Acoustic Effects of Uneven Polymeric Layers on Tunable SAW Oscillators

Processes Pub Date : 2024-06-13 DOI:10.3390/pr12061217
I. Nicolae, Mihaela Bojan, C. Viespe
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Abstract

Surface acoustic wave (SAW) sensors in tunable oscillator configuration, with a deposited polymeric layer, were used to investigate the layer’s impact on the oscillator’s resonant frequency. The SAW oscillators were tuned by means of variable loop amplification. Full-range amplification variation led to a resonant frequency increase of ~1.7 MHz due to the layer’s nonlinear reaction. The layer’s morphology and location resulted in a specific resonant frequency–amplitude dependence. Five types of layers were used to test the causal linkage between the layers’ morphological parameters or positioning and the SAW oscillator’s resonant frequency. The frequency variation trend is almost linear, with a complex minute variation. Small amplitude sigmoids occur at certain attenuation values, due to layer acoustic resonances. Multiple sigmoids were linked with layer resonances of different orders. A good correlation between the layer’s thickness and resonance position was found.
不均匀聚合物层对可调谐声表面波振荡器的声学效应
采用可调振荡器配置的声表面波(SAW)传感器带有一个沉积聚合物层,用于研究该层对振荡器谐振频率的影响。声表面波振荡器通过可变环路放大进行调谐。由于层的非线性反应,全范围放大变化导致谐振频率增加了 ~1.7 MHz。层的形态和位置导致了特定的谐振频率-振幅相关性。我们使用了五种层来测试层的形态参数或位置与声表面波振荡器谐振频率之间的因果关系。频率变化趋势几乎是线性的,具有复杂的微小变化。在某些衰减值下会出现小振幅的西格玛,这是由于层间声共振造成的。多个西格莫与不同阶数的声层共振有关。在层厚度和共振位置之间发现了良好的相关性。
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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