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    • 3. 发明授权
    • Method for determining touch point
    • 确定触点的方法
    • US08624861B2
    • 2014-01-07
    • US13253134
    • 2011-10-05
    • Chun-Wei YangChun-Lung HungJing-Jhih HuangYu-Min Hsu
    • Chun-Wei YangChun-Lung HungJing-Jhih HuangYu-Min Hsu
    • G06F3/041G09G5/00
    • G06F3/0416
    • An exemplary method for determining a touch point includes the following steps of: performing a first operation to determine whether a detected result of a first touch detection point exceeds a first threshold; performing a second operation to determine whether all detected results of multiple second touch detection points are no more than the detection result of the first touch detection point, the second touch detection points neighboring with the first touch detection point; performing a third operation to determine whether a sum of detected results of multiple third touch detection points exceeds a second threshold, the third touch detection points neighboring with the first touch detection point; and determining the first touch detection point as the touch point is being touched if the determine results of the first through third operations are all true.
    • 用于确定触摸点的示例性方法包括以下步骤:执行第一操作以确定第一触摸检测点的检测结果是否超过第一阈值; 执行第二操作以确定多个第二触摸检测点的所有检测结果是否不超过第一触摸检测点的检测结果,与第一触摸检测点相邻的第二触摸检测点; 执行第三操作以确定多个第三触摸检测点的检测结果的总和是否超过第二阈值,所述第三触摸检测点与所述第一触摸检测点相邻; 以及如果所述第一至第三操作的确定结果都为真,则确定所述触摸点正在被触摸的第一触摸检测点。
    • 4. 发明授权
    • SNR enhancement for differential input device
    • 差分输入设备的SNR增强
    • US08432374B2
    • 2013-04-30
    • US12713468
    • 2010-02-26
    • Chun-Wei YangChia-Feng YangYu-Min HsuYung-Tse Cheng
    • Chun-Wei YangChia-Feng YangYu-Min HsuYung-Tse Cheng
    • G06F3/045
    • G06F3/0416
    • The present invention relates to a position detector and a touch sensing device of using same with SNR enhancement. In one embodiment, the position detector has (P+1) inputs, each input for receiving an input signal associated with a position, P being a positive integer, and P operational amplifiers, each operational amplifier having a non-inverting input and an inverting input, where the inverting input of the j-th operational amplifier is electrically connected to the non-inverting input of the (j+1)-th operational amplifier, and the non-inverting input and the inverting input of the j-th operational amplifier are electrically connected to the j-th input port and the (j+1)-th input port, respectively, j=1, 2, 3, . . . , (P−1).
    • 本发明涉及一种利用SNR增强的位置检测器和触摸感测装置。 在一个实施例中,位置检测器具有(P + 1)输入,每个输入用于接收与位置相关联的输入信号,P是正整数,以及P运算放大器,每个运算放大器具有非反相输入和反相 输入,其中第j运算放大器的反相输入电连接到第(j + 1)运算放大器的非反相输入,并且第j个运算放大器的非反相输入和反相输入 放大器分别电连接到第j个输入端口和第(j + 1)个输入端口,j = 1,2,3。 。 。 ,(P-1)。
    • 5. 发明授权
    • Method for detecting two sensing areas of photo-sensor touch panel and touch-sensitive electronic apparatus using the same
    • 用于检测光传感器触摸面板的两个感测区域和使用其的触敏电子设备的方法
    • US08284172B2
    • 2012-10-09
    • US12547482
    • 2009-08-26
    • Chun-Wei YangYu-Min HsuYung-Tse Cheng
    • Chun-Wei YangYu-Min HsuYung-Tse Cheng
    • G06F3/042
    • G06F3/042G06F3/0418
    • An exemplary detecting method for a photo-sensor touch panel and a touch-sensitive electronic apparatus using the same are provided. In aforementioned method, an image frame is obtained by scanning the photo-sensor touch panel. Then, a distribution area of data points in the image frame each having a brightness between a predetermined brightness and a first threshold brightness is defined as a first sensing area, and a distribution area of data points in the image frame each having a brightness between the predetermined brightness and a second threshold brightness is defined as a second sensing area. Afterward, it is determined that whether a real touch probably/really occurred according to a relative distance between one of first data points and corresponding one of second data points. The first data points located in the first sensing area, and the second data points located in the second sensing area.
