TFT-DRIVEN DISPLAY DEVICE
    41.
    发明申请
    TFT-DRIVEN DISPLAY DEVICE 有权
    TFT驱动显示设备

    公开(公告)号:US20140374763A1

    公开(公告)日:2014-12-25

    申请号:US14083350

    申请日:2013-11-18

    Abstract: A TFT-driven display device includes an upper substrate and a lower substrate facing each other, multiple TFTs disposed on a side of the lower substrate facing the upper substrate, and a metal layer disposed on a side of the upper substrate facing to the lower substrate. The metal layer includes a portion that does not overlap with the active layer of the TFTs in a light transmission direction, or the metal layer includes portions overlapping with the active layer of the TFTs in the light transmission direction, the overlapping portions have a pattern width less than a pattern width of other portions that do not overlap with the active layer. In the TFT-driven display device, a photo leakage current caused by the light reflected by the metal may be reduced, because no portion of the metal layer is provided in the position opposed to the active layer of the TFTs located on a TFT array substrate.

    Abstract translation: TFT驱动显示装置包括上基板和下基板,彼此面对的多个TFT布置在下基板的面向上基板的一侧,并且金属层设置在上基板的面向下基板的一侧 。 金属层包括在透光方向上不与TFT的有源层重叠的部分,或者金属层包括在透光方向上与TFT的有源层重叠的部分,重叠部分具有图案宽度 小于不与有源层重叠的其它部分的图案宽度。 在TFT驱动显示装置中,由于在与TFT阵列基板上的TFT的有源层相对的位置上没有设置金属层的部分,所以由金属反射的光引起的光漏电流可能会降低 。

    DISPLAY DEVICE
    44.
    发明申请
    DISPLAY DEVICE 审中-公开

    公开(公告)号:US20190204977A1

    公开(公告)日:2019-07-04

    申请号:US15959569

    申请日:2018-04-23

    Abstract: Embodiments of the present disclosure provide a display device comprising a display panel, a force sensing unit and a processing unit, the display panel comprises a display portion and a non-display portion; the force sensing unit is provided in a non-wiring portion of the non-display portion, and the force sensing unit is configured to sense a force applied on the display panel and output a force signal corresponding to the force; and the processing unit is connected to the force sensing unit and is configured to control the display portion to display a preset functional interface according to the force signal output from the force sensing unit.

    Touch Display Apparatus
    47.
    发明申请

    公开(公告)号:US20180046301A1

    公开(公告)日:2018-02-15

    申请号:US15791166

    申请日:2017-10-23

    CPC classification number: G06F3/0412 G06F3/044 G06F3/047 G06F2203/04112

    Abstract: A touch display apparatus with a display region and a frame region is provided. The touch display apparatus includes a base substrate, a display function layer and a thin film encapsulation layer which are sequentially stacked. The display function layer is located in the display region. A touch electrode layer is arranged at a side, facing away from the base substrate, of the display function layer. The frame region includes a slope region adjacent to the display region. The thickness of the touch display apparatus in the slope region is gradually decreased outward from the display region. The touch electrode layer includes touch electrodes which form a grid of metallic wires. The grid density of the touch electrodes in the slope region is higher than that in the display region.

    TOUCH DISPLAY PANEL
    49.
    发明申请
    TOUCH DISPLAY PANEL 审中-公开

    公开(公告)号:US20170277349A1

    公开(公告)日:2017-09-28

    申请号:US15209109

    申请日:2016-07-13

    Inventor: Hong DING Qijun YAO

    CPC classification number: G06F3/0418 G06F3/0412 G06F3/044 G06F2203/04111

    Abstract: A touch display panel includes multiple first touch electrode units and multiple second touch electrode units. The first touch electrode units are arranged in an array in a first direction and a second direction, and the first touch electrode units are insulated from one another in a display region of the touch display panel. Each of the second touch electrode units includes multiple second strip-shaped electrodes electrically connected, and the second strip-shaped electrodes extend in the second direction. At least one of the first touch electrode units is arranged between any two adjacent second strip-shaped electrodes in the first direction. The second touch electrode units are insulated from one another in the display region, and a ratio of an effective width of the second touch electrode unit in the first direction to a width of the first touch electrode unit in the first direction is in a range from 0.8 to 1.2 inclusively.

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