Claims
- 1. A system for automatically controlling the biasing potential on a developer electrode in an electrostatic copying machine including in combination, a support, a surface layer of photoconductive material on said support adapted to receive a latent electrostatic image to be developed, a developer unit for contacting developer fluid with said image to develop the same, a biasing electrode in said developer unit, a sensing electrode insulated from ground, means mounting said sensing electrode in said developer unit at a location at which developer fluid is positioned between and in contact with both said photoconductive surface and said sensing electrode to enable said sensing electrode to assume substantially the potential on said surface by conduction, and means responsive to the potential of said sensing electrode for applying a biasing potential to said biasing electrode.
- 2. A system as in claim 1 in which said sensing electrode mounting means mounts said sensing electrode at a location at which it registers with a portion of said image in the course of a developing operation.
- 3. A system as in claim 2 including means mounting said support and said developer unit for relative movement, and in which said sensing electrode mounting means positions said electrode adjacent to the point at which said image enters said developer unit.
- 4. A system as in claim 1 in which said developer is a liquid developer made up of charged particles suspended in a liquid having a high electrical resistance.
- 5. A system as in claim 4 in which said developer between said surface and said sensing electrode and said photoconductor has a certain high resistance and in which said means responsive to the potential sensed by said sensing electrode includes a measuring circuit having an input resistance which is orders of magnitude greater than said resistance.
- 6. A system as in claim 1 in which said biasing potential is greater than the potential in background areas of said image.
- 7. A system as in claim 1 including means for producing a reverse bias between said surface and said biasing electrode in the course of operation of said machine.
- 8. A system as in claim 7 in which said reverse bias producing means comprises means for producing a charged unexposed area on said surface outside the area of said image.
- 9. A system as in claim 8 including means for moving said support and said developer unit relative to each other and in which said charged unexposed area trails said image area in the direction of said relative movement.
- 10. A system as in claim 1 in which said photoconductor is an organic photoconductor.
- 11. A system as in claim 1 in which said sensing electrode is an electrically floating electrode.
- 12. Apparatus for developing a latent electrostatic image carried by the surface of a photoconductor including in combination, a developer applicator unit for applying developer to said surface, said applicator unit having an entry and an exit, means for moving said surface and said developer applicator unit relative to each other to carry said image through said unit in a direction from said entry toward said exit, a biasing electrode in said developer unit, an electrically floating sensing electrode of conductive material, means mounting said sensing electrode in said developer unit at a location at which developer passes between said sensing electrode and said surface to cause said electrode to sense the potential of said surface by virtue of conduction through said developer, said developer between said sensing electrode and said surface having a certain resistance, and means including a measuring circuit having an input impedance orders of magnitude greater than said resistance and responsive to said potential sensed by said sensing electrode for applying a biasing potential to said biasing electrode.
- 13. Apparatus as in claim 12 in which said sensing electrode is positioned at a location at which a portion of the image area of said surface registers with said sensing electrode as said image area moves through said unit.
- 14. Apparatus as in claim 12 including means for producing a reverse bias between said biasing electrode and said surface following a developing operation.
- 15. Apparatus as in claim 14 in which said means for producing said reverse bias comprises means for producing a reverse field between the development electrode and an area on said surface outside the area of said image.
- 16. Apparatus as in claim 15 in which said photoconductive is an organic photoconductor and in which said developer is made up of charged particles suspended in a liquid having a high resistance.
- 17. Apparatus as in claim 12 in which said sensing electrode is adjacent to the entry of said developer unit and in which said measuring circuit comprises a storage capacitor, means responsive to movement of an initial portion of an image into said developer unit for enabling bidirectional charging of said capacitor in response to a sensed potential, means responsive to movement of an intermediate portion of said image into said developer unit for enabling only unidirectional charging of said capacitor in response to sensed potential and means responsive to entry of the remainder of said image into said delivery unit for disabling charging of said capacitor.
- 18. Apparatus as in claim 12 in which said means including said measuring circuit comprises a source of power for said circuit and means for disconnecting said source from said circuit as non-image areas of said surface pass through said developer unit.
- 19. Apparatus for developing a latent electrostatic image carried by the surface of a photoconductor including in combination, a developer applicator unit for applying developer to said surface, said applicator unit having an entry and an exit, means for moving said surface and said developer applicator unit relative to each other to carry said image through said unit in a direction from said entry toward said exit, a developer electrode in said unit, a plurality of electrically floating sensing electrodes of conductive material, means mounting said sensing electrodes along a line extending generally across the direction of relative movement of said surface and said unit and at a location at which developer passes between said sensing electrodes and said surface to cause said sensing electrodes to sense the potential of said surface in areas thereof adjacent to said electrodes by virtue of conduction through the developer and means responsive to the potential sensed by said sensing electrodes for applying a potential to said development electrode.
- 20. Apparatus as in claim 19 in which said plurality of sensing electrodes includes a central electrode adapted to scan the portion of the image corresponding to the central normally printed area of an original and an edge electrode adapted to scan the portion of the image corresponding to a normally unprinted border area of an original.
