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Complementary spiral resonators for ultrawideband suppression of simultaneous switching noise in high-speed circuits

机译:互补螺旋谐振器,用于超宽带抑制高速电路中的同时开关噪声

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摘要

In this paper, a novel concept for ultra-wideband simultaneous switching noise (SSN) mitigation in high-speed printed circuit boards (PCBs) is proposed. Using complementary spiral resonators (CSRs) etched on only a single layer of the power plane and cascaded co-centrically around the noise port, ultra-wideband SSN suppression by 30 dB is achieved in a frequency span ranging from 340MHz to beyond 10 GHz. By placing a slit in the co-centric rings, lower cut-off frequency is reduced to 150 MHz, keeping the rest of the structure unaltered. Finally, the power plane structure with modified complementary spiral resonators (MCSRs) is designed, fabricated, and evaluated experimentally. Measurement and simulation results are in well-agreement.
机译:本文提出了一种新颖的概念,用于减轻高速印刷电路板(PCB)中的超宽带同时开关噪声(SSN)。使用仅在电源层的单层上蚀刻并在噪声端口周围同心级联的互补螺旋谐振器(CSR),可在340MHz至10 GHz以上的频率范围内实现30 dB的超宽带SSN抑制。通过在同心环中放置一个缝隙,较低的截止频率降低到150 MHz,从而使其余结构保持不变。最后,设计,制造和评估了具有改进的互补螺旋谐振器(MCSR)的电源平面结构。测量和仿真结果吻合良好。

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