Author:
V. Yokesh,Mohammed Gulam Nabi Alsath,Kanagasabai Malathi
Abstract
Purpose
The purpose of this paper is to design a suitable guard trace to reduce the electromagentic interference between two closely spaced high frequency transmission lines. A novel cross-shaped resonator combined via fence is passed down to alleviate far-end and near-end crosstalk (NEXT) in tightly coupled high-speed transmission lines. The distance between the adjacent transmission lines is increased stepwise as a function of trace width.
Design/methodology/approach
A rectangular-shaped resonator via fence is connected by a guard trace has been proposed to overcome the coupling between the traces that is separated by 2 W. Similarly, by creating a cross-shaped resonator via fence connected by guard trace that reduces the spacing further by 1.5 W.
Findings
A tightly coupled transmission line structure that needs separation by a designed unit cell structure. Further research needs to be conducted to improve the NEXT, far-end crosstalk (FEXT) and spacing between the transmission lines.
Originality/value
This study portrays a novel method that combines the resonators via fence with a minimum spacing between the tightly coupled transmission lines which reduce the NEXT and FEXT; thereby reducing the size of the routing area. The resultant test structures are characterized at high frequencies using time domain and frequency domain analysis. The following scattering parameters such as insertion loss, NEXT and FEXT of the proposed method are measured as 1.504 dB, >30 dB and >20 dB, respectively.
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering
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2. Differential integrated crosstalk noise (ICN) mitigation in the pin field area of Serdes channel,2018
3. Enhanced microstrip guard trace for ringing noise suppression using a dielectric superstrate;IEEE Transactions on Advanced Packaging,2010
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