Description

Book Synopsis

Digital Microfluidic Biochips focuses on the automated design and production of microfluidic-based biochips for large-scale bioassays and safety-critical applications. Bridging areas of electronic design automation with microfluidic biochip research, the authors present a system-level design automation framework that addresses key issues in the design, analysis, and testing of digital microfluidic biochips.

The book describes a new generation of microfluidic biochips with more complex designs that offer dynamic reconfigurability, system scalability, system integration, and defect tolerance. Part I describes a unified design methodology that targets design optimization under resource constraints. Part II investigates cost-effective testing techniques for digital microfluidic biochips that include test resource optimization and fault detection while running normal bioassays. Part III focuses on different reconfiguration-based defect tolerance techniques designed to increa

Table of Contents
Synthesis Techniques. Testing Techniques. Reconfiguration-Based Defect Tolerance.

Digital Microfluidic Biochips Synthesis Testing

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A Hardback by Krishnendu Chakrabarty, Fei Su

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    View other formats and editions of Digital Microfluidic Biochips Synthesis Testing by Krishnendu Chakrabarty

    Publisher: Taylor & Francis Inc
    Publication Date: 10/10/2006
    ISBN13: 9780849390098, 978-0849390098
    ISBN10: 0849390095

    Description

    Book Synopsis

    Digital Microfluidic Biochips focuses on the automated design and production of microfluidic-based biochips for large-scale bioassays and safety-critical applications. Bridging areas of electronic design automation with microfluidic biochip research, the authors present a system-level design automation framework that addresses key issues in the design, analysis, and testing of digital microfluidic biochips.

    The book describes a new generation of microfluidic biochips with more complex designs that offer dynamic reconfigurability, system scalability, system integration, and defect tolerance. Part I describes a unified design methodology that targets design optimization under resource constraints. Part II investigates cost-effective testing techniques for digital microfluidic biochips that include test resource optimization and fault detection while running normal bioassays. Part III focuses on different reconfiguration-based defect tolerance techniques designed to increa

    Table of Contents
    Synthesis Techniques. Testing Techniques. Reconfiguration-Based Defect Tolerance.

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