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    • 2. 发明申请
    • Layout method of bridging electrode
    • 桥接电极布局方法
    • US20110233051A1
    • 2011-09-29
    • US12659873
    • 2010-03-24
    • Li-Li Fan
    • Li-Li Fan
    • C23C14/34
    • G06F3/044
    • In a layout method of a bridging electrode, the method includes the steps of: providing a substrate; forming a transparent electro-conductive layer on the substrate and the transparent electro-conductive layer having a plurality of neighboring patterned blocks; forming an alignment film layer on the substrate and the alignment film layer having a plurality of bridging grooves of a bridging insulation unit crossing between the patterned blocks; forming an electro-conductive layer on the substrate and the electro-conductive layer having a plurality of wires respectively disposed on the bridging grooves, wherein the wires of the electro-conductive layer being formed through an optical compensation mask in conjunction with at least one of over-exposure and over-development; and forming a protection layer on the substrate to enhance optical transmission and to protect the substrate, the transparent electro-conductive layer, the alignment film layer and the electro-conductive layer.
    • 在桥接电极的布局方法中,该方法包括以下步骤:提供衬底; 在所述基板上形成透明导电层,所述透明导电层具有多个相邻的图案化块; 在所述基板上形成取向膜层,所述取向膜层具有跨越所述图案化块之间的桥接绝缘单元的多个桥接槽; 在所述基板上形成导电层,所述导电层具有分别布置在所述桥接槽上的多根导线,其中所述导电层的导线通过光学补偿掩模形成,并与 过度曝光和过度开发; 在基板上形成保护层,以增强光透射率,并保护基板,透明导电层,取向膜层和导电层。
    • 4. 发明授权
    • Layout method and layout structure of touch panel electrode
    • 触摸屏电极的布局方法和布局结构
    • US09040858B2
    • 2015-05-26
    • US13849200
    • 2013-03-22
    • Li-Li Fan
    • Li-Li Fan
    • H03K17/96G06F3/044
    • H03K17/9622G06F3/044G06F2203/04103Y10T29/49124Y10T29/49126Y10T29/49135Y10T29/49155
    • A layout method of a touch panel electrode includes the steps of: providing a substrate; forming a first electro-conductive layer, having pattern blocks disposed adjacently to one another, on one side of the substrate, wherein the first electro-conductive layer is transparent; forming an alignment film on the one side of the substrate; forming an second electro-conductive layer, having wires to be connected to at least one of the pattern blocks, on the one side of the substrate; and forming a protection layer on the second electro-conductive layer to protect the second electro-conductive layer. The present invention can reduce the processes of manufacturing the conventional electrode, especially do not needs to form another electro-conductive layer and another protection layer on the other side of the substrate, and can effectively prevent the electrostatic charge effect and increase the capacitance and sensitivity.
    • 触摸面板电极的布局方法包括以下步骤:提供衬底; 形成第一导电层,其具有彼此相邻设置的图案块,所述第一导电层在所述基板的一侧上,其中所述第一导电层是透明的; 在基板的一侧上形成取向膜; 在所述基板的一侧上形成第二导电层,所述第二导电层具有要连接到所述图案块中的至少一个的导线; 以及在所述第二导电层上形成保护层以保护所述第二导电层。 本发明可以减少制造常规电极的工艺,特别是不需要在衬底的另一侧上形成另一个导电层和另一个保护层,并且可以有效地防止静电荷效应并增加电容和灵敏度 。
    • 5. 发明授权
    • Structure of bridging electrode
    • 桥接电极的结构
    • US08653378B2
    • 2014-02-18
    • US12659874
    • 2010-03-24
    • Li-Li Fan
    • Li-Li Fan
    • H05K1/03
    • G01R1/06794G06F3/041G06F3/044G06F2203/04111H03K2017/9602H05K1/02H05K1/03H05K1/0306
    • In a structure of a bridging electrode, the structure of a bridging electrode applied to a capacitive touchpad, the structure comprising: a substrate; a plurality of first electrode blocks disposed on the substrate and electrically connected together in series through a first wire; a plurality of second electrode blocks disposed on the substrate and respectively disposed on two sides of the first wire; and a bridging insulation unit, which is perpendicular to and disposed on the first wire and having a bridging groove; wherein the second electrode blocks connecting electrically together in series through the bridging insulation unit having a second wire.
