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    • 1. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07995176B2
    • 2011-08-09
    • US12196864
    • 2008-08-22
    • Takahiro NishiokaTetsuya SatakeSuguru Nagae
    • Takahiro NishiokaTetsuya SatakeSuguru Nagae
    • G02F1/1335G02F1/1337
    • G02F1/13363G02F1/133707
    • The liquid crystal display device according to this invention includes a control structure provided at each of or one of a liquid crystal side of a first substrate and a liquid crystal side of a second substrate to control a tilt direction of a liquid crystal upon application of a voltage to a liquid crystal layer, a first domain where a liquid crystal tilts in one direction upon application of a voltage to a liquid crystal layer, and a second domain where a liquid crystal tilts in a direction different from the tilt direction of the liquid crystal in the first domain by substantially 180°. Herein, an angle formed by the tilt direction of the liquid crystal in the first domain and a horizontal direction of a screen in the liquid crystal display device falls within a range between 22° and 39° or a range between 51° and 68°.
    • 根据本发明的液晶显示装置包括控制结构,其设置在第一基板的液晶侧和第二基板的液晶侧之一或者其中之一上,以在施加了液晶显示装置时控制液晶的倾斜方向 向液晶层施加电压,在向液晶层施加电压时液晶向一个方向倾斜的第一区域和液晶在与液晶的倾斜方向不同的方向倾斜的第二区域 在第一域中大致180°。 这里,液晶显示装置中的第一区域中的液晶的倾斜方向和屏幕的水平方向形成的角度在22°至39°之间或51°至68°的范围内。
    • 2. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US07834962B2
    • 2010-11-16
    • US12330105
    • 2008-12-08
    • Tetsuya SatakeTakumi NakahataTakanori OkumuraYusuke YamagataTakeshi OnoNaoki NakagawaSuguru Nagae
    • Tetsuya SatakeTakumi NakahataTakanori OkumuraYusuke YamagataTakeshi OnoNaoki NakagawaSuguru Nagae
    • G02F1/1333G02F1/1335
    • G02F1/133305G02F1/133512G02F2001/133354
    • In a liquid crystal display (10) having a curved display surface, long sides of pixel structures (11) are arranged along the curve direction (Y) of the display surface and on a side of counter substrate provided is a black matrix having a black matrix opening (41a) whose length in the curve direction (Y) is not longer than E−L {(T1/2)+(T2/2)+d}/R, assuming that the length of the display surface in the curve direction (Y) is L, the thickness of an array substrate is T1, the thickness of the counter substrate is T2, the size of the gap between the array substrate and the counter substrate is d, the radius of curvature of the curved display surface is R and the length of a long side of a pixel electrode (29) provided in each of the pixel structures (11) is E. It thereby becomes possible to suppress display unevenness resulting from positional misalignment of the two substrates due to curvature and provide a liquid crystal display achieving a high-quality display image.
    • 在具有弯曲显示面的液晶显示器(10)中,像素结构(11)的长边沿着显示面的曲线方向(Y)配置,在相对基板的一侧设有具有黑色 假设曲线中的显示面的长度,曲线方向(Y)的长度不长于E-L {(T1 / 2)+(T2 / 2)+ d} / R的矩阵开口41a 方向(Y)为L,阵列基板的厚度为T1,对置基板的厚度为T2,阵列基板与对置基板的间隔尺寸为d,曲面显示面的曲率半径 是R,并且设置在每个像素结构(11)中的像素电极(29)的长边的长度为E.因此,由此可以抑制由于曲率而导致的两个基板的位置偏移导致的显示不均匀,并且提供 实现高质量显示图像的液晶显示器。
    • 4. 发明授权
    • Method and apparatus for detecting gap of liquid-crystal panel and apparatus therefor
    • 用于检测液晶面板间隙的方法和装置及其装置
    • US07079245B2
    • 2006-07-18
    • US10016913
    • 2001-12-14
    • Tetsuyuki KurataTetsuya SatakeTakahiro NishiokaYoshihiro TogashiToshiaki MaeharaSusumu Sato
    • Tetsuyuki KurataTetsuya SatakeTakahiro NishiokaYoshihiro TogashiToshiaki MaeharaSusumu Sato
    • G01J4/00H01L27/00G02B27/28
    • G02F1/1309
    • Light from a light source 10 is linearly polarized by a polarizer 11. Then it propagates via a half-mirror 12 almost parallel to the normal to a reflective liquid-crystal panel 13 and falls on the reflective liquid-crystal panel 13. The reflected light reflected by the reflective liquid-crystal panel 13 is received by a detector 15 via the half-mirror 12 and an analyzer 14. In this state, the reflective liquid-crystal panel 13 is rotated about an axis almost parallel to the normal to the reflective liquid-crystal panel 13 and an angle (extinction angle) at which the output signal of detector 15 reaches minimum is measured. Then, the gap of the reflective liquid-crystal panel 13 is detected based on the measured extinction angle. It is also possible to measure the output signals of detector 15 by arranging the analyzer 14 in a state in which the transmission axis thereof is almost parallel to the polarization direction of the incident light and a state in which it is almost perpendicular thereto and to detect the gap of the reflective liquid-crystal panel 13 based on the measured signals.
    • 来自光源10的光线被偏振片11线偏振,然后通过半反射镜12几乎平行于反射液晶板13的法线传播,并落在反射型液晶面板13上。反射光 由反射型液晶面板13反射的反射型液晶面板13由检测器15通过半透半反镜12和分析器14接收。在该状态下,反射型液晶面板13绕与反射型液晶面板13的法线大致平行的方向旋转 液晶面板13和检测器15的输出信号达到最小的角度(消光角)。 然后,基于测定的消光角检测反射型液晶面板13的间隙。 还可以通过将分析仪14布置在其透射轴几乎平行于入射光的偏振方向的状态和几乎与入射光的偏振方向相同的状态并检测检测器15的输出信号, 基于测量信号的反射液晶板13的间隙。
    • 9. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20090059145A1
    • 2009-03-05
    • US12196864
    • 2008-08-22
    • Takahiro NISHIOKATetsuya SatakeSuguru Nagae
    • Takahiro NISHIOKATetsuya SatakeSuguru Nagae
    • G02F1/1337G02F1/13363
    • G02F1/13363G02F1/133707
    • The liquid crystal display device according to this invention includes a control structure provided at each of or one of a liquid crystal side of a first substrate and a liquid crystal side of a second substrate to control a tilt direction of a liquid crystal upon application of a voltage to a liquid crystal layer, a first domain where a liquid crystal tilts in one direction upon application of a voltage to a liquid crystal layer, and a second domain where a liquid crystal tilts in a direction different from the tilt direction of the liquid crystal in the first domain by substantially 180°. Herein, an angle formed by the tilt direction of the liquid crystal in the first domain and a horizontal direction of a screen in the liquid crystal display device falls within a range between 22° and 39° or a range between 51° and 68°.
    • 根据本发明的液晶显示装置包括控制结构,其设置在第一基板的液晶侧和第二基板的液晶侧之一或者其中之一上,以在施加了液晶显示装置时控制液晶的倾斜方向 向液晶层施加电压,在向液晶层施加电压时液晶向一个方向倾斜的第一区域和液晶在与液晶的倾斜方向不同的方向倾斜的第二区域 在第一域中大致180°。 这里,液晶显示装置中的第一区域中的液晶的倾斜方向和屏幕的水平方向形成的角度在22°至39°之间或51°至68°的范围内。