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A simple way of characterizing high Q oscillators

机译:表征高Q振荡器的简单方法

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A simple and accurate theory is presented for the design of high-Q tuned circuit oscillators. The crystal is considered separately from the active oscillator, and all high-Q approximations are handled before the design begins. Previously published concepts (OSCI-LLATOR, negative resistance) are rigorously used as a basis for the final formulas. Technology-independent equations for the oscillation build-up time constant and accurate frequency determination are given along with validity checks on the calculations. The final result is that high-Q oscillator design is reduced from a two-port to a one-port network problem. All remaining mathematical complexity comes from the design of the active impedance and is not a part of crystal oscillator theory. The derived equations were experimentally verified to reasonable measurement accuracy. Pierce and Miller oscillator design methods based on the theory are demonstrated, and SPICE runs are made to demonstrate the theory's application.
机译:为高Q调谐电路振荡器设计提供了简单准确的理论。晶体与活动振荡器分开考虑,并且在设计开始之前处理所有高Q近似。以前公布的概念(OSCI-LLATOR,负电阻)严格地用作最终公式的基础。与振荡建立时间恒定和准确频率确定的技术独立方程,以及对计算的有效性检查。最终结果是从两个端口降低到一个端口网络问题的高Q振荡器设计。所有剩余的数学复杂性来自主动阻抗的设计,并且不是晶体振荡器理论的一部分。通过实验验证衍生的方程以合理的测量精度。展示了基于理论的皮尔斯和米勒振荡器设计方法,并制作了Spice运行来展示理论的应用。

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