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    • 2. 发明授权
    • Power consumption reduction method for a stored battery
    • 蓄电池的功耗降低方法
    • US09112372B2
    • 2015-08-18
    • US13759049
    • 2013-02-05
    • Simplo Technology Company, Ltd.
    • Ming-Ta ChenTai-Hung ChenKuo-Chang Huang
    • H02J7/00
    • H02J7/0072H02H7/18H02J7/0029H02J7/0032H02J9/005H02J2007/004H02J2009/007
    • A power consumption reduction method controls a rechargeable battery to enter a sleep mode after the electronic system is shutdown with the output current of the rechargeable battery falling under a first current value or the rechargeable battery is in a non-communication status for over a first delay time. When in the sleep mode, a control unit further controls the rechargeable battery to enter a power saving mode when the output voltage of the rechargeable battery falls under a predefined voltage or the RSOC of the rechargeable battery is lower than a percentage of FCC, and the output current of the rechargeable battery falls under a second current value or the rechargeable battery is in the non-communication status for over a second delay time. The method shuts down all power-consuming circuits and components under long-time idling of the battery, capable of preventing overly discharging and malfunction of the rechargeable battery.
    • 电力消耗降低方法控制可再充电电池进入睡眠模式,在电子系统关闭之后,可再充电电池的输出电流下降到第一电流值或者可再充电电池处于非通信状态超过第一延迟 时间。 当处于睡眠模式时,当可再充电电池的输出电压低于预定电压或可再充电电池的RSOC低于FCC的百分比时,控制单元进一步控制可再充电电池进入省电模式,并且 可再充电电池的输出电流下降到第二电流值或者可再充电电池处于非通信状态超过第二延迟时间。 该方法在电池长时间怠速下关闭所有耗电的电路和组件,能够防止充电电池的过度放电和故障。
    • 3. 发明授权
    • Voltage calibration method
    • 电压校准方法
    • US09188649B2
    • 2015-11-17
    • US13559613
    • 2012-07-27
    • Tai-Hung ChenKuo-Chang Huang
    • Tai-Hung ChenKuo-Chang Huang
    • G01R31/36G01R35/00
    • G01R31/3624G01R31/3658G01R31/3662G01R35/005
    • In a rechargeable battery set, an average voltage is computed from average voltage drop produced by the sum of internal resistances of each battery cell. A calculated internal resistance of each battery cell is then computed from a measured voltage of each battery cell and the average voltage. Finally, the measured voltage of each battery cell is calibrated according to the calculated internal resistance and a calibrated voltage of each battery cell may be computed. In such way, the calibrated voltage of each battery cell is much closer to a real voltage of the battery cell, which provides a battery control unit more precise information when charging/discharging the battery cells.
    • 在可充电电池组中,从由每个电池单元的内部电阻之和产生的平均电压降计算平均电压。 然后根据每个电池单元的测量电压和平均电压来计算每个电池单元的计算内部电阻。 最后,根据计算的内部电阻校准每个电池单元的测量电压,并且可以计算每个电池单元的校准电压。 以这种方式,每个电池单元的校准电压更接近电池单元的实际电压,这为电池单元充电/放电时提供电池控制单元更精确的信息。
    • 4. 发明申请
    • POWER CONSUMPTION REDUCTION METHOD FOR A STORED BATTERY
    • 储存电池的消耗电力消耗方法
    • US20140167700A1
    • 2014-06-19
    • US13759049
    • 2013-02-05
    • SIMPLO TECHNOLOGY COMPANY, LTD.
    • Ming-Ta ChenTai-Hung ChenKuo-Chang Huang
    • H02J7/00
    • H02J7/0072H02H7/18H02J7/0029H02J7/0032H02J9/005H02J2007/004H02J2009/007
    • A power consumption reduction method controls a rechargeable battery to enter a sleep mode after the electronic system is shutdown with the output current of the rechargeable battery falling under a first current value or the rechargeable battery is in a non-communication status for over a first delay time. When in the sleep mode, a control unit further controls the rechargeable battery to enter a power saving mode when the output voltage of the rechargeable battery falls under a predefined voltage or the RSOC of the rechargeable battery is lower than a percentage of FCC, and the output current of the rechargeable battery falls under a second current value or the rechargeable battery is in the non-communication status for over a second delay time. The method shuts down all power-consuming circuits and components under long-time idling of the battery, capable of preventing overly discharging and malfunction of the rechargeable battery.
    • 电力消耗降低方法控制可再充电电池进入睡眠模式,在电子系统关闭之后,可再充电电池的输出电流下降到第一电流值或者可再充电电池处于非通信状态超过第一延迟 时间。 当处于睡眠模式时,当可再充电电池的输出电压低于预定电压或可再充电电池的RSOC低于FCC的百分比时,控制单元进一步控制可再充电电池进入省电模式,并且 可再充电电池的输出电流下降到第二电流值或者可再充电电池处于非通信状态超过第二延迟时间。 该方法在电池长时间怠速下关闭所有耗电的电路和组件,能够防止充电电池的过度放电和故障。