- 21. Apparatus as in claim 19 in which said means responsive to the potential sensed by said sensing electrodes comprises means for selecting the potential of the lowest magnitude sensed by said sensing electrodes.
- 22. Apparatus as in claim 19 in which said plurality of sensing electrodes includes a central electrode adapted to scan the portion of the image corresponding to the normally printed area of an original and an edge electrode adapted to scan a portion of the image corresponding to a normally unprinted border area of an original, and in which said means responsive to the potential sensed by said sensing electrode comprises means for selecting the sensed potential of the lowest magnitude.
- 23. Apparatus as in claim 19 including a plurality of development electrodes spaced in the direction of relative movement of said surface and said unit, and means for applying said biasing potential to said development electrodes in decreasing steps from the first development electrode to the last development electrode in said direction of relative movement.
- 24. Apparatus as in claim 19 in which said line along which said electrodes are disposed is adjacent to the entry of said developer unit.
- 25. Apparatus as in claim 24 in which said means responsive to said potential sensed by said sensing electrodes comprises a storage capacitor, means responsive to movement of an initial portion of an image into said developer unit for enabling bidirectional charging of said capacitor in response to a sensed potential, means responsive to movement of an intermediate portion of said image into said developer unit for enabling only unidirectional charging of said capacitor in response to sensed potential and means responsive to entry of the remainder of said image into said developer unit for disabling charging of said capacitor.
- 26. Apparatus as in claim 19 in which said means responsive to said potential sensed by said sensing electrodes comprises a sensing circuit, a source of power for said sensing circuit and means for disconnecting said source from said circuit as non-image areas of said surface pass through said developer unit. .Iadd.
- 27. In an electrophotographic copying apparatus comprising a movable member having a photosensitive surface and adapted to be moved along a predetermined path during which said surface is subject to charging, exposing to an image of an original to be copied to form an electrostatic latent image of the original thereon, developing of the latent image with a developing agent having toner, transfer printing of the developed image into copy sheets, and cleaning of residual toner thereon, the improvement comprising;
- a. a plurality of developing electrodes disposed along the path of movement of said surface in opposing relation thereto at a developing station,
- b. means for supplying the developing agent between said electrodes and said surface,
- c. voltage source means for providing a constant voltage source for said electrodes,
- d. means for distributing the supplied voltage from said source means to said respective electrodes in a graded manner which substantially conforms to that of a reference damping characteristic of potential on said surface along the path of movement thereof at the developing station, and
- e. means for varying the values of voltages applied to said respective electrodes without influence to said graded manner therebetween in accordance with the value of potential of an electrostatic latent image on said surface to be developed..Iaddend. .Iadd.28. An improvement as in claim 27 wherein said distributing means comprises constant voltage diodes connected in series to each other and between said constant voltage source and ground and having junctions therebetween connected to said respective electrodes..Iaddend. .Iadd.29. An improvement as in claim 28 wherein said varying means comprises a pair of variable voltage dropping means each means each connected between the series of said diodes and said control voltage source and said ground respectively..Iaddend. .Iadd.30. An improvement as in claim 27 further comprising means for setting a portion to be unexposed on said photosensitive surface to maintain the unexposed portion at a high potential, whereby removing toner placed on said electrodes therefrom by the attraction of the high potential portion..Iaddend. .Iadd.31. An electrophotographic copying apparatus comprising a movable member having a photosensitive surface, an electrostatic charger adjacent said member and located along the path of motion of said member, for imparting an electrostatic charge to said surface, an exposure unit adjacent said member and spaced away from said charger in the direction of motion of said member, having means to impart an electrostatic image to said surface, developer means adjacent said member and spaced away from said exposure unit in the direction of motion of said member, said developer means having a reservoir containing a developing agent which is attractable to said electrostatic image and forms a visual image corresponding to said electrostatic image on said surface, means for moving a copy sheet into pressing engagement with said member spaced away from said developer means in the direction of motion of said member, cleaning means adjacent said member and spaced away from said moving means in the direction of motion of said member, for cleaning away the developing agent from said surface, and a constant light source adjacent said member and spaced away from said cleaning means in the direction of motion of said member, for discharging said electrostatic charge by exposing said surface to light, said developer means comprising a plurality of electrodes spaced away from and facing said surface and disposed along the path of said surface, voltage course means connected to said electrodes for providing a constant voltage to said electrodes, pump means within said reservoir for supplying developing agent from said reservoir to the space between said electrodes and said surface, grading means connected to said electrodes for distributing the supplied voltage from said source means to said electrodes in a manner substantially conforming to the damping characteristic of the said electrostatic charge on said surface as said surface passes said electrodes, and varying means connected between said voltage source means and said grading means to change the voltage applied to said electrodes in accordance with the value of said electrostatic image, without influencing the graded relationship between said electrodes..Iaddend. .Iadd.32. A copying apparatus according to claim 31, wherein said grading means comprises a plurality of constant voltage diodes connected in series to each other and having junctions therebetween connected to said electrodes..Iaddend. .Iadd.33. A copying apparatus according to claim 31, wherein said photosensitive surface has a portion charged by said charger and unexposed to light, thus forming a high potential area situated on said surface behind said electrostatic image, switching means connected to said electrodes and to said moving member to cut the voltage supply from said voltage source means to said electrodes at the time when said high potential area passes said electrodes, the difference in potential causing any excess developing agent left on said electrodes after said visual image forming to be electrostatically attracted to said high potential area..Iaddend.