    • 在桥接电极的结构中,施加到电容式触摸板的桥接电极的结构,所述结构包括:衬底; 多个第一电极块,设置在所述基板上,并通过第一导线串联连接在一起; 多个第二电极块,设置在所述基板上并分别设置在所述第一线的两侧; 以及桥接绝缘单元,其垂直于并布置在第一导线上并具有桥接凹槽; 其中所述第二电极块通过具有第二线的所述桥接绝缘单元串联电连接。
    • 6. 发明授权
    • Layout method for bridging electrode capable of shielding bright spot and structure of the bridging electrode
    • 能够屏蔽桥接电极的亮点和结构的桥接电极布局方法
    • US08471151B2
    • 2013-06-25
    • US12926347
    • 2010-11-12
    • Li-Li Fan
    • Li-Li Fan
    • H05K1/03H05K3/02G06F3/041
    • G06F3/044G06F2203/04111Y10T29/49155
    • A layout method for a bridging electrode capable of shielding a bright spot includes the steps of: providing a substrate; forming a transparent electroconductive layer, having neighboring pattern blocks, on the substrate; forming an alignment film layer, having bridging grooves for crossing between the pattern blocks, over the substrate; forming an electroconductive layer, having wires respectively correspondingly disposed over the bridging grooves, over the substrate; forming an electroconductive correspondence layer on one side of the electroconductive layer to shield the wires; and forming a protection layer over the substrate to enhance optical transmission and protect the substrate, the transparent electroconductive layer, the alignment film layer and the electroconductive layer. Meanwhile, the invention also provides a structure of the bridging electrode capable of shielding the bright spot and corresponding to the layout method.
    • 能够屏蔽亮点的桥接电极的布局方法包括以下步骤:提供衬底; 在基板上形成具有相邻图案块的透明导电层; 在衬底上形成具有用于在图案块之间交叉的桥接沟槽的取向膜层; 在衬底上形成具有分别相应地布置在桥接沟槽上方的导线的导电层; 在导电层的一侧上形成导电对应层以屏蔽线; 以及在衬底上形成保护层,以增强光学传输并保护衬底,透明导电层,取向膜层和导电层。 同时,本发明还提供了能够屏蔽亮点并对应于布局方法的桥接电极的结构。
    • 7. 发明授权
    • Layout method of bridging electrode
    • 桥接电极布局方法
    • US08252151B2
    • 2012-08-28
    • US12659873
    • 2010-03-24
    • Li-Li Fan
    • Li-Li Fan
    • C23C14/34
    • G06F3/044
    • In a layout method of a bridging electrode, the method includes the steps of: providing a substrate; forming a transparent electro-conductive layer on the substrate and the transparent electro-conductive layer having a plurality of neighboring patterned blocks; forming an alignment film layer on the substrate and the alignment film layer having a plurality of bridging grooves of a bridging insulation unit crossing between the patterned blocks; forming an electro-conductive layer on the substrate and the electro-conductive layer having a plurality of wires respectively disposed on the bridging grooves, wherein the wires of the electro-conductive layer being formed through an optical compensation mask in conjunction with at least one of over-exposure and over-development; and forming a protection layer on the substrate to enhance optical transmission and to protect the substrate, the transparent electro-conductive layer, the alignment film layer and the electro-conductive layer.
