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    • 23. 发明申请
    • PROBE POLISHING METHOD, PROGRAM THEREFOR, AND PROBE APPARATUS
    • 探针抛光方法,程序和探针装置
    • US20100048099A1
    • 2010-02-25
    • US12545184
    • 2009-08-21
    • Hideaki TANAKASatoshi Sano
    • Hideaki TANAKASatoshi Sano
    • B24B51/00B24B49/12B24B1/00
    • G01R3/00G01R1/07342
    • A probe polishing method is provided for polishing probes by brining a polishing member into slide-contact with probes through a mounting table having thereon the polishing member transferred from a first receiving part. The probe polishing method includes transferring the polishing member from the first receiving part to the mounting table; detecting a presence of foreign materials on a top surface of the polishing member mounted on the mounting table; transferring the polishing member from the mounting table to a second receiving part when the foreign materials are detected on the top surface of the polishing member; removing the foreign materials from the polishing member in the second receiving part; and transferring the polishing member from which the foreign materials are removed from the second receiving part to the first receiving part.
    • 提供了一种用于抛光探针的探针抛光方法,所述探针抛光方法通过将抛光构件通过其上具有从第一接收部分转移的抛光构件的安装台与探针滑动接触而进行抛光。 探针研磨方法包括:将研磨部件从第一容纳部转移到安装台; 检测在安装在所述安装台上的所述抛光部件的上表面上存在异物; 当抛光部件的上表面上检测到异物时,将抛光部件从安装台传送到第二接收部件; 从第二接收部分中的抛光部件移除异物; 以及将从所述第二接收部移除所述异物的所述抛光部件传送到所述第一接收部。
    • 26. 发明申请
    • Touch panel device and method for manufacturing touch panel devices
    • 触摸屏设备和触摸屏设备制造方法
    • US20080316187A1
    • 2008-12-25
    • US12222405
    • 2008-08-08
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • G06F3/041
    • G06F3/0436
    • Each of transducers of a touch panel device includes a piezoelectric thin film, a plate electrode disposed at one surface of the piezoelectric thin film and a comb-like electrode disposed at the other surface of the piezoelectric thin film. The comb-like electrode has a plurality of comb-like electrode fingers and a linear bus electrode to which one end of each of the plural comb-like electrode fingers is connected. A plurality of wiring electrodes is provided at the outer side of any of the transducers in parallel with the bus electrode of the transducer and is connected to the bus electrode and the plate electrode of any of the transducers. Each of the wiring electrodes includes an electrode base portion formed by printing silver paste containing fine particles on the substrate and an electrode main body formed by printing silver paste containing large particles and fine particles in a mixed manner on the electrode base portion.
    • 触摸面板装置的每个换能器包括压电薄膜,设置在压电薄膜的一个表面的平板电极和设置在压电薄膜的另一个表面上的梳状电极。 梳状电极具有连接多个梳状电极指的一端的多个梳状电极指和线性总线电极。 多个布线电极设置在与换能器的总线电极并联的任何换能器的外侧,并且连接到任何换能器的总线电极和平板电极。 每个布线电极包括通过在基板上印刷含有微粒的银浆而形成的电极基体部分和通过将含有大颗粒和细颗粒的银膏以混合的方式印刷在电极基体上而形成的电极主体。
    • 27. 发明授权
    • Touch panel device
    • 触摸屏设备
    • US07324096B2
    • 2008-01-29
    • US10277963
    • 2002-10-23
    • Fumihiko NakazawaSatoshi SanoYoshio SatohTakashi Matsuda
    • Fumihiko NakazawaSatoshi SanoYoshio SatohTakashi Matsuda
    • G06F3/041G06F3/043H01L27/20H01L41/00H02N2/00
    • G06F3/0436
    • A plurality of excitation elements, each including an IDT and a piezoelectric film, for exciting, respectively, surface acoustic waves, each having a unique center frequency, are formed on one end of a non-piezoelectric substrate, a plurality of receiving elements, each including an IDT and a piezoelectric film, for receiving, respectively, surface acoustic waves, each having a unique center frequency, are formed on the other end of the non-piezoelectric substrate to face the excitation elements, respectively, the center frequencies of the IDTs of the facing excitation element and receiving element are equal, the center frequencies of the IDTs of the excitation elements next to each other are different, and surface acoustic waves are propagated across the non-piezoelectric substrate, between the facing excitation elements and receiving elements so as to detect the position of an object in contact with the non-piezoelectric substrate, based on received results in the receiving elements.
    • 在非压电基板的一端形成有多个分别包括IDT和压电膜的激励元件,分别用于激励分别具有唯一中心频率的表面声波,多个接收元件 分别在非压电基片的另一端分别形成分别具有独特中心频率的声表面波的IDT和压电薄膜,以分别面对激励元件,IDT的中心频率 面对的激励元件和接收元件相等时,彼此相邻的激励元件的IDT的中心频率不同,并且表面声波在非压电基板之间,在相对的激励元件和接收元件之间传播,所以 以便基于接收元件中的接收结果检测与非压电基片接触的物体的位置。