Claims
- 1. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supporting a drive roller and a driven roller over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt; and
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element;
- wherein a distance between said driven roller adjoining the photoconductive element and a nip portion where said photoconductive element and said transfer belt face each other is L.sub.1, and a voltage to be applied from said high-tension power source to said contact electrode means is V.sub.O, said distance L.sub.1 being selected to satisfy a relation:
- L.sub.1 .gtoreq.a.vertline.V.sub.O .vertline.
- where .alpha. is 1.0 (mm/kV).
- 2. A device as claimed in claim 1, wherein said drive roller is made of an insulating material.
- 3. A device as claimed in claim 1, wherein said driven roller comprises a conductive roller held in an electrically floating state.
- 4. The device of claim 1, wherein a distance between said nip portion and said contact electrode is L.sub.2, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- where a is 1.0 (mm/kV).
- 5. The device of claim 4, further including a first discharge element located downstream from said contact electrode by a distance L.sub.3, and wherein L.sub.3 is selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 6.
- 6. The device of claim 5, further including a second discharge element located downstream from said first discharge element by a distance L.sub.4, and wherein said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 7. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supporting a drive roller and a driven roller over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt; and
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element;
- wherein a distance between a nip portion where the photoconductive element and said transfer belt face each other and said contact electrode means is L.sub.2, and a voltage to be applied from said high-tension power source to said contact electrode means is V.sub.O, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- where .alpha. is 1.0 (mm/kV).
- 8. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supporting first and second rollers over which said transfer belt is passed, said first roller located upstream of a nip portion between the transfer belt and the photoconductive element, and said second roller located downstream of the nip portion between the transfer belt and the photoconductive element;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt;
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- discharging means located downstream of said contact electrode means and upstream of said second roller with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharging means comprising first and second contact elements;
- wherein a distance between said first and second contact elements is L.sub.4, and said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 9.
- 9. The device of claim 8, wherein said first and second contact elements are contact plates.
- 10. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supportinq a drive roller and a driven roller over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt;
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- discharging means located downstream of said contact electrode means with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharging means comprising first and second contact plates located inside of said transfer belt;
- wherein a distance between a nip portion where the photoconductive element and said transfer belt face each other and said contact electrode means is L.sub.2, and a distance between said contact electrode means and at least one of said first and second contact plates is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2 ; and
- wherein a distance between said first and second contact plates is L.sub.4, and said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 11.
- 11. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supporting first and second rollers over which said transfer belt is passed, said first roller located upstream of a nip portion between the transfer belt and the photoconductive element, and said second roller located downstream from the nip portion between the transfer belt and the photoconductive element;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt;
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- discharging mens located downstream of said contact electrode means and upstream of said second roller with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharging means comprising a contact element located inside of said transfer belt;
- wherein said contact electrode means is located downstream of a nip portion between said photoconductive element and said transfer belt, and wherein a distance between said nip portion and said contact electrode means is L.sub.2 and that a voltage to be applied from said high-tension power source to said contact electrode means is V.sub.O, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.;
- and wherein a distance between said contact electrode means and said discharging means is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 12.
- 12. The device of claim 11, wherein said contact element is a contact plate.
- 13. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt made of a dielectric material and contacting a surface of the photoconductive element;
- supporting means supporting a drive roller and a driven roller over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to between the photoconductive element and said transfer belt;
- contact electrode means connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- transfer current control means for controlling a current to be fed from said high-tension power source such that a current to flow from said transfer belt to the photoconductive element remains constant;
- said transfer belt having a double layer structure made up of an outer layer having a surface resistivity of 1.times.10.sup.9 .OMEGA. to 1.times.10.sup.12 .OMEGA. and an inner layer having a surface resistivity of 8.times.10.sup.6 .OMEGA. to 8.times.10.sup.8 .OMEGA. and a volume resistivity of 5.times.10.sup.8 .OMEGA..cm to 5.times.10.sup.10 .OMEGA..cm.
