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    • 1. 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。
    • 2. 发明申请
    • TOUCH PANEL AND METHOD OF DETECTING PRESS OPERATION POSITION THEREON
    • 触摸面板及其检测操作位置的方法
    • US20100207907A1
    • 2010-08-19
    • US12768203
    • 2010-04-27
    • Koji TANABEHirotoshi WatanabeHidetoshi HiraokaKenichi Matsumoto
    • Koji TANABEHirotoshi WatanabeHidetoshi HiraokaKenichi Matsumoto
    • G06F3/045
    • 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。
    • 3. 发明申请
    • TOUCH PANEL AND METHOD OF MANUFACTURING THE SAME
    • 触控面板及其制造方法
    • US20070273568A1
    • 2007-11-29
    • US11746762
    • 2007-05-10
    • Shoji FujiiKenichi MatsumotoKoji Tanabe
    • Shoji FujiiKenichi MatsumotoKoji Tanabe
    • H03M1/66
    • G06F3/045Y10S323/904Y10T428/31504
    • A touch panel includes a light-transmittable upper substrate, a light-transmittable upper resistor layer on a lower surface of the upper substrate, a light-transmittable lower substrate, a light-transmittable lower resistor layer on an upper surface of the lower substrate, an adhesive layer on an upper surface of the upper substrate, and a light-transmittable plate on the adhesive layer. The upper substrate is made of material having oxygen and nitrogen removed therefrom. The lower resistor layer faces the upper resistor layer by a distance. The light-transmittable plate disables oxygen and nitrogen to pass through the plate substantively. Even being used in high temperatures, this touch panel does not produce an air bubble in the adhesive layer, hence allowing a user to clearly view a display device through the touch panel.
    • 触摸面板包括可透光上层基板,在上基板的下表面上的可透光上电阻层,可透光下基板,在下基板的上表面上的可透光下电阻层, 在上基板的上表面上的粘合剂层和粘合剂层上的可透光板。 上基板由从其中除去氧和氮的材料制成。 下电阻层面向上电阻层一段距离。 透光板禁止氧气和氮气通过板材。 即使在高温下使用,该触摸面板也不会在粘合剂层中产生气泡,因此允许用户通过触摸面板清楚地观看显示装置。
    • 4. 发明授权
    • Touch panel and method of detecting press operation position thereof
    • 触摸面板及其操作位置检测方法
    • US08441461B2
    • 2013-05-14
    • US12685143
    • 2010-01-11
    • Koji TanabeKenichi Matsumoto
    • Koji TanabeKenichi Matsumoto
    • G06F3/041
    • G06F3/045
    • In a touch panel, upper conductive layers on a bottom surface of an upper substrate and lower conductive layers on a top surface of a lower substrate are formed in belt shapes and extend in directions intersecting each other. End portions of the upper conductive layers are connected by an upper resistive layer, and end portions of the lower conductive layers are connected by a lower resistive layer. Then, a voltage is applied between ends of the lower resistive layer and the upper resistive layer sequentially, and voltages at the end portions of the upper resistive layer and the lower resistive layer are detected. Pressed positions can be detected with such a simple configuration.
    • 在触摸面板中,上基板的底面上的上导电层和下基板的上表面的下导电层形成为带状并且在彼此相交的方向上延伸。 上导电层的端部通过上电阻层连接,下导电层的端部通过下电阻层连接。 然后,依次在下阻性层和上电阻层的端部之间施加电压,并检测上电阻层和下电阻层的端部处的电压。 可以用这样简单的配置来检测按压位置。
    • 5. 发明授权
    • Touch panel and method of manufacturing the same
    • 触摸面板及制造方法相同
    • US07820294B2
    • 2010-10-26
    • US11746762
    • 2007-05-10
    • Shoji FujiiKenichi MatsumotoKoji Tanabe
    • Shoji FujiiKenichi MatsumotoKoji Tanabe
    • B32B33/00
    • G06F3/045Y10S323/904Y10T428/31504
    • A touch panel includes a light-transmittable upper substrate, a light-transmittable upper resistor layer on a lower surface of the upper substrate, a light-transmittable lower substrate, a light-transmittable lower resistor layer on an upper surface of the lower substrate, an adhesive layer on an upper surface of the upper substrate, and a light-transmittable plate on the adhesive layer. The upper substrate is made of material having oxygen and nitrogen removed therefrom. The lower resistor layer faces the upper resistor layer by a distance. The light-transmittable plate disables oxygen and nitrogen to pass through the plate substantively. Even being used in high temperatures, this touch panel does not produce an air bubble in the adhesive layer, hence allowing a user to clearly view a display device through the touch panel.
