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    • 26. 发明授权
    • Liquid crystal panel module and liquid crystal display device using the same
    • 液晶面板模块和使用其的液晶显示装置
    • US07852425B2
    • 2010-12-14
    • US11905072
    • 2007-09-27
    • Hideki Nishimura
    • Hideki Nishimura
    • G02F1/1333
    • G02F1/13452
    • Disclosed is a liquid crystal display panel module. The liquid crystal display panel module includes a liquid crystal display panel in which a liquid crystal layer is sandwiched between a pair of substrates facing each other, a printed wiring board which is electrically connected to the liquid crystal display panel, a first frame-shaped chassis which is arranged in front of the liquid crystal display panel, and a second frame-shaped chassis which is electrically conductive and arranged behind of the liquid crystal display panel. In the liquid crystal display panel module, the liquid crystal display panel is held by the first chassis and the second chassis. And, the second chassis and a grounding electrode of the printed wiring board are electrically connected by attaching the printed wiring board to the second chassis.
    • 公开了一种液晶显示面板模块。 液晶显示面板模块包括液晶显示面板,液晶层夹在一对彼此相对的基板之间,电连接到液晶显示面板的印刷电路板,第一框架 其布置在液晶显示面板的前面,并且第二框架底座是导电的并且布置在液晶显示面板后面。 在液晶显示面板模块中,液晶显示面板由第一机架和第二机架保持。 并且,通过将印刷线路板附接到第二机架,印刷线路板的第二机架和接地电极电连接。
    • 27. 发明授权
    • Layer-stacked wiring and semiconductor device using the same
    • 层叠布线和使用其的半导体器件
    • US07851807B2
    • 2010-12-14
    • US12490790
    • 2009-06-24
    • Jun TanakaHiroshi Kanoh
    • Jun TanakaHiroshi Kanoh
    • H01L29/15
    • H01L29/4908H01L29/66757
    • A layer-stacked wiring made up of a microcrystalline silicon thin film and a metal thin film is provided which is capable of suppressing an excessive silicide formation reaction between the microcrystalline silicon thin film and metal thin film, thereby preventing peeling of the thin film. In a polycrystalline silicon TFT (Thin Film Transistor) using the layer-stacked wiring, the microcrystalline silicon thin film is so configured that its crystal grains each having a length of the microcrystalline silicon thin film in a direction of a film thickness being 60% or more of a film thickness of the microcrystalline silicon thin film amount to 15% or less of total number of crystal grains or that its crystal grains each having a length of the microcrystalline silicon thin film in a direction of a film thickness being 50% or less of a film thickness of the microcrystalline silicon thin film amount to 85% or more of the total number of crystal grains making up the microcrystalline silicon thin film.
    • 提供了由微晶硅薄膜和金属薄膜构成的层叠布线,其能够抑制微晶硅薄膜和金属薄膜之间的过度的硅化物形成反应,从而防止薄膜的剥离。 在使用层叠布线的多晶硅TFT(Thin Film Transistor,多晶硅TFT)中,微晶硅薄膜的结构使得其晶粒各自具有薄膜厚度为60%的微晶硅薄膜的长度, 微晶硅薄膜的膜厚更多为15个以下的晶粒总数,或者其晶粒尺寸为50%以下,每个微晶硅薄膜的长度均为50%以下 的微晶硅薄膜的膜厚的总和为构成微晶硅薄膜的晶粒总数的85%以上。
    • 29. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE, ELECTRONIC DEVICE COMPRISING SAME, AND CONTROLLER FOR LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置,包含其的电子装置和用于液晶显示装置的控制器
    • US20100238105A1
    • 2010-09-23
    • US12726696
    • 2010-03-18
    • Jin MATSUSHIMAMichiaki SAKAMOTOKen SUMIYOSHIKenichi MORI
    • Jin MATSUSHIMAMichiaki SAKAMOTOKen SUMIYOSHIKenichi MORI
    • G09G3/36
    • G09G3/3648G09G2300/0452G09G2300/0456
    • A liquid crystal display device provided herein can be switched between a display mode and a mirror mode, and can ensure a high image quality in the display mode.The liquid crystal display device comprises liquid crystal panel 200 including sub-pixels 254, 255, and back light 213 for irradiating light to the back surface of liquid crystal panel 200. Transmission sub-pixel 254 can be switched into an image display state which can allow irradiated light to exit, and a black display state which does not allow irradiated light to exit. Mirror sub-pixel 255 can be switched between a mirror state which can allow reflected light to exit and a non-mirror state which does not allow reflected light to exit, independently of transmission sub-pixel 254. A control unit places each transmission sub-pixel 254 into the image display state or black display state, and places each mirror sub-pixel 255 into the mirror state or non-mirror state.
    • 这里提供的液晶显示装置可以在显示模式和镜像模式之间切换,并且可以确保显示模式下的高图像质量。 液晶显示装置包括液晶面板200,该液晶面板200包括用于将光照射到液晶面板200的背面的子像素254,255和背光213。透射子像素254可以切换成图像显示状态, 允许照射光离开,并且黑色显示状态不允许照射光离开。 镜子子像素255可以在允许反射光离开的镜像状态和不允许反射光离开的非镜像状态之间切换,而不依赖于传输子像素254。 像素254进入图像显示状态或黑色显示状态,并且将每个镜像子像素255设置为镜像状态或非镜像状态。
    • 30. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE, AND TIMING CONTROLLER AND SIGNAL PROCESSING METHOD USED IN SAME
    • 液晶显示装置,以及同步使用的时序控制器和信号处理方法
    • US20100231559A1
    • 2010-09-16
    • US12721264
    • 2010-03-10
    • Kouichi OOGA
    • Kouichi OOGA
    • G09G5/00
    • G09G5/12G09G3/20G09G3/3614G09G3/3648G09G2300/08G09G2310/08G09G2330/06
    • A liquid crystal device is provided which is capable of being free from degradation of signal receiving sensitivity and/or malfunction without performing thinning-out and complementing on video signals of an electronic device having an embedded peripheral circuit to receive and transmit data. A stop period during which outputting of horizontal synchronizing signal made up of a video signal strobe signal STB and vertical drive clock signal VCK is stopped at least one time or more and for two horizontal periods or more during a display period in one vertical period is set by a control device (for example, timing controller). In this horizontal synchronizing stop period setting mode processing, a first signal (for example, status signal) indicating that the outputting of the horizontal synchronizing signal is in a stop state is transmitted to an electronic circuit (for example, peripheral circuit).
    • 提供一种液晶装置,其能够不受信号接收灵敏度和/或故障的影响,而不会对具有嵌入式外围电路的电子设备的视频信号进行稀疏化和补充,以接收和发送数据。 设定在视频信号选通信号STB和垂直驱动时钟信号VCK构成的水平同步信号的输出至少一次以上并在一个垂直周期的显示期间停止两个水平周期以上的停止期间 通过控制装置(例如,时序控制器)。 在该水平同步停止期间设定模式处理中,向电子电路(例如外围电路)发送表示水平同步信号的输出处于停止状态的第一信号(例如,状态信号)。