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    • 6. 发明授权
    • Touch panel and method of detecting press operation position thereon
    • 触摸面板及其上检测按压操作位置的方法
    • US08508492B2
    • 2013-08-13
    • US12768203
    • 2010-04-27
    • Koji TanabeHirotoshi WatanabeHidetoshi HiraokaKenichi Matsumoto
    • Koji TanabeHirotoshi WatanabeHidetoshi HiraokaKenichi Matsumoto
    • G06F3/041
    • G06F3/045
    • In a touch panel, one of conductive layers on a bottom of an upper substrate and on a top of a lower substrate is formed of belt-shaped conductive layers. The other is a single conductive layer facing the belt-shaped conductive layers. The single conductive layer is provided with a pair of electrodes in positions corresponding to both ends in a direction where the belt-shaped conductive layers extend. When the upper substrate is pressed while a voltage is applied between the pair of electrodes, the top and lower conductive layers contact with each other. Then, a voltage value corresponding to the pressed position in the direction where the belt-shaped conductive layers extend is generated from any of the belt-shaped conductive layers. From the voltage value and the position of the belt-shaped conductive layer from which the voltage value is generated, a pressed position on the upper substrate can be detected.
    • 在触摸面板中,上基板的底部和下基板的顶部上的导电层中的一个由带状导电层形成。 另一个是面向带状导电层的单个导电层。 单个导电层在带状导电层延伸的方向上的两端的位置处设置有一对电极。 当在一对电极之间施加电压的同时按压上基板时,上导电层和下导电层彼此接触。 然后,从任何带状导电层产生与带状导电层延伸的方向上的按压位置对应的电压值。 根据产生电压值的带状导电层的电压值和位置,可以检测上基板上的按压位置。
    • 7. 发明申请
    • TOUCH PANEL
    • 触控面板
    • US20110193815A1
    • 2011-08-11
    • US12935944
    • 2009-02-19
    • Koji TanabeShoji FujiiHideo Iguchi
    • Koji TanabeShoji FujiiHideo Iguchi
    • G06F3/045
    • G06F3/045
    • A touch panel includes a light-transmittable upper board, a light-transmittable upper resistive layer provided on a lower surface of the upper board, a light-transmittable lower resistive layer having an upper surface facing a lower surface of the upper resistive layer with a predetermined gap, a light-transmittable lower board provided on a lower surface of the lower resistive layer, plural conductive particles provided on at least one of the lower surface of the upper resistive layer and the upper surface of the lower resistive layer, and a transparent resin portion for fixing the conductive particles to the at least one of the lower surface of the upper resistive layer and the upper surface of the lower resistive layer. Upon having a display element provided on a lower surface of the lower board, this touch panel allows the display element to be easily visually recognized, and is inexpensive and operated easily.
    • 触摸面板包括可透光上板,设置在上板的下表面上的可透光上电阻层,可透光下电阻层,其具有面向上电阻层的下表面的上表面,具有 设置在下电阻层的下表面上的可透光下板,设置在上电阻层的下表面和下电阻层的上表面中的至少一个上的多个导电颗粒,以及透明 树脂部分,用于将导电颗粒固定到上电阻层的下表面和下电阻层的上表面中的至少一个。 当具有设置在下板的下表面上的显示元件时,该触摸面板允许显示元件容易地被视觉识别,并且便宜并且操作容易。
    • 10. 发明授权
    • Touch panel and manufacturing method for the same
    • 触摸面板和制造方法相同
    • US07406881B2
    • 2008-08-05
    • US11453505
    • 2006-06-15
    • Koji Tanabe
    • Koji Tanabe
    • G01D7/00
    • G06F3/0414
    • A touch panel has an upper substrate, a lower substrate, an elastic layer, plural conducting wires, and a gel layer. An upper conductive layer is formed at a lower surface of the upper substrate, a lower conductive layer that faces the upper conductive layer with a gap in between is formed at a top surface of the lower substrate, and the elastic layer is formed at a top surface of the lower conductive layer. The conductive wires are partially buried in the elastic layer and are disposed in a manner vertically oriented with a gap from the upper conductive layer. The gel layer is formed between the upper conductive layer and the elastic layer. With this construction, the touch panel is obtainable that suffers less wrong operation and allows reliable operation.
    • 触摸面板具有上基板,下基板,弹性层,多根导线和凝胶层。 在上基板的下表面形成上导电层,在下基板的上表面形成有与上导电层相对的上导电层的下导电层,并且在顶部形成弹性层 下导电层的表面。 导电线部分地埋在弹性层中,并且以与上导电层间隙垂直取向的方式设置。 凝胶层形成在上导电层和弹性层之间。 利用这种结构,可以获得触摸面板,其操作较少错误并且允许可靠的操作。