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    • 1. 发明公开
    • THIN FILM MICROBATTERY CHARGE AND OUTPUT CONTROL
    • 澳门特别行政区的DÜNNSCHICHTMIROBATTERIELADUNG
    • EP2926434A4
    • 2016-08-03
    • EP13858399
    • 2013-11-27
    • CYMBET CORP
    • MULLIN JEFFREY DSATHER JEFFREY STONKIN STEVE W
    • H02J7/04H02J7/00H02J7/02
    • H02J7/0091H02J7/007
    • A control system for charge and output control of a rechargeable thin film microbattery cell comprises a charge control logic component configured to control the level of charge of a thin film microbattery cell, a battery cut-off logic component to cease current draw on the thin battery thin film microbattery cell under predetermined conditions, a mode control logic component operably coupled to the charge control logic component and the battery cut-off logic component to enable operation of the charge control logic component and the battery cut-off logic component under predetermined conditions, and a Switch Capacitor DC-DC Downconverter Component for delivery of voltage external to the system configured to reduce battery output voltage potential by a factor of at least 2:1. Systems operably connected to a rechargeable thin film microbattery cell and powered devices comprising the system and the microbattery cell are also described.
    • 用于可再充电薄膜微电池单元的充电和输出控制的控制系统包括被配置为控制薄膜微电池单元的电荷水平的电荷控制逻辑组件,停止在薄电池上的电流消耗的电池截止逻辑组件 在预定条件下的薄膜微电池单元,可操作地耦合到充电控制逻辑组件和电池截止逻辑组件的模式控制逻辑组件,以使得能够在预定条件下操作充电控制逻辑组件和电池截止逻辑组件, 以及用于传送系统外部电压的开关电容器DC-DC下变频器组件,其配置为将电池输出电压电位降低至少2:1。 还描述了可操作地连接到可再充电薄膜微电池单元的系统和包括该系统和微电池单元的供电设备。
    • 5. 发明公开
    • MULTI-CELL THIN FILM MICROBATTERY ARRAY
    • MEHRZELLIGEDÜNNSCHICHT-MIKROBATTERIEANORDNUNG
    • EP2745347A4
    • 2015-10-28
    • EP12824549
    • 2012-08-16
    • CYMBET CORP
    • MULLIN JEFFREY D
    • H01M10/42H02J1/10H02J7/04
    • H02J7/0021G01R31/362G01R31/3658H01M10/0436H01M10/0445H01M10/052H02J7/0026Y10T307/696
    • A rechargeable thin film microbattery cell array of at least four thin film microbattery cells is electrically connected together in parallel to provide power as a single battery power source. The array further comprises testing logic to determine if a microbattery cell has a microbattery cell voltage that is more than a predetermined percentage different from the voltage of the overall microbattery cell array or has an absolute voltage below a predetermined cutoff threshold, and logic to disconnect any microbattery cell from the microbattery cell array if the microbattery cell has a microbattery cell voltage that is more than a predetermined percentage different from the voltage of the overall microbattery cell array or has an absolute voltage below a predetermined cutoff threshold. Embodiments also comprise a Switch Capacitor DC-DC downconverter component that reduces the voltage potential to operate some or all functionalities located on the integrated circuit.
    • 至少四个薄膜微电池的可充电薄膜微电池单元阵列并联电连接在一起以提供作为单个电池电源的电力。 阵列还包括测试逻辑以确定微电池单元是否具有超过与整个微电池单元阵列的电压不同的预定百分比或具有低于预定截止阈值的绝对电压的微电池单元电压,以及用于断开任何 如果微电池单元具有超过与整个微电池单元阵列的电压不同的预定百分比或具有低于预定截止阈值的绝对电压的微电池单元电压,则来自微电池单元阵列的微电池单元。 实施例还包括开关电容DC-DC下变频器组件,其降低用于操作位于集成电路上的一些或全部功能的电压电位。