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SAW temperature sensor with mirror topology

机译:带有镜面拓扑结构的SAW温度传感器

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One of the main directions for improving surface acoustic wave (SAW) sensors is to increase the range of operation. Besides achieving greater interrogation distances, the aim of this work is to increase the amount of information that can be obtained from the sensor. The design of the sensors with mirror topology assumes that there is a significant difference in variation of SAW propagation velocity with temperature in two different substrates. The search for optimum piezoelectric materials showed that it is preferable to use two different cuts of lithium niobate (Y-Z-cut and 128°Y-X-cut). The achieved measurement distance with a 1.8 μs long interrogation pulse and 10 mW average power exceeded 30 m at 433 MHz. Measurement accuracy in the range of -50 to 50 °C was better than ±5°C.
机译:改进表面声波(SAW)传感器的主要方向之一是增加操作范围。除了获得更大的询问距离之外,这项工作的目的还在于增加可以从传感器获得的信息量。具有镜面拓扑的传感器的设计假定SAW传播速度随温度在两个不同基板中的变化存在显着差异。对最佳压电材料的研究表明,最好使用两种不同的铌酸锂切割(Y-Z切割和128°Y-X切割)。在433 MHz的频率下,使用1.8 µs长的查询脉冲和10 mW的平均功率实现的测量距离超过了30 m。在-50至50°C的范围内,测量精度优于±5°C。

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