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    • 1. 发明授权
    • Design features optimized for tiled flat-panel displays
    • 针对平铺平板显示屏进行了优化的设计功能
    • US06456354B2
    • 2002-09-24
    • US09369465
    • 1999-08-06
    • Raymond G. GreeneDonald P. SeraphimDean W. SkinnerBoris YostKohichi MiwaMichikazu NoguchiShunji Suzuki
    • Raymond G. GreeneDonald P. SeraphimDean W. SkinnerBoris YostKohichi MiwaMichikazu NoguchiShunji Suzuki
    • G02F11339
    • G02F1/13336G02F1/133512
    • The present invention features designs of pixels and designs of control features for seals on AMLCD tiles optimized for tiling AMLCD flat panel displays (FPDs) which have visually imperceptible seams. The FPD structure has an image view plane which is continuous and remote from the pixel apertures or image source plane on the inside of the tiles. The image is formed on the view plane by a distributed ultra low magnification flies-eye optical system (a screen) that is integrated with the tiles, effectively excluding and obscuring an image of the seams. The innovations described herein minimize the defects on the perimeter pixels by effectively damming the waviness of the front of the seal near the perimeter pixels on the tiles. Dark space required for the seal between the interior tile edges and active regions of the pixels is decreased, as is the space allocated for wiring thereby increasing the feasible aperture ratios near the mosaic edges and all apertures. The tile designs make effective use of the area of an entire manufacturing panel.
    • 本发明的特征是设计像素,并设计用于AMLCD瓦片上的密封件的控制特征,其优化用于平铺具有视觉上不可察觉的接缝的AMLCD平板显示器(FPD)。 FPD结构具有连续且远离瓷砖内部的像素孔径或图像源平面的图像视图。 图像通过与瓦片集成的分布式超低倍率飞行眼睛光学系统(屏幕)形成在视平面上,有效地排除和模糊接缝图像。 本文所描述的创新通过有效地阻止靠近瓦片上的周边像素的密封件的前部的波纹来最小化周边像素上的缺陷。 内部瓦片边缘和像素的有源区域之间的密封所需的黑暗空间也减少,分配给布线的空间也减小,从而增加马赛克边缘和所有孔径附近的可行孔径比。 瓦片设计有效地利用整个制造面板的区域。
    • 2. 发明授权
    • Liquid crystal display device and method of fabricating the same
    • 液晶显示装置及其制造方法
    • US07088418B1
    • 2006-08-08
    • US09636783
    • 2000-08-11
    • Hidefumi YamashitaMichikazu NoguchiTaroh HasumiTatsushi Koike
    • Hidefumi YamashitaMichikazu NoguchiTaroh HasumiTatsushi Koike
    • G02F1/1339H04B7/14
    • G02F1/13394
    • The present invention provides a liquid crystal display device having a narrow frame, which is capable of effectively removing a defective display owing to entering of a seal member to a display area. More specifically, the present invention is directed to a liquid crystal display device comprising first and second substrates 1 and 2 disposed at a predetermined gap d1; a liquid crystal sealed in the gap d1; a seal member 4 provided at the gap d1 between the first and second substrates 1 and 2 and outside a display area 3, the seal member 4 being for sealing the liquid crystal; and a wall-like structure 5 provided outside the display area 3 and inside the seal member 4, the wall-like structure 5 being made of a material different from that of the seal member 4 and composed of a plurality of rows.
