管理便携式电池充电器应用中的功耗

K. King
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引用次数: 1

摘要

将电池充电器的电力分散到小型便携式产品外部,使其运行更凉爽。由于其体积小,这些应用大多对可用空间和功耗有严格的限制,并且倾向于使用锂离子(Li-ion)电池。本文描述了一种充电器设计拓扑,它将电池充电的大部分功耗移出便携式设备,但将充电器电路嵌入到应用程序中。分析了具有高精度电压调节、电池调节、温度监测和充电状态指示的电路的性能,分析了功耗、电路面积和充电时间的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Managing power dissipation in portable battery charger applications
Dissipating battery-charger power outside small portable products makes them operate cooler. Because of their small size, most of these applications have strict limitations on the available space and power dissipation and tend to use lithium-ion (Li-ion) batteries. This paper describes a charger design topology that moves the bulk of the power dissipation of battery charging out of the portable device but leaves the charger circuit embedded in the application. The performance of a circuit with high-accuracy voltage regulation, battery conditioning, temperature monitoring, and charge-status indication is analyzed for the effects of power dissipation, circuit area, and charging time.
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