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    • 3. 发明申请
    • Capacitor device
    • 电容器
    • US20060262482A1
    • 2006-11-23
    • US11433774
    • 2006-05-15
    • Koichi YamamotoMakoto KawaharaNaoyuki AbeMasaru ImaiKiyotaka Hanaoka
    • Koichi YamamotoMakoto KawaharaNaoyuki AbeMasaru ImaiKiyotaka Hanaoka
    • H01G4/38
    • H01G9/14H01G9/008H01G9/06
    • The present invention provides a capacitor device including a plurality of capacitor elements adjacent to each other along an axial direction are electrically connected to each other by fitting between a first terminal of one capacitor element and a second terminal of the other capacitor element, a intermediate plate allows the terminals fitted to each other between the capacitor elements adjacent to each other along the axial direction to penetrate through and positions these capacitor elements, an upper plate is electrically connected to the terminals of capacitor elements arranged on one end portion in the axial direction, a lower plate is electrically connected to the terminals of capacitor elements arranged on the other end portion in the axial direction, and all the capacitor elements are held in place by being sandwiched between the upper plate and the lower plate.
    • 本发明提供一种电容器装置,其包括沿着轴向彼此相邻的多个电容器元件,通过装配在一个电容器元件的第一端子和另一个电容器元件的第二端子之间彼此电连接,中间板 允许沿着轴向彼此相邻的电容器元件之间彼此配合的端子穿透并定位这些电容器元件,上板电连接到沿轴向布置在一个端部的电容器元件的端子, 下板电连接到沿轴向设置在另一端部的电容器元件的端子,并且所有电容器元件通过夹在上板和下板之间而保持就位。
    • 7. 发明授权
    • Capacitor device
    • 电容器
    • US07369397B2
    • 2008-05-06
    • US11433774
    • 2006-05-15
    • Koichi YamamotoMakoto KawaharaNaoyuki AbeMasaru ImaiKiyotaka Hanaoka
    • Koichi YamamotoMakoto KawaharaNaoyuki AbeMasaru ImaiKiyotaka Hanaoka
    • H01G5/38H01G9/00
    • H01G9/14H01G9/008H01G9/06
    • The present invention provides a capacitor device including a plurality of capacitor elements adjacent to each other along an axial direction are electrically connected to each other by fitting between a first terminal of one capacitor element and a second terminal of the other capacitor element, a intermediate plate allows the terminals fitted to each other between the capacitor elements adjacent to each other along the axial direction to penetrate through and positions these capacitor elements, an upper plate is electrically connected to the terminals of capacitor elements arranged on one end portion in the axial direction, a lower plate is electrically connected to the terminals of capacitor elements arranged on the other end portion in the axial direction, and all the capacitor elements are held in place by being sandwiched between the upper plate and the lower plate.
    • 本发明提供一种电容器装置,其包括沿着轴向彼此相邻的多个电容器元件,通过装配在一个电容器元件的第一端子和另一个电容器元件的第二端子之间彼此电连接,中间板 允许沿着轴向彼此相邻的电容器元件之间彼此配合的端子穿透并定位这些电容器元件,上板电连接到沿轴向布置在一个端部的电容器元件的端子, 下板电连接到沿轴向设置在另一端部的电容器元件的端子,并且所有电容器元件通过夹在上板和下板之间而保持就位。
    • 10. 发明申请
    • INPUT DETECTION DEVICE
    • 输入检测装置
    • US20130069619A1
    • 2013-03-21
    • US13619129
    • 2012-09-14
    • Tomokuni WaukeKoichi Yamamoto
    • Tomokuni WaukeKoichi Yamamoto
    • H01F38/00
    • H01F38/20
    • When a first driving signal is applied from a waveform output unit, detection current with a high frequency than a natural frequency of a vibrator is applied to a coil of a vibration generation unit. When the current fluctuates, induction power due to a counter-electromotive force is inducted to a external casing of the vibration generation unit. The induction power is changed in an input unit, and when a level of an output due to the change thereof greatly fluctuates, a second driving signal is output from the waveform output unit, and logical sum of the first driving signal and the second driving signal is applied to a driving circuit. At this time, a vibration current flows to the coil, and the vibrator vibrates by the natural frequency.
    • 当从波形输出单元施加第一驱动信号时,将具有高于振动器的固有频率的高频的检测电流施加到振动发生单元的线圈。 当电流波动时,由于反电动势引起的感应电力被引入振动发生单元的外壳。 感应电源在输入单元中变化,当由于其变化引起的输出电平极大地波动时,从波形输出单元输出第二驱动信号,并且第一驱动信号和第二驱动信号的逻辑和 被施加到驱动电路。 此时,振动电流流向线圈,振动器以固有频率振动。