- 14. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member, said nip portion having a predetermined width, said transfer belt having an electric resistance of 10.sup.9 .OMEGA. to 10.sup.12 .OMEGA. at a surface of said transfer belt which contacts said surface of the image bearing member;
- supporting means supporting rotatable members over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to said nip portion;
- contact electrode means located downstream of said nip portion and directly contacting an inner surface of said transfer belt for applying a transfer charge to said transfer belt; and
- a power source connected to said contact electrode means so that a transfer current is fed from said power source to said contact electrode means;
- the device further including a discharge member spaced from said contact electrode means by a distance L.sub.3, wherein said contact electrode means is spaced from said nip portion by a distance L.sub.2, and wherein L.sub.3 .gtoreq.L.sub.2.
- 15. A device as claimed in claim 14, wherein the discharge member is located between said contact electrode means and one of said rotatable members of said supporting means located at a position which is nearest to said nip portion downstream of said contact electrode means and directly contacts said transfer belt for dissipating said transfer charge of said transfer belt which is applied by said contact electrode means.
- 16. A device as claimed in claim 15, wherein a plurality of discharge members are located inside of said transfer belt.
- 17. A device as claimed in claim 15, wherein a plurality of discharge members are located inside of said transfer belt, at least one of which comprises said supporting means.
- 18. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member, said nip portion having a predetermined width;
- supporting means supporting rotatable members over which said transfer belt is passed;
- sheet transporting means for transporting the sheet to said nip portion;
- contact electrode means located downstream of said nip portion and directly contacting an inner surface of said transfer belt for applying a transfer charge to said transfer belt such that said nip portion is not overlapped by a contact portion where said contact electrode means contacts said inner surface of said transfer belt;
- a power source connected to said contact electrode means so that a transfer current is fed from said power source to said contact electrode means;
- discharge means located between said contact electrode means and one of said rotatable members of said supporting means located at a position which is nearest to said nip portion downstream of said contact electrode means and directly contacts said transfer belt for dissipating said transfer charge of said transfer belt which is applied by said contact electrode means; and
- control means for controlling said power source such that said transfer current from said power source is selected to satisfy a relation:
- I.sub.1 -I.sub.2 =I.sub.OUT
- where I.sub.1 is said transfer current, I.sub.2 is a feedback current flowing from said discharge means to ground via said transfer belt, and I.sub.OUT is constant,
- where a distance between said nip portion and said contact electrode means is L.sub.2 and a distance between said contact electrode means and said discharge means is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 19. A device as claimed in claim 18, wherein said I.sub.OUT corresponds to a current flowing from said contact electrode means to the image bearing means via said transfer belt.
- 20. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member, said nip portion having a predetermined width, said transfer belt having an electric resistance of 10.sup.6 .OMEGA. to 10.sup.12 .OMEGA. at a surface of said transfer belt which contacts said surface of the image bearing member;
- a supporter supporting rotatable members over which said transfer belt is passed;
- a sheet transporter which transports the sheet to said nip portion;
- a contact electrode located downstream of said nip portion and directly contacting an inner surface of said transfer belt for applying a transfer charge to said transfer belt; and
- a power source connected to said contact electrode so that a transfer current is fed from said power source to said contact electrode;
- the device further including a discharge member spaced from said contact electrode means by a distance L.sub.3, wherein said contact electrode means is spaced from said nip portion by a distance L.sub.2, and wherein L.sub.3 .gtoreq.L.sub.2.
- 21. A device as claimed in claim 20, wherein a plurality of discharge members are located inside of said transfer belt.
- 22. A device as claimed in claim 20, wherein a plurality of discharge members are located inside of said transfer belt, at least one of which comprises said supporter.
- 23. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member;
- a supporter supporting rollers over which said transfer belt is passed;
- an electrode located at at least one position which is disposed at one of an upstream location and a downstream location with respect to the nip portion and directly contacting said transfer belt for applying a transfer charge to said transfer belt;
- a power source connected to said electrode so that a transfer current is fed from said power source to said electrode;
- a discharger located downstream of the nip portion with respect to an intended direction of movement of said transfer belt for dissipating said transfer charge of said transfer belt which is applied by said electrode, said discharger including at least one discharge member; and
- a controller which controls said power source such that said transfer current from said power source is selected to satisfy a relation:
- I.sub.1 -I.sub.2 =I.sub.OUT
- where I.sub.1 is said transfer current, I.sub.2 is a feedback current flowing from said discharger to ground via said transfer belt, and I.sub.OUT is constant,
- wherein a distance between said nip portion and said electrode is L.sub.2 and a distance between said electrode and said one discharge member is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 24.
