Electronic network components utilizing biocompatible conductive adhesives for direct body fluid exposure
    113.
    发明授权
    Electronic network components utilizing biocompatible conductive adhesives for direct body fluid exposure 有权
    使用生物相容性导电粘合剂的电子网络部件用于直接体液暴露

    公开(公告)号:US08660645B2

    公开(公告)日:2014-02-25

    申请号:US12472222

    申请日:2009-05-26

    Abstract: An implantable passive or active electronic network component or component network is provided which is suitable for prolonged direct body fluid exposure and is attachable to a conductive surface, circuit trace, lead or electrode. The electronic network component or component network includes (1) a non-conductive body of biocompatible and non-migratable material, (2) a conductive termination surface of biocompatible and non-migratable material, associated with the body, and (3) a connection material of biocompatible and non-migratable material, for conductively coupling the termination surface to the conductive surface, circuit trace, lead or electrode. The electronic network component may include a capacitor, a resistor, an inductor, a diode, a transistor, an electronic switch, a MEMs device, or a microchip. A biocompatible and non-migratable adhesive is utilized to conductively couple components of the individual components of the electronic network, such as the conductive surface, circuit trace, lead or electrode.

    Abstract translation: 提供了一种植入式无源或有源电子网络组件或组件网络,其适用于延长的直接体液暴露,并且可连接到导电表面,电路迹线,引线或电极。 电子网络部件或组件网络包括(1)生物相容性和不可迁移材料的非导电体,(2)与身体相关联的生物相容性和不可迁移材料的导电终端表面,和(3)连接 生物相容性和不可迁移材料的材料,用于将终端表面导电耦合到导电表面,电路迹线,引线或电极。 电子网络部件可以包括电容器,电阻器,电感器,二极管,晶体管,电子开关,MEMs器件或微芯片。 使用生物相容性和不可迁移的粘合剂来导电地耦合电子网络的各个部件的部件,例如导电表面,电路迹线,引线或电极。

    PLASTIC CAPACITIVE TOUCH SCREEN AND METHOD OF MANUFACTURING SAME
    114.
    发明申请
    PLASTIC CAPACITIVE TOUCH SCREEN AND METHOD OF MANUFACTURING SAME 审中-公开
    塑料电容触摸屏及其制造方法

    公开(公告)号:US20130306592A1

    公开(公告)日:2013-11-21

    申请号:US13949229

    申请日:2013-07-24

    Abstract: A method of removing portions of a conductive layer comprising a transparent conductive material and/or a metallic material disposed on a plastic substrate used for capacitive touchscreen devices includes providing a plastic substrate having a conductive layer disposed on a surface thereof and removing portions of the conductive layer at the surface of the plastic substrate to establish a pattern of electrically isolated conductive portions on the surface of the plastic substrate. The conductive portions or traces are electrically connected to a touchscreen controller, which is operable to determine a location of a touch or proximity of an object at or near the surface of the plastic substrate responsive to a detected change in capacitance. The removal process may comprise etching or laser ablating portions of the conductive layer at the surface of the plastic substrate.

    Abstract translation: 一种去除包含透明导电材料和/或设置在用于电容式触摸屏设备的塑料基板上的金属材料的导电层的部分的方法包括提供一种具有设置在其表面上的导电层的塑料基板,并且去除部分导电 层,以在塑料基板的表面上建立电隔离的导电部分的图案。 导电部分或迹线电连接到触摸屏控制器,触摸屏控制器可操作以响应于检测到的电容变化来确定物体在塑料基板的表面处或附近的接触或接近的位置。 去除过程可以包括在塑料基板的表面处蚀刻或激光烧蚀导电层的部分。

    TOUCH PANEL AND MANUFACTURING METHOD THEREOF
    116.
    发明申请
    TOUCH PANEL AND MANUFACTURING METHOD THEREOF 审中-公开
    触控面板及其制造方法

    公开(公告)号:US20130241871A1

    公开(公告)日:2013-09-19

    申请号:US13803888

    申请日:2013-03-14

    Abstract: There is provided a touch panel including a substrate, at least one laser blocking layer and at least one transparent conductive layer. The at least one laser blocking layer is formed on at least one of a first surface and a second surface of the substrate. The at least one transparent conductive layer is formed on at least one of the first surface and the second surface of the substrate, and a plurality of etching trenches having irregular edges are formed on the transparent conductive layer using UV laser.

