Liquid crystal display device
    9.
    发明授权
    Liquid crystal display device 有权
    液晶显示装置

    公开(公告)号:US06265034B1

    公开(公告)日:2001-07-24

    申请号:US09309570

    申请日:1999-05-11

    IPC分类号: C09K1938

    摘要: Decreasing the non-uniformity of display by photo-deterioration of the liquid crystal material is achieved in order to provide high grade liquid crystal display devices. A pair of substrates holding a liquid crystal layer between them are adhered together with a resin, and at least an opening for injecting liquid crystal into the interval between the pair of substrates is provided in the resin portion. The opening is sealed with a photo-curable resin. The liquid crystal layer contains a photo-reactive liquid crystal compound, the molecular structure of which is converted by a photo-irradiation, and an photo-absorbing organic compound having a photo-absorptivity larger than that of the photo-reactive liquid crystal compound at a designated wavelength, and containing at least one of alkyl substituent, alkenyl substituent, and alkoxyl substituent of 1-8 carbon atoms, respectively, in its molecule.

    摘要翻译: 为了提供高等级的液晶显示装置,实现了通过液晶材料的光劣化降低显示不均匀性。 在它们之间保持液晶层的一对基板用树脂粘合在一起,并且在树脂部分中设置至少一个用于将液晶注入到一对基板之间的间隔中的开口。 开口用光固化树脂密封。 液晶层含有其光分解结构通过光照射转换的光反应性液晶化合物和光吸收性大于光反应性液晶化合物的光吸收性有机化合物 分子中分别含有1-8个碳原子的烷基取代基,烯基取代基和烷氧基取代基中的至少一个。

    Liquid crystal display device
    10.
    发明授权

    公开(公告)号:US07551169B2

    公开(公告)日:2009-06-23

    申请号:US11633531

    申请日:2006-12-05

    IPC分类号: G09G3/36 G09G5/00

    摘要: A liquid crystal display device can suppress the local temperature elevation of a liquid crystal in the vicinity of drivers. On a liquid-crystal-side surface of one substrate out of substrates which are arranged to face each other in an opposed manner while sandwiching a liquid crystal therebetween, a switching element which is operated in response to scanning signals from a gate signal line, a pixel electrode to which video signals from a drain signal line are supplied via the switching element, and a reference electrode which generates an electric field between the reference electrode and the pixel electrode are mounted on each pixel region of the liquid-crystal-side surface. The video signals from the drain signal line are generated by a driver chip mounted on one substrate. A light transmittivity of the liquid crystal layer is set to take a minimum value when a voltage is not applied between the pixel electrode and the reference electrode. A maximum amplitude of voltage of the video signals is set to a value not more than a voltage necessary for setting a relative transmittivity of the liquid crystal layer to 90%.