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Improvements to a Method for Estimating the Maximum Radiated Emissions From PCBs With Cables

机译:估算带有电缆的PCB的最大辐射量的方法的改进

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It has been shown in previous studies that the coupling from ICs, traces, or heatsinks on a printed circuit board to an attached cable can be modeled by placing equivalent common-mode sources between the board and the cable. In a 2008 paper published in the IEEE Transactions on Electromagnetic Compatibility, a closed-form expression was developed to estimate the maximum radiated emissions from board-source-cable structures. While this expression is reasonably accurate for frequencies not exceeding 500 MHz, it may unnecessarily overestimate the emissions in some situations, especially when the maximum frequency of interest is extended beyond 500 MHz. This paper introduces two enhancements to the previously introduced closed-form expression based on improved methods for determining the maximum value of F(θ,k,l $_{rm ant}$) and the effective board size. The new closed-form expression is evaluated for various board geometries and frequency ranges by comparing the estimated maximum radiated emissions to full-wave simulation results.
机译:以前的研究表明,可以通过在电路板和电缆之间放置等效的共模源来模拟从印刷电路板上的IC,走线或散热器到连接的电缆的耦合。在2008年发表在《 IEEE Transactions on Electromagnetic Compatibility》上的一篇论文中,开发了一种闭式表达式来估计板源电缆结构的最大辐射发射。尽管此表达式对于不超过500 MHz的频率是相当准确的,但在某些情况下(尤其是当最大关注频率超过500 MHz时)可能会不必要地高估了发射。本文基于确定F(θ,k,l $ _ {rm ant} $)的最大值和有效电路板尺寸的改进方法,对先前介绍的闭式表达式进行了两项改进。通过将估计的最大辐射发射与全波仿真结果进行比较,可以针对各种板几何形状和频率范围评估新的闭式​​表达式。

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