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Computer aided design of quartz crystal oscillators

机译:石英晶体振荡器的计算机辅助设计

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The latest development of a simulation program designed for quartz crystal oscillator analysis is presented in this paper. The simulator being developed uses the full nonlinear Barkhausen criterion method. It consists of finding the frequency /spl omega//sub 0/ and the amplitude u/sub 0/ which nullify both the real and imaginary parts of a characteristic complex polynomial P(u,j/spl omega/) describing the oscillator behavior. Most of the nonlinearities come from the amplifying transistor described by using large signal admittance parameters y(u) obtained by means of an analog circuit simulator (SPICE). This paper presents the method used to derive and code the characteristic polynomial coefficients. This method has been successfully implemented for a Colpitts oscillator and is currently being used to build an oscillator library covering the most widely used structures. The validity and the predictive power of the model have been checked experimentally and the comparison between experimental results and simulation is presented and discussed.
机译:本文介绍了设计用于石英晶体振荡器分析的仿真程序的最新进展。正在开发的模拟器使用完全非线性的巴克豪森准则方法。它由查找频率/ spl omega // sub 0 /和幅度u / sub 0 /组成,它们使描述振荡器行为的特征复多项式P(u,j / spl omega /)的实部和虚部都无效。大部分非线性来自通过使用大信号导纳参数y(u)所描述的放大晶体管,该信号通过模拟电路模拟器(SPICE)获得。本文介绍了用于导出和编码特征多项式系数的方法。该方法已成功地用于Colpitts振荡器,目前正用于构建覆盖最广泛使用的结构的振荡器库。实验验证了模型的有效性和预测能力,并给出了实验结果与仿真结果的比较和讨论。

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