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    • 3. 发明授权
    • Solid electrolytic capacitor and method for manufacture thereof
    • 固体电解电容器及其制造方法
    • US08081420B2
    • 2011-12-20
    • US12691338
    • 2010-01-21
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • H01G9/04
    • H01G9/08H01G9/012H01G9/0425H01G9/052H01G9/10H01G9/15Y10T29/41Y10T29/417
    • On a surface of an anode member 12 having a valve action, a cathode layer 14 is formed, and at a terminal lead-out face 12a at one end of the anode member 12, an anode wire 16 is led out of it; thus a capacitor element 10 is formed. An anode terminal 4 is joined to the anode wire 16. A cathode terminal 5 is joined to the cathode layer 14. A protective layer 2 of resin covers part or all of the capacitor element 10. A packaging member 3 of resin harder than the protective layer 2 covers around the capacitor element 10 including the protective layer 2 and the anode wire 16 to form a package. The protective layer 2 has a larger linear expansion coefficient than the packaging member 3. The mass ratio of the packaging member 3 to the total mass of the packaging member 3 and the protective layer 2 between the terminal lead-out face 12a and the exterior face of the packaging member 3 opposite the terminal lead-out face 12a is 50% or more.
    • 在具有阀动作的阳极部件12的表面上形成有阴极层14,在阳极部件12的一端的端子引出面12a处,将阳极线16从其引出; 从而形成电容器元件10。 阳极端子4连接到阳极线16.阴极端子5接合到阴极层14.树脂的保护层2覆盖部分或全部电容器元件10.比保护层更硬的树脂的包装件3 层2覆盖包括保护层2和阳极线16的电容器元件10,以形成封装。 保护层2具有比包装部件3更大的线膨胀系数。包装部件3与包装部件3的总质量和端子引出面12a与外表面之间的保护层2的质量比 与端子引出面12a相对的包装部件3的直径为50%以上。
    • 6. 发明授权
    • Method of producing solid electrolytic capacitor
    • 固体电解电容器的制造方法
    • US07125764B2
    • 2006-10-24
    • US10487072
    • 2002-08-12
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • H01L21/8249
    • H01G9/0036H01G9/028
    • A manufacturing method according to the present invention of a solid electrolytic capacitor includes: a step of immersing a anode body on which the dielectrics film layer is formed in a solution that includes from 0.7 to 10% by weight of hydrogen peroxide, from 0.3 to 3% by weight of sulfuric acid and water as a main solvent, followed by, after pulling up, exposing to vapor of pyrrole or a pyrrole derivative, and thereby forming, on the dielectrics film layer, a first conductive polymer layer made of polypyrrole or a polypyrrole derivative; and a step of immersing the anode body on which the dielectrics film layer and the first conductive polymer layer are formed in a solution that includes a polymerizing monomer and a supporting electrolyte to electrolytically polymerize the polymerizing monomer, and thereby forming a second conductive polymer layer on the first conductive polymer layer.
    • 根据本发明的固体电解电容器的制造方法包括:将形成有电介质膜层的阳极体浸渍在含有0.7〜10重量%的过氧化氢的溶液中,0.3〜3 重量%的硫酸和水作为主要溶剂,然后在拉起之后暴露于吡咯或吡咯衍生物的蒸气,从而在电介质膜层上形成由聚吡咯形成的第一导电聚合物层或 聚吡咯衍生物 以及将包含电介质膜层和第一导电性聚合物层的阳极体浸渍在包含聚合性单体和支持电解质的溶液中以电解聚合聚合性单体的步骤,从而形成第二导电聚合物层 第一导电聚合物层。
    • 10. 发明申请
    • Method of producing solid electrolytic capacitor
    • 固体电解电容器的制造方法
    • US20050030678A1
    • 2005-02-10
    • US10487072
    • 2002-08-12
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • Yutaka TaketaniYoshiaki HasabaMakoto SakamakiTadahito Ito
    • H01G9/028H01G9/00H01G9/02H01G2/14
    • H01G9/0036H01G9/028
    • A manufacturing method according to the present invention of a solid electrolytic capacitor includes: a step of immersing a anode body on which the dielectrics film layer is formed in a solution that includes from 0.7 to 10% by weight of hydrogen peroxide, from 0.3 to 3% by weight of sulfuric acid and water as a main solvent, followed by, after pulling up, exposing to vapor of pyrrole or a pyrrole derivative, and thereby forming, on the dielectrics film layer, a first conductive polymer layer made of polypyrrole or a polypyrrole derivative; and a step of immersing the anode body on which the dielectrics film layer and the first conductive polymer layer are formed in a solution that includes a polymerizing monomer and a supporting electrolyte to electrolytically polymerize the polymerizing monomer, and thereby forming a second conductive polymer layer on the first conductive polymer layer.
    • 根据本发明的固体电解电容器的制造方法包括:将形成有电介质膜层的阳极体浸渍在含有0.7〜10重量%的过氧化氢的溶液中,0.3〜3 重量%的硫酸和水作为主要溶剂,然后在拉起之后暴露于吡咯或吡咯衍生物的蒸气,从而在电介质膜层上形成由聚吡咯形成的第一导电聚合物层或 聚吡咯衍生物 以及将包含电介质膜层和第一导电性聚合物层的阳极体浸渍在包含聚合性单体和支持电解质的溶液中以电解聚合聚合性单体的步骤,从而形成第二导电聚合物层 第一导电聚合物层。