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    • 3. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06812911B2
    • 2004-11-02
    • US09989171
    • 2001-11-21
    • Tatsuo MakishimaShinichi IwasakiMasaaki KitajimaYoshio OowakiKoji TakahashiShunsuke Morishita
    • Tatsuo MakishimaShinichi IwasakiMasaaki KitajimaYoshio OowakiKoji TakahashiShunsuke Morishita
    • G09G500
    • G09G3/3655G09G3/3677G09G2320/0247G09G2330/026
    • The present invention realizes a liquid crystal display device and an image display device which prevent the generation of flickering when power is supplied again after the supplying of power is stopped. The liquid crystal display device includes first and second substrates which are arranged to face each other in an opposed manner, a liquid crystal layer which is inserted between the first and second substrates, active elements, scanning signal lines for operating the active elements and pixel electrodes to which video signals are supplied upon operation of the active elements which are all mounted on one substrate, an orientation film which is inserted between the pixel electrodes and the liquid crystal layer, and reference electrodes which are mounted on either one or the other substrate, and the liquid crystal display device performing a display by generating the potential difference between the pixel electrodes and the reference electrode. In such a liquid crystal display device, the charge of the pixel electrodes is rapidly released when the supplying of power to the liquid crystal display device from the outside is stopped.
    • 本发明实现了在供电停止之后再次供电时防止产生闪烁的液晶显示装置和图像显示装置。 该液晶显示装置包括相互相对配置的第一基板和第二基板,插入在第一基板和第二基板之间的液晶层,有源元件,用于操作有源元件和像素电极的扫描信号线 在全部安装在一个基板上的有源元件的操作上提供视频信号,插入在像素电极和液晶层之间的取向膜和安装在一个或另一个基板上的参考电极, 并且液晶显示装置通过产生像素电极和参考电极之间的电位差来进行显示。 在这种液晶显示装置中,当从外部向液晶显示装置供电停止时,像素电极的电荷快速释放。
    • 5. 发明授权
    • Liquid crystal display device employing an analog interface to which a gradation voltage is input from outside
    • 采用从外部输入灰度电压的模拟接口的液晶显示装置
    • US07986292B2
    • 2011-07-26
    • US11984259
    • 2007-11-15
    • Tsutomu FuruhashiYoshio OowakiTakeshi Harayama
    • Tsutomu FuruhashiYoshio OowakiTakeshi Harayama
    • G09G3/36
    • G09G3/3688G09G3/2011G09G2310/0289
    • An image line driving circuit has: an n-number of switching elements for sampling a k-number of gradation voltages inputted from outside and then sequentially supplying the gradation voltages to first to (n/k)-th groups of a k-number of image lines; and a shift register circuit for sequentially inputting sampling voltages to first to (n/k)-th groups of a k-number of switching elements to thereby sequentially turn ON the respective groups of a k-number of switching elements. The scanning line driving circuit sequentially supplies selected scanning voltages to an m-number of scanning lines. The image line driving circuit and the scanning line driving circuit are circuits built in a semiconductor chip mounted on the first substrate. A thin-film transistor has a semiconductor layer formed of amorphous silicon. When voltage levels of the k-number of gradation voltages inputted from outside are at 0 to 5V, the selected scanning voltages inputted to the gates of the thin-film transistors are 20V or more.
    • 图像线驱动电路具有:n个开关元件,用于对从外部输入的k个灰度电压进行采样,然后顺序地将灰度电压提供给第k个数量的第k个第(n / k)个第 图像线; 以及移位寄存器电路,用于顺序地将k个开关元件的第一至第(n / k)个组中的采样电压输入,从而顺序地接通k个开关元件的各组。 扫描线驱动电路依次将选择的扫描电压提供给m行的扫描线。 图像线驱动电路和扫描线驱动电路是内置在安装在第一基板上的半导体芯片中的电路。 薄膜晶体管具有由非晶硅形成的半导体层。 当从外部输入的灰度级电压的k值的电压电平为0〜5V时,输入到薄膜晶体管的栅极的选择的扫描电压为20V以上。
    • 6. 发明授权
    • Information processing equipment
    • 信息处理设备
    • US07558078B2
    • 2009-07-07
    • US11852406
    • 2007-09-10
    • Yoshio Oowaki
    • Yoshio Oowaki
    • H04B1/03
    • H05K1/028H05K1/0219H05K1/0224H05K2201/09236H05K2201/09781
    • According to the invention, information processing equipment using a flexible printed-circuit board which does not lose bendability with repeated opening and closing of a display unit, and which suppresses radiation noise from signal wiring is provided. In the configuration of the invention, a first cover film is formed to cover a wiring layer on a first surface of a base film, and a second cover film is formed to cover a wiring layer on a second surface of the base film. Portions of the second cover film and the underlying wiring layer on the second surface in the loop formation region are discontinuously removed in the inward-bending area of the loop, and the base film is exposed in the removed parts. The wiring layer underneath the remaining second cover film, which is not removed, and the wiring layer on the first surface of the base film are electrically connected via through holes penetrating the base film.
