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    • 1. 发明授权
    • Solid electrolytic capacitor
    • 固体电解电容器
    • US07706133B2
    • 2010-04-27
    • US11798128
    • 2007-05-10
    • Masaaki TogashiMasaaki Kobayashi
    • Masaaki TogashiMasaaki Kobayashi
    • H01G4/228H01G9/00
    • H01G9/08H01G9/012
    • A solid electrolytic capacitor includes a capacitor element, an anode-side lead terminal connected to an anode of the capacitor element, a cathode-side lead terminal connected to a cathode of the capacitor element, and an armor covering the capacitor element and having an electrical insulating property. The armor has two principal faces opposed to each other, and two side faces connecting the two principal faces and opposed to each other. The anode-side lead terminal has at least a first terminal portion exposed in one of the principal faces. The cathode-side lead terminal has at least a first terminal portion exposed in the one of the principal faces, and a second terminal portion exposed in the one of the principal faces and extending from the first terminal portion so as to be exposed in either of the two side faces. The solid electrolytic capacitor satisfies the following relation: W/G≧1.0, where W is a width of the second terminal portion of the cathode-side lead terminal and G is a gap between the anode-side lead terminal and the cathode-side terminal on the one of the principal faces.
    • 固体电解电容器包括电容器元件,连接到电容器元件的阳极的阳极侧引线端子,连接到电容器元件的阴极的阴极侧引线端子和覆盖电容器元件并具有电气元件 绝缘性能。 护甲具有彼此相对的两个主面,以及连接两个主面并且彼此相对的两个侧面。 阳极侧引线端子至少具有暴露在主面之一中的第一端子部分。 阴极侧引线端子具有至少暴露在主面之一中的第一端子部分和暴露在主面之一中并从第一端子部分延伸以暴露在 两个侧面。 固体电解电容器满足以下关系:W /G≥1.0,其中W是阴极侧引线端子的第二端子部的宽度,G是阳极侧引线端子和阴极侧端子之间的间隙 在主要面孔之一上。
    • 2. 发明申请
    • Solid electrolytic capacitor
    • 固体电解电容器
    • US20070274026A1
    • 2007-11-29
    • US11798128
    • 2007-05-10
    • Masaaki TogashiMasaaki Kobayashi
    • Masaaki TogashiMasaaki Kobayashi
    • H01G9/00H01G4/228
    • H01G9/08H01G9/012
    • A solid electrolytic capacitor includes a capacitor element, an anode-side lead terminal connected to an anode of the capacitor element, a cathode-side lead terminal connected to a cathode of the capacitor element, and an armor covering the capacitor element and having an electrical insulating property. The armor has two principal faces opposed to each other, and two side faces connecting the two principal faces and opposed to each other. The anode-side lead terminal has at least a first terminal portion exposed in one of the principal faces. The cathode-side lead terminal has at least a first terminal portion exposed in the one of the principal faces, and a second terminal portion exposed in the one of the principal faces and extending from the first terminal portion so as to be exposed in either of the two side faces. The solid electrolytic capacitor satisfies the following relation: W/G≧1.0, where W is a width of the second terminal portion of the cathode-side lead terminal and G is a gap between the anode-side lead terminal and the cathode-side terminal on the one of the principal faces.
    • 固体电解电容器包括电容器元件,连接到电容器元件的阳极的阳极侧引线端子,连接到电容器元件的阴极的阴极侧引线端子和覆盖电容器元件并具有电气元件 绝缘性能。 护甲具有彼此相对的两个主面,以及连接两个主面并且彼此相对的两个侧面。 阳极侧引线端子至少具有暴露在主面之一中的第一端子部分。 阴极侧引线端子具有至少暴露在主面之一中的第一端子部分和暴露在主面之一中并从第一端子部分延伸以暴露在 两个侧面。 固体电解电容器满足以下关系:<?in-line-formula description =“In-line formula”end =“lead”?> W / G> = 1.0,<?in-line-formula description =“In- 线公式“end =”tail“?>其中W是阴极侧引线端子的第二端子部分的宽度,G是阳极侧引线端子与阴极侧端子之间的间隙 主要面孔。
    • 5. 发明授权
    • Solid electrolytic capacitor and a method for manufacturing a solid electrolytic capacitor
    • 固体电解电容器及固体电解电容器的制造方法
    • US07342771B2
    • 2008-03-11
    • US10518687
    • 2003-06-18
    • Masaaki KobayashiMasaaki Togashi
    • Masaaki KobayashiMasaaki Togashi
    • H01G9/00
    • H01G9/012H01G2/065H01G9/14Y10T29/41Y10T29/417
    • A solid electrolytic capacitor is provided, which can reduce impedance, particularly, the ESL and the ESR. In one embodiment, such a solid electrolytic capacitor comprises a foil-like valve metal substrate formed with an insulating oxide film on the surface thereof, a valve metal body whose one end portion region is bonded to one of two opposite end portion regions of the foil-like valve metal substrate, a conductive metal substrate whose one end portion region is bonded to the other end portion region of the foil-like valve metal substrate, a cathode electrode formed by sequentially laminating at least a solid high molecular polymer electrolyte layer and a conductive layer on the surface of the foil-like valve metal substrate, and a cathode lead electrode being drawn out from the cathode electrode in a direction perpendicular to one major surface of the foil-like valve metal substrate.
