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    • 1. 发明申请
    • REDUCING DISPLAY ARTIFACTS AFTER NON-DISPLAY UPDATE PERIODS
    • 在非显示更新周期后减少显示艺术作品
    • WO2014158429A1
    • 2014-10-02
    • PCT/US2014/016577
    • 2014-02-14
    • SYNAPTICS INCORPORATED
    • LILLIE, Jeffrey S.CHILDS, JohnBELL, Marshall J.MACKIN, Thomas
    • G06F3/041G09G5/04
    • G06F3/041G09G3/20G09G2354/00
    • Embodiments of the present invention generally provide a processing system for a display device having an integrated sensing device. The processing system includes a driver module coupled to a plurality of source lines and a plurality of transmitter electrodes. Each transmitter electrode includes one or more common electrodes configured for display updating and input sensing. The driver module is configured for selecting a first display line for display updating and driving the sources lines with first display update signals to update the first display line. The drive module is further configured for driving a first transmitter electrode of the plurality of transmitter electrodes for input sensing during a non-display update period and driving the source lines with restore signals during a restart period. The processing system further includes a receiver module coupled to a plurality of receiver electrodes and configured for receiving resulting signals with the receiver electrodes.
    • 本发明的实施例通常提供一种具有集成感测装置的显示装置的处理系统。 处理系统包括耦合到多个源极线和多个发射器电极的驱动器模块。 每个发射器电极包括配置用于显示更新和输入感测的一个或多个公共电极。 驱动器模块被配置为选择用于显示更新的第一显示行,并且用第一显示更新信号驱动源线以更新第一显示行。 驱动模块还被配置为在非显示更新周期期间驱动多个发射器电极中的第一发射器电极用于输入感测,并且在重新启动周期期间用恢复信号驱动源极线。 处理系统还包括耦合到多个接收器电极并被配置为用接收器电极接收结果信号的接收器模块。
    • 4. 发明申请
    • A TOUCH AND DISPLAY DEVICE HAVING AN INTEGRATED SENSOR CONTROLLER
    • 具有集成传感器控制器的触摸和显示设备
    • WO2012177312A1
    • 2012-12-27
    • PCT/US2012/031668
    • 2012-03-30
    • SYNAPTICS INCORPORATEDREYNOLDS, Joseph Kurth
    • REYNOLDS, Joseph Kurth
    • G06F3/041
    • G06F3/041G06F3/0416G06F3/044G06F2203/04103Y10T29/49002
    • Embodiments of the invention generally provide an input device having a smaller overall physical size and a lower production cost, and is minimally affected by electrical interference versus conventional input devices. Embodiments discussed herein include an input device that has a sensor controller disposed in close proximity to a plurality of sensing elements that are used to sense and acquire positional information of an input object. In one embodiment, the sensor controller and at least portions of the sensor electrodes are disposed between two transparent substrates that are positioned near a display device. In some embodiments, the sensor controller is disposed in an edge region of a substrate which has a sensing region through which the adjacently positioned sensor electrodes are configured to sense the presence of an input object.
    • 本发明的实施例通常提供具有较小的整体物理尺寸和较低生产成本的输入装置,并且与传统的输入装置相比,受到电气干扰的影响最小。 本文讨论的实施例包括具有传感器控制器的输入设备,该传感器控制器设置在靠近用于感测和获取输入对象的位置信息的多个感测元件。 在一个实施例中,传感器控制器和传感器电极的至少部分设置在位于显示装置附近的两个透明基板之间。 在一些实施例中,传感器控制器设置在具有感测区域的基板的边缘区域中,相邻定位的传感器电极通过该感测区域被配置为感测输入对象的存在。
    • 8. 发明申请
    • CONCURRENT INPUT SENSING AND DISPLAY UPDATING
    • 同时输入感应和显示更新
    • WO2014046870A1
    • 2014-03-27
    • PCT/US2013/057990
    • 2013-09-04
    • SYNAPTICS INCORPORATED
    • SHEPELEV, PetrSABO, David
    • G06F3/044G09G3/20
    • G06F3/0412G06F3/044
    • Embodiments of the present invention generally provide a processing system for a display device integrated with a capacitive sensing device. The processing system includes a driver module having driver circuitry and coupled to a sub-pixel with a first source line and a first common electrode. The driver module is configured to simultaneously update the sub-pixel by driving the first source line with a first voltage, and drive the first common electrode for capacitive sensing by modulating the first common electrode between a second voltage and a third voltage. The processing system further includes a receiver module coupled to a plurality of receiver electrodes. The receiver module is configured to receive resulting signals from the receiver electrodes while the first common electrode is modulated between the second voltage and the third voltage. The processing system further includes a determination module configured to determine positional information based on the resulting signals.
    • 本发明的实施例通常提供一种用于与电容式感测装置集成的显示装置的处理系统。 处理系统包括具有驱动器电路并且耦合到具有第一源极线和第一公共电极的子像素的驱动器模块。 驱动器模块被配置为通过用第一电压驱动第一源极线来同时更新子像素,并且通过在第二电压和第三电压之间调制第一公共电极来驱动用于电容感测的第一公共电极。 处理系统还包括耦合到多个接收器电极的接收器模块。 接收器模块被配置为在第一公共电极在第二电压和第三电压之间被调制时从接收器电极接收结果信号。 处理系统还包括确定模块,其被配置为基于所得到的信号来确定位置信息。
    • 10. 发明申请
    • CAPACITIVE SENSING DURING NON-DISPLAY UPDATE TIMES
    • 非显示更新时间期间的电容感测
    • WO2013036672A1
    • 2013-03-14
    • PCT/US2012/054005
    • 2012-09-06
    • SYNAPTICS INCORPORATEDSHEPELEV, PetrSCHWARTZ, Adam
    • SHEPELEV, PetrSCHWARTZ, Adam
    • G06F3/044G09G3/20
    • G06F3/044G06F3/0412G06F3/0416G09G5/18
    • Embodiments of the invention generally provide an input device with display screens that periodically update (refresh) the screen by selectively driving common electrodes corresponding to pixels in a display line. In general, the input devices drive each electrode until each display line (and each pixel) of a display frame is updated. In addition to updating the display, the input device may perform capacitive sensing using the display screen as a proximity sensing area. To do this, the input device may interleave periods of capacitive sensing between periods of updating the display based on a display frame. For example, the input device may update the first half of display lines of the display screen, pause display updating, perform capacitive sensing, and finish updating the rest of the display lines. Further still, the input device may use common electrodes for both updating the display and performing capacitive sensing.
    • 本发明的实施例通常提供具有显示屏幕的输入设备,其通过选择性地驱动对应于显示行中的像素的公共电极来周期性地更新(刷新)屏幕。 通常,输入设备驱动每个电极,直到显示框架的每个显示线(和每个像素)被更新。 除了更新显示器之外,输入设备可以使用显示屏幕来执行电容感测作为接近感测区域。 为此,输入设备可以基于显示帧来交织更新显示器的时段之间的电容感测周期。 例如,输入装置可以更新显示画面的显示行的前半部分,暂停显示更新,执行电容感测,并且更新其余的显示行。 此外,输入装置可以使用公共电极来更新显示和执行电容感测。