    • 根据本发明,提供了使用柔性印刷电路板的信息处理设备,其通过重复打开和关闭显示单元而不失去弯曲性,并且抑制了来自信号布线的辐射噪声。 在本发明的结构中,形成第一覆盖膜以覆盖基膜的第一表面上的布线层,并且形成第二覆盖膜以覆盖基膜的第二表面上的布线层。 第二覆盖膜的一部分和环形成区域中的第二表面上的底层布线层在环的向内弯曲区域中不连续地移除,并且基膜在去除部分中露出。 未除去的剩余的第二覆盖膜下面的布线层和基膜的第一表面上的布线层通过穿透基膜的通孔电连接。
    • 7. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20090115743A1
    • 2009-05-07
    • US12289886
    • 2008-11-06
    • Yoshio Oowaki
    • Yoshio Oowaki
    • G06F3/045
    • G06F3/0412G06F3/044
    • To realize an increase in an image quality of a liquid crystal display device having a capacitive touch screen, and an increase in a reliability of a contact surface and a connection portion.A capacitive touch screen 50 and a liquid crystal display panel 30 are connected, by the same flexible wiring substrate 70, on an interior side when the touch screen 50 and the liquid crystal display panel 30 are laid one on top of the other. By so doing, a terminal is protected from an exterior, and an increase in a number of components is suppressed. Also, by installing the capacitive touch screen 50 on a color filter substrate 20 side of the liquid crystal display panel 30, a reduction of a contrast is prevented. Furthermore, a capacitive touch screen substrate 51 side is made a contact surface for an input. By so doing, a conductive layer 52 of the capacitive touch screen 50 is prevented from tearing due to an abrasion caused by a contact.
    • 为了实现具有电容式触摸屏的液晶显示装置的图像质量的提高,以及接触面和连接部的可靠性的提高。 当触摸屏50和液晶显示面板30一个放置在一起时,电容式触摸屏50和液晶显示面板30通过相同的柔性布线基板70在内侧连接。 通过这样做,端子被保护免受外部影响,并且抑制了多个部件的增加。 此外,通过在液晶显示面板30的滤色器基板20侧安装电容式触摸屏50,可以防止对比度的降低。 此外,电容式触摸屏基板51侧成为输入的接触面。 通过这样做,电容式触摸屏50的导电层52由于接触引起的磨损而被防止撕裂。
    • 8. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20080129715A1
    • 2008-06-05
    • US11984259
    • 2007-11-15
    • Tsutomu FuruhashiYoshio OowakiTakeshi Harayama
    • Tsutomu FuruhashiYoshio OowakiTakeshi Harayama
    • G06F3/038G09G3/36
    • G09G3/3688G09G3/2011G09G2310/0289
    • An image line driving circuit has: an n-number of switching elements for sampling a k-number of gradation voltages inputted from outside and then sequentially supplying the gradation voltages to first to (n/k)-th groups of a k-number of image lines; and a shift register circuit for sequentially inputting sampling voltages to first to (n/k)-th groups of a k-number of switching elements to thereby sequentially turn ON the respective groups of a k-number of switching elements. The scanning line driving circuit sequentially supplies selected scanning voltages to an m-number of scanning lines. The image line driving circuit and the scanning line driving circuit are circuits built in a semiconductor chip mounted on the first substrate. A thin-film transistor has a semiconductor layer formed of amorphous silicon. When voltage levels of the k-number of gradation voltages inputted from outside are at 0 to 5V, the selected scanning voltages inputted to the gates of the thin-film transistors are 20V or more.
    • 图像线驱动电路具有:n个开关元件,用于对从外部输入的k个灰度电压进行采样,然后顺序地将灰度电压提供给第k个数量的第k个第(n / k)个第 图像线; 以及移位寄存器电路,用于顺序地将k个开关元件的第一至第(n / k)个组中的采样电压输入,从而顺序地接通k个开关元件的各组。 扫描线驱动电路依次将选择的扫描电压提供给m行的扫描线。 图像线驱动电路和扫描线驱动电路是内置在安装在第一基板上的半导体芯片中的电路。 薄膜晶体管具有由非晶硅形成的半导体层。 当从外部输入的灰度级电压的k值的电压电平为0〜5V时,输入到薄膜晶体管的栅极的选择的扫描电压为20V以上。
    • 9. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08194048B2
    • 2012-06-05
    • US12289886
    • 2008-11-06
    • Yoshio Oowaki
    • Yoshio Oowaki
    • G06F3/045
    • G06F3/0412G06F3/044
    • To realize an increase in an image quality of a liquid crystal display device having a capacitive touch screen, and an increase in are liability of a contact surface and a connection portion. A capacitive touch screen 50 and a liquid crystal display panel 30 are connected, by the same flexible wiring substrate 70, on an interior side when the touch screen 50 and the liquid crystal display panel 30 are laid one on top of the other. By so doing, a terminal is protected from an exterior, and an increase in a number of components is suppressed. Also, by installing the capacitive touch screen 50 on a color filter substrate 20 side of the liquid crystal display panel 30, a reduction of a contrast is prevented. Furthermore, a capacitive touch screen substrate 51 side is made a contact surface for an input. By so doing, a conductive layer 52 of the capacitive touch screen 50 is prevented from tearing due to an abrasion caused by a contact.
    • 为了实现具有电容式触摸屏的液晶显示装置的图像质量的提高,并且增加了接触表面和连接部分的负担。 当触摸屏50和液晶显示面板30一个放置在一起时,电容式触摸屏50和液晶显示面板30通过相同的柔性布线基板70在内侧连接。 通过这样做,端子被保护免受外部影响,并且抑制了多个部件的增加。 此外,通过在液晶显示面板30的滤色器基板20侧安装电容式触摸屏50,可以防止对比度的降低。 此外,电容式触摸屏基板51侧成为输入的接触面。 通过这样做,电容式触摸屏50的导电层52由于接触引起的磨损而被防止撕裂。