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    • 41. 发明授权
    • Capacitance element and resonance circuit
    • 电容元件和谐振电路
    • US08884720B2
    • 2014-11-11
    • US12845404
    • 2010-07-28
    • Masayoshi KannoNoritaka Sato
    • Masayoshi KannoNoritaka Sato
    • H03H7/00H01G4/005
    • H01G4/005
    • A capacitance element includes a first electrode, a second electrode, a third electrode, a fourth electrode, a first dielectric portion, a second dielectric portion, and a third dielectric portion. To the first electrode, a signal having a first polarity is applied. To the second electrode, a signal having a second polarity is applied. The second polarity is opposite to the first polarity. To the third electrode, the signal having the second polarity is applied. The third electrode is disposed on a position opposed to the second electrode. To the fourth electrode, the signal having the first polarity is applied. The first dielectric portion is provided between the first electrode and the second electrode. The second dielectric portion is provided between the second electrode and the third electrode. The third dielectric portion is provided between the third electrode and the fourth electrode.
    • 电容元件包括第一电极,第二电极,第三电极,第四电极,第一电介质部分,第二电介质部分和第三电介质部分。 向第一电极施加具有第一极性的信号。 向第二电极施加具有第二极性的信号。 第二极性与第一极性相反。 向第三电极施加具有第二极性的信号。 第三电极设置在与第二电极相对的位置上。 向第四电极施加具有第一极性的信号。 第一电介质部分设置在第一电极和第二电极之间。 第二电介质部分设置在第二电极和第三电极之间。 第三电介质部分设置在第三电极和第四电极之间。
    • 42. 发明授权
    • Capacitance device and resonance circuit
    • 电容器件和谐振电路
    • US08736401B2
    • 2014-05-27
    • US13063624
    • 2009-09-24
    • Masayoshi KannoToshiaki YokotaKazutaka HabuMakoto WatanabeNoritaka Sato
    • Masayoshi KannoToshiaki YokotaKazutaka HabuMakoto WatanabeNoritaka Sato
    • H03H7/01
    • H03H7/0115H01G4/232H01G4/255H01G4/30H01G7/06H03H2001/0085
    • To suppress changes in capacitance due to displacement between electrodes opposing each other across a dielectric layer, thereby allowing stable manufacturing of a capacitance device having a desired capacitance.The capacitance device according to the present invention is of a configuration including a dielectric layer (10), a first electrode (11) formed on a predetermined surface (10a) of the dielectric layer (10), and a second electrode (12) formed on a surface (10b) on the opposite side of the dielectric layer (10) from the predetermined surface (10a). The forms of the first and second electrodes (11, 12) are set so that even in the event that the first electrode (11) is relatively displaced regarding position in a predetermined direction as to the second electrode (12), the area of the opposing-electrode region between the first electrode (11) and to the second electrode (12) is unchanged.
    • 为了抑制由电介质层彼此相对的电极之间的位移引起的电容变化,从而允许具有期望电容的电容器件的稳定制造。 根据本发明的静电电容器件具有包括电介质层(10),形成在电介质层(10)的预定表面(10a)上的第一电极(11))和形成的第二电极(12) 在与所述预定表面(10a)相对的所述电介质层(10)的相对侧上的表面(10b)上。 第一和第二电极(11,12)的形状被设定为使得即使在第一电极(11)相对于第二电极(12)在预定方向上的位置相对位移的情况下, 第一电极(11)与第二电极(12)之间的对置电极区域不变。
    • 43. 发明授权
    • Power control apparatus and electronic appliance equipped with power control apparatus
    • 电力控制装置和配备电力控制装置的电子设备
    • US08384248B2
    • 2013-02-26
    • US12276734
    • 2008-11-24
    • Masayoshi Kanno
    • Masayoshi Kanno
    • H02M3/06H01H35/00
    • H02M5/08Y10T307/658Y10T307/793
    • A power control apparatus includes an input terminal and an output terminal for an AC signal; a DC removing capacitor connected between the input terminal and the output terminal; and a variable capacitor that is connected between the input terminal and the output terminal and whose capacitance can be changed by a control signal. One of a current and a voltage of the AC signal is controlled by changing the capacitance of the variable capacitor using the control signal, and dielectrics that form a serially connected row of capacitors composed of the DC removing capacitor and the variable capacitor are configured so as to be integrally laminated, and the control signal is applied across a dielectric that forms the variable capacitor and the AC signal is applied across the dielectrics that form the row of capacitors.
