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Far-End Crosstalk Mitigation for Microstrip Lines in High-Speed PCBs

机译:高速PCB中微带线的远端串扰缓解

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With improvement in the speed and frequency of electronic circuits, far-end crosstalk (FEXT) problem in printed-circuit board (PCB) neighboring routes becomes one of most critical factors affecting signal quality. In this paper, the FEXT can be mitigated significantly by inserting rectangular-shape resonators (RSR) structures in the coupled microstrip transmission lines where defected microstrip structures (DMS) are etched on the lines. The frequency domain simulation of HFSS shows that the S41 of this proposed structure is decreased more than 16dB around 3.2GHz, compared with the traditional signal routing. The time domain simulation of ADS shows that the peak of FEXT voltage of this structure is improved to 89% compared to the traditional signal routing. It has been successfully demonstrated by simulation and comparison with all previous techniques that, this novel technique gives the best optimum low values for the peak voltage of FEXT. Thus, there is a great potential in DDR5, where the requirement of the high density wiring design is even severe.
机译:随着电子电路速度和频率的提高,印刷电路板(PCB)相邻路径中的远端串扰(FEXT)问题成为影响信号质量的最关键因素之一。在本文中,可以通过在耦合的微带传输线中插入矩形谐振器(RSR)结构来显着缓解FEXT,其中在微带传输线上蚀刻了缺陷微带结构(DMS)。 HFSS的频域仿真表明 41 与传统的信号路由相比,在3.2GHz左右,该拟议结构的噪声降低了16dB以上。 ADS的时域仿真表明,与传统的信号路由相比,该结构的FEXT电压峰值提高了89%。通过仿真和与所有先前技术的比较已成功证明,该新技术为FEXT的峰值电压提供了最佳的最佳低值。因此,DDR5具有很大的潜力,其中对高密度布线设计的要求甚至更高。

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