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    • 3. 发明申请
    • TRANSPARENT CONDUCTIVE MULTILAYER BODY AND TOUCH PANEL
    • 透明导电多层体和触控面板
    • US20120052278A1
    • 2012-03-01
    • US13290569
    • 2011-11-07
    • Tomotake NashikiHidetoshi YoshitakeHideo Sugawara
    • Tomotake NashikiHidetoshi YoshitakeHideo Sugawara
    • B32B7/02B32B5/16
    • G06F3/0488Y10T428/24942Y10T428/24975Y10T428/256Y10T428/266
    • A transparent conductive multilayer body of the invention comprises a transparent film substrate with a thickness of 2 to 120 μm; a first transparent dielectric thin film, a second transparent dielectric thin film and a transparent conductive thin film laminated in this order on one side of the transparent film substrate; and a transparent substrate bonded to the other side of the film substrate through a transparent pressure-sensitive adhesive layer, wherein the second dielectric thin film is made of an inorganic material or a mixture of an organic material and an inorganic material, and the conductive thin film contains a crystalline material in which the content of crystal particles whose maximum particle sizes are at most 300 nm is higher than 50% by area. Such a transparent conductive multilayer body fully satisfies the pen input bending durability for a touch panel.
    • 本发明的透明导电性多层体包括厚度为2〜120μm的透明膜基材, 第一透明电介质薄膜,第二透明电介质薄膜和透明导电薄膜,依次层叠在透明薄膜基板的一面上; 以及通过透明压敏粘合剂层粘合到膜基材的另一侧的透明基板,其中第二介电薄膜由无机材料或有机材料和无机材料的混合物制成,并且导电薄膜 膜含有最大粒径为300nm以下的结晶粒子的含量高于50个面积的结晶性物质。 这种透明导电性多层体完全满足触摸面板的笔输入弯曲耐久性。
    • 9. 发明授权
    • High durability touch panel
    • 高耐用触摸屏
    • US07148439B2
    • 2006-12-12
    • US11139790
    • 2005-05-31
    • Tomotake NashikiHideo SugawaraHidetoshi Yoshitake
    • Tomotake NashikiHideo SugawaraHidetoshi Yoshitake
    • H01H1/00
    • H01H13/704H01H2209/038H01H2209/064H01H2209/082
    • The present invention provides a touch panel having: a first panel board having a first base layer and a first conductive thin film disposed on one side of the first base layer; and a second panel board having a second base layer and a second conductive thin film disposed on one side of the second base layer; wherein the first panel board and the second panel board are arranged thorough a spacer so that the first conductive thin film and the second conductive thin film face each other, wherein the distance between the first conductive thin film and the second conductive thin film is from 20 to 100 μm, wherein the touch panel has a pushing angle of 3.9° or less at a point distant from an electrode provided at an end portion of the first panel board by 1.5 mm.
    • 本发明提供一种触摸面板,其具有:第一面板,具有设置在所述第一基底层一侧的第一基底层和第一导电薄膜; 以及第二面板,其具有设置在所述第二基底层的一侧上的第二基底层和第二导电薄膜; 其中所述第一面板板和所述第二面板基板通过间隔件布置,使得所述第一导电薄膜和所述第二导电薄膜彼此面对,其中所述第一导电薄膜和所述第二导电薄膜之间的距离为20 至100微米,其中触摸面板在远离设置在第一面板的端部处的电极的点处具有3.9°或更小的推动角度为1.5mm。
    • 10. 发明申请
    • High durability touch panel
    • 高耐用触摸屏
    • US20050274596A1
    • 2005-12-15
    • US11139790
    • 2005-05-31
    • Tomotake NashikiHideo SugawaraHidetoshi Yoshitake
    • Tomotake NashikiHideo SugawaraHidetoshi Yoshitake
    • H01H1/10H01H13/704
    • H01H13/704H01H2209/038H01H2209/064H01H2209/082
    • The present invention provides a touch panel having: a first panel board having a first base layer and a first conductive thin film disposed on one side of the first base layer; and a second panel board having a second base layer and a second conductive thin film disposed on one side of the second base layer; wherein the first panel board and the second panel board are arranged thorough a spacer so that the first conductive thin film and the second conductive thin film face each other, wherein the distance between the first conductive thin film and the second conductive thin film is from 20 to 100 μm, wherein the touch panel has a pushing angle of 3.9° or less at a point distant from an electrode provided at an end portion of the first panel board by 1.5 mm.
    • 本发明提供一种触摸面板,其具有:第一面板,具有设置在所述第一基底层一侧的第一基底层和第一导电薄膜; 以及第二面板,其具有设置在所述第二基底层的一侧上的第二基底层和第二导电薄膜; 其中所述第一面板板和所述第二面板基板通过间隔件布置,使得所述第一导电薄膜和所述第二导电薄膜彼此面对,其中所述第一导电薄膜和所述第二导电薄膜之间的距离为20 至100微米,其中触摸面板在远离设置在第一面板的端部处的电极的点处具有3.9°或更小的推动角度为1.5mm。