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Multi-stack Technique for a Compact and Wideband EBG Structure in High-Speed Multilayer Printed Circuit Boards

机译:高速多层印刷电路板中紧凑宽带EBG结构的多堆叠技术

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We propose a novel multi-stack (MS) technique for a compact and wideband electromagnetic bandgap (EBG) structure in high-speed multilayer printed circuit boards. The proposed MS technique efficiently converts planar EBG arrays into a vertical structure, thus substantially miniaturizing the EBG area and reducing the distance between the noise source and the victim. A dispersion method is presented to examine the effects of the MS technique on the stopband characteristics. Enhanced features of the proposed MS-EBG structure were experimentally verified using test vehicles. It was experimentally demonstrated that the proposed MS-EBG structure efficiently suppresses the power/ground noise over a wideband frequency range with a shorter port-to-port spacing than the unit-cell length, thus overcoming a limitation of previous EBG structures.
机译:我们针对高速多层印刷电路板中的紧凑型宽带电磁带隙(EBG)结构提出了一种新颖的多堆叠(MS)技术。所提出的MS技术有效地将平面的EBG阵列转换为垂直结构,从而使EBG面积最小化并减小了噪声源与受害者之间的距离。提出了一种色散方法来检查MS技术对阻带特性的影响。建议的MS-EBG结构的增强功能已通过测试工具进行了实验验证。实验证明,提出的MS-EBG结构可以有效地抑制宽带频率范围内的电源/地噪声,且端口间的间隔比单位单元长度短,从而克服了先前EBG结构的局限性。

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