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    • 2. 发明授权
    • Portable energy storage and charging device
    • 便携式储能充电装置
    • US08368346B2
    • 2013-02-05
    • US11775995
    • 2007-07-11
    • David C. BatsonLeslie J. Pinnell
    • David C. BatsonLeslie J. Pinnell
    • H02J7/00
    • H02J7/041H02J7/0045H02J7/0047H02J7/0054H02J7/0055H02J7/045H02J7/06H02J2007/0049H02J2007/005
    • Disclosed is a portable charger device that includes a chamber to hold at least one rechargeable charging battery, and at least one controller. The controller is configured to determine a first charging current level to apply to the at least one rechargeable charging battery such that the at least one rechargeable charging battery achieves a first predetermined charge that is reached within a first period of time of 15 minutes or less, apply to the at least one rechargeable charging battery a first charging current substantially equal to the determined first charging current level, determine a second charging current to apply to the one or more external rechargeable batteries, and apply to the one or more external rechargeable batteries a second charging current substantially equal to the determined second charging current level, the second charging current being drawn from the at least one rechargeable charging battery.
    • 公开了一种便携式充电器装置,其包括容纳至少一个可充电充电电池的室和至少一个控制器。 所述控制器被配置为确定应用于所述至少一个可充电充电电池的第一充电电流电平,使得所述至少一个充电充电电池实现在第一时间段内15分钟或更短时间内到达的第一预定电荷, 向所述至少一个可再充电电池施加基本上等于所确定的第一充电电流电平的第一充电电流,确定施加到所述一个或多个外部可再充电电池的第二充电电流,并将所述第一充电电流施加到所述一个或多个外部可再充电电池 第二充电电流基本上等于所确定的第二充电电流电平,所述第二充电电流从所述至少一个可再充电充电电池中抽出。
    • 5. 发明授权
    • Battery cover assembly having integrated battery condition monitoring
    • 具有集成电池状态监测的电池盖组件
    • US07205746B2
    • 2007-04-17
    • US10853983
    • 2004-05-25
    • David C. Batson
    • David C. Batson
    • H02J7/00
    • H02J7/0047G01R31/3644H02J2007/0098
    • A battery cover assembly having integrated battery condition monitoring for measuring electrical current passing to and from a battery post, including an electrically conductive collar for connecting to a post of a battery, and an electrically conductive terminal for receiving a connector of a load. An electrically conductive resistor having a known resistance extends between outer surfaces of the collar and the terminal. The battery cover assembly is incorporated into a battery, which may also include a voltage measuring device connected between the outer surfaces of the collar and the terminal for measuring the voltage drop across the resistor, memory for storing the known resistance of the resistor, and a digital processor programmed to receive the measured voltage drop from the voltage measuring device, retrieve the known resistance from the memory, and calculate current flow through the resistor based on the measured voltage drop and the known resistance, whereby current flow to and from the battery can be measured. A temperature measuring device may also be incorporated to measure temperature of the resistor located between the outer surfaces of the collar and the terminal. A resistance-temperature table may be stored in the memory and used to calculate the actual resistance of the resistor and then to compensate the current value from the voltage measured across the resistor.
    • 一种电池盖组件,其具有集成的电池状态监测,用于测量通过电池柱的电流,包括用于连接到电池柱的导电环,以及用于接收负载的连接器的导电端子。 具有已知电阻的导电电阻器在套环和端子的外表面之间延伸。 电池盖组件被结合到电池中,电池还可以包括连接在套环和端子的外表面之间的电压测量装置,用于测量电阻器两端的电压降,用于存储电阻器的已知电阻的存储器,以及 数字处理器被编程为从电压测量装置接收测量的电压降,从存储器中检索已知的电阻,并且基于所测量的电压降和已知电阻计算通过电阻器的电流,由此来自电池的电流可以 被测量。 还可以结合温度测量装置来测量位于套环和端子的外表面之间的电阻器的温度。 电阻温度表可以存储在存储器中,用于计算电阻器的实际电阻,然后从电阻器两端测量的电压补偿电流值。