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On the Cross-Correlation Based Loop Gain Adaptation for Bang-Bang CDRs

机译:关于Bang-Bang CDR的基于互相关的循环增益适应

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This article describes the cross-correlation function as an alternative method to adapt loop gain in digital CDRs. Cross-correlation function inherent properties and their link with the cross-power spectral density help consolidating the adaptive loop gain technique, XCALG, for clock and data recovery systems that implement bang-bang phase detector. Considering the modulation of the loop gain due to jitter noise, previous works exploit the autocorrelation function at the output of the bang-bang phase detector as a proper indicator to track the system dynamics and perform loop gain adaptation. In contrast, we propose the XCALG as a new alternative to perform loop gain adaptation featuring better observability, less impact from jitter sources while keeping a safe phase margin. Theory behind the idea is enhanced, and the XCALG is demonstrated through behavioral system simulations. In addition, preliminary implementation costs of the cross-correlation function are discussed using a 65nm CMOS technology node.
机译:本文将互相关功能描述为适应数字CDR中的循环增益的替代方法。互相关功能固有属性及其与交叉功率谱密度的链接有助于整合自适应环路增益技术,Xcalg,用于实现Bang-Bang相位检测器的时钟和数据恢复系统。考虑到由于抖动噪声引起的环路增益的调制,以前的作用在Bang-Bang相位检测器的输出时利用自相关函数作为正确的指示器,以跟踪系统动态并执行循环增益适配。相比之下,我们提出了Xcalg作为一种新的替代方案,以执行具有更好的可观察性的循环增益适配,从抖动源的影响较小,同时保持安全相位余量。思想背后的理论得到了增强,通过行为系统模拟证明了Xcalg。此外,使用65nm CMOS技术节点讨论互相关功能的初步实施成本。

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