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Monolithic integrated SAW filter based on AlN for high-frequency applications

机译:基于AlN的单片集成SAW滤波器,用于高频应用

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Integrated AlN/SiO_2/Si (10 0) delay lines for Rayleigh surface acoustic waves (SAWs) with resonant frequencies up to 3.4 GHz were fabricated using a new CMOS compatible concept. Different thicknesses of textured AlN films with wurtzite structure were deposited on tungsten-based interdigital transducers embedded in a SiO_2 layer by reactive pulse dc-sputtering at a temperature of 200℃. Rocking curves of the films indicate c-axis (0 0 0 1) oriented, textured piezoelectric AlN films with a full-width at half-maximum of 1.88°. The determined propagation loss and coupling factor K~2 of these SAW devices are 0.07 dB/λ. And 0.78%, respectively. Different Rayleigh modes with acoustic velocities up to 5770 m s~(-1) are observed. By varying the wavelength, number of fingers as well as the length (i.e., the separation between the transducers) of the delay lines, the impact of several physical parameters on the frequency responses (S_(11), S_(21)) was studied. The influence of the AlN thickness and of the orientation of the delay lines on the silicon (10 0) wafers was also investigated. Finite element method simulations were applied to model the resonant frequencies, giving resonant frequencies in reasonable agreement with the experimental data.
机译:使用新的CMOS兼容概念制造了谐振频率高达3.4 GHz的瑞利声表面波(SAW)的集成AlN / SiO_2 / Si(10 0)延迟线。通过在200℃的温度下进行反应性脉冲直流溅射,将不同厚度的具有纤锌矿结构的AlN薄膜沉积在嵌入SiO_2层的钨基叉指式换能器上。薄膜的摇摆曲线表示c轴(0 0 0 1)取向的纹理化压电AlN薄膜,其半峰全宽为1.88°。这些SAW器件的确定传播损耗和耦合因子K〜2为0.07 dB /λ。和0.78%,分别。观察到了不同的瑞利模式,其声速高达5770 m s〜(-1)。通过改变波长,手指的数量以及延迟线的长度(即换能器之间的间距),研究了几个物理参数对频率响应的影响(S_(11),S_(21)) 。还研究了AlN厚度和延迟线的方向对硅(10 0)晶片的影响。应用有限元方法模拟来建模共振频率,使共振频率与实验数据合理地吻合。

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