• DocumentCode
    2131214
  • Title

    Drop position sensing in digital microfluidics based on capacitance measurement

  • Author

    Lovecchio, Nicola ; Caputo, Domenico ; Nascetti, Augusto ; Petrucci, Giulia ; Carpentiero, Matteo ; de Cesare, Giampiero ; Zahra, Andleeb

  • Author_Institution
    DIET & DIAEE, Univ. of Rome “La Sapienza”, Rome, Italy
  • fYear
    2015
  • fDate
    3-5 Feb. 2015
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    In this work, we present an electronic circuit able to sense the droplet position in Electro-Wetting On Dielectric (EWOD) systems. The drop position is determined measuring the equivalent capacitance of the EWOD electrode, whose value varies according to the presence of the fluid over the pad. In the presented system, the capacitance measurement is achieved through the “Frequency Shift Oscillator” method: the EWOD electrode is inserted in an oscillator circuit, whose operating frequency is inversely proportional to the electrode capacitance value. A microcontroller, included in the system, counts the number of rising edges at the output of the circuit determining the oscillation frequency. The oscillator has been simulated and subsequently fabricated on a double layer printed circuit board. A very good agreement between simulations and experiments has been achieved. The value of obtained sensitivity is not lower than 1.2 kHz/pF that corresponds to a minimum detectable capacitance variation of 0.167 pF. This value is well below the variation of capacitance due to the presence of the droplet above the EWOD electrode and demonstrates the suitability of our circuit as a successful drop position sensor.
  • Keywords
    capacitance measurement; computerised instrumentation; drops; microfluidics; oscillators; position measurement; printed circuits; wetting; EWOD electrode; digital microfluidics; double layer printed circuit board; drop position sensor; droplet; electrode capacitance measurement; electronic circuit; electrowetting on dielectric; frequency shift oscillator; microcontroller; oscillation frequency determination; oscillator circuit; Atmospheric measurements; Capacitance; Capacitance measurement; Electrodes; Frequency measurement; Microcontrollers; Oscillators; capacitance metering; digital microfluidic; drop position sensor; electrowetting; oscillator;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    AISEM Annual Conference, 2015 XVIII
  • Conference_Location
    Trento
  • Type

    conf

  • DOI
    10.1109/AISEM.2015.7066850
  • Filename
    7066850