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    • 12. 发明授权
    • Dual-gate driven lateral pixel arrangement structure and display panel
    • 双栅驱动横向像素排列结构和显示面板
    • US09217905B2
    • 2015-12-22
    • US14088287
    • 2013-11-22
    • Shanghai AVIC Optoelectronics Co., Ltd.
    • Zhiqiang XiaChen ChenZhongshou HuangSisi Zhou
    • G09G3/36G02F1/1362
    • G02F1/136286G02F1/13624G09G3/3648G09G2300/0426
    • A dual-gate-driven lateral pixel arrangement structure includes two horizontally adjacent primary pixel regions having each three vertically adjacent secondary pixel regions forming a grid of six secondary pixel regions, and six thin-film transistors disposed in each of the six secondary pixel areas. The structure also includes two gate lines and three data lines crossing each other and electrically isolated from each other. Each data line is connected to the source of two thin-film transistors having the gate connected to a different gate line. The two gate lines are interposed between the three secondary pixel regions or arranged along a side or opposite sides of the primary pixel regions in a first direction. The three data lines are arranged between the primary pixel regions and along a side or opposite sides of the primary pixel regions in a second direction different from the first direction.
    • 双栅极驱动横向像素排列结构包括两个水平相邻的原始像素区域,其中每个三个垂直相邻的次级像素区域形成六个二级像素区域的栅格,以及设置在六个二级像素区域中的每一个中的六个薄膜晶体管。 该结构还包括彼此交叉并且彼此电隔离的两条栅极线和三条数据线。 每个数据线连接到具有连接到不同栅极线的栅极的两个薄膜晶体管的源极。 两个栅极线插入在三个次级像素区域之间或者沿着第一方向沿着主像素区域的侧面或相对侧布置。 三条数据线沿着不同于第一方向的第二方向布置在主像素区域之间并且沿主像素区域的侧面或相对侧布置。
    • 14. 发明申请
    • GATE DRIVING CIRCUIT, TFT ARRAY SUBSTRATE, AND DISPLAY DEVICE
    • 门驱动电路,TFT阵列基板和显示装置
    • US20150213762A1
    • 2015-07-30
    • US14302383
    • 2014-06-11
    • Shanghai AVIC Optoelectronics Co., Ltd.Tianma Micro-Electronics Co., Ltd.
    • Zhiqiang XIAXin XuLina SunDongliang DunHuijun Jin
    • G09G3/32G09G3/36
    • G09G3/3266G09G3/3674G09G2310/0281G09G2310/0286
    • A gate driving circuit is disclosed. The gate driving circuit includes m stages of shift registers, where each stage of shift register includes a first reset terminal, a first input terminal, and an output terminal. A first input terminal of the first stage of shift register is configured to receive an initial signal, and a first reset terminal of the first stage of shift register is configured to receive a reset signal. In addition, first reset terminals of the second to i-th stages of shift registers are configured to receive first signals, where a first reset terminal of each stage of shift register is electrically connected to an output terminal of the previous stage of shift register to receive an output signal from the previous stage of shift register, such that the output signal from the previous stage of shift register causes the next stage of shift register to reset.
    • 公开了一种栅极驱动电路。 栅极驱动电路包括m级的移位寄存器,其中移位寄存器的每一级包括第一复位端子,第一输入端子和输出端子。 第一级移位寄存器的第一输入端被配置为接收初始信号,并且第一级移位寄存器的第一复位端被配置为接收复位信号。 此外,第二至第三级移位寄存器的第一复位端被配置为接收第一信号,其中移位寄存器的每一级的第一复位端电连接到前一级移位寄存器的输出端 接收来自移位寄存器的前一级的输出信号,使得来自移位寄存器的前一级的输出信号使移位寄存器的下一级复位。
    • 15. 发明申请
    • TOUCH PANEL AND TOUCH DETECTING METHOD THEREFOR
    • 触摸面板和触摸检测方法
    • US20150212616A1
    • 2015-07-30
    • US14272430
    • 2014-05-07
    • Shanghai AVIC Optoelectronics Co., Ltd.Tianma Micro-Electronics Co., Ltd.
    • Xiangchun WANGXupeng WANGJie CHENG
    • G06F3/044
    • G06F3/044G06F3/0416
    • The present invention discloses a touch panel having a multitude of driving and sensing electrodes and a touch detecting method therefor. The method includes: driving each driving electrode, and detecting a change in coupling capacitance between each driving electrode and each sensing electrode to determine at least one sensing electrode corresponding to a touch position; multiplexing each one of the at least one sensing electrode corresponding to the touch position to be a generated driving electrode, and multiplexing each driving electrode to be a generated sensing electrode; driving the generated driving electrode, and detecting a change in coupling capacitance between the generated driving electrode and each generated sensing electrode to determine at least one driving electrode corresponding to the touch position; driving each driving electrode corresponding to the touch position, and detecting a change in coupling capacitance between each driving electrode and each sensing electrode corresponding to the touch position to determine the touch position.
    • 本发明公开了一种具有多个驱动和感测电极的触摸面板及其触摸检测方法。 该方法包括:驱动每个驱动电极,并检测每个驱动电极和每个感测电极之间的耦合电容的变化,以确定与触摸位置对应的至少一个感测电极; 将与触摸位置对应的至少一个感测电极中的每一个复用为产生的驱动电极,并将每个驱动电极复用为产生的感测电极; 驱动所产生的驱动电极,并检测所产生的驱动电极和每个产生的感测电极之间的耦合电容的变化,以确定与触摸位置对应的至少一个驱动电极; 驱动对应于触摸位置的每个驱动电极,以及检测每个驱动电极与对应于触摸位置的每个感测电极之间的耦合电容的变化,以确定触摸位置。