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    • 33. 发明授权
    • Method and apparatus for high voltage aluminum capacitor design
    • 高压铝电容器设计方法与装置
    • US07224575B2
    • 2007-05-29
    • US11182707
    • 2005-07-15
    • Gregory J. Sherwood
    • Gregory J. Sherwood
    • H01G9/04H01G9/145
    • H01G9/0032A61N1/39A61N1/3956H01G9/10Y10T29/417Y10T29/43Y10T29/435
    • Structure and method providing a capacitor connected to a component, including a capacitor stack made from one or more substantially planar cathode layers, one or more substantially planar anode layers, one or more substantially planar separator layers, and a solitary electrolyte. Additionally, the capacitor includes a case with a first aperture sized for passage of the capacitor stack and a second aperture, and one or more conductors connecting the capacitor stack to the component, with at least one conductor passing through the second aperture of the case, the at least one conductor sealingly connected to the second aperture. Further, the capacitor case is filled with a solitary electrolyte, and the capacitor stack is adapted to deliver to electronics from about 5.3 joules per cubic centimeter of capacitor stack volume to about 6.3 joules per cubic centimeter of capacitor stack volume, at a voltage of between about 465 volts to about 565 volts.
    • 提供连接到组件的电容器的结构和方法,包括由一个或多个基本平坦的阴极层,一个或多个基本上平面的阳极层,一个或多个基本上平面的隔离层和孤立电解质构成的电容器堆叠。 另外,电容器包括具有尺寸适于通过电容器堆叠的第一孔径和第二孔径的壳体,以及将电容器堆叠连接到部件的一个或多个导体,其中至少一个导体穿过壳体的第二孔径, 所述至少一个导体密封地连接到所述第二孔。 此外,电容器壳体填充有单独的电解质,并且电容器堆叠适于将电子器件从约5.3焦耳/立方厘米的电容器堆叠体积传递到约6.3焦耳/立方厘米的电容器堆叠体积, 约465伏至约565伏特。
    • 36. 发明授权
    • Method and apparatus for rotating one or more mirrors in a beam scanning
system
    • 用于在光束扫描系统中旋转一个或多个反射镜的方法和装置
    • US4792198A
    • 1988-12-20
    • US64318
    • 1987-06-18
    • Gregory J. Sherwood
    • Gregory J. Sherwood
    • G02B26/12G02B26/10
    • G02B26/121
    • A method and apparatus for rotating one or more mirrors in a beam scanning system includes a drive motor, a drive spindle, operatively connected to the drive motor, for rotation by the motor, a spindle support arrangement, and a mirror support wheel mounted on the spindle for rotation therewith. The spindle support arrangement includes a generally cylindrical spindle housing and a bearing mounted within the housing a predetermined distance from an open end thereof. The spindle extends through the spindle housing and the bearing and out of the open end of the spindle housing. The mirror support wheel defines a generally annular counter bore for receiving the open end of the spindle housing thereinto. The mirror support wheel further defines a central spindle engaging portion which is radially inward of the annular counter bore, the central spindle engaging portion has an inner surface facing the bearing and spaced therefrom by a distance which is sufficient to substantially reduce the Bernoulli effect pressure drop in the region within the spindle housing adjacent the side of the bearing facing the inner surface when the mirror support wheel is rotated by the spindle. The inner surface of the central spindle engaging portion of the mirror support wheel may be spaced from the bearing by a distance of approximately 0.200 inches.
    • 用于在梁扫描系统中旋转一个或多个反射镜的方法和装置包括可操作地连接到驱动马达的驱动马达,驱动主轴,用于由马达旋转,主轴支撑装置和安装在所述驱动马达上的反射镜支撑轮 主轴与其一起旋转。 主轴支撑装置包括大致圆柱形的主轴壳体和安装在壳体内与其开口端预定距离的轴承。 主轴延伸穿过主轴壳体和轴承并离开主轴壳体的开口端。 反射镜支撑轮限定了大致环形的反向孔,用于接收主轴壳体的开口端。 反射镜支撑轮进一步限定了中心心轴接合部分,该中心心轴接合部分在环形反向孔的径向内侧,中心心轴接合部分具有面向轴承的内表面,并与之隔开一定距离,该距离足以显着降低伯努利效应压降 在反射镜支撑轮被主轴旋转时,主轴壳体内的邻近轴承侧面的内部区域内的内表面。 镜支撑轮的中心主轴接合部分的内表面可以与轴承间隔约0.200英寸。
    • 40. 发明申请
    • SINTERED CAPACITOR ELECTRODE INCLUDING A 3-DIMENSIONAL FRAMEWORK
    • 烧结电容器电极,包括三维框架
    • US20130041420A1
    • 2013-02-14
    • US13564057
    • 2012-08-01
    • Gregory J. Sherwood
    • Gregory J. Sherwood
    • A61N1/39H01G9/10H01G9/052
    • H01G9/12A61N1/378
    • An example includes a capacitor case sealed to retain electrolyte, at least one anode disposed in the capacitor case, the at least one anode comprising a sintered portion disposed on a current collector formed of a framework defining cells extending to three axes, an anode conductor coupled to the current collector formed of a framework defining cells extending to three axes in electrical communication with the sintered portion, the anode conductor sealingly extending through the capacitor case to an anode terminal disposed on the exterior of the capacitor case with the anode terminal in electrical communication with the sintered portion, a cathode disposed in the capacitor case, a separator disposed between the cathode and the anode and a cathode terminal disposed on an exterior of the capacitor case and in electrical communication with the cathode, wherein the anode terminal and the cathode terminal are electrically isolated from one another.
    • 一个实例包括密封以保持电解质的电容器壳体,设置在电容器壳体中的至少一个阳极,所述至少一个阳极包括布置在集电器上的烧结部分,所述烧结部分由限定了延伸到三个轴线的单元的框架形成,阳极导体耦合 到由集电体形成的集电体,该框架限定了与烧结部分电连通的三个轴的电池单元,阳极导体密封地延伸穿过电容器壳体到设置在电容器外壳上的阳极端子,阳极端子处于电气通信 烧结部分设置在电容器壳体中的阴极,设置在阴极和阳极之间的隔膜和设置在电容器壳体的外部并与阴极电连通的阴极端子,其中阳极端子和阴极端子 彼此电隔离。