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    • 5. 发明申请
    • OPTICAL TOUCH DEVICE AND TOUCH DISPLAY DEVICE HAVING THE SAME
    • 光触摸装置和触摸显示装置
    • WO2016180027A1
    • 2016-11-17
    • PCT/CN2015/099230
    • 2015-12-28
    • BOE TECHNOLOGY GROUP CO., LTD.
    • ZOU, XiangxiangYANG, ZezhouZHANG, ChunfangWU, Zhongbao
    • G06F3/042
    • G06F3/042G06F3/0421G06F2203/04109
    • An optical touch device is disclosed. The device comprises: a light transmission layer (1) comprising a first total internal reflection (TIR) surface (11) and a second TIR surface (12) facing the first TIR surface (11), a first side surface for connecting the first TIR surface (11) and the second TIR surface (12) on a first side, and a second side surface for connecting the first TIR surface (11) and the second TIR surface (12) on a second side opposite to the first side; a light source (3) on a side of the first TIR surface (11) distal to the second TIR surface (12) for emitting a light beam, the light source (3) is proximal to the first side; and a detector (4) on the side of the first TIR surface (11) distal to the second TIR surface (12), for detecting the light beam passed through the light transmission layer (1) and transmitted into the detector (4), the detector (4) is proximal to the second side. A first side angle between the first side surface and the first TIR surface (11) is an acute angle. A second side angle between the second side surface and the first TIR surface (11) is an acute angle.
    • 公开了一种光学触摸装置。 该装置包括:包括第一全内反射(TIR)表面(11)和面向第一TIR表面(11)的第二TIR表面(12)的光透射层(1),用于连接第一TIR 表面(11)和第二TIR表面(12),以及用于在与第一侧相对的第二侧连接第一TIR表面(11)和第二TIR表面(12)的第二侧表面; 在所述第一TIR表面(11)的远离所述第二TIR表面(12)的一侧的光源(3),用于发射光束,所述光源(3)靠近所述第一侧; 以及在所述第一TIR表面(11)的远离所述第二TIR表面(12)的一侧的检测器(4),用于检测通过所述光透射层(1)并传输到所述检测器(4)中的光束, 检测器(4)靠近第二侧。 第一侧表面和第一TIR表面(11)之间的第一侧角是锐角。 第二侧表面和第一TIR表面(11)之间的第二侧角是锐角。
    • 6. 发明公开
    • GATE DRIVING CIRCUIT AND DRIVING METHOD THEREFOR AND DISPLAY DEVICE
    • 联合国安哥拉经济和发展会议
    • EP3125250A1
    • 2017-02-01
    • EP14863055.1
    • 2014-07-31
    • BOE Technology Group Co., Ltd.
    • ZHANG, YuanboZHAO, JiayangHAN, SeungwooZOU, Xiangxiang
    • G11C19/00G09G3/20G06F3/041
    • G06F3/0416G06F3/041G06F3/0412G06F3/044G06F2203/04104G09G3/20G09G3/3677G09G2310/0286G09G2310/065G11C19/28
    • The present invention provides a gate driving circuit and a driving method thereof, a display device, which relates to the field of display technology. The gate driving circuit may comprise a plurality of mutually cascaded shift register units and a pre-charging unit, the gate row drive scanning and touch control scanning of the plurality of mutually cascaded shift register units are performed alternately. By additionally arranging a pre-charging unit connected with the corresponding first stage of shift register unit when the gate row drive scanning is performed again after the touch control scanning is accomplished, the first stage of shift register unit can be pre-charged during the touch control scanning. In this way, the electric leakage phenomenon of the pull-up control node (PU point) of the corresponding first stage of shift register unit when the gate row drive scanning is performed again after the touch control scanning is accomplished due to a relatively long touch control scanning time interval between outputs of two rows of shift register units is avoided, thereby avoiding the defect of insufficient charging rate of row of pixels while ensuring touch control scanning of high report rate.
    • 本发明提供一种与显示技术领域相关的门驱动电路及其驱动方法,显示装置。 栅极驱动电路可以包括多个相互级联的移位寄存器单元和预充电单元,交替地执行多个相互级联的移位寄存器单元的栅极行驱动扫描和触摸控制扫描。 通过在完成触摸控制扫描之后再次执行栅极行驱动扫描时,另外布置与相应的第一级移位寄存器单元连接的预充电单元,可以在触摸期间对第一级移位寄存器单元进行预充电 控制扫描。 以这种方式,当触摸控制扫描完成后,由于相对长的触摸而完成了栅极行驱动扫描时,对应的第一级移位寄存器单元的上拉控制节点(PU点)的漏电现象 避免了两排移位寄存器单元的输出之间的控制扫描时间间隔,从而避免了像素行的充电率不足的缺陷,同时确保了高报告率的触摸控制扫描。