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    • 1. 发明授权
    • Liquid crystal display panel wherein end-sealing material contains particulates larger than gap formed by liquid crystal filling port
    • 液晶显示面板,其中端部密封材料包含大于由液晶填充口形成的间隙的微粒
    • US06275279B1
    • 2001-08-14
    • US09452145
    • 1999-12-01
    • Hiroaki AsumaShigeru MatsuyamaTohru SasakiNoboru KunimatsuMasamitsu Furuie
    • Hiroaki AsumaShigeru MatsuyamaTohru SasakiNoboru KunimatsuMasamitsu Furuie
    • G02F11339
    • G02F1/1341
    • In a liquid crystal display panel, the shrinkage of an end-scaling material for sticking a pair of substrates together is prevented or relaxed to restrain peeling of the end-sealing material from the substrates, thereby preventing any leakage of a liquid crystal and penetration of contaminants. A liquid crystal display device is assembled by bonding together a pair of substrates, which are opposed to each other across a predetermined gap and at least one of which has an electrode group formed over a surface opposed to the other substrate, with a sealing material along their peripheries excluding a liquid crystal filling port, and then sealing the liquid crystal filling port with an end-sealing material after the filling of the liquid crystal and hermetically sealing the liquid crystal in the gap between both substrates. In the liquid crystal display device, a resin which constitutes the end-sealing material contains particulates of average particle size of 0.1 &mgr;m to 3.5 &mgr;m by at least 1 volume % to 30 volume %, preferably, 1 volume % to 10 volume %.
    • 在液晶显示面板中,防止或松弛用于将一对基板粘贴在一起的端部缩放材料的收缩,从而抑制端部密封材料从基板的剥离,从而防止液晶的任何泄漏和渗透 污染物 液晶显示装置通过将预定间隙彼此相对的一对基板结合在一起而组装,并且其中至少一个具有在与另一个基板相对的表面上形成的电极组,沿着 其外围不包括液晶填充口,然后在液晶填充之后用端部密封材料密封液晶填充口,并将液晶气密地密封在两个基板之间的间隙中。 在液晶显示装置中,构成端密封材料的树脂含有平均粒径0.1μm〜3.5μm的微粒,至少1体积%〜30体积%,优选1体积%〜10体积%。
    • 5. 发明申请
    • Organic electroluminescent display device
    • 有机电致发光显示装置
    • US20070195043A1
    • 2007-08-23
    • US11704933
    • 2007-02-12
    • Masamitsu FuruieNaoki Tokuda
    • Masamitsu FuruieNaoki Tokuda
    • G09G3/36
    • H01L27/3279H01L27/3211
    • The present invention narrows a picture frame size by deciding line widths of respective power source bus lines which supply electricity to organic EL elements of respective colors corresponding to current quantities of the respective power source bus lines. Red pixels, green pixels and blue pixels which are arranged in a matrix array and, and power source lines which are connected to the respective pixels are formed in a display region, and power source bus lines which supply electricity to these power source lines are formed in a picture frame region. The power source bus line for red of a large current quantity is arranged on a side close to the display region and the power source bus line for green of a small current quantity is arranged on an outer side.
    • 本发明通过对与各个电源总线的当前数量相对应的各颜色的有机EL元件供电来确定各个电源总线的线宽来缩小图像帧尺寸。 形成排列成矩阵阵列的红色像素,绿色像素和蓝色像素以及连接到各个像素的电源线形成在显示区域中,并且形成向这些电源线供电的电源总线 在相框区域。 用于红色大电流量的电源总线布置在靠近显示区域的一侧,并且用于小电流量的绿色电源总线布置在外侧。
    • 7. 发明授权
    • Display panel
    • 显示面板
    • US07474046B2
    • 2009-01-06
    • US11287402
    • 2005-11-28
    • Masamitsu FuruieHironori ToyodaMasaaki Okunaka
    • Masamitsu FuruieHironori ToyodaMasaaki Okunaka
    • H01L51/50H05B33/00
    • G09G3/3233G09G2320/0233H01L27/326H01L2251/558
    • The present invention provides a display device which can suppress mura or irregularities of brightness of a display. To be more specific, in a display device including the plurality of pixels which are arranged in a matrix array and are respectively provided with light emitting layers, a power source is supplied to the respective light emitting layers of the respective pixels which are arranged in parallel in one direction among the respective pixels through a common power source signal line, wherein the respective pixels allow the light emitting layers thereof to have different thicknesses from each other in a state that the thickness of the light emitting layer at an upstream side of a flow of an electric current along the power source signal line is larger than the thickness of the light emitting layer at a downstream side of the flow of the electric current along the power source signal line.
