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    • 72. 发明申请
    • SCALABLE BATTERY MODULE
    • 可扩展电池模块
    • WO2011057246A1
    • 2011-05-12
    • PCT/US2010/055985
    • 2010-11-09
    • ENERDEL, INC.BUCK, DerrickSILK, Bruce
    • BUCK, DerrickSILK, Bruce
    • H01M6/42
    • H01M2/206H01M2/0245H01M10/0525H01M10/613H01M10/615H01M10/625H01M10/647H01M10/6555
    • A scalable battery module (10, 210) includes a plurality of similarly configured cell groupings (1251, 1851), a plurality of framed heatsinlc assemblies (50, 250), and a plurality of jumper tabs (32, 232). Each cell grouping (1251, 1751) includes a plurality of cell packs (52, 1752) electrically coupled in parallel including a negative terminal (70, 270) and a positive terminal (64, 264). Each plurality of framed heatsink assemblies (50, 250) is disposed between one cell pack (52, 1752) of the plurality of cell packs of each cell groupings (1251, 1751) and an adjacent cell pack (52, 1752) of the plurality of cell packs of each cell grouping (1251, 1751) and includes a thermally conductive sheet portion. Each of the plurality of jumper tabs (32, 232) electrically couples a negative terminal (70, 270) of one of the plurality of cell groupings (1251, 1851) to a positive terminal (64, 264) of an adjacent cell grouping (1251, 1851).
    • 可扩展电池模块(10,210)包括多个类似配置的单元组(1251,1851),多个框架散热组件(50,250)和多个跳线片(32,232)。 每个单元组(1251,1751)包括并联电耦合的多个单元组(52,1752),包括负端子(70,270)和正端子(64,264)。 每个框架散热器组件(50,250)设置在每个单元组(1251,1751)的多个单电池组的一个单元组(52,1752)和多个单元组的相邻单元组(52,1752)之间 的每个细胞组的细胞包(1251,1751),并且包括导热片部分。 多个跳线片(32,232)中的每一个将多个单元组(1251,1851)中的一个的负端子(70,270)电耦合到相邻单元组的正端子(64,264) 1251,1851)。
    • 73. 发明申请
    • FUSE ASSEMBLY WITH INTEGRATED CURRENT SENSING
    • 具有集成电流传感的保险丝组件
    • WO2010057090A1
    • 2010-05-20
    • PCT/US2009/064583
    • 2009-11-16
    • ENERDEL, INC.HARTZOG, Chad
    • HARTZOG, Chad
    • H01H85/46
    • H01H85/0241H01H85/055H01H2085/0266
    • A fuse assembly (10) includes a main component (12) partially encased in a protective sheath (14). The main component (12) includes a pair of connectors (16A&B) formed of an electrically conductive material to allow the fuse assembly (10) to be electrically connected into an electric vehicle drive system. A fusible link (18) is electrically connected between the connectors (16A&B) and is preferably encased in the protective sheath (14). The fusible link (18) reacts to current flowing through the fuse assembly (10) in excess of a predetermined current for a predetermined time, as is well known to those skilled in the art.
    • 保险丝组件(10)包括部分地封装在保护套(14)中的主要部件(12)。 主要部件(12)包括由导电材料形成的一对连接器(16A和B),以使熔丝组件(10)电连接到电动车辆驱动系统中。 可熔连接件(18)电连接在连接器(16A和B)之间,并且优选地封装在保护套(14)中。 如本领域技术人员所熟知的,熔断连接件(18)对流过保险丝组件(10)的电流反应超过预定电流达预定时间。
    • 76. 发明申请
    • LITHIUM TITANATE AND METHOD OF FORMING THE SAME
    • 钛酸钛及其形成方法
    • WO2007120607A3
    • 2008-07-17
    • PCT/US2007008753
    • 2007-04-10
    • ENERDEL INCGORSHKOV VADIMVOLKOV OLEG
    • GORSHKOV VADIMVOLKOV OLEG
    • C01G23/04H01M4/48H01M4/485H01M10/052H01M10/36
    • C01G23/005C01P2002/77C01P2006/40H01M4/485H01M10/052Y02T10/7011
    • A lithium titanate has the following formula: Li 4 Ti 5 O 12-X wherein x is greater than O. The lithium titanate is formed by providing a mixture of titanium dioxide and a lithium-based component. The mixture is sintered in a gaseous atmosphere comprising a reducing agent to form the lithium titanate having the above formula. A lithium-based cell includes an electrolyte, an anode, and a cathode, with at least one of the anode and the cathode comprising the lithium titanate having the above formula. The lithium titanate is deficient of oxygen, which increases electronic conductivity of the lithium titanate by at least three orders over electronic conductivity of a stoichiometric lithium titanate, while avoiding loss of reversible electric power- generating capacity that typically occurs when doping is used to replace titanium in the lithium titanate with atoms that provide higher electronic conductivity.
    • 钛酸锂具有下式:其中X大于0,其中x大于O.钛酸锂由下式形成:钛/ 提供二氧化钛和锂基组分的混合物。 将混合物在包含还原剂的气态气氛中烧结以形成具有上式的钛酸锂。 锂基电池包括电解质,阳极和阴极,阳极和阴极中的至少一个包含具有上式的钛酸锂。 钛酸锂缺乏氧,这使得钛酸锂的电子导电率比化学计量的钛酸锂的电子传导性提高了至少三倍,同时避免了当掺杂用于替代钛时典型地发生的可逆发电能力的损失 在具有提供更高电导率的原子的钛酸锂中。