    Abstract translation: 提供了一种包括基板,至少一个激光阻挡层和至少一个透明导电层的触摸面板。 所述至少一个激光阻挡层形成在所述基板的第一表面和第二表面中的至少一个上。 所述至少一个透明导电层形成在所述基板的所述第一表面和所述第二表面中的至少一个上,并且使用UV激光在所述透明导电层上形成具有不规则边缘的多个蚀刻沟槽。

    CIRCUIT BOARD, SUBSTRATE MODULE, AND DISPLAY DEVICE
    118.
    发明申请
    CIRCUIT BOARD, SUBSTRATE MODULE, AND DISPLAY DEVICE 有权
    电路板,基板模块和显示装置

    公开(公告)号:US20120319980A1

    公开(公告)日:2012-12-20

    申请号:US13581542

    申请日:2010-11-02

    Abstract: Provided is a circuit board in which visibility of an alignment mark is improved.In a case of manufacturing a substrate module in which a touch panel (20) and an FPC (50) are electrically connected, an alignment mark in the FPC (50) is formed by an opaque metal film, so that visibility is high. Consequently, when an alignment mark (25) in the touch panel (20) is also formed by an opaque metal film, the visibility of the alignment mark (25) also becomes high. By performing alignment using the alignment marks having high visibility, alignment between the touch panel (20) and the FPC (50) can be performed easily with high precision. As a result, the yield of the substrate module increases and modification of an alignment apparatus used for alignment becomes unnecessary, so that the manufacturing cost of the substrate module can be decreased.

    Abstract translation: 提供了一种改善对准标记的可视性的电路板。 在制造触摸面板(20)和FPC(50)电连接的基板模块的情况下,FPC(50)中的对准标记由不透明的金属膜形成,使得可视性高。 因此,当触摸面板(20)中的对准标记(25)也由不透明金属膜形成时,对准标记(25)的可视性也变高。 通过使用具有高可见度的对准标记进行对准,可以以高精度容易地进行触摸面板(20)和FPC(50)之间的对准。 结果,不需要基板模块的成品率的增加和用于对准的对准装置的修改,从而可以降低基板模块的制造成本。

    Optimized multi-layer printing of electronics and displays
    119.
    发明授权
    Optimized multi-layer printing of electronics and displays 失效
    电子和显示器的优化多层印刷

    公开(公告)号:US08334464B2

    公开(公告)日:2012-12-18

    申请号:US11331187

    申请日:2006-01-13

    Abstract: An apparatus and method for making a printed circuit board comprising a substrate and an electrical circuit is provided. The circuit is formed by deposition of a plurality of electronic inks onto the substrate and curing of each of the electronic inks. The deposition may be performed using an ink-jet printing process. The inkjet printing process may include the step of printing a plurality of layers, wherein a first layer includes at least one electronic ink deposited directly onto the substrate, and wherein each subsequent layer includes at least one electronic ink deposited on top of at least a portion of a previous layer when the previous layer has been cured. One or more of the layers may include at least two of the electronic inks.

    Abstract translation: 提供一种用于制造包括基板和电路的印刷电路板的装置和方法。 电路通过将多个电子墨水沉积到基板上并固化每个电子墨水而形成。 可以使用喷墨印刷方法进行沉积。 喷墨印刷方法可以包括打印多个层的步骤,其中第一层包括直接沉积到基材上的至少一个电子油墨,并且其中每个后续层包括沉积在至少一部分上的至少一个电子油墨 的上一层已经被治愈了。 一个或多个层可以包括至少两个电子墨水。

    TOUCH SCREEN AND METHOD OF MANUFACTURING THE SAME
    120.
    发明申请
    TOUCH SCREEN AND METHOD OF MANUFACTURING THE SAME 失效
    触摸屏及其制造方法

    公开(公告)号:US20120068960A1

    公开(公告)日:2012-03-22

    申请号:US13017329

    申请日:2011-01-31

    Abstract: Disclosed herein are a touch screen and a method of manufacturing the same. The touch screen includes: a transparent substrate; a transparent electrode formed on the transparent substrate and including a sensing part sensing a touch input and an extension part extending from the sensing part to an edge of the transparent substrate; a wiring electrode formed at the edge of the transparent substrate and spaced apart from the extension part of the transparent electrode; and a conductive paste formed at the edge of the transparent substrate and covering both the extension part and the wiring electrode so as to electrically connect the transparent electrode to the wiring electrode, whereby the transparent electrode is formed after the wiring electrode is formed and the wiring electrode is connected to the transparent electrode through the conductive paste, thereby preventing the transparent electrode from being damaged.

    Abstract translation: 这里公开了一种触摸屏及其制造方法。 触摸屏包括:透明基板; 透明电极,形成在所述透明基板上,并且包括检测触摸输入的感测部分和从所述感测部分延伸到所述透明基板的边缘的延伸部分; 布线电极,形成在透明基板的边缘并与透明电极的延伸部分间隔开; 以及形成在透明基板的边缘处并且覆盖延伸部和布线电极的导电浆料,以将透明电极电连接到布线电极,由此在布线电极形成之后形成透明电极,并且布线 电极通过导电膏连接到透明电极,从而防止透明电极损坏。

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