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    • 11. 发明申请
    • POWER SWITCHING MODULE FOR BATTERY MODULE ASSEMBLY
    • 电池组件电源开关模块
    • WO2008066253A1
    • 2008-06-05
    • PCT/KR2007/005337
    • 2007-10-27
    • LG CHEM, LTD.YOON, JunillRO, Jong-yulYANG, HeekookYOON, JongmoonJUNG, Do Yang
    • YOON, JunillRO, Jong-yulYANG, HeekookYOON, JongmoonJUNG, Do Yang
    • H01H50/02
    • B60K6/28H01M2/0245H01M2/1077H01M2/206
    • Disclosed herein is a power switching module for a battery module assembly constructed in a structure in which a plurality of rectangular battery modules, each having a plurality of battery cells or unit modules connected in series to each other, are stacked in the width direction (the longitudinal direction) and the height direction (the transverse direction) by at least twos such that the rectangular battery modules generally constitute a hexahedral structure (hexahedral stack), outer edges of the hexahedral stack are fixed by a frame member, and input and output terminals of the rectangular battery modules are oriented such that the input and output terminals of the rectangular battery modules are directed toward one surface (a) of the hexahedral stack, wherein the power switching module comprises an insulative substrate mounted to the surface (a) of the hexahedral stack in a coupling fashion, elements mounted on the insulative substrate for controlling voltage and current during the charge and discharge of the rectangular battery modules, and connection members mounted on the insulative substrate for interconnecting the control elements.
    • 这里公开了一种用于电池模块组件的功率开关模块,该电源模块组件被构造成这样的结构,其中,具有彼此串联连接的多个电池单元或单元模块的多个矩形电池模块在宽度方向上被堆叠 纵向)和高度方向(横向)至少两个,使得矩形电池模块通常构成六面体结构(六面体堆叠),六面体堆叠的外边缘由框架构件固定,输入和输出端子 矩形电池模块的方向取向为使得矩形电池模块的输入和输出端子指向六面体堆叠的一个表面(a),其中功率开关模块包括安装到第六面体堆叠的表面(a)的绝缘衬底 六面体堆叠,耦合方式,安装在绝缘衬底上的元件,用于在th期间控制电压和电流 矩形电池模块的充电和放电以及安装在绝缘基板上用于互连控制元件的连接构件。
    • 17. 发明公开
    • SEALED TYPE HEAT EXCHANGING SYSTEM OF BATTERY PACK
    • 电池组密封式换热系统
    • EP1952456A1
    • 2008-08-06
    • EP06799379.0
    • 2006-10-23
    • LG Chem, Ltd.
    • AHN, JaesungPARK, JongMinJUNG, Do YangNAMGOONG, John, E.
    • H01M2/10
    • H01M2/1016H01M2/1072H01M10/425H01M10/613H01M10/6551H01M10/6563H01M10/6566H01M10/6572H01M10/658
    • Disclosed herein is a heat exchange system that controls the temperature of a medium- or large-sized battery pack including a plurality of unit cells. The heat exchange system includes a sealed type housing surrounding the outer surface of the battery pack such that a predetermined flow channel, through which a heat exchange medium flows, is defined between the housing and the battery pack, a driving fan mounted in the housing for driving the heat exchange medium to flow, and a heat exchange unit mounted at one side of the housing for controlling the temperature of the heat exchange medium. In the heat exchange system according to the present invention, the heat exchange medium, for example, air is not introduced from the outside of the battery system, but is circulated in the battery system by the heat exchange unit. Consequently, the present invention has the effect of accomplishing the reduction in size of the battery system, reducing influences caused by external conditions, decreasing noise, and effectively controlling the optimum operating temperature of the battery pack.
    • 本文公开了一种热交换系统,其控制包括多个单元电池的中型或大型电池组的温度。 热交换系统包括围绕电池组的外表面的密封型外壳,使得热交换介质流经的预定流动通道限定在外壳与电池组之间,安装在外壳中的驱动风扇用于 驱动热交换介质流动,以及安装在壳体一侧的热交换单元,用于控制热交换介质的温度。 在根据本发明的热交换系统中,热交换介质例如空气不从电池系统的外部引入,而是通过热交换单元在电池系统中循环。 因此,本发明具有实现电池系统的小型化,降低由外部条件引起的影响,降低噪音并且有效地控制电池组的最佳工作温度的效果。
    • 18. 发明公开
    • TERMINAL-CONNECTING MEANS
    • 设备用于端子连接
    • EP1872421A1
    • 2008-01-02
    • EP06757411.1
    • 2006-04-10
    • LG Chem, Ltd.
    • YOON, JunillRO, Jong-yulJUNG, Do YangYOON, Yeo Won
    • H01M2/30
    • H01M2/202
    • Disclosed herein is a terminal-connecting device including an electrically insulating hollow connecting device body having an open upper end, and an electrically insulating cover coupled to the open upper end of the connecting device body. The terminal-connecting device is constructed such that a plate-shaped conductive bus bar is mounted to the lower end of the connecting device body, two or more terminal insertion holes are formed in the lower end of the connecting device body and the bus bar, the terminal insertion holes formed in the lower end of the connecting device body communicating with the terminal insertion holes formed in the bus bar, and a connecting member insertion slit is formed in one side of connecting device body for allowing further connection of the corresponding electrode terminal to an external connecting member, as occasion demands. The electrical connection between the electrode terminals and the electrical connection between the external connecting member and the corresponding electrode terminal can be easily and conveniently accomplished through the use of the terminal-connecting device according to the present invention. Also, the terminal connection part is isolated from the outside, whereby the occurrence of short circuits and the occurrence of corrosion due to moisture are effectively prevented. The terminal-connecting device according to the present invention is preferably used in manufacturing a medium- or large-sized battery system, especially, for electric vehicles and hybrid electric vehicles.