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    • 1. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06342936B1
    • 2002-01-29
    • US09105175
    • 1998-06-26
    • Akio MurayamaTakeshi Takase
    • Akio MurayamaTakeshi Takase
    • G02F11343
    • G02F1/13363G02F1/1337G02F1/134363G02F2001/133749G02F2202/40G02F2413/02G02F2413/08
    • A liquid crystal display device includes an array substrate and a counter substrate, a liquid crystal cell held between the substrates 300 and containing liquid crystal molecules arranged to have an alignment corresponding to alignment properties of inner surfaces of the substrates, first and second polarizing plates having individual polarization axes and mounted on outer surfaces of the first and second substrates, respectively, a pixel electrode and counter electrode formed on the array substrate to apply a lateral electric field substantially parallel to the first and second substrate into the liquid crystal cell. The liquid crystal display device controls the alignment of the liquid crystal molecules by the lateral electric field between the pixel and counter electrodes. Particularly, in the liquid crystal display device, an optical retardation plate is interposed at least between the first polarizing plate and the array substrate, and an optical axis and retardation value of the optical retardation plate are determined to compensate for twisting of the alignment of the liquid crystal molecules caused upon application of the lateral electric field.
    • 液晶显示装置包括阵列基板和对置基板,液晶单元被保持在基板300之间,并且包含配置成具有与基板的内表面的对准性相对应的取向的液晶分子,第一和第二偏振板具有 各个偏振轴分别安装在第一和第二基板的外表面上,形成在阵列基板上的像素电极和对电极,以将基本平行于第一和第二基板的横向电场施加到液晶单元中。 液晶显示装置通过像素和对置电极之间的横向电场来控制液晶分子的取向。 特别地,在液晶显示装置中,至少在第一偏振板和阵列基板之间插入光学延迟板,并且确定光轴和光学延迟板的延迟值以补偿对准的扭曲 在施加横向电场时引起的液晶分子。
    • 3. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20070097297A1
    • 2007-05-03
    • US11548497
    • 2006-10-11
    • Yasushi KAWATAAkio MurayamaKisako NinomiyaNorihiro YoshidaChigusa Tago
    • Yasushi KAWATAAkio MurayamaKisako NinomiyaNorihiro YoshidaChigusa Tago
    • G02F1/1335
    • G02F1/133555G02F1/1337
    • Transmissive display regions are disposed at both sides of a reflective region in each pixel so as to sandwich the reflective region therebetween. A first height adjusting layer is formed below a counter electrode of a counter substrate, whereby the thickness of a liquid crystal layer in the reflective display region is made smaller than the thickness of the transmissive display regions. The motion of liquid crystal molecules at the peripheral edge of the reflective display region and the motion of liquid crystal molecules at the peripheral edge of the transmissive display region are symmetrical at both sides of the reflective display region. The alignment stability of the liquid crystal in the pixel can be enhanced. Defects such as unevenness of display caused by fluctuation of alignment of the liquid crystal molecules in the liquid crystal layer can be avoided. The asymmetrical property of the field-of-view angle can be avoided.
    • 透射显示区域设置在每个像素中的反射区域的两侧,以便将反射区域夹在其间。 在对置基板的对电极的下方形成第一高度调整层,由此使反射显示区域中的液晶层的厚度小于透射显示区域的厚度。 在反射显示区域的周缘处的液晶分子的运动和透射显示区域的周缘处的液晶分子的运动在反射显示区域的两侧是对称的。 可以提高像素中的液晶的取向稳定性。 可以避免液晶层中的液晶分子的取向波动引起的显示不均匀等缺陷。 可以避免视场角的不对称性。