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    • 1. 发明授权
    • Monolayer capacitor element and solid electrolytic multilayer capacitor
    • 单层电容器元件和固体电解层叠电容器
    • US06249424B1
    • 2001-06-19
    • US09433877
    • 1999-11-04
    • Hiroshi NitohWataru MinamidaAtsushi SakaiTakashi Ichimura
    • Hiroshi NitohWataru MinamidaAtsushi SakaiTakashi Ichimura
    • H01G900
    • H01G9/15H01G9/26
    • The present invention provides a solid electrolytic multilayer capacitor excellent in yield and capability, and provides a monolayer capacitor element for use in the manufacture of the solid electrolytic multilayer capacitor. In the multilayer solid electrolyte capacitor of the present invention, a solid electrolytic multilayer capacitor 25 in which a plurality of monolayer capacitor elements 7 are stacked such that the anode areas 11 aligned in the same direction are stacked and bonded onto a lead frame 9 on the anode side and the cathode areas are stacked and bonded onto a lead frame 8 on the cathode side so as to have an unfolded fan shape widening toward the distal end of the cathode area from the anode area 11 side, to provide a multilayer capacitor element 19 and the periphery of the multilayer capacitor element 19 that are covered and sealed with an armoring resin 23. The monolayer capacitor element 7 preferably has a constitution such that the end part of the anode substrate 1 having thereon a dielectric oxide layer 2 worked out to an anode area 11, the cathode area 6 is formed by providing a solid electrolyte layer 4 on the dielectric oxide layer 2 in the area exclusive of the anode area 11 and an electrically conducting layers 5 and 6 on the solid electrolyte layer 4, and the thickness S2 at the distal end of the cathode area is larger than the thickness S1 at the base part of the cathode area.
    • 本发明提供一种产率和能力优异的固体电解多层电容器,提供用于制造固体电解层叠电容器的单层电容器元件。 在本发明的多层固体电解电容器中,固体电解多层电容器25,其中堆叠多个单层电容器元件7,使得沿相同方向排列的阳极区域11堆叠并结合到引线框架9上 阳极侧和阴极区域堆叠并结合到阴极侧的引线框架8上,以便从阳极区域11侧朝向阴极区域的远端具有展开的扇形,从而提供多层电容器元件19 以及被铠装树脂23覆盖和密封的层叠电容器元件19的周边。单层电容器元件7优选具有这样的结构,使得其上具有电介质氧化物层2的阳极基板1的端部被制成 阳极区域11,阴极区域6是通过在电介质氧化物层2上提供除了阳极区域11的区域之外的固体电解质层4和 固体电解质层4上的导电层5和6,阴极区域末端的厚度S2大于阴极区域底部的厚度S1。