首页> 外文期刊>Power Electronics, IEEE Transactions on >An Integrated High-Density Power Management Solution for Portable Applications Based on a Multioutput Switched-Capacitor Circuit
【24h】

An Integrated High-Density Power Management Solution for Portable Applications Based on a Multioutput Switched-Capacitor Circuit

机译:基于多输出开关电容电路的便携式应用集成高密度电源管理解决方案

获取原文
获取原文并翻译 | 示例

摘要

This paper introduces a novel power management architecture (PMA) and its on-chip implementation, designed for battery-powered portable applications. Compared to the conventional two-stage PMA, consisting of a front-end inductive converter followed by a set of point-of-load buck converters, the presented PMA has drastically improved power density. The new architecture, named multioutput switched-capacitor convertor–differential-input buck (MSC–DB) convertor, is based on a novel hybrid converter topology that combines a fixed ratio MSC and a set of DB converters, to achieve low volume and high power processing efficiency. The front-end switched-capacitor stage has a higher power density than the conventionally used inductive converters. The downstream DB converters enable tight output voltage regulation, and allow for up to four times reduction of output filter inductors without the need for increasing switching frequency, hence limiting switching losses and improving the efficiency of the system. Furthermore, the new PMA is able to balance the state-of-charge of the input battery cells, a feature not existing in conventional systems. The PMA architecture is implemented both as a discrete prototype and as an application-specific integrated circuit (IC) module. The on-chip implemented architecture is fabricated in a standard 0.13-μm CMOS process and operates at 9.3-MHz switching frequency. Experimental comparisons with a conventional two-cell battery input architecture, providing 15 W of total power in three different voltage outputs, demonstrate up to two times reduction in the inductances of the downstream converter stages and more than two times reduction in losses, equivalent to the improvement of the power processing efficiency of a 12%. Moreover, the fabricated IC module is copackaged with low-profile thin-film inductors to demonstrate the effectiveness of the introduced architecture in reducing the volume of PMAs for portable- applications.
机译:本文介绍了一种新颖的电源管理架构(PMA)及其片上实现,该架构专为电池供电的便携式应用而设计。与传统的两级PMA相比,后者由一个前端电感式转换器和一组负载点降压转换器组成,所提供的PMA大大提高了功率密度。这种新的架构称为多输出开关电容转换器-差分输入降压(MSC–DB)转换器,基于一种新型混合转换器拓扑结构,该拓扑结构结合了固定比率MSC和一组DB转换器,以实现小体积和高功率处理效率。前端开关电容器级具有比常规使用的电感转换器更高的功率密度。下游DB转换器可实现严格的输出电压调节,并在不增加开关频率的情况下将输出滤波电感器减少多达四倍,从而限制了开关损耗并提高了系统效率。此外,新的PMA能够平衡输入电池的充电状态,这是常规系统中不存在的功能。 PMA体系结构既可以实现为离散原型,也可以实现为专用集成电路(IC)模块。片上实现架构采用标准的0.13μmCMOS工艺制造,并以9.3MHz的开关频率工作。与传统的两节电池输入结构进行实验比较,在三个不同的电压输出中提供15W的总功率,证明下游转换器级的电感降低了两倍,损耗降低了两倍以上,相当于功率处理效率提高了12%。此外,所制造的IC模块与低剖面薄膜电感器共封装,以证明引入的架构在减少便携式应用PMA体积方面的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号