Claims
- 1. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- a transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said transfer member to allow the toner image to be transferred from said image bearing member to said transfer member, said transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said transfer member and applying a predetermined bias to said transfer member;
- second electrode means contacting said transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said transfer member;
- a power source for applying a first predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer member with a linear gradient in a region where said image bearing member and said transfer member contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion, through said nip portion, and to a location downstream of said nip portion; and
- wherein a potential on said transfer member contacting said first electrode means is higher than a potential on said transfer member contacting said second electrode means.
- 2. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- a transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said transfer member to allow the toner image to be transferred from said image bearing member to said transfer member, said transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said transfer member and applying a predetermined bias to said transfer member;
- second electrode means contacting said transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said transfer member;
- a power source for applying a first predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer member with a linear gradient in a portion between said first and second electrode means, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion, through said nip portion, and to a location downstream of said nip portion;
- wherein a potential on said transfer member contacting said first electrode means is higher than a potential on said transfer member at the nip portion, and that said potential on said transfer member at the nip portion is higher than a potential on said transfer member contacting said second electrode means; and
- said first and second electrode means being positioned such that a distance between said nip portion and said first electrode means is shorter than a distance between said nip portion and said second electrode means.
- 3. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- a transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said transfer member to allow the toner image to be transferred from said image bearing member to said transfer member, said transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said transfer member and applying a predetermined bias to said transfer member;
- second electrode means contacting said transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said transfer member;
- a first power source for applying a first predetermined transfer potential to said first electrode means;
- a second power source for applying a second predetermined transfer potential to said second electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer member with a linear gradient in a portion between said first and second electrode means, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion through said nip portion, and to a location downstream of said nip portion; and
- wherein a potential on said transfer member contacting said first electrode means is higher than a potential on said transfer member at the nip portion, and wherein said potential on said transfer member at the nip portion is higher than a potential on said transfer member contacting said second electrode means.
- 4. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a power source for applying a predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion, through said nip portion, and to a location downstream of said nip portion; and
- wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 5. An apparatus as claimed in claim 4, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 6. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said intermediate transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a first power source for applying a first predetermined transfer potential to said first electrode means;
- a second power source for applying a second predetermined transfer potential to said second electrode means; and
- potential gradient generating means for providing a potential distribution on said intermediate transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion, through said nip portion, and to a location downstream of said nip portion; and
- wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 7. An apparatus as claimed in claim 6, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 8. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying a multi-color toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said intermediate transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a power source for applying a predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said intermediate transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion, through said nip portion, and to a location downstream of said nip port; and
- wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 9. An apparatus as claimed in claim 8, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 10. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying a multi-color toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said intermediate transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a first power source for applying a first predetermined transfer potential to said first electrode means;
- a second power source for applying a second predetermined transfer potential to said second electrode means; and
- potential gradient generating means for providing a potential distribution on said intermediate transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip, through said nip, and to a location downstream of said nip; and
- wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 11. An apparatus as claimed in claim 10, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 12. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying different color toner images thereon;
- an intermediate transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer member to allow each of said color toner images to be consecutively transferred from said image bearing member to said intermediate transfer member such that said color toner images are superimposed upon one another to thereby form said multi-color toner image;
- a first electrode contacting said intermediate transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a first transfer bias to said intermediate transfer member;
- a second electrode contacting said intermediate transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a second transfer bias to said intermediate transfer member;
- a variable transfer power source for applying a variable transfer potential to said first electrode;
- a transfer power source for applying a predetermined potential to said second electrode; and
- a third electrode coming into and out of contact with said intermediate transfer member to allow said multi-color toner image to be transferred from said intermediate transfer member to a recording medium.
- 13. An image forming apparatus as claimed in claim 12, wherein said intermediate transfer member comprises an endless belt which forms a loop and said recording medium comprises a sheet-like member.
- 14. An image forming apparatus as claimed in claim 13, wherein said first and second electrodes contact said belt inside said loop and said third electrode is disposed outside said loop.
- 15. An image forming apparatus as claimed in claim 12, wherein said predetermined transfer potential applied to said second electrode is lower than said variable transfer potential applied to said first electrode.
- 16. An image forming apparatus as claimed in claim 12, wherein said transfer power source applies to said second electrode said predetermined transfer potential of the same polarity as the toner to thereby generate an electric field of polarity opposite to the polarity of the toner.
