首页> 外文会议>Electromagnetic Compatibility, 2000. IEEE International Symposium on >Role of interactions between hardware units and card-cage structural members in the coupling of on-board EMI fields to currents on the outer surfaces of the card-cage structure
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Role of interactions between hardware units and card-cage structural members in the coupling of on-board EMI fields to currents on the outer surfaces of the card-cage structure

机译:硬件单元和卡笼结构构件之间的相互作用在板载EMI场与卡笼结构外表面上的电流耦合中的作用

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This paper presents an investigation of an EMI condition where electromagnetic interactions between conducting components of hardware units and card-cage structural members provide an efficient means of coupling the EMI fields generated on printed wiring boards (PWBs) to the outer surfaces of a single-shelf metallic card-cage. Experimental and computational results are presented. Far-field measurements at the 8th harmonic peak indicate that disconnecting the guard traces on the PWBs and shorting together the structural members of the card-cage at their midspan resulted in a cumulative reduction of /spl sim/7dB in the radiated field levels of the single-shelf EUT. These laboratory observations are generally confirmed and in practical quantitative agreement with the results of 3D EM field computational simulations. The findings of this investigation suggest that manipulating the dominant field mechanism(s) between EMI sources and the members of the card-cage can be an effective method of controlling near and far field emissions of the populated card-cage.
机译:本文介绍了一种EMI条件的研究,其中硬件单元的导电组件和卡笼结构构件之间的电磁相互作用提供了一种有效的方法,将印制线路板(PWB)上产生的EMI场耦合到单层板的外表面金属卡笼。给出了实验和计算结果。在8次谐波峰值处的远场测量表明,断开PWB上的保护走线并使中途的卡笼结构构件短路在一起,会导致/ spl sim / 7dB的累积降低。单层EUT。这些实验室观察通常得到确认,并且与3D EM现场计算模拟的结果在实践上定量吻合。这项调查的结果表明,操纵EMI源与卡笼成员之间的主导场机制可以是控制填充卡笼近场和远场辐射的有效方法。

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