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    • 61. 发明授权
    • Battery pack with identification device
    • 带识别装置的电池组
    • US06175211B1
    • 2001-01-16
    • US09292164
    • 1999-04-15
    • Daniele C. Brotto
    • Daniele C. Brotto
    • H01M1046
    • H01M10/486H01M10/425H01M10/44H01M10/46H02J7/0006H02J7/0011
    • A method for charging a rechargeable battery pack includes identifying battery capacity, determining sampling interval length according to the battery capacity, and implementing the determined sampling interval length. Also disclosed herein is a method for charging batteries comprising identifying battery capacity, determining current-on period length in duty cycle according to the battery capacity, and implementing the determined current-on period length. Further, disclosed herein is a battery charging apparatus comprising a charger for charging first and second batteries, where the first battery comprises a microprocessor. The charger further comprises at least one terminal for receiving a battery identification signal, so that the charger can distinguish between the first and second batteries. Also disclosed herein is a battery/charger combination comprising a battery comprising first, second and third terminals, at least one cell disposed between the first and second terminals and a microprocessor disposed within the battery between the first and third terminals, a charger connected to the battery via the first, second and third terminals, wherein the microprocessor controls charging of the battery by sending instructions to the charger.
    • 一种用于对可再充电电池组充电的方法包括识别电池容量,根据电池容量确定采样间隔长度,以及实施确定的采样间隔长度。 本文还公开了一种用于对电池充电的方法,包括识别电池容量,根据电池容量确定工作周期中的电流接通周期长度,以及实施所确定的电流接通周期长度。 此外,本文公开了一种电池充电装置,其包括用于对第一和第二电池充电的充电器,其中第一电池包括微处理器。 充电器还包括用于接收电池识别信号的至少一个端子,使得充电器可以区分第一和第二电池。 本文还公开了一种电池/充电器组合,其包括电池,包括第一,第二和第三端子,设置在第一和第二端子之间的至少一个电池和布置在第一和第三端子之间的电池内的微处理器, 电池经由第一,第二和第三端子,其中微处理器通过向充电器发送指令来控制电池的充电。
    • 62. 发明授权
    • Method for charging batteries
    • US6008628A
    • 1999-12-28
    • US112680
    • 1998-07-09
    • Daniele C. Brotto
    • Daniele C. Brotto
    • H01M10/44H02J7/00H02J7/10
    • H02J7/0091H02J7/0081
    • A method for charging and monitoring a rechargeable battery is proposed. The charging method includes charging a rechargeable battery, sensing temperature of said battery, and calculating temperature change rate. The method further includes sensing voltage of said battery after the temperature change rate reaches a predetermined value, calculating voltage change rate, and reducing current sent to the battery when the voltage change rate reaches a predetermined value. A second embodiment of the charging method may include charging a rechargeable battery, sensing temperature and voltage of said battery, and calculating temperature and voltage change rates. The method further includes sensing for a maximum voltage change rate after the temperature change rate reaches a predetermined value, and reducing current sent to the battery when the maximum voltage change rate is sensed. In addition, the method may include sensing for a minimum voltage change rate before sensing for the maximum change rate, wherein sensing for the maximum change rate would begin after the temperature change rate reaches a predetermined value or after the minimum voltage change rate is sensed.
    • 69. 发明授权
    • Method and apparatus for charging batteries
    • 电池充电方法和装置
    • US06172487B2
    • 2001-01-09
    • US09292166
    • 1999-04-15
    • Daniele C. Brotto
    • Daniele C. Brotto
    • H02J704
    • H02J7/0091
    • The charging method includes providing a current to the battery pack, sensing battery temperature, determining temperature change rate, and disabling termination of the charging method based on a temperature-based scheme if the temperature change rate exceeds a first predetermined threshold within a first predetermined period of time. Termination of the charging method based on a temperature-based scheme may be re-enabled if the temperature change rate is less than a second predetermined threshold. Preferably the second predetermined threshold is equal to the first predetermined threshold. Alternatively, termination of the charging method based on a temperature-based scheme may be re-enabled after a second predetermined period of time has elapsed. Also disclosed herein is a battery charging method comprising providing a current to the battery pack, sensing battery temperature, determining temperature change rate, and suspending the current if the temperature change rate exceeds a first predetermined threshold within a first predetermined period of time. Current will be re-sent if the temperature change rate is less than a second predetermined threshold. Preferably the second predetermined threshold is equal to the first predetermined threshold. Alternatively, current will be re-sent after a second predetermined period of time has elapsed.
    • 所述充电方法包括:如果所述温度变化率在第一预定时段内超过第一预定阈值,则基于温度方案,向所述电池组提供电流,检测电池温度,确定温度变化率,以及禁用所述充电方法的终止 的时间。 如果温度变化率小于第二预定阈值,则可以重新启用基于温度方案的充电方法的终止。 优选地,第二预定阈值等于第一预定阈值。 或者,可以在经过第二预定时间段之后重新启用基于温度方案的充电方法的终止。 本文还公开了一种电池充电方法,包括:在第一预定时间段内,如果温度变化率超过第一预定阈值,则向电池组提供电流,感测电池温度,确定温度变化率以及暂停电流。 如果温度变化率小于第二预定阈值,电流将被重新发送。 优选地,第二预定阈值等于第一预定阈值。 或者,在经过第二预定时间段之后将重新发送电流。