- 24. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- an endless transfer member contacting a surface of the image bearing member to thereby form a nip portion between said endless transfer member and the image bearing member;
- a supporter supporting rollers over which said endless transfer member is passed;
- an electrode directly contacting said endless transfer member for applying a transfer charge to said endless transfer member;
- a power source connected to said electrode so that a transfer current is fed from said power source to said electrode;
- a discharger which dissipates said transfer charge of said endless transfer member which is applied by said electrode, said discharger including at least one discharge member;
- a controller which controls said power source such that said transfer current from said power source is selected to satisfy a relation:
- I.sub.1 -I.sub.2 =I.sub.OUT
- where I.sub.1 is said transfer current, I.sub.2 is a feedback current flowing from said discharger to ground via said transfer member, and I.sub.OUT is constant; and
- an urging mechanism which urges said endless transfer member against the image bearing member;
- wherein a distance between said nip portion and said electrode is L.sub.2 and a distance between said electrode and said one discharge member is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 25.
- 25. A device as claimed in claim 24, wherein said urging mechanism moves said endless transfer member into and out of contact with the image bearing member.
- 26. A device as claimed in claim 25, wherein said urging mechanism urges a portion of said endless transfer member which is disposed below the nip portion.
- 27. A device as claimed in claim 25, wherein said urging mechanism urges a portion of said endless transfer member which is disposed downstream of the nip portion with respect to an intended direction of movement of said endless transfer member.
- 28. A device as claimed in claim 24, wherein said endless transfer member comprises an endless belt which constitutes a unit together with said electrode and said rollers supported by said supporter.
- 29. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt contacting a surface of the photoconductive element;
- a supporter supporting first and second rollers over which said transfer belt is passed, said first roller being located upstream of a nip portion between the transfer belt and the photoconductive element, said second roller being located downstream of the nip portion between the transfer belt and the photoconductive element;
- a sheet transporter which transports the sheet to said transfer belt; and
- a contact electrode connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element;
- wherein a distance between said first roller adjoining the photoconductive element and the nip portion is L.sub.1, and a voltage to be applied from said high-tension power source to said contact electrode is V.sub.O, said distance L.sub.1 being selected to satisfy a relation:
- L.sub.1 .gtoreq.a.vertline.V.sub.O .vertline.
- where a is 1.0 (mm/kV).
- 30. A device as claimed in claim 29, wherein said second roller is made of an insulating material.
- 31. A device as claimed in claim 29, wherein said first roller comprises a conductive roller held in an electrically floating state.
- 32. A device as claimed in claim 29, wherein a distance between said nip portion and said contact electrode is L.sub.2, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- where a is 1.0 (mm/kV).
- 33. A device as claimed in claim 32, further comprising a first discharge element located downstream from said contact electrode by a distance L.sub.3, and wherein L.sub.3 is selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 34.
- 34. A device as claimed in claim 33, further comprising a second discharge element located downstream from said first discharge element by a distance L.sub.4, and wherein said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 35. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt contacting a surface of the photoconductive element;
- a supporter supporting first and second rollers over which said transfer belt is passed, said first roller being located upstream of a nip portion between the transfer belt and the photoconductive element, said second roller being located downstream of the nip portion between the transfer belt and the photoconductive element;
- a sheet transporter which transports the sheet to said transfer belt; and
- a contact electrode connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element;
- wherein a distance between the nip portion and said contact electrode is L.sub.2, and a voltage to be applied from said high-tension power source to said contact electrode is V.sub.O, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- where a is 1.0 (mm/kV).
