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    • 52. 发明申请
    • MANAGED ACCESS ELECTROCHEMICAL ENERGY GENERATION SYSTEM
    • 管理访问电化学能源发电系统
    • US20150037623A1
    • 2015-02-05
    • US13954032
    • 2013-07-30
    • Elwha LLC
    • Roderick A. HydeJordin T. KareLowell L. Wood, JR.
    • H01M6/50H01M10/42
    • H01M6/5005H01M10/0445H01M10/0525H01M10/122H01M10/30H01M10/345H01M10/4235H01M10/425H01M10/44H01M10/486
    • Described embodiments include a system and a method. A system includes a controllable electrochemical cell configured to output pulsed electric power. The controllable cell includes an electrolyte, and a first working electrode configured to transfer electrons to or from the electrolyte. The system includes a second working electrode configured to transfer electrons to or from the electrolyte. The system includes a gating electrode spaced-apart from the second working electrode and configured if biased relative to the second working electrode to modify an electric charge, field, or potential in the space between the electrolyte and the second working electrode. The system includes a control circuit configured to establish a nonlinear voltage-current property of the controllable cell in response to an externally originated trigger signal.
    • 所描述的实施例包括系统和方法。 系统包括被配置为输出脉冲电力的可控电化学电池。 可控电池包括电解质和构造成将电子传递到电解质或从电解质转移的第一工作电极。 该系统包括构造成将电子传送到电解质或从电解质转移电子的第二工作电极。 该系统包括与第二工作电极间隔开的门控电极,并且如果相对于第二工作电极偏置,则构造为修改电解质和第二工作电极之间的空间中的电荷,场或电位。 该系统包括控制电路,其配置为响应于外部产生的触发信号建立可控单元的非线性电压 - 电流特性。
    • 53. 发明申请
    • LEAD-ACID BATTERY DESIGN HAVING VERSATILE FORM FACTOR
    • 具有多种形式因子的铅酸电池设计
    • US20150010807A1
    • 2015-01-08
    • US14326784
    • 2014-07-09
    • ENERGY POWER SYSTEMS, LLC
    • Subhash DHARWilliam KOETTINGMichael NIELSONKwok TOMJorge ESPINELFabio ALBANO
    • H01M10/12
    • H01M10/12H01M2/26H01M10/0431H01M10/0477H01M10/122H01M10/123Y02E60/126Y02T10/7016
    • An electrochemical storage device is disclosed. The device comprises a first electrochemical cell and a second electrochemical cell disposed in a common casing and each comprising an anode and a cathode. The anode of the first electrochemical cell is disposed opposite the cathode of the second electrochemical cell. The device further comprises a separator disposed between the anode of the first electrochemical cell and the cathode of the second electrochemical cell. The anode of the first electrochemical cell and the cathode of the second electrochemical cell are electrically insulated and in communication through an ionically conductive medium adsorbed in the separator. The device further comprises a common current collector disposed on the anode of the first electrochemical cell and the cathode of the second electrochemical cell. The first and second electrochemical cells are electrically connected and insulated from ionic conduction.
    • 公开了一种电化学存储装置。 该装置包括第一电化学电池和设置在公共壳体中的每个包括阳极和阴极的第二电化学电池。 第一电化学电池的阳极与第二电化学电池的阴极相对设置。 该装置还包括设置在第一电化学电池的阳极和第二电化学电池的阴极之间的隔板。 第一电化学电池的阳极和第二电化学电池的阴极是电绝缘的并且通过吸附在隔板中的离子传导介质连通。 该器件还包括设置在第一电化学电池的阳极和第二电化学电池的阴极上的公共集电器。 第一和第二电化学电池与离子导电电连接并绝缘。
    • 54. 发明申请
    • LEAD-ACID BATTERY DESIGN HAVING VERSATILE FORM FACTOR
    • 具有多种形式因子的铅酸电池设计
    • US20130183559A1
    • 2013-07-18
    • US13766991
    • 2013-02-14
    • Energy Power Systems, LLC
    • Subhash DHARWilliam KOETTINGMichael NIELSONKwok TOMJorge ESPINELFabio ALBANO
    • H01M10/04
    • H01M10/12H01M2/26H01M10/0431H01M10/0477H01M10/122H01M10/123Y02E60/126Y02T10/7016
    • An electrochemical storage device comprises a plurality of layer electrodes, wherein each layer electrode includes a first charged sector and a second charged sector, wherein the second charged sector is charged oppositely compared to the first charged sector, and wherein the plurality of layer electrodes are assembled with respect to each other such that the first charged sector of a first plate of the plurality of layer electrodes is laid below the second charged sector of a second plate of the plurality of layer electrodes located immediately above the first plate, wherein the charges of the first charged sectors of the first and second plates have a first sign and the charges of the second charged sectors of the first and second plates have a second sign that is opposite the first sign; a separator sector located, and enabling ionic charge exchange between the first charged sector of the first plate and the second charged sector of the second plate.
