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    • 1. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20080238817A1
    • 2008-10-02
    • US12026580
    • 2008-02-06
    • Norio MambaTsutomu FuruhashiShinichi Komura
    • Norio MambaTsutomu FuruhashiShinichi Komura
    • G09G3/20
    • G09G3/3648G09G2300/0443G09G2300/0465G09G2310/0297
    • In a display device, pixel electrodes I, II and III corresponding to color filters R, G and B are coupled to TFTs which are turned on in accordance with signals on gate lines G, and the drain (source) of the TFT coupled to the pixel electrode II is connected with the source (drain) of the TFT coupled to the pixel electrode III. A signal voltage is written in the pixel electrode I when the gate line G1a is in the “on” state, a signal voltage is written in the pixel electrode II when the gate line G1b is in the “on” state, and a signal voltage is written in the pixel electrode III when the gate lines G1a and G1b are both in the “on” state. Signal voltages are written in the pixel electrodes III, I and II in this order mentioned.
    • 在显示装置中,对应于滤色器R,G和B的像素电极I,II和III被耦合到根据栅极线G上的信号导通的TFT,并且连接到栅极线G的TFT的漏极(源极) 像素电极II与耦合到像素电极III的TFT的源极(漏极)连接。 当栅极线G1a处于“导通”状态时,信号电压被写入像素电极I,当栅极线G1b处于“导通”状态时,信号电压被写入像素电极II, 并且当栅极线G1a和G1b都处于“接通”状态时,信号电压被写入像素电极III。 信号电压按照上述顺序写入像素电极III,I和II。
    • 2. 发明授权
    • Display device
    • 显示设备
    • US08654069B2
    • 2014-02-18
    • US12026580
    • 2008-02-06
    • Norio MambaTsutomu FuruhashiShinichi Komura
    • Norio MambaTsutomu FuruhashiShinichi Komura
    • G09G3/36G09G3/20
    • G09G3/3648G09G2300/0443G09G2300/0465G09G2310/0297
    • In a display device, pixel electrodes I, II and III corresponding to color filters R, G and B are coupled to TFTs which are turned on in accordance with signals on gate lines G, and the drain (source) of the TFT coupled to the pixel electrode II is connected with the source (drain) of the TFT coupled to the pixel electrode III. A signal voltage is written in the pixel electrode I when the gate line G1a is in the “on” state, a signal voltage is written in the pixel electrode II when the gate line G1b is in the “on” state, and a signal voltage is written in the pixel electrode III when the gate lines G1a and G1b are both in the “on” state. Signal voltages are written in the pixel electrodes III, I and II in this order mentioned.
    • 在显示装置中,对应于滤色器R,G和B的像素电极I,II和III被耦合到根据栅极线G上的信号导通的TFT,并且连接到栅极线G的TFT的漏极(源极) 像素电极II与耦合到像素电极III的TFT的源极(漏极)连接。 当栅极线G1a处于“导通”状态时,信号电压被写入像素电极I,当栅极线G1b处于“导通”状态时,信号电压被写入像素电极II,信号电压 当栅极线G1a和G1b都处于“接通”状态时被写入像素电极III。 信号电压按照上述顺序写入像素电极III,I和II。
    • 4. 发明授权
    • Electrostatic capacity touch panel having a plurality of first, second and third electrodes
    • 具有多个第一,第二和第三电极的静电容量触摸面板
    • US08537125B2
    • 2013-09-17
    • US12496826
    • 2009-07-02
    • Norio MambaTsutomu FuruhashiKouichi Anno
    • Norio MambaTsutomu FuruhashiKouichi Anno
    • G06F3/041G06F3/045G06F3/044
    • G06F3/044
    • A display device having an electrostatic capacity touch panel includes: X electrodes XP and Y electrodes YP which intersect each other via a first insulating layer; and a plurality of Z electrodes disposed in a floating state via a second insulating layer. For the second insulating layer, a material such as an elastic insulating material which changes in thickness by pressing of touch is used. The Z electrode is disposed so as to overlap both one of the X electrodes and one of the Y electrodes. A pad part of the X electrode has a largest area in the vicinity of a thin line part of the X electrode, and a smallest area in the vicinity of the thin line part of the adjacent X electrode. An area of the pad part is reduced as the pad part departs from the thin line part of the X electrode.
