Power switching module for battery module assembly
    22.
    发明授权
    Power switching module for battery module assembly 有权
    电池模块组装电源开关模块

    公开(公告)号:US08125192B2

    公开(公告)日:2012-02-28

    申请号:US12516267

    申请日:2007-10-27

    IPC分类号: H02J7/00

    摘要: 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.

    摘要翻译: 这里公开了一种用于电池模块组件的功率切换模块,其结构是这样的结构,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,并且输入和输出端子 矩形电池模块的定向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二表面(a)的绝缘衬底 六面体堆叠以耦合的方式,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。

    Secondary battery of novel structure and battery pack having the same
    23.
    发明申请
    Secondary battery of novel structure and battery pack having the same 有权
    新型结构的二次电池和具有相同的电池组

    公开(公告)号:US20060286450A1

    公开(公告)日:2006-12-21

    申请号:US11446015

    申请日:2006-06-02

    IPC分类号: H01M2/08 H01M2/06

    摘要: Disclosed herein are a secondary battery including an electrode assembly for charging and discharging mounted in a sheathing member including a metal layer and a resin layer, wherein the secondary battery further includes a secondary battery having a molding part of a predetermined thickness at least partially formed at the outside of a sheathing member, preferably, at a sealing region of the sheathing member, and a medium- or large-sized battery pack including the same. The molding part is formed at the outside of the sheathing member of the secondary battery. Consequently, the secondary battery according to the present invention has high mechanical strength, and therefore, it is possible to construct a battery pack without using addition members, such as cartridges. When the molding part is formed at the sealing region, which is weak, the molding part increases the mechanical strength and the sealing force of the secondary battery. Consequently, a battery pack including the secondary batteries as unit cells can be manufactured generally in a compact structure and with relatively small weight, and the assembly process of the battery pack is greatly simplified. The battery pack according to the present invention has high structural stability. Consequently, the battery pack can be preferably used as a power source for electric vehicles, hybrid electric vehicles, electric motorcycles, and electric bicycles.

    摘要翻译: 本文公开了一种二次电池,其包括安装在包括金属层和树脂层的护套构件中的用于充放电的电极组件,其中所述二次电池还包括具有预定厚度的模制部分的二次电池,所述模制部分至少部分地形成在 护套构件的外侧,优选地在护套构件的密封区域,以及包括该护套构件的中型或大型电池组。 成型部形成在二次电池的护套构件的外侧。 因此,根据本发明的二次电池具有高的机械强度,因此,可以不使用诸如墨盒的添加构件来构造电池组。 当模制部件形成在弱的密封区域时,模制部件增加了二次电池的机械强度和密封力。 因此,作为单元电池的二次电池的电池组件一般可以制造成一体,结构紧凑,重量轻,电池组件的组装工序大大简化。 根据本发明的电池组具有高结构稳定性。 因此,电池组可以优选用作电动汽车,混合电动车辆,电动摩托车和电动自行车的动力源。

    POWER SWITCHING MODULE FOR BATTERY MODULE ASSEMBLY
    25.
    发明申请
    POWER SWITCHING MODULE FOR BATTERY MODULE ASSEMBLY 有权
    电池组件电源开关模块

    公开(公告)号:US20100141214A1

    公开(公告)日:2010-06-10

    申请号:US12516267

    申请日:2007-10-27

    IPC分类号: H02J7/00 H02H3/20 H02H3/08

    摘要: 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.

    摘要翻译: 这里公开了一种用于电池模块组件的功率切换模块,其结构是这样的结构,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,并且输入和输出端子 矩形电池模块的定向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二表面(a)的绝缘衬底 六面体堆叠以耦合的方式,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。

    Apparatus for manufacturing secondary battery
    26.
    发明申请
    Apparatus for manufacturing secondary battery 有权
    二次电池制造装置

    公开(公告)号:US20070154799A1

    公开(公告)日:2007-07-05

    申请号:US11517741

    申请日:2006-09-08

    IPC分类号: H01M2/02 B23P19/00

    摘要: Disclosed herein is an apparatus for manufacturing a secondary battery by performing insert injection molding with respect to a portion of a battery cell while the battery cell is located in a mold, wherein the apparatus comprises a pair of upper and lower molds, at which are formed shapes corresponding to the battery cell, the upper and lower molds are provided at the inside surfaces thereof with elastic members, and the elastic members are constructed in a structure in which the elastic members support a cell body of the battery cell and isolate a non-molding region from a molding region while the battery cell is mounted in the upper and lower molds. The secondary battery manufacturing apparatus according to the present invention has the effect of preventing a battery case from being damaged due to the contact between the battery case and the mold when the mold is brought into tight contact with the cell body of the battery cell during insert injection molding to form a molding member at a specific region of the secondary battery, and effectively preventing a material for insert injection molding, which is injected into the molding region, from being injected into the non-molding region.

