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    • 1. 发明授权
    • Method for detecting a touched position on a touch device
    • 用于检测触摸装置上的触摸位置的方法
    • US08487906B2
    • 2013-07-16
    • US12813095
    • 2010-06-10
    • Po-Yang ChenPo-Sheng Shih
    • Po-Yang ChenPo-Sheng Shih
    • G06F3/045
    • G06F3/045G06F3/0418
    • A method for detecting a touched position on a touch device including a first conductive layer and sensing electrodes disposed on one side of the first conductive layer and separated from each other is disclosed. The method includes providing a first voltage to the first conductive layer; receiving a touch signal in response to a touched position of the touch device to change the first voltage at an area of the first conductive layer; measuring the sensing electrodes detecting the variation of the first voltage to obtain voltage signals; obtaining a first sensing position according to the voltage signals and a position computing mode; obtaining a second sensing position according to the first sensing position and a correction mode. The area corresponds to the touched position, the second sensing position is equal to the touched position, and the correction mode has a first curve relation.
    • 公开了一种用于检测包括第一导电层和设置在第一导电层的一侧并且彼此分离的感测电极的触摸装置上的触摸位置的方法。 该方法包括:向第一导电层提供第一电压; 响应于所述触摸装置的触摸位置接收触摸信号以改变所述第一导电层的区域处的所述第一电压; 测量感测电极,检测第一电压的变化以获得电压信号; 根据电压信号和位置计算模式获得第一感测位置; 根据第一感测位置和校正模式获得第二感测位置。 该区域对应于触摸位置,第二感测位置等于触摸位置,校正模式具有第一曲线关系。
    • 2. 发明授权
    • Touch panel and multi-touch detecting method thereof
    • 触摸面板及其多点触摸检测方法
    • US08400421B2
    • 2013-03-19
    • US12825347
    • 2010-06-29
    • Po-Yang ChenPo-Sheng ShihChih-Han ChaoChien-Yung Cheng
    • Po-Yang ChenPo-Sheng ShihChih-Han ChaoChien-Yung Cheng
    • G09G3/30
    • G06F3/045G06F3/0416G06F3/04883G06F2203/04808
    • A multi-touch detecting method is adapted for detecting locations of touched points on a touch panel including first and second conductive films, and includes following steps. First measuring points of the first conductive film distributed along X-axis of a Cartesian plane are scanned, and x-components are determined accordingly. Second measuring points of the second conductive film distributed along Y-axis of the Cartesian plane are scanned, and y-components are determined accordingly. A first voltage is applied to the first conductive film, and A second voltage is applied to at least one of the second measuring points with the location on the Y-axis adjacent to or overlapping one of the y-components. Voltages at the first measuring points with the locations on the X-axis adjacent to or overlapping the x-components are measured sequentially and one of the y-components and one of the x-components are outputted.
    • 多点触摸检测方法适用于检测包括第一和第二导电膜的触摸面板上的触摸点的位置,并且包括以下步骤。 扫描沿笛卡尔平面的X轴分布的第一导电膜的第一测量点,并相应地确定x分量。 扫描沿笛卡尔平面的Y轴分布的第二导电膜的第二测量点,并相应地确定y分量。 将第一电压施加到第一导电膜,并且将第二电压施加到至少一个第二测量点,其中Y轴上的位置与y分量之一相邻或重叠。 依次测量与X分量相邻或与X分量重叠的X轴上的位置的第一测量点处的电压,并输出y分量和x分量中的一个。
    • 3. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US08228451B2
    • 2012-07-24
    • US13353297
    • 2012-01-18
    • Po-Yang ChenPo-Sheng Shih
    • Po-Yang ChenPo-Sheng Shih
    • G02F1/1343G06F3/038
    • G02F1/13624G09G3/3648G09G2300/0443G09G2300/0447G09G2300/0876G09G2320/028
    • A liquid crystal display is provided. A pixel of the liquid crystal display includes a first pixel capacitor, a second pixel capacitor, a first transistor, and a second transistor. A first terminal and a second terminal of the first pixel capacitor are respectively coupled to the first transistor and a common voltage. A first terminal and a second terminal of the second pixel capacitor are respectively coupled to the second transistor and the common voltage. A voltage between the first and the second terminals of the first capacitor is differentiated from a voltage between the first and the second terminals of the second capacitor by modulating the common voltage. A coupling voltage of the first pixel capacitor is differentiated from a coupling voltage of the second pixel capacitor by modulating the common voltage. Thereby, the phenomenon of color wash-out is reduced.
