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    • 2. 发明申请
    • BATTERY CHARGER
    • 充电器
    • US20090033291A1
    • 2009-02-05
    • US12281233
    • 2007-03-02
    • Takao AradachiKazuhiko Funabashi
    • Takao AradachiKazuhiko Funabashi
    • H02J7/00
    • H02M1/36H02J7/0077
    • A charging signal Vi responding to a charging current is inputted to one input terminal (−) of an operational amplifier 95 forming a comparator and a setting signal Vr corresponding to a setting current value is inputted to the other input terminal (+) of the operational amplifier 95. When the charging signal Vi is not higher than the setting signal Vr, a charging stop signal is generated from the output terminal of the operational amplifier 95 to interrupt a switch unit 4. A starting signal Vcc larger than the setting signal Vr applied to the other input terminal (+) is applied to the one input terminal (−) of the operational amplifier 95 through a condenser 94 till a prescribed time elapses from the start of a charging operation to generate a charging start signal from the output terminal of the operational amplifier 95 and electrically conduct the switch unit 4.
    • 将响应于充电电流的充电信号Vi输入到形成比较器的运算放大器95的一个输入端( - ),并将与设定电流值对应的设定信号Vr输入到运算放大器的另一输入端(+) 放大器95.当充电信号Vi不高于设定信号Vr时,从运算放大器95的输出端产生充电停止信号以中断开关单元4.启动信号Vcc大于施加的设定信号Vr 通过电容器94向另一输入端(+)施加到运算放大器95的一个输入端( - ),直到从充电操作开始经过规定时间,从而从输出端产生充电开始信号 运算放大器95和导电开关单元4。
    • 4. 发明申请
    • Battery charger
    • 充电器
    • US20050258800A1
    • 2005-11-24
    • US11131359
    • 2005-05-18
    • Takao AradachiKazuhiko FunabashiNobuhiro Takano
    • Takao AradachiKazuhiko FunabashiNobuhiro Takano
    • H02J7/10H02J1/00H02J7/00H02J7/02H02J9/00
    • H02J7/022H02J9/005
    • To reduce power consumption when charging a secondary battery is not performed, a first power supply circuit is disabled but a second power supply circuit is enabled when the secondary battery is unloaded from a battery charger. Both the first and second power supply circuits are enabled when the battery is loaded in the charger The first power supply circuit is provided for supplying power to the secondary battery. The second power supply circuit is provided for supplying a first voltage to such components that are operated with the first voltage and a second voltage to such components that are operated with the second voltage, wherein the second voltage is greater than the first voltage. When the battery is unloaded from the charger, the second power supply circuit supplies only the first voltage whereas when the battery is loaded in the charger, the second power supply circuit supplies the first and second voltages to the corresponding components.
    • 为了在不对二次电池进行充电的情况下降低功耗,当从电池充电器卸载二次电池时,禁止第一电源电路,但是使能第二电源电路。 当电池装入充电器时,第一和第二电源电路都被使能。第一电源电路用于向二次电池供电。 第二电源电路被提供用于向第一电压操作的这些部件提供第一电压,并且向第二电压操作的这些部件提供第二电压,其中第二电压大于第一电压。 当电池从充电器卸载时,第二电源电路仅提供第一电压,而当电池装入充电器时,第二电源电路将第一和第二电压提供给相应的部件。
    • 8. 发明申请
    • Battery charger
    • 充电器
    • US20060132099A1
    • 2006-06-22
    • US11296284
    • 2005-12-08
    • Takao AradachiNobuhiro TakanoKazuhiko Funabashi
    • Takao AradachiNobuhiro TakanoKazuhiko Funabashi
    • H02J7/04
    • H02J7/0091
    • A battery charger detects a battery voltage, a battery temperature, and computes a change in the battery voltage between two timings at which the battery voltages are detected and also a change in the battery temperature between two timings at which the battery temperatures are detected. A charge current is determined based on the battery voltage gradient information, the battery temperature gradient information, and at least one of the battery voltage information and the battery temperature information. Also, a full charge discrimination value is also determined based on at least three parameters mentioned above. The battery is determined to be a full charge condition when the computed battery temperature change has exceeded a sum of the minimum battery temperature gradient value and the full charge discrimination value.
    • 电池充电器检测电池电压,电池温度,并且计算在检测电池电压的两个定时之间的电池电压的变化,以及在检测到电池温度的两个定时之间的电池温度的变化。 基于电池电压梯度信息,电池温度梯度信息以及电池电压信息和电池温度信息中的至少一个来确定充电电流。 此外,还基于至少三个参数来确定完全充电鉴别值。 当计算出的电池温度变化已经超过最小电池温度梯度值和完全充电鉴别值的总和时,电池被确定为满充电状态。