- 17. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying different color toner images thereon;
- an intermediate transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer member to allow each of said color toner images to be consecutively transferred from said image bearing member to said intermediate transfer member such that said color toner images are superimposed upon one another to thereby form said multi-color toner image;
- a first electrode contacting said intermediate transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a first transfer bias to said intermediate transfer member;
- a second electrode contacting said intermediate transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a second transfer bias to said intermediate transfer member;
- a first variable transfer power source for applying a first variable transfer potential to said first electrode;
- a second variable transfer power source, independent of said first variable transfer power source, for applying a second variable transfer potential to said second electrode; and
- a third electrode coming into and out of with contact with said intermediate transfer member to allow said multi-toner image to be transferred from said intermediate transfer member to a recording medium.
- 18. An image forming apparatus as claimed in claim 17, wherein said intermediate transfer member comprises an endless belt which forms a loop and said recording medium comprises a sheet-like member.
- 19. An image forming apparatus as claimed in claim 18, wherein said first and second electrodes contact said belt inside said loop and said third electrode is disposed outside said loop.
- 20. An image forming apparatus as claimed in claim 17, wherein said second variable transfer power source applies to said second electrode said second variable transfer potential of the same polarity as the toner to thereby generate an electric field having a polarity opposite to the polarity of the toner.
- 21. An image forming apparatus as claimed in claim 17, wherein the second variable transfer power source selectively switches the polarity of said second variable transfer potential applied to said second electrode between the same polarity as the toner and the opposite polarity to the toner.
- 22. An image forming apparatus as claimed in claim 21, further comprising a power source controller for controlling said second variable transfer power source such that said second variable transfer potential of the same polarity as the toner is applied to said second electrode in a first transfer step in which a first color toner image is transferred from said image bearing member to said intermediate transfer member, while said second variable transfer potential of the opposite polarity to the toner is applied to said second electrode in consecutive steps in which the remaining color toner images are transferred from said image bearing member to said intermediate transfer member.
- 23. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying different color toner images thereon;
- an intermediate transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer member to allow each of said color toner images to be consecutively transferred from said image bearing member to said intermediate transfer member such that said color toner images are superimposed upon one another to thereby form said multi-color toner image;
- a first electrode contacting said intermediate transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a first transfer bias to said intermediate transfer member;
- a second electrode contacting said intermediate transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a second transfer bias to said intermediate transfer member;
- a first variable transfer power source for applying a first variable transfer potential to said first electrode;
- a second variable transfer power source, independent of said first variable transfer power source, for applying a second variable transfer potential to said second electrode;
- a third electrode coming into and out of contact with said intermediate transfer member to allow said multi-color toner image to be transferred from said intermediate transfer member to a recording medium;
- a potential sensor for sensing a potential on said image bearing member; and
- a power source controller for controlling said second variable transfer power source in accordance with said potential sensed by said potential sensor to vary said second variable transfer potential.
- 24. An image forming apparatus as claimed in claim 23, wherein said intermediate transfer member comprises an endless belt which forms a loop and said recording medium comprises a sheet-like member.
- 25. An image forming apparatus as claimed in claim 24, wherein said first and second electrodes contact said belt inside said loop and said first electrode is disposed outside said loop.
- 26. An image forming apparatus as claimed in claim 23, wherein said second variable transfer power source applies to said second electrode said second variable transfer potential of the same polarity as the toner to thereby generate an electric field of polarity opposite to the polarity of the toner.
- 27. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying different color toner images thereon;
- an intermediate transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer member to allow each of said color toner images to be consecutively transferred from said image bearing member to said intermediate transfer member, said intermediate transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- a first electrode contacting said intermediate transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member and applying a first predetermined bias to said intermediate transfer member;
- a second electrode contacting said intermediate transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer member;
- a transfer power source for applying a transfer potential to said first electrode; and
- a third electrode coming into and out of contact with said intermediate transfer member to allow said multi-color toner image to be transferred from said intermediate transfer member to a recording medium;
- wherein a potential between said second electrode and a contact point where said intermediate transfer member and said image bearing member contact at an upstream side of said nip portion with respect to an intended direction of movement of said intermediate transfer member is maintained lower than 300 volts.
- 28. An image forming apparatus as claimed in claim 27, wherein said intermediate transfer member comprises an endless belt which forms a loop and said recording medium comprises a sheet-like member.
- 29. An image forming apparatus as claimed in claim 28, wherein said first and second electrodes contact said belt inside said loop and said third electrode is disposed outside said loop.
