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    • 4. 发明授权
    • Interference color compensation double layered twisted nematic display
    • 干涉色补偿双层扭曲向列显示
    • US4443065A
    • 1984-04-17
    • US327229
    • 1981-12-03
    • Fumiaki FunadaMasataka MatsuuraTomio Wada
    • Fumiaki FunadaMasataka MatsuuraTomio Wada
    • G02F1/13363G02F1/1347G02F1/139G02F1/133G02F1/137
    • G02F1/133636G02F1/13471G02F1/1396
    • A double-layered twisted nematic liquid crystal display device which comprises a double layered structure including first and second layers of liquid crystal, the molecules of said liquid crystal having their longitudinal axes which are twisted, the direction of twist in the first layer being different from that in the second layer and wherein the longitudinal axes of the liquid crystal molecules in each of the first and second layers are perpendicular to each other, an electrical power supply means for applying a voltage to one of the first and second layers for controlling the orientation of the molecules of the liquid crystal in the first layer, the other of said first and second layers serving as a compensator which compensates for interference coloring, and a polarizing means for visibly enhancing the orientation of the molecules of the liquid crystal in the first layer when the voltage is applied thereto.
    • 一种双层扭曲向列型液晶显示装置,包括具有第一和第二液晶层的双层结构,所述液晶的分子具有扭曲的纵轴,第一层中的扭曲方向不同于 在第二层中,并且其中第一和第二层中的每一个中的液晶分子的纵向轴线彼此垂直;电源装置,用于向第一和第二层之一施加电压以控制取向 的第一层中的液晶分子中的另一个,所述第一和第二层中的另一个用作补偿干涉着色的补偿器,以及用于明显增强第一层中液晶分子的取向的偏振装置 当施加电压时。
    • 9. 发明授权
    • Fluorescent liquid crystal display devices
    • 荧光液晶显示装置
    • US4336980A
    • 1982-06-29
    • US120994
    • 1980-02-13
    • Fumiaki FunadaMasataka MatsuuraTomio Wada
    • Fumiaki FunadaMasataka MatsuuraTomio Wada
    • G02F1/133C09K11/06F21K2/00G02F1/13G02F1/1337G09F9/37
    • G02F1/13762C09K11/06F21K2/00
    • A liquid crystal display device containing a fluorescent material comprises a pair of electrodes, a pair of substrates, and an element for making liquid crystal mixtures in such a molecular orientation that the fluorescent materials generate no fluorescence at a selected portion of the pair of electrodes and accordingly no fluorescence penetrates through the liquid crystal mixtures. The element comprises a liquid crystal molecule orientation layer made of a layer of surfactant or electric power sources. The liquid crystal molecule orientation is formed over the pair of electrodes to produce a homeotropic orientation of a nematic mesophase. The electric power sources are applied to the pair of electrodes to form the homeotropic orientation of the nematic mesophase in a background area of the display device opposed to a display area of it.
    • 包含荧光材料的液晶显示装置包括一对电极,一对基板和用于以这样的分子取向制造液晶混合物的元件,使得荧光材料在该对电极的选定部分不产生荧光, 因此没有荧光穿透液晶混合物。 元件包括由表面活性剂或电源层制成的液晶分子取向层。 在一对电极上形成液晶分子取向以产生向列型中间相的垂直取向。 将电源施加到一对电极,以在显示装置的与其显示区域相对的背景区域中形成向列相中间相的垂直取向。
    • 10. 发明授权
    • Liquid crystal input/output matrix panel
    • 液晶输入/输出矩阵面板
    • US4679909A
    • 1987-07-14
    • US744961
    • 1985-06-17
    • Hiroshi HamadaFumiaki FunadaMasataka Matsuura
    • Hiroshi HamadaFumiaki FunadaMasataka Matsuura
    • G06F3/041G06F3/033G09G3/36G06F3/02
    • G06F3/0412G09G3/36
    • Numerous photoelectric translation cells are arranged to correspond to associated picture elements in an active type matrix LCD display system. When a light pen is used as an input means, the system allows detection of light beam positions, enabling it to function as an input means.The liquid crystal input/output system constructed in this manner has advantages of low power consumption and thin and lightweight construction as compared with conventional input/output systems using a combination of CRT and light pen. It is best suited for applications in portable electronic appliances and offers great technical benefit by arranging the photoelectric translation cells in a manner so as to increase the aperture ratio of the matrix display.
    • 许多光电转换单元被布置成对应于有源类型矩阵LCD显示系统中的相关联的图像元素。 当使用光笔作为输入装置时,系统允许检测光束位置,使其能够用作输入装置。 与使用CRT和光笔的组合的常规输入/输出系统相比,以这种方式构造的液晶输入/输出系统具有低功耗和薄而轻的结构的优点。 它最适用于便携式电子设备中的应用,并且通过以增加矩阵显示器的开口率的方式布置光电转换单元,并且提供了巨大的技术优势。