5 Ghz lithium niobate MEMS resonators with high FoM of 153

Yansong Yang, A. Gao, Ruochen Lu, S. Gong
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引用次数: 78

Abstract

This paper reports on the demonstration of a new class of super-high frequency (SHF) microelectromechanical system (MEMS) resonators operating in the 5 GHz range. SHF resonances have been achieved using the first order antisymmetric (A1) mode, which features a phase velocity exceeding 10000 m/s in ion-sliced and suspended Z-cut Lithium Nio-bate (LiNbO3) thin films. The fabricated device has demonstrated a high electromechanical coupling (kt2) of 29% and a high quality factor (Q) of 527 simultaneously. Consequently, this work marks the first time that MEMS resonators at SHF were demonstrated with an extremely high figure of merit (FoM= kt2Q) of 153. The SHF operation and high FoM of these A1 mode devices have showcased their potential as the key building blocks for future SHF front-end filters and multiplexers.
5 Ghz铌酸锂MEMS谐振器,高FoM为153
本文报道了一种工作在5ghz频段的超高频微机电系统(MEMS)谐振器的演示。使用一阶反对称(A1)模式,在离子切片和悬浮z切割的铌酸锂(LiNbO3)薄膜中实现了SHF共振,其相速度超过10000 m/s。该器件具有29%的高机电耦合(kt2)和527的高品质因数(Q)。因此,这项工作标志着MEMS谐振器在SHF下首次被证明具有极高的品质值(FoM= kt2Q)为153。这些A1模式器件的SHF操作和高FoM显示了它们作为未来SHF前端滤波器和多路复用器的关键构建模块的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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