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Phase Noise Measurements of Aluminum Scandium Nitride Oscillators

机译:氮化铝Aluminum振荡器的相位噪声测量

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This paper presents the first phase noise (PN) measurements of oscillators based on aluminum scandium nitride (AlScN) resonators. 2-port AlScN contour mode resonators (CMR) operating at 195 MHz are fabricated. A large pool of Q values (ranging from 150 to 1400) is obtained by tuning the anchor loss amount via design. Then, we use top bench discrete components to create a Pierce oscillator, where the resonator is contacted directly with RF probes, enabling fast phase noise measurement on a large number of CMRs. Our results are in agreement with the Leeson’s model (phase noise decreases when higher Q resonators are used) and show that the best PN, measured at highest Q =1413, is -100 dBc/Hz at 1 kHz offset frequency. Moreover, we compare this result to an aluminum nitride (AlN) CMR with nearly identical Q and find that the AlScN oscillator PN is 10 dBc/Hz better than the AlN oscillator at 1 kHz offset frequency.
机译:本文介绍了基于氮化铝aluminum(AlScN)谐振器的振荡器的第一相噪声(PN)测量。制造了工作在195 MHz的2端口AlScN轮廓模式谐振器(CMR)。通过设计调整锚损失量,可以获得大量的Q值(范围从150到1400)。然后,我们使用台式分立元件创建皮尔斯振荡器,使谐振器直接与RF探头接触,从而可以对大量CMR进行快速相位噪声测量。我们的结果与Leeson模型一致(使用较高Q谐振器时,相位噪声会降低),并表明在最高Q = 1413时测得的最佳PN在1 kHz偏移频率下为-100 dBc / Hz。此外,我们将该结果与Q值几乎相同的氮化铝(AlN)CMR进行了比较,发现在1 kHz偏移频率下,AlScN振荡器PN比AlN振荡器好10 dBc / Hz。

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