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    • 2. 发明申请
    • ENERGY STORAGE MODULE
    • 能源储存模块
    • US20130077205A1
    • 2013-03-28
    • US13418056
    • 2012-03-12
    • Chan YOONYoung Hak JEONGHyun Chul JUNGBae Kyun KIM
    • Chan YOONYoung Hak JEONGHyun Chul JUNGBae Kyun KIM
    • H01G9/00
    • H01G9/008H01G9/26H01G11/10H01G11/76Y02E60/13Y02T10/7022
    • Disclosed herein is an energy storage module.The energy storage module may consist of a plurality of capacitor units each including: one or more capacitor cells each having a cathode terminal and an anode terminal extended and formed at an upper part thereof; and a case having a positive (+) connection terminal and a negative (−) connection terminal provided on a front surface and a rear surface of an upper part thereof, respectively, and a plurality of connectors connected to the positive (+) connection terminal and the negative (−) connection terminal embedded therein, the capacitor cells being inserted in the case, wherein the plurality of capacitor units are electrically connected to each other by coupling of the positive (+) connection terminal and the negative (−) connection terminal provided on the front surface and the rear surface of the case.
    • 这里公开了一种储能模块。 能量存储模块可以由多个电容器单元组成,每个电容器单元包括:一个或多个电容器单元,每个电容单元具有在其上部延伸并形成的阴极端子和阳极端子; 以及分别设置在其上部的前表面和后表面上的正(+)连接端子和负极( - )连接端子的壳体,以及连接到正(+)连接端子的多个连接器 和负极( - )连接端子嵌入其中,电容器单元插入壳体中,其中多个电容器单元通过正(+)连接端子和负极( - )连接端子的耦合彼此电连接 设置在壳体的前表面和后表面上。
    • 4. 发明申请
    • ENERGY STORAGE DEVICE AND MANUFACTURING METHOD THEREOF, AND UNIT CELL FOR ENERGY STORAGE DEVICE
    • 能源储存装置及其制造方法及能源储存装置单元
    • US20120327551A1
    • 2012-12-27
    • US13467548
    • 2012-05-09
    • Chan YOONHyun Chul JungYoung Hak JeongBae Kyun Kim
    • Chan YOONHyun Chul JungYoung Hak JeongBae Kyun Kim
    • H01G4/30
    • H01G11/08H01G11/12Y02E60/13Y10T29/43
    • An energy storage device includes a plurality of unit cells stacked therein, each of the unit cells including a cell body, a positive terminal disposed at one side of the cell body, and a negative terminal disposed in the cell body to form a constant rotation angle with the positive terminal with reference to a center of the cell body, wherein the plurality of cell units are stacked in such a manner that another unit cell is rotated as much as the constant rotation angle with reference to one unit cell. Temperature distribution, that is, heat distribution in the energy storage device can be kept even, and heat transmission efficiency between the terminals and the external air can be improved and thus cooling efficiency can be improved. Also, a resistance value is reduced by improving a cooling function so that performance and reliability of a product can be improved.
    • 能量存储装置包括堆叠在其中的多个单元电池,每个单电池包括电池体,设置在电池体一侧的正极端子和设置在电池体中以形成恒定旋转角度的负极端子 其中参考电池体的中心具有正极端子,其中多个电池单元以这样的方式被堆叠,使得另一个单电池相对于一个单元电池旋转恒定的旋转角度。 能够均匀地保持储能装置的温度分布,即热分布,能够提高端子与外部空气的传热效率,提高冷却效率。 此外,通过提高冷却功能来降低电阻值,从而可以提高产品的性能和可靠性。
    • 5. 发明申请
    • LEAD UNIT OF ENERGY STORAGE DEVICE
    • 能源储存装置领导单位
    • US20130063860A1
    • 2013-03-14
    • US13570828
    • 2012-08-09
    • Young Hak JEONGChan YOONHyun Chul JUNGBae Kyun KIM
    • Young Hak JEONGChan YOONHyun Chul JUNGBae Kyun KIM
    • H01G4/012
    • H01G11/82H01G11/74Y02E60/13
    • Disclosed herein is a lead unit of an energy storage device including a lead frame for fixing withdrawal electrodes of the energy storage device, including: an output terminal unit formed on an upper portion of the lead frame; a lead unit formed to extend from the output terminal unit to a lower portion of the lead frame and allowing end portions of the withdrawal electrodes to be inserted therein; and an expanding unit formed at an end portion of the lead unit and being brought into contact with the withdrawal electrodes in a compressed manner.The fabrication process can be simplified compared with the existing welding method, and a contact area between the withdrawal electrodes and the lead unit can be increased to thus reduce contact resistance.
    • 本文公开了一种能量存储装置的引导单元,包括:用于固定储能装置的取出电极的引线框架,包括:形成在引线框架的上部的输出端子单元; 引导单元,其形成为从所述输出端子单元延伸到所述引线框架的下部,并且允许所述引出电极的端部插入其中; 以及形成在引导单元的端部并以压缩方式与取出电极接触的扩展单元。 与现有的焊接方法相比,可以简化制造工艺,并且可以提高取出电极和引线单元之间的接触面积,从而降低接触电阻。