WIRING SUBSTRATE
    51.
    发明申请
    WIRING SUBSTRATE 有权
    接线基板

    公开(公告)号:US20160124550A1

    公开(公告)日:2016-05-05

    申请号:US14992429

    申请日:2016-01-11

    Abstract: A wiring board includes a plurality of first terminal parts for electrically connecting with a control circuit and disposed corresponding to a plurality of first electrode parts, and first terminal wiring parts for electrically connecting the plurality of first electrode parts and the corresponding first terminal parts. Each of the first terminal wiring parts has, in at least a portion thereof falling in a circle with a radius of 10 mm centering around a boundary part between the first terminal wiring parts and the corresponding first terminal parts, a portion having a line width of 5 μm to 100 μm inclusive, the wiring resistance value of the first terminal wiring parts connected to the first terminal parts being 100 ohms to 10 kohms inclusive.

    Abstract translation: 布线板包括多个用于与控制电路电连接并且对应于多个第一电极部分设置的第一端子部分和用于电连接多个第一电极部分和相应的第一端子部分的第一端子布线部分。 所述第一端子配线部的至少一部分在所述第一端子配线部和所述对应的第一端子部之间的边界部的周围以半径为10mm的圆为中心,具有线宽为 连接到第一端子部分的第一端子布线部分的布线电阻值为100欧姆至10千欧姆,包括5微米至100微米。

    Double-layered transparent conductive film and manufacturing method thereof
    53.
    发明授权
    Double-layered transparent conductive film and manufacturing method thereof 有权
    双层透明导电膜及其制造方法

    公开(公告)号:US09313896B2

    公开(公告)日:2016-04-12

    申请号:US14000098

    申请日:2013-07-05

    Abstract: A double-layered transparent conductive film includes: a first substrate; a first imprint adhesive layer formed on the first substrate, the first imprint adhesive layer defining a first mesh-shaped groove, the first mesh-shaped groove forming a first mesh; a first conductive layer including conductive material filled in the first mesh-shaped groove; a tackifier layer formed on the first imprint adhesive layer and the first conductive layer; a second substrate formed on the tackifier layer; a second imprint adhesive layer formed on the second substrate, the second imprint adhesive layer defining a second mesh-shaped groove, the second mesh-shaped groove forming a second mesh, wherein one of the first mesh and the second mesh is a regular mesh, the other is a random mesh; and a second conductive layer including conductive material filled in the second mesh-shaped groove. During the lamination, no alignment accuracy is needed, such that the production efficiency is greatly improved. A method of manufacturing the double-layered transparent conductive film is also provided.

    Abstract translation: 双层透明导电膜包括:第一基板; 形成在所述第一基板上的第一压印粘合剂层,所述第一压印粘合剂层限定第一网状槽,所述第一网状槽形成第一网; 第一导电层,包括填充在第一网状槽中的导电材料; 形成在所述第一压印粘合剂层和所述第一导电层上的增粘层; 形成在增粘层上的第二基底; 形成在所述第二基板上的第二印记粘合剂层,所述第二印记粘合剂层限定第二网状凹槽,所述第二网状凹槽形成第二网格,其中所述第一网格和所述第二网格中的一个是规则网格, 另一个是随机网格; 以及第二导电层,包括填充在第二网状槽中的导电材料。 在层压期间,不需要对准精度,从而大大提高了生产效率。 还提供了制造双层透明导电膜的方法。

    Electrode pattern and touchscreen using the same
    54.
    发明授权
    Electrode pattern and touchscreen using the same 有权
    电极图案和触摸屏使用相同

    公开(公告)号:US09307635B2

    公开(公告)日:2016-04-05

    申请号:US14303611

    申请日:2014-06-13

    Inventor: Kung-Chieh Huang

    Abstract: A touchscreen electrode pattern constituted by wavy conductive lines, each wavy conductive line includes multiple troughs of wave and multiple crests of waves, wherein an interval between adjacent troughs of waves in each wavy conductive line is larger than 1.5 times of a predetermined value, and an amplitude difference between adjacent trough of waves and crest of waves in each wavy conductive line is smaller than ⅓ times of the predetermined value.

