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    • 9. 发明授权
    • Software based thermal charging regulation loop
    • 基于软件的热充电调节回路
    • US07944180B2
    • 2011-05-17
    • US12766133
    • 2010-04-23
    • Douglas D. Lopata
    • Douglas D. Lopata
    • H02J7/04H02J7/00H04M1/00
    • H02J7/0088H02J7/0029
    • The present invention implements a software controlled thermal feedback system for battery charging circuitry in portable devices, specifically in cellular telephones. The charging hardware block is integrated into a mixed-signal analog base-band (ABB) circuit. In addition to standard function controls, integrated within the ABB are silicon temperature sensors used to monitor the temperature of any silicon components integrated on the ABB and detect any temperature change due to thermal heating. The temperature value is passed to the digital base band (DBB) circuit. Here, a microcontroller is programmed to perform power management functions relating to the ABB. Thermal control software, implemented on the DBB microcontroller, monitors the silicon temperature of the ABB and adjusts the power levels on the ABB accordingly to provide a controlled chip temperature.
    • 本发明实现了便携式设备中的电池充电电路的软件控制热反馈系统,特别是在蜂窝电话中。 充电硬件块集成到混合信号模拟基带(ABB)电路中。 除了ABB内部集成的标准功能控制器,硅温度传感器用于监测ABB集成的任何硅部件的温度,并检测由于热加热引起的任何温度变化。 温度值传递给数字基带(DBB)电路。 这里,微控制器被编程为执行与ABB有关的电源管理功能。 在DBB微控制器上实现的热控制软件监控ABB的硅温度,并相应调整ABB的功率电平,以提供受控的芯片温度。
    • 10. 发明申请
    • CHARGE CONTROLLING CIRCUIT
    • 充电控制电路
    • US20080143300A1
    • 2008-06-19
    • US11957822
    • 2007-12-17
    • Nobuhito Yoshida
    • Nobuhito Yoshida
    • H02J7/00H01M10/44
    • H01M10/44H02J7/0088H02J7/042
    • A charge controlling circuit controls charging of a lithium-ion rechargeable battery. An electric power supplied from an external charger to the lithium-ion rechargeable battery is taken by a charging terminal. When the charging terminal is connected to the external charger, whether or not a charge prohibition condition is satisfied is determined by a CPU. A charging operation is prohibited when the charge prohibition condition is satisfied, but is permitted when the charge prohibition condition is not satisfied. Here, the charge prohibition condition includes a shortest time condition that a time during which the charging terminal is detached from the external charger is above a defined time decided in view of an instantaneous power interruption.
    • 充电控制电路控制锂离子可再充电电池的充电。 从外部充电器向锂离子可充电电池供电的电力由充电端子取出。 当充电终端连接到外部充电器时,是否由CPU确定充电禁止条件是否被满足。 当满足禁止充电条件时,禁止充电操作,但是当不满足充电禁止条件时允许充电操作。 这里,充电禁止条件包括从充电终端与外部充电器分离的时间在考虑到瞬时电力中断所决定的时间以上的最短时间条件。