Kesuma Howgen Pratama, Ramakrishnan N, Lan Boon Leong, Dhillon Amardeep Singh, Achath Mohanan Ajay
IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1418-1429. doi: 10.1109/TUFFC.2020.3031583. Epub 2021 Mar 26.
It has been recently demonstrated that one-port surface acoustic wave (SAW) resonators known for their high Q value and relatively small device footprint could be utilized for in-liquid mass loading sensing applications where only the reflectors of the device are coated with the sensing film, while the interdigital transducer (IDT) is isolated from the sensing environment. The sensor relies on changes induced in reflectivity and phase velocity of SAW in the region of the reflectors upon detection of the measurand and is particularly advantageous for SAW resonator-type sensors as any contact of the sensing film with the IDT could change its static capacitance during sensing and thereby introduce serious instability in the sensor response. Accordingly, in the present work, the existing scattering matrix approach to the design of one-port SAW resonator filters, which does not cater to the integration of sensing film on the resonator surface, is adapted to develop a method to design one-port SAW resonator sensors utilizing reflectors as sensing element. The reflector block of the one-port SAW resonator is readily split into sensing-active and sensing-inactive parts using the SAW grating transmission matrix in order to study the changes introduced in input admittance of the device for varying level of coverage of the sensing film. The theoretical design approach presented in this work could be used to fabricate high-performance one-port SAW resonator sensors operating at its point of highest sensitivity while utilizing one of the device reflectors as sensing element, without the use of additional impedance matching circuit elements.
最近已经证明,以高Q值和相对较小的器件尺寸而闻名的单端口表面声波(SAW)谐振器可用于液体质量负载传感应用,在该应用中,仅器件的反射器涂有感测膜,而叉指换能器(IDT)与传感环境隔离。该传感器依赖于在检测被测量时在反射器区域中SAW的反射率和相速度所引起的变化,并且对于SAW谐振器型传感器特别有利,因为传感膜与IDT的任何接触都可能在传感期间改变其静态电容,从而在传感器响应中引入严重的不稳定性。因此,在本工作中,现有的用于设计单端口SAW谐振器滤波器的散射矩阵方法(该方法不适合在谐振器表面集成传感膜)被调整,以开发一种利用反射器作为传感元件来设计单端口SAW谐振器传感器的方法。利用SAW光栅传输矩阵,单端口SAW谐振器的反射器块很容易被分成传感有源部分和传感无源部分,以便研究在传感膜覆盖程度不同时器件输入导纳所引入的变化。本工作中提出的理论设计方法可用于制造高性能的单端口SAW谐振器传感器,该传感器在其最高灵敏度点工作,同时利用器件的一个反射器作为传感元件,而无需使用额外的阻抗匹配电路元件。