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    • 24. 发明公开
    • Photo-modulation method and system for reproducing charge latent image
    • 用于再现的电荷潜像光调制的方法和装置。
    • EP0376282A2
    • 1990-07-04
    • EP89124024.4
    • 1989-12-27
    • VICTOR COMPANY OF JAPAN, LIMITED
    • Takanashi, ItsuoNakagaki, ShintaroAsakura, TsutouFuruya, MasatoShinonaga, HirohikoSuzuki, Tetsuji
    • G02F1/136G02F1/03
    • G02F1/133348G02F1/0333G02F1/135G02F1/136G02F2001/1357
    • There are provided a method of modulating a photo-modulation layer (10) correspondingly with an electric field applied thereto by applying an alternating electric field to a semiconductor layer (11) disposed adjacent to the photo-modulation layer (10) to vary a thickness of a depletion layer thereof responsive to the alternating electric field and applying the electric field to the photo-modulation layer (10) while the alternating electric field is applied to the semiconductor layer (11) and varying the thickness of the depletion layer, and a system for reproducing a charge latent image recorded in a recording medium (5) which has at least a charge hold layer (6) holding the charge latent image comprising a photo-modulation layer (10) disposed adjacent to the recording medium (5) so as to be subjected to an electric field generated by the charge latent image held on the charge hold layer (6), a semiconductor layer (11) disposed adjacent to the photo-­modulation layer (10), the semiconductor layer (11) having a depletion layer which has a capacitance variable in response to an applied varying electric field, means (12) for applying the varying electric field to the semiconductor layer (11) for varying the capacitance of the depletion layer thus subjecting the electric field generated by the charge latent image being applied to the photo-modulation layer (10) and means (20) for projecting a reading light passing through the photo-modulation layer and for detecting modulation of the reading light passed therethrough.
    • 本发明提供一种调节光调制层(10)的方法相应地与在通过施加电场交替的半导体层(11)相邻设置的光调制层(10)施加电场来改变厚度 耗尽层其响应于所述交变电场和施加电场,同时交变电场被施加到半导体层(11)的光调制层(10)和不同的耗尽层的厚度,和一个的 系统,用于再现记录在记录介质中的电荷潜像(5),其具有至少(6)保持的电荷潜像,包括光调制层(10)设置成邻近所述记录介质中的电荷保留层(5)为 作为在由电荷保留层(6),半导体层(11)相邻设置的光调制层(10)上保持的电荷潜像产生的电场中,semicondu进行 构造函数层(11),其具有用于改变耗尽层的电容THUS经受施加变电场,以在半导体层(11),其具有响应的电容变量来在应用变电场的耗尽层,装置(12) 由电荷潜像产生的电场被施加到光调制层(10)和装置(20),用于投影通过所述光调制层中的阅读灯和用于检测穿过那里读取光的调制。
    • 26. 发明公开
    • Image pickup device
    • Bildaufnahmevorrichtung。
    • EP0326347A2
    • 1989-08-02
    • EP89300684.1
    • 1989-01-25
    • VICTOR COMPANY OF JAPAN, LIMITED
    • Takanashi, ItsuoNakagaki, ShintaroShinonaga, HirohikiAsakura, TsutouFuruya, Masato
    • H04N5/30
    • H04N5/30
    • There is provided an image pickup device having a high resolution used for a movie camera, a still camera (shutter camera) and the like. This image pickup device includes a photo-to-photo conversion element (PPCE) comprising at least a photoconductive layer member (PCL), a dielectric mirror (DML) and an optical modulation layer member disposed between two transparent electrodes (Et₁, Et₂), a first image formation elements (1, 2, 3) for forming an optical image of an object on said photo-to-­photo conversion element, a second image formation elements (5, 7, Pdef₁, 6, 4, Pdef₂, 9, 13, 8) for scanning, in two directions substantially perpendicular to each other, optical image information corresponding to said optical image of said object using a light from said photo-to-photo conversion element to read it out, and for changing the light beam reading out said optical image information to a scanning light beam, a scanning locus of which on a plane becomes a line, and recording medium transportation mechanism (RMA) for allowing a recording surface of a recording medium to be located on said plane where a linear image of said optical information is formed, and for continuously moving said recording medium in a direction having an angle with respect to said line of the scanning locus.
    • 提供了一种具有用于电影摄像机,静态照相机(快门摄像机)等的高分辨率的图像拾取装置。 该图像拾取装置包括至少包括光电导层部件(PCL),电介质镜(DML)和设置在两个透明电极(Et1,Et2)之间的光调制层部件的光 - 光转换元件(PPCE) 用于形成所述光转换元件上的物体的光学图像的第一图像形成元件(1,2,3),第二图像形成元件(5,7,Pdef1,6,4,Pdef2,9, 13,8),用于使用来自所述光 - 照片转换元件的光来读取它们,并且用于改变光束,在基本上彼此垂直的两个方向上扫描与所述对象的所述光学图像相对应的光学图像信息 将所述光学图像信息读出到扫描光束,其扫描轨迹在平面上成为一条线;以及记录介质传送机构(RMA),用于允许记录介质的记录表面位于所述平面上,其中线性 o的形象 形成信息,并且用于在与扫描轨迹的所述线成一角度的方向上连续移动所述记录介质。
    • 27. 发明公开
    • Projection-type liquid crystal display system
    • Flüssigkristall-Anzeigevorrichtung vom Projektionstyp
    • EP0833186A1
    • 1998-04-01
    • EP96307127.9
    • 1996-09-27
    • VICTOR COMPANY OF JAPAN, LIMITED
    • Furuya, MasatoTakanashi, ItsuoNakagaki, Shintaro
    • G02F1/1337H04N5/74
    • G02F1/133514G02F1/1393G02F2001/13373G02F2203/02H04N5/7441H04N2005/745
    • A projection-type liquid crystal display system comprises a display element (4) for modulating a linearly polarized component of reading light based on a display signal, a polarized beamsplitter (2) for entering the linearly polarized component of the reading light emitted from a light source (1) into the display element (4), and a projection lens (5) for projecting the reading light reflected from the display element on a screen (6). The display element (4) comprises a pixel electrode substrate (8) on which a plurality of rectangular pixel electrodes (7) are arrayed in a matrix pattern, a transparent substrate (10) disposed in a confronting relationship with pixel electrode substrate (8) and having a transparent electrode (9) thereon, liquid crystal (12) filled in a closed space between the pixel electrode substrate (8) and the transparent substrate (10), and alignment films (13, 14) aligning or orientating the liquid crystal (12) to a predetermined alignment direction. The alignment direction of the liquid crystal (12) is substantially parallel or normal to the direction of a side of each rectangular pixel electrode (7).
    • 投影型液晶显示系统包括:用于基于显示信号调制读取光线性偏振分量的显示元件(4),用于进入从光发射的读取光的线偏振分量的偏振分束器(2) 源(1)到显示元件(4)中,以及投影透镜(5),用于将从显示元件反射的读取光投影到屏幕(6)上。 显示元件(4)包括像素电极基板(8),多个矩形像素电极(7)以矩阵状排列在该像素电极基板上,与像素电极基板(8)相对设置的透明基板(10) 并且在其上具有透明电极(9),填充在像素电极基板(8)和透明基板(10)之间的封闭空间中的液晶(12)以及取向膜(13,14)使液晶 (12)到预定的对准方向。 液晶(12)的取向方向基本上与每个矩形像素电极(7)的一侧的方向平行或垂直。