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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Investigation on recent quartz-like materials for SAW applications
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Investigation on recent quartz-like materials for SAW applications

机译:最近用于声表面波的类石英材料的研究

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Recent progress in growing and characterizing quartz-like materials of the trigonal system class 32 has been reported by several groups. The promising perspective for bulk acoustic wave frequency control applications indicates the potentiality of employing these materials for SAW applications as well. This paper reports results of investigations focused on SAW orientations of langasite (LGS), gallium phosphate (GaPO/sub 4/), and langanite (LGN), both singly and doubly rotated cuts. Among the characteristics explored, major attention is paid to the temperature coefficient of delay (TCD), the electromechanical coupling coefficient (K/sup 2/), and the power flow angle (PFA). Contour graphs are plotted based on our calculated results and show the regions in space in which low TCD and high K/sup 2/ can be obtained; they also exhibit the associated PFA and phase velocity characteristics. The influence of different sets of material constants is addressed. The spatial investigation performed shows that there are promising orientation regions in these materials at which zero or reduced TCD (>10 ppm//spl deg/C) and PFA are obtained. Additional attractive characteristics for SAW applications have been observed: values of K/sup 2/ a few times higher than the K/sup 2/ of quartz ST-X, thus finding applications in larger bandwidth devices; variation of the TCD with respect to temperature, which is comparable to the variation found for quartz ST-X and less than that for zero TCD Li/sub 2/B/sub 4/O/sub 7/ cuts like 45/spl deg/X-Z and (0/spl deg/ 78/spl deg/ 90/spl deg/); and phase velocity values circa 13 to 26% smaller than the phase velocity of quartz ST-X thus allowing a reduction in size for intermediate frequency device applications.
机译:几个小组已经报告了在生长和表征32类三角系统的类石英材料方面的最新进展。体声波频率控制应用前景广阔的前景表明了将这些材料用于声表面波应用的潜力。本文报告的研究结果集中于单旋转和双旋转切割的硅酸铝(LGS),磷酸镓(GaPO / sub 4 /)和硅酸铝(LGN)的SAW取向。在探索的特性中,主要关注的是延迟温度系数(TCD),机电耦合系数(K / sup 2 /)和功率流角(PFA)。根据我们的计算结果绘制等高线图,并显示出可以获得低TCD和高K / sup 2 /的空间区域。它们还表现出相关的PFA和相速度特性。解决了不同的材料常数集的影响。进行的空间研究表明,这些材料中存在有希望的取向区域,在该区域可得到零或降低的TCD(> 10 ppm // spl℃/ C)和PFA。对于声表面波应用,还观察到了其他吸引人的特性:K / sup 2 /的值比石英ST-X的K / sup 2 /高出几倍,从而在更大带宽的设备中找到了应用; TCD相对于温度的变化,与石英ST-X的变化相当,小于零TCD的Li / sub 2 / B / sub 4 / O / sub 7 /切割度(如45 / spl deg / XZ和(0 / spl度/ 78 / spl度/ 90 / spl度/);相速度值大约比石英ST-X的相速度小13%至26%,因此可以减小中频设备应用的尺寸。

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