DropBot: An open-source digital microfluidic control system with precise control of electrostatic driving force and instantaneous drop velocity measurement
Publication information:
Ryan Fobel, Christian Fobel, and Aaron R. Wheeler. 2013. “DropBot: An Open-Source Digital Microfluidic Control System With Precise Control of Electrostatic Driving Force and Instantaneous Drop Velocity Measurement”. Applied Physics Letters, 102, 9, Pp. 193513
Abstract
We introduce DropBot: an open-source instrument for digital microfluidics (http://microfluidics.utoronto.ca/dropbot). DropBot features two key functionalities for digital microfluidics: (1) real-time monitoring of instantaneous drop velocity (which we propose is a proxy for resistive forces), and (2) application of constant electrostatic driving forces through compensation for amplifier-loading and device capacitance. We anticipate that this system will enhance insight into failure modes and lead to new strategies for improved device reliability, and will be useful for the growing number of users who are adopting digital microfluidics for automated, miniaturized laboratory operation.