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    • 1. 发明申请
    • METHOD AND APPARATUS FOR CONNECTING CAPACITOR ELECTRODES
    • 用于连接电容器电极的方法和装置
    • US20060256501A1
    • 2006-11-16
    • US11379693
    • 2006-04-21
    • James Poplett
    • James Poplett
    • H01G4/228
    • A61N1/375A61N1/378A61N1/3968A61N1/3975H01G9/008H01G9/048Y10T29/417
    • A structure and method for connecting capacitor electrodes is provided. One aspect of this disclosure relates to an apparatus for connecting cathodes. The apparatus includes a cathode layer containing an aperture, and a connection member. The connection member includes a protrusion mateable to the aperture having a length at least equal to a thickness of the cathode layer, a first flat section perpendicular to the protrusion, the first flat section having a first side attached to the protrusion and a second side including a contact surface, and a second flat section perpendicular to the first flat section, the second flat section at an offset distance from the protrusion and having a height equal to or greater than the protrusion, and where the connection member is mated to the cathode layer. Other aspects and embodiments are provided herein.
    • 提供了一种用于连接电容器电极的结构和方法。 本公开的一个方面涉及一种用于连接阴极的设备。 该装置包括含有孔的阴极层和连接构件。 所述连接构件包括与所述孔配合的突起,其长度至少等于所述阴极层的厚度,垂直于所述突起的第一平坦部,所述第一平坦部具有附接到所述突起的第一侧,第二侧包括 接触表面和垂直于第一平坦部分的第二平坦部分,第二平坦部分距离突起偏离距离并且具有等于或大于突起的高度,并且连接部件配合到阴极层 。 本文提供了其它方面和实施例。
    • 7. 发明申请
    • Smaller electrolytic capacitors for implantable defibrillators
    • 较小的可植入除颤器的电解电容器
    • US20050237697A1
    • 2005-10-27
    • US11016365
    • 2004-12-17
    • Michael O'PhelanJames PoplettRobert TongAlexander Barr
    • Michael O'PhelanJames PoplettRobert TongAlexander Barr
    • A61N1/39H01G9/00H01G9/02H01G9/04H01G9/06
    • H01G9/145A61N1/3975A61N1/3981H01G9/02H01G9/045H01G9/06Y10T29/417
    • Implantable defibrillators are implanted into the chests of patients prone to suffering ventricular fibrillation, a potentially fatal heart condition. A critical component in these devices is an aluminum electrolytic capacitors, which stores and delivers one or more life-saving bursts of electric charge to a fibrillating heart. These capacitors make up about one third the total size of the defibrillators. Unfortunately, conventional manufacturers of these capacitors have paid little or no attention to reducing the size of these capacitors through improved capacitor packaging. Accordingly, the inventors contravened several conventional manufacturing principles and practices to devise unique space-saving packaging that allows dramatic size reduction. One embodiment of the invention uses thinner and narrower separators and top and bottom insulative inserts to achieve a 330-volt operating, 390-volt surge, 190-microfarad, 30-Joule aluminum electrolytic capacitor which is 33 percent smaller than conventional capacitors having similar electrical traits.
    • 将植入式除颤器植入易患心室纤维性颤动的患者的胸部,这可能是致命的心脏病。 这些设备中的关键部件是铝电解电容器,其存储并将一个或多个拯救生命的电荷脉冲放射到原纤维心脏。 这些电容器占除颤器总大小的三分之一。 不幸的是,这些电容器的常规制造商几乎或不关心通过改进的电容器封装来减小这些电容器的尺寸。 因此,本发明人违反了几种常规的制造原理和实践,以设计独特的节省空间的包装,其允许大幅度的减小。 本发明的一个实施例使用更薄和更窄的分离器和顶部和底部绝缘插入件来实现330伏工作,390伏浪涌,190微法,30焦耳铝电解电容器,比具有类似电气的常规电容器小33% 特质。