    • 在桥接电极的布局方法中,该方法包括以下步骤:提供衬底; 在所述基板上形成透明导电层,所述透明导电层具有多个相邻的图案化块; 在所述基板上形成取向膜层,所述取向膜层具有跨越所述图案化块之间的桥接绝缘单元的多个桥接槽; 在所述基板上形成导电层,所述导电层具有分别布置在所述桥接槽上的多根导线,其中所述导电层的导线通过光学补偿掩模形成,并与 过度曝光和过度开发; 在基板上形成保护层,以增强光透射率,并保护基板,透明导电层,取向膜层和导电层。
    • 8. 发明授权
    • Layout method of touch panel electrode
    • 触摸屏电极布局方法
    • US08695213B2
    • 2014-04-15
    • US12929217
    • 2011-01-10
    • Li-Li Fan
    • Li-Li Fan
    • H05K3/02
    • H03K17/9622G06F3/044G06F2203/04103Y10T29/49124Y10T29/49126Y10T29/49135Y10T29/49155
    • A layout method of a touch panel electrode includes the steps of: providing a substrate; forming a first electro-conductive layer, having pattern blocks disposed adjacently to one another, on one side of the substrate, wherein the first electro-conductive layer is transparent; forming an alignment film on the one side of the substrate; forming an second electro-conductive layer, having wires to be connected to at least one of the pattern blocks, on the one side of the substrate; and forming a protection layer on the second electro-conductive layer to protect the second electro-conductive layer. The present invention can reduce the processes of manufacturing the conventional electrode, especially do not needs to form another electro-conductive layer and another protection layer on the other side of the substrate, and can effectively prevent the electrostatic charge effect and increase the capacitance and sensitivity.
    • 触摸面板电极的布局方法包括以下步骤:提供衬底; 形成第一导电层,其具有彼此相邻设置的图案块,所述第一导电层在所述基板的一侧上,其中所述第一导电层是透明的; 在基板的一侧上形成取向膜; 在所述基板的一侧上形成第二导电层,所述第二导电层具有要连接到所述图案块中的至少一个的导线; 以及在所述第二导电层上形成保护层以保护所述第二导电层。 本发明可以减少制造常规电极的工艺,特别是不需要在衬底的另一侧上形成另一个导电层和另一个保护层,并且可以有效地防止静电荷效应并增加电容和灵敏度 。
    • 10. 发明申请
    • Layout Method and Layout Structure of Touch Panel Electrode
    • 触摸屏电极的布局方法和布局结构
    • US20130213789A1
    • 2013-08-22
    • US13849200
    • 2013-03-22
    • Li-Li Fan
    • Li-Li Fan
    • H03K17/96
    • H03K17/9622G06F3/044G06F2203/04103Y10T29/49124Y10T29/49126Y10T29/49135Y10T29/49155
    • A layout method of a touch panel electrode includes the steps of: providing a substrate; forming a first electro-conductive layer, having pattern blocks disposed adjacently to one another, on one side of the substrate, wherein the first electro-conductive layer is transparent; forming an alignment film on the one side of the substrate; forming an second electro-conductive layer, having wires to be connected to at least one of the pattern blocks, on the one side of the substrate; and forming a protection layer on the second electro-conductive layer to protect the second electro-conductive layer. The present invention can reduce the processes of manufacturing the conventional electrode, especially do not needs to form another electro-conductive layer and another protection layer on the other side of the substrate, and can effectively prevent the electrostatic charge effect and increase the capacitance and sensitivity.
    • 触摸面板电极的布局方法包括以下步骤:提供衬底; 形成第一导电层,其具有彼此相邻设置的图案块,所述第一导电层在所述基板的一侧上,其中所述第一导电层是透明的; 在基板的一侧上形成取向膜; 在所述基板的一侧上形成第二导电层,所述第二导电层具有要连接到所述图案块中的至少一个的导线; 以及在所述第二导电层上形成保护层以保护所述第二导电层。 本发明可以减少制造常规电极的工艺,特别是不需要在衬底的另一侧上形成另一个导电层和另一个保护层,并且可以有效地防止静电荷效应并增加电容和灵敏度 。