    • 触摸面板包括可透光上层基板,在上基板的下表面上的可透光上电阻层,可透光下基板,在下基板的上表面上的可透光下电阻层, 在上基板的上表面上的粘合剂层和粘合剂层上的可透光板。 上基板由从其中除去氧和氮的材料制成。 下电阻层面向上电阻层一段距离。 透光板禁止氧气和氮气通过板材。 即使在高温下使用,该触摸面板也不会在粘合剂层中产生气泡,因此允许用户通过触摸面板清楚地观看显示装置。
    • 6. 发明授权
    • Touch panel
    • 触控面板
    • US07297887B2
    • 2007-11-20
    • US11368771
    • 2006-03-06
    • Kenichi MatsumotoKoji TanabeShoji Fujii
    • Kenichi MatsumotoKoji TanabeShoji Fujii
    • H01H9/00
    • G06F3/045
    • A touch panel which is constituted by using an adhesive layer having a thickness which is 70% or more of a thickness of an approximately picture-frame-like spacer which allows respective outer peripheries of an upper substrate and a lower substrate to adhere to each other is provided. Due to such a constitution, when the touch panel is used under high temperature or in an environment where the temperature difference is severely large so that the thermal expansion or shrinkage is generated on upper substrate or lower substrate, these thermal expansion and shrinkage can be absorbed by the thick and soft adhesive layer. As a result, it is possible to suppress the peeling-off of upper and lower substrates thus realizing a surely manipulable touch panel.
    • 一种触摸面板,其通过使用厚度为70%以上的粘合剂层,其厚度大致为相似于框架的间隔件,其允许上基板和下基板的外周彼此粘附 被提供。 由于这样的结构,当触摸面板在高温下或在温度差严重大的环境中使用,从而在上基板或下基板上产生热膨胀或收缩时,可以吸收这些热膨胀和收缩 通过厚而软的粘合剂层。 结果,可以抑制上下基板的剥离,从而实现可靠操作的触摸面板。
    • 7. 发明申请
    • Touch panel
    • 触控面板
    • US20070046652A1
    • 2007-03-01
    • US11508434
    • 2006-08-23
    • Shoji FujiiKoji TanabeKenichi Matsumoto
    • Shoji FujiiKoji TanabeKenichi Matsumoto
    • G09G5/00
    • G02F1/13338G02F2001/133638
    • A touch panel including a light-transmissive upper substrate, a light-transmissive lower substrate, an upper wave plate, a polarizing plate, a lower wave plate, and a first cover layer. An upper conductive layer is formed at a lower face of the upper substrate, and a lower conductive layer is formed at a top face of the lower substrate. This lower conductive layer is formed facing the upper conductive layer with a predetermined space in between. The upper wave plate is formed at a top face of the upper substrate. The polarizing plate is formed at a top face of the upper wave plate. The lower wave plate is formed at a lower face of the lower substrate. The first cover layer is formed at a lower face of the lower wave plate. This structure offers a touch panel which is resistant to damage to the lower wave plate and provides good viewability.
    • 一种触摸面板,包括透光上基板,透光下基板,上波片,偏振片,下波片和第一覆盖层。 在上基板的下表面形成上导电层,在下基板的顶面形成下导电层。 该下导电层形成为面对上导电层,其间具有预定的间隔。 上波片形成在上基板的顶面。 偏振片形成在上波片的顶面。 下波片形成在下基板的下表面。 第一覆盖层形成在下波片的下表面。 该结构提供了触摸面板,其能够抵抗对下波片的损坏并且提供良好的可视性。
    • 8. 发明授权
    • Touch panel
    • 触控面板
    • US08773385B2
    • 2014-07-08
    • US13589594
    • 2012-08-20
    • Kenichi MatsumotoKoji Tanabe
    • Kenichi MatsumotoKoji Tanabe
    • G06F3/041H05K1/00
    • G06F3/044
    • A touch panel includes an upper substrate, upper conductive layers on an upper surface of the upper substrate, a lower substrate having an upper surface facing a lower surface of the upper substrate, lower conductive layers provided on the upper surface of the lower substrate, and an adhesive layer bonding the lower surface of the upper substrate to the upper surface of the lower substrate. The adhesive layer is curable with ultraviolet ray. This touch panel prevents adhesive from being attached and having a pressing mark, thus being operated easily.
