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由铌酸锂和石英组成的异质声学层表面声波谐振器。

Hetero Acoustic Layer Surface Acoustic Wave Resonator Composed of LiNbO and Quartz.

作者信息

Guo Yong, Kadota Michio, Tanaka Shuji

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2024 Jan;71(1):182-190. doi: 10.1109/TUFFC.2023.3337249. Epub 2024 Jan 9.

DOI:10.1109/TUFFC.2023.3337249
PMID:38010932
Abstract

In this work, a shear-horizontal (SH) mode surface acoustic wave (SAW) resonator based on LiNbO3 (LN)/Quartz (Qz) hetero acoustic layer (HAL) structure was studied by simulation and experiment. By this HAL structure, the displacement and electric displacement are well confined in the piezoelectric layer. A lower mechanical loss of Qz than that of lossy amorphous SiO2 further enhances the quality ( Q ) factor. In addition, a negative temperature coefficient of frequency (TCF) of LN is compensated by selecting the crystalline orientation of Qz with a positive TCF. According to simulation results, the Euler angles of (0°, 101°, and 0°) and the normalized thickness of 0.2-0.3 λ (wavelength) for LN are selected to obtain a higher impedance ratio ( Z -ratio) and bandwidth (BW). The Euler angles of (0°, 160°, and 90°) for Qz are selected to obtain the positive maximum TCF. The fabricated resonator exhibits a Z -ratio of 95 dB and a BW of 15.9% in the 700 MHz range. The fit figure of merit (FoM) reaches 410, which is the best level ever reported for an LN-based resonator. The TCF of the resonator is -77 ppm/°C at anti-resonance frequency. A group of resonators composed of LN and LN/Qz with thin and thick electrodes were fabricated to further illustrate the good performance of LN/Qz. The LN/Qz HAL SAW resonator demonstrated in this work exhibits a high Z -ratio, low TCF, and wideband, which has the potential for high-performance wideband filters with steep passband and good temperature characteristics.

摘要

在这项工作中,通过模拟和实验研究了一种基于铌酸锂(LN)/石英(Qz)异质声学层(HAL)结构的水平剪切(SH)模式表面声波(SAW)谐振器。通过这种HAL结构,位移和电位移被很好地限制在压电层中。Qz的机械损耗低于有损耗的非晶态SiO2,这进一步提高了品质(Q)因数。此外,通过选择具有正频率温度系数(TCF)的Qz晶体取向来补偿LN的负频率温度系数。根据模拟结果,选择LN的欧拉角为(0°、101°和0°)以及归一化厚度为0.2 - 0.3λ(波长),以获得更高的阻抗比(Z比)和带宽(BW)。选择Qz的欧拉角为(0°、160°和90°)以获得最大正TCF。所制备的谐振器在700 MHz范围内的Z比为95 dB,带宽为15.9%。优值(FoM)达到410,这是基于LN的谐振器有史以来报道的最佳水平。该谐振器在反谐振频率下的TCF为 - 77 ppm/°C。制备了一组由LN以及带有薄电极和厚电极的LN/Qz组成的谐振器,以进一步说明LN/Qz的良好性能。在这项工作中展示的LN/Qz HAL SAW谐振器具有高Z比、低TCF和宽带特性,具有用于高性能宽带滤波器的潜力,该滤波器具有陡峭的通带和良好的温度特性。

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