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    • 3. 发明申请
    • LIQUID CRYSTAL DISPLAY AND A DEFECT CORRECTING METHOD FOR THE SAME
    • 液晶显示器及其相关的缺陷校正方法
    • US20110122354A1
    • 2011-05-26
    • US13018815
    • 2011-02-01
    • Tomoki NODAToshihide TSUBATAMasanori TAKEUCHIKenji ENDA
    • Tomoki NODAToshihide TSUBATAMasanori TAKEUCHIKenji ENDA
    • G02F1/1343
    • G02F1/1309G02F1/134309G02F1/1368G02F2001/136263G02F2201/508
    • A liquid crystal display uses a pixel division method by which the size of a defect can be reduced much more than conventionally possible, and a defect correcting method for the liquid crystal display. The liquid crystal display is provided with an active matrix array substrate including a plurality of gate lines and a plurality of source lines arranged on a transparent substrate so as to intersect with each other, and a plurality of pixel electrodes arranged in a matrix, each pixel electrode including an assembly of a plurality of sub-pixel electrodes, separate TFTs respectively connected to the sub-pixel electrodes in the vicinity of an intersection portion of the gate line and the source line, the TFTs being driven by the common gate line and the common source line, and at least one opening portion being formed in a lower-layer side line placed in a lower layer at the intersection portion.
    • 液晶显示器使用像现有技术那样可以减少缺陷尺寸的像素分割方法和用于液晶显示的缺陷校正方法。 该液晶显示装置具备有源矩阵阵列基板,该有源矩阵阵列基板包括多个栅极线和布置在透明基板上以彼此交叉的多个源极线以及以矩阵形式排列的多个像素电极,每个像素 包括多个子像素电极的组件的电极,分别连接到栅极线和源极线的交叉部分附近的子像素电极的TFT,由公共栅极线驱动的TFT和 公共源极线,并且至少一个开口部分形成在位于交叉部分处的下层中的下层侧线中。
    • 4. 发明授权
    • Liquid crystal display and a defect correcting method for the same
    • 液晶显示器及其缺陷校正方法
    • US07777825B2
    • 2010-08-17
    • US11721538
    • 2005-12-13
    • Tomoki NodaToshihide TsubataMasanori TakeuchiKenji Enda
    • Tomoki NodaToshihide TsubataMasanori TakeuchiKenji Enda
    • G02F1/1333
    • G02F1/1309G02F1/134309G02F1/1368G02F2001/136263G02F2201/508
    • A liquid crystal display uses a pixel division method by which the size of a defect can be reduced much more than conventionally possible, and a defect correcting method for the liquid crystal display. The liquid crystal display is provided with an active matrix array substrate including a plurality of gate lines and a plurality of source lines arranged on a transparent substrate so as to intersect with each other, and a plurality of pixel electrodes arranged in a matrix, each pixel electrode including an assembly of a plurality of sub-pixel electrodes, separate TFTs respectively connected to the sub-pixel electrodes in the vicinity of an intersection portion of the gate line and the source line, the TFTs being driven by the common gate line and the common source line, and at least one opening portion being formed in a lower-layer side line placed in a lower layer at the intersection portion.
    • 液晶显示器使用像现有技术那样可以减少缺陷尺寸的像素分割方法和用于液晶显示的缺陷校正方法。 该液晶显示装置具备有源矩阵阵列基板,该有源矩阵阵列基板包括多个栅极线和布置在透明基板上以彼此交叉的多个源极线以及以矩阵形式布置的多个像素电极,每个像素 包括多个子像素电极的组件的电极,分别连接到栅极线和源极线的交叉部分附近的子像素电极的TFT,由公共栅极线驱动的TFT和 公共源极线,并且至少一个开口部分形成在位于交叉部分处的下层中的下层侧线中。
    • 9. 发明授权
    • Active matrix substrate, liquid crystal panel, liquid crystal display unit, liquid crystal display device, television receiver, active matrix substrate manufacturing method, and liquid crystal panel manufacturing method
    • 有源矩阵基板,液晶面板,液晶显示单元,液晶显示装置,电视接收机,有源矩阵基板制造方法和液晶面板制造方法
    • US08319906B2
    • 2012-11-27
    • US12525764
    • 2007-10-29
    • Kenji EndaIkumi ItsumiToshihide TsubataMasanori Takeuchi
    • Kenji EndaIkumi ItsumiToshihide TsubataMasanori Takeuchi
    • G02F1/1362
    • G02F1/13624G02F1/136286G02F2001/136263G02F2201/508
    • A scanning signal line (16) includes an opening (29) leading from the outside of a pixel region through below a data signal line (15) into the pixel region, and first and second scanning electrode portions (16a/16b) or two side portions of the opening confronting in a column direction through that opening. The end portion of the first scanning electrode portion (16a) in the pixel region is a first end portion (EP1), and the end portion of the second scanning electrode portion (16b) in the pixel region is a second end portion (EP2). A first transistor has a source electrode (9a) and a drain electrode (8a) individually overlapping the first electrode portion (16a) but not the first end portion (EP1) in the pixel region. A second transistor has a source electrode (9b) and a drain electrode (8b) individually overlapping the second electrode portion (16b) but not the second end portion EP2) in the pixel region. According to the aforementioned constitution, it is possible to realize a pixel split type active matrix substrate capable of easily correcting the short-circuits of the data signal line (15) and the scanning signal line (16).
    • 扫描信号线(16)包括从像素区域的外部通过数据信号线(15)下方进入像素区域的开口(29),以及第一和第二扫描电极部分(16a / 16b)或两侧 该开口的一部分在列方向上面向该开口。 像素区域中的第一扫描电极部分(16a)的端部是第一端部(EP1),并且像素区域中的第二扫描电极部分(16b)的端部是第二端部(EP2) 。 第一晶体管具有在像素区域中分别与第一电极部分(16a)而不是第一端部分(EP1)重叠的源电极(9a)和漏电极(8a)。 第二晶体管具有在像素区域中分别与第二电极部分(16b)而不是第二端部分EP2重叠的源电极(9b)和漏电极(8b)。 根据上述结构,能够实现能够容易地校正数据信号线(15)和扫描信号线(16)的短路的像素分割型有源矩阵基板。