Claims
- 1. An imaging apparatus for forming images on an at least partially electrically conductive printing plate; the imaging apparatus comprising:a mounting surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output signal; and a charge generator to electrically charge the mounting surface to attract the printing plate to the mounting surface and wherein the electrical circuit detects an electrical connection between each of the electrical conductors by detecting the presence of charge at all of the conductors.
- 2. An imaging apparatus for forming images on an at least partially electrically conductive printing plate; the imaging apparatus comprising:a mounting surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output signal; and a ground electrically connected to the printing plate wherein the electrical circuit comprises an electrical signal generator generating an electrical signal at each of the electrical conductors and the electrical signal generator is adapted to sense an electrical connection between the electrical conductors by detecting a ground at each of the conductors.
- 3. An imaging apparatus for forming images on an at least partially electrically conductive printing plate; the imaging apparatus comprising:a mounting surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; and an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output signal; wherein the printing plate has axial and lateral edges and wherein all of the electrical conductors are positioned to contact an edge of the printing plate, at least one of the electrical conductors is arranged to engage a lateral edge and at least one of the electrical conductors is arranged to engage a longitudinal edge.
- 4. The imaging apparatus of claim 3 wherein the electrical circuit comprises a signal detector adapted to sense electrical signals at a first electrical conductor and an electrical signal generator generating an electrical signal at each of the remaining electrical conductors wherein the signal detector is adapted to generate an output when a signal at the first electrical conductor includes a signal from all of the remaining electrical conductors.
- 5. The imaging apparatus of claim 4, wherein the signal generator generates different electrical signals at each of the remaining electrical conductors and wherein the signal detector is adapted to detect each electrical signal and to generate a second output identifying the electrical conductors that are in contact with the printing plate.
- 6. The imaging apparatus of claim 4, wherein the electrical signal generator generates a separate voltage signal at each of the remaining electrical conductors and wherein the signal detector comprises a voltage signal detector.
- 7. The imaging apparatus of claim 6, wherein the signal detector comprises a voltage detector calibrated to detect each individual voltage signal and to generate a second output identifying conductors that are not in contact with the printing plate.
- 8. The imaging apparatus of claim 3, wherein the printing plate has a corner and electrical conductors are arranged to detect a corner of the printing plate.
- 9. The imaging apparatus of claim 3, wherein the output signal comprises a radio frequency signal and wherein the imaging apparatus has a radio frequency receiver to detect the radio frequency signal.
- 10. The imaging apparatus of claim 3, wherein the mounting surface comprises a rotatable drum.
- 11. The imaging apparatus of claim 10, wherein the output from the electrical circuit comprises an electrical signal transmitted to a rotating surface of the drum and wherein the imaging apparatus has a slip ring to engage the rotating surface of the drum.
- 12. The imaging apparatus of claim 3, wherein the mounting surface comprises a platen.
- 13. The imaging apparatus of claim 3, wherein the mounting surface comprises a printing plate.
- 14. The imaging apparatus of claim 3, wherein the printing plate has a conductive edge.
- 15. The imaging apparatus of claim 3, wherein the printing plate further comprises a conductive edge wrapping.
- 16. The imaging apparatus of claim 3, wherein the printing plate comprises at least two edges having a conductive coating.
- 17. The imaging apparatus of claim 3, wherein the printing plate has at least two electrically conductive edges and the electrical conductors extend from the mounting surface to define electrically conductive abutments.
- 18. The imaging apparatus of claim 17, wherein the printing plate has axial and lateral edges and wherein all of the electrical conductors are positioned to contact an edge of the printing plate, at least one of the electrical conductors is arranged to engage a lateral edge and at least one of the electrical conductors is arranged to engage a longitudinal edge.
- 19. The imaging apparatus of claim 18, wherein the printing plate has a corner and wherein electrical conductors are arranged to detect a corner of the printing plate.
- 20. A mounting surface for receiving electrically conductive printing plates; the mounting surface comprising:an outer surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output; and a charge generator to electrically charge the mounting surface to attract the printing plate to the mounting surface and wherein the electrical circuit detects an electrical connection between each of the electrical conductors by detecting the presence of charge at all of the electrical conductors.
