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    • 1. 发明授权
    • Power transmitting apparatus, power receiving apparatus, and power transmission system
    • 电力传输装置,电力接收装置和电力传输系统
    • US08476789B2
    • 2013-07-02
    • US13192263
    • 2011-07-27
    • Keiichi IchikawaShinji GomaKazuya Kato
    • Keiichi IchikawaShinji GomaKazuya Kato
    • H01F27/42
    • H02J7/02H02J5/00H02J7/0044H02J7/025
    • A power transmitting apparatus has a power transmitting apparatus side active electrode provided within the casing thereof along a seat. A power transmitting apparatus side passive electrode is exposed on a backrest. A power receiving apparatus has a power receiving apparatus side active electrode formed along the bottom surface thereof. A power receiving apparatus side passive electrode is formed on the outer surface of the casing of the power receiving apparatus. By mounting the power receiving apparatus on a mounting portion of the power transmitting apparatus, the power receiving apparatus side active electrode faces the power transmitting apparatus side active electrode with a dielectric layer therebetween, and the power receiving apparatus side passive electrode is directly electrically connected to the power transmitting apparatus side passive electrode.
    • 动力传递装置具有沿着座椅设置在其壳体内的动力传递装置侧的有效电极。 动力传递装置侧被动电极暴露在靠背上。 电力接收装置具有沿其底面形成的受电装置侧的有效电极。 受电装置侧无源电极形成在电力接收装置的外壳的外表面上。 通过将电力接收装置安装在动力传递装置的安装部上,受电装置侧的有效电极面对动力传递装置侧的有源电极,其间具有介电层,受电装置侧的被动电极直接电连接到 电力传输装置侧无源电极。
    • 2. 发明申请
    • Power Transfer System and Noncontact Charging Device
    • 电力传输系统和非接触式充电装置
    • US20120146574A1
    • 2012-06-14
    • US13329630
    • 2011-12-19
    • Keiichi IchikawaHenri Bondar
    • Keiichi IchikawaHenri Bondar
    • H02J7/06H02J1/00
    • H02J50/05H02J7/025H02J50/70
    • A power transfer system includes a power transmission device, a power reception device and a capacitive coupling conductor. A high-voltage side conductor is formed near the upper surface of a casing of the power transmission device, and a low-voltage side conductor is formed near the lower or surrounding surface of the casing. The power transmission device includes an alternating voltage generating circuit. A high-voltage side conductor is formed near the lower surface of a casing of the power reception device, and a low-voltage side conductor is formed near the upper surface of the casing of the power reception device. The power reception device includes a load circuit. The high-voltage side conductors are capacitively coupled to each other when facing each other, and the low-voltage side conductors are capacitively coupled to each other via a capacitive coupling conductor.
    • 电力传输系统包括电力传输装置,电力接收装置和电容耦合导体。 在动力传递装置的壳体的上表面附近形成有高压侧导体,在壳体的下表面或周围的表面附近形成低压侧导体。 电力传输装置包括交流电压产生电路。 在受电装置的壳体的下表面附近形成高压侧导体,在受电装置的壳体的上表面附近形成低压侧导体。 电力接收装置包括负载电路。 高压侧导体在彼此面对时电容耦合,并且低压侧导体经由电容耦合导体彼此电容耦合。
    • 5. 发明授权
    • Gas sensor and gas sensor unit
    • 气体传感器和气体传感器单元
    • US06733644B2
    • 2004-05-11
    • US09818528
    • 2001-03-28
    • Hideaki YagiTakehiko SaikiKeiichi Ichikawa
    • Hideaki YagiTakehiko SaikiKeiichi Ichikawa
    • G01N2741
    • G01N27/4071
    • A gas sensor includes a sensor element formed of a solid electrolyte having an oxygen ion conductivity; a cathode and an anode, each formed of a porous metal material and each formed on the sensor element, to produce a pumping current reflecting a concentration of a detection component in a measurement gas when a predetermined voltage is applied between the cathode and the anode. The detection component contains oxygen. The measurement gas contacts the cathode. The gas sensor also includes a gas diffusion control to vary the oxygen pumping current in accordance with a pressure of the measurement gas by controlling a diffusion of the measurement gas. The measurement gas moves from a measurement atmosphere toward the cathode by way of the gas diffusion control. Thereby, information on the pressure of the measurement gas is obtained based on the oxygen pumping current.