- .Iadd. A method of electrically biasing a developing electrode disposed closely adjacent to a photoconductive member of an electrophotographic device after the photoconductive member has been charged and exposed to a light image, comprising the steps of:
- a. automatically sensing the potential remaining at a plurality of respective portions of the photoconductive member and automatically selecting the lowest value of the sensed potential; and
- b. automatically applying biasing voltage to the developing electrode in accordance with the lowest value of the sensed potential..Iaddend. .Iadd.35. The method of claim 34, further comprising the step of:
- c. computing the biasing voltage in accordance with the lowest value of the sensed potential between steps (a) and (b)..Iaddend. .Iadd.36. The method of claim 34, in which the electrophotographic device includes a reference document disposed adjacent to an original document for reproduction whereby the light image applied to the photoconductive member includes a light image of the original document and a light image of the reference document so that an electrostatic image of the reference document is produced at a predetermined portion of the photoconductive member, step (a) being characterized by automatically sensing the potential at the predetermined portion of the photoconductive member containing the electrostatic image of the reference document..Iaddend. .Iadd.37. The method of claim 34, in which the developing electrode is formed in a plurality of sections, step (b) being characterized by automatically applying biasing voltages to the sections of the developing electrode which are respectively predetermined in accordance with the lowest value of the sensed potential..Iaddend. .Iadd.38. The method of claim 34, in which the photoconductive member is movable relative to the developing electrode and the developing electrode is formed in sections disposed along the path of movement of the photoconductive member, step (b) being characterized by applying biasing voltages to the sections of the developing electrode which are respectively predetermined in accordance with both the lowest value of the sensed potential and the position of the respective section along the path of movement of the photoconductive
- member..Iaddend. .Iadd.39. In an electrophotographic device having a photoconductive member, charging means for charging the photoconductive member, imaging means for radiating a light image of an original document onto the photoconductive member and a developing electrode disposed closely adjacent to the photoconductive member after the photoconductive member has been charged by the charging means and radiated with the light image by the imaging means, apparatus for electrically biasing the developing electrode comprising:
- sensing means for automatically sensing the potential remaining on the photoconductive member at a portion thereof where the potential has a predetermined value relative to the minimum potential remaining on the photoconductive member; and
- computing means to automatically compute the biasing voltage to be applied to the developing electrode as a predetermined function of the sensed potential and apply said biasing voltage to the developing electrode, said computing means comprising an amplifier and a switch, said switch being connected between the sensing means and the amplifier, said switch comprising a first fixed contact connected to the sensing means and a second fixed contact grounded and a movable contact connected to the
- amplifier..Iaddend. .Iadd.40. Electrophotocopying apparatus including in combination a drum having a periphery, a photoconductive surface layer mounted on said periphery, means for rotating the drum, means effective during a first rotation angle of the drum for electrostatically charging said surface, operable means for exposing the charged surface to a pattern of light and shade, means for operating the exposing means during a second rotation angle of the drum less than said first rotation angle to produce an electrostatic image, said charged surface including a non-image region having an angular extent equal to the difference between the first and second rotation angles, means including an electrode spaced from said surface for applying to said image a developer liquid containing dispersed toner particles, rotation of said drum sequentially carrying said image and said non-image region past said electrode, and means electrically biasing said electrode during passage thereby of said image with a first potential providing adjacent said electrode a first electric field which attracts toner particles thereto, said charged non-image region providing adjacent said electrode during passage thereby of said region a second electric field which repels toner particles from said electrode and deposits toner particles on said non-image region of said surface..Iaddend. .Iadd.41. Apparatus as in claim 40 further including means electrically biasing said electrode during passage thereby of said non-image region with a second potential which increases said second electric field..Iaddend. .Iadd.42. Apparatus as in claim 40 further including means electrically biasing said electrode during passage thereby of said non-image region with a second potential, wherein the periphery of the drum is conductive, wherein said first potential is appreciably different from that of said periphery, and wherein said second potential is substantially equal to that of said periphery..Iaddend.
Parent Case Info
.Iadd.This application is a continuation of reissue application Ser. No. 811,460 filed June 29, 1977, now abandoned, which is a reissue of U.S. Pat. No. 3,892,481..Iaddend.
US Referenced Citations (17)
Continuations (1)
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Date |
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Parent |
811460 |
Jun 1977 |
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Reissues (1)
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Number |
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479659 |
Jun 1974 |
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