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    • 61. 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
    • US20060038792A1
    • 2006-02-23
    • US11017860
    • 2004-12-22
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • G09G5/00
    • 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。
    • 62. 发明授权
    • Touch panel device
    • 触摸屏设备
    • US06911973B2
    • 2005-06-28
    • US09985527
    • 2001-11-05
    • Takashi KatsukiFumihiko NakazawaSatoshi SanoYuji Takahashi
    • Takashi KatsukiFumihiko NakazawaSatoshi SanoYuji Takahashi
    • G06F3/043G06F3/033G06F3/041G09G5/00
    • G06F3/0436
    • A touch panel device is provided that can detect a touched position with sufficient resolution and accuracy without requiring high accuracy in process for forming a piezoelectric thin film. In the middle portion of the glass substrate, a substantially rectangular touch area is provided. In the periphery of the touch area, plural transmission comb electrodes arranged along one of the neighboring sides of the touch area and plural reception comb electrodes arranged along the other of the neighboring sides make pairs. Surface acoustic wave signals propagate from the transmission comb electrodes to the reception comb electrodes in a slanting direction with respect to four sides of the touch area. The inside edge of the piezoelectric thin film is formed linearly along the sides of the touch area. Each of the comb electrodes 13 and 14 are arranged so that the line along the electrode finger of the transmission comb electrode and the line along the electrode finger of the reception comb electrode are non-parallel with each other in accordance with an angle of refraction of the surface acoustic wave at the boundary between the piezoelectric thin film and the touch area.
    • 提供一种能够以足够的分辨率和精确度检测触摸位置而不需要用于形成压电薄膜的高精度的触摸面板装置。 在玻璃基板的中间部分设置大致矩形的触摸区域。 在触摸区域的周围,沿着触摸区域的相邻侧布置的多个发送梳状电极和沿着相邻侧面布置的多个接收梳状电极成对。 表面声波信号相对于触摸区域的四个边沿倾斜方向从发送梳状电极传播到接收梳状电极。 压电薄膜的内边缘沿触摸区域的侧面线性地形成。 每个梳状电极13和14被布置成使得沿着传输梳状电极的电极指线的线和沿着接收梳状电极的电极指的线根据折射角不相互平行 在压电薄膜与触摸区域之间的边界处的声表面波。
    • 67. 发明申请
    • INSTRUMENT DEVICE
    • 仪器设备
    • US20120250280A1
    • 2012-10-04
    • US13518773
    • 2010-12-14
    • Satoshi SanoYuichiro NakamuraKatsuhito Umezawa
    • Satoshi SanoYuichiro NakamuraKatsuhito Umezawa
    • H05K7/06
    • B60K35/00B60K2350/1064G01D11/24
    • A meter device which can be mounted and removed easier than conventional meter devices. A meter device is provided with a display plate, a circuit board, a middle case which is disposed on the front surface side of the circuit board and on which the display plate is mounted, an upper case which is disposed on the front surface side of the middle case and through which the front surface can be seen, and a lower case which covers the middle case and the circuit board. A flange section which is sandwiched and held between the upper and lower cases is provided to the peripheral edge of the middle case. One of the upper case and the lower cases is provided with engagement sections, and engagement sections which engage with the engagement sections are provided to the other of cases so as to correspond to the engagement sections.
    • 可以比常规仪表装置更容易安装和拆卸的仪表装置。 仪表装置设置有显示板,电路板,中间壳体,其设置在电路板的前表面侧并且安装有显示板的上壳体设置在电路板的前表面侧 可以看到前表面的中间壳体和覆盖中间壳体和电路板的下壳体。 被夹持并保持在上壳体和下壳体之间的凸缘部分设置在中间壳体的周边边缘。 上壳体和下壳体中的一个设置有接合部分,并且与接合部分接合的接合部分被设置到另一个壳体中以对应于接合部分。
    • 69. 发明申请
    • INSPECTION METHOD AND PROGRAM STORAGE MEDIUM STORING THE METHOD
    • 检验方法和程序存储介质存储方法
    • US20090184729A1
    • 2009-07-23
    • US12358796
    • 2009-01-23
    • Satoshi SanoDaiki Kurihara
    • Satoshi SanoDaiki Kurihara
    • G01R31/02
    • G01R31/2891
    • Disclosed is an inspection method capable of performing an inspection of high reliability even for very fine and thin-film electrode pads of a target object, by using needle traces formed on the electrode pads and making the electrode pads repeatedly contact the probes at high accuracy. In the inspection method, under the control of a control unit 15 of an inspection apparatus 10, by using old needle traces formed on the respective pads P of the target object such as a semiconductor wafer W, contactable regions S for the probes 12A in preparation for a present inspection, so that each of the probes 12A contact each of the electrode pad P in the contactable region S and within an empty area with no needle trace.
    • 公开了一种能够通过使用形成在电极焊盘上的针迹并使电极焊盘以高精度反复接触探针的方式,即使对于目标物体的非常细小的薄膜电极焊盘也可以进行高可靠性的检查。 在检查方法中,在检查装置10的控制部15的控制下,通过使用形成在目标物体(例如半导体晶片W)的各个焊盘P上的旧针状迹线,准备探针12A的可接触区域S 为了进行现在的检查,使得每个探针12A接触可接触区域S中的电极焊盘P的每一个并且在没有针痕迹的空白区域内。
    • 70. 发明授权
    • Touch panel device
    • 触摸屏设备
    • US07230612B2
    • 2007-06-12
    • US10352857
    • 2003-01-29
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • Satoshi SanoTakashi KatsukiYuji TakahashiFumihiko Nakazawa
    • G09G5/00G06F3/043G06K11/06G08C21/00H01L41/04H01L41/18H02N2/00
    • G06F3/0436
    • Surface acoustic waves are propagated in a lower-left oblique direction and a lower-right oblique direction from an excitation element located on the upper side of a non-piezoelectric substrate and then received by receiving elements located on the left side and the right side, while surface acoustic waves are propagated in an upper-left oblique direction and an upper-right oblique direction from an excitation element located on the lower side of the non-piezoelectric substrate and then received by the receiving elements located on the left side and the right side. Based on the received results at the two receiving elements, a position of an object in contact with the non-piezoelectric substrate is detected. The sensitivity in a region near the diagonal, which is influenced largely by propagation loss of the surface acoustic waves, is improved by increasing the widths of the electrode fingers of the excitation elements and/or the receiving elements, the number of pairs of the electrode fingers, or the aperture width of comb-like electrodes, according to an increase in the propagation distances of the surface acoustic waves, i.e., toward the region near the diagonal.
    • 表面声波从位于非压电基板的上侧的激励元件沿左下斜方向和右下斜方向传播,然后由位于左侧和右侧的接收元件接收, 同时表面声波从位于非压电基板的下侧的激励元件沿左上方倾斜方向和右上斜方向传播,然后由位于左侧和右侧的接收元件接收 侧。 基于两个接收元件的接收结果,检测与非压电基板接触的物体的位置。 通过增加激发元件和/或接收元件的电极指的宽度,电极对的数量来改善受到表面声波的传播损耗很大影响的对角线附近区域的灵敏度 手指或梳状电极的孔径宽度,根据表面声波的传播距离的增加,即朝向对角线附近的区域的增加。