- 36. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt contacting a surface of the photoconductive element;
- a supporter supporting first and second rollers over which said transfer belt is passed, said first roller being located upstream of a nip portion between the transfer belt and the photoconductive element, said second roller being located downstream of the nip portion;
- a sheet transporter which transports the sheet to said transfer belt;
- a contact electrode connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- a discharger located downstream of said contact electrode with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharger comprising first and second contact elements;
- wherein a distance between said first and second contact elements is L.sub.4, and said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 37. A device as claimed in claim 36, wherein said first and second contact elements are contact plates.
- 38. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt contacting a surface of the photoconductive element;
- a supporter supporting first and second rollers over which said transfer belt is passed, said first roller being located upstream of a nip portion between the transfer belt and the photoconductive element, said second roller being located downstream of the nip portion between the transfer belt and the photoconductive element;
- a sheet transporter which transports the sheet to said transfer belt;
- a contact electrode connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- a discharger located downstream of said contact electrode with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharger comprising first and second contact members located inside of said transfer belt;
- wherein a distance between the nip portion and said contact electrode is L.sub.2, and a distance between said electrode and at least one of said first and second contact members is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2 ; and
- wherein a distance between said first and second contact members is L.sub.4, and said transfer belt has a time constant .tau. and a process speed .nu., said distance L.sub.4 being selected to satisfy a relation:
- .tau..ltoreq.L.sub.4 /.nu..
- 39. A device incorporated in an image forming apparatus for transferring an image from a photoconductive element to a sheet, comprising:
- a transfer belt contacting a surface of the photoconductive element;
- a supporter supporting first and second rollers over which said transfer belt is passed, said first roller being located upstream of a nip portion between the transfer belt and the photoconductive element, said second roller being located downstream from the nip portion;
- a sheet transporter which transports the sheet to said transfer belt;
- a contact electrode connected to a high-tension power source and directly contacting said transfer belt in the vicinity of the photoconductive element; and
- a discharger located downstream of said contact electrode with respect to an intended direction of movement of said transfer belt for dissipating a charge of said transfer belt, said discharger comprising a contact element located inside of said transfer belt;
- wherein said contact electrode is located downstream of the nip portion, and wherein a distance between said nip portion and said contact electrode is L.sub.2 and a voltage to be applied from said high-tension power source to said contact electrode is V.sub.O, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- and wherein a distance between said contact electrode and said discharger is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 40. A device as claimed in claim 39, wherein said contact element is a contact plate.
- 41. An image transfer device incorporated in an image forming apparatus having an image bearing member, comprising:
- an endless transfer member contacting a surface of the image bearing member;
- a supporter movably supporting said endless transfer member; and
- a contact electrode connected to a high-tension power source and directly contacting said transfer member in the vicinity of the image bearing member;
- said transfer member having a double layer structure made up of an outer layer having a first surface resistivity of 1.times.10.sup.9 .OMEGA. to 1.times.10.sup.12 .OMEGA. and an inner layer having a second surface resistivity of 8.times.10.sup.6 .OMEGA. to 8.times.10.sup.8 .OMEGA. and a volume resistivity of 5.times.10.sup.8 .OMEGA.cm to 5.times.10.sup.10 .OMEGA.cm.
- 42. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member, said nip portion having a predetermined width;
- a supporter supporting rotatable members over which said transfer belt is passed;
- a sheet transporter which transports the sheet to said nip portion;
- a contact electrode located downstream of said nip portion and directly contacting an inner surface of said transfer belt for applying a transfer charge to said transfer belt;
- a power source connected to said contact electrode so that a transfer current is fed from said power source to said contact electrode;
- a discharger directly contacting said transfer belt for dissipating said transfer charge of said transfer belt which is applied by said contact electrode, said discharger including at least one discharge member; and
- a controller which controls said power source such that said transfer current from said power source is selected to satisfy a relation:
- I.sub.1 -I.sub.2 =I.sub.OUT
- where I.sub.1 is said transfer current, I.sub.2 is a feedback current flowing from said discharger to ground via said transfer belt, and I.sub.OUT is constant,
- wherein a distance between said nip portion and said electrode is L.sub.2 and a distance between said electrode and said one discharge member is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 43. A device as claimed in claim 42, wherein said discharger comprises a discharge member located inside of said transfer belt.
