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    • 31. 发明授权
    • Electric double layer capacitor and method for manufacturing the same
    • 双电层电容器及其制造方法
    • US08531818B2
    • 2013-09-10
    • US13060383
    • 2009-11-06
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • H01G9/155
    • H01G11/84H01G11/12H01G11/28H01G11/36Y02E60/13Y10T29/417
    • An electric double layer capacitor 200 is configured such that a positive electrode 206, a separator 205, and a negative electrode 207 stacked in this order are contained in a container, and a portion between the positive electrode 206 and the negative electrode 207 is filled with an electrolytic solution. A polar plate of one or each of the positive electrode 206 and the negative electrode 207 includes a current collector 201, 203 and a plurality of electrically-conductive fine fibers 202, 204 formed and standing on a surface of the current collector such that one end of each of the fine fibers is electrically connected to the surface of the current collector. A surface of the polar plate is covered with the separator 205, the surface corresponding to the surface of the current collector. The polar plate and the separator 205 are pressure bonded to be integrated with each other. In the electric double layer capacitor using the electrically-conductive fine fiber, such as a carbon nanotube, as an active material, energy density can be increased by densely compressing the active material.
    • 电双层电容器200被构造成使得按照这个顺序堆叠的正电极206,隔膜205和负电极207被容纳在容器中,并且正电极206和负电极207之间的部分填充有 电解液。 正电极206和负电极207中的一个或每个的极板包括集电体201,203和形成并站立在集电体的表面上的多个导电细纤维202,204,使得一端 的每个细纤维电连接到集电器的表面。 极板的表面被分离器205覆盖,该表面对应于集电体的表面。 极板和分离器205被压接以彼此一体化。 在使用诸如碳纳米管的导电细纤维作为活性材料的双电层电容器中,通过密集地压缩活性材料可以增加能量密度。
    • 32. 发明授权
    • Electronic device
    • 电子设备
    • US08325475B2
    • 2012-12-04
    • US12845534
    • 2010-07-28
    • Koichiro TakeguchiShigeo Hayashi
    • Koichiro TakeguchiShigeo Hayashi
    • G06F1/16H01R13/73
    • G06F1/1684G06F1/1615G06F1/188
    • According to one embodiment, an electronic device includes a side wall, an interface component, a partition wall, and a protrusion. The side wall is formed on one of the bottom wall and the top wall of a housing to spatially separate the inside of the housing from the outside. The side wall includes a through opening. The interface component faces the through opening in the housing. The partition wall is formed on the one of the bottom wall and the top wall and coupled perpendicularly to the side wall. The partition wall spatially separates the inside of the housing and a component retainer formed as a cutout or a recess of the housing. The protrusion is formed on the one of the bottom wall and the top wall to be spaced apart from the partition wall. The interface component is held between the partition wall and the protrusion.
    • 根据一个实施例,电子设备包括侧壁,接口部件,分隔壁和突起。 侧壁形成在壳体的底壁和顶壁中的一个上,以将壳体的内部与外部空间分离。 侧壁包括通孔。 接口部件面向壳体中的通孔。 分隔壁形成在底壁和顶壁之一上,并垂直于侧壁耦合。 分隔壁在空间上分隔壳体的内部和形成为壳体的切口或凹部的部件保持器。 所述突起部形成在所述底壁和所述顶壁之一上,与所述隔壁间隔开。 界面部件保持在分隔壁和突出部之间。
    • 37. 发明申请
    • ELECTRIC DOUBLE LAYER CAPACITOR AND METHOD FOR MANUFACTURING THE SAME
    • 电双层电容器及其制造方法
    • US20110149465A1
    • 2011-06-23
    • US13060383
    • 2009-11-06
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • Yasuhiro HashimotoTakuma AsariHironori KumagaiShigeo Hayashi
    • H01G4/30H01G9/00
    • H01G11/84H01G11/12H01G11/28H01G11/36Y02E60/13Y10T29/417
    • An electric double layer capacitor 200 is configured such that a positive electrode 206, a separator 205, and a negative electrode 207 stacked in this order are contained in a container, and a portion between the positive electrode 206 and the negative electrode 207 is filled with an electrolytic solution. A polar plate of one or each of the positive electrode 206 and the negative electrode 207 includes a current collector 201, 203 and a plurality of electrically-conductive fine fibers 202, 204 formed and standing on a surface of the current collector such that one end of each of the fine fibers is electrically connected to the surface of the current collector. A surface of the polar plate is covered with the separator 205, the surface corresponding to the surface of the current collector. The polar plate and the separator 205 are pressure bonded to be integrated with each other. In the electric double layer capacitor using the electrically-conductive fine fiber, such as a carbon nanotube, as an active material, energy density can be increased by densely compressing the active material.
    • 电双层电容器200被构造成使得按照这个顺序堆叠的正电极206,隔膜205和负电极207被容纳在容器中,并且正电极206和负电极207之间的部分被填充有 电解液。 正电极206和负电极207中的一个或每个的极板包括集电体201,203和形成并站立在集电体的表面上的多个导电细纤维202,204,使得一端 的每个细纤维电连接到集电器的表面。 极板的表面被分离器205覆盖,该表面对应于集电体的表面。 极板和分离器205被压接以彼此一体化。 在使用诸如碳纳米管的导电细纤维作为活性材料的双电层电容器中,通过密集地压缩活性材料可以增加能量密度。
    • 39. 发明授权
    • Transmitter optical subassembly and a transmitter optical module installing the same
    • 发射器光学组件和安装它的发射器光学模块
    • US07483460B2
    • 2009-01-27
    • US11496713
    • 2006-08-01
    • Shigeo Hayashi
    • Shigeo Hayashi
    • H01S3/00
    • H01S5/042H01L2224/48091H01L2924/1305H01L2924/30107H01L2924/3011H01S5/0427H01S5/06226H01L2924/00014H01L2924/00
    • To provide a transmitter optical subassembly that provides an enhanced high-frequency response without increasing the power consumption within a CAN-type package. The transmitter optical subassembly includes a semiconductor laser diode, an auxiliary circuit, and a package for installing the semiconductor laser diode and the auxiliary circuit. The auxiliary circuit generates a transient signal synchronized with the leading edge or falling edge of a driving signal for the semiconductor laser diode in an electrode of the semiconductor laser diode for a very short period in order to boost the response speed of the semiconductor laser diode. The auxiliary circuit operated intermittently so that it is not necessary to consider heat caused by the auxiliary circuit even in case the auxiliary circuit is installed in the package.
    • 提供一种发射器光学子组件,其提供增强的高频响应而不增加CAN型封装内的功耗。 发射器光学子组件包括半导体激光二极管,辅助电路和用于安装半导体激光二极管和辅助电路的封装。 辅助电路在半导体激光二极管的电极中产生与半导体激光二极管的驱动信号的前沿或下降沿同步的瞬态信号,以提高半导体激光二极管的响应速度。 辅助电路间歇运行,即使在辅助电路安装在封装中的情况下也不需要考虑由辅助电路引起的热量。