首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Ultrawideband Mitigation of Simultaneous Switching Noise and EMI Reduction in High-Speed PCBs Using Complementary Split-Ring Resonators
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Ultrawideband Mitigation of Simultaneous Switching Noise and EMI Reduction in High-Speed PCBs Using Complementary Split-Ring Resonators

机译:使用互补开口环谐振器的超宽带同时消除开关噪声并降低EMI的EMI

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摘要

A novel technique for mitigating simultaneous switching noise propagation in high-speed printed circuit boards is presented. The proposed concept is based on etching complementary split-ring resonators (CSRRs) on only one metallic layer of the printed circuit board. By such topology, the electric field between the power planes can be suppressed. It is shown here that by concentrically cascading CSRRs, an ultrawideband suppression of switching noise from sub-GHz to 12 GHz is achieved. A prototype of the proposed concept was simulated, fabricated, and tested. Good agreement is observed between simulation and measurement. Moreover, electromagnetic interference radiation from such perforated boards is investigated. Finally, the performance of the proposed board with CSRRs is assessed through signal integrity analysis using eye diagrams and compared with a reference (solid) board.
机译:提出了一种减轻高速印刷电路板中同时开关噪声传播的新颖技术。提出的概念基于仅在印刷电路板的一个金属层上蚀刻互补开口环谐振器(CSRR)。通过这种拓扑,可以抑制电源平面之间的电场。此处显示,通过同心级联CSRR,可以实现从亚GHz到12 GHz的开关噪声的超宽带抑制。拟议概念的原型已被仿真,制造和测试。在仿真和测量之间观察到良好的一致性。此外,还研究了这种多孔板的电磁干扰辐射。最后,使用眼图通过信号完整性分析评估拟议的具有CSRR的电路板的性能,并将其与参考(实心)电路板进行比较。

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