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An Improved Miniaturized Three-Layer Embedded Electromagnetic Bandgap Structure

机译:一种改进的小型化三层嵌入式电磁带隙结构

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A miniaturized planar electromagnetic bandgap (EBG) structure with embedded meander line as bridge is proposed. The dimensions of the unit cell of the proposed EBG structure are 15 mm$,times,$ 15 mm$,times,$ 0.36 mm. Simulation and measurement of the noise transmission coefficient $(S_{21})$ have been performed for the structure. And good agreement can be seen. According to the measured results, the ${-}30$ dB noise suppression bandwidth ranges from 0.97 to 21.54 GHz, which cover almost the whole noise band in ultrawideband applications. However, difficulties arise when the EBG structure is put in a stripline-like environment; the embedded EBG structure loses the noise filtering function. This communication proposed a solution by interconnecting the top and bottom planes of the embedded EBG structure with vias. The bandwidth and depth of noise suppression of the embedded EBG structure can be improved by the location and number of the vias. Simulation and measurement results demonstrate that the proposed embedded EBG structure can be effective for the desired noise isolation, which proved the correctness of the design of the three-layer embedded EBG structure.
机译:提出了一种以嵌入式曲折线为桥的小型平面电磁带隙(EBG)结构。所提出的EBG结构的晶胞的尺寸为15mm×15mm×0.36mm。已经对该结构进行了噪声传输系数$(S_ {21})$的仿真和测量。可以看到良好的协议。根据测量结果,$ {-} 30 $ dB的噪声抑制带宽范围为0.97至21.54 GHz,几乎覆盖了超宽带应用中的整个噪声频带。但是,当将EBG结构置于类似带状线的环境中时,会出现困难。嵌入式EBG结构失去了噪声过滤功能。该通信提出了一种将嵌入式EBG结构的顶部和底部与通孔互连的解决方案。嵌入式EBG结构的噪声抑制带宽和深度可以通过通孔的位置和数量来改善。仿真和测量结果表明,所提出的嵌入式EBG结构可以有效地实现所需的噪声隔离,从而证明了三层嵌入式EBG结构设计的正确性。

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