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    • 1. 发明授权
    • Electrophotographic photosensitive member and color electrophotographic
process
    • 电子照相感光构件和彩色电子照相工艺
    • US4439504A
    • 1984-03-27
    • US302235
    • 1981-09-14
    • Shunichi IshiharaNobuo KitajimaYuji NishigakiNobuko Kitahara
    • Shunichi IshiharaNobuo KitajimaYuji NishigakiNobuko Kitahara
    • G03G15/01G03G5/12G03G5/14G03G13/01
    • G03G13/01G03G5/14
    • A color electrophotographic process comprises applying voltage between a non-transparent electrode and a color filter electrode of an electrophotographic photosensitive member comprising isolated conductive members forming picture elements, a photoconductive layer, non-transparent electrodes and color filter electrodes, conducting imagewise exposure from the side where color filter electrodes are arranged, resulting in formation of a difference in distribution voltage between the area wherein light passes through the color filter electrode and the area wherein light does not pass through the color filter electrode with regard to the voltage distribution between the non-transparent electrode and the isolated conductive member and between the color filter electrode and the isolated conductive member, thereby forming a voltage image depending upon the change of the voltage of the isolated conductive member caused corresponding to a difference in distribution voltage, and developing said voltage image with a color toner corresponding to a color light passing through the color filter electrode. Further there is disclosed an electrophotographic photosensitive member for a color electrophotographic process as mentioned above.
    • 彩色电子照相方法包括在电子照相感光构件的非透明电极和滤色器电极之间施加电压,所述电子照相感光构件包括形成像素的隔离导电构件,光电导层,非透明电极和滤色器电极,从侧面进行成像曝光 其中布置滤色器电极,导致光通过滤色器电极的区域与光不通过滤色器电极的区域之间的分布电压差异, 透明电极和隔离导电部件之间,并且在滤色器电极和隔离导电部件之间,从而根据分配电压差引起的隔离导电部件的电压变化形成电压图像,并且显影所述v 具有与通过滤色器电极的彩色光相对应的彩色调色剂的电压图像。 此外,公开了如上所述的用于彩色电子照相方法的电子照相感光构件。
    • 4. 发明授权
    • Voltage distribution difference electrophotographic process
    • 电压分布差异电子照相工艺
    • US4352875A
    • 1982-10-05
    • US228723
    • 1981-01-27
    • Shunichi IshiharaYuji NishigakiNobuo KitajimaNobuko Kitahara
    • Shunichi IshiharaYuji NishigakiNobuo KitajimaNobuko Kitahara
    • G03G13/01
    • G03G13/01
    • Disclosed is an electrophotographic process comprises applying voltage between a transparent electrode and an opaque electrode of a photosensitive member comprising isolated electrically conductive members forming image elements, a photoconductive layer, transparent electrodes and opaque electrodes, imagewise exposing the side opposite the side where the isolated electrically conductive members are arranged, resulting in formation of voltage differences between the area where light passes through a transparent electrode and the area where light does not pass through the transparent electrode, said distribution voltage being a voltage between the transparent electrode and the isolated electrically conductive electrode and a voltage between the opaque electrode and the isolated electrically conductive electrode, thereby forming a voltage image depending upon the change of voltage of the isolated electrically conductive member produced corresponding to the difference in the distribution voltage, and scanning the electrophotographic photosensitive member within the area where imagewise exposure is carried out, or moving an image receiving member and an optical image projected on the electrophotographic photosensitive member in the relatively opposite direction, simultaneously with attaching a developer to the image receiving member based on an electric field produced by the voltage image.In foregoing process, the imagewise exposure is carried out through a color filter, a color developer corresponding to the color light which passes through the transparent electrode is attached to the image receiving member based on an electric field produced by the voltage image. Said color filter comprises a red filter, a green filter, and a blue filter. Each of said color filters and each of said electrophotographic photosensitive members are assembled in one unit.
