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    • 4. 发明申请
    • BATTERY VOLTAGE EQUALIZATION DEVICE
    • US20230083009A1
    • 2023-03-16
    • US17760075
    • 2021-01-27
    • FDK CORPORATION
    • Kenji Hamada
    • H02J7/00H02J7/06H02H7/18
    • A battery voltage equalization device 1 includes: a transformer T including a primary winding T1 into which the output voltage of a battery pack BP is inputted and a plurality of secondary windings T2 corresponding to each of batteries B; a conversion circuit 2 that converts an AC voltage outputted by the secondary windings T2 to a DC voltage; a cutoff circuit 3 provided to cut off a conductive pathway from the conversion circuit 2 to the batteries B; and a control unit 5 that controls the energization of the primary winding T1, wherein the cutoff circuit 3 includes a first switch SW1 and the second switch SW2 which are provided in series on the conductive pathway and which are opened or closed by the control unit, a first body diode Db1 and a second body diode Db2 of which the same terminals are connected to each other and which are respectively connected in parallel with the switches, and a surge suppression resistor Rss connected in parallel with the first body diode Db 1 or the second body diode Db2 for which the direction of charging current to the batteries B is the forward direction.
    • 7. 发明授权
    • Balancing device and electrical storage device
    • US10110021B2
    • 2018-10-23
    • US14761516
    • 2014-01-21
    • FDK Corporation
    • Kenji HamadaMasatsuru Miyazaki
    • H02J7/00H02J7/14H01M10/46B60L11/18H01M10/44H01M10/42
    • There is provided a balancing device that equalizes voltages between storage cells of a battery composed of a plurality of series-connected storage cells or voltages between electrical storage modules composed of a plurality of series-connected storage cells of the battery. The balancing device equalizes voltages between the energy storage modules by transferring electric power between the electrical storage modules through an element to which all of the electrical storage modules are connected, the transferring being realized by on-off control of current supply to each of the electrical storage modules, the on-off control being performed with a first duty cycle. Further, the balancing device introduces a period in which the on-off control is performed with a second duty cycle, the second duty cycle being different from the first duty cycle. Furthermore, the balancing device measures a voltage applied to each of the capacitance elements C1 and C2 which connect between the terminals of the electrical storage modules respectively. Furthermore, the balancing device determines the presence of an open circuit in lines which connect the capacitance elements C1 and C2 and the electrical storage modules, the determination being performed based on change of the voltages during the period which are applied to the capacitance elements C1 and C2.