• DocumentCode
    3694002
  • Title

    A monolithic, low-noise, capacitive readout interface circuit for CMOS-MEMS resonator-based gravimetric chemical gas sensors

  • Author

    N. Y. Sutri;J. O. Dennis;M. H. Md. Khir;A. Y. Ahmed;M. U. Mian

  • Author_Institution
    School of Electrical and Computer Engineering, Addis Ababa Institute of Technology, AAU, Addis Ababa, Ethiopia
  • fYear
    2015
  • Firstpage
    1
  • Lastpage
    7
  • Abstract
    This paper presents a monolithic, low-noise capacitive readout interface circuit for CMOS-MEMS resonator based gravimetric chemical gas sensors. In these sensor devices, where the sense capacitances are usually very weak, the readout interface circuit plays a crucial role in determining the overall sensor performance. Noise is observed in various active and passive devices affecting circuit performances. Particularly at low frequencies, flicker noise is dominant in degrading the quality of output signals. A dual stage, open-loop continuous time voltage sensing with chopper stabilization technique is proposed in this work to cope with it and improve the total output signal SNR. The proposed circuit is designed based on MIMOS 0.35 μm AMS 3.3V CMOS technology. Cadence Spectre circuit simulator simulation results show, the proposed circuit achieves an input inferred noise of 11.6 n V/√(Hz), total gain of 48.1 dB and consumes a total power of 3.385 mW. The designed circuit is able to detect minute capacitance changes as low as 0.0365 aF with total sensitivity of 67.95 μV/aF.
  • Keywords
    "Capacitance","Chemicals","Robot sensing systems","Choppers (circuits)","Logic gates","MOSFET"
  • Publisher
    ieee
  • Conference_Titel
    AFRICON, 2015
  • Electronic_ISBN
    2153-0033
  • Type

    conf

  • DOI
    10.1109/AFRCON.2015.7332004
  • Filename
    7332004