Microfluidic Very Large Scale Integration (VLSI) Modeling, Simulation, Testing, Compilation and Physical Synthesis

This book presents the state-of-the-art techniques for the modeling, simulation, testing, compilation and physical synthesis of mVLSI biochips. The authors describe a top-down modeling and synthesis methodology for the mVLSI biochips, inspired by microelectronics VLSI methodologies. They introduce a...

Descripción completa

Detalles Bibliográficos
Autor principal: Pop, Paul (-)
Autor Corporativo: SpringerLink (-)
Otros Autores: Minhass, Wajid Hassan, Madsen, Jan
Formato: Libro electrónico
Idioma:Inglés
Publicado: Cham : Springer International Publishing 2016.
Edición:1st ed
Colección:Springer eBooks.
Acceso en línea:Conectar con la versión electrónica
Ver en Universidad de Navarra:https://innopac.unav.es/record=b33066024*spi
Descripción
Sumario:This book presents the state-of-the-art techniques for the modeling, simulation, testing, compilation and physical synthesis of mVLSI biochips. The authors describe a top-down modeling and synthesis methodology for the mVLSI biochips, inspired by microelectronics VLSI methodologies. They introduce a modeling framework for the components and the biochip architecture, and a high-level microfluidic protocol language. Coverage includes a topology graph-based model for the biochip architecture, and a sequencing graph to model for biochemical application, showing how the application model can be obtained from the protocol language. The techniques described facilitate programmability and automation, enabling developers in the emerging, large biochip market. · Presents the current models used for the research on compilation and synthesis techniques of mVLSI biochips in a tutorial fashion; · Includes a set of "benchmarks", that are presented in great detail and includes the source code of several of the techniques presented, including solutions to the basic compilation and synthesis problems; · Discusses several new research problems in detail, using numerous examples.
Descripción Física:XV, 270 p., 148 il., 47 il. col
Formato:Forma de acceso: World Wide Web.
ISBN:9783319295992