    • 电化学存储装置包括多个层电极,其中每个层电极包括第一带电扇区和第二带电扇区,其中与第一带电扇区相比,第二带电扇区相反地被充电,并且其中多个层电极被组装 相对于彼此,使得多个层电极中的第一板的第一带电扇区被放置在位于第一板正上方的多个层电极的第二板的第二带电扇区的下方,其中, 第一和第二板的第一带电扇区具有第一符号,并且第一和第二板的第二带电扇区的电荷具有与第一符号相反的第二符号; 分隔器扇区,并且能够实现第一板的第一带电扇区与第二板的第二带电扇区之间的离子电荷交换。
    • 56. 发明申请
    • System and method of detecting a battery fault
    • 检测电池故障的系统和方法
    • US20080315686A1
    • 2008-12-25
    • US12149948
    • 2008-05-09
    • David ElderFrank Bruno
    • David ElderFrank Bruno
    • H02J9/06
    • B60L3/0046H01M2/28H01M2/34H01M10/0413H01M10/0445H01M10/122H01M10/4207Y02E60/126Y02P70/54Y02T10/7016Y02T90/16Y10T307/615Y10T307/625
    • A method of controlling a multiple battery system in a vehicle electrical system is provided. The method steps include polling an at least one sensor in the multiple battery system monitoring the multiple battery system for an at least one reading and detecting an abnormal reading from said at least one sensor. And then communicating the results of said detection step to an operator or a Network Operations Center switching, upon a command from the operator, the Network Operations Center or a controller switching an at least one switch from a first of an at least two operating positions engaging a main battery to a second of an at least two operating positions engaging an at least one auxiliary battery. The system then confirms the operation of the vehicle electrical system and engages either the main battery or the auxiliary battery, but not both, to operate the vehicle electrical system.
    • 提供一种控制车辆电气系统中的多电池系统的方法。 所述方法步骤包括轮询多个电池系统中的至少一个传感器,监测所述多个电池系统的至少一个读数并从所述至少一个传感器检测异常读数。 然后将所述检测步骤的结果传送给操作员或网络操作中心,根据操作者的命令,网络操作中心或控制器从至少两个操作位置中的第一个切换至少一个开关,所述至少两个操作位置与 主电池至少接合至少一个辅助电池的至少两个操作位置中的第二个。 然后,系统确认车辆电气系统的操作,并且与主电池或辅助电池(而不是两者)接合以操作车辆电气系统。
    • 58. 发明授权
    • Electric storage battery assembly
    • 蓄电池组
    • US4684580A
    • 1987-08-04
    • US820025
    • 1986-01-21
    • Scott L. Cramer
    • Scott L. Cramer
    • H01M2/10H01M2/30H01M10/12H01M10/42H01M10/44H01M16/00
    • H01M10/4207H01M10/122H01M16/00Y02E60/126
    • An improved automotive type electric storage battery assembly including a primary storage battery of a conventional type having a casing providing a receptacle for a secondary, smaller storage battery. Each of the batteries are provided with conventional side mount or top mount positive and negative posts and the primary and second storage battery each are provided with a receptacle and plug mechanism respectively for quickly interconnecting the two batteries to obtain maximum cranking amperage. The secondary storage battery and primary storage battery casings are adapted for quick clamping and releasing mechanism requiring no tools such that the secondary battery may be easily removed and stored in a warm location in extreme cold conditions.
    • 一种改进的汽车型蓄电池组件,其包括具有为次级小型蓄电池提供容器的壳体的常规类型的一次蓄电池。 每个电池设置有常规的侧面安装或顶部安装的正极和负极柱,并且主和第二蓄电池分别设置有插座和插头机构,用于快速地互连两个电池以获得最大的起动安培数。 二次蓄电池和一次蓄电池壳体适用于不需要工具的快速夹紧和释放机构,使得二次电池可以容易地移除并存储在极端寒冷条件下的温暖位置。
    • 59. 发明授权
    • Multi-cell batteries
    • 多节电池
    • US4239839A
    • 1980-12-16
    • US43822
    • 1979-05-30
    • William L. McDowallAlan K. Maplesden
    • William L. McDowallAlan K. Maplesden
    • H01M10/04H01M10/12H01M10/42H01M2/24
    • H01M10/122H01M10/0413H01M10/4207Y02E60/126
    • A multi-cell battery constructed of a plurality of frames of insulating material each frame having a number of active battery material areas arranged side by side with a division portion between each material area, the frames being arranged side by side in a direction normal to the plane of the frame with the division portions secured in sealed relation to form partitions between adjacent cells of the battery. The active battery material in respective areas being selected so that adjacent areas in each frame are of opposite polarity and adjacent areas in adjoining frames are of opposite polarity. A barrier frame interposed between and secured to two frames in the assembly forming a chemical and electrical barrier between the active battery material in frames on opposite sides of the barrier member so that the assembly of frames forms two batteries of equal nominal voltage.
    • 一种由多个绝缘材料框构成的多单元电池,每个框架具有多个活性电池材料区域,所述多个活性电池材料区域在每个材料区域之间并排布置有分隔部分,所述框架沿垂直于 平面,其中分隔部分被密封地固定,以在电池的相邻单元之间形成分隔。 选择各个区域中的活性电池材料使得每个框架中的相邻区域具有相反的极性,并且邻接框架中的相邻区域具有相反的极性。 阻挡框架插入并固定在组件中的两个框架之间,在阻挡构件的相对侧上的框架中的活性电池材料之间形成化学和电气屏障,使得框架的组装形成两个相等额定电压的电池。