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    • 1. 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。
    • 2. 发明授权
    • Thermoelectric generator, thermoelectric generation method, electrical signal detecting device, and electrical signal detecting method
    • 热电发电机,热电发电方法,电信号检测装置和电信号检测方法
    • US08674208B2
    • 2014-03-18
    • US12958977
    • 2010-12-02
    • Masakazu YajimaMasayoshi KannoShinichiro Yamada
    • Masakazu YajimaMasayoshi KannoShinichiro Yamada
    • H01L35/34H01L35/30H01L35/28
    • 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。
    • 9. 发明申请
    • WIRELESS POWER SUPPLY DEVICE AND WIRELESS POWER SUPPLY METHOD
    • 无线电源设备和无线供电方法
    • US20130306124A1
    • 2013-11-21
    • US13983113
    • 2012-01-24
    • Masakazu YajimaOsamu Enoki
    • Masakazu YajimaOsamu Enoki
    • H01L35/32
    • H01L35/32H01L35/16H01L35/34
    • To provide a wireless power supply device and a wireless power supply method capable of supplying electric power by a wireless system, using a means other than radio waves. This wireless power supply device of the present invention is provided with (A) a thermoelectric generation device which performs thermoelectric generation in response to the change in atmospheric temperature, and (B) a temperature control device which periodically changes the atmospheric temperature of the thermoelectric generation device. Further, this wireless power supply method uses a wireless power supply device provided with a thermoelectric generation device and a temperature control device, wherein the atmospheric temperature of the thermoelectric generation device is periodically changed by the temperature control device, and the thermoelectric generation device performs thermoelectric generation in response to the change in the atmospheric temperature, and the obtained power is brought to the exterior.
    • 提供一种能够通过无线电系统提供电力的无线电源装置和无线电力供给方法,其使用除了无线电波之外的装置。 本发明的无线供电装置具备:(A)响应于大气温度的变化而进行热电生成的热电发电装置,(B)周期性地变化热电发电的大气温度的温度控制装置 设备。 此外,该无线供电方法使用具有热电生成装置和温度控制装置的无线供电装置,其中,所述热电发电装置的大气温度由所述温度控制装置周期性地变化,所述热电发电装置进行热电 响应于大气温度的变化,并且获得的功率被带到外部。
    • 10. 发明授权
    • Heat transport apparatus and heat transport apparatus manufacturing method
    • 热输送装置和热输送装置的制造方法
    • US08136581B2
    • 2012-03-20
    • US10538296
    • 2003-12-04
    • Minehiro TonosakiEisaku KatoMasakazu YajimaTakashi Yajima
    • Minehiro TonosakiEisaku KatoMasakazu YajimaTakashi Yajima
    • F28D15/00H05K7/20
    • F28D15/0266F28D15/043Y10T29/49353
    • A heat transport device having a composite structure that is readily manufactured and a method for manufacturing such a heat transport device are provided. The heat transport device includes a first base plate having a liquid suction and retention unit for sucking and retaining a liquid-phase working fluid by capillary force; a second base plate having a face provided with a first concavity functioning as a vaporization chamber for vaporizing the working fluid, a second concavity functioning as a liquefaction chamber for liquefying the working fluid, a first ditch for transporting the vaporized working fluid, a second ditch for transporting the liquefied working fluid, the second base plate comprising a material having a thermal conductivity lower than that of silicon; and a thermoplastic or thermosetting resin material for bonding the first and second base plates. The heat transport device can be readily manufactured by heating the first and second base plates sandwiching a thermoplastic or thermosetting resin material therebetween.
    • 提供了具有容易制造的复合结构的热输送装置及其制造方法。 热传输装置包括具有用于通过毛细管力吸附和保持液相工作流体的液体吸入和保持单元的第一基板; 第二基板,其具有设置有用作蒸发工作流体的蒸发室的第一凹部的表面,用作液化工作流体的液化室的第二凹部,用于输送蒸发的工作流体的第一沟槽,第二沟槽 用于运输液化的工作流体,第二基板包括热导率低于硅的材料; 以及用于粘合第一和第二基板的热塑性或热固性树脂材料。 热传输装置可以容易地通过加热夹在其间的热塑性或热固性树脂材料的第一和第二基板来制造。