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    • 4. 发明授权
    • Solid electrolytic capacitor element, manufacturing method therefor, and solid electrolytic capacitor
    • 固体电解电容器元件及其制造方法和固体电解电容器
    • US07177141B1
    • 2007-02-13
    • US11483834
    • 2006-07-10
    • Takahisa IidaMutsumi YanoMamoru Kimoto
    • Takahisa IidaMutsumi YanoMamoru Kimoto
    • H01G4/228H01G9/00
    • H01G9/012H01G9/042H01G9/052H01G9/15Y10T29/417
    • The present invention provides a solid electrolytic capacitor with low leakage current. In the solid electrolytic capacitor, an anode has an anode lead made of tantalum, a surface layer made of niobium formed on the anode lead, and a rectangular block shaped base body having a porous sintered body made from niobium particles, and the anode lead is partially embedded in the base body. Onto the anode, an oxide layer made of niobium oxide, an electrically conductive polymer layer, and a cathode laminated with a first electrically conductive layer and a second electrically conductive layer are sequentially laminated. Onto the top surface of an area surrounding the cathode, a cathode terminal is formed through an electrically conductive adhesive layer. Also, an anode terminal is connected onto an edge of the anode lead.
    • 本发明提供一种具有低泄漏电流的固体电解电容器。 在固体电解电容器中,阳极具有由钽制成的阳极引线,在阳极引线上形成的由铌构成的表面层,以及具有由铌粒子构成的多孔烧结体的矩形块状基体,阳极引线为 部分嵌入基体。 在阳极上依次层叠由氧化铌制成的氧化物层,导电性聚合物层和与第一导电层和第二导电层层叠的阴极。 在阴极周围的区域的顶面,通过导电性粘合剂层形成阴极端子。 此外,阳极端子连接到阳极引线的边缘上。
    • 9. 发明授权
    • Solid electrolytic capacitor and manufacturing method thereof
    • 固体电解电容器及其制造方法
    • US07742282B2
    • 2010-06-22
    • US11336787
    • 2006-01-23
    • Takahisa IidaMutsumi YanoMamoru Kimoto
    • Takahisa IidaMutsumi YanoMamoru Kimoto
    • H01G9/04H01G9/145H01G4/06
    • H01G9/042H01G9/022H01G11/48Y02E60/13Y10T29/417
    • In this solid electrolytic capacitor, a plate-shaped anode having a porous sintered body, a dielectric layer and an electrolyte layer of polypyrrole are formed in this order for covering one part of an anode lead. An intermediate layer of aminopropyltriethoxysilane (APTES) is formed for covering the electrolyte layer. A cathode having a first conductive layer containing graphite particles and a second conductive layer containing silver particles is formed for covering the intermediate layer. The cathode and a cathode terminal are connected by a conductive adhesive layer. The anode lead and the anode terminal are connected by welding. Further, a mold outer resin is formed to allow one end of the cathode terminal and one end of the anode terminal to project therefrom.
    • 在该固体电解电容器中,依次形成具有多孔烧结体,电介质层和聚吡咯的电解质层的板状阳极,以覆盖阳极引线的一部分。 形成氨基丙基三乙氧基硅烷(APTES)的中间层以覆盖电解质层。 形成具有包含石墨颗粒的第一导电层和含有银颗粒的第二导电层的阴极,用于覆盖中间层。 阴极和阴极端子通过导电粘合剂层连接。 阳极引线和阳极端子通过焊接连接。 此外,形成模制外部树脂,以允许阴极端子的一端和阳极端子的一端从其突出。
    • 10. 发明授权
    • Solid electrolytic capacitor element, manufacturing method therefor, and solid electrolytic capacitor
    • 固体电解电容器元件及其制造方法和固体电解电容器
    • US07599170B2
    • 2009-10-06
    • US11438769
    • 2006-05-23
    • Takahisa Iida
    • Takahisa Iida
    • H01G9/04H01G9/145H01G9/00
    • H01G9/0036H01G9/042H01G9/0425
    • In a solid electrolytic capacitor of the present invention, a virtually plate-like anode having a porous sintered body, a dielectric layer, and an electrolyte layer are sequentially formed on an anode lead so as to cover a portion of the anode lead. A cathode includes a first electrically conductive layer containing graphite particles having a grain size of approximately 1 μm to approximately 10 μm and APTES; and a second electrically conductive layer including silver particles is formed on the electrolyte layer so as to cover an area surrounding the electrolyte layer. Also, the cathode and a cathode terminal are interconnected through an electrically conductive adhesive layer, and the anode lead and an anode terminal are welded to each other. Further, a mold-packaging resin is formed such that respective edges of the cathode terminal and the anode terminal are located outside the mold-packaging resin.
    • 在本发明的固体电解电容器中,在阳极引线上依次形成具有多孔烧结体,电介质层和电解质层的实际上的板状阳极,以覆盖阳极引线的一部分。 阴极包括含有粒径约1μm至约10μm的石墨颗粒和APTES的第一导电层; 并且在电解质层上形成包含银颗粒的第二导电层,以覆盖电解质层周围的区域。 此外,阴极和阴极端子通过导电粘合剂层互连,并且阳极引线和阳极端子彼此焊接。 此外,形成模制包装树脂,使得阴极端子和阳极端子的各个边缘位于模制包装树脂的外部。