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The relaxation quartz crystal oscillators-design and performances

机译:张弛石英晶体振荡器-设计与性能

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Rules are described for analysis and design of relaxation quartz crystal oscillators. Two based topologies for relaxation oscillators and the corresponding mathematical model describing their behavior are presented. Using a phase-space approach the oscillating condition and frequency and the flicker frequency noise level are calculated. The characteristics of an optimal oscillator circuit having a loaded crystal Q-factor close to the unloaded one are determined. Based on the analysis, the design rules for an optimal relaxation circuit are derived. The rules are demonstrated through the design and realization of an optimal relaxation crystal oscillator based on two-transistor negative resistance two-ports. The measured characteristics of the realized oscillator are presented and compared to those of known relaxation circuits. It is concluded that the optimal relaxation crystal oscillator consists of a small number of component circuits having low phase noise and small sensitivity to circuit and ambient parameter variations.
机译:描述了用于弛豫石英晶体振荡器的分析和设计的规则。提出了两种基于张弛振荡器的拓扑以及描述其行为的相应数学模型。使用相空间方法,可以计算出振荡条件和频率以及闪烁频率噪声水平。确定具有接近于未加载晶体Q因数的最佳晶体振荡器的最佳振荡器电路的特性。在此基础上,推导了最佳弛豫电路的设计规则。通过基于两晶体管负电阻两端口的最佳弛豫晶体振荡器的设计和实现,证明了这些规则。给出了实现的振荡器的测量特性,并将其与已知松弛电路的特性进行比较。结论是,最佳弛豫晶体振荡器由少量具有低相位噪声并且对电路和环境参数变化敏感的组件电路组成。

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