LC振荡器相位噪声特征函数的解析表达式

P. Ghanta, Zheng Li, J. Roychowdhury
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引用次数: 6

摘要

我们得到了表征一般LC振荡器结构相位噪声性能的特征函数的解析表达式。利用这些,我们还得到了这类振荡器的时序抖动和频谱的解析表达式。我们的方法是基于确定三个基本参数,从振荡器的稳态导出,表征这些特征函数。我们的分析考虑了稳定振荡器振幅的非线性机制。它还以定量和分析的形式展示了LC振荡器负电阻机制中的对称性如何影响振荡器的本征函数及其相位噪声/抖动特性。我们表明,对称性导致了PPV和由此产生的相位噪声的特别简单的形式。我们将我们的表达式与现有的LC振荡器设计公式进行了比较,并证明了表达式在对称非线性情况下是匹配的。通过对实际CMOS LC振荡器电路的仿真验证了分析结果。我们的表达式和对称性结果有望成为设计LC振荡器时优化相位噪声性能的有用工具。
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Analytical expressions for phase noise eigenfunctions of LC oscillators
We obtain analytical expressions for eigenfunctions that characterize the phase noise performance of generic LC oscillator structures. Using these, we also obtain analytical expressions for the timing jitter and spectrum of such oscillators. Our approach is based on identifying three fundamental parameters, derived from the oscillator's steady state, that characterize these eigenfunctions. Our analysis accounts for the nonlinear mechanism that stabilizes oscillator amplitudes. It also lays out, quantitatively and in analytical form, how symmetry in an LC oscillator's negative resistance mechanism impacts the oscillator's eigenfunctions and its phase noise/jitter characteristics. We show that symmetry results in particularly simple forms for the PPV and resultant phase noise. We compare our expressions with existing LC oscillator design formulae and show that the expressions match for symmetric nonlinearities. We validate our analytical results against simulation on practical CMOS LC oscillator circuits. Our expressions and symmetry results are expected to be useful tools for optimizing phase noise performance during the design of LC oscillators.
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