A Fully Integrated Microplastic Detection SoC with 0.1-3 GHz Bandwidth and 35 dB Dynamic Range for Narrow-Band Notch RF MEMS Sensor System

  • Seung Beom Ku
  • , Jinhyoung Kim
  • , Kwon Hong Lee
  • , Han Sol Lee
  • , Kyeongho Eom
  • , Joonghoon Kang
  • , Hyungjin Jung
  • , Cheolung Cha
  • , Hyung Min Lee*
  • *Corresponding author for this work

    Research output: Chapter in Book/Report/Conference proceedingConference contribution

    Abstract

    This paper proposes a fully integrated microplastic (MP) detection system-on-chip (SoC) for RF MEMS sensors with a narrow-band notch point operating in 1.19-1.22 GHz range. This 180-nm CMOS MP detection SoC comprises an LC VCO and an envelope-based readout circuit. The RF MEMS sensor is driven by a high linearity LC VCO, providing an output power of 7.98 dBm at 1.22 GHz, while the LC VCO can maintain near-constant output power levels with small variation of 2.13% between 1.19 GHz and 1.22 GHz. Also, the readout circuit with a high dynamic range (DR) can analyze the resonant frequency shifts of the RF MEMS sensor operating at the range of 0.1-3 GHz. The readout circuit employs a time-based 10-bit current-steering digital-to-analog converter (CS-DAC) with a ramp generation, allowing it to detect the input power as low as -20 dBm while accommodating input power variations with 35 dB DR. The RF MEMS sensor driven by the proposed SoC operates as narrow-band notch filter and resonates at 1.2 GHz depending on MP concentration. When 5 μL of 1% standard polyethylene (PE) dispersion was injected 4, 8, 12 and 16 times, the resonant frequencies were shifted to 0.31 MHz, 0.89 MHz, 1.06 MHz, and 1.17 MHz, respectively.

    Original languageEnglish
    Title of host publication2024 IEEE Radio Frequency Integrated Circuits Symposium, RFIC 2024
    PublisherInstitute of Electrical and Electronics Engineers Inc.
    Pages51-54
    Number of pages4
    ISBN (Electronic)9798350359473
    DOIs
    Publication statusPublished - 2024
    Event2024 IEEE Radio Frequency Integrated Circuits Symposium, RFIC 2024 - Washington, United States
    Duration: 2024 Jun 162024 Jun 18

    Publication series

    NameDigest of Papers - IEEE Radio Frequency Integrated Circuits Symposium
    ISSN (Print)1529-2517

    Conference

    Conference2024 IEEE Radio Frequency Integrated Circuits Symposium, RFIC 2024
    Country/TerritoryUnited States
    CityWashington
    Period24/6/1624/6/18

    Bibliographical note

    Publisher Copyright:
    © 2024 IEEE.

    Keywords

    • dynamic range
    • LC VCO
    • microplastic
    • narrow-band notch filter
    • output power variation
    • polyethylene
    • readout circuit
    • resonant frequency
    • RF MEMS sensor
    • system-on-chip

    ASJC Scopus subject areas

    • General Engineering

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