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    • 1. 发明授权
    • Liquid crystal parallax barrier, display device and liquid crystal display device
    • 液晶视差屏障,显示装置和液晶显示装置
    • US08373808B2
    • 2013-02-12
    • US12828791
    • 2010-07-01
    • Yoshiharu OwakuToshio MiyazawaHironori Kondo
    • Yoshiharu OwakuToshio MiyazawaHironori Kondo
    • G02F1/1335
    • G02F1/1347G02F1/133512G02F1/134363G02F2201/124G02F2201/44G02F2203/12G02F2203/66H04N13/31
    • A liquid crystal parallax barrier panel has the structure formed by stacking an electrode substrate, a liquid crystal layer and a sealing substrate in order. The electrode substrate includes a glass substrate, a first electrode which is branched in plural stages, a second electrode which is arranged on the same layer as the first electrode and is branched in plural stages, and an alignment film. Out of the first electrode and the second electrode, twig portions which include distal ends of branched portions of one electrode and twig portions which include distal ends of branched portions of another electrode are alternately arranged such that the twig portion which includes the distal end of the branched portion of one electrode enters between two twig portions which include the distal ends of branched portions of another electrode. In a state where slits are not formed in a parallax barrier, the first electrode and the second electrode have the same voltage, while the slits are formed in the parallax barrier when a predetermined voltage is applied to the first electrode.
    • 液晶视差屏障板具有依次层叠电极基板,液晶层和密封基板而形成的结构。 电极基板包括玻璃基板,多级分支的第一电极,与第一电极配置在同一层上并分支成多级的第二电极和取向膜。 在第一电极和第二电极之外,包括一个电极的分支部分的远端和包括另一个电极的分支部分的远端的枝条部分的交替布置,使得包括该电极的远端的枝条部分 一个电极的分支部分进入包括另一电极的分支部分的远端的两个枝条部分之间。 在不形成狭缝的状态下,第一电极和第二电极具有相同的电压,而当对第一电极施加预定的电压时,狭缝形成在视差屏障中。
    • 4. 发明授权
    • Low power driving method for reducing non-display area of TFT-LCD
    • 用于降低TFT-LCD非显示区域的低功耗驱动方法
    • US06172661B2
    • 2001-01-09
    • US09260554
    • 1999-03-02
    • Yoshihiro ImajoHironori KondoKaoru HasegawaYouichi Igarashi
    • Yoshihiro ImajoHironori KondoKaoru HasegawaYouichi Igarashi
    • G09G336
    • G09G3/2011G09G3/3655G09G3/3659G09G3/3677G09G3/3688G09G3/3696G09G2300/0809G09G2310/0289G09G2330/02
    • A liquid crystal display device includes a liquid crystal display panel in which pixels are arranged in rows and columns. Each of the pixels includes a pixel electrode, and a thin-film transistor having a gate electrode and a drain electrode. Gate signal lines arranged in the rows are connected to the gate electrodes of the thin-film transistors. Drain signal lines arranged in the columns are connected to the drain electrodes of the thin-film transistors. The liquid crystal display device further includes a gate drive circuit for driving the gate signal lines, and a drain drive circuit for driving the drain signal lines. The drain drive circuit receives a plurality of grey-scale reference voltages from an external circuit, interpolates a plurality of intermediate voltages between each pair of adjacent ones of the grey-scale reference voltages, selects voltages from the grey-scale reference voltages and the intermediate voltages, and applies the selected voltages to the drain signal lines. V0 is a grey-scale reference voltage corresponding to a minimum grey-scale level, Vm is a grey-scale reference voltage corresponding to a maximum grey-scale level, and Vi is a grey-scale reference voltage that is nearest to a voltage level (Vm+V0)/2. A number of intermediate voltages interpolated between V(i−1) and Vi is different from both a number of intermediate voltages interpolated between V0 and V1, and a number of intermediate voltages interpolated between V(m−1) and Vm.
    • 液晶显示装置包括:液晶显示面板,其中像素以行和列排列。 每个像素包括像素电极和具有栅电极和漏电极的薄膜晶体管。 布置在行中的栅极信号线连接到薄膜晶体管的栅电极。 排列在列中的漏极信号线连接到薄膜晶体管的漏电极。 液晶显示装置还包括用于驱动栅极信号线的栅极驱动电路和用于驱动漏极信号线的漏极驱动电路。 漏极驱动电路从外部电路接收多个灰度参考电压,在每对相邻的灰阶参考电压之间插入多个中间电压,从灰度参考电压和中间电压中选择电压 电压,并将所选择的电压施加到漏极信号线。 V0是对应于最小灰度级的灰度参考电压,Vm是对应于最大灰度级的灰度参考电压,Vi是最接近电压电平的灰度参考电压 (Vm + V0)/ 2。 在V(i-1)和Vi之间内插的多个中间电压与在V0和V1之间插入的中间电压数量以及在V(m-1)和Vm之间插入的中间电压的数量不同。
    • 9. 发明授权
    • Power control apparatus
    • 电源控制装置
    • US06756549B2
    • 2004-06-29
    • US10164590
    • 2002-06-10
    • Mika SuzukiTakayoshi EndoHironori KondoGoro NakamuraNorihiro OhashiTakahiro Satoh
    • Mika SuzukiTakayoshi EndoHironori KondoGoro NakamuraNorihiro OhashiTakahiro Satoh
    • H01H1900
    • H01H19/566H01H1/2041H01H1/365H01H3/26H01H9/38
    • A rotating terminal (16) has a circumferential outer peripheral surface (21a, 24a) having its center disposed at an axis (13, 21b) of rotation of the rotating terminal, and has electrically conductive areas and non-electrically conductive areas alternately arranged on the outer peripheral surface in the circumferential direction. At least one pair of fixed terminals (17, 18) are fixed and disposed outwardly of a path of rotation of the outer peripheral surface of the rotating terminal. In accordance with a rotating position of the rotating terminal, the pair of fixed terminals can be switched between an electrically-conducting condition, in which the pair of fixed terminals are electrically connected together through the rotating terminal, and an interrupting condition in which the pair of fixed terminals are not electrically connected together through the rotating terminal.
    • 旋转端子(16)具有周向外周面(21a,24a),其中心设置在旋转端子的旋转轴线(13,21b)上,并且具有交替布置在其上的导电区域和非导电区域 外周面在圆周方向上。 至少一对固定端子(17,18)固定并设置在旋转端子的外周面的旋转路径的外侧。 根据旋转端子的旋转位置,一对固定端子可以在一对固定端子通过旋转端子电连接在一起的导电状态之间切换,并且其中该对 的固定端子不通过旋转端子电连接在一起。