FRAME SEALANT COMPOSITION AND METHOD OF PREPARING THE SAME, LIQUID CRYSTAL PANEL CONTAINING THE SAME
    12.
    发明申请
    FRAME SEALANT COMPOSITION AND METHOD OF PREPARING THE SAME, LIQUID CRYSTAL PANEL CONTAINING THE SAME 有权
    框密封组合物及其制备方法,含有其的液晶面板

    公开(公告)号:US20160237326A1

    公开(公告)日:2016-08-18

    申请号:US14386503

    申请日:2013-12-20

    Abstract: A frame sealant composition and a method of preparing the same, a liquid crystal panel containing the frame sealant composition. The frame sealant composition comprises a resin, a catalyst, a solvent, a hydrophobic silica filler, and silicon spheres; wherein, the hydrophobic silica filler has a shape of irregular polyhedron. The optimum of hydrophobic silica particles increases the whole surface area of the silica particles and correspondingly enhances the hydrophobicity of the frame sealant composition. The frame sealant composition further comprises a dispersant, the addition of which makes the silica fillers more evenly distributed in the frame sealant composition and avoids void caused by the uneven distribution. Even distribution of silica fillers in conjunction with an increase of specific surface area functions to enhance the waterproof property of the frame sealant composition, such that the liquid crystal panel sealed with the frame sealant composition can better block external moisture and prevent internal metal wires from corroding.

    Abstract translation: 框架密封剂组合物及其制备方法,包含框架密封剂组合物的液晶板。 框架密封剂组合物包含树脂,催化剂,溶剂,疏水性二氧化硅填料和硅球; 其中,疏水性二氧化硅填料具有不规则多面体的形状。 疏水性二氧化硅颗粒的最佳添加量增加了二氧化硅颗粒的整个表面积,并相应地增强了框架密封剂组合物的疏水性。 框架密封剂组合物还包含分散剂,其添加使得二氧化硅填料更均匀地分布在框架密封剂组合物中并避免由不均匀分布引起的空隙。 二氧化硅填料的均匀分布与比表面积的增加有关,以增强框架密封剂组合物的防水性能,使得用框架密封剂组合物密封的液晶面板可以更好地阻挡外部水分并防止内部金属丝腐蚀 。

    NANOWIRE, FABRICATION METHOD OF ARRAY SUBSTRATE, ARRAY SUBSTRATE AND ELECTRONIC DEVICE

    公开(公告)号:US20240387631A1

    公开(公告)日:2024-11-21

    申请号:US18273730

    申请日:2022-05-24

    Abstract: The present disclosure provides a nanowire, a fabrication method of an array substrate, an array substrate and an electronic device, belongs to the field of semiconductor technology, and can solve the problem of large area of an active region. The fabrication method of the nanowire includes: forming an insulating layer on a first surface of the substrate; forming a trench layer having a guide trench on a surface of the insulating layer away from the substrate, wherein a width of the guide trench is 0.8 to 1.2 times of a diameter of an induction particle having a specified size; forming the induction particle in the guide trench; forming a precipitation layer on a surface of the trench layer away from the substrate; and forming the nanowire by processing the precipitation layer to separate specified atoms out in the precipitation layer along the guide trench under induction of the induction particle.

    PIXEL DRIVING CIRCUIT AND DRIVING METHOD THEREOF, ARRAY SUBSTRATE AND DISPLAY DEVICE
    17.
    发明申请
    PIXEL DRIVING CIRCUIT AND DRIVING METHOD THEREOF, ARRAY SUBSTRATE AND DISPLAY DEVICE 有权
    像素驱动电路及其驱动方法,阵列基板和显示设备

    公开(公告)号:US20160232870A1

    公开(公告)日:2016-08-11

    申请号:US14388172

    申请日:2013-08-16

    Abstract: A pixel driving circuit and driving method thereof, an array substrate and a display device. The pixel driving circuit can maintain a voltage difference between two terminals of a storage capacitor (Cst) when a gate line scanning is ended. The pixel driving circuit comprises a pixel thin film transistor (T0) and a storage capacitor (Cst), wherein a gate of the pixel thin film transistor (T0) is connected to a gate line, a first terminal of the pixel thin film transistor (T0) is connected to a data signal (Data), a second terminal of the pixel thin film transistor (T0) is connected to a first terminal of the storage capacitor and a second terminal of the storage capacitor (Cst) is grounded. The pixel driving circuit further comprises a follow module connected the first terminal of the storage capacitor (Cst), and configured to maintain a voltage difference between two terminals of the storage capacitor (Cst) when a gate scanning signal (Gate(n)) makes a transition from a high level to a low level, so as to enable the pixel electrode to obtain sufficient voltage thereby ensuring the display effect of the liquid crystal display.

