EP0697635A2

Process for recording images, system therefor and method making it

Abstract

The present invention provides an image-recording process wherein the voltage applied between a photosensitive member 2 and electrostatic information recording medium 1 is put off after the lapse of a given time from the closing of an exposure shutter 13. It is thus possible to move all the generated carriers onto electrostatic information recording medium 1 and accumulate them as charges in an amount corresponding to the quantity of exposure irrespective of a voltage shutter time. It is also possible to electrically charge electrostatic information recording medium 1 or the photosensitive member 2 in advance and put on-off an electrical connection between the electrodes of the photosensitive member 2 and electrostatic information recording medium to control image exposure, thereby dispensing with any external high-voltage power source and obtaining a positive image. In addition, it is possible to avoid the occurrence of inverse discharge and prevent the resulting image from falling into disorder by separating the photosensitive member 2 and electrostatic information recording mudium 1 from each other, while voltage remains applied between the electrodes thereof, after an electrostatic image has been formed on the electrostatic information recording medium 1, and putting off the voltage impressed. A discharge gap can be easily kept constant by making a spacer 3 integral with the photosensitive member or electrostatic information recording medium;it is possible to achieve high-speed image pickup and prevent discharge breakdown which may otherwise be induced through the spacer. The spacer region is formed by removing the electrode of at least one of the photosensitive member and electrostatic information recording medium; it is possible to eliminate the cause of discharge breakdown occurring through the space. A decrease in the electrode area can result in a decrease in the capacitance of the overall system, making it possible to relieve the amount of load born by an external circuit.

EP0697635A2, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Projected expiry passed 16 November 2010, 15.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

17 claims: 16 independent, 1 dependent

  1. 1
    An image-recording process wherein a photosensitive member including a photoconductive layer on a support through an electrode layer is located in opposite relation to electrostatic information recording medium including an insulating layer on a support through an electrode layer, and image exposure is then carried out while voltage is applied between the layers of the photosensitive member and the charge-carrying medium to accumulate charges on the electrostatic information recording medium in an imagewise form, characterised in that said image exposure is put off, followed by putting off the voltage applied between said electrode layers after the lapse of a given time.
  2. 2
    An image-recording process wherein a photosensitive member including an electrode layer and a photoconductive layer on a support is located in opposite relation to electrostatic information recording medium including an electrode layer and an insulating layer on an electrode layer, and image exposure is then carried out with the application of voltage between both the electrode layers to form an electrostatic latent image on electrostatic information recording medium, characterised in that after said electrostatic latent image has been formed on said electrostatic information recording medium, said photosensitive member and said electrostatic information recording medium are separated from each other with the application of said voltage to prevent inverse discharge from being induced in a gap between said photosensitive member and said electrostatic information recording medium.
  3. 3
    An image-recording process as claimed in Claim 2, characterised in that after said photosensitive member and said electrostatic information recording medium are separated from each other a distance at which no inverse discharge takes place.
  4. 4
    An image-recording system wherein a photosensitive member including an electrode layer and a photoconductive layer laminated successively on a substrate is located in opposite relation to electrostatic information recording medium including an electrode layer and an insulating layer laminated successively on a substrate through a spacer, and image exposure is carried out with the application of voltage between the electrode layers to form an electrostatic image on the insulating layer, characterised in that said electrode layer of at least one of said photosensitive member and said electrostatic information recording medium is provided in a patterned form, and said spacer is located on an electrode-free region.
  5. 5
    A system for recording images, comprising a photosensitive member with an integrally built-in spacer in which an electrode layer and a photoconductive layer are successively laminated on a substrate and a patterned spacer is provided on said photoconductive layer.
  6. 6
    A system for recording images, comprising a photosensitive member with an integrally built-in spacer, in which an electrode layer and a photoconductive layer are successively laminated on a substrate, said electrode layer being provided in a patterned form and said photoconductive layer being uniformly formed, and a spacer is provided on an electrode-free region of said photoconductive layer.
  7. 7
    A system for recording images, comprising a photosensitive member with an integrally built-in spacer, in which:an electrode layer and a photoconductive layer are successively laminated on a substrate, said electrode layer provided in a patterned form, and    a spacer is provided on an electrode-free region,    a region of said photoconductive layer, except said spacer region, being patterned and formed on said electrode layer with a thickness smaller than that of said spacer.
  8. 8
    A system for recording images, comprising a photosensitive member with an integrally built-in spacer, in which an electrode layer and an insulating layer are successively laminated on a substrate, said electrode layer being uniformly formed on said substrate, and a patterned spacer is formed on said electrode layer, said photoconductive layer being uniformly laminated on an electrode-free region of said electrode layer with a thickness smaller than that of said spacer.
  9. 9
    A system for recording images, comprising a photosensitive member with an integrally built-in space, in which an electrode layer and a photoconductive layer are successively laminated on a substrate, said electrode and photoconductive layers being laminated on the bottom of a dent made in said substrate, and the total thickness of said electrode and photoconductive layers laminated being made smaller than the depth of said dent in said substrate to use a region of said substrate except said dent as said spacer.
  10. 10
    A system for recording images, comprising a photosensitive member with an integrally built-in space, in which an electrode layer, an insulating layer and a photoconductive layer are successively laminated on a substrate and a patterned spacer is formed on said photoconductive layer.
  11. 11
    A system for recording images as claimed in any one of Claims 5-10, wherein said spacer is made of an organic or inorganic insulating mater.
  12. 12
    A system for recording images, comprising electrostatic information recording medium with an integrally built-in spacer, in which electrode layer and an insulating layer are successively laminated on a substrate and an insulating, patterned layer is provided on said insulating layer as said spacer.
  13. 13
    A system for recording images, comprising electrostatic information recording medium with an integrally built-in spacer, in which an elecrode layer and an insulating layer are successively laminated on a substrate and said spacer is defined by a part of said insulating layer.
  14. 14
    A system for recording images, comprising electrostatic information recording medium with an integrally built-in spacer, in which an electrode layer and an insulating layer are successively laminated on a substrate, a dent is made in said substrate, said electrode and insulating layers being laminated on the bottom of said dent with a total thickness smaller than the depth of said dent, and said spacer is defined by a region of said substrate except said dent.
  15. 15
    A system for recording images, comprising electrostatic information recording medium with an integrally built-in spacer, in which an electrode layer and an insulating layer are successively laminated on a substrate and said spacer is provided on said insulating layer as an insulating, patterned layer.
  16. 16
    A process for preparing electrostatic information recording medium with an integrally built-in spacer as claimed in any one of Claims 12 and 15, characterised in that said spacer is formed with an insulating ink by screen printing.
  17. 17
    A process for preparing electrostatic information recording medium with an integrally built-in spacer as claimed in any one of Claims 12 and 15, characterised in that an adhesive is applied in a patterned form on a region of said insulating layer on which no electrostatic image is to be formed and an insulating film is laminated on the resulting adhesive layer, and then punching out an unbonded region of said film, thereby forming said spacer.