Document details

Control system for actuation and sensing in digital microfluidics devices

Author(s): Soares, Miguel Ângelo Pereira

Date: 2014

Persistent ID: http://hdl.handle.net/10362/14460

Origin: Repositório Institucional da UNL

Subject(s): Digital microfluidics; Control system; Real-time sensing; Impedance measurement; Droplet control; MatLab


Description

Digital Microfluidics (DMF) is a second generation technique, derived from the conventional microfluidics that instead of using continuous liquid fluxes, it uses only individual droplets driven by external electric signals. In this thesis a new DMF control/sensing system for visualization, droplet control (movement, dispensing, merging and splitting) and real time impedance measurement have been developed. The software for the proposed system was implemented in MATLAB with a graphical user interface. An Arduino was used as control board and dedicated circuits for voltage switching and contacts were designed and implemented in printed circuit boards. A high resolution camera was integrated for visualization. In our new approach, the DMF chips are driven by a dual-tone signal where the sum of two independent ac signals (one for droplet operations and the other for impedance sensing) is applied to the electrodes, and afterwards independently evaluated by a lock-in amplifier. With this new approach we were able to choose the appropriated amplitudes and frequencies for the different proposes (actuation and sensing). The measurements made were used to evaluate the real time droplet impedance enabling the knowledge of its position and velocity. This new approach opens new possibilities for impedance sensing and feedback control in DMF devices.

Document Type Master thesis
Language English
Advisor(s) Igreja, Rui
Contributor(s) RUN
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