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Analytical Equations for Nonlinear Phase Errors and Jitter in Ring Oscillators

机译:环形振荡器中非线性相位误差和抖动的解析方程

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摘要

In this paper, we present a simple analytical equation for capturing phase errors in 3-stage ring oscillators. The model, based on a simple but useful idealization of the ring oscillator, is provably exact for small noise perturbations. Despite its simplicity and purely analytical form, our model correctly captures the time- dependent sensitivity of oscillator phase to external perturbations. It is thus well suited for estimating both qualitative and quantitative features of ring oscillator phase response to internal noises, as well as to power, ground and substrate interference. The nonlinear nature of the model makes it suitable for predicting injection locking as well. Comparisons of the new model with existing phase models are provided, and its application for correct prediction of thermal jitter demonstrated. Requiring knowledge only of the amplitude and frequency of the oscillator, the model is ideally suited for early design exploration at the system and circuit levels.
机译:在本文中,我们提出了一个简单的解析方程,用于捕获3级环形振荡器中的相位误差。该模型基于简单但有用的环形振荡器理想化,可证明其对小噪声扰动是精确的。尽管它具有简单性和纯粹的分析形式,但我们的模型正确地捕获了振荡器相位对外部扰动的时间依赖性。因此,它非常适合估算环形振荡器相位对内部噪声以及对功率,接地和基板干扰的定性和定量特征。该模型的非线性特性使其也适用于预测注射锁定。提供了新模型与现有相位模型的比较,并演示了其在热抖动正确预测中的应用。该模型仅需要了解振荡器的幅度和频率,因此非常适合在系统和电路级进行早期设计探索。

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