• DocumentCode
    3411610
  • Title

    A connect-5 structure based parallel assay operations in a restricted sized chip in digital microfluidics

  • Author

    Dhal, Debasis ; Chakrabarty, Ankush ; Datta, Piyali ; Roy, Sandip ; Pal, Rajat Kumar

  • Author_Institution
    Triguna Sen Sch. of Technol., Dept. of Inf. Technol., Assam Univ., Silchar, India
  • fYear
    2013
  • fDate
    19-21 Dec. 2013
  • Firstpage
    75
  • Lastpage
    80
  • Abstract
    Digital Microfluidic Biochips (DMFB) is modernizing many areas of Microelectronics, Biochemistry, and Biomedical sciences. As an alternative for laboratory experiments it is popularly also known as `Lab-on-a-Chip´. Reduction in pin count and avoiding cross contamination are some of the important design issues for realistic relevance. These days, due to urgent situation and cost efficacy, more than one assay operations are essential to be carried out at the same time. So, parallelism is inevitable in DMFB. Having an area of a given chip as a constraint, how efficiently we can use a limited sized chip and how much parallelism can be incorporated are the objectives of this paper. The paper presents a design automation flow that enhances parallelism by adopting Connect-5 structure of pin configuration and considering cross contamination problem as well. The algorithm developed in this paper assumes array based partitioning of modules as pin constrained design technique, where a constant number of pins has been used for desired scheduling of reagent and sample droplets. To avoid cross contamination and at the same time to minimize the delay required for washing, wash droplet scheduling and proper placement of modules to minimize wash operations are also taken care of.
  • Keywords
    drops; electronic design automation; lab-on-a-chip; microfluidics; scheduling; Connect-5 structure; DMFB; cost efficacy; cross contamination; design automation flow; digital microfluidic biochips; digital microfluidics; lab-on-a-chip; parallel assay operations; pin configuration; pin constrained design; pin count reduction; wash droplet scheduling; Arrays; Contamination; Electrodes; Microfluidics; Mixers; Pins; Routing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advances in Electrical Engineering (ICAEE), 2013 International Conference on
  • Conference_Location
    Dhaka
  • Print_ISBN
    978-1-4799-2463-9
  • Type

    conf

  • DOI
    10.1109/ICAEE.2013.6750308
  • Filename
    6750308