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An Analysis of 1/f2 Phase Noise in Bipolar Colpitts Oscillators (With a Digression on Bipolar Differential-Pair LC Oscillators)

机译:双极型Colpitts振荡器的1 / f2相位噪声分析(双极差动对LC振荡器的偏差)

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摘要

This work presents an analysis of phase noise in the 1/f2 region displayed by both single-ended and differential bipolar Colpitts oscillators. Very accurate and rigorous symbolic phase noise expressions are derived, enabling a deeper insight into the major mechanisms of phase noise generation, and providing new tools for design optimization. Phase noise expressions for the cross-coupled differential-pair LC-tank oscillator are derived as well. The theoretical analysis is validated on a 3 GHz differential bipolar Colpitts VCO implemented in a 0.35 mum SiGe process. Measurements show a phase noise of -123 dBc/Hz or less at 1MHz offset frequency from the 2.8-3.1 GHz carrier, for a phase noise figure-of-merit of at least 183 dBc/Hz across the tuning range. A very good agreement between theory, numerical simulations, and measurements is observed
机译:这项工作提出了对由单端和差分双极型Colpitts振荡器显示的1 / f2区域中的相位噪声的分析。导出了非常准确和严格的符号相位噪声表达式,从而可以更深入地了解相位噪声产生的主要机制,并为设计优化提供了新的工具。交叉耦合的差分对LC-tank振荡器的相位噪声表达式也被推导。理论分析在以0.35微米SiGe工艺实现的3 GHz差分双极Colpitts VCO上得到了验证。测量显示,在2.8-3.1 GHz载波的1MHz偏移频率处,相位噪声为-123 dBc / Hz或更小,整个调谐范围内的相位噪声品质因数至少为183 dBc / Hz。在理论,数值模拟和测量之间观察到非常好的一致性

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