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    • 1. 发明申请
    • Electrolytic Capacitor Containing a Liquid Electrolyte
    • 含有液体电解质的电解电容器
    • US20100238608A1
    • 2010-09-23
    • US12408900
    • 2009-03-23
    • Dirk H. DreissigJohn Galvagni
    • Dirk H. DreissigJohn Galvagni
    • H01G9/035
    • H01G9/035H01G9/052H01G9/145
    • An electrolytic capacitor that contains an anodically oxidized porous anode, cathode, and an electrolyte that contains an alkali metal salt and ionically conductive polymer is provided. The alkali metal salt forms a complex with the ionically conductive polymer and thereby improves its ionic conductivity, particularly at higher temperatures. The electrolyte also contains an organic solvent that reduces the viscosity of the electrolyte and helps lower the potential barrier to metal ion transport within the electrolyte to improve conductivity. By selectively controlling the relative amount of each of these components, the present inventors have discovered that a highly ionically conductive electrolyte may be formed that is also in the form of a viscous liquid. The liquid nature of the electrolyte enables it to more readily enter the pores of the anode via capillary forces and improve specific capacitance. Further, although a liquid, its viscous nature may inhibit the likelihood of leakage.
    • 提供一种包含阳极氧化的多孔阳极,阴极和含有碱金属盐和离子导电聚合物的电解质的电解电容器。 碱金属盐与离子导电聚合物形成络合物,从而提高其离子电导率,特别是在较高温度下。 电解质还含有降低电解质粘度的有机溶剂,有助于降低电解液内金属离子传输的势垒,以提高电导率。 通过选择性地控制这些成分中的每一种的相对量,本发明人已经发现,可以形成也是粘性液体形式的高度离子导电的电解质。 电解液的液体性质使其能够更容易地通过毛细管力进入阳极的孔隙并提高比电容。 此外,尽管液体,其粘性也可能抑制泄漏的可能性。
    • 2. 发明授权
    • Electrolytic capacitor containing a liquid electrolyte
    • 含有液体电解质的电解电容器
    • US08223473B2
    • 2012-07-17
    • US12408900
    • 2009-03-23
    • Dirk H. DreissigJohn Galvagni
    • Dirk H. DreissigJohn Galvagni
    • H01G9/00
    • H01G9/035H01G9/052H01G9/145
    • An electrolytic capacitor that contains an anodically oxidized porous anode, cathode, and an electrolyte that contains an alkali metal salt and ionically conductive polymer is provided. The alkali metal salt forms a complex with the ionically conductive polymer and thereby improves its ionic conductivity, particularly at higher temperatures. The electrolyte also contains an organic solvent that reduces the viscosity of the electrolyte and helps lower the potential barrier to metal ion transport within the electrolyte to improve conductivity. By selectively controlling the relative amount of each of these components, the present inventors have discovered that a highly ionically conductive electrolyte may be formed that is also in the form of a viscous liquid. The liquid nature of the electrolyte enables it to more readily enter the pores of the anode via capillary forces and improve specific capacitance. Further, although a liquid, its viscous nature may inhibit the likelihood of leakage.
    • 提供一种包含阳极氧化的多孔阳极,阴极和含有碱金属盐和离子导电聚合物的电解质的电解电容器。 碱金属盐与离子导电聚合物形成络合物,从而提高其离子电导率,特别是在较高温度下。 电解质还含有降低电解质粘度的有机溶剂,有助于降低电解液内金属离子传输的势垒,以提高电导率。 通过选择性地控制这些成分中的每一种的相对量,本发明人已经发现,可以形成也是粘性液体形式的高度离子导电的电解质。 电解液的液体性质使其能够更容易地通过毛细管力进入阳极的孔隙并提高比电容。 此外,尽管液体,其粘性也可能抑制泄漏的可能性。
    • 6. 发明授权
    • Abrasive blasted conductive polymer cathode for use in a wet electrolytic capacitor
    • 用于湿电解电容器的磨料喷射导电聚合物阴极
    • US08605411B2
    • 2013-12-10
    • US12883410
    • 2010-09-16
    • Martin BilerJohn GalvagniDirk H. DreissigZebbie Lynn SebaldFrantisek Priban
    • Martin BilerJohn GalvagniDirk H. DreissigZebbie Lynn SebaldFrantisek Priban
    • H01G2/10H01G9/00H01G9/04
    • H01G9/0425H01G9/0029H01G9/0036H01G9/028H01G9/048H01G9/055H01G9/06H01G9/145H01G11/32Y02E60/13Y10T29/417
    • A wet electrolytic capacitor that includes a porous anode body containing a dielectric layer, an electrolyte, and a cathode containing a metal substrate that is abrasive blasted is provided. Abrasive blasting may accomplish a variety of different purposes. For example, it may result in a surface that is substantially uniform and macroscopically smooth, thereby increasing the consistency of conductive coatings formed thereon. While possessing a certain degree of smoothness, the abrasive blasted surface is nevertheless micro-roughened so that it contains a plurality of pits. The pits provide an increased surface area, thereby allowing for increased cathode capacitance for a given size and/or capacitors with a reduced size for a given capacitance. A conductive coating that contains a substituted polythiophene is disposed on the micro-roughened surface. The presence of the pits on the substrate enhances the degree of contact between the conductive coating and metal substrate, thereby resulting in improved mechanical robustness and electrical performance (e.g., reduced equivalent series resistance and leakage current).
    • 提供一种湿电解电容器,其包括含有电介质层的多孔阳极体,电解质和含有被喷砂处理的金属基板的阴极。 磨料喷砂可以实现各种不同的目的。 例如,可能导致表面基本均匀且宏观地平滑,从而增加其上形成的导电涂层的稠度。 在具有一定程度的平滑度的同时,喷砂表面仍然是微粗糙化的,使得它包含多个凹坑。 凹坑提供了增加的表面积,从而允许给定尺寸的阴极电容增加和/或给定电容的尺寸减小的电容器。 包含取代的聚噻吩的导电涂层设置在微粗糙表面上。 在衬底上存在凹坑增加了导电涂层和金属衬底之间的接触程度,从而导致改进的机械稳健性和电性能(例如,降低的等效串联电阻和漏电流)。
    • 8. 发明申请
    • Asymmetrical filter
    • 不对称滤波器
    • US20070085630A1
    • 2007-04-19
    • US11583361
    • 2006-10-18
    • Joseph HockJohn Galvagni
    • Joseph HockJohn Galvagni
    • H03H7/01
    • H01G4/35H03H1/0007H03H7/1758H03H2001/0042
    • Disclosed is methodology and apparatus for producing an asymmetrical filter for use with implantable medical devices, and in other input filtering environments. Differing forward and reverse characteristic responses are provided by inserting a low value resistor in series with heart connecting leads so that EMI input protection may be provided without significantly reducing energy transfer from the protected device. Improved protection against voltage transients is provided with present arrangements of differentiated series impedance. Higher frequency energy is allowed out of a subject device than is allowed into such device, which allows for attenuation of undesired frequency ranges entering the filter while allowing output pulses to exit without distortion.
    • 公开了用于生产用于可植入医疗装置的非对称过滤器以及其它输入过滤环境的方法和装置。 通过插入与心脏连接引线串联的低电阻电阻来提供不同的正向和反向特性响应,从而可以提供EMI输入保护,而不会显着减少受保护器件的能量传输。 提供了针对电压瞬态的改进的保护,具有差分串联阻抗的当前布置。 比被允许进入这种装置的受检器件更高的频率能量允许衰减进入滤波器的不期望的频率范围,同时允许输出脉冲退出而不失真。