Reducing EMI in switch mode power supplies

D. Knurek
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引用次数: 33

Abstract

In general, as the operating frequency of a switch-mode converter increases, the task of EMI (electromagnetic interference) suppression becomes more difficult. Many times, a reduction in power supply size is negated by bulky input and output filters. Additional mechanical and printed circuit board design iterations have resulted due to EMI difficulties. With these difficulties in mind, the author examines the types of EMI, their origins, and methods of measurements. He considers the minimization of the required 'after the fact' filtering. If this is done early in the design phase, some of the extra design iterations can hopefully be eliminated. To accomplish this, various components and circuit configurations are examined. A 100 W forward converter was used to verify most of the methods discussed. Specifically, it was shown that, by controlling parasitic capacitance, significant reductions can be made in the conducted EMI. A byproduct of controlling these parasitics is the fact that the conducting-loop area is reduced and therefore the radiated EMI is also reduced.<>
降低开关电源的电磁干扰
一般来说,随着开关模变换器工作频率的增加,抑制电磁干扰的任务变得更加困难。很多时候,电源尺寸的减小被笨重的输入和输出滤波器抵消了。额外的机械和印刷电路板设计迭代已导致由于EMI的困难。考虑到这些困难,作者考察了电磁干扰的类型、来源和测量方法。他考虑最小化所需的“事后”过滤。如果在设计阶段的早期就做到了这一点,那么一些额外的设计迭代就有望被消除。要做到这一点,检查各种元件和电路配置。用一个100w正激变换器验证了所讨论的大部分方法。具体来说,研究表明,通过控制寄生电容,可以显著降低传导EMI。控制这些寄生的一个副产品是导电回路面积减少,因此辐射的电磁干扰也减少了。
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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