    • 提供了一种固体电解电容器,可以减少阻抗,特别是ESL和ESR。 在一个实施例中,这种固体电解电容器包括在其表面上形成有绝缘氧化膜的箔状阀金属基板,其一个端部区域结合到箔片的两个相对端部区域中的一个的阀金属体 一个端部区域与箔状阀金属基板的另一个端部区域接合的导电金属基板,通过依次层叠至少固体高分子聚合物电解质层和 在箔状阀金属基板的表面上形成导电层,阴极引线电极从垂直于箔状阀金属基板的一个主表面的方向从阴极引出。
    • 6. 发明授权
    • Solid electrolytic capacitor
    • 固体电解电容器
    • US07158366B2
    • 2007-01-02
    • US10564790
    • 2004-07-21
    • Masaaki KobayashiYumiko YoshiharaMasahiro ShinkaiMasaaki Togashi
    • Masaaki KobayashiYumiko YoshiharaMasahiro ShinkaiMasaaki Togashi
    • H01G9/00
    • H01G9/048H01G9/14Y10T29/417
    • A multiterminal solid electrolytic capacitor mountable to a board for two terminals is provided.In the solid electrolytic capacitor (10) in accordance with the present invention, an anode of a capacitor device (12) is connected to one end part (35B) of a via (32) connected to a plurality of anode leads (34B) arranged on a base sheet surface (14a), whereas a cathode of the capacitor device (12) is connected to the other end part (35A) of a via (32) connected to a plurality of cathode leads (34A) similarly arranged on the base sheet surface (14a). Each end part (35B) of the via (32) connected to the anode lead (34B) is electrically connected to an end part (35D) of the via (32) connected to a land electrode (42B) arranged on the lower face (10a) of the base sheet (14). Each end part (35A) of a plurality of vias (23) connected to the cathode lead (34A) is electrically connected to an end part (35C) of the via (32) connected to a land electrode (42A).
    • 提供可安装到两个端子板的多端固体电解电容器。 在根据本发明的固体电解电容器(10)中,电容器装置(12)的阳极连接到连接到多个阳极引线(34B)的通孔(32)的一个端部(35B) ),而电容器装置(12)的阴极连接到连接到多个阴极引线(34A)的通孔(32)的另一端部(35A) 类似地布置在基片表面(14a)上。 连接到阳极引线(34B)的通孔(32)的每个端部(35B)电连接到连接到布置在其上的焊盘电极(42B)的通孔(32)的端部(35D) 基片(14)的下表面(10a)。 连接到阴极引线(34A)的多个通路(23)的每个端部(35A)电连接到连接到焊盘电极(42A)的通路(32)的端部(35C) 。
    • 7. 发明申请
    • Solid electrolytic capacitor
    • 固体电解电容器
    • US20060193106A1
    • 2006-08-31
    • US10564790
    • 2004-07-21
    • Masaaki KobayashiYumiko YoshiharaMasahiro ShinkaiMasaaki Togashi
    • Masaaki KobayashiYumiko YoshiharaMasahiro ShinkaiMasaaki Togashi
    • H01G9/00H01G4/228
    • H01G9/048H01G9/14Y10T29/417
    • A multiterminal solid electrolytic capacitor mountable to a board for two terminals is provided. In the solid electrolytic capacitor (10) in accordance with the present invention, an anode of a capacitor device (12) is connected to one end part (35B) of a via (32) connected to a plurality of anode leads (34B) arranged on a base sheet surface (14a), whereas a cathode of the capacitor device (12) is connected to the other end part (35A) of a via (32) connected to a plurality of cathode leads (34A) similarly arranged on the base sheet surface (14a). Each end part (35B) of the via (32) connected to the anode lead (34B) is electrically connected to an end part (35D) of the via (32) connected to a land electrode (42B) arranged on the lower face (10a) of the base sheet (14). Each end part (35A) of a plurality of vias (23) connected to the cathode lead (34A) is electrically connected to an end part (35C) of the via (32) connected to a land electrode (42A).
