Frequency detector for carrier phase synchronization in 50 Gbps QPSK receiver in analog domain

Rejin K. Raveendranath, N. Nambath, Shalabh Gupta
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引用次数: 1

Abstract

Compensating for frequency offset between transmitter and receiver lasers is a major challenge in coherent optical receivers. This necessitates the use of a carrier phase recovery and compensation circuitry at the receiver end which is capable of tracking large frequency offsets and laser linewidths. We propose a frequency detector which is capable of detecting frequency offsets from -100MHz to +100 MHz. The proposed frequency detector has been designed in 130nm BiCMOS technology. The design is verified with 50 Gbps QPSK, and 100 Gbps DP-QPSK signals using circuit simulations. A 50 Gbps low power analog domain QPSK receiver consisting of the proposed frequency detector consumes 650mW power. The receiver is capable of working with transmitter and receiver lasers having upto 200 kHz linewidth and 100MHz frequency offset between them.
模拟域50gbps QPSK接收机载波相位同步频率检测器
发射端和接收端激光器之间的频率补偿是相干光接收机面临的主要挑战。这需要在接收端使用载波相位恢复和补偿电路,该电路能够跟踪大频率偏移和激光线宽。我们提出了一种频率检测器,能够检测从-100MHz到+ 100mhz的频率偏移。所提出的频率检测器采用130nm BiCMOS技术设计。采用50gbps QPSK和100gbps DP-QPSK信号进行了电路仿真验证。由频率检测器组成的50gbps低功耗模拟域QPSK接收机功耗为650mW。接收器能够与发射器和接收器激光器一起工作,它们之间具有高达200 kHz的线宽和100MHz的频率偏移。
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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