Characterisation of an effective EMI noise separation including a standard LISN

J. Stahl, D. Kuebrich, T. Duerbaum
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引用次数: 5

Abstract

The compliance with standards calls for proper designed EMI filters. EMI typically comprises common mode (cm) and differential mode (dm) noise. A systematic optimization of EMI filters requires the knowledge of the contribution and distribution of these two noise sources. The paper discusses different methods that allow the independent measurement of cm and dm noise. One suitable method described in detail integrates the separation set-up into the Line Impedance Stabilization Network (LISN). However, a correct interpretation of the measured results requires a characterization of the unavoidable crosstalk of the complete set-up - i.e. the measured level at the dm output in case of pure cm excitation and vice versa. As shown in this paper, the implementation of a standard LISN introduces the highest amount of imperfections causing the undesired crosstalk. Thus, for the first time, this paper describes the characterization of the whole set-up including the LISN.
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包括标准LISN在内的有效EMI噪声分离特性
符合标准要求设计适当的EMI滤波器。电磁干扰通常包括共模(cm)和差模(dm)噪声。电磁干扰滤波器的系统优化需要了解这两种噪声源的贡献和分布。本文讨论了允许独立测量cm和dm噪声的不同方法。详细描述了一种合适的方法,将分离装置集成到线路阻抗稳定网络(LISN)中。然而,对测量结果的正确解释需要对整个装置中不可避免的串扰进行表征,即在纯cm激励的情况下,dm输出处的测量电平,反之亦然。如本文所示,标准LISN的实现引入了导致不希望的串扰的最大数量的缺陷。因此,本文首次描述了包括LISN在内的整个装置的特征。
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