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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Evaluation of mass-produced commercial LiTaO3 single crystals using the LFB ultrasonic material characterization system
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Evaluation of mass-produced commercial LiTaO3 single crystals using the LFB ultrasonic material characterization system

机译:使用LFB超声材料表征系统评估大规模生产的商用LiTaO3单晶

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摘要

A mass-production line of lithium tantalate (LiTaO3) crystals with a maximum charge number of 60 for surface acoustic wave (SAW) devices was evaluated with the line-focus-beam (LFB) ultrasonic material characterization system. Some serious problems associated with chemical compositions were observed and resolved by measuring the velocities of Rayleigh-type leaky surface acoustic waves (LSAWs), VLSAW, for two groups of LiTaO3 wafers: 21 36°YX-LiTaO3 wafers selected randomly from crystal ingots grown with different charge numbers in different furnaces, and 14 42°YX-LiTaO3 wafers obtained at the top, middle, and bottom parts from 5 crystals selected from 39 crystals grown successively in the same furnace and crucible. Using the measured VLSAW and the predetermined relationship between VLSAW And Li2O concentrations, M(Li2O), we estimated the average M(Li2O) controlled in the current mass-production line to be about 48.77 mol% with a maximum difference of 0.75 mol%. The composition for each crystal ingot increased linearly about 0.04 mol% from the top to the bottom, and no dependence on the charge number was observed, as the melt composition used for the mass production was controlled through Curie temperature (TC) measurements. A nearly true congruent composition of 48.49 Li2O-mol% was obtained through the precise VLSAW data for the 42°YX-LiTaO3 wafers, that was about 0.3 mol% less than the melt composition in the production line. It was also pointed out that the TC measurement conditions, including room temperatures surrounding the measurement systems, should be re-examined for reliable production control. A guideline for more efficient mass production of the crystals has been established concerning the true congruent composition as the starting material.
机译:使用线聚焦束(LFB)超声材料表征系统评估了用于表面声波(SAW)器件的最大电荷数为60的钽酸锂(LiTaO3)晶体的量产线。通过测量两组LiTaO3晶片的瑞利型泄漏表面声波(LSAWs)VLSAW的速度,观察到并解决了一些与化学成分相关的严重问题:从与硅酸盐生长在一起的晶锭中随机选择的21个36°YX-LiTaO3晶片在不同的熔炉中装入不同的电荷数,并在同一炉子和坩埚中依次从39个晶体中选出5个晶体,在顶部,中部和底部获得14个42°YX-LiTaO3晶片。使用测得的VLSAW和VLSAW与Li2O浓度之间的预定关系M(Li2O),我们估计当前批量生产线中控制的平均M(Li2O)约为48.77 mol%,最大差为0.75 mol%。由于通过居里温度(TC)测量来控制用于批量生产的熔体组成,因此每个晶体锭的组成从顶部到底部线性地增加约0.04mol%,并且没有观察到电荷数的依赖性。通过针对42°YX-LiTaO3晶片的精确VLSAW数据,获得了几乎完全一致的48.49 Li2O-mol%的成分,比生产线中的熔融成分少约0.3 mol%。还指出,应重新检查TC测量条件,包括测量系统周围的室温,以进行可靠的生产控制。已经建立了关于更有效地大量生产晶体的指导方针,该指导方针涉及真正全等的组成作为起始材料。

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