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    • 1. 发明授权
    • State of charge equalizing device and assembled battery system including same
    • 充电状态均衡装置和组合电池系统包括相同
    • US07923969B2
    • 2011-04-12
    • US12342832
    • 2008-12-23
    • Hiroya MuraoMika Kirimoto
    • Hiroya MuraoMika Kirimoto
    • H02J7/00G01N27/416G08B21/00H02J7/34
    • H02J7/0016Y02T10/7055Y10T307/533Y10T307/56
    • A state-of-charge equalizing device equalizes the state of charge of each of cells connected in series to form an assembled battery, and comprises charging/discharging circuits connected in parallel to the respective cells to discharge and/or charge the respective cells, voltage measurement circuits connected to the respective charging/discharging circuits to measure the voltages across the respective cells, and a control circuit. The control circuit comprises a unit calculating an equalization target voltage based on the measured voltages before the charge or discharge starts, a unit starting discharging/charging the cells having a voltage thereacross different from the target voltage, a unit correcting the target voltage to thereby calculate a corrected equalization target voltage for each of those cells based on the difference between the measured voltages before and at a certain time period after the charging/discharging, and a unit ending the discharging/charging when the measured voltage reaches the corrected target voltage.
    • 电荷均衡装置使串联连接的每个电池的充电状态均衡,形成组电池,并且包括并联连接到各个电池的充电/放电电路,以对各个电池进行放电和/或充电,电压 连接到各个充电/放电电路的测量电路以测量各个单元的电压,以及控制电路。 控制电路包括基于在充电或放电开始之前的测量电压来计算均衡目标电压的单元,开始对具有与目标电压不同的电压进行放电/充电的单元,校正目标电压的单位,由此计算 基于在充电/放电之后的某个时间段之前和之后的测量电压之间的差异以及当测量的电压达到校正的目标电压时结束放电/充电的单元的每个单元的校正的均衡目标电压。
    • 2. 发明申请
    • State of Charge Equalizing Device and Assembled Battery System Including Same
    • 充电均衡装置及其组合电池系统的状态
    • US20090167248A1
    • 2009-07-02
    • US12342832
    • 2008-12-23
    • Hiroya MURAOMika KIRIMOTO
    • Hiroya MURAOMika KIRIMOTO
    • H02J7/00
    • H02J7/0016Y02T10/7055Y10T307/533Y10T307/56
    • A state-of-charge equalizing device equalizes the state of charge of each of cells connected in series to form an assembled battery, and comprises charging/discharging circuits connected in parallel to the respective cells to discharge and/or charge the respective cells, voltage measurement circuits connected to the respective charging/discharging circuits to measure the voltages across the respective cells, and a control circuit. The control circuit comprises a unit calculating an equalization target voltage based on the measured voltages before the charge or discharge starts, a unit starting discharging/charging the cells having a voltage thereacross different from the target voltage, a unit correcting the target voltage to thereby calculate a corrected equalization target voltage for each of those cells based on the difference between the measured voltages before and at a certain time period after the charging/discharging, and a unit ending the discharging/charging when the measured voltage reaches the corrected target voltage.
    • 电荷均衡装置使串联连接的每个电池的充电状态均衡,形成组电池,并且包括并联连接到各个电池的充电/放电电路,以对各个电池进行放电和/或充电,电压 连接到各个充电/放电电路的测量电路以测量各个单元的电压,以及控制电路。 控制电路包括基于在充电或放电开始之前的测量电压来计算均衡目标电压的单元,开始对具有与目标电压不同的电压进行放电/充电的单元,校正目标电压的单位,由此计算 基于在充电/放电之后的某个时间段之前和之后的测量电压之间的差异以及当测量的电压达到校正的目标电压时结束放电/充电的单元的每个单元的校正的均衡目标电压。
    • 3. 发明授权
    • Cardiac pacer including controlled voltage multiplier
    • 心脏起搏器包括受控电压倍增器
    • US4050004A
    • 1977-09-20
    • US429527
    • 1974-01-02
    • Wilson Greatbatch
    • Wilson Greatbatch
    • A61N1/362A61N1/378B23K11/26H01S3/092H02M3/07H02M3/337H02M7/10H03K3/57H05B41/282H02M7/00
    • A61N1/025A61N1/362A61N1/378B23K11/26H01S3/092H02M3/07H02M3/337H02M7/10H03K3/57H05B41/2821Y02B70/1433Y10T307/56Y10T307/713
    • A cardiac pacer including a controlled voltage multiplier adapted for connection to a source of voltage to be multiplied and a plurality of parallel voltage-developing branches each including a capacitor. A pair of output terminals, at least one of which is adapted to be operatively connected to a patient's heart, are connected in series with one of the capacitors whereby the path for current charging that capacitor is through the load connected to the terminals. A corresponding plurality of controlled switches are connected to corresponding ones of the capacitors, and the switches and capacitors are connected together to define a series discharge path including the pair of output terminals when the switches are operated by a trigger pulse generator. Including timing means controlling the generation of pulses for triggering the controlled switches and thereby controlling the stimulating output pulses appearing on the pacer output terminals. The cardiac pacer can include regulating means for limiting the amplitude of the output pulses.
    • 一种心脏起搏器,其包括适于连接到要倍增的电压源的受控电压倍增器和包括电容器的多个平行电压显影支路。 一对输出端子,其至少一个适于可操作地连接到患者的心脏,与电容器中的一个串联连接,由此电容器的电流充电路径通过连接到端子的负载。 相应的多个受控开关连接到对应的电容器中,并且当开关由触发脉冲发生器操作时,开关和电容器连接在一起以限定包括该对输出端子的串联放电路径。 包括定时装置控制用于触发受控开关的脉冲的产生,从而控制出现在起搏器输出端子上的刺激输出脉冲。 心脏起搏器可以包括用于限制输出脉冲的振幅的调节装置。
    • 6. 发明授权
    • Multi-rail power-supply system
    • 多轨电源系统
    • US08212400B2
    • 2012-07-03
    • US12475706
    • 2009-06-01
    • Wei-Chung WuPaul Vulpoiu
    • Wei-Chung WuPaul Vulpoiu
    • H02J1/00
    • H02J1/08H02J2001/008Y10T307/549Y10T307/555Y10T307/56Y10T307/707
    • A multi-rail power-supply system provides power to circuitry requiring at least one additional rail between a high and a low-voltage rail. The system comprises a first power regulator that interconnects the high-voltage rail and an intermediate node and sets a first voltage rail that has a magnitude that is less than the high-voltage rail, wherein current that flows from the high-voltage rail is employed by a first set of peripheral circuitry prior to sinking through the first power regulator to the intermediate node. The system further comprises a second power regulator that interconnects the intermediate node and the low-voltage rail and sets a second voltage rail that has a magnitude that is greater than the low-voltage rail, wherein current that flows from the intermediate node is sourced by the second regulator and is employed by a second set of peripheral circuitry prior to flowing to the low-voltage rail.
    • 多轨电源系统为需要在高电压轨道和低压轨道之间至少一个附加轨道的电路提供电力。 该系统包括第一功率调节器,其将高压轨和中间节点互连,并且设置具有小于高压轨的幅度的第一电压轨,其中采用从高压轨流出的电流 通过第一组外围电路,然后将第一功率调节器吸入中间节点。 该系统还包括第二功率调节器,其将中间节点和低压轨道互连,并且设置具有大于低压轨的幅度的第二电压轨,其中从中间节点流出的电流来自 第二调节器并且在流入低压轨之前由第二组外围电路采用。