Surface acoustic wave devices based wireless measurement platform for sensors

被引:0
|
作者
Han, T [1 ]
Shi, WK [1 ]
机构
[1] Shanghai Jiao Tong Univ, Dept Instrumentat, Shanghai 200030, Peoples R China
关键词
surface acoustic wave; coupling of modes; phase measuring; capacitive sensor;
D O I
暂无
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
In some applications, a wireless readout is necessary because of the difficulty of fixed connection between sensors and signal processing unit. The current wireless sensor systems based on data modulation are limited by battery duration and special environment. Wireless surface acoustic wave (SAW) sensors could be used for sensing some physical and chemical measurand passively. However, it is necessary to design SAW sensor specifically in different applications. In this paper, a wireless measurement platform based on SAW technology for sensors is studied. According to the coupling of modes (COM) theory, the reflection magnitude and phase of an interdigital transducer (IDT) is a function of a complex termination impedance at its electrical port and thus conventional sensors varying in impedance can be easily upgraded. into wireless sensors. A delay-line SAW device with low insertion loss is designed with the help of a COM model. In order to overcoming the drawback, which evaluates sensor information by amplitude measurement of reflected impulses, the reflection phase is measured using a digital quadrature demodulation unit. This novel wireless measurement platform is applied in weigh measuring with capacitive sensor and the performance of wireless system is given.
引用
收藏
页码:14 / 19
页数:6
相关论文
共 50 条
  • [41] Surface acoustic wave ultraviolet sensors based on ZnO nanorods
    Chen, Yung-Yu
    Ho, Cheng-Hsiu
    Wu, Tsung-Tsong
    [J]. 2015 9TH INTERNATIONAL CONFERENCE ON SENSING TECHNOLOGY (ICST), 2015, : 406 - 411
  • [42] Surface Acoustic Wave Sensors of Delay Lines Based on MEMS
    Li Haofeng
    Jia Rui
    Li Weilong
    Chen Chen
    Liu Xinyu
    [J]. JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2010, 10 (11) : 7258 - 7261
  • [43] Optimization of Surface Acoustic Wave-Based Rate Sensors
    Xu, Fangqian
    Wang, Wen
    Shao, Xiuting
    Liu, Xinlu
    Liang, Yong
    [J]. SENSORS, 2015, 15 (10) : 25761 - 25773
  • [44] Diamond in Surface Acoustic Wave Sensors
    Hribsek, M. F.
    Ristic, S. S.
    Radojkovic, B. M.
    [J]. ACTA PHYSICA POLONICA A, 2010, 117 (05) : 794 - 798
  • [45] Immunosensing with surface acoustic wave sensors
    Welsch, W
    Klein, C
    Oksuzoglu, RM
    vonSchickfus, M
    Hunklinger, S
    [J]. SENSORS AND ACTUATORS A-PHYSICAL, 1997, 62 (1-3) : 562 - 564
  • [46] SURFACE ACOUSTIC-WAVE SENSORS
    WHITE, RM
    [J]. IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 1986, 33 (01) : 98 - 98
  • [47] Wireless surface acoustic wave-based humidity sensor
    Hollinger, RD
    Tellakula, AR
    Li, CT
    Varadan, VV
    Varadan, VK
    [J]. MICROMACHINED DEVICES AND COMPONENTS V, 1999, 3876 : 54 - 62
  • [48] Surface acoustic wave based microfluidic devices for biological applications
    Liu, Xianglian
    Chen, Xuan
    Yang, Ziwei
    Xia, He
    Zhang, Chuanyu
    Wei, Xueyong
    [J]. SENSORS & DIAGNOSTICS, 2023, 2 (03): : 507 - 528
  • [49] Multilayer magnetostrictive structure based surface acoustic wave devices
    Zhou, H.
    Talbi, A.
    Tiercelin, N.
    Matar, O. Bou
    [J]. APPLIED PHYSICS LETTERS, 2014, 104 (11)
  • [50] Nitride-based surface acoustic wave devices and applications
    Calle, F
    Pedrós, J
    Palacios, T
    Grajal, J
    [J]. E-MRS 2004 FALL MEETING SYMPOSIA C AND F, 2005, 2 (03): : 976 - 983