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    • 6. 发明申请
    • BATTERY STATE MONITORING CIRCUIT AND BATTERY DEVICE
    • 电池状态监测电路和电池装置
    • US20090179617A1
    • 2009-07-16
    • US12327097
    • 2008-12-03
    • Toshiyuki KoikeAtsushi SakuraiKazuaki SanoYoshihisa TangeMuneharu Kawana
    • Toshiyuki KoikeAtsushi SakuraiKazuaki SanoYoshihisa TangeMuneharu Kawana
    • H02J7/04
    • H01M10/482H01M10/425
    • Provided is a battery state monitoring circuit for manufacturing a battery device at low cost, and a battery device including the same. A charge control transistor and a discharge control transistor are structured so as to be operated based on a low-level signal which is based on a ground voltage (VSS) and a high-level signal which is based on a voltage of a voltage regulator, which is lower than a power supply voltage (VDD) based on a voltage of a battery, respectively. Accordingly, in the charge control transistor and the discharge control transistor, voltages applied to gates thereof become low, whereby a low-breakdown-voltage element can be used. This leads to a reduction in cost for the charge control transistor and the discharge control transistor, leading to a reduction in manufacturing cost for the battery device.
    • 提供了一种用于以低成本制造电池装置的电池状态监视电路,以及包括该电池状态监视电路的电池装置。 电荷控制晶体管和放电控制晶体管被构造成基于基于接地电压(VSS)的低电平信号和基于电压调节器的电压的高电平信号而被操作, 其分别低于基于电池电压的电源电压(VDD)。 因此,在充电控制晶体管和放电控制晶体管中,施加到其栅极的电压变低,从而可以使用低击穿电压元件。 这导致电荷控制晶体管和放电控制晶体管的成本降低,导致电池装置的制造成本降低。
    • 8. 发明授权
    • Charge/discharge control circuit and battery device
    • 充放电控制电路和电池装置
    • US09065281B2
    • 2015-06-23
    • US13208753
    • 2011-08-12
    • Atsushi SakuraiToshiyuki KoikeKazuaki SanoFumihiko Maetani
    • Atsushi SakuraiToshiyuki KoikeKazuaki SanoFumihiko Maetani
    • H02J7/00
    • H02J7/0034
    • Provided is a battery device for controlling charge/discharge of a secondary battery by a single bidirectionally conductive field effect transistor, a charge/discharge control circuit with which a leakage current of the bidirectionally conductive field effect transistor is reduced to perform stable operation. The charge/discharge control circuit includes: a switch circuit for controlling a gate of the bidirectionally conductive field effect transistor based on an output of a control circuit for controlling the charge/discharge of the secondary battery; and two MOS transistors for preventing back-flow of a charge current and a discharge current. The first MOS transistor has a drain and a back gate which are connected to each other, and a source connected to a drain of the bidirectionally conductive field effect transistor. The second MOS transistor has a drain and a back gate which are connected to each other, and a source connected to a source of the bidirectionally conductive field effect transistor.
    • 提供一种用于通过单个双向导电场效应晶体管控制二次电池的充电/放电的电池装置,具有双向导电场效应晶体管的漏电流被减小以执行稳定操作的充放电控制电路。 充放电控制电路包括:开关电路,用于基于用于控制二次电池的充电/放电的控制电路的输出来控制双向传导场效应晶体管的栅极; 以及用于防止充电电流和放电电流的反向流动的两个MOS晶体管。 第一MOS晶体管具有彼此连接的漏极和背栅极,以及连接到双向导电场效应晶体管的漏极的源极。 第二MOS晶体管具有彼此连接的漏极和背栅极,以及连接到双向导电场效应晶体管的源极的源极。