    • 提供液晶显示器。 液晶显示器的像素包括第一像素电容器,第二像素电容器,第一晶体管和第二晶体管。 第一像素电容器的第一端子和第二端子分别耦合到第一晶体管和公共电压。 第二像素电容器的第一端子和第二端子分别耦合到第二晶体管和公共电压。 通过调制公共电压,第一电容器的第一和第二端子之间的电压与第二电容器的第一和第二端子之间的电压不同。 通过调制公共电压,第一像素电容器的耦合电压与第二像素电容器的耦合电压不同。 因此,减少了彩色洗出现象。
    • 6. 发明申请
    • METHOD FOR DRIVING PIXELS OF A DISPLAY PANEL
    • 驱动显示面板像素的方法
    • US20090102820A1
    • 2009-04-23
    • US12145511
    • 2008-06-25
    • Po-Yang ChenPo-Sheng ShihTsu-Chiang Chang
    • Po-Yang ChenPo-Sheng ShihTsu-Chiang Chang
    • G06F3/038
    • G09G3/3655G09G3/3659G09G2320/0233
    • A method for driving pixels of a display panel is provided. The display panel includes a first gate line coupled to a gate of a first-switch transistor, wherein a source of the first-switch transistor is coupled to a liquid crystal capacitor and a first-storage capacitor. The liquid crystal capacitor includes a pixel electrode and a common electrode. A terminal of the first-storage capacitor is coupled to a second gate line. First, a first modulation signal is provided to the common electrode. Next, the first-switch transistor is turned on by the first gate line. Next, a second modulation signal is provided to the second gate line after the first-switch transistor is turned on. Wherein, the second modulation signal enables a second-switch transistor coupled to the second gate line to operate in the cut-off region. And the first and second modulation signals are in phase.
    • 提供了一种用于驱动显示面板的像素的方法。 显示面板包括耦合到第一开关晶体管的栅极的第一栅极线,其中第一开关晶体管的源极耦合到液晶电容器和第一存储电容器。 液晶电容器包括像素电极和公共电极。 第一存储电容器的端子耦合到第二栅极线。 首先,向公共电极提供第一调制信号。 接下来,第一开关晶体管由第一栅极线导通。 接下来,在第一开关晶体管导通之后,向第二栅极线提供第二调制信号。 其中,第二调制信号使得耦合到第二栅极线的第二开关晶体管能够在截止区域中操作。 第一和第二调制信号同相。
    • 10. 发明授权
    • Touch panel and differential detection method for same
    • 触摸面板和差分检测方法相同
    • US08766947B2
    • 2014-07-01
    • US13044560
    • 2011-03-10
    • Chien-Yung ChengPo-Sheng ShihPo-Yang Chen
    • Chien-Yung ChengPo-Sheng ShihPo-Yang Chen
    • G06F3/045
    • G06F3/044
    • A touch panel and a differential detection method thereof are disclosed. A controller provides a driving signal to the i-th scan electrode. During providing the driving signal to the i-th scan electrode, the controller senses the feature difference value between two neighboring sensing electrodes within the plural sensing electrodes, and senses the feature difference value ΔCi between the k-th sensing electrode within the sensing electrodes and a reference feature value, in which the feature difference values between the j-th sensing electrode and the (j+1)-th sensing electrode is represented by ΔC(i,j). The controller set the feature value of a base sensing point within a plurality of sensing points of the touch panel as a base feature value, and use the base feature value, the feature difference values ΔCi and the feature difference values ΔC(i,j) to calculate the feature values of the sensing points.
    • 公开了触摸面板及其差分检测方法。 控制器向第i扫描电极提供驱动信号。 在向第i扫描电极提供驱动信号期间,控制器感测多个感测电极内的两个相邻感测电极之间的特征差值,并且感测感测中的第k个感测电极之间的特征差值Dgr; Ci 电极和参考特征值,其中第j个感测电极和第(j + 1)个感测电极之间的特征差值由&Dgr; C(i,j)表示。 控制器将触摸面板的多个感测点内的基本感测点的特征值设置为基本特征值,并使用基本特征值,特征差值Dgr; Ci和特征差值Dgr; C( i,j)计算感测点的特征值。