Wang Zheyao, Wang Chao, Liu Litian
Institute of Microelectronics, Tsinghua University, Beijing 100084, China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Oct;52(10):1840-50. doi: 10.1109/tuffc.2005.1561640.
The ever-growing applications of lead zirconate titanate (PZT) thin films to sensing devices have given birth to a variety of microsensors. This paper presents the design and theoretical analysis of a PZT-based micro acoustic sensor that uses interdigital electrodes (IDE) and in-plane polarization (IPP) instead of commonly used parallel plate-electrodes (PPE) and through-thickness polarization (TTP). The sensitivity of IDE-based sensors is increased due to the small capacitance of the interdigital capacitor and the large and adjustable electrode spacing. In addition, the sensitivity takes advantage of a large piezoelectric coefficient d33 rather than d31, which is used in PPE-based sensors, resulting in a further improvement in the sensitivity. Laminated beam theory is used to analyze the laminated piezoelectric sensors, and the capacitance of the IDE is deduced by using conformal mapping and partial capacitance techniques. Analytical formulations for predicting the sensitivity of both PPE- and IDE-based microsensors are presented, and factors that influence sensitivity are discussed in detail. Results show that the IDE and IPP can improve the sensitivity significantly.
锆钛酸铅(PZT)薄膜在传感设备中的应用日益广泛,催生了各种微传感器。本文介绍了一种基于PZT的微声传感器的设计与理论分析,该传感器采用叉指电极(IDE)和面内极化(IPP),而非常用的平行板电极(PPE)和厚度方向极化(TTP)。基于IDE的传感器灵敏度提高,这得益于叉指电容器的小电容以及大且可调节的电极间距。此外,该灵敏度利用了大的压电系数d33而非基于PPE的传感器中使用的d31,从而使灵敏度进一步提高。采用层合梁理论分析层合压电传感器,并利用保角映射和部分电容技术推导IDE的电容。给出了预测基于PPE和IDE的微传感器灵敏度的解析公式,并详细讨论了影响灵敏度的因素。结果表明,IDE和IPP可显著提高灵敏度。