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Analysis and Design of Crosstalk Noise Reduction for Coupled Striplines Inserted Guard Trace With an Open-Stub on Time-Domain in High-Speed Digital Circuits

机译:高速数字电路中带时域的开路短线耦合带状线插入保护走线的串扰降噪分析和设计

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Grounded guard traces are increasingly utilized to mitigate crosstalk noise interference in printed circuit boards or packages. This paper discusses how the coupled striplines inserted guard trace with an open-stub affects the crosstalk noise. The guard trace with an open-stub, also called guard trace stub, seriously degrades the performance of the coupled striplines with respect to signal integrity, and the extra crosstalk noise occurs both at near- end and far-end for stripline structure. In addition, an analytical formula is proposed to approximate the maximum magnitude of extra crosstalk noise that is caused by a guard trace stub. To maintain the crosstalk noise induced by the active line and extra crosstalk noise induced by the guard trace stub on the victim line with equivalent amplitude is proposed to obtain the best design for maximum reduction ratio of crosstalk noise at both the near-and far-end. Based on the proposed method, a design curve for the geometric structures of coupled striplines inserted guard trace stub is constructed. Using the design curve, a maximum reduced ratio of crosstalk noise for coupled striplines inserted guard trace stub can be selected. Narrowing trace width of the guard trace stub is proposed to eliminate the crosstalk noise. The maximum reduction in crosstalk noise in the presented examples exceeded 50% in this paper. Finally, a favorable comparison between the time-domain simulation and measured results validates the proposed concept and analysis approach.
机译:接地保护线越来越多地用于减轻印刷电路板或封装中的串扰噪声干扰。本文讨论了带开口线的耦合带状线插入保护走线如何影响串扰噪声。带开路短截线的保护走线(也称为保护走线短线)会严重降低耦合带状线的信号完整性,并且在带状线结构的近端和远端都会产生额外的串扰噪声。此外,提出了一个解析公式来近似估算由保护走线短线引起的额外串扰噪声的最大幅度。为了保持有源线路引起的串扰噪声和受害线路上保护走线存根引起的额外串扰噪声具有相等的幅度,提出了在近端和远端最大降低串扰噪声比的最佳设计。 。基于所提出的方法,构造了耦合的带状线插入的保护迹线桩的几何结构设计曲线。使用设计曲线,可以为插入的带状线的保护走线短截线选择最大降低的串扰噪声比。提出了缩小保护走线存根的走线宽度以消除串扰噪声的方法。在本文提出的示例中,串扰噪声的最大降低超过了50%。最后,时域仿真与测量结果之间的有利比较验证了所提出的概念和分析方法。

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