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    • 61. 发明申请
    • Connecting Conductive Layers Using In-Mould Lamination And Decoration
    • 连接导电层使用模内层压和装饰
    • US20130199915A1
    • 2013-08-08
    • US13367958
    • 2012-02-07
    • David Brent Guard
    • David Brent Guard
    • H03K17/975
    • G06F3/044H03K17/962
    • In one embodiment, a method for forming a touch sensor is provided. The method includes forming a plurality of electrodes on a first substrate. The plurality of electrodes are configured to form a plurality of capacitive nodes. Each capacitive node is configured to sense touch of an object proximate a touch sensing area of the substrate. The method further includes compressing together a plurality of conductive pads at least in part by applying a resin in liquid form to a first substrate, the resin being applied under pressure. A first one of the plurality of conductive pads had been formed on the first substrate. A second one of the plurality of conductive pads had been formed on a second substrate.
    • 在一个实施例中,提供了一种用于形成触摸传感器的方法。 该方法包括在第一基板上形成多个电极。 多个电极被配置为形成多个电容性节点。 每个电容性节点被配置为感测靠近基板的触摸感测区域的物体的触摸。 该方法还包括至少部分地通过将液体形式的树脂施加到第一基底来将多个导电垫压在一起,所述树脂在压力下施加。 多个导电焊盘中的第一个已经形成在第一基板上。 多个导电焊盘中的第二个已经形成在第二基板上。
    • 62. 发明申请
    • TOUCH PANEL STRUCTURE
    • 触控面板结构
    • US20130126327A1
    • 2013-05-23
    • US13543762
    • 2012-07-06
    • WEI-HSIANG WANGCHUAN-LANG LU
    • WEI-HSIANG WANGCHUAN-LANG LU
    • H03K17/975
    • G06F3/044G06F2203/04103H05K1/03H05K2201/0108
    • A touch panel structure is provided. The touch panel structure includes a sapphire substrate having a crystal axis, a crystal structure and a transmittance, wherein the crystal axis includes one selected from a group consisting of c-axis (0001), a-axis (1 210), a-axis (1 1 20), a-axis (2 110), a-axis ( 1120), a-axis ( 21 10), a-axis ( 12 10), m-axis ( 1010), m-axis ( 1100), m-axis (01 10), m-axis (10 10), m-axis (1 100), m-axis (0 110), r-axis (10 11), r-axis ( 101 1), r-axis (01 11), r-axis (0 11 1), r-axis (1 10 1) and r-axis ( 1101), the crystal structure is a single-crystal structure, and the transmittance is one of percentages larger than and equal to 80%; and a sensing module including a first sensing layer directly disposed on the sapphire substrate.
    • 提供触摸面板结构。 触摸面板结构包括具有晶轴,晶体结构和透射率的蓝宝石衬底,其中晶轴包括从由c轴(0001),a轴(1 210),a轴 (1120),a轴(2110),a轴(1210),m轴(1010),m轴(1100), ,m轴(0110),m轴(10 10),m轴(1100),m轴(1101),r轴(1011),r轴(1011),r 轴(01 11),r轴(0 11 1),r轴(110)和r轴(1101),晶体结构为单晶结构,透射率为百分比之一 大于等于80%; 以及感测模块,包括直接设置在蓝宝石衬底上的第一感测层。
    • 65. 发明申请
    • TOUCH PANEL HAVING CONDUCTIVE ZONE FOR AVOIDING FALSE OPERATION
    • 具有导电区域的触摸板防止操作失误
    • US20130043116A1
    • 2013-02-21
    • US13476126
    • 2012-05-21
    • PO-SHENG SHIHCHIEN-YUNG CHENG
    • PO-SHENG SHIHCHIEN-YUNG CHENG
    • H03K17/975
    • G06F3/044
    • A touch panel includes an insulating substrate, a transparent conductive layer, a number of electrodes, a number of conductive wires, and at least one conductive zone. The transparent conductive layer corresponding to a touch area of the touch panel is fixed on the insulating substrate. The electrodes are electrically connected to the transparent conductive layer. The conductive wires are electrically connected to a controller and are respectively electrically connected to the electrodes. The at least one conductive zone has two ends. One of the two ends of the at least one conductive zone is electrically connected to the controller. The at least one conductive zone and the conductive wires are disposed in a trace area of the touch panel at a distance.
