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    • 1. 发明申请
    • ELECTROCHEMICAL CELL
    • 电化学细胞
    • US20100178546A1
    • 2010-07-15
    • US12351123
    • 2009-01-09
    • Job Thomas RijssenbeekNeil Anthony JohnsonJinghua LiuHuiqing WuQunjian Huang
    • Job Thomas RijssenbeekNeil Anthony JohnsonJinghua LiuHuiqing WuQunjian Huang
    • H01M2/14B44C1/22B05D5/12
    • H01M10/39H01M2/0252H01M2/18H01M4/78H01M10/38
    • An electrochemical cell is provided that includes a housing that is polygonal in cross-section having a plurality of peripherally spaced corners. The electrochemical cell also includes an ion-conducting separator disposed in the housing. The ion-conducting separator has an anode surface defining a portion of an anode compartment and a cathode surface defining a portion of a cathode compartment. The electrochemical cell also includes an anode current collector system comprising at least one biasing component. The biasing component has a span section, a bias section and an interface section. The bias section is in wicking contact with the anode surface of the separator. The number of biasing components in the anode current collector system differs from the number of the peripherally spaced corners. An energy storage device including a plurality of the electrochemical cells in thermal and/or in electrical communication with each other. A method for forming the biasing component is provided.
    • 提供了一种电化学电池,其包括具有多个外围间隔的角的具有多边形横截面的壳体。 电化学电池还包括设置在壳体中的离子传导隔离物。 离子传导隔离物具有限定阳极室的一部分的阳极表面和限定阴极室的一部分的阴极表面。 电化学电池还包括包括至少一个偏压部件的阳极集电器系统。 偏置部件具有跨距部分,偏置部分和接口部分。 偏压部分与分离器的阳极表面芯吸接触。 阳极集电器系统中偏置元件的数量与外围间隔角的数量不同。 一种能量存储装置,其包括彼此热和/或电连通的多个电化学电池。 提供了一种用于形成偏置部件的方法。
    • 3. 发明授权
    • Integral ac module grounding system
    • 集成交流模块接地系统
    • US08455752B2
    • 2013-06-04
    • US12846057
    • 2010-07-29
    • Charles Steven KormanNeil Anthony Johnson
    • Charles Steven KormanNeil Anthony Johnson
    • H05K5/02
    • H02S40/32F24S25/33H02J3/383H02S20/00Y02E10/563
    • A photovoltaic (PV) ac-module grounding system includes a plurality of PV dc-voltage modules. Each PV dc-voltage module is integrated with a corresponding dc-ac micro-inverter to provide a corresponding PV ac-voltage module. Each PV ac-voltage module includes an ac-voltage plug and play connector that includes a dc ground conductor. Each dc-ac micro-inverter is internally electrically connected to its own chassis ground or metal enclosure which in turn is electrically connected to a corresponding dc ground conductor. A dc ground path is carried through an ac power bus from ac-voltage module to ac-voltage module through the plug and play connectors via the dc ground conductors.
    • 光伏(PV)交流模块接地系统包括多个PV直流电压模块。 每个PV直流电压模块与相应的dc-ac微逆变器集成,以提供相应的PV交流电压模块。 每个PV交流电压模块包括一个交流电压即插即用连接器,包括一个直流接地导体。 每个dc-ac微逆变器内部电连接到其自己的机箱接地或金属外壳,而这些机柜接地或金属外壳又电连接到相应的直流接地导体。 直流接地路径通过交流电源总线从交流电压模块通过直流接地导体通过插头和播放连接器传送到交流电压模块。
    • 6. 发明申请
    • INTEGRAL AC MODULE GROUNDING SYSTEM
    • 集成交流模块接地系统
    • US20120024563A1
    • 2012-02-02
    • US12846057
    • 2010-07-29
    • Charles Steven KormanNeil Anthony Johnson
    • Charles Steven KormanNeil Anthony Johnson
    • H05K5/02
    • H02S40/32F24S25/33H02J3/383H02S20/00Y02E10/563
    • A photovoltaic (PV) ac-module grounding system includes a plurality of PV dc-voltage modules. Each PV dc-voltage module is integrated with a corresponding dc-ac micro-inverter to provide a corresponding PV ac-voltage module. Each PV ac-voltage module includes an ac-voltage plug and play connector that includes a dc ground conductor. Each dc-ac micro-inverter is internally electrically connected to its own chassis ground or metal enclosure which in turn is electrically connected to a corresponding dc ground conductor. A dc ground path is carried through an ac power bus from ac-voltage module to ac-voltage module through the plug and play connectors via the dc ground conductors.
    • 光伏(PV)交流模块接地系统包括多个PV直流电压模块。 每个PV直流电压模块与相应的dc-ac微逆变器集成,以提供相应的PV交流电压模块。 每个PV交流电压模块包括一个交流电压即插即用连接器,包括一个直流接地导体。 每个dc-ac微逆变器内部电连接到其自己的机箱接地或金属外壳,而这些机柜接地或金属外壳又电连接到相应的直流接地导体。 直流接地路径通过交流电源总线从交流电压模块通过直流接地导体通过插头和播放连接器传送到交流电压模块。