    • 触摸面板包括上基板,上基板的上表面上的上导电层,下基板,具有面向上基板的下表面的上表面,设置在下基板的上表面的下导电层,以及 将上基板的下表面粘接到下基板的上表面的粘合层。 粘合剂层可用紫外线固化。 该触摸面板防止粘合剂附着并具有按压标记,因此容易操作。
    • 9. 发明授权
    • Touch panel
    • 触控面板
    • US07679609B2
    • 2010-03-16
    • US11533146
    • 2006-09-19
    • Kenichi MatsumotoKoji Tanabe
    • Kenichi MatsumotoKoji Tanabe
    • G09G5/00
    • G06F3/045
    • A touch panel including a substrate body having a wave plate, a first elastic layer and a first substrate, a second substrate facing to the substrate body, a first conductive layer, a second conductive layer, a second elastic layer and a polarizing plate. A first conductive layer is formed at a face, which is a side of the second substrate, of the substrate body. A second conductive layer is formed at a face of the second substrate and faces the first conductive layer with a predetermined space therebetween. The second elastic layer is formed at a face, which is an opposite side of the first conductive layer, of the substrate body. The polarizing plate is formed at a face, which is an opposite side of the second substrate, of the second elastic layer. This structure offers a touch panel which is resistant to crack or damage to the first conductive layer that may occur when an end of the touch panel is pressed, and provides reliable operation and good viewability.
    • 一种触摸面板,包括具有波片的基板主体,第一弹性层和第一基板,面向基板主体的第二基板,第一导电层,第二导电层,第二弹性层和偏振片。 第一导电层形成在基板主体的位于第二基板的一侧的面上。 第二导电层形成在第二基板的表面,并且在第一导电层之间具有预定的间隔。 第二弹性层形成在基板主体的与第一导电层相反的一侧的面上。 偏振片形成在第二弹性层的与第二基板相反的一侧的面上。 该结构提供了一种触摸面板,其能够抵抗当触摸面板的一端被按压时可能发生的第一导电层的破裂或损坏,并提供可靠的操作和良好的可视性。
    • 10. 发明申请
    • INPUT DEVICE
    • 输入设备
    • US20080204611A1
    • 2008-08-28
    • US12017492
    • 2008-01-22
    • Kenichi MatsumotoKoji Tanabe
    • Kenichi MatsumotoKoji Tanabe
    • G02F1/13
    • G06F3/045G02F1/13338G02F2001/133635G02F2001/133638
    • According to the input device of the present invention, phase-difference plate (11) with ¼ wavelength is disposed on the top surface of upper substrate (1) of touch panel (12). As a result of passing through phase-difference plate (11), lamplight 9a that illuminates LCD element (8) goes outside as outgoing-light 9c with a phase-shift of ¼ wavelength. With the structure above, a user wearing polarized sunglasses—even if they have an absorption axis in a direction the same as that of lamplight 9a—can easily recognize the displays shown by LCD element (8) on the back surface of touch panel (12). The structure offers a user-friendly input device with good visibility of LCD element (8).
    • 根据本发明的输入装置,在触摸面板(12)的上基板(1)的上表面配置有1/4波长的相位差板(11)。 作为通过差分板(11)的结果,照亮LCD元件(8)的照明器9a将以波长为1/4的相移作为输出光9c进入外部。 利用上述结构,佩戴偏光太阳眼镜的用户 - 即使它们具有与灯光9a相同的方向上的吸收轴,也可以容易地识别LCD元件(8)在触摸面板的背面上显示的显示( 12)。 该结构提供了一个用户友好的输入设备,具有良好的LCD元件(8)的可视性。