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    • 1. 发明公开
    • Capacitor and its manufacturing method
    • 康德勒和德森Herstellungsverfahren
    • EP0953996A2
    • 1999-11-03
    • EP99107809.8
    • 1999-04-20
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Saito, ToshiharuKitano, MotoiMurakami, Mutsuaki
    • H01G4/18
    • H01G9/07H01G4/18Y10T29/43Y10T29/435
    • A capacitor of the present invention employs one of i) polyimide directly formed by electrodeposition, ii) organic high polymer having a specific structure formed by electrodeposition, and iii) a composite film of the organic high polymer and oxide film of a conductor as dielectrics formed on the surface-roughened conductor. The organic high polymer used in the present invention contains carboxylic radical in its molecular structure. The capacitor of the present invention further comprises an opposite electrode at least containing conductive high polymer on the dielectrics. This conductive high polymer is formed by chemical oxydation-polymerization or both chemical oxydation-polymerization and electro-polymerization. The capacitor element as configured above is strong to mechanical stress, and possible to apply pressure during lamination. By laminating many of capacitor elements as configured above, a capacitor with large capacitance but small equivalent serial resistance, small leak current, and good frequency characteristics is obtained. A method for manufacturing capacitors of the present invention comprises the steps of forming a dielectric layer made of organic high polymer or a composite film of the organic high polymer and oxide film of conductor on a surface-roughened conductor; forming an insulating layer at least on the conductor; forming an opposite electrode on said dielectric layer to manufacture capacitor elements; and laminating more than one capacitor elements and connecting each other to form a laminated capacitor.
    • 本发明的电容器采用i)通过电沉积直接形成的聚酰亚胺,ii)具有通过电沉积形成的特定结构的有机高分子,和iii)形成有机高分子和作为电介质的导电体的氧化膜的复合膜 在表面粗糙的导体上。 本发明中使用的有机高分子在其分子结构中含有羧基。 本发明的电容器还包括在电介质上至少含有导电高聚物的相对电极。 该导电性高分子通过化学氧化聚合或化学氧化聚合和电聚合形成。 上述配置的电容器元件对于机械应力是强的,并且可能在层压期间施加压力。 通过层叠如上所述的许多电容器元件,获得具有大电容但小等效串联电阻,小漏电流和良好频率特性的电容器。 本发明的制造电容器的方法包括以下步骤:在表面粗糙导体上形成由有机高分子构成的介电层或有机高分子和导体的氧化物膜的复合膜; 至少在导体上形成绝缘层; 在所述电介质层上形成相对电极以制造电容器元件; 并层压多于一个电容器元件并彼此连接以形成层压电容器。
    • 3. 发明公开
    • Capacitor and its manufacturing method
    • 电容器及其制造方法
    • EP0953996A3
    • 2004-11-03
    • EP99107809.8
    • 1999-04-20
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • Saito, ToshiharuKitano, MotoiMurakami, Mutsuaki
    • H01G4/18H01G4/30H01G4/33
    • H01G9/07H01G4/18Y10T29/43Y10T29/435
    • A capacitor of the present invention employs one of i) polyimide directly formed by electrodeposition, ii) organic high polymer having a specific structure formed by electrodeposition, and iii) a composite film of the organic high polymer and oxide film of a conductor as dielectrics formed on the surface-roughened conductor. The organic high polymer used in the present invention contains carboxylic radical in its molecular structure. The capacitor of the present invention further comprises an opposite electrode at least containing conductive high polymer on the dielectrics. This conductive high polymer is formed by chemical oxydation-polymerization or both chemical oxydation-polymerization and electro-polymerization. The capacitor element as configured above is strong to mechanical stress, and possible to apply pressure during lamination. By laminating many of capacitor elements as configured above, a capacitor with large capacitance but small equivalent serial resistance, small leak current, and good frequency characteristics is obtained. A method for manufacturing capacitors of the present invention comprises the steps of forming a dielectric layer made of organic high polymer or a composite film of the organic high polymer and oxide film of conductor on a surface-roughened conductor; forming an insulating layer at least on the conductor; forming an opposite electrode on said dielectric layer to manufacture capacitor elements; and laminating more than one capacitor elements and connecting each other to form a laminated capacitor.