Composite systems that integrate microelectromechanical and microelectrofluidic (MEF) components with electronics are emerging as the next generation of system-on-a-chip (SOC) designs. However, there remains a pressing need for a structured methodology for MEFS design automation, including modeling
Microelectrofluidic Systems: Modeling and Simulation
โ Scribed by Tianhao Zhang, Krishendu Chakrabarty, Richard B. Fair, Sergey Edward Lyshevsky
- Publisher
- CRC Press
- Year
- 2002
- Tongue
- English
- Leaves
- 284
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Composite systems that integrate microelectromechanical and microelectrofluidic (MEF) components with electronics are emerging as the next generation of system-on-a-chip (SOC) designs. However, there remains a pressing need for a structured methodology for MEFS design automation, including modeling techniques and simulation and optimization tools.Integrating top-down and bottom-up design philosophies, Microelectrofluidic Systems presents the first comprehensive design strategy for MEFS. This strategy supports hierarchical modeling and simulation from the component level to the system level. It leads to multi-objective optimization tools valuable in all phases of the design process, from conceptualization to final manufacturing. The authors begin by defining the basic variables and elements needed to describe MEFS behavior, then model that behavior across three layers of abstraction: the low-level component, high-level reconfigurable architecture, and bio/chemical application layers. They have developed a hierarchical integrated design environment with SystemC and present its architecture and associated functional packages.Microelectrofluidic Systems is visionary in its leverage of electronic design principles for microsystem design and heralds a new era of automated SOC design. The strategy it presents holds the potential for significant reductions in design time and life-cycle maintenance costs, and its techniques and tools for robust design and application flexibility can lead to the high-volume production needed for the inevitably growing product market.
โฆ Table of Contents
Contents......Page 8
Preface......Page 14
List of Figures......Page 16
List of Tables......Page 24
1. Introduction......Page 28
2. Hierarchical Modeling......Page 42
3. SystemC-based Hierarchical Design Environment......Page 66
4. System-level Simulation and Performance Evaluation......Page 102
5. Circuit-level Optimization......Page 136
6. Performance Evaluation......Page 210
7. Conclusion......Page 260
Appendices......Page 264
References......Page 270
Index......Page 282
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