• DocumentCode
    3469357
  • Title

    CMOS-based gas sensor: SoC approach

  • Author

    Mohd-Yasin, F. ; Tye, K.F. ; Lee, C.Y. ; Reaz, M.B.L.

  • Author_Institution
    Fac. of Eng., Multimedia Univ., Selangor
  • Volume
    2
  • fYear
    2005
  • fDate
    24-0 Oct. 2005
  • Firstpage
    635
  • Lastpage
    637
  • Abstract
    Summary form only given. The design of CMOS-based SAW gas sensor with a system on chip (SoC) approach is presented in this paper. The SAW sensor devices typically run at RF, requiring most design to have complex signal conditioning circuitry. Our approach attempts to simplify the design while operating at 354 MHz. An algorithm has been developed to get the optimized solution for the SAW sensor´s design parameters. In the simulations the tungsten trioxide (WO3) film is used as a sensing element to detect hydrogen sulfide (H2S). The signal processing circuitry is designed using TSMC 0.35mum technology. It could detect the input which is in the form of frequency ranging from 300 MHz to 400 MHz. Simulation data show that this design has 30% reduced power and 10 time lesser die size, compare to two existing works. The CMOS SAW gas sensor is designed using the Mentor Graphics design tools based on TSMC 0.35 mum technology. It shows the layout of the entire system. Numerous simulations have been performed to get the optimized design. The results obtained based on different number of IDT finger pairs and overlap length are shown. Finally, the final output (in voltage) from the signal conditioning circuitry is presented
  • Keywords
    CMOS integrated circuits; gas sensors; hydrogen compounds; surface acoustic wave sensors; system-on-chip; tungsten compounds; 0.35 micron; 300 to 400 MHz; CMOS-based gas sensor; H2S; SAW gas sensor; SAW sensor devices; WO3; signal conditioning circuitry; signal processing circuitry; system on chip; tungsten trioxide film; CMOS technology; Circuit simulation; Design optimization; Gas detectors; RF signals; Radio frequency; Signal design; Signal processing algorithms; Surface acoustic waves; System-on-a-chip;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    ASIC, 2005. ASICON 2005. 6th International Conference On
  • Conference_Location
    Shanghai
  • Print_ISBN
    0-7803-9210-8
  • Type

    conf

  • DOI
    10.1109/ICASIC.2005.1611408
  • Filename
    1611408