    • 功率控制装置包括用于AC信号的输入端子和输出端子; 连接在输入端子和输出端子之间的直流去除电容器; 以及可变电容器,其连接在输入端子和输出端子之间,并且可以通过控制信号来改变其电容。 通过使用控制信号改变可变电容器的电容来控制AC信号的电流和电压之一,并且形成由直流去除电容器和可变电容器组成的串联的电容器组的电介质被配置为 整体层叠,并且控制信号施加在形成可变电容器的电介质上,并且AC信号施加在形成电容器行的电介质两端。
    • 46. 发明申请
    • THERMOELECTRIC GENERATOR, THERMOELECTRIC GENERATION METHOD, ELECTRICAL SIGNAL DETECTING DEVICE, AND ELECTRICAL SIGNAL DETECTING METHOD
    • 热电发生器,热电生成方法,电子信号检测装置和电信号检测方法
    • US20110132422A1
    • 2011-06-09
    • US12958977
    • 2010-12-02
    • Masakazu YajimaMasayoshi KannoShinichiro Yamada
    • Masakazu YajimaMasayoshi KannoShinichiro Yamada
    • H01L35/30
    • H01L35/32
    • A thermoelectric generation method using a thermoelectric generator includes: placing a thermoelectric generator in a temperature-changing atmosphere; drawing to outside a current that is generated due to a temperature difference between first and second support members when the temperature of the second support member is higher than that of the first support member, and that flows from a second thermoelectric conversion member to a first thermoelectric conversion member, using first and second output sections as a positive terminal and a negative terminal, respectively; and drawing to outside a current that is generated due to a temperature difference between the first and second support members when the temperature of the first support member is higher than that of the second support member, and that flows from a fourth thermoelectric conversion member to a third thermoelectric conversion member, using third and fourth output sections as a positive terminal and a negative terminal, respectively.
    • 使用热电发电机的热电发电方法包括:将热电发电机置于温度变化的气氛中; 当第二支撑构件的温度高于第一支撑构件的温度时,由于第一和第二支撑构件之间的温度差而产生的电流的外部,并且从第二热电转换构件流到第一热电元件 转换构件,分别使用第一和第二输出部分作为正端子和负端子; 并且当第一支撑构件的温度高于第二支撑构件的温度时,将由于第一和第二支撑构件之间的温度差产生的电流拉伸到外部,并且从第四热电转换构件流向第 第三热电转换部件,分别使用第三和第四输出部分作为正极端子和负极端子。
    • 47. 发明申请
    • Fuel cell using organic fuel
    • 燃料电池使用有机燃料
    • US20110053024A1
    • 2011-03-03
    • US12805843
    • 2010-08-20
    • Katsunori NishimuraMasayoshi KannoShinsuke Andoh
    • Katsunori NishimuraMasayoshi KannoShinsuke Andoh
    • H01M8/10
    • H01M8/04798H01M8/04388H01M8/04559H01M8/1011Y02E60/523
    • A fuel cell is provided which can control an optimum fuel concentration according to an output without a sensor for measuring the fuel concentration. The fuel cell uses a liquid organic compound for fuel and includes a membrane-electrode assembly, a passage for allowing fuel or oxidant to flow, a fuel supply unit for supplying the fuel to the fuel cell and intermittently or periodically changing a rate of fuel supply, and a computation processor for measuring a signal of a voltage or an output of the fuel cell, computing the rate of the fuel supply and the signal, and correcting the rate of the fuel supply. In the fuel cell, the optimum fuel concentration can be easily controlled according to the output by periodically varying the fuel concentration from a reference fuel concentration, measuring a voltage or an output and a variation range of the voltage or the output, and then determining whether the reference fuel concentration is appropriate or not.
    • 提供一种能够根据输出控制最佳燃料浓度的燃料电池,而不需要用于测量燃料浓度的传感器。 燃料电池使用液体有机化合物作为燃料,并且包括膜电极组件,用于允许燃料或氧化剂流动的通道,用于向燃料电池供应燃料的燃料供应单元,并间歇地或周期性地改变燃料供应速率 以及用于测量燃料电池的电压或输出的信号的计算处理器,计算燃料供应和信号的速率,以及校正燃料供给的速率。 在燃料电池中,通过从参考燃料浓度周期性地改变燃料浓度,测量电压或输出以及电压或输出的变化范围,可以根据输出容易地控制最佳燃料浓度,然后确定是否 参考燃料浓度是否合适。
    • 48. 发明申请
    • MOLD BODY AND METHOD OF MANUFACTURING THE SAME
    • 模具体及其制造方法
    • US20080057258A1
    • 2008-03-06
    • US11831617
    • 2007-07-31
    • Masayoshi KannoYuya Aoki
    • Masayoshi KannoYuya Aoki
    • B32B3/02B29C45/00
    • B29C45/14836B29C45/14639B29C2045/14852B29L2017/003B29L2017/005G11B23/0042
    • A mold body and method of manufacturing the mold body is provided. The mold body includes a resin-molded IC tag module with an integrated antenna and a molding material sealing the IC tag module. The molding material is any one simple thermoplastic resin selected from the consisting of aliphatic polyester, polystyrene, methyl polymethacrylate, polyacetal, polyethylene, polypropylene, polyamide 11 and polyamide 12, or a material containing any one or more of the thermoplastic resins. The method of manufacturing a mold body includes providing a resin-molded IC tag module with an integrated antenna; and sealing at the same time with injection molding the resin-molded IC tag module by using the thermoplastic resin or the thermoplastic material.
    • 提供一种模具体及其制造方法。 模具体包括具有集成天线的树脂模制IC标签模块和密封IC标签模块的成型材料。 成型材料是选自脂肪族聚酯,聚苯乙烯,聚甲基丙烯酸甲酯,聚缩醛,聚乙烯,聚丙烯,聚酰胺11和聚酰胺12等的任何一种简单的热塑性树脂,或含有任何一种或多种热塑性树脂的材料。 制造模具体的方法包括提供具有集成天线的树脂模制IC标签模块; 并通过使用热塑性树脂或热塑性材料将树脂模制的IC标签模块注射成型,同时进行密封。