Claims
- 1. A thermal transfer printer providing controlled feed for a thermal transfer ribbon comprising:
- a thermal printhead,
- advance means for advancing a print receiving medium past said thermal printhead,
- ribbon advance means for advancing a thermal transfer ribbon past said thermal printhead, the thermal transfer ribbon being disposed between the print receiving medium web and said thermal printhead,
- bias means for maintaining the thermal transfer ribbon, the print receiving medium, and said thermal printhead in physical contact;
- control means for producing control signals for said thermal printhead,
- said ribbon advance means including a friction roller in frictional contact with said ribbon, ribbon guide means and drive means out of contact with said ribbon, said ribbon guide means cooperating with said friction roller to control the frictional drag of said friction roller on said thermal transfer ribbon, and said drive means being responsive to said control signals for driving said friction roller at a tangential velocity which is a fraction of the linear velocity of the print receiving medium.
- 2. The thermal transfer printer of claim 1, wherein said ribbon guide means is constructed and arranged to maintain the thermal transfer ribbon in contact with said friction roller along more than 90.degree. of the circumference of said friction roller.
- 3. The thermal transfer printer of claim 2, wherein said ribbon guide means comprise first and second guide rollers mounted on the printer in spaced apart relation.
- 4. The thermal transfer printer of claim 2, wherein said drive means comprises a stepper motor coupled to said friction roller and responsive to said control signals to provide incremental advancement of the thermal transfer ribbon a variable number of steps.
- 5. The thermal transfer printer of claim 2, wherein said ribbon guide means is constructed and arranged to maintain the thermal transfer ribbon in contact with said friction roller along at least about 180.degree. of the circumference of said friction roller.
- 6. The thermal transfer printer of claim 5, wherein said drive means comprises a stepper motor coupled to said friction roller and responsive to said control signals to provide incremental advancement of the thermal transfer ribbon a variable number of steps.
- 7. A thermal transfer printer providing controlled feed for a thermal transfer ribbon comprising:
- a thermal printhead,
- advance means for advancing a print receiving medium past said thermal printhead,
- said thermal printhead having a line of heater elements disposed transverse to the direction of advancement of the web,
- a removable ribbon package including a housing containing the thermal transfer ribbon,
- ribbon guide means,
- ribbon advance means including a friction roller in frictional contact with the ribbon and drive means out of contact with the ribbon to drive the friction roller for advancing the thermal transfer ribbon past said thermal printhead, said ribbon guide means cooperating with said friction roller such that the thermal transfer ribbon is maintained in engagement with a portion of said outer periphery of said friction roller over more than 90.degree. of its circumference,
- control means for producing control signals for selecting heater elements to be energized,
- and means responsive to said control signals for driving said friction roller at a tangential velocity which is a fraction of the linear velocity of the print receiving medium.
- 8. The thermal transfer printer of claim 7, wherein the thermal transfer ribbon engages said friction roller over at least about 180.degree. of its circumference.
- 9. The thermal transfer printer of claim 7, wherein said ribbon package includes said ribbon guide means.
- 10. The thermal transfer printer of claim 9, wherein said ribbon guide means includes first and second ribbon guides spaced apart from each other to define a channel therebetween, said friction roller being received laterally in said channel when said ribbon package is installed in the thermal printer so as to deflect said ribbon and wrap it part way around said friction roller.
- 11. The thermal transfer printer of claim 9, wherein said ribbon guide means includes first and second ribbon guides spaced apart from one another defining a channel therebetween, said friction roller being received in said channel when said ribbon package is installed in the thermal printer, said first and second ribbon guides being aligned in a plane tangent to the outer circumferential edge of said friction roller.
- 12. A ribbon package for a thermal transfer printer having controlled thermal transfer ribbon feed by means of a friction roller, said ribbon package comprising:
- enclosing means for enclosing a supply of thermal transfer ribbon and having a ribbon exit aperture therein, and
- first and second ribbon guides spaced apart from one another on said enclosing means and cooperating to define a channel therebetween which is spanned by the ribbon, the friction roller being received laterally in said channel when said ribbon package is installed in the thermal transfer printer so as to deflect the ribbon into said channel and wrap it part way around the friction roller.
- 13. The ribbon package of claim 12, wherein said first and second ribbon guides are aligned in a plane tangent to the outer circumferential edge of the friction roller.
- 14. The ribbon package of claim 12, and further comprising a removable cover means for preventing engagement between said thermal transfer ribbon and the friction roller.
Parent Case Info
This is a divisional of application Ser. No. 07/993,114, filed Dec. 18, 1992 now U.S. Pat. No. 5,372,439, issued Dec. 13, 1994.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5122882 |
Ishida et al. |
Jun 1992 |
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Divisions (1)
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Number |
Date |
Country |
Parent |
993114 |
Dec 1992 |
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