Radiating emissions from the planar electromagnetic bandgap (EBG) structures

B. Mohajer-Iravani, O. Ramahi
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引用次数: 9

Abstract

Electromagnetic bandgap (EBG) structures are considered as a viable solution for the problem of switching noise in printed circuit boards and packages. Less attention, however, has been given to whether or not the introduction of EBGs affect the EMI potential of the circuit to couple unwanted energy to neighboring layers or interconnects. In this paper, we show that the bandgap of EBG structures, as generated using the Brillouin diagram, does not necessarily correspond to the suppression bandwidth generated using S-parameters. In fact, we show that the slow modes which typically exist at the edges of the bandgap of periodic structures contribute to increased radiation, even within the suppression band obtained from the S-parameters. We validate this finding using numerical simulation. Based on this work, design guidelines for EBG structures can be drawn to insure not only suppression of switching noise but also minimization of EMI.
平面电磁带隙结构的辐射发射
电磁带隙(EBG)结构被认为是解决印刷电路板和封装中开关噪声问题的可行方法。然而,对于引入EBGs是否会影响电路的电磁干扰电位,从而将不需要的能量耦合到邻近层或互连,关注较少。在本文中,我们证明了使用布里渊图生成的EBG结构的带隙并不一定对应于使用s参数生成的抑制带宽。事实上,我们证明了通常存在于周期性结构带隙边缘的慢模式有助于增加辐射,即使在s参数得到的抑制带内也是如此。我们用数值模拟验证了这一发现。在此基础上,可以制定EBG结构的设计准则,以确保不仅抑制开关噪声,而且最大限度地减少电磁干扰。
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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