Kaisar Tahmid, Yousuf S M Enamul Hoque, Lee Jaesung, Qamar Afzaal, Rais-Zadeh Mina, Mandal Soumyajit, Feng Philip X-L
IEEE Trans Ultrason Ferroelectr Freq Control. 2023 Oct;70(10):1213-1228. doi: 10.1109/TUFFC.2023.3312159. Epub 2023 Oct 17.
We report on the first experimental demonstration of five self-sustaining feedback oscillators referenced to a single multimode resonator, using piezoelectric aluminum nitride on silicon (AlN/Si) microelectromechanical systems (MEMS) technology. Integrated piezoelectric transduction enables efficient readout of five resonance modes of the same AlN/Si MEMS resonator, at 10, 30, 65, 95, and 233 MHz with quality ( Q ) factors of 18 600, 4350, 4230, 2630, and 2138, respectively, at room temperature. Five stable self-sustaining oscillators are built, each referenced to one of these high- Q modes, and their mode-dependent phase noise and frequency stability (Allan deviation) are measured and analyzed. The 10, 30, 65, 95, and 233 MHz oscillators exhibit low phase noise of -116, -100, -105, -106, and -92 dBc/Hz at 1 kHz offset frequency, respectively. The 65 MHz oscillator yields the Allan deviation of 4×10 and 2×10 at 1 and 1000 s averaging time, respectively. The 10 MHz oscillator's low phase noise holds strong promise for clock and timing applications. The five oscillators' overall promising performance suggests suitability for multimode resonant sensing and real-time frequency tracking. This work also elucidates mode dependency in oscillator noise and stability, one of the key attributes of mode-engineerable resonators.
我们报告了首个关于五个自维持反馈振荡器的实验演示,这些振荡器均参考单个多模谐振器,采用了基于硅(AlN/Si)的压电微机电系统(MEMS)技术。集成压电换能器能够高效读出同一AlN/Si MEMS谐振器的五种谐振模式,在室温下,其频率分别为10、30、65、95和233 MHz,品质因数(Q)分别为18600、4350、4230、2630和2138。构建了五个稳定的自维持振荡器,每个振荡器都参考其中一个高Q模式,并对其与模式相关的相位噪声和频率稳定性(阿伦偏差)进行了测量和分析。10、30、65、95和233 MHz的振荡器在1 kHz偏移频率下分别表现出-116、-100、-105、-106和-92 dBc/Hz的低相位噪声。65 MHz的振荡器在1秒和1000秒平均时间下的阿伦偏差分别为4×10和2×10。10 MHz振荡器的低相位噪声在时钟和定时应用方面具有很大潜力。这五个振荡器的整体优异性能表明它们适用于多模谐振传感和实时频率跟踪。这项工作还阐明了振荡器噪声和稳定性中的模式依赖性,这是可进行模式工程设计的谐振器的关键特性之一。