    • 提供了一种用于光传感器触摸面板的示例性检测方法和使用其的触敏电子设备。 在上述方法中,通过扫描光电传感器触摸面板来获得图像帧。 然后,将具有预定亮度和第一阈值亮度之间的亮度的图像帧中的数据点的分布区域定义为第一感测区域,并且图像帧中的数据点的分布区域各自具有在 预定亮度和第二阈值亮度被定义为第二感测区域。 之后,确定根据第一数据点之一和第二数据点中的一个之间的相对距离可能/真正发生真实触摸。 位于第一感测区域中的第一数据点和位于第二感测区域中的第二数据点。
    • 7. 发明授权
    • Method for determining scanning times of touch driving pulse in a touch panel
    • 用于确定触摸面板中的触摸驱动脉冲的扫描时间的方法
    • US08963850B2
    • 2015-02-24
    • US13098063
    • 2011-04-29
    • Chun-Wei YangChun-Lung HungYu-Min HsuYung-Tse Cheng
    • Chun-Wei YangChun-Lung HungYu-Min HsuYung-Tse Cheng
    • G06F3/041
    • G06F3/0416G06F3/0412
    • A method for determining scanning times of touch driving pulse in a touch panel includes steps of: judging a current gate line scan period is in which one of a data updating time period and a blanking time period; if the current gate line scan period is in the data updating time period, setting a scanning times of touch driving pulse in the current gate line scan period to be a first value; and if the current gate line scan period is in the blanking time period, setting the scanning times of touch driving pulse in the current gate line scan period to be a second value. The first value is different from the second value, and a time for touch driving pulse scanning is non-overlapped with another time for providing display data to data lines of the touch panel in each scan line scan period.
    • 一种用于确定触摸面板中的触摸驱动脉冲的扫描时间的方法,包括以下步骤:判定当前的栅极线扫描周期是数据更新时间段和消隐时间段之一; 如果当前栅极线扫描周期处于数据更新时间段,则将当前栅极线扫描周期中的触摸驱动脉冲的扫描时间设置为第一值; 并且如果当前栅极线扫描周期处于消隐时间段,则将当前栅极线扫描周期中的触摸驱动脉冲的扫描时间设置为第二值。 第一值与第二值不同,并且触摸驱动脉冲扫描的时间与用于在每个扫描行扫描周期中向触摸面板的数据线提供显示数据的另一时间不重叠。
    • 8. 发明申请
    • SNR ENHANCEMENT FOR DIFFERENTIAL INPUT DEVICE
    • 差分输入装置的SNR增强
    • US20110210924A1
    • 2011-09-01
    • US12713468
    • 2010-02-26
    • Chun-Wei YangChia-Feng YangYu-Min HsuYung-Tse Cheng
    • Chun-Wei YangChia-Feng YangYu-Min HsuYung-Tse Cheng
    • G06F3/041
    • G06F3/0416
    • The present invention relates to a position detector and a touch sensing device of using same with SNR enhancement. In one embodiment, the position detector has (P+1) inputs, each input for receiving an input signal associated with a position, P being a positive integer, and P operational amplifiers, each operational amplifier having a non-inverting input and an inverting input, where the inverting input of the j-th operational amplifier is electrically connected to the non-inverting input of the (j+1)-th operational amplifier, and the non-inverting input and the inverting input of the j-th operational amplifier are electrically connected to the j-th input port and the (j+1)-th input port, respectively, j=1, 2, 3, . . . , (P−1).