    • 气体传感器包括由具有氧离子传导性的固体电解质形成的传感器元件; 阴极和阳极,每个由多孔金属材料形成,并且各自形成在传感器元件上,以在阴极和阳极之间施加预定电压时产生反映测量气体中的检测部件的浓度的泵浦电流。 检测组分含氧。 测量气体与阴极接触。 气体传感器还包括气体扩散控制,以通过控制测量气体的扩散来根据测量气体的压力来改变氧气泵送电流。 测量气体通过气体扩散控制从测量气氛向阴极移动。 由此,基于氧抽吸电流获得关于测量气体的压力的信息。
    • 7. 发明授权
    • Power transmitting device, power receiving device, and power transmission system
    • 电力传输装置,受电装置和电力传输系统
    • US09000621B2
    • 2015-04-07
    • US13493164
    • 2012-06-11
    • Keiichi IchikawaHenri Bondar
    • Keiichi IchikawaHenri Bondar
    • H01F38/00H01L41/107H02J5/00
    • H01L41/107H02J5/005H02J50/05H02J50/70
    • A power transmission system that includes a power transmitting device and a power receiving device. The power transmitting device includes a high-frequency voltage generator, a piezoelectric resonator, a power transmitting device side passive electrode, and a power transmitting device side active electrode. The power receiving device includes a piezoelectric resonator, a load, a power receiving device side passive electrode, and a power receiving device side active electrode. The active electrode of the power transmitting device and the active electrode of the power receiving device are in proximity with each other, whereby the power transmitting device and the power receiving device are capacitively coupled through the active electrodes and the surrounding dielectric medium.
    • 一种电力传输系统,包括电力传输装置和电力接收装置。 电力传输装置包括高频电压发生器,压电谐振器,电力传输装置侧无源电极和电力传输装置侧有源电极。 电力接收装置包括压电谐振器,负载,受电装置侧无源电极和受电装置侧有源电极。 电力传输装置的有源电极和受电装置的有源电极彼此靠近,由此电力传输装置和电力接收装置通过有源电极和周围的电介质电容耦合。
    • 8. 发明授权
    • Power transfer system and noncontact charging device
    • 电力传输系统和非接触充电装置
    • US08907617B2
    • 2014-12-09
    • US13329630
    • 2011-12-19
    • Keiichi IchikawaHenri Bondar
    • Keiichi IchikawaHenri Bondar
    • H02J7/00H02J7/02
    • H02J50/05H02J7/025H02J50/70
    • A power transfer system includes a power transmission device, a power reception device and a capacitive coupling conductor. A high-voltage side conductor is formed near the upper surface of a casing of the power transmission device, and a low-voltage side conductor is formed near the lower or surrounding surface of the casing. The power transmission device includes an alternating voltage generating circuit. A high-voltage side conductor is formed near the lower surface of a casing of the power reception device, and a low-voltage side conductor is formed near the upper surface of the casing of the power reception device. The power reception device includes a load circuit. The high-voltage side conductors are capacitively coupled to each other when facing each other, and the low-voltage side conductors are capacitively coupled to each other via a capacitive coupling conductor.
    • 电力传输系统包括电力传输装置,电力接收装置和电容耦合导体。 在动力传递装置的壳体的上表面附近形成有高压侧导体,在壳体的下表面或周围的表面附近形成低压侧导体。 电力传输装置包括交流电压产生电路。 在受电装置的壳体的下表面附近形成高压侧导体,在受电装置的壳体的上表面附近形成低压侧导体。 电力接收装置包括负载电路。 高压侧导体在彼此面对时电容耦合,并且低压侧导体经由电容耦合导体彼此电容耦合。
    • 10. 发明申请
    • HIGH-FREQUENCY POWER DEVICE, POWER TRANSMISSION DEVICE, AND POWER TRANSFER SYSTEM
    • 高频功率器件,电力传输器件和电力传输系统
    • US20130002048A1
    • 2013-01-03
    • US13568525
    • 2012-08-07
    • Keiichi IchikawaHenri Bondar
    • Keiichi IchikawaHenri Bondar
    • H02J1/00
    • H02J50/70H02J7/025H02J17/00H02J50/05H02J50/10H02J50/12H02M5/10H04B5/0012H04B5/0037
    • A power transfer system includes a power transmission device and a power reception device which are capacitively coupled to allow electrical conduction therethrough in the manner of alternating current. The power transmission device includes an active electrode, a passive electrode, a step-up transformer, and a high-frequency voltage generating circuit. The power reception device includes an active electrode, a passive electrode, and a load circuit. A divider for voltage division based on load capacitances (C1 and C2) is provided between the active electrode and the passive electrode. The active electrode and the passive electrode have respective equivalent capacitances to ground (Ca and Cp) relative to the ground potential. A ground leakage current Ig is minimized by adjusting the values of the respective capacitances in an equivalent circuit so as to satisfy the relationship: C2/C1=Cp/Ca.
    • 电力传输系统包括功率传输装置和电力接收装置,其被电容耦合以允许以交流方式通过电导通。 动力传递装置包括有源电极,无源电极,升压变压器和高频电压发生电路。 电力接收装置包括有源电极,无源电极和负载电路。 在有源电极和被动电极之间提供基于负载电容(C1和C2)的分压器。 有源电极和无源电极具有相对于地电位的相应等效电容(Ca和Cp)。 通过调整等效电路中的各个电容的值来使接地漏电流Ig最小化,以满足关系:C2 / C1 = Cp / Ca。