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    • 1. 发明授权
    • Active-matrix liquid crystal display device and method for compensating for defective display lines
    • 有源矩阵液晶显示装置及补偿缺陷显示线的方法
    • US06462792B1
    • 2002-10-08
    • US09718412
    • 2000-11-24
    • Atsushi BanTakayuki ShimadaMikio Katayama
    • Atsushi BanTakayuki ShimadaMikio Katayama
    • G02F1343
    • G02F1/136286G02F2001/136272
    • In a liquid crystal display device, auxiliary lines are formed under pixel electrodes so as to be parallel to signal or scanning lines. The auxiliary lines are connected to the signal or scanning lines at one point for each pixel. This permits a voltage to be applied to a signal or scanning line if a disconnection defect occurs in the signal or scanning line. The auxiliary line is connected to the signal or scanning line at opposite sides of the defect to form a circuit around the defect. Moreover, if a leakage defect occurs at a crossing point between the scanning line and the signal line, the signal or scanning line may be cut off at both sides of the scanning or signal line, and the auxiliary line forms a circuit that avoids the line leak. Thus, a voltage may be applied to the signal or scanning line by the auxiliary line.
    • 在液晶显示装置中,辅助线形成在像素电极下方以与信号线或扫描线平行。 辅助线路连接到每个像素的一点上的信号或扫描线。 如果信号或扫描线中出现断线缺陷,则允许将电压施加到信号或扫描线。 辅助线连接到缺陷相对侧的信号或扫描线,以形成缺陷周围的电路。 此外,如果在扫描线和信号线之间的交叉点处发生泄漏缺陷,则信号或扫描线可能在扫描或信号线的两侧被切断,并且辅助线形成避免线的电路 泄漏。 因此,可以通过辅助线将电压施加到信号或扫描线。
    • 2. 发明授权
    • Liquid crystal display having high transmittance and high aperture ratio
    • 具有高透射率和高开口率的液晶显示器
    • US06522380B2
    • 2003-02-18
    • US09797761
    • 2001-03-01
    • Seung Hee LeeSeok Lyul LeeWoo Ho ChoiJung Yeal Lee
    • Seung Hee LeeSeok Lyul LeeWoo Ho ChoiJung Yeal Lee
    • G02F1343
    • G02F1/134363G02F2001/134372
    • Disclosed is a liquid crystal display comprising: a first substrate and a second substrate, the first substrate being disposed opposite the second substrate and being disposed a first distance apart, each of the substrates having an inner surface and an outer surface opposite the inner surface; a liquid crystal layer sandwiched between the inner surfaces of the substrates, the liquid crystal layer including a plurality of liquid crystal molecules; a first electrode formed on the inner surface of the first substrate, the first electrode having a first width; and a second electrode formed on the inner surface of the first substrate, the second electrode having a second width, and spaced apart from the first electrode by a second distance, the first electrode and the second electrode being capable of aligning the liquid crystal molecules using an electric field produced between the first electrode and the second electrode, wherein the first distance is greater in length than the second distance, and the first and second electrodes each has a width to such a degree that the liquid crystal molecules above the first and second electrodes are substantially aligned by the electric field.
    • 公开了一种液晶显示器,包括:第一基板和第二基板,所述第一基板与所述第二基板相对地设置并且间隔开第一距离,每个所述基板具有内表面和与所述内表面相对的外表面; 夹在基板的内表面之间的液晶层,液晶层包括多个液晶分子; 形成在所述第一基板的内表面上的第一电极,所述第一电极具有第一宽度; 以及形成在所述第一基板的内表面上的第二电极,所述第二电极具有第二宽度,并且与所述第一电极间隔开第二距离,所述第一电极和所述第二电极能够使用 在所述第一电极和所述第二电极之间产生的电场,其中所述第一距离的长度大于所述第二距离,并且所述第一和第二电极各自具有使所述第一和第二电极之上的液晶分子的宽度 电极基本上由电场对准。
    • 4. 发明授权
    • Active-matrix liquid crystal display
    • 有源矩阵液晶显示
    • US06292247B1
    • 2001-09-18
    • US09571093
    • 2000-05-15
    • Norio KomaTetsuji OmuraKiyoshi Yoneda
    • Norio KomaTetsuji OmuraKiyoshi Yoneda
    • G02F1343
    • C09K19/3001C09K2019/3027G02F1/133707G02F1/1393G02F2001/133742
    • On a TFT substrate, a TFT using a low-temperature poly silicon thin film as an active layer is formed and a plurality of pixel electrodes are formed over the TFT and its electrode wiring, with an interlayer insulating layer between. In a common electrode formed on an opposite substrate opposite the TFT substrate with a liquid crystal layer between, an alignment controlling window for the liquid crystal is formed at a predetermined position opposite each of the pixel electrodes. A wide viewing angle is achieved by dividing an alignment area of liquid crystal molecules in one pixel area. The liquid crystal layer is vertically aligned and can be operated at a low driving voltage obtained by a poly silicon TFT by including fluorine liquid crystal molecules having negative dielectric anisotropy and fluorine side chains in the liquid crystal.
    • 在TFT基板上,形成使用低温多晶硅薄膜作为有源层的TFT,并且在TFT及其电极布线之间形成有多个像素电极,其间具有层间绝缘层。 在与TFT基板相对的相对基板上形成有液晶层的公共电极之间,在与每个像素电极相对的预定位置处形成用于液晶的取向控制窗口。 通过在一个像素区域中划分液晶分子的取向区域来实现宽视角。 液晶层垂直取向,并且可以通过在液晶中包括具有负介电各向异性的氟液晶分子和氟侧链在多晶硅TFT获得的低驱动电压下操作。