Activation of Control Pins for Routing of Test Droplets within a Bi-partitioned Digital Microfluidic Biochip
Somak Das, Sudip Roy, Sowvik Dey
Abstract
Somak Das, Sudip Roy, Sowvik Dey
Abstract
Digital micro fluidics based biochips is expected to play an important role towards point-of-care diagnostics, drug discovery, prevention of bio-terrorism and other biochemical applications. Design and testing of biochips always remained a challenging area of research. Structural testing of these bio-MEMS is ensured by smooth movements of test droplets within the micro fluidic array. Partitioning the digital micro fluidic array into clusters reduces the testing time. This paper proposes a novel scheme of activation of electrode-control pins based on existing allocation methods enabling movement of test droplets within a bi-partitioned digital micro fluidic biochip.
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Digital micro fluidics based biochips is expected to play an important role towards point-of-care diagnostics, drug discovery, prevention of bio-terrorism and other biochemical applications. Design and testing of biochips always remained a challenging area of research. Structural testing of these bio-MEMS is ensured by smooth movements of test droplets within the micro fluidic array. Partitioning the digital micro fluidic array into clusters reduces the testing time. This paper proposes a novel scheme of activation of electrode-control pins based on existing allocation methods enabling movement of test droplets within a bi-partitioned digital micro fluidic biochip.
Key concepts: Biochip, Fluidics, Microfluidics, Digital microfluidics, Lab-on-a-chip, Routing (electronic design automation), Nanotechnology, Computer science