    摘要翻译: 本发明公开了一种二次电池的制造装置,其特征在于,在电池单元位于模具中的同时,相对于电池单元的一部分进行插入注射成型,其特征在于,所述装置包括一对上模和下模 对应于电池单元的形状,上下模具的内表面设置有弹性构件,弹性构件构成为弹性构件支撑电池单元的电池体并隔离非隔离电极的结构, 模制区域,而电池单元安装在上模具和下模具中。 根据本发明的二次电池制造装置具有如下效果:当在插入期间模具与电池单体的电池体紧密接触时,由于电池壳体和模具之间的接触而防止电池壳体被损坏 注射成型以在二次电池的特定区域形成模制构件,并且有效地防止注入到模制区域中的用于插入注射成型的材料被注入到非模制区域中。

    Middle or large-sized battery module
    27.
    发明授权
    Middle or large-sized battery module 有权
    中型或大型电池模块

    公开(公告)号:US09337455B2

    公开(公告)日:2016-05-10

    申请号:US12224687

    申请日:2007-02-28

    摘要: A middle- or large-sized battery module includes two or more unit modules each having one or more plate-shaped battery cells, as unit cells, surrounded by a high-strength sheathing member made of synthetic resin or metal, and separable upper and lower frame members coupled with each other in an assembly-type coupling structure such that the unit modules are vertically mounted in the upper and lower frame members. A sensing unit capable of minimizing the weight and size of battery cells is easily mounted while effectively reinforcing the low mechanical strength of the battery cells and sensing the operation state of the battery cells to a middle- or large-sized battery module. The battery module is manufactured by a simple assembly process without using a plurality of members for mechanical coupling and electrical connection.

    摘要翻译: 中型或大型电池模块包括两个或更多个单元模块,每个单元模块具有一个或多个板状电池单元,作为单元电池,被由合成树脂或金属制成的高强度护套构件包围,并且可分离上下 框架构件在组装型联接结构中彼此联接,使得单元模块垂直地安装在上框架构件和下框架构件中。 容易安装能够最小化电池单元的重量和尺寸的感测单元,同时有效地增强了电池单元的低机械强度并且将电池单元的操作状态感测到中型或大型电池模块。 电池模块通过简单的组装工艺制造而不使用多个用于机械耦合和电连接的构件。

    Apparatus for manufacturing secondary battery
    28.
    发明授权
    Apparatus for manufacturing secondary battery 有权
    二次电池制造装置

    公开(公告)号:US08033806B2

    公开(公告)日:2011-10-11

    申请号:US11517741

    申请日:2006-09-08

    IPC分类号: B29C70/76

    摘要: Disclosed herein is an apparatus for manufacturing a secondary battery by performing insert injection molding with respect to a portion of a battery cell while the battery cell is located in a mold, wherein the apparatus comprises a pair of upper and lower molds, at which are formed shapes corresponding to the battery cell, the upper and lower molds are provided at the inside surfaces thereof with elastic members, and the elastic members are constructed in a structure in which the elastic members support a cell body of the battery cell and isolate a non-molding region from a molding region while the battery cell is mounted in the upper and lower molds. The secondary battery manufacturing apparatus according to the present invention has the effect of preventing a battery case from being damaged due to the contact between the battery case and the mold when the mold is brought into tight contact with the cell body of the battery cell during insert injection molding to form a molding member at a specific region of the secondary battery, and effectively preventing a material for insert injection molding, which is injected into the molding region, from being injected into the non-molding region.

    摘要翻译: 本发明公开了一种二次电池的制造装置,其特征在于,在电池单元位于模具中的同时,相对于电池单元的一部分进行插入注射成型,其特征在于,所述装置包括一对上模和下模 对应于电池单元的形状,上下模具的内表面设置有弹性构件,弹性构件构成为弹性构件支撑电池单元的电池体并隔离非隔离电极的结构, 模制区域,而电池单元安装在上模具和下模具中。 根据本发明的二次电池制造装置具有如下效果:当在插入期间模具与电池单体的电池体紧密接触时,由于电池壳体和模具之间的接触而防止电池壳体被损坏 注射成型以在二次电池的特定区域形成模制构件,并且有效地防止注入到模制区域中的用于插入注射成型的材料被注入到非模制区域中。

