Wiring of touch panel
    1.
    发明申请
    Wiring of touch panel 审中-公开
    接触面板接线

    公开(公告)号:US20070103446A1

    公开(公告)日:2007-05-10

    申请号:US11266195

    申请日:2005-11-04

    CPC classification number: G06F3/045

    Abstract: The present invention is to provide a wiring of a touch panel comprising a glass substrate including a transparent and conductive layer on a top surface; a plurality of wires disposed along a border of the glass substrate; a plurality of conductive ends formed at the top side of the glass substrate, each of the wires being electrically connected to one of the conductive ends; and a flexible circuit board provided at the wires, the flexible circuit board including a plurality of connections each electrically connected to one of the conductive ends. By utilizing this wiring, prior used conductors are replaced by the flexible circuit board in order to decrease wiring area and make wiring of the touch panel become narrower.

    Abstract translation: 本发明提供一种触摸面板的布线,其包括在顶表面上包括透明导电层的玻璃基板; 沿着所述玻璃基板的边界设置的多根电线; 多个导电端部形成在玻璃基板的顶侧,每条导线电连接到导电端之一; 以及设置在所述导线上的柔性电路板,所述柔性电路板包括多个连接,每个连接电连接到所述导电端之一。 通过利用该布线,现有的导体被柔性电路板代替,以减少布线面积,并使触摸面板的布线变窄。

    Method of hiding transparent electrodes on a transparent substrate
    2.
    发明申请
    Method of hiding transparent electrodes on a transparent substrate 有权
    在透明基板上隐藏透明电极的方法

    公开(公告)号:US20070264844A1

    公开(公告)日:2007-11-15

    申请号:US11501805

    申请日:2006-08-10

    Applicant: Chun-Min Hu

    Inventor: Chun-Min Hu

    Abstract: A method of hiding transparent electrodes on a transparent substrate coats a solution of non-conductive nanoparticles onto the transparent substrate and the transparent electrodes after forming a plurality of transparent electrodes on the transparent substrate, and both non-conductive nanoparticles and transparent electrodes have the same reflective index of light. After a high-temperature thermal processing is performed to the transparent substrate, an even mask is formed on the transparent substrate and the transparent electrodes, such that the non-conductive nanoparticles in the mask provide the same reflective index of light for the positions of the transparent substrate with and without the transparent electrodes, so as to effectively prevent a different reflective index of light at any position of the transparent substrate that will cause a poor image quality of the screen.

    Abstract translation: 在透明基板上隐藏透明电极的方法是在透明基板上形成多个透明电极之后将非导电纳米颗粒的溶液涂覆在透明基板和透明电极上,并且非导电纳米颗粒和透明电极都具有相同的 光的反射指数。 在对透明基板进行高温热处理之后,在透明基板和透明电极上形成均匀的掩模,使得掩模中的非导电纳米粒子对于 具有和不具有透明电极的透明基板,以便有效地防止在透明基板的任何位置处的不同的反射指数,这将导致屏幕的差的图像质量。

    Display panel having touching circuit
    3.
    发明申请
    Display panel having touching circuit 审中-公开
    具有触摸电路的显示面板

    公开(公告)号:US20070159561A1

    公开(公告)日:2007-07-12

    申请号:US11328244

    申请日:2006-01-10

    Applicant: Shun-Ta Chien

    Inventor: Shun-Ta Chien

    CPC classification number: G06F3/044 G02F1/13338

    Abstract: The present invention is to provide a display panel comprising an upper polarizer; a lower polarizer; a lower glass substrate provided on the lower polarizer; an upper glass substrate provided below the upper polarizer; an upper transparent ITO layer provided under the upper glass substrate; a lower transparent ITO layer provided on the lower glass substrate; an intermediate liquid crystal layer sandwiched by the transparent ITO layers; and a touching circuit layer sandwiched by the upper polarizer and the upper glass substrate and disposed above the liquid crystal layer, enabling the touching circuit to be directly mounted in the display panel rather than assembling together after manufacturing.

    Abstract translation: 本发明提供一种包括上偏振器的显示面板; 下偏振器 设置在下偏振器上的下玻璃基板; 设置在上偏振器下方的上玻璃基板; 设置在上玻璃基板下方的上透明ITO层; 设置在下玻璃基板上的下部透明ITO层; 夹在透明ITO层之间的中间液晶层; 以及由上偏振器和上玻璃基板夹持并设置在液晶层上方的触摸电路层,使得触摸电路能够直接安装在显示面板中,而不是在制造之后组装在一起。

    CONDUCTOR PATTERN STRUCTURE OF CAPACITIVE TOUCH PANEL
    4.
    发明申请
    CONDUCTOR PATTERN STRUCTURE OF CAPACITIVE TOUCH PANEL 有权
    电容触摸屏导体图案结构

    公开(公告)号:US20080264699A1

    公开(公告)日:2008-10-30

    申请号:US11842747

    申请日:2007-08-21

    Abstract: Disclosed is a conductor pattern structure of a capacitive touch panel. First-axis conductor assemblies and second-axis conductor assemblies are formed on a surface of a substrate. Each first-axis conductor assembly includes a plurality of first-axis conductor cells that are interconnected by first-axis conduction lines. An insulation layer is formed on a surface of each first-axis conduction line. Each second-axis conductor assembly includes a plurality of second-axis conductor cells that are interconnected by second-axis conduction lines. Each second-axis conduction line extends across the insulation layer of the associated first-axis conduction line.

    Abstract translation: 公开了电容式触摸面板的导体图案结构。 第一轴导体组件和第二轴导体组件形成在衬底的表面上。 每个第一轴导体组件包括由第一轴导线互连的多个第一轴导体单元。 在每个第一轴导线的表面上形成绝缘层。 每个第二轴导体组件包括由第二轴导线互连的多个第二轴导体单元。 每个第二轴导线延伸穿过相关联的第一轴导线的绝缘层。

    Touch screen with bacteria inhibition layer and manufacturing method thereof
    5.
    发明申请
    Touch screen with bacteria inhibition layer and manufacturing method thereof 审中-公开
    具有细菌抑制层的触摸屏及其制造方法

    公开(公告)号:US20070026089A1

    公开(公告)日:2007-02-01

    申请号:US11192066

    申请日:2005-07-29

    Applicant: Chun-Min Hu

    Inventor: Chun-Min Hu

    Abstract: The present invention is to provide a touch screen having a bacteria inhibition layer for prohibiting bacteria from growing thereon and a method for manufacturing the same comprising uniformly dispersing particles of nano metal material in a solution to be applied to a surface treatment so that the solution can have a concentration of 20 ppm to 500 ppm; evenly spray coating the solution on a screen of the touch screen; and subjecting the solution coated on the screen of the touch screen to a heat treatment until solvent in the solution is completely evaporated so that the particles of the nano metal material are densely adhered to the screen of the touch screen to form a bacteria inhibition layer thereon.

    Abstract translation: 本发明提供一种具有抑制细菌生长的细菌抑制层的触摸屏及其制造方法,包括将纳米金属材料的颗粒均匀地分散在待施加的表面处理溶液中以使溶液可以 浓度为20ppm至500ppm; 均匀地将溶液喷涂在触摸屏的屏幕上; 并将涂覆在触摸屏的筛网上的溶液进行热处理,直到溶液中的溶剂完全蒸发,使得纳米金属材料的颗粒密实地粘附到触摸屏的筛网上以在其上形成细菌抑制层 。

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