    Abstract translation: 像素驱动电路及其驱动方法,阵列基板和显示装置。 当栅极线扫描结束时,像素驱动电路可以保持存储电容器(Cst)的两个端子之间的电压差。 像素驱动电路包括像素薄膜晶体管(T0)和存储电容器(Cst),其中像素薄膜晶体管(T0)的栅极连接到栅极线,像素薄膜晶体管的第一端子 T0)连接到数据信号(Data),像素薄膜晶体管(T0)的第二端子连接到存储电容器的第一端子,并且存储电容器(Cst)的第二端子接地。 像素驱动电路还包括连接存储电容器(Cst)的第一端子的跟随模块,并且被配置为当栅极扫描信号(Gate(n))产生时保持存储电容器(Cst)的两个端子之间的电压差 从高电平转变为低电平,以使像素电极能够获得足够的电压,从而确保液晶显示器的显示效果。

    TOUCH SCREEN, DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF USABLE FOR REALIZING 3D DISPLAY
    18.
    发明申请
    TOUCH SCREEN, DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF USABLE FOR REALIZING 3D DISPLAY 有权
    触摸屏,显示设备及其可用于实现3D显示的制造方法

    公开(公告)号:US20160132144A1

    公开(公告)日:2016-05-12

    申请号:US14348133

    申请日:2013-06-27

    CPC classification number: G06F3/044 G06F3/0412 G06F2203/04103 H04N13/30

    Abstract: Embodiments of the invention relate to a touch screen, a display device and manufacturing method thereof being usable for realizing 3D display. The touch screen comprises: an upper substrate and a lower substrate cell-assembled; and liquid crystal, filled between the upper substrate and the lower substrate, wherein the upper substrate comprises: an upper transparent substrate and a transparent conductive layer disposed on the upper transparent substrate, i.e. on a side of the upper transparent substrate facing the lower substrate; the lower substrate comprises: a lower transparent substrate and a first sensing electrode layer, an insulating layer and a second sensing electrode layer sequentially disposed on the lower transparent substrate, i.e. on a side of the lower transparent substrate facing the upper substrate, wherein the first sensing electrode layer comprises a plurality of first sensing electrodes, the second sensing electrode layer comprises a plurality of second sensing electrodes that cross over the first sensing electrodes, and the insulating layer is configured to insulate the first sensing electrodes and the second sensing electrodes, to thus form touch sensing capacitors.

    Abstract translation: 本发明的实施例涉及可用于实现3D显示的触摸屏,显示装置及其制造方法。 触摸屏包括:上基板和下基板单元组装; 和液晶,填充在上基板和下基板之间,其中上基板包括:上透明基板和设置在上透明基板上的透明导电层,即位于上透明基板的面向下基板的一侧; 下基板包括:下透明基板和第一感测电极层,绝缘层和第二感测电极层,顺序地设置在下透明基板上,即在面向上基板的下透明基板的一侧,其中第一 感测电极层包括多个第一感测电极,第二感测电极层包括跨越第一感测电极的多个第二感测电极,并且绝缘层被配置为使第一感测电极和第二感测电极绝缘到 从而形成触摸感应电容器。

    FOLDABLE MOBILE TERMINAL
    19.
    发明申请

    公开(公告)号:US20210405691A1

    公开(公告)日:2021-12-30

    申请号:US16470375

    申请日:2018-11-01

    Abstract: Disclosed is a foldable mobile terminal including: a flexible panel including a bending section, a first and second flat sections located on two sides of bending section; a first and second support housings, first and second support housings are respectively connected with backsides of first and second flat sections; a multi-rod mechanism located on backside of bending section, connected with first and second support housings, the multi-rod mechanism including support rods arranged in parallel and adjacent to each other, and extending along a bending axis of the bending section, a connection structure arranged corresponding to a same end of two adjacent support rods, the connection structure includes a first bushing pivoted with one of two adjacent support rods, axially limited in position, and a second bushing installed on other support rod of two adjacent support rods, axially limited in position, the first bushing is retractably connected with the second bushing.

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