    Abstract translation: 由波浪状导线构成的触摸屏电极图案,每个波导线包括多个波浪波和多个波峰,其中每条波导线中相邻波浪波之间的间隔大于预定值的1.5倍, 波浪相邻波谷之间的波幅和波浪波导波峰之间的振幅差小于预定值的1/3倍。

    MULTI-LAYER LARGE-FORMAT IMPRINTED STRUCTURE
    55.
    发明申请
    MULTI-LAYER LARGE-FORMAT IMPRINTED STRUCTURE 审中-公开
    多层大型格式结构

    公开(公告)号:US20160062006A1

    公开(公告)日:2016-03-03

    申请号:US14475917

    申请日:2014-09-03

    Abstract: A filled large-format imprinted structure includes a substrate and a first cured layer located over the substrate. One or more first micro-cavities are imprinted in the first cured layer, each first micro-cavity having a first micro-cavity width less than or equal to 20 microns. A second cured layer is located over the first layer and the one or more first micro-cavities. One or more second micro-cavities are imprinted in the second cured layer, each second micro-cavity having a second micro-cavity width less than or equal to 20 microns. A common first cured material is located in the first micro-cavity and in the second micro-cavity, thereby defining a filled large-format imprinted structure.

    Abstract translation: 填充的大幅面印刷结构包括基板和位于基板上方的第一固化层。 一个或多个第一微腔被印在第一固化层中,每个第一微腔具有小于或等于20微米的第一微腔宽度。 第二固化层位于第一层和一个或多个第一微孔之上。 一个或多个第二微腔被印在第二固化层中,每个第二微腔具有小于或等于20微米的第二微腔宽度。 常见的第一固化材料位于第一微腔和第二微腔中,从而限定了填充的大格式压印结构。

    RIBBED LARGE-FORMAT IMPRINTING METHOD
    56.
    发明申请
    RIBBED LARGE-FORMAT IMPRINTING METHOD 有权
    RIBBED大型格式化方法

    公开(公告)号:US20160062005A1

    公开(公告)日:2016-03-03

    申请号:US14475896

    申请日:2014-09-03

    Abstract: A method of making a filled large-format imprinted structure includes providing a substrate, locating a curable layer over the substrate, imprinting the curable layer, and curing the curable layer to form a cured layer including a layer surface and one or more imprinted micro-cavities. Each micro-cavity has a micro-cavity depth and a micro-cavity width and one or more ribs extending from the bottom of the micro-cavity toward the top of the micro-cavity. Each rib has a rib width that is less than one half of the micro-cavity width, a rib height that is less than the micro-cavity depth, and each rib separates the micro-cavity into portions, each portion having a portion width less than or equal to 20 microns. A curable material is located in each micro-cavity and cured to form cured material located in each micro-cavity, thereby defining a filled large-format imprinted structure.

    Abstract translation: 制造填充的大幅面印刷结构的方法包括提供基板,将可固化层定位在基板上,压印可固化层,以及固化可固化层,以形成包括层表面和一个或多个压印微孔结构的固化层, 空腔 每个微腔具有微腔深度和微腔宽度以及从微腔的底部向微腔的顶部延伸的一个或多个肋。 每个肋具有小于微腔宽度的一半的肋宽度,小于微腔深度的肋高度,并且每个肋将微腔分隔成部分,每个部分具有部分宽度较小 大于或等于20微米。 可固化材料位于每个微腔中并固化以形成位于每个微腔中的固化材料,从而限定填充的大格式印刷结构。

    BOTTOM ELECTRODE SUBSTRATE FOR SEGMENT-TYPE ELECTRO-PHORETIC DISPLAY AND METHOD FOR MANUFACTURING THEREOF
    58.
    发明申请
    BOTTOM ELECTRODE SUBSTRATE FOR SEGMENT-TYPE ELECTRO-PHORETIC DISPLAY AND METHOD FOR MANUFACTURING THEREOF 有权
    用于分段式电泳显示器的底电极基板及其制造方法

    公开(公告)号:US20160054635A1

    公开(公告)日:2016-02-25

    申请号:US14722142

    申请日:2015-05-26

    Abstract: The present disclosure provides a bottom electrode substrate for a segment-type electrophoretic display. The bottom electrode substrate includes a flexible substrate, a first conductive layer, an insulating layer, a second conductive layer and a segment-type electrode. The first conductive layer is disposed on the flexible substrate. The insulating layer covers the first conductive layer and the flexible substrate, wherein the insulating layer has at least one opening exposing a part of the first conductive layer. The second conductive layer is filled in the opening and in contact with the exposed first conductive layer. The segment-type electrode covers the second conductive layer and the insulating layer, and is in contact with the second conductive layer. A method for manufacturing the bottom electrode substrate is also provided herein.

    Abstract translation: 本公开内容提供了用于段式电泳显示器的底部电极基底。 底部电极基板包括柔性基板,第一导电层,绝缘层,第二导电层和段型电极。 第一导电层设置在柔性基板上。 绝缘层覆盖第一导电层和柔性基板,其中绝缘层具有暴露第一导电层的一部分的至少一个开口。 第二导电层填充在开口中并与暴露的第一导电层接触。 分段型电极覆盖第二导电层和绝缘层,并与第二导电层接触。 本发明还提供一种制造底电极基板的方法。

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