    MIDDLE OR LARGE-SIZED BATTERY MODULE
    29.
    发明申请
    MIDDLE OR LARGE-SIZED BATTERY MODULE 有权
    中型或大型电池模块

    公开(公告)号:US20100021802A1

    公开(公告)日:2010-01-28

    申请号:US12224687

    申请日:2007-02-28

    IPC分类号: H01M2/10

    摘要: Disclosed herein is a middle- or large-sized battery module including two or more unit modules each having one or more plate-shaped battery cells, as unit cells, surrounded by a high-strength sheathing member made of synthetic resin or metal, and separable upper and lower frame members coupled with each other in an assembly-type coupling structure such that the unit modules are vertically mounted in the upper and lower frame members. The present invention has the effect of easily mounting a sensing unit that is capable of minimizing the weight and size of battery cells while effectively reinforcing the low mechanical strength of the battery cells and sensing the operation state of the battery cells to a middle- or large-sized battery module. In addition, the present invention has the effect of manufacturing the battery module by a simple assembly process without using a plurality of members for mechanical coupling and electrical connection, thereby decreasing the manufacturing costs of the battery module, and effectively preventing the battery module from being short-circuited or damaged during the manufacture or the operation of the battery module. Furthermore, the present invention has the effect of manufacturing a middle- or large-sized battery system having desired output and capacity using the battery module as a unit body.

    摘要翻译: 这里公开了一种中型或大型电池模块,其包括两个或更多个单元模块,每个单元模块具有一个或多个板状电池单元,作为单元电池,被由合成树脂或金属制成的高强度护套构件包围,并且可分离 上框架构件和下框架构件以组装型联接结构彼此联接,使得单元模块垂直地安装在上框架构件和下框架构件中。 本发明具有能够容易地安装能够最小化电池单元的重量和尺寸的感测单元,同时有效地增强电池单元的低机械强度并且将电池单元的操作状态感测到中等或更大 电池模块。 此外,本发明通过简单的组装工艺制造电池模块的效果,而不使用多个用于机械耦合和电连接的构件,从而降低电池模块的制造成本,并且有效地防止电池模块 在电池模块的制造或操作期间短路或损坏。 此外,本发明具有使用电池模块作为单元体来制造具有期望的输出和容量的中型或大型电池系统的效果。

    BMS having waterproof function
    30.
    发明授权
    BMS having waterproof function 有权
    BMS具有防水功能

    公开(公告)号:US08017259B2

    公开(公告)日:2011-09-13

    申请号:US12300772

    申请日:2007-05-04

    IPC分类号: H01M10/02

    摘要: Disclosed herein is a battery management system for controlling the operation of a middle- or large-sized battery pack, the battery management system comprising: a battery management system printed circuit board (BMS PCB) comprising a circuit and elements for controlling the operation of the battery pack; a connector attached to one side of the BMS PCB; a housing including a housing body for receiving the BMS PCB while partially exposing the connector and a cover for covering the housing body, the cover is coupled to the housing body while the cover is disposed on the housing body; and a waterproofing member interposed between the housing body and the cover, constituting the housing, such that the waterproofing member is in tight contact with the interface between the housing body and the cover, the waterproofing member being constructed in a structure to be coupled at coupling regions of the housing body and the cover. The battery management system according to the present invention is constructed in a structure in which moisture is prevented from permeation into the housing of the battery management system in a high-temperature, high-humidity environment. Consequently, the present invention has the effect of preventing the damage to and the corrosion of the BMS PCB, and therefore, improving the reliability of the battery pack and increasing the service life of the battery pack.

    摘要翻译: 本文公开了一种用于控制中型或大型电池组的操作的电池管理系统,该电池管理系统包括:电池管理系统印刷电路板(BMS PCB),包括电路和用于控制 电池组; 连接到BMS PCB一侧的连接器; 壳体,其包括用于接收所述BMS PCB的壳体,同时部分地暴露所述连接器和用于覆盖所述壳体的盖,所述盖在所述盖设置在所述壳体上时联接到所述壳体; 以及防水构件,其设置在所述壳体和所述盖之间,构成所述壳体,使得所述防水构件与所述壳体和所述盖体之间的界面紧密接触,所述防水构件构造成在联接时耦合的结构 壳体和盖的区域。 根据本发明的电池管理系统构造成在高温,高湿度环境中防止湿气渗透到电池管理系统的壳体中的结构。 因此,本发明具有防止BMS PCB的损坏和腐蚀的效果,因此提高了电池组的可靠性并且提高了电池组的使用寿命。