Noise Coupling Mechanism Analysis and Mitigation Method for Receiver Sensitivity Improvement in an Optical QSFP Transceiver Module

Yuandong Guo, Shuai Jin, Xinglin Sun, J. Fan
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引用次数: 1

Abstract

The increasingly growth of the traffic in data centers demands for high-speed data transition and high bandwidth density. Optical communication is a promising way for the propagation of high-speed signals with less distortions. The quad small form-factor pluggable (QSFP) transceiver module is an essential component converting an electrical signal into an optical signal for point-to-point data transition. Considerable attentions have been paid to the signal integrity (SI) optimization for the optical QSFP transceiver modules with different data rates, where the receiver sensitivity is generally considered to be critical. In this paper, the receiver sensitivity problem of a typical QSFP transceiver module with 10 Gbit/s data rate is studied. It is the first time to demonstrate that the receiver sensitivity improvement is not only related with the SI design, but also connected with the electromagnetic interference (EMI) mitigation inside the DUT. The convential simulation model used for SI analysis with important metal configurations excluded is limited in the ability to identify the coupling between the radiating structures. It is found that the EMI noise induced by the unbalanced PCB routing and the interconnect between the PCB and flexible printed circuit (FPC) has significant contribution to the total noise at the receiver end. The generation of the antenna-mode current is verified and further studied using the full wave simulations. The mitigation method is proposed and confirmed through the measurements to improve the receiver sensitivity.
QSFP光模块噪声耦合机理分析及提高接收灵敏度的抑制方法
随着数据中心流量的不断增长,对高速数据传输和高带宽密度提出了更高的要求。光通信是一种具有较低失真的高速信号传输方式。QSFP (small form-factor pluggable)收发模块是将电信号转换为光信号以实现点对点数据传输的重要组件。对于具有不同数据速率的QSFP光模块,信号完整性(SI)优化问题已经引起了相当多的关注,其中接收器灵敏度通常被认为是至关重要的。本文研究了典型的10gbit /s数据速率QSFP光模块的接收灵敏度问题。这是第一次证明接收机灵敏度的提高不仅与SI设计有关,而且与DUT内部的电磁干扰(EMI)缓解有关。传统的模拟模型用于SI分析,排除了重要的金属结构,在识别辐射结构之间的耦合能力方面受到限制。研究发现,非平衡PCB布线和PCB与柔性印刷电路(FPC)互连引起的电磁干扰噪声对接收端总噪声有重要贡献。利用全波仿真对天线模式电流的产生进行了验证和进一步研究。提出了提高接收机灵敏度的缓解方法,并通过实测验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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