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采用 LiTaO 晶体的新型多层基底上的高性能声表面波谐振器。

High-Performance SAW Resonator on New Multilayered Substrate Using LiTaO Crystal.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Sep;64(9):1382-1389. doi: 10.1109/TUFFC.2017.2738119. Epub 2017 Aug 10.

Abstract

To develop the high-performance filters and duplexers required for recent long-term evolution frequency bands in mobile handsets, a surface acoustic wave (SAW) resonator is needed that has a higher quality (Q) and a lower temperature coefficient of frequency (TCF). To achieve this, the authors focused on acoustic energy confinement in the depth direction for a rotated Y-X LiTaO (LT) substrate. Characteristics of multilayered substrates with low-impedance and high-impedance layers under LT layer were studied numerically in terms of acoustic energy distribution, phase velocity, coupling coefficient, and temperature characteristics employing a finite-element method simulation. After several calculations, a novel multilayered structure was developed that uses SiO for a low-impedance layer and AlN for a high-impedance layer under the thin LT layer. A one-port resonator using the new substrate was fabricated, and its experimental results showed that the developed resonator had a Bode-Q over 4000 and TCF of -8 ppm/°C, which are four times higher than and one-fifth as small as those of a conventional 4° YX-LT SAW resonator, respectively. By applying this technology, a band 25 duplexer with very narrow duplex gap was successfully developed, which shows extremely low insertion loss, steep cutoff characteristics, and stable temperature characteristics.

摘要

为了在移动电话中开发用于最近的长期演进频段的高性能滤波器和双工器,需要一种具有更高品质因数(Q)和更低频率温度系数(TCF)的声表面波(SAW)谐振器。为了实现这一目标,作者专注于旋转 Y-X LiTaO(LT)基板的深度方向上的声能约束。采用有限元法模拟,数值研究了 LT 层下具有低阻抗和高阻抗层的多层基板的声能分布、相速度、耦合系数和温度特性。经过多次计算,开发了一种使用 SiO 作为低阻抗层和 AlN 作为 LT 层下的高阻抗层的新型多层结构。使用新基板制造了一个单端口谐振器,其实验结果表明,开发的谐振器的 Bode-Q 超过 4000,TCF 为-8 ppm/°C,分别是传统 4° YX-LT SAW 谐振器的四倍和五分之一。通过应用这项技术,成功开发了具有非常窄双工间隔的带 25 双工器,其具有极低的插入损耗、陡峭的截止特性和稳定的温度特性。

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