    • 具有静电电容触摸面板的显示装置具有经由第一绝缘层相交的X电极XP,Y电极YP, 以及经由第二绝缘层以浮置状态设置的多个Z电极。 对于第二绝缘层,使用通过按压触摸而改变厚度的诸如弹性绝缘材料的材料。 Z电极配置成与X电极和Y电极中的一个重叠。 X电极的焊盘部分在X电极的细线部分附近具有最大面积,并且在相邻X电极的细线部分附近具有最小的面积。 当焊盘部分离开X电极的细线部分时,焊盘部分的区域减小。
    • 5. 发明授权
    • Display panel
    • 显示面板
    • US08199127B2
    • 2012-06-12
    • US12353296
    • 2009-01-14
    • Norio MambaTsutomu FuruhashiHideo Sato
    • Norio MambaTsutomu FuruhashiHideo Sato
    • G06F3/045
    • G06F3/044
    • A display panel is provided having a capacitive touch panel over a display region, wherein the capacitive touch panel comprises a plurality of X electrodes and a plurality of Y electrodes formed with an insulating layer there between and in a manner to cross each other, each of the X electrodes and the Y electrodes is formed such that a pad portion and a narrow line portion are alternately placed in a direction of extension, and when viewed from top, the pad portion of the X electrode and the pad portion of the Y electrode are placed to not overlap each other and a dummy electrode which is in a floating relationship with the X electrode and the Y electrode is formed between the pad portion of the X electrode and the pad portion of the Y electrode.
    • 提供了一种在显示区域上具有电容式触摸面板的显示面板,其中电容触摸面板包括多个X电极和多个Y电极,其间形成有绝缘层,并且以彼此交叉的方式彼此交叉 X电极和Y电极形成为使得焊盘部分和窄线部分沿着延伸方向交替放置,并且当从顶部观察时,X电极的焊盘部分和Y电极的焊盘部分是 放置成不重叠,并且在X电极的焊盘部分和Y电极的焊盘部分之间形成与X电极和Y电极成浮动关系的虚拟电极。
    • 6. 发明授权
    • On-screen input image display system
    • 屏幕输入图像显示系统
    • US08081168B2
    • 2011-12-20
    • US12261077
    • 2008-10-30
    • Norio MambaTsutomu FuruhashiToshiyuki KumagaiMasayoshi Kinoshita
    • Norio MambaTsutomu FuruhashiToshiyuki KumagaiMasayoshi Kinoshita
    • G06F3/044G06F3/045
    • G06F3/044
    • A detection resolution is improved in a display device that employs an electrostatic capacity coupling type touch panel provided with a transparent conductive film serving as a detection film. A plurality of electrode terminals (102) is provided such that at least three electrode terminals (102) are aligned in each side of a detection transparent conductive film (101). A touch panel control circuit is provided for selecting one of two to four numbers of electrode terminals from among the plurality of electrode terminals (102) of the detection transparent conductive film (101), applying an AC signal provided from a signal source (105) through a current detection resistor (r) (103), and then detecting a current that flows through each of the selected electrode terminals.
    • 在采用设置有用作检测膜的透明导电膜的静电电容耦合型触摸面板的显示装置中,检测分辨率得到改善。 提供多个电极端子(102),使得至少三个电极端子(102)在检测透明导电膜(101)的每一侧对齐。 提供一种触摸面板控制电路,用于从检测用透明导电膜(101)的多个电极端子(102)中选择2〜4个电极端子之一,施加从信号源(105)提供的AC信号, 通过电流检测电阻(r)(103),然后检测流过每个所选择的电极端子的电流。
    • 7. 发明申请
    • Screen Input-Type Image Display System
    • 屏幕输入型图像显示系统
    • US20100007628A1
    • 2010-01-14
    • US12499831
    • 2009-07-09
    • Takuya ERIGUCHIYasuyuki KudoNorio MambaTsutomu FuruhashiHideo Sato
    • Takuya ERIGUCHIYasuyuki KudoNorio MambaTsutomu FuruhashiHideo Sato
    • G06F3/045
    • G06F3/045
    • A touch sensor (3) comprises a plurality of X-coordinate electrodes, a plurality of Y-coordinate electrodes placed crossing the X-coordinate electrodes with an insulating layer therebetween, a plurality of X-coordinate auxiliary electrodes which are extended from X-coordinate electrodes, and a plurality of Y-coordinate auxiliary electrodes which are extended from Y-coordinate electrodes, the plurality of X and Y-coordinate electrodes being placed in a two-dimensional matrix form on a display surface of a display device (1) for detecting a change of capacitance due to pressing. A detection circuit (4) which detects a change in capacitance of the touch sensor (3), an analog-to-digital converter (5) which converts a detection output of the detection circuit (4) into digital data, a touch panel control circuit (6) which determines a touched coordinate, and a primary control circuit (7) which receives input of touch coordinate data from the touch panel control circuit (6) are provided.
    • 触摸传感器(3)包括多个X坐标电极,在X坐标电极之间与绝缘层交叉的多个Y坐标电极,从X坐标延伸的多个X坐标辅助电极 电极和从Y坐标电极延伸的多个Y坐标辅助电极,所述多个X和Y坐标电极以二维矩阵形式放置在显示装置(1)的显示表面上,用于 检测由于按压引起的电容变化。 一种检测触摸传感器(3)的电容变化的检测电路(4),将检测电路(4)的检测输出转换为数字数据的模数转换器(5),触摸面板控制 确定触摸坐标的电路(6)和从触摸面板控制电路(6)接收触摸坐标数据的输入的主控制电路(7)。