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    • 1. 发明授权
    • Solid electrolytic capacitor and method for producing the same
    • 固体电解电容器及其制造方法
    • US07800887B2
    • 2010-09-21
    • US11846015
    • 2007-08-28
    • Takahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • Takahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • H01G9/02H01G9/00
    • H01G9/025H01G11/48H01G11/56Y02E60/13Y10T29/417
    • A solid electrolytic capacitor, having a small equivalent series resistance, is formed by burying a capacitor element inside an epoxy resin outer package. The capacitor element includes an anode, having part of an anode lead buried therein, a dielectric layer formed on the anode and containing a niobium oxide, and a cathode formed on the dielectric layer. The cathode includes a first electrolyte layer containing a conductive polymer and formed on the dielectric layer, an intermediate layer containing an organic silane and formed on the first electrolyte layer, a second electrolyte layer containing a conductive polymer and formed on the intermediate layer, a first conductive layer containing carbon particles and formed on the second electrolyte layer, and a second conductive layer containing silver particles and formed on the first conductive layer.
    • 具有小的等效串联电阻的固体电解电容器通过将电容器元件埋入环氧树脂外包装内而形成。 电容器元件包括阳极,其阳极引线被埋入其中,在阳极上形成并包含氧化铌的电介质层和形成在电介质层上的阴极。 阴极包括含有导电聚合物并形成在电介质层上的第一电解质层,含有有机硅烷并形成在第一电解质层上的中间层,含有导电聚合物并形成在中间层上的第二电解质层,第一电解质层 形成在第二电解质层上的含有碳颗粒的导电层和含有银颗粒的第二导电层,并形成在第一导电层上。
    • 3. 发明申请
    • SOLID ELECTROLYTIC CAPACITOR AND METHOD FOR PRODUCING THE SAME
    • 固体电解电容器及其制造方法
    • US20080316680A1
    • 2008-12-25
    • US11846015
    • 2007-08-28
    • Takahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • Takahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • H01G9/15
    • H01G9/025H01G11/48H01G11/56Y02E60/13Y10T29/417
    • The present invention is to provide a solid electrolytic capacitor having a small equivalent series resistance. In this solid electrolytic capacitor, a capacitor element is buried inside of an outer package of an epoxy resin or the like, the capacitor element including an anode in which a part of an anode lead is buried, a dielectric layer which is formed on the anode and contains a niobium oxide and a cathode which is formed on the dielectric layer. The cathode includes a first electrolyte layer which is formed on the dielectric layer and contains a conductive polymer, an intermediate layer which is formed on the first electrolyte layer and contains organic silane, a second electrolyte layer which is formed on the intermediate layer and contains a conductive polymer, a first conductive layer which is formed on the second electrolyte layer and contains carbon particles and a second conductive layer which is formed on the first conductive layer and contains silver particles. Also, one end of a cathode terminal is connected with the cathode through a third conductive layer containing silver particles. Also, each of the other ends of an anode terminal and cathode terminal is exposed from the outer package.
    • 本发明提供具有小的等效串联电阻的固体电解电容器。 在这种固体电解电容器中,电容器元件被埋在环氧树脂等的外包装内部,电容器元件包括阳极引线的一部分被埋置的阳极,形成在阳极上的电介质层 并且包含形成在电介质层上的铌氧化物和阴极。 阴极包括形成在电介质层上并且包含导电聚合物的第一电解质层,形成在第一电解质层上并含有有机硅烷的中间层,形成在中间层上并包含有机硅烷的第二电解质层 导电聚合物,形成在第二电解质层上并含有碳颗粒的第一导电层和形成在第一导电层上并含有银颗粒的第二导电层。 此外,阴极端子的一端通过包含银颗粒的第三导电层与阴极连接。 此外,阳极端子和阴极端子的另一端分别从外部封装露出。
    • 5. 发明申请
    • ELECTROLYTIC CAPACITOR
    • 电解电容器
    • US20080239630A1
    • 2008-10-02
    • US11837226
    • 2007-08-10
    • Hiroaki IzuTakahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • Hiroaki IzuTakahisa IidaMutsumi YanoTakashi UmemotoHiroshi Nonoue
    • H01G9/042
    • H01G9/052H01G9/012H01G9/15
    • The present invention provides an electrolytic capacitor having a large electrostatic capacity.In the solid electrolytic capacitor, a capacitor element provided with; an anode in which a part of an anode lead is embedded in the inside of an outer package made of an epoxy resin or the like; an oxide layer containing niobium oxide formed on the anode; and a cathode formed on the oxide layer; is embedded. The anode lead is composed of a niobium alloy containing at least one of vanadium and zirconium, and its one end is embedded in the anode composed of a porous sintered body of metal particles containing niobium, and the other end is connected to an anode terminal. The cathode is composed of a conductive polymer layer such as polypyrrole, a first conductive layer containing carbon particles, and a second conductive layer containing silver particles, and one end of a cathode terminal is connected to the cathode via a third conductive layer containing silver particles. Further, each other end of the anode terminal and the cathode terminal is projected out of an outer package.
    • 本发明提供一种静电容量大的电解电容器。 在固体电解电容器中,设置有电容器元件; 阳极引线的一部分嵌入在由环氧树脂等制成的外包装的内部的阳极; 在阳极上形成含有氧化铌的氧化物层; 和形成在氧化物层上的阴极; 被嵌入。 阳极引线由含有钒和锆中的至少一种的铌合金构成,其一端嵌入由包含铌的金属粒子的多孔烧结体构成的阳极中,另一端与阳极端子连接。 阴极由聚吡咯等导电性聚合物层,含有碳粒子的第一导电层和含有银粒子的第二导电层构成,阴极端子的一端经由含有银粒子的第三导电层与阴极连接 。 此外,阳极端子和阴极端子的另一端从外包装中突出。
    • 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
    • US07038903B2
    • 2006-05-02
    • US10808395
    • 2004-03-25
    • Mutsumi YanoKazuhiro TakataniMamoru Kimoto
    • Mutsumi YanoKazuhiro TakataniMamoru Kimoto
    • H01G9/04H01G9/145
    • H01G9/0032H01G9/042H01G9/0525
    • A solid electrolytic capacitor has an anode composed of a niobium substrate and a niobium nitride layer, and a dielectric layer composed of niobium oxide is formed on the surface of the niobium nitride layer. In the solid electrolytic capacitor, the nitrogen content based on the total weight of the niobium substrate, the niobium nitride layer, and the dielectric layer is preferably not less than 0.001% by weight nor more than 0.2% by weight. In another solid electrolytic capacitor, an anode is formed by sintering thermally treated niobium powder in a nitrogen atmosphere. A dielectric layer composed of niobium oxide is formed on the surface of the anode. In the solid electrolytic capacitor, the composition ratio X of the niobium powder (NbNX) is preferably not less than 0.05 nor more than 1.0.
    • 固体电解电容器具有由铌基板和氮化铌层构成的阳极,在氮化铌层的表面上形成由铌氧化物构成的电介质层。 在固体电解电容器中,以铌基板,氮化铌层和电介质层的总重量为基准的氮含量优选为0.001重量%以上0.2重量%以下。 在另一种固体电解电容器中,通过在氮气气氛中烧结热处理的铌粉末形成阳极。 在阳极表面上形成由氧化铌构成的电介质层。 在固体电解电容器中,铌粉末(NbN×XS)的组成比X优选为0.05以上1.0以下。