    • 本发明涉及一种利用SNR增强的位置检测器和触摸感测装置。 在一个实施例中,位置检测器具有(P + 1)输入,每个输入用于接收与位置相关联的输入信号,P是正整数,以及P运算放大器,每个运算放大器具有非反相输入和反相 输入,其中第j运算放大器的反相输入电连接到第(j + 1)运算放大器的非反相输入,并且第j个运算放大器的非反相输入和反相输入 放大器分别电连接到第j个输入端口和第(j + 1)个输入端口,j = 1,2,3。 。 。 ,(P-1)。
    • 9. 发明申请
    • Detecting Method for Photo-Sensor Touch Panel and Touch-Sensitive Electronic Apparatus using the same
    • 用于感光式触摸屏和使用其的触敏电子设备的检测方法
    • US20100134442A1
    • 2010-06-03
    • US12547482
    • 2009-08-26
    • Chun-Wei YangYu-Min HsuYung-Tse Cheng
    • Chun-Wei YangYu-Min HsuYung-Tse Cheng
    • G06F3/042
    • G06F3/042G06F3/0418
    • An exemplary detecting method for a photo-sensor touch panel and a touch-sensitive electronic apparatus using the same are provided. In aforementioned method, an image frame is obtained by scanning the photo-sensor touch panel. Then, a distribution area of data points in the image frame each having a brightness between a predetermined brightness and a first threshold brightness is defined as a first sensing area, and a distribution area of data points in the image frame each having a brightness between the predetermined brightness and a second threshold brightness is defined as a second sensing area. Afterward, it is determined that whether a real touch probably/really occurred according to a relative distance between one of first data points and corresponding one of second data points. The first data points located in the first sensing area, and the second data points located in the second sensing area.
    • 提供了一种用于光传感器触摸面板的示例性检测方法和使用其的触敏电子设备。 在上述方法中,通过扫描光电传感器触摸面板来获得图像帧。 然后,将具有预定亮度和第一阈值亮度之间的亮度的图像帧中的数据点的分布区域定义为第一感测区域,并且图像帧中的数据点的分布区域各自具有在 预定亮度和第二阈值亮度被定义为第二感测区域。 之后,确定根据第一数据点之一和第二数据点中的一个之间的相对距离可能/真正发生真实触摸。 位于第一感测区域中的第一数据点和位于第二感测区域中的第二数据点。
    • 10. 发明授权
    • Method for correcting and recording initial touch points on touch panel
    • 在触摸面板上校正和记录初始触摸点的方法
    • US08872774B2
    • 2014-10-28
    • US13100306
    • 2011-05-04
    • Ping-Hwan LeeYu-Min HsuYung-Tse Cheng
    • Ping-Hwan LeeYu-Min HsuYung-Tse Cheng
    • G06F3/041
    • G06F3/0414G06F3/0418
    • While correcting and recording initial touch points on a touch panel, a plurality of sensors on the touch panel are classified into a plurality of first sensing groups assigned with serial numbers, and a plurality of sensors of each the first sensing group are equally divided into a plurality of second sensing groups assigned with serial numbers. After detecting initial touch points on the touch panel, a plurality of headers are generated for the plurality of first sensing groups, and a data structure is generated for each of the sensors having detected initial touch points according to whether first sensing groups corresponding to the headers have the sensors having the detected initial touch points or not. At last, the initial touch points are filtered off from a plurality of detected touch points on the touch panel, according to initial touch point information recorded in loaded data structures.
    • 当在触摸面板上校正和记录初始接触点时,触摸面板上的多个传感器被分类为分配有序列号的多个第一感测组,并且每个第一感测组的多个传感器被均等地分成 分配有序列号的多个第二感测组。 在检测到触摸面板上的初始触摸点之后,针对多个第一感测组产生多个头部,并且根据与头部相对应的第一感测组,针对具有检测到的初始接触点的每个传感器生成数据结构 使传感器具有检测到的初始接触点。 最后,根据记录在加载的数据结构中的初始触摸点信息,从触摸面板上的多个检测到的触摸点滤除初始触摸点。