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    • 15. 发明授权
    • Resistance type touch display panel
    • 电阻式触摸显示面板
    • US08334848B2
    • 2012-12-18
    • US12129709
    • 2008-05-30
    • Mei-Sheng MaHsin-Hung LeeYuan-Chun WuKuo-Hsing Cheng
    • Mei-Sheng MaHsin-Hung LeeYuan-Chun WuKuo-Hsing Cheng
    • G06F3/045
    • G06F3/045
    • A resistance type touch display panel includes a first substrate and a second substrate disposed above the first substrate. The first substrate includes many scan lines and data lines defining many pixel regions on the first substrate, many pixel units and touch units. Each pixel unit is located in one of the pixel regions and electrically connected with one of the scan lines and data lines respectively. Each touch unit is electrically connected with one of the scan lines and data lines and distributed in at least two pixel regions. The second substrate includes many spacers, many touch protrusions and a common electrode covering the spacers and the touch protrusions. Each touch protrusion is located above one of the touch units and a gap is formed between the common electrode disposed on each touch protrusion and the touch unit.
    • 电阻式触摸显示面板包括设置在第一基板上方的第一基板和第二基板。 第一衬底包括许多扫描线和数据线,其限定第一衬底上的许多像素区域,许多像素单元和触摸单元。 每个像素单元位于一个像素区域中,并且分别与扫描线和数据线之一电连接。 每个触摸单元与扫描线和数据线之一电连接并分布在至少两个像素区域中。 第二基板包括许多隔离物,许多接触突起和覆盖间隔物和接触突起的公共电极。 每个触摸突起位于触摸单元之一上方,并且在设置在每个触摸突起的公共电极和触摸单元之间形成间隙。
    • 17. 发明授权
    • Touch panel
    • 触控面板
    • US08269118B2
    • 2012-09-18
    • US12625474
    • 2009-11-24
    • Jing-Tin KuoPei-Yu ChenYu-Chuan LinWei-Jen ChangKuo-Hsing Cheng
    • Jing-Tin KuoPei-Yu ChenYu-Chuan LinWei-Jen ChangKuo-Hsing Cheng
    • G06F3/044
    • G06F3/044
    • A touch panel includes a substrate, a touch-sensing circuit, a plurality of sensing signal transmission wires, a capacitance compensation conductor, and a sensing signal readout circuit. The touch-sensing circuit is disposed on the substrate. The sensing signal transmission wires are disposed on the substrate and electrically connected to the touch-sensing circuit. The capacitance compensation conductor is disposed over the sensing signal transmission wires. Capacitance of each sensing signal transmission wire is C1, and coupling capacitance between each sensing signal transmission wire and the capacitance compensation conductor is C2. The sensing signal readout circuit is electrically connected to the sensing signal transmission wires. In each sensing signal transmission wire, variation of summation of C1 and C2 is less than a readout resolution of the sensing signal readout circuit. Another touch panel using an electrostatic discharge conductor to adjust varied capacitances of sensing signal transmission wires is also provided.
    • 触摸面板包括基板,触摸感测电路,多个感测信号传输线,电容补偿导体和感测信号读出电路。 触摸感测电路设置在基板上。 感测信号传输线设置在基板上并电连接到触摸感测电路。 电容补偿导体设置在感测信号传输线上。 每个感应信号传输线的电容为C1,每个感应信号传输线与电容补偿导体之间的耦合电容为C2。 感测信号读出电路电连接到感测信号传输线。 在每个感测信号传输线中,C1和C2的求和的变化小于感测信号读出电路的读出分辨率。 还提供了使用静电放电导体来调节感测信号传输线的不同电容的另一触摸面板。
    • 18. 发明授权
    • Shift registers
    • 移位寄存器
    • US07848477B2
    • 2010-12-07
    • US12407167
    • 2009-03-19
    • Kuo-Hsing ChengWai-Pan WuKuo-Hsien LeeChun-Huai Li
    • Kuo-Hsing ChengWai-Pan WuKuo-Hsien LeeChun-Huai Li
    • G11C19/00
    • G11C19/28G09G2300/0861G09G2310/0286G09G2320/043
    • A shift register including shift register units substantially cascaded is disclosed. Each shift register unit is controlled by first and second clock signals opposite to each other for generating an output signal. Each shift register unit includes first and second switch devices and first and second devices. The first switch device provides the output signal through an output node. The first driving device drives the first switch device according to a first input signal to activate the output signal. The second driving device provides a first voltage signal, according to the first clock signal, to drive the first switch device and de-activate the output signal. When the first switch device de-activates the output signal, the second switch device provides the second voltage signal to the output node according to the second clock signal. A level of the first voltage signal is lower than a level of the second voltage signal.
    • 公开了一种包括基本级联的移位寄存器单元的移位寄存器。 每个移位寄存器单元由彼此相对的第一和第二时钟信号控制,以产生输出信号。 每个移位寄存器单元包括第一和第二开关器件以及第一和第二器件。 第一开关装置通过输出节点提供输出信号。 第一驱动装置根据第一输入信号驱动第一开关装置以激活输出信号。 第二驱动装置根据第一时钟信号提供第一电压信号以驱动第一开关装置并且去激活输出信号。 当第一开关装置断开输出信号时,第二开关装置根据第二时钟信号向输出节点提供第二电压信号。 第一电压信号的电平低于第二电压信号的电平。
    • 19. 发明授权
    • Driving method of pixel array
    • 像素阵列的驱动方法
    • US07688300B2
    • 2010-03-30
    • US10709715
    • 2004-05-24
    • Kuo-Hsing Cheng
    • Kuo-Hsing Cheng
    • G09G3/36
    • G09G3/3614G09G3/3648G09G2310/0218
    • A driving method of a pixel array is provided. The driving method is suitable for a pixel array comprising at least one pixel set in each pixel array, wherein at least one pixel set comprises a plurality of pixels. In the driving method, a voltage having substantially same phase is used to drive the pixel electrodes of the pixels in the same pixel set. In addition, voltages with phases substantially opposite to each other are used to drive the pixel electrodes of the pixels in two adjacent pixel sets. Furthermore, a single gate line is used to drive two adjacent pixels in two different pixel sets respectively. In addition, a single gate line is used to drive a first pixel in one of the pixel set and another pixel in an adjacent column of the first pixel, wherein a phase of the voltage of a pixel electrode of the first pixel and a phase of a voltage of a pixel electrode of the other pixel are substantially different.
    • 提供了像素阵列的驱动方法。 驱动方法适用于包括每个像素阵列中的至少一个像素集的像素阵列,其中至少一个像素组包括多个像素。 在驱动方法中,使用具有大致相同相位的电压来驱动同一像素组中的像素的像素电极。 此外,使用相位基本相反的电压来驱动两个相邻像素组中的像素的像素电极。 此外,使用单个栅极线分别驱动两个不同像素集合中的两个相邻像素。 此外,使用单个栅极线来驱动像素组中的一个像素和第一像素的相邻列中的另一像素中的第一像素,其中第一像素的像素电极的电压的相位和 另一像素的像素电极的电压基本上不同。