- 30. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- a transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said transfer member to allow the toner image to be transferred from said image bearing member to said transfer member, said transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said transfer member and applying a predetermined bias to said transfer member;
- second electrode means contacting said transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said transfer member;
- a power source for applying a first predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer member with a linear gradient in a region where said image bearing member and said transfer member contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion and to said nip portion, and a constant bias potential extends from said nip portion to a location downstream of said nip portion; and
- wherein a potential on said transfer member contacting said first electrode means is higher than a potential on said transfer member contacting said second electrode means.
- 31. An image forming apparatus comprising:
- an image bearing member for carrying a toner image thereon;
- a transfer member movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said transfer member to allow the toner image to be transferred from said image bearing member to said transfer member, said transfer member being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said transfer member at a position downstream of said nip portion with respect to an intended direction of movement of said transfer member and applying a predetermined bias to said transfer member;
- second electrode means contacting said transfer member at a position upstream of said nip portion with respect to an intended direction of movement of said transfer member;
- a first power source for applying a first predetermined transfer potential to said first electrode means;
- a second power source for applying a second predetermined transfer potential to said second electrode means; and
- potential gradient generating means for providing a potential distribution on said transfer member with a linear gradient in a portion between said first and second electrode means, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion and to said nip portion, and a constant bias potential extends from said nip portion to a location downstream of said nip portion; and
- wherein a potential on said transfer member contacting said first electrode means is higher than a potential on said transfer member at the nip portion, and wherein said potential on said transfer member at the nip portion is higher than a potential on said transfer member contacting said second electrode means.
- 32. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying a multi-color toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said intermediate transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a power source for applying a predetermined transfer potential to said first electrode means; and
- potential gradient generating means for providing a potential distribution on said intermediate transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip portion and to said nip portion, and a constant bias potential extends from said nip portion to a location downstream of said nip portion; and
- wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 33. An apparatus as claimed in claim 32, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 34. An image forming apparatus for forming a multi-color toner image in a plurality of consecutive transfer steps, said apparatus comprising:
- an image bearing member for carrying a multi-color toner image thereon;
- an endless intermediate transfer belt movable in contact with said image bearing member over a predetermined nip width of a nip portion between said image bearing member and said intermediate transfer belt to allow the toner image to be directly transferred from said image bearing member to said intermediate transfer belt, said intermediate transfer belt being made of a material having a volume resistivity of 10.sup.6 to 10.sup.12 .OMEGA.cm;
- first electrode means contacting said intermediate transfer belt at a position downstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt and applying a first predetermined bias to said intermediate transfer belt;
- second electrode means contacting said intermediate transfer belt at a position upstream of said nip portion with respect to an intended direction of movement of said intermediate transfer belt;
- a first power source for applying a first predetermined transfer potential to said first electrode means;
- a second power source for applying a second predetermined transfer potential to said second electrode means; and
- potential gradient generating means for providing a potential distribution on said intermediate transfer belt with a linear gradient in a region where said image bearing member and said intermediate transfer belt contact, wherein said potential gradient generating means forms a potential distribution in which said linear gradient extends from a location upstream of said nip and to said nip, and wherein a constant bias potential extends from said nip to a location downstream of said nip and wherein a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt contacting said second electrode means.
- 35. An apparatus as claimed in claim 34, wherein said potential gradient generating means further provides a potential distribution on said intermediate transfer belt with a linear gradient in a portion between said first and second electrode means, such that a potential on said intermediate transfer belt contacting said first electrode means is higher than a potential on said intermediate transfer belt at the nip portion, and that said potential on said intermediate transfer belt at the nip portion is higher than a potential on said intermediate transfer belt contacting said second electrode means.
Priority Claims (6)
Number |
Date |
Country |
Kind |
4-9125 |
Jan 1992 |
JPX |
|
4-74366 |
Mar 1992 |
JPX |
|
4-88916 |
Apr 1992 |
JPX |
|
4-90701 |
Apr 1992 |
JPX |
|
4-320937 |
Nov 1992 |
JPX |
|
5-10159 |
Jan 1993 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 08/044,032 filed on Apr. 8, 1993, now U.S. Pat. No. 5,461,461, which is a continuation-in-part of application Ser. No. 08/006,521 filed on Jan. 21, 1993, abandoned, now U.S. Ser. No. 08/449,778.
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Continuations (1)
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Number |
Date |
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Parent |
44032 |
Apr 1993 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
06521 |
Jan 1993 |
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