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On-site, quick and cost-effective techniques for improving the performance of EMI filters by using conducting bands

机译:通过使用导带提高EMI滤波器性能的现场,快速且经济高效的技术

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In this work we describe a simple and effective set of techniques to decrease the parasitic effects that undermine the performance of EMI filters at high frequencies. These techniques involve the use of bands of copper tape conveniently placed around the components of the filter. These techniques are practically cost-free and can be easily and quickly implemented on-site during pre-compliance tests to provide an increase of the attenuation of the filter at high frequencies. In some cases this can make it possible to avoid a re-design of the filter or the device under test. Moreover, these techniques can be used to readily determine whether a noise is of common mode or differential mode nature without altering the measuring setup, thus helping to speed up the re-design of the EMI filter if required and to avoid overdesign. We have constructed and measured several low pass filters mounting typical polyproyilene (PP) film capacitors and/or common-mode chokes to show the effectiveness of the proposed techniques. We obtain an equivalent circuit model that provides a physical explanation of the reduction of the parasitic inductance of capacitors. Also, we offer an explanation of the improvement achieved for the rejection of the common mode of chokes. Our results demonstrate that increases in filter attenuation at high frequencies go from approximately 3-4dB for simple shunt-capacitor filter to 10-15dB for a typical EMI filter.
机译:在这项工作中,我们描述了一套简单有效的技术,以减少会削弱EMI滤波器在高频下的性能的寄生效应。这些技术涉及使用铜带,这些铜带可方便地放置在过滤器组件周围。这些技术实际上是免费的,并且可以在预一致性测试期间在现场轻松,快速地实施,以增加高频滤波器的衰减。在某些情况下,这可以避免重新设计滤波器或被测设备。此外,这些技术可用于轻松确定噪声是共模还是差模性质,而无需更改测量设置,从而有助于加快EMI滤波器的重新设计(如果需要)并避免过度设计。我们已经构造并测量了几个安装了典型的聚丙烯(PP)薄膜电容器和/或共模扼流圈的低通滤波器,以展示所提出技术的有效性。我们获得了等效电路模型,该模型为减小电容器的寄生电感提供了物理解释。此外,我们提供了对抑制共模扼流圈所取得的改进的解释。我们的结果表明,高频滤波器的衰减从简单的并联电容器滤波器的大约3-4dB增加到典型的EMI滤波器的10-15dB。

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