Claims
- 1. A thermal printer for producing a printing on the surface of a foil in an ink transfer operation, comprising:means for supplying said foil to said thermal printer, a thermal transfer ribbon including an ink which is transferable in said ink transfer operation at specific locations of said thermal transfer ribbon by heating said specific locations to an elevated temperature causing said ink to be fluid, means for arranging said thermal transfer ribbon in facial contact with said surface of said foil, energizable printing means for heating said specific locations of said thermal transfer ribbon to said elevated temperature in said ink transfer operation, means for energizing said energizable printing means, means for moving said energizable printing means towards said foil so as to sandwich said thermal transfer ribbon therebetween in a constrained state and for moving said energizable printing means away from said foil, means for moving said foil and said energizable printing means relative to one another at a specific speed while pressing said energizable printing means and said foil together and while energizing said energizable printing means, means for moving said thermal transfer ribbon relative to said energizable printing means along a specific direction of motion for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil, and said means for moving said energizable printing means towards and away from said foil including a supporting structure, said energizable printing means being pivotably mounted in said supporting structure for allowing said energizable printing means to pivot transversally relative to said specific direction of motion of said thermal transfer ribbon, said supporting structure including a biasing element for biasing said energising printing means in said pivotable mounting towards a specific initial position for self-aligning said energizable printing means in said specific initial position.
- 2. The thermal printer according to claim 1, wherein said biasing means being constituted by a spring element including one of a helical coil, a spiral coil, and a resilient spring element.
- 3. The thermal printer according to claim 1, further comprising a control means for controlling said means for supplying said foil to said thermal printer, said means for arranging said thermal transfer ribbon in facial contact with said surface of said foil, said energizable printing means, said means for energizing said energizable printing means, said means for pressing said energizable printing means and said foil together, said means for moving said foil and said energizable printing means relative to one another, and means for moving said thermal transfer ribbon relative to said energizable printing means.
- 4. The thermal printer according to claim 3, wherein said energizable printing means being stationary and said means for moving said foil and said energizable printing means relative to one another causing said foil to move relative to said energizable printing means in a continuous motion and said means for moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and moving said thermal transfer ribbon relative to said energizable printing means in the reverse direction relative to said energizable printing means while said energizable printing means are not heating so as to utilize an unused part of said thermal transfer ribbon in a subsequent ink transfer operation.
- 5. The thermal printer according to claim 3, wherein said means for moving said foil and said energizable printing means relative to one another causing said foil to move intermittently and maintaining said foil stationary during said ink transfer operation and causing said energizable printing means to move relative to said stationary foil and said means for moving said thermal transfer ribbon relative to said energizable printing means moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and moving said thermal transfer ribbon in the reverse direction relative to said energizable printing means while said energizable printing means are not heated so as to utilize an unused part of said thermal transfer ribbon in a subsequent ink transfer operation.
- 6. The thermal printer according to claim 1, wherein said energizable printing means being constituted by a printing head including individual energizable printing elements.
- 7. The thermal printer according to claim 1, wherein said energizable printing means being stationary and said means for moving said foil and said energizable printing means relative to one another causing said foil to move relative to said energizable printing means in a continuous motion and said means for moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and keeping said thermal transfer ribbon stationary relative to said energizable printing means while said energizable printing means are not heated.
- 8. The thermal printer according to claim 7, wherein said energizable printing elements of said printing head being arranged at a mutual spacing of 0.05 mm-1 mm.
- 9. The thermal printer according to claim 1, wherein said energizable printing means being controlled so as to perform said ink transfer operation utilizing a part of said thermal transfer ribbon not previously used in a preceding ink transfer operation.
- 10. The thermal printer according to claim 9, wherein said energizable printing means being controlled so as to perform said ink transfer operation utilizing said part of said thermal transfer ribbon used for said specific ink transfer operation being positioned at least partly transversely offset relative to that part of said thermal transfer ribbon used in a preceding ink transfer operation.
- 11. The thermal printer according to claim 1, wherein said specific speed being 50-1,000 mm/sec, while said reduced speed constitutes 20-98% of said specific speed.
- 12. A thermal printer for producing a printing on the surface of a foil in an ink transfer operation, comprising:means for supplying said foil to said thermal printer, a thermal transfer ribbon including an ink which is transferable in said ink transfer operation at specific locations of said thermal transfer ribbon by heating said specific locations to an elevated temperature causing said ink to be fluid, means for arranging said thermal transfer ribbon in facial contact with said surface of said foil, energizable printing means for heating said specific locations of said thermal transfer ribbon to said elevated temperature in said ink transfer operation, means for energizing said energizable printing means, means for moving said energizable printing means towards said foil so as to sandwich said thermal transfer ribbon therebetween in a constrained state and for moving said energizable printing means away from said foil, said means for moving said energizable printing means towards and away from said foil including an actuator means, means for moving said foil and said energizable printing means relative to one another at a specific speed while pressing said energizable printing means and said foil together and while energizing said energizable printing means, and means for moving said thermal transfer ribbon relative to said energizable printing means for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil, said thermal transfer ribbon being delivered from a delivery reel, being moved past said energizable printing means and being received by a take-up reel, said means for moving said thermal transfer ribbon relative to said energizable printing means including a roller driven by a motor, said thermal printer further including a housing wall, said reels and said energizable printing means being exposed at an outer side of said housing wall, and said actuator means and said motor driving said roller being concealed behind said housing wall.