    • 本发明提供一种具有窄框架的液晶显示装置,其能够有效地消除由于密封构件进入显示区域而导致的不良显示。 更具体地,本发明涉及一种液晶显示装置,包括以预定间隙d1设置的第一和第二基板1和2; 密封在间隙d 1中的液晶; 设置在第一和第二基板1和2之间的间隙d 1处和显示区域3外部的密封构件4,密封构件4用于密封液晶; 以及设置在显示区域3的外侧和密封部件4的内部的壁状结构体5,壁状结构体5由与密封部件4不同的材料构成,并且由多列构成。
    • 4. 发明授权
    • Method of alignment between sheet materials, method of alignment, substrate assembling method and aligning apparatus
    • 片材之间的对准方法,对准方法,基板组装方法和对准装置
    • US06502324B2
    • 2003-01-07
    • US09735038
    • 2000-12-12
    • Michikazu NoguchiTsuneo HeitohEvan George ColganMasaru Suzuki
    • Michikazu NoguchiTsuneo HeitohEvan George ColganMasaru Suzuki
    • G01D2100
    • G02F1/133526G02F2001/133354
    • The present invention provides a method of alignment between sheet materials, a method of alignment, a substrate assembling method, and an aligning apparatus, which are capable of easily and surely performing highly accurate alignment and suppressing a reduction in material yield. After alignment performed based on a band-like light as a reference, alignment is performed based on a joint of a condenser lens portion of a lenticular lens as a reference. More specifically, the deviation of a liquid crystal display cell in a rotational direction is corrected by using a light emitted from a light source and condensed to be band-like at the lenticular lens as a reference. Subsequently, by changing a depth of focus of a microscope, measurement is performed for positions of a black matrix of the liquid crystal display cell and the joint of the condenser lens portion of the lenticular lens. Then, based on the result of the measurement, horizontal alignment is performed between the liquid crystal display cell and the lenticular lens.
    • 本发明提供了能够容易且可靠地进行高精度对准并抑制材料成品率降低的片材之间的对准方法,取向方法,基板组装方法和对准装置。 在作为参考的带状光的基础上,基于双凸透镜的聚光透镜部分的接合作为基准进行对准。 更具体地说,液晶显示单元在旋转方向上的偏离通过使用从光源发出的光并在双凸透镜作为基准冷凝成带状来校正。 随后,通过改变显微镜的焦点深度,对液晶显示单元的黑矩阵和双凸透镜的聚光透镜部分的接头的位置进行测量。 然后,基于测定结果,在液晶显示单元和双凸透镜之间进行水平取向。
    • 8. 发明授权
    • Voltage application driving method
    • 电压施加驱动方式
    • US6005646A
    • 1999-12-21
    • US995443
    • 1997-12-22
    • Hajime NakamuraMichikazu Noguchi
    • Hajime NakamuraMichikazu Noguchi
    • G02F1/133G02F1/139G09G3/36
    • G09G3/3648G02F1/1395G09G2300/0491G09G2310/0245G09G2330/026
    • A voltage application driving method is provided for quickly changing the alignment of a liquid crystal layer in thin film transistor liquid crystal displays (TFT/LCD) to a bend alignment. In this driving method, a potential difference larger than 10 V is continuously or intermittently provided between the signal electrode of the liquid crystal cells, and the counter electrode of the display while maintaining the potential difference between the gate electrode and the signal electrode of the cells larger than 10 V. The on-time over which an intermittent potential difference is provided between the signal electrode and the counter electrode is preferably equal to or longer than the time period for part of the liquid crystal layer to effectively begin a transition to the second-stage splay alignment, and the off-time over which no potential difference is provided between the signal electrode and the counter electrode is equal to or longer than the time period necessary for the liquid crystal region of of the second-stage splay alignment to return to its state before the voltage application.
    • 提供了一种电压施加驱动方法,用于将薄膜晶体管液晶显示器(TFT / LCD)中的液晶层的取向快速改变为弯曲取向。 在该驱动方法中,在液晶单元的信号电极与显示器的对电极之间连续地或间歇地设置大于10V的电位差,同时保持电极的栅电极和信号电极之间的电位差 大于10V。信号电极和对电极之间的间歇电位差的导通时间优选等于或大于液晶层的一部分有效开始向第二电极的转变的时间 - 台阶喷射取向和在信号电极和对电极之间没有提供电位差的关闭时间等于或大于第二级喷射取向的液晶区域返回所需的时间段 在其施加电压之前的状态。