transmission arrangement includes:a drive shaft; a drive gear mounted on the drive shaft; a swing arm supported by the drive shaft; and a transfer gear supported by the swing arm and engaged with the drive gear, wherein driving the media transport assembly includes rotating the swing arm between a first position and a second position and engaging the pick assembly with the transfer gear when the swing arm is in the first position and engaging the feed assembly with the transfer gear when the swing arm is in the second position.
- 17. The method of claim 16, wherein driving the media transport assembly includes rotating the drive shaft in the first direction to rotate the swing arm to the first position and rotating the drive shaft in the second direction opposite the first direction to rotate the swing arm to the second position.
- 18. The method of claim 16, wherein the power transmission arrangement further includes:a first idler gear supported by the swing arm and engaged with the drive gear; a second idler gear supported by the swing arm and engaged with the first idler gear; and a third idler gear supported by the swing arm and engaged with the second idler gear, wherein driving the media transport assembly further includes engaging the feed assembly with the third idler gear when the swing arm is in the first position.
- 19. The method of claim 18, wherein rotating the swing arm includes imposing a drag force on the first idler gear and rotating the swing arm to the first position with rotation of the drive gear in the first direction and rotating the swing arm to the second position with rotation of the drive gear in the second direction opposite the first direction.
- 20. The method of claim 16, wherein rotating the swing arm includes rotating the swing arm about an axis of the drive shaft.
- 21. A power transmission arrangement, comprising:a shaft; a first gear mounted on the shaft; an arm supported by the shaft and rotatable between a first position and a second position; a second gear supported by the arm, engaged with the first gear, and movable between an engaged position with a first drive train and an engaged position with a second drive train when the arm is rotated between the first position and the second position; and a gear train supported by the arm, engaged with the first gear, and movable between an engaged position and a disengaged position with the second drive train when the arm is rotated between the first position and the second position.
- 22. The power transmission arrangement of claim 21, wherein rotation of the shaft in a first direction is adapted to rotate the arm to the first position and rotation of the shaft in a second direction opposite the first direction is adapted to rotate the arm to the second position.
- 23. The power transmission arrangement of claim 21, wherein the arm is adapted to rotate about an axis of the shaft.
- 24. The power transmission arrangement of claim 21, wherein the gear train includes:a third gear supported by the arm and engaged with the first gear; a fourth gear supported by the arm and engaged with the third gear; and a fifth gear supported by the arm and engaged with the fourth gear, wherein the fifth gear is movable between the engaged position and the disengaged position with the second drive train when the arm is rotated between the first position and the second position.
- 25. The power transmission arrangement of claim 24, further comprising:an element adapted to impose a drag force on the third gear, wherein the drag force is adapted to rotate the arm to the first position with rotation of the first gear in a first direction and rotate the arm to the second position with rotation of the first gear in a second direction opposite the first direction.
- 26. A power transmission arrangement for selectively transmitting power from a drive shaft to a first drive train and a second drive train, the power transmission arrangement comprising:a drive gear driven by the drive shaft; a transfer gear engaging the drive gear; and a swing arm supported by the drive shaft and supporting the transfer gear, wherein rotating the drive shaft in a first direction rotates the swing arm to a first position and engages the transfer gear with the first drive train and rotating the drive shaft in a second direction opposite the first direction rotates the swing arm to a second position and engages the transfer gear with the second drive train.
- 27. The power transmission arrangement of claim 26, wherein the swing arm rotates about an axis of the drive shaft.
- 28. The power transmission arrangement of claim 26, further comprising:first idler gear engaging the drive gear; a second idler gear engaging the first idler gear; and a third idler gear engaging the second idler gear, wherein the swing arm supports the first idler gear, the second idler gear, and the third idler gear, and wherein the third idler gear engages the second drive train when the swing arm rotates to the first position.
- 29. The power transmission arrangement of claim 28, further comprising:an element imposing a drag force on the first idler gear, wherein the drag force opposes rotation of the first idler gear and rotates the swing arm to the first position when rotating the drive gear in the first direction and rotates the swing arm to the second position when rotating the drive gear in the second direction opposite the first direction.
- 30. A power transmission arrangement, comprising:a drive shaft; a drive gear mounted on the drive shaft; a transfer gear engaged with the drive gear; and means for selectively engaging the transfer gear with a first drive train when the drive shaft is rotated in a first direction and engaging the transfer gear with a second drive train when the drive shaft is rotated in a second direction opposite the first direction.
- 31. The power transmission arrangement of claim 30, further comprising:an idler gear train engaged with the drive gear; and means for selectively engaging and disengaging the idler gear train with the second drive train when the drive shaft is rotated in the first direction and the second direction.
- 32. The power transmission arrangement of claim 31, wherein means for selectively engaging and disengaging the idler gear train with the second drive train includes means for moving the idler gear train between an engaged position and a disengaged position with the second drive train.
- 33. The power transmission arrangement of claim 30, wherein means for selectively engaging the transfer gear with the first drive train and the second drive train includes means for moving the transfer gear between an engaged position with the first drive train and an engaged position with the second drive train.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is related to U.S. patent application Ser. No. 10/164,119, filed on May 31, 2002, assigned to the assignee of the present invention, and incorporated herein by reference.
US Referenced Citations (11)