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One-port noise model of a crystal oscillator

机译:晶体振荡器的单端口噪声模型

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摘要

This paper presents a one-port noise model of a crystal oscillator combined with equivalent impedances of a resonator and linearized feedback amplifier. Based on the noise conversion technique, we translate the thermal additive and flicker noise of both the resonator and amplifier into the oscillator signal amplitude and phase. The generic transformation coefficients for the noise are derived, and the power spectral density (psd) function of the oscillator signal phase is analyzed in detail. The remarkable property of the model is demonstrated by determining the separate contribution of each noise source to the oscillator performance. Some important rules for shaping the phase psd are noted. The consistency with Leeson's model also is reported.
机译:本文提出了晶体振荡器的单端口噪声模型,并结合了谐振器和线性化反馈放大器的等效阻抗。基于噪声转换技术,我们将谐振器和放大器的热加性和闪烁噪声转换为振荡器信号的幅度和相位。推导了噪声的通用变换系数,并详细分析了振荡器信号相位的功率谱密度(psd)函数。通过确定每个噪声源对振荡器性能的单独影响,证明了该模型的显着特性。注意了一些用于调整相位psd的重要规则。还报道了与李森模型的一致性。

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