Implementing low power consumption in standby mode in the case of power supplies with power factor correction

Kevin Martin, P. Miaja, D. G. Lamar, J. Sebastián, S. Álvarez
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引用次数: 2

Abstract

This work analyzes different options to implement low power consumption in Switching Mode Power Supplies (SMPSs) with Power Factor Correction (PFC) when they are in standby mode. The standard SMPSs for power levels higher than 100 W are made up of two stages: a classical PFC stage based on a Boost Converter operating in the Continuous Conduction Mode and a second stage based on any type of isolated DC-DC converter. The value of the resistive sensors needed by the PFC control stage determines a standby consumption higher than 0.5 W if the power supply has to be designed to operate in the Universal Range of line voltages. This fact makes it very difficult to comply with European Ecodesign Regulations. To overcome this problem, several solutions are proposed and analyzed in this paper, the most promising being implemented in a real SMPS prototype.
在具有功率因数校正的电源的情况下,在待机模式下实现低功耗
本文分析了具有功率因数校正(PFC)的开关模式电源(smps)在待机模式下实现低功耗的不同选项。功率水平高于100 W的标准smps由两级组成:基于在连续传导模式下工作的升压转换器的经典PFC级和基于任何类型的隔离DC-DC转换器的第二级。如果电源必须设计成在通用电压范围内工作,则PFC控制级所需的电阻传感器的值决定了待机功耗高于0.5 W。这一事实使得遵守欧洲生态设计法规变得非常困难。为了克服这个问题,本文提出并分析了几种解决方案,其中最有希望在实际的SMPS原型中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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