- 44. A device as claimed in claim 42, wherein said discharger comprises a plurality of discharge members located inside of said transfer belt.
- 45. A device as claimed in claim 42, wherein said discharger comprises a discharge member located inside of said transfer belt and contacting an inner surface of a lower run of said transfer belt which is opposite to an upper run for carrying the sheet.
- 46. A device as claimed in claim 42, wherein said corresponds to a current flowing from said contact electrode to the image bearing member via said transfer belt.
- 47. A device incorporated in an image forming apparatus for transferring an image from an image bearing member to a sheet, comprising:
- a transfer belt contacting a surface of the image bearing member to thereby form a nip portion between said transfer belt and the image bearing member, said nip portion having a predetermined width;
- a supporter supporting rotatable members over which said transfer belt is passed;
- a sheet transporter which transports the sheet to said nip portion;
- a contact electrode located downstream of said nip portion and directly contacting an inner surface of said transfer belt for applying a transfer charge to said transfer belt such that said nip portion is not overlapped by a contact portion where said contact electrode contacts said inner surface of said transfer belt;
- a power source connected to said contact electrode so that a transfer current is fed from said power source to said contact electrode;
- a discharger directly contacting said transfer belt for dissipating said transfer charge of said transfer belt which is applied by said contact electrode; and
- a controller which controls said power source such that said transfer current from said power source is selected to satisfy a relation:
- I.sub.1 -I.sub.2 =I.sub.OUT
- where I.sub.1 is said transfer current, I.sub.2 is a feedback current flowing from said discharger to ground and I.sub.0UT is constant,
- wherein a distance between said nip portion and said contact electrode is L.sub.2 and a distance between said contact electrode and said discharger is L.sub.3, said distance L.sub.3 being selected to satisfy a relation:
- L.sub.3 .gtoreq.L.sub.2.
- 48. A device as claimed in claim 47, wherein said I.sub.OUT corresponds to a current flowing from said contact electrode to the image bearing member via said transfer belt.
- 49. An image transfer device incorporated in an image forming apparatus having an image carrier on which a toner image is formed, comprising:
- a movable endless transfer member contacting the image carrier, a nip portion being formed between said transfer member and the image carrier;
- a supporter movably supporting said movable endless transfer member;
- a contact electrode located downstream of said transfer member and directly contacting said transfer member for transferring said toner image on the image carrier toward said transfer member by applying a transfer voltage to said transfer member; and
- a power source connected to said contact electrode;
- wherein a distance between the nip portion and said contact electrode is L.sub.2, and a voltage to be applied from said power source to said contact electrode is V.sub.O, said distance L.sub.2 being selected to satisfy a relation:
- L.sub.2 .gtoreq.a.vertline.V.sub.O .vertline.
- where a is 1.0 (mm/kV).
Priority Claims (3)
| Number |
Date |
Country |
Kind |
| 4-009125 |
Jan 1992 |
JPX |
|
| 4-074366 |
Mar 1992 |
JPX |
|
| 4-320937 |
Nov 1992 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 08/006,521, filed on Jan. 21, 1993, now abandoned.
US Referenced Citations (25)
Foreign Referenced Citations (15)
| Number |
Date |
Country |
| 0442527 |
Aug 1991 |
EPX |
| 3908488 |
Sep 1989 |
DEX |
| 4040962A1 |
Jun 1991 |
DEX |
| 56-069653 |
Jun 1981 |
JPX |
| 59-65866 |
Apr 1984 |
JPX |
| 1-292378 |
Nov 1989 |
JPX |
| 0046477 |
Feb 1990 |
JPX |
| 2-110586 |
Apr 1990 |
JPX |
| 3-062077 |
Mar 1991 |
JPX |
| 3-167579 |
Jul 1991 |
JPX |
| 3-186876 |
Aug 1991 |
JPX |
| 3-231783 |
Oct 1991 |
JPX |
| 3-231273 |
Oct 1991 |
JPX |
| 0231274 |
Oct 1991 |
JPX |
| 0121767 |
Apr 1992 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
| Parent |
06521 |
Jan 1993 |
|