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    • 3. 发明公开
    • CHARGING METHOD AND RECHARGEABLE DEVICE
    • 充电方法和可充电装置
    • EP3197004A1
    • 2017-07-26
    • EP15849367.6
    • 2015-04-23
    • Huawei Technologies Co. Ltd.
    • WANG, PinghuaHUANG, Kangmin
    • H02J7/00
    • H02J7/0047H01M10/425H01M10/44H01M10/48H01M10/486H01M10/488H01M2220/30H02J7/041H02J2007/005Y02B40/90
    • Embodiments of the present invention provide a charging method and a rechargeable device. The charging method includes: determining an effective current interval of a rechargeable device; performing matching between the effective current interval and a charging duration interval; determining target charging duration in the charging duration interval; determining a target charging current in the effective current interval according to the target charging duration; and performing charging by using the target charging current. In the embodiments of the present invention, target charging duration that is input by a user and falls within a charging duration interval is received, and then a target charging current is determined, so as to perform charging by using the target charging current. The target charging duration falls within the charging duration interval; therefore, the target charging current also matches the target charging duration, thereby improving accuracy of charging time and improving charging efficiency.
    • 本发明的实施例提供了一种充电方法和可充电装置。 该充电方法包括:确定可充电设备的有效电流间隔; 执行有效当前间隔和充电持续时间间隔之间的匹配; 确定充电持续时间间隔中的目标充电持续时间 根据目标充电持续时间确定有效电流区间内的目标充电电流; 并通过使用目标充电电流来执行充电。 在本发明实施例中,接收用户输入并落入充电时间间隔内的目标充电持续时间,然后确定目标充电电流,以利用目标充电电流进行充电。 目标充电持续时间落在充电持续时间间隔内; 因此目标充电电流也与目标充电持续时间相匹配,从而提高了充电时间的准确性,提高了充电效率。
    • 9. 发明公开
    • BATTERY, TERMINAL, AND CHARGING SYSTEM
    • EP4277081A2
    • 2023-11-15
    • EP23178828.2
    • 2017-07-14
    • Huawei Technologies Co., Ltd.
    • LIU, XinyuWANG, PinghuaLIU, CeLIU, YandingMA, Jinbo
    • H02J7/34
    • Technical solutions of the present invention provide a battery, a terminal, and a charging system. The battery includes a battery charging port, a battery discharging port, a battery negative port, an overcurrent protection element, a protection integrated circuit, a control switch, and an electrochemical cell. The battery charging port is connected to a positive electrode of the electrochemical cell, the control switch is connected in series between a negative electrode of the electrochemical cell and the battery negative port, the protection integrated circuit is connected in parallel to two ends of the electrochemical cell, and the protection integrated circuit is further connected to the control switch, so as to send a control signal to the control switch. In addition, the overcurrent protection element is connected in series between the battery discharging port and the positive electrode of the electrochemical cell. The battery provided in the present invention has both a charging path and a discharging path. Therefore, large-current charging may be performed on the battery without causing severe heating of the overcurrent protection element. Further, current overload detection may be further performed during discharging.