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    • 1. 发明专利
    • Wireless power supply device and wireless power supply method
    • 无线电源设备和无线供电方法
    • JP2012175781A
    • 2012-09-10
    • JP2011034572
    • 2011-02-21
    • Sony Corpソニー株式会社
    • YAJIMA SHOICHIENOKI OSAMU
    • H02N3/00H01L35/14H01L35/22H01L35/28H01L35/32
    • H01L35/32H01L35/16H01L35/34
    • PROBLEM TO BE SOLVED: To provide a wireless power supply device and a wireless power supply method capable of supplying power wirelessly by means other than electric waves.SOLUTION: A wireless power supply device of the present invention comprises: (A) a thermoelectric power generator 10 configured to generate power thermoelectrically in response to variation in temperature of an atmosphere; and (B) a temperature controller 60 configured to periodically vary the temperature of the atmosphere in which the thermoelectric power generator 10 is arranged. A wireless power supply method of the present invention uses the wireless power supply device comprising the thermoelectric power generator 10 and the temperature controller 60. In the wireless power supply method, the temperature controller 60 periodically varies temperature of the atmosphere in which the thermoelectric power generator 10 is arranged; the thermoelectric power generator 10 generates power thermoelectrically in response to variation in temperature of the atmosphere; and the obtained power is taken to the outside.
    • 要解决的问题:提供一种能够通过电波以外的手段无线供电的无线电源装置和无线电力供给方法。 解决方案:本发明的无线供电装置包括:(A)热电发电机10,被配置为响应于大气温度的变化而热电发电; 和(B)温度控制器60,其配置为周期性地改变设置有热电发电机10的气氛的温度。 本发明的无线供电方法使用包括热电发电机10和温度控制器60的无线供电装置。在无线供电方式中,温度控制器60周期性地改变热电发电机 10; 热电发电机10响应于大气温度的变化而产生热电力; 所获得的电力被带到外部。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Manufacturing method of transparent conductive film and manufacturing method of electronic device
    • 透明导电膜的制造方法及电子器件的制造方法
    • JP2009199842A
    • 2009-09-03
    • JP2008039516
    • 2008-02-21
    • Sony Corpソニー株式会社
    • SUMINO KOJISHIMIZU KEISUKEENOKI OSAMU
    • H01B13/00G02F1/1343
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a transparent conductive film with high conductivity and high light transmittance, as well as, an electronic device. SOLUTION: A metal electrode 12a (a cathode) and an anode equipped with a PET layer 12 laminated on a metal electrode 10b are dipped in a CNP dispersion solution 16 so as the PET layer to be opposed to the cathode, and a direct-current voltage is impressed between the anode and the cathode to form a CNT film 14 as a transparent conductive film with the CNTs oriented nearly in parallel on a face of the PET layer. A conductive polymer layer may be formed on the face of the PET layer, and the CNTs may be formed on the face. As the direct-current voltage is kept impressed, the anode is taken out of the solution to be dried, after which impression of the direct-current voltage is stopped. The PET layer with the CNT film formed is separated from the metal electrode. The CNT film is used as a transparent electrode in the electronic devices such as a liquid crystal device, electroluminescent device, electrochromic device, touch panel, and solar battery. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种具有高导电性和高透光率的透明导电膜以及电子器件的制造方法。 解决方案:将金属电极12a(阴极)和装有层压在金属电极10b上的PET层12的阳极浸入CNP分散液16中,以与PET阴极相对的PET层, 在阳极和阴极之间施加直流电压,以形成作为透明导电膜的CNT膜14,其中CNT在PET层的面上几乎平行取向。 可以在PET层的表面上形成导电聚合物层,并且可以在表面上形成CNT。 当直流电压保持不变时,将阳极从要干燥的溶液中取出,之后停止直流电压的印迹。 形成有CNT膜的PET层与金属电极分离。 在液晶装置,电致发光装置,电致变色装置,触摸屏和太阳能电池等电子装置中,使用CNT膜作为透明电极。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Laminate, manufacturing method for laminate, and electronic element and electronic device having the laminate
    • 层压板,层压板的制造方法以及具有层压板的电子元件和电子设备
    • JP2011049101A
    • 2011-03-10
    • JP2009198416
    • 2009-08-28
    • Sony Corpソニー株式会社
    • ENOKI OSAMU
    • H01B5/14B32B7/02H01B13/00
    • PROBLEM TO BE SOLVED: To provide a laminate capable of stabilizing the conductivity of cylindrical carbon molecules, a manufacturing method for the laminate, and an electronic element and an electronic device.