    • 本发明提供一种显示装置,其可以抑制显示器的色调或亮度不均匀。 更具体地说,在包括排列成矩阵阵列并且分别设置有发光层的多个像素的显示装置中,电源被提供给并列布置的各个像素的各个发光层 通过公共电源信号线在各个像素之间的一个方向上,其中各个像素允许其发光层在流动的上游侧的发光层的厚度彼此具有不同的厚度 沿着电源信号线的电流的电流大于沿着电源信号线的电流的下游侧的发光层的厚度。
    • 8. 发明申请
    • Display device
    • US20060050029A1
    • 2006-03-09
    • US11206781
    • 2005-08-19
    • Hironori ToyodaShinichi KatoMasamitsu FuruieMasaaki OkunakaNaoki Tokuda
    • Hironori ToyodaShinichi KatoMasamitsu FuruieMasaaki OkunakaNaoki Tokuda
    • G09G3/30
    • G09G3/22G09G3/2014G09G3/3258G09G2300/0819G09G2300/0852G09G2310/0221G09G2310/0259G09G2310/066G09G2320/046G09G2320/0626G09G2360/16
    • The present invention provides a display device which can obviates the possibility of occurrence of sticking as a whole of a display area even when the brightness is relatively changed on a display area. In a display device, a plurality of pixels are arranged in the inside of a display area and the respective pixels include first electrodes to which signals are independently inputted and a common second electrode to which a signal which becomes the reference with respect to the signals is inputted. The display device further includes means which divides the display area into at least a first area and a second area by electrically separating the common second electrode and obtains first information for specifying average brightness of the first area in response to an electric current from the second electrode in the first area, means which generates a referential voltage being emphasized peak corresponding to a value of the information for specifying average brightness and applies the referential voltage being emphasized peak to the second electrode in the first area, means which obtains second information for specifying average brightness of the second area in response to an electric current from the second electrode in the second area, means which compares the information for specifying average brightness and the information for specifying average brightness in the first area, means which, based on the comparison, selects the referential voltage being emphasized peak when the value of the second information for specifying average brightness is smaller than the value of the first information for specifying average brightness, and selects an auxiliary referential voltage which is larger than the referential voltage being emphasized peak when the value of the second information for specifying average brightness is larger than the value of the first information for specifying average brightness, and means which applies the selected voltage to the second electrode in the second area.
    • 9. 发明申请
    • Display device and apparatus
    • 显示装置和装置
    • US20060002064A1
    • 2006-01-05
    • US11169799
    • 2005-06-30
    • Hiroshi OookaMasamitsu FuruieHirotsugu Sakamoto
    • Hiroshi OookaMasamitsu FuruieHirotsugu Sakamoto
    • G06F1/16
    • G06F1/1601H04N5/64
    • The present invention provides a display device which can realize the positioning with high accuracy in mounting a display panel to a casing. Further, the present invention provides a display device which can simplify the mounting structure of a display panel and can mount and fix the display panel to a casing easily and with high accuracy. A pair of mounting holes are formed in both ends of a peripheral portion along one side of an OLED panel which performs an image display. By allowing fixing members to pass through the pair of mounting holes, the OLED panel per se becomes the mounting reference and is positioned with respect to the casing with high accuracy. Further, by forming notched portions on another side of the OLED panel which faces one side of the OLED panel in an opposed manner, the OLED panel is supported on a plurality of points and hence, the OLED panel is positioned and fixed with high accuracy.
    • 本发明提供了一种能够以高精度实现将显示面板安装到壳体上的显示装置。 此外,本发明提供一种显示装置,其能够简化显示面板的安装结构,并且可以容易且高精度地将显示面板安装并固定到壳体。 沿着执行图像显示的OLED面板的一侧的周边部分的两端形成一对安装孔。 通过允许固定构件穿过一对安装孔,OLED面板本身就成为安装基准,并且相对于壳体以高精度定位。 此外,通过在相对的方式在OLED面板的一侧的OLED面板的另一侧上形成切口部分,OLED面板被支撑在多个点上,因此OLED面板被高精度地定位和固定。