    • 提供可安装到两个端子板的多端固体电解电容器。 在根据本发明的固体电解电容器(10)中,电容器装置(12)的阳极连接到连接到多个阳极引线(34B)的通孔(32)的一个端部(35B) ),而电容器装置(12)的阴极连接到连接到多个阴极引线(34A)的通孔(32)的另一端部(35A) 类似地布置在基片表面(14a)上。 连接到阳极引线(34B)的通孔(32)的每个端部(35B)电连接到连接到布置在其上的焊盘电极(42B)的通孔(32)的端部(35D) 基片(14)的下表面(10a)。 连接到阴极引线(34A)的多个通路(23)的每个端部(35A)电连接到连接到焊盘电极(42A)的通路(32)的端部(35C) 。
    • 8. 发明申请
    • Solid electrolytic capacitor and a method for manufacturing a solid electrolytic capacitor
    • 固体电解电容器及固体电解电容器的制造方法
    • US20060109609A1
    • 2006-05-25
    • US10518687
    • 2003-06-18
    • Masaaki KobayashiMasaaki Togashi
    • Masaaki KobayashiMasaaki Togashi
    • H01G9/00
    • H01G9/012H01G2/065H01G9/14Y10T29/41Y10T29/417
    • It is an object of the present invention to provide a solid electrolytic capacitor which can reduce impedance, particularly, the ESL and the ESR, and a method for manufacturing such a solid electrolytic capacitor. A cathode electrode 14 is formed on a foil-like aluminum substrate 2 whose surface is roughened. One end portion region of each of foil-like aluminum substrates 3a and 3b is bonded to one of the opposite end portion regions of the foil-like aluminum substrate 2 whose surface is roughened so that electrical connection can be established between the valve metals. One end portion region of each of conductive metal substrates 15a and 15b formed in a lead frame in advance is bonded to one of the other end portion regions of the foil-like aluminum substrates 3a and 3b whose surfaces are roughened, thereby forming anode electrodes. A cathode lead electrode 15c is drawn out from a conductive layer (cathode electrode 14) formed on the foil-like aluminum substrate 2 whose surface is roughened in a direction perpendicular to the major surface of the foil-like aluminum substrate 2.
    • 本发明的目的是提供一种能够降低阻抗的固体电解电容器,特别是ESL和ESR,以及制造这种固体电解电容器的方法。 在其表面粗糙化的箔状铝基板2上形成阴极电极14。 每个箔状铝基板3a和3b的一个端部区域结合到其表面粗糙化的箔状铝基板2的相对端部区域之一,使得可以在阀金属之间建立电连接 。 形成在引线框架中的每个导电金属基板15a和15b的一个端部区域被接合到其表面被粗糙化的箔状铝基板3a和3b的另一个端部区域中,从而 形成阳极电极。 阴极引线电极15c从形成在箔状铝基板2上的导电层(阴极14)引出,其表面在与铝箔基板2的主表面垂直的方向上变粗糙。
    • 10. 发明授权
    • Solid electrolytic capacitor and method for manufacturing solid electrolytic capacitor
    • 固体电解电容器及固体电解电容器制造方法
    • US07099145B2
    • 2006-08-29
    • US10518673
    • 2003-06-18
    • Masaaki KobayashiMasaaki Togashi
    • Masaaki KobayashiMasaaki Togashi
    • H01G9/00
    • H01G9/012H01G9/15Y10T29/417
    • It is an object of the present invention to provide a solid electrolytic capacitor which can reduce the ESL and the ESR and increase electrostatic capacitance at a small size, and a method for manufacturing such a solid electrolytic capacitor. A solid electrolytic capacitor component includes a foil-like aluminum substrate whose surface is roughened or enlarged and which is formed with an aluminum oxide film 2x on the surface thereof and foil-like aluminum substrates whose surfaces are not roughened and a cathode electrode including a solid high molecular polymer electrolyte layer, a graphite paste layer and a silver paste layer is formed on the surface of the foil-like aluminum substrate. In the solid electrolytic capacitor component 110, lead electrode pairs including anode lead electrodes are disposed adjacent with each other, whereby magnetic fields to be generated are canceled.
    • 本发明的目的是提供一种能够减小ESL和ESR并增加小尺寸的静电电容的固体电解电容器,以及制造这种固体电解电容器的方法。 固体电解电容器部件包括表面粗糙化或扩大的箔状铝基板,其表面上形成有氧化铝膜2×,其表面未粗糙化的箔状铝基板和包含 固体高分子聚合物电解质层,石墨膏层和银膏层形成在箔状铝基板的表面上。 在固体电解电容器部件110中,包括阳极引线电极的引线电极对彼此相邻地设置,从而消除要产生的磁场。