首页> 外文期刊>Microwave and optical technology letters >MODELING AND ANALYSIS OF A CONVENTIONAL AND LOCALIZED ELECTROMAGNETIC BANDGAP STRUCTURES FOR SUPPRESSION OF SIMULTANEOUS SWITCHING NOISE
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MODELING AND ANALYSIS OF A CONVENTIONAL AND LOCALIZED ELECTROMAGNETIC BANDGAP STRUCTURES FOR SUPPRESSION OF SIMULTANEOUS SWITCHING NOISE

机译:常规且局部化的电磁带隙结构用于同时开关噪声抑制的建模与分析

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摘要

The transmission line method (TLM) is applied for the analysis of a conventional electromagnetic bandgap (EBG) and enhanced moat structures with an arbitrary shaped power/ground plane. Fast and accurate modeling by TLM reveals computationally efficient results as compared to 3D full-wave electromagnetic analysis. Moreover, it is shown that the suppression bandwidth of an EBG structure can be easily analyzed with stepped impedance filter approach, and the calculated bandwidth is identical to the measured bandwidth. In general, the conventional EBG structure provides highly efficient suppression of simultaneous switching noise (SSN) over the broadband range; however, it is difficult to apply this concept to real PCB design for high-speed digital circuits due to degeneration of the signal integrity (SI) performance. In this work, an enhanced localized EBG structure is suggested to enlarge the suppression bandwidth by modifying the EBG pattern without causing any SI problem. The number of bridges for each pattern is minimized, and a meander-shaped bridge is used to increase the inductance of the bridge. As a result, good suppression of SSN is achieved from 0.8 to 6.5 GHz with a -25 dB suppression level.
机译:传输线方法(TLM)用于分析常规电磁带隙(EBG)和具有任意形状的电源/接地平面的增强型护城河结构。与3D全波电磁分析相比,通过TLM进行的快速准确建模可以显示出计算有效的结果。而且,示出了利用步进阻抗滤波器方法可以容易地分析EBG结构的抑制带宽,并且所计算的带宽与所测量的带宽相同。通常,传统的EBG结构可在宽带范围内高效抑制同时开关噪声(SSN)。但是,由于信号完整性(SI)性能的下降,很难将此概念应用于高速数字电路的实际PCB设计。在这项工作中,建议采用增强的局部EBG结构,通过修改EBG模式来扩大抑制带宽,而不会引起任何SI问题。每个图案的电桥数量最小,并且使用曲折形电桥来增加电桥的电感。结果,在-25 dB的抑制水平下,可以在0.8至6.5 GHz范围内实现对SSN的良好抑制。

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