      SOLUTION: The surface of a conductive layer 20 composed of cylindrical carbon molecules 21 is coated with a protective layer 30. As a result, a current does not flow in a direction perpendicular to the in-plane direction of the conductive layer 20 but flows only in the conductive layer 20. The cylindrical carbon molecules 21 are not exposed from the surface and isolated from the air by the protective layer 30, and thus the cylindrical carbon molecules 21 are protected from an effect of an external environment. This significantly reduces a conductivity change caused by a temperature, humidity, water, soil, a reaction with a chemical substance in air, etc., thus stabilizing the conductivity of the cylindrical carbon molecules 21.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够稳定圆柱形碳分子的导电性的层压体,层压体的制造方法以及电子元件和电子设备。 解决方案:由圆柱形碳分子21构成的导电层20的表面涂覆有保护层30.结果,电流不会在垂直于导电层20的面内方向的方向上流动 但仅在导电层20中流动。圆柱形碳分子21不会从表面露出并且被保护层30与空气分离,因此保护圆柱形碳分子21免受外部环境的影响。 这显着降低了由温度,湿度,水,土壤,与空气中的化学物质的反应等导致的电导率变化,从而稳定了圆柱形碳分子21的导电性。版权所有(C)2011, JPO&INPIT
    • 10. 发明专利
    • Capacitance type touch member and method for producing the same, and capacitance type touch detection device
    • 电容式触摸式触摸屏构件及其制造方法及电容型触摸式检测装置
    • JP2010244772A
    • 2010-10-28
    • JP2009090694
    • 2009-04-03
    • Sony Corpソニー株式会社
    • ENOKI OSAMU
    • H01H36/00G06F3/041G06F3/044H01H11/00
    • G06F3/044H03K17/962H03K2017/9602H03K2017/9604H03K2217/960755Y10T29/49124
    • PROBLEM TO BE SOLVED: To provide a capacitance type touch member having a light transmissive detection electrode while having a flexible shape or stereoscopic shape, to provide a method of manufacturing the same, and to provide a capacitance type touch detection device equipped with the capacitance type touch member. SOLUTION: The capacitance type touch member 10 having a film-like or a plate-like support 1 made of an insulating material while having a flexible shape or stereoscopic shape, a detection electrode 2 disposed on at least a part of one side of the support 1 and made of a light transmissive conductive layer containing a carbon nano-linear structure such as a carbon nanotube, and a lead-out wiring 3 extended from the detection electrode 2, is manufactured. A capacitance type touch detection device is constituted of: this touch member 10; and a capacitance detection circuit 60 electrically connected to the detection electrode 2 via the lead-out wiring 3 to detect fluctuation of a capacitance by approach or contact of human being to a touch surface 4. The detection electrode 2 may be covered with a protective film, and the surface of the protective film may be used as the touch surface. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供具有柔性形状或立体形状的具有透光检测电极的电容式触摸部件,以提供其制造方法,并且提供一种配备有电容式触摸检测装置 电容式触摸部件。 解决方案:具有由绝缘材料制成的具有柔性形状或立体形状的膜状或板状支撑体1的电容型触摸部件10,设置在一侧的至少一部分上的检测电极2 由包含碳纳米线性结构如碳纳米管的透光导电层和从检测电极2延伸的引出布线3制成。 电容式触摸检测装置由以下部件构成:该接触部件10; 以及电容检测电路60,经由引出布线3与检测电极2电连接,以通过接触或接触人体到触摸表面4来检测电容的波动。检测电极2可以被保护膜 并且保护膜的表面可以用作触摸表面。 版权所有(C)2011,JPO&INPIT