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    • 5. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20090224247A1
    • 2009-09-10
    • US12379874
    • 2009-03-03
    • Takuo KaitohHidekazu MiyakeTakeshi SakaiTerunori Saitou
    • Takuo KaitohHidekazu MiyakeTakeshi SakaiTerunori Saitou
    • H01L33/00
    • H01L29/78696H01L27/1229H01L27/1251
    • In a bottom-gate-type thin film transistor used in a liquid crystal display device in which a poly-Si layer and an a-Si layer are stacked, a quantity of an ON current which flows in the thin film transistor can be increased. A poly-Si layer and an a-Si layer are stacked on a gate electrode as an active layer by way of a gate insulation film therebetween in order of the poly-Si layer and the a-Si layer. An n+Si layer and a source/drain layer are formed on the a-Si layer thus forming a thin film transistor. A forward current which flows in the thin film transistor mainly flows in the poly-Si layer. To decrease contact resistance against the forward current between the poly-Si layer and the n+Si layer, an edge portion of the a-Si layer and an edge portion of the poly-Si layer assume a concavo-convex shape thus particularly increasing a contact area between the poly-Si layer and the n+Si layer whereby the contact resistance against the forward current can be decreased leading to the increase of a quantity of an ON current.
    • 在层叠多晶硅层和a-Si层的液晶显示装置中使用的底栅型薄膜晶体管中,可以增加流入薄膜晶体管的导通电流量。 按照多晶硅层和a-Si层的顺序,通过栅绝缘膜将多晶Si层和a-Si层层叠在作为有源层的栅电极上。 在a-Si层上形成n + Si层和源/漏层,从而形成薄膜晶体管。 在薄膜晶体管中流动的正向电流主要在多晶硅层中流动。 为了降低与多晶硅层和n + Si层之间的正向电流的接触电阻,a-Si层的边缘部分和多晶硅层的边缘部分呈现凹凸形状,因此特别增加了 多晶硅层和n + Si层之间的接触面积,由此可以减小与正向电流的接触电阻,导致导通电流的增加。
    • 7. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08786812B2
    • 2014-07-22
    • US13414048
    • 2012-03-07
    • Toshio MiyazawaTerunori Saitou
    • Toshio MiyazawaTerunori Saitou
    • G02F1/1343
    • G03B21/006G02B3/12G02B27/2214G02F1/134363G02F1/13471G02F2001/294H04N13/305H04N13/359
    • A liquid crystal lens is provided on a liquid crystal display panel. Electrodes extending vertically to a plane of drawing are provided on an upper substrate of the liquid crystal lens at predetermined intervals. No electrodes are provided on a lower substrate. An initial alignment of liquid crystal molecules in the liquid crystal lens is vertically directed with respect to the plane of the drawing. A voltage applied to the upper substrate electrodes generates a transverse electric field to rotate the liquid crystal molecules. Polarization light emitted from the liquid crystal display panel is vertically directed to the plane of the drawing, which generates a refractive index distribution of the polarization light in a liquid crystal layer to form a convex lens within the liquid crystal lens. This lens allows first and second pixels to be recognized by right and left eyes to allow a three-dimensional display.
    • 在液晶显示面板上设置液晶透镜。 在液晶透镜的上基板上以预定间隔设置垂直于拉伸平面延伸的电极。 在下基板上没有电极。 液晶透镜中的液晶分子的初始取向相对于图面垂直取向。 施加到上基板电极的电压产生横向电场以旋转液晶分子。 从液晶显示面板发射的偏振光垂直地指向图面,其产生液晶层中的偏振光的折射率分布,以在液晶透镜内形成凸透镜。 该透镜允许由左眼和左眼识别第一和第二像素以允许三维显示。