    • 公开了一种电子照相方法,包括在透明电极和感光构件的不透明电极之间施加电压,该感光构件包括形成图像元件的隔离导电构件,光电导层,透明电极和不透明电极,成像地暴露与隔离电 布置导电构件,导致光通过透明电极的区域与光不通过透明电极的区域之间的电压差的形成,所述分配电压是透明电极和隔离的导电电极之间的电压 以及不透明电极和隔离的导电电极之间的电压,从而根据分配导电构件的电压变化产生相应于分布v的差异的电压图像 并且在进行图像曝光的区域内扫描电子照相感光构件,或者将图像接收构件和投影在电子照相感光构件上的光学图像沿相对方向移动,同时将显影剂附着到图像接收构件 基于由电压图像产生的电场。 在上述过程中,通过滤色器进行成像曝光,基于由电压图像产生的电场,将与通过透明电极的色光相对应的彩色显影剂附着到图像接收部件上。 所述滤色器包括红色滤光片,绿色滤光片和蓝色滤光片。 每个所述滤色器和每个所述电子照相感光构件以一个单元组装。
    • 5. 发明授权
    • Electrophotographic photosensitive member and electrophotographic process
    • 电子照相感光构件和电子照相工艺
    • US4347296A
    • 1982-08-31
    • US201479
    • 1980-10-28
    • Shunichi IshiharaNobuo KitajimaYuji NishigakiNobuko Kitahara
    • Shunichi IshiharaNobuo KitajimaYuji NishigakiNobuko Kitahara
    • G03G5/02G03G5/12G03G5/14G03G13/01G03G15/01
    • G03G13/01
    • An electrophotographic photosensitive member comprises isolated conductive members forming picture elements, a photoconductive layer, transparent electrodes and color filter electrodes. Also, a color electrographic process which comprises applying voltage between a transparent electrode and color filter electrode of an electrophotographic photosensitive member comprising isolated conductive members forming picture elements, a photoconductive layer, transparent electrodes and color filter electrodes, conducting imagewise exposure from the side opposite to the side where the isolated conductive members are arranged, resulting in formation of difference in distribution voltage between the area that light passes through the color filter electrode and the area that light does not pass through the color filter electrode with regard to the voltage distribution between the transparent electrode and the isolated conductive member and between the color filter electrode and the isolated conductive member, thereby forming a voltage image depending upon the change of voltage of the isolated conductive member produced corresponding to the difference in the distribution voltage, and developing said voltage image with a color toner corresponding to a color light passing through the color filter electrode.
    • 电子照相感光构件包括形成图像元素的隔离导电构件,光电导层,透明电极和滤色器电极。 此外,彩色电子照相方法包括在电子照相感光构件的透明电极和滤色器电极之间施加电压,其包括形成像素的隔离导电构件,光电导层,透明电极和滤色器电极,从与 隔离导电构件被布置的一侧,导致光通过滤色器电极的区域与光不通过滤色器电极的区域之间的分配电压差异形成在第 透明电极和隔离导电构件之间,并且在滤色器电极和隔离导电构件之间,由此根据分配电压差产生的隔离导电构件的电压变化形成电压图像,以及 用对应于通过滤色器电极的彩色光的彩色调色剂显影所述电压图像。
    • 9. 发明授权
    • Color liquid crystal display with light intercepting member
    • 带遮光件的彩色液晶显示器
    • US4733948A
    • 1988-03-29
    • US809769
    • 1985-12-17
    • Nobuko Kitahara
    • Nobuko Kitahara
    • G02F1/133G02F1/1335G02F1/1362G09F9/35
    • G02F1/133512G02F1/1362
    • A color liquid crystal display panel is provided with a first substrate having thin film transistors arranged in rows and columns, a gate wire connecting commonly the gates for the thin film transistors in the columns, a source wire connecting commonly the sources for the thin film transistors in the rows and display electrodes connected respectively to each of the drains for the thin film transistors, a second substrate having a common electrode opposed to said display electrodes and acolor filter and a liquid crystal interposed between said first substrate and second substrate. The display panel comprises a light intercepting film provided on said second substrate at a position confronting with said thin film transistors.
    • 彩色液晶显示面板设置有具有排列成行和列的薄膜晶体管的第一基板,共同连接列中的薄膜晶体管的栅极的栅极线,共同连接薄膜晶体管的源极的源极线 在分别连接到薄膜晶体管的每个漏极的行和显示电极中,具有与所述显示电极和彩色滤光器相对的公共电极的第二基板和介于所述第一基板和第二基板之间的液晶。 显示面板包括在与所述薄膜晶体管相对的位置处设置在所述第二基板上的遮光膜。