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Piezoelectric Aluminum Nitride Vibrating Contour-Mode MEMS Resonators

机译:压电氮化铝振动轮廓模式MEMS谐振器

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摘要

This paper reports theoretical analysis and experimental results on a new class of rectangular plate and ring-shaped contour-mode piezoelectric aluminum nitride radio-frequency microelectromechanical systems resonators that span a frequency range from 19 to 656 MHz showing high-quality factors in air (Qmax = 4300 at 229.9 MHz), low motional resistance (ranging from 50 to 700 Ω), and center frequencies that are lithographically defined. These resonators achieve the lowest value of motional resistance ever reported for contour-mode resonators and combine it with high Q factors, therefore enabling the fabrication of arrays of high-performance microresonators with different frequencies on a single chip. Uncompensated temperature coefficients of frequency of approximately 25 ppm/°C were also recorded for these resonators. Initial discussions on mass loading mechanisms induced by metal electrodes and energy loss phenomenon are provided.
机译:本文报告了一种新型的矩形板和环形轮廓模式压电氮化铝射频微机电系统谐振器的理论分析和实验结果,该谐振器的频率范围从19到656 MHz,表现出空气中的高质量因素(Qmax = 22300 MHz时为4300),低运动电阻(范围为50至700Ω)和光刻定义的中心频率。这些谐振器达到了轮廓模式谐振器所报告的最低的运动电阻值,并将其与高Q因子结合在一起,因此能够在单个芯片上制造具有不同频率的高性能微谐振器阵列。对于这些谐振器,还记录了频率约25 ppm /°C的未补偿温度系数。初步讨论了由金属电极引起的质量加载机制和能量损失现象。

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