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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Investigation on SAW properties of LGS and optimal cuts for high-temperature applications
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Investigation on SAW properties of LGS and optimal cuts for high-temperature applications

机译:LGS的SAW特性研究和高温应用的最佳切割

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A promising perspective for surface acoustic wave (SAW) device applications at high temperature has been opened by langasite (LGS). The SAW properties of LGS in singly and doubly rotated cuts at 250/spl deg/C are investigated. Three noticeable regions for SAW-cut orientations and propagation directions at high temperature are put forward and are defined by Euler angles [0/spl deg/, 20/spl deg//spl rarr/50/spl deg/, 35/spl deg//spl rarr/45/spl deg/], [0/spl deg/, 85/spl deg//spl rarr/110/spl deg/, 0/spl deg/5/spl deg/], and [0/spl deg/, 138/spl deg//spl rarr/145/spl deg/, 20/spl deg/23/spl deg/], respectively. The first region includes zero or comparatively reduced temperature coefficient of delay (TCD) (0.45%) and larger TCD (25-30 ppm) characterize the last region. For some typical orientations within the above-mentioned three regions, the temperature dependency of SAW characteristics (up to 1000/spl deg/C) is discussed. The second region [0/spl deg/, 85/spl deg//spl rarr/110/spl deg/, 0/spl deg//spl rarr/5/spl deg/], especially the orientation [0/spl deg/, 90/spl deg/, 0/spl deg/], has better comprehensive characteristics of SAW and is more suitable for high-temperature applications. Therefore, we should give a top priority to the orientation [0/spl deg/, 90/spl deg/, 0/spl deg/] in the design of SAW devices operating at high temperature. Comparison between published experimental results and numerical predictions based on LGS constants and their temperature coefficients available in the literature reveals that the theoretical results of TCD under 250/spl deg/C are in agreement with the experimental ones (the relative error of TCD is within 10%).
机译:硅酸铝(LGS)开启了高温表面声波(SAW)器件应用的广阔前景。研究了LGS在250 / spl deg / C的单次和两次旋转切割中的SAW特性。提出了高温下SAW切割方向和传播方向的三个显着区域,并由欧拉角[0 / spl deg /,20 / spl deg // spl rarr / 50 / spl deg /,35 / spl deg / / spl rarr / 45 / spl deg /],[0 / spl deg /,85 / spl deg // spl rarr / 110 / spl deg /,0 / spl deg / 5 / spl deg /]和[0 / spl deg /,138 / spl deg // spl rarr / 145 / spl deg /,20 / spl deg / 23 / spl deg /]。第一区域包括零​​或相对降低的延迟温度系数(TCD)(0.45%),较大的TCD(25-30 ppm)代表了最后一个区域。对于上述三个区域内的一些典型方向,讨论了SAW特性的温度依赖性(高达1000 / spl deg / C)。第二区域[0 / spl deg /,85 / spl deg // spl rarr / 110 / spl deg /,0 / spl deg // spl rarr / 5 / spl deg /],尤其是方向[0 / spl deg / ,90 / spl deg /,0 / spl deg /],具有更好的SAW综合特性,更适合于高温应用。因此,在高温下工作的声表面波器件的设计中,应将方向[0 / spl deg /,90 / spl deg /,0 / spl deg /]放在首位。将已发表的实验结果与基于LGS常数的数值预测及其温度系数进行的文献比较表明,在250 / spl deg / C下,TCD的理论结果与实验结果相符(TCD的相对误差在10以内%)。

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