P1I-1 Acoustical Parameters Characterisation of Aluminium Nitride Thin Film BAW Resonators Using Resonant Spectrum Approach

D. Cornez, S. Lapp, S. Cochran, K. Kirk
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引用次数: 1

Abstract

The determination of piezoelectric properties of an aluminium nitride thin film sandwiched between two electrodes, and acoustically coupled to a supporting substrate, is considered. Measuring the properties of such a BAW composite resonator can be used for film characterisation. The resonant spectrum method has been implemented, which consists of analysing the variation in spacing of parallel resonant frequencies for the resonator. The film parameters were derived from experimental measurements of the insertion loss (s11) of aluminium nitride deposited on glass and LiNO3 respectively, with top and bottom electrodes. A one-dimensional model was used to simulate the functional behaviour of the two examples of four-layer aluminium nitride based resonators. The modelling technique for multilayer ultrasonic transducers was based on the solutions to the 1-D wave equation. It was possible to obtain good agreement between the experimental and modelled results. The values of velocity and density agreed within 0.5%. The spacing of parallel resonant frequencies could also be closely matched between the experiment and the simulation. Under these conditions, the value of kt 2 of the piezoelectric film was inferred from the model.
用共振谱法表征氮化铝薄膜BAW谐振器的声学参数
研究了夹在两个电极之间的氮化铝薄膜的压电性能,并考虑了与支撑基板的声耦合。测量这种BAW复合谐振器的性能可用于薄膜表征。实现了谐振谱法,该方法分析了谐振器并联谐振频率间隔的变化。薄膜参数由氮化铝沉积在玻璃和LiNO3上的插入损耗(s11)的实验测量得到,分别采用顶部和底部电极。用一维模型模拟了两种四层氮化铝基谐振器的功能行为。多层超声换能器的建模技术是基于一维波动方程的求解。在实验结果和模型结果之间有可能得到很好的一致性。速度和密度的值在0.5%以内一致。实验结果与仿真结果吻合较好。在此条件下,由模型推导出压电膜的kt 2值。
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