    • 触摸面板包括绝缘基板,透明导电层,多个电极,多个导线以及至少一个导电区。 对应于触摸面板的触摸区域的透明导电层固定在绝缘基板上。 电极电连接到透明导电层。 导线电连接到控制器,并分别电连接到电极。 至少一个导电区具有两个端部。 至少一个导电区的两端之一电连接到控制器。 所述至少一个导电区和所述导电线一定距离设置在所述触摸面板的迹线区域中。
    • 66. 发明申请
    • POSITION DETECTION DEVICE
    • 位置检测装置
    • US20130026026A1
    • 2013-01-31
    • US13529500
    • 2012-06-21
    • Akio NISHIJIMA
    • Akio NISHIJIMA
    • H03K17/975
    • G01D5/2412
    • A shift lever, a shift knob provided on an upper end of the shift lever, an electrode portion provided on a lower end of the shift lever, an operation fulcrum rotatably supporting the shift lever, and a capacitive coupling sensor located in non-contact with the electrode portion are included. By a movement operation of the shift knob, the shift lever rotates and the electrode portion moves while keeping non-contact with a surface of the capacitive coupling sensor. The capacitive coupling sensor detects a position of the electrode portion on the basis of a capacitance change caused with movement of the electrode portion. By so doing, shift position information and trajectory information between each shift position can be obtained.
    • 变速杆,设置在变速杆的上端的变速杆,设置在变速杆的下端的电极部,可旋转地支撑变速杆的操作支点,以及位于与变速杆不接触的位置的电容耦合传感器 包括电极部分。 通过换档手柄的移动操作,变速杆旋转并且电极部分移动,同时保持与电容耦合传感器的表面不接触。 电容耦合传感器基于由电极部分的移动引起的电容变化来检测电极部分的位置。 通过这样做,可以获得每个换档位置之间的换档位置信息和轨迹信息。
    • 69. 发明申请
    • CONDUCTIVE SHEET, USAGE METHOD OF CONDUCTIVE SHEET AND CAPACITIVE TYPE TOUCH PANEL
    • 导电片,导电片和电容式触控面板的使用方法
    • US20120273336A1
    • 2012-11-01
    • US13511551
    • 2010-11-24
    • Tadashi Kuriki
    • Tadashi Kuriki
    • H05K1/02H03K17/975H05K1/11
    • G06F3/044G06F2203/04103G06F2203/04112H05K1/0298H05K2201/09245
    • Disclosed are a conductive sheet, a usage method of the conductive sheet and a capacitive type touch panel. For a first conductive sheet (10A), two or more conductive first large grids (14A) are formed atop a first transparent base (12A), wherein each first large grid (14A) is constituted by combining two or more small grids (18), and the shapes of facing sides of each first large grid (14A) are formed to alternate. For example, rectangular waveshapes of a first side portion (28a) of the first large grid (14A) and of a fourth side portion (28d) facing the first side portion (28a) are made to alternate, and rectangular waveshapes of a second side portion (28b) of the first large grid (14A) and of a third side portion (28c) facing the second side portion (28b) are made to alternate.
    • 公开了导电片,导电片和电容式触摸面板的使用方法。 对于第一导电片(10A),在第一透明基底(12A)的顶部形成两个或多个导电的第一大栅格(14A),其中每个第一大栅格(14A)通过组合两个或更多个小栅格(18), ,并且形成每个第一大格栅(14A)的面对侧的形状以交替。 例如,使第一大格栅(14A)的第一侧部(28a)和面向第一侧部(28a)的第四侧部(28d)的矩形波形交替,并且第二侧的矩形波形 使第一大格栅(14A)的部分(28b)和面对第二侧部(28b)的第三侧部(28c)交替。