In-cell touch screen and method for driving the same

    公开(公告)号:US09939940B2

    公开(公告)日:2018-04-10

    申请号:US14916444

    申请日:2015-08-17

    Inventor: Weiyun Huang

    CPC classification number: G06F3/0412 G06F3/0416 G06F3/044

    Abstract: The present disclosure relates to a field of displaying technology, and describes an in-cell touch screen and a method for driving the same. The in-cell touch screen comprises: a substrate; an electrode layer, formed on the substrate; and a touch driving module, wherein multiple rows of electrodes are formed on the electrode layer, and each row of electrodes is configured to drive at least one row of pixel units; the touch driving module comprises a plurality of signal lines corresponding to electrodes in one-to-one correspondence; and during a time period for displaying an image, when the image is to be displayed by the pixel units corresponding to a row of electrodes, the touch driving module is configured to input display driving signals to the row of electrodes and input touch driving signals to the other rows of electrodes simultaneously.

    Fingerprint recognition method, fingerprint recognition device and electronic device

    公开(公告)号:US09779279B2

    公开(公告)日:2017-10-03

    申请号:US15109324

    申请日:2016-01-27

    Abstract: The present disclosure relates to a fingerprint recognition method, a fingerprint recognition device and an electronic device, wherein the fingerprint recognition method comprises: an obtaining step of obtaining a capacitance detection value corresponding to each sensing electrode in a sensing electrode array; a calculation step of calculating a difference value between a first capacitance detection value corresponding to a first sensing electrode and a second capacitance detection value corresponding to a second sensing electrode, wherein the first sensing electrode and the second sensing electrode are adjacent to each other in the sensing electrode array; a type determination step of determining a fingerprint type detection result of the first sensing electrode and a fingerprint type detection result of the second sensing electrode according to the difference value; and a recognition step of recognizing the fingerprint according to the fingerprint type detection results.

    IN-CELL TOUCH DEVICE AND MANUFACTURING METHOD THEREOF
    45.
    发明申请
    IN-CELL TOUCH DEVICE AND MANUFACTURING METHOD THEREOF 审中-公开
    小型触摸装置及其制造方法

    公开(公告)号:US20150103036A1

    公开(公告)日:2015-04-16

    申请号:US14349869

    申请日:2013-12-13

    Abstract: The present invention provides an in-cell touch device and a manufacturing method thereof. The in-cell touch device comprises: a color filter substrate, an array substrate, and an integration circuit, wherein conductive pads are arranged at the edges of each line and each column of the sensors in the sensor pattern on the color filter substrate, and conductive pads are arranged on the array substrate at the positions corresponding to the color filter substrate, wherein the conductive pads are formed in the transparent conductive layer, the conductive pads arranged on the color filter substrate are connected to the pads arranged at the corresponding positions on the array substrate with conductive guiding material, and the conductive pads arranged on the array substrate are connected to the integration circuit with metal wires, and wherein, the sensors communicate signals with the integration circuit in turns through the conductive pads arranged on the color filter substrate, the conductive guiding material, the conductive pads arranged on the array substrate, and the metal wires. It may effectively reduce the transmission resistance during the signal transmission by adopting technical solution provided in the present disclosure.

    Abstract translation: 本发明提供一种嵌入式触摸装置及其制造方法。 芯片内触摸装置包括:滤色器基板,阵列基板和积分电路,其中导电焊盘布置在滤色器基板上的传感器图案中的每一行和每列传感器的边缘处,以及 在阵列基板上的与滤色器基板对应的位置配置导电焊盘,其中,导电焊盘形成在透明导电层中,布置在滤色器基板上的导电焊盘连接到布置在相应位置上的焊盘上 具有导电引导材料的阵列基板和布置在阵列基板上的导电焊盘通过金属线连接到集成电路,并且其中传感器通过布置在滤色器基板上的导电焊盘与集成电路通过信号 ,导电引导材料,布置在阵列基板上的导电焊盘和金属w 伊雷斯 通过采用本公开中提供的技术方案,可以有效地降低信号传输期间的传输阻抗。

    Display panels and electronic devices

    公开(公告)号:US12289923B2

    公开(公告)日:2025-04-29

    申请号:US17771728

    申请日:2021-03-19

    Abstract: A display panel (10) and an electronic device are provided. The display panel (10) includes a base substrate, a low-display-density region (200), a transition region (300) and a high-display-density region (400), the low-display-density region (200), the transition region (300) and the high-display-density region (400) being located on the base substrate. The transition region (300) is located between the low-display-density region (200) and the high-display-density region (400). The low-display-density region (200), the transition region (300) and the high-display-density region (400) are provided with pixel units (101) for emitting light, respectively. A display density of the low-display-density region (200) is less than a display density of the transition region (300), and the display density of the transition region (300) is less than a display density of the high-display-density region (400). Therefore, a clear border between the high-display-density region (400) and the low-display-density region (200) is avoided, and a display effect of the display panel (10) and the electronic device is ensured.

    Display substrate and display device

    公开(公告)号:US12232380B2

    公开(公告)日:2025-02-18

    申请号:US18390381

    申请日:2023-12-20

    Abstract: A display substrate and a display device are provided. The display substrate includes a display region, at least one first signal line, and at least one connecting wire. The display region includes a first display region and a second display region; the first display region includes at least one first light emitting element, and the second display region includes at least one first pixel circuit; the first signal line includes a first main body portion and a first winding portion; the first main body portion extends along a first direction, and at least part of the first winding portion extends along a direction intersecting with the first direction; at least one first signal line is electrically connected to at least one first pixel circuit; and at least one first pixel circuit is configured to respectively drive at least one first light emitting element.

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