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    • 1. 发明申请
    • CAPACITOR MANUFACTURING METHOD
    • 电容器制造方法
    • US20110171366A1
    • 2011-07-14
    • US13119589
    • 2009-10-02
    • Tailu NingHironao FujikiKazuyoshi YoshidaMichiko Shingai
    • Tailu NingHironao FujikiKazuyoshi YoshidaMichiko Shingai
    • B05D5/12B05D3/00
    • H01G9/0036H01G9/028H01G9/15
    • A capacitor manufacturing method that enables a capacitor having a high withstand voltage, a high electrostatic capacitance and a satisfactorily small ESR to be manufactured simply and at a high level of productivity. In the capacitor manufacturing method, a film-formation treatment of applying a conductive polymer solution containing a π-conjugated conductive polymer, a polyanion and a solvent to the dielectric layer side of a capacitor substrate having a dielectric layer formed on the surface of an anode, and then performing drying to form a conductive polymer film, is performed at least twice, and the conductive polymer solution used in at least one film-formation treatment among the second film-formation treatment and subsequent film-formation treatments is a high-viscosity solution having a higher viscosity than the conductive polymer solution used in the first film-formation treatment.
    • 能够简单且高生产率地制造具有高耐压,高静电电容和令人满意的小ESR的电容器的电容器制造方法。 在电容器制造方法中,将具有共轭导电性聚合物,聚阴离子和溶剂的导电性聚合物溶液涂布在电容器基板的电介质层侧的成膜处理,该电容器基板具有在 阳极,然后进行干燥以形成导电聚合物膜,进行至少两次,并且在第二成膜处理和随后的成膜处理中用于至少一个成膜处理的导电聚合物溶液是高分子量聚合物, 粘度溶液具有比用于第一成膜处理中的导电聚合物溶液更高的粘度。
    • 3. 发明授权
    • Capacitor and method for manufacturing the same
    • 电容器及其制造方法
    • US08422202B2
    • 2013-04-16
    • US12989199
    • 2009-04-17
    • Tailu NingMichiko Shingai
    • Tailu NingMichiko Shingai
    • H01G9/04
    • H01G9/028H01G11/48H01G11/56Y02E60/13Y10T29/417
    • A method for manufacturing a capacitor that enables a capacitor having a high degree of conductivity and minimal leakage current to be obtained with a high level of productivity. A method for manufacturing a capacitor (10) according to the present invention includes an electrolytic oxidation step of forming a dielectric layer (12) by electrolytically oxidizing the surface of an anode (11) composed of a valve metal, a cathode positioning step of positioning a cathode (13) composed of a conductor in an opposing arrangement on the surface of the dielectric layer (12), a solid electrolyte formation step of forming a solid electrolyte layer (14) between the dielectric layer (12) and the cathode (13) using a conductive polymer solution containing a π-conjugated conductive polymer and a polyanion, and an application step of performing a treatment in which a direct current voltage is applied between the anode (11) and the cathode (13).
    • 一种制造电容器的方法,其能够以高生产率获得能够获得具有高导电性和最小漏电流的电容器。 根据本发明的制造电容器(10)的方法包括:电解氧化步骤,通过电解氧化由阀金属构成的阳极(11)的表面形成电介质层(12);阴极定位步骤,定位 在电介质层(12)的表面上由相对配置的导体构成的阴极(13),在电介质层(12)和阴极(13)之间形成固体电解质层(14)的固体电解质形成步骤 )使用含有共轭导电聚合物和聚阴离子的导电聚合物溶液,以及施加步骤,其进行在阳极(11)和阴极(13)之间施加直流电压的处理。
    • 4. 发明申请
    • CAPACITOR AND METHOD FOR MANUFACTURING THE SAME
    • 电容器及其制造方法
    • US20110051323A1
    • 2011-03-03
    • US12989199
    • 2009-04-17
    • Tailu NingMichiko Shingai
    • Tailu NingMichiko Shingai
    • H01G9/028H01G9/00
    • H01G9/028H01G11/48H01G11/56Y02E60/13Y10T29/417
    • A method for manufacturing a capacitor that enables a capacitor having a high degree of conductivity and minimal leakage current to be obtained with a high level of productivity. A method for manufacturing a capacitor (10) according to the present invention includes an electrolytic oxidation step of forming a dielectric layer (12) by electrolytically oxidizing the surface of an anode (11) composed of a valve metal, a cathode positioning step of positioning a cathode (13) composed of a conductor in an opposing arrangement on the surface of the dielectric layer (12), a solid electrolyte formation step of forming a solid electrolyte layer (14) between the dielectric layer (12) and the cathode (13) using a conductive polymer solution containing a π-conjugated conductive polymer and a polyanion, and an application step of performing a treatment in which a direct current voltage is applied between the anode (11) and the cathode (13).
    • 一种制造电容器的方法,其能够以高生产率获得能够获得具有高导电性和最小漏电流的电容器。 根据本发明的制造电容器(10)的方法包括:电解氧化步骤,通过电解氧化由阀金属构成的阳极(11)的表面形成电介质层(12);阴极定位步骤,定位 在电介质层(12)的表面上由相对配置的导体构成的阴极(13),在电介质层(12)和阴极(13)之间形成固体电解质层(14)的固体电解质形成步骤 )使用含有共轭导电聚合物和聚阴离子的导电聚合物溶液,以及施加步骤,其进行在阳极(11)和阴极(13)之间施加直流电压的处理。