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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Surface and pseudo surface acoustic waves in langatate: predictions and measurements
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Surface and pseudo surface acoustic waves in langatate: predictions and measurements

机译:langate的表面和伪表面声波:预测和测量

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Langatate (LGT, La/sub 3/Ga/sub 5.5/Ta/sub 0.5/O/sub 14/) is a recent addition to materials of the trigonal crystal class 32. In this paper SAW contour plots of the phase velocity (v/sub p/), the electromechanical coupling coefficient (K/sup 2/), the temperature coefficient of delay (TCD), and the power flow angle (PFA), are given showing the orientations in space in which high coupling is obtained, with the corresponding TCD, PFA, and vp characteristics for these orientations. This work reports experimental results on the SAW temperature fractional frequency variation (/spl Delta/f/fo) and the TCD for several LGT orientations on the plane with Euler angles: (0/spl deg/, 132/spl deg/, /spl psi/). The temperature behavior has been measured directly on SAW wafers from 10 to 200/spl deg/C, and the results are compared with numerical predictions using our recently measured temperature coefficients for LGT material constants. This research also has uncovered temperature compensated orientations, which we have experimentally verified with parabolic behavior, turnover temperatures in the 130 to 160/spl deg/C range, and /spl Delta/f/fo within 1000 ppm variation from 10 to 260/spl deg/C, appropriate for higher temperature device applications. Regarding the pseudo surface acoustic waves (PSAWs), results of calculations are presented for both the PSAW and the high velocity PSAW (HVPSAW) for some selected, rotated cuts. This study shows that propagation losses for the PSAWs of about 0.01 dB/wavelength, and phase velocities approximately 20% higher than that of the SAW, exist along specific orientations for the PSAW, thus showing the potential for somewhat higher frequency SAW device applications on this material, if required.
机译:角铁酸盐(LGT,La / sub 3 / Ga / sub 5.5 / Ta / sub 0.5 / O / sub 14 /)是最近添加到32号三角晶体中的材料。在本文中,SAW等速线轮廓图/ sub p /),机电耦合系数(K / sup 2 /),延迟温度系数(TCD)和功率流角(PFA),给出了获得高耦合的空间方向,并具有针对这些方向的相应TCD,PFA和vp特性。这项工作报告了关于具有欧拉角的平面上若干LGT方向的SAW温度分数频率变化(/ spl Delta / f / fo)和TCD的实验结果:(0 / spl deg /,132 / spl deg /,/ spl psi /)。已直接在10至200 / spl deg / C的SAW晶片上测量了温度行为,并使用我们最近测量的LGT材料常数温度系数将结果与数值预测进行了比较。这项研究还发现了温度补偿的方向,我们已经通过抛物线行为,130至160 / spl deg / C范围内的周转温度以及从10至260 / spl的1000 ppm范围内的/ spl Delta / f / fo进行了实验验证。 deg / C,适用于高温设备应用。关于伪表面声波(PSAW),对于某些选定的旋转切割,同时给出了PSAW和高速PSAW(HVPSAW)的计算结果。这项研究表明,沿PSAW的特定方向存在PSAW的传播损耗约为0.01 dB /波长,并且相速度比SAW的相速度高约20%,因此显示出在此频率上更高频率的SAW器件应用的潜力材料(如果需要)。

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