- 21. The mounting surface of claim 20 wherein the electrical circuit comprises a signal detector adapted to sense electrical signals at a first electrical conductor and an electrical signal generator generating an electrical signal at each of the remaining electrical conductors wherein the signal detector is adapted to generate an output when a signal at the first electrical conductor includes a signal from all of the remaining electrical conductors.
- 22. The mounting surface of claim 21, wherein the signal generator generates different electrical signals at each of the remaining electrical conductors and wherein the signal detector is adapted to detect each individual signal and to generate a second output identifying the electrical conductors that are in contact with the printing plate.
- 23. The mounting surface of claim 21, wherein the electrical signal generator generates a separate voltage at each of the remaining electrical conductors and wherein the signal detector comprises a voltage level detector.
- 24. The mounting surface of claim 23, wherein the signal detector comprises a voltage detector calibrated to detect each individual voltage level and to generate a second output identifying those conductors that are not in contact with the printing plate.
- 25. A mounting surface for receiving electrically conductive printing plates; the mounting surface comprising:an outer surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output; and a ground electrically connected to the printing plate wherein the electrical circuit comprises an electrical signal generator generating an electrical signal at each of the electrical conductors and the electrical signal generator is adapted to sense an electrical connection between the electrical conductors by detecting a ground at each of the electrical conductors.
- 26. A mounting surface for receiving electrically conductive printing plates; the mounting surface comprising:an outer surface having at least three electrically isolated conductors arranged so that when the electrically conductive printing plate is in registration on the mounting surface the electrically conductive printing plate defines an electrical connection between all of the electrical conductors; and an electrical circuit adapted to sense an electrical connection between all of the conductors and to thereupon generate an output; wherein the printing plate has axial and lateral edges and wherein all of the electrical conductors are positioned to contact an edge of the printing plate, at least one of the electrical conductors is arranged to engage a lateral edge and at least one of the electrical conductors is arranged to engage a longitudinal edge.
- 27. The mounting surface of claim 26, wherein the printing plate has a corner and the electrical conductors are arranged to detect a corner of the printing plate.
- 28. The mounting surface of claim 26, wherein the output from the electrical circuit comprises a radio frequency signal and wherein the imaging apparatus has a radio frequency receiver to detect the radio frequency signal.
- 29. The mounting surface of claim 26, wherein the mounting surface comprises a rotatable drum.
- 30. The mounting surface of claim 26, wherein the output from the electrical circuit comprises an electrical signal transmitted to a rotating surface of the drum and wherein the imaging apparatus has a slip ring to engage the rotating surface of the drum.
- 31. The mounting surface of claim 26, wherein the mounting surface comprises a platen.
- 32. The mounting surface of claim 26, wherein the mounting surface comprises a printing plate.
- 33. The mounting surface of claim 26, wherein the printing plate comprises a conductive edge.
- 34. The mounting surface of claim 26, wherein the printing plate comprises conductive edge wrapping.
- 35. The mounting surface of claim 26, wherein the printing plate comprises at least two edges having a conductive coating.
- 36. The mounting surface of claim 26, wherein the printing plate has at least two electrically conductive edges and the electrical conductors extend from the mounting surface to define electrically conductive abutments.
- 37. The mounting surface of claim 36, wherein the printing plate has axial and lateral edges and wherein all of the electrical conductors are positioned to contact an edge of the printing plate, at least one of the electrical conductors is arranged to engage a lateral edge and at least one of the conductors is arranged to engage a longitudinal edge.
- 38. The mounting surface of claim 37, wherein the printing plate has a corner and the electrical conductors are arranged to detect a corner of the printing plate.
CROSS REFERENCE TO RELATED APPLICATIONS
Cross reference is made to commonly assigned and co-pending U.S. Pat. App. Ser. No. 09/845,145, filed Apr. 30, 2001.
US Referenced Citations (15)
Foreign Referenced Citations (2)
Number |
Date |
Country |
298 08 098 |
Jul 1998 |
DE |
298 08 099 |
Jul 1998 |
DE |