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    • 3. 发明授权
    • Touch panel
    • 触控面板
    • US08742882B2
    • 2014-06-03
    • US13701791
    • 2011-06-01
    • Hisao ItayaShinya NishiharaSatoru Nakagawa
    • Hisao ItayaShinya NishiharaSatoru Nakagawa
    • H01C10/10
    • H03K17/9647G06F3/045G06F2203/04113
    • The invention provides a touch panel capable of effectively preventing a distortion of an electric potential distribution, thereby increasing an input region of the touch panel. A touch panel including a resistive layer formed on one of surfaces of a substrate and a frame-shaped electrode portion 21 provided along four sides of the resistive layer, wherein each side of the frame-shaped electrode portion 21 is constituted in a broken line pattern having a first split electrode 25a disposed on both ends respectively and a plurality of second split electrodes 25b disposed between the first split electrodes 25a, second resistance values R_i between the second split electrodes 25b are set to be equal to each other, and a first resistance value R_s between the first split electrode 25a and the second split electrode 25b which is adjacent to the first split electrode 25a is different from the second resistance value R_i.
    • 本发明提供能够有效地防止电位分布失真从而增加触摸面板的输入区域的触摸面板。 一种触摸面板,包括形成在基板的一个表面上的电阻层和沿着电阻层的四边设置的框状电极部分21,其中框状电极部分21的每一侧以虚线图案 具有设置在两端的第一分裂电极25a和设置在第一分离电极25a之间的多个第二分离电极25b,第二分割电极25b之间的第二电阻值R_i彼此相等,第一电阻 与第一分割电极25a相邻的第一分离电极25a与第二分割电极25b之间的值R_s与第二电阻值R_i不同。
    • 8. 发明申请
    • TOUCH PANEL
    • 触控面板
    • US20130285788A1
    • 2013-10-31
    • US13701791
    • 2011-06-01
    • Hisao ItayaShinya NishiharaSatoru Nakagawa
    • Hisao ItayaShinya NishiharaSatoru Nakagawa
    • H03K17/96
    • H03K17/9647G06F3/045G06F2203/04113
    • The invention provides a touch panel capable of effectively preventing a distortion of an electric potential distribution, thereby increasing an input region of the touch panel. A touch panel including a resistive layer formed on one of surfaces of a substrate and a frame-shaped electrode portion 21 provided along four sides of the resistive layer, wherein each side of the frame-shaped electrode portion 21 is constituted in a broken line pattern having a first split electrode 25a disposed on both ends respectively and a plurality of second split electrodes 25b disposed between the first split electrodes 25a, second resistance values R_i between the second split electrodes 25b are set to be equal to each other, and a first resistance value R_s between the first split electrode 25a and the second split electrode 25b which is adjacent to the first split electrode 25a is different from the second resistance value R_i.
    • 本发明提供能够有效地防止电位分布失真从而增加触摸面板的输入区域的触摸面板。 一种触摸面板,包括形成在基板的一个表面上的电阻层和沿着电阻层的四边设置的框状电极部分21,其中框状电极部分21的每一侧以虚线图案 具有设置在两端的第一分裂电极25a和设置在第一分离电极25a之间的多个第二分离电极25b,第二分割电极25b之间的第二电阻值R_i彼此相等,第一电阻 与第一分割电极25a相邻的第一分离电极25a与第二分割电极25b之间的值R_s与第二电阻值R_i不同。
    • 9. 发明授权
    • Method of detection of the contacting position in touch panel sensor
    • 检测触摸屏传感器接触位置的方法
    • US4897511A
    • 1990-01-30
    • US207616
    • 1988-06-16
    • Hisao ItayaKazuhiko AkebiMinoru Okabe
    • Hisao ItayaKazuhiko AkebiMinoru Okabe
    • G06F3/045G06F3/033
    • G06F3/045
    • In a method of detecting a contacting position using a touch panel, a pair of resistance layers formed on two substrates are opposed with a gap. At least one conduction member is provided on one edge of one of the resistance layers and another conduction member is provided on one edge of another resistance layer which extends in a direction perpendicular to the edge of said one of the resistance layer. A constant current source is connected to one conduction member so that when the resistance layers contact at a contacting position, a constant current flows from the conduction member of one of the resistance layers to the conduction member of said another resistance layer through the contacting point. Thus, the coordinate position of the contacting point can be detected by the voltage drops on the respective resistance layers.
    • 在使用触摸面板检测接触位置的方法中,形成在两个基板上的一对电阻层与间隙相对。 至少一个导电构件设置在一个电阻层的一个边缘上,另一导电构件设置在另一个电阻层的沿垂直于电阻层的边缘的方向延伸的一个边缘上。 恒流源连接到一个导电构件,使得当电阻层在接触位置接触时,恒定电流从电阻层之一的导电构件通过接触点流到所述另一个电阻层的导电构件。 因此,可以通过各个电阻层上的电压降来检测接触点的坐标位置。