Temperature stability analysis of LGS for SH-SAW sensor applications

V. C. Ayala, D. Eisele, L. Reindl, F. Josse
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引用次数: 1

Abstract

New piezoelectric materials such as Langasite (La3Ga5SiO14, LGS), are of particular interest for bio-chemical sensor applications because of their temperature compensated characteristics. For liquid phase sensing applications, acoustic devices operating in shear horizontal surface acoustic waves (SH-SAW) mode are desired due to their low wave attenuation. A LGS substrate with an Euler angle (0°, 220°, 900°), which supports SH-SAW and also exhibits zero-temperature coefficient of frequency (TCF), is chosen and electrically characterized. In this paper, the temperature characteristics are analyzed over a range from 50°C up to 720°C. The first three harmonics of a SH-SAW delay line (DL) device are analyzed in the experiments. The DL devices are also tested with a polymer coating layer. The polymer layers are used to investigate and assess the effect of temperature fluctuations in typical biochemical sensor applications. Variations in the frequency-temperature-characteristics (FTC) are observed, indicating the effects of thick polymer layers and high temperatures on the device response. The results show that the coated devices exhibit larger fractional frequency changes near room temperature. As a result, the use of a temperature compensating system or the use of differential measurements scheme with a dual delay line is necessary when using this substrate for biological and chemical sensing applications.
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用于SH-SAW传感器的LGS温度稳定性分析
新型压电材料,如Langasite (La3Ga5SiO14, LGS),由于其温度补偿特性,对生化传感器应用特别感兴趣。对于液相传感应用,由于其低波衰减,需要在剪切水平表面声波(SH-SAW)模式下工作的声学器件。选择欧拉角(0°,220°,900°)支持SH-SAW且具有零温度频率系数(TCF)的LGS衬底并进行电学表征。在本文中,分析了从50°C到720°C的温度特性。实验分析了SH-SAW延迟线(DL)器件的前三次谐波。DL装置也用聚合物涂层进行了测试。聚合物层用于研究和评估温度波动对典型生化传感器应用的影响。观察到频率-温度特性(FTC)的变化,表明厚聚合物层和高温对器件响应的影响。结果表明,涂层器件在室温附近表现出较大的分数频率变化。因此,当将该基板用于生物和化学传感应用时,必须使用温度补偿系统或使用带有双延迟线的差分测量方案。
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