Kaajakari Ville, Koskinen Jukka K, Mattila Tomi
VTT Technical Research Centre of Finland, VTT Information Technology, Espoo, Finland.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Dec;52(12):2322-31. doi: 10.1109/tuffc.2005.1563277.
Phase noise in capacitively coupled microresonator-based oscillators is investigated. A detailed analysis of noise mixing mechanisms in the resonator is presented, and the capacitive transduction is shown to be the dominant mechanism for low-frequency 1/f-noise mixing into the carrier sidebands. Thus, the capacitively coupled micromechanical resonators are expected to be more prone to the 1/f-noise aliasing than piezoelectrically coupled resonators. The analytical work is complemented with simulations, and a highly efficient and accurate simulation method for a quantitative noise analysis in closed-loop oscillator applications is presented. Measured phase noise for a microresonator-based oscillator is found to agree with the developed analytical and simulated noise models.
研究了基于电容耦合微谐振器的振荡器中的相位噪声。对谐振器中的噪声混频机制进行了详细分析,结果表明电容式转换是低频1/f噪声混入载波边带的主要机制。因此,与压电耦合谐振器相比,电容耦合微机械谐振器预计更容易出现1/f噪声混叠。分析工作通过仿真得到补充,并提出了一种用于闭环振荡器应用中定量噪声分析的高效且准确的仿真方法。发现基于微谐振器的振荡器的实测相位噪声与所建立的分析和仿真噪声模型相符。