首页> 外文会议>2015 Joint Conference of the IEEE International Frequency Control Symposium amp; European Frequency and Time Forum >The prediction, simulation and verification of the phase noise in low-phase-noise crystal oscillator
【24h】

The prediction, simulation and verification of the phase noise in low-phase-noise crystal oscillator

机译:低相位噪声晶体振荡器中相位噪声的预测,仿真与验证

获取原文
获取原文并翻译 | 示例

摘要

In order to achieve the prediction of the phase noise of low phase noise crystal oscillator, based on the classic phase noise model of Leeson, the load Q value (Q) is calculated according to the selected oscillator circuit parameters. Thus, on the basis of Lesson phase noise formula, the predicted results of the phase noise of low phase noise crystal oscillators are obtained. Then, the nonlinear transistor model is constructed to simulate the phase noise of low phase noise crystal oscillator by using the ADS (Advanced Design System) simulation software of Agilent and obtain the simulated curve of the phase noise. At last, practical measurement has been performed on these low phase noise crystal oscillator prototypes. The measured results show that: the predicted phase noise of the oscillators and the ADS simulation results obtained by using nonlinear transistor model are both close to the actual measured phase noise, which are at 100Hz and far away offset the carrier frequency. After that, the existence of the deviation, which is near carrier frequency, is analyzed. The prediction and simulation methods given by this paper might be beneficial to simplify the design progress of the low phase noise crystal oscillator.
机译:为了实现对低相位噪声晶体振荡器的相位噪声的预测,基于李森经典的相位噪声模型,根据选择的振荡器电路参数计算出负载Q值(Q)。因此,根据“课程”相位噪声公式,可以获得低相位噪声晶体振荡器的相位噪声预测结果。然后,使用安捷伦的ADS(高级设计系统)仿真软件构建非线性晶体管模型,以模拟低相位噪声晶体振荡器的相位噪声,并获得相位噪声的仿真曲线。最后,对这些低相位噪声晶体振荡器原型进行了实际测量。测量结果表明:利用非线性晶体管模型得到的振荡器的预测相位噪声和ADS仿真结果均接近于100Hz的实际测量相位噪声,并且与载波频率相差很远。此后,分析接近载波频率的偏差的存在。本文给出的预测和仿真方法可能有助于简化低相位噪声晶体振荡器的设计进程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号