- 13. The thermal printer according to claim 12, wherein said means for moving said thermal transfer ribbon further including guide pins for guiding said thermal transfer ribbon past said energizable printing means.
- 14. The thermal printer according to claim 12, wherein said guiding pins and said energizable printing means being shiftable between respective first positions and respective second positions, said respective first positions constitute operational positions for performing a printing operation and said respective second positions constitute retracted positions in which said thermal transfer ribbon be easily positioned in said apparatus for said motion past said energizable printing means.
- 15. The thermal printer according to claim 12, further comprising a supporting structure, said energizable printing means being pivotably mounted in said supporting structure for allowing said energizable printing means to pivote transversally relative to said specific direction of motion of said thermal transfer ribbon, said supporting structure including a biasing element for biasing said energising printing means in said pivotable mounting towards a specific initial position for self-aligning said energizable printing means in said specific initial position.
- 16. The thermal printer according to claim 15, wherein said biasing means being constituted by a spring element including one of a helical coil, a spiral coil, and a resilient spring element.
- 17. The thermal printer according to claim 12, further comprising a control means for controlling said means for supplying said foil to said thermal printer, said means for arranging said thermal transfer ribbon in facial contact with said surface of said foil, said energizable printing means, said means for energizing said energizable printing means, said means for pressing said energizable printing means and said foil together, said means for moving said foil and said energizable printing means relative to one another, and means for moving said thermal transfer ribbon relative to said energizable printing means.
- 18. The thermal printer according to claim 12, wherein said energizable printing means being constituted by a printing head including individual energizable printing elements.
- 19. The thermal printer according to claim 12, wherein said energizable printing means being stationary and said means for moving said foil and said energizable printing means relative to one another causing said foil to move relative to said energizable printing means in a continuous motion and said means for moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and keeping said thermal transfer ribbon stationary relative to said energizable printing means while said energizable printing means are not heated.
- 20. The thermal printer according to claim 19, wherein said energizable printing elements of said printing head being arranged at a mutual spacing of 0.05 mm-1 mm.
- 21. The thermal printer according to claim 12, wherein said energizable printing means being stationary and said means for moving said foil and said energizable printing means relative to one another causing said foil to move relative to said energizable printing means in a continuous motion and said means for moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and moving said thermal transfer ribbon relative to said energizable printing means in the reverse direction relative to said energizable printing means while said energizable printing means are not heating so as to utilize an unused part of said thermal transfer ribbon in a subsequent ink transfer operation.
- 22. The thermal printer according to claim 12, wherein said means for moving said foil and said energizable printing means relative to one another causing said foil to move intermittently and maintaining said foil stationary during said ink transfer operation and causing said energizable printing means to move relative to said stationary foil and said means for moving said thermal transfer ribbon relative to said energizable printing means moving said thermal transfer ribbon relative to said energizable printing means at a reduced speed as compared to said specific speed of said foil relative to said energizable printing means and consequently moving said thermal transfer ribbon relative to said foil for causing said ink of said thermal transfer ribbon to be transferred at said specific locations to said foil at specific areas thereof constituting said printing so as to smear said ink of said thermal transfer ribbon at said specific locations onto said foil through said motion of said thermal transfer ribbon relative to said foil while said energizable printing means are heated during said ink transfer operation and moving said thermal transfer ribbon in the reverse direction relative to said energizable printing means while said energizable printing means are not heated so as to utilize an unused part of said thermal transfer ribbon in a subsequent ink transfer operation.
- 23. The thermal printer according to claim 12, wherein said energizable printing means being controlled so as to perform said ink transfer operation utilizing a part of said thermal transfer ribbon not previously used in a preceding ink transfer operation.
- 24. The thermal printer according to claim 23, wherein said energizable printing means being controlled so as to perform said ink transfer operation utilizing said part of said thermal transfer ribbon used for said specific ink transfer operation being positioned at least partly transversely offset relative to that part of said thermal transfer ribbon used in a preceding ink transfer operation.
- 25. The thermal printer according to claim 12, wherein said specific speed being 50-1,000 mm/sec, while said reduced speed constitutes 20-98% of said specific speed.
Priority Claims (2)
Number |
Date |
Country |
Kind |
PA 1998 00038 |
Jan 1998 |
DK |
|
PA 1998 01443 |
Nov 1998 |
DK |
|
Parent Case Info
This application is a continuation-in-part of U.S. Ser. No. 09/264,023, filed Mar. 8, 1999, which is a continuing application of PCT/DK99/00017 which has an International Filing Date of Jan. 12, 1999, and claims priority from Denmark application PA 1998 00038 and PA 1998 01443, filed Jan. 12, 1998 and Nov. 6, 1998, respectively, and which was published in English and which in turn is a continuation-in-part of U.S. Ser. No. 09/120,335 which was filed on Jul. 22, 1988, claiming priority from Danish application No. 038/98, filed Jan. 12, 1998, and is now abandoned.
US Referenced Citations (21)
Foreign Referenced Citations (5)
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Date |
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0 157 096 |
Oct 1985 |
EP |
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Apr 1986 |
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Dec 1988 |
EP |
63-165169 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/DK99/00017 |
Jan 1999 |
US |
Child |
09/264023 |
|
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/264023 |
Mar 1999 |
US |
Child |
09/950924 |
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US |