
Digital Integrated Circuits
A Design Perspective
Jan M. Rabaey, Anantha Chandrakasan, Borivoje Nikolic
Résumé
Since the publication of the first edition of this hook in 1996. CMOS manufacturing technology has continued its breathtaking pace, scaling to ever-smaller dimensions. Minimum feature sizes are now reaching the 100-nm realm. Circuits are becoming more complex, challenging the productivity of the designer, while the plunge into the deep-submicron space causes devices to behave differently and brings to the forefront a number of new issues that impact the reliability, cost, performance, power dissipation, and reliability of the digital 1C. This updated text reflects the ongoing (r)evolution in the world of digital integrated circuit design, caused by this move into the deep-submicron realm. This means increased importance of deep-submicron transistor effects, interconnect, signal integrity, high-performance and low-power design, liming, and clock distribution. In contrast to the first edition, the present text focuses entirely on CMOS ICs.
Even more than for the first edition, this book uses its companion website to evolve and grow over time. Its contains complete Microsoft PowerPoint Presentations covering all the material, updates, corrections, design projects, and extensive instructor material. Most importantly, all problem sets are now available on the website (and have been removed from the text).
Outstanding Features of the Text- It focuses solely on deep-submicron CMOS devices, the workhorses of today's digital integrated circuits. A simple transistor model for manual analysis, called the unified MOS model, has been developed and is used throughout.
- Design Examples stress the design of Digital ICs from a real-world perspective. Design challenges and guidelines are highlighted. 0.25-micron CMOS technology is used for all the examples and problems.
- Design Methodology inserts are interspersed throughout the text, highlighting the importance of methodology and tools in today's design process.
- A Perspective section at the end of each chapter gives an insight into future evolutions.
Contents
The Fabrics- Introduction
- The Manufacturing Process
- Design Methodology Insert A - IC Layout
- The Devices
- Design Methodology Insert B - Circuit Simulation
- The Wire
- The CMOS Inverter
- Designing Combinational Logic Gates in CMOS
- Design Methodology Insert C - How to Simulate Complex
- Design Methodology Insert D - Layout Techniques for Complex Gates
- Designing Sequential Logic Circuits
- Implementation Strategies for Digital ICS
- Design Methodology Insert E - Characterizing Logic and Sequential Cells
- Design Methodology Insert F - Design Synthesis
- Coping with Interconnect
- Timing Issue in Digital Circuits
- Design Methodology Insert G - Design Verification
- Designing Arithmetic Building Blocks
- Designing Memory and Array Structures
- Design Methodology Insert H - Validation and Test of Manufactured Circuits
L'auteur - Anantha Chandrakasan
Anantha Chandrakasan is an assistant professor in the Electrical Engineering and Computer Science Department at Massachusetts Institute of Technology. From 1994 through 1997, he held the Analog Devices Career Development Chair, and has received several awards including the NSF Career Development Award in 1995, the IBM Faculty Development Award in 1995, and the National Semiconductor Faculty Development Award in 1996.
Caractéristiques techniques
PAPIER | |
Éditeur(s) | Prentice Hall |
Auteur(s) | Jan M. Rabaey, Anantha Chandrakasan, Borivoje Nikolic |
Parution | 28/01/2003 |
Édition | 2eme édition |
Nb. de pages | 784 |
Format | 17,7 x 23,4 |
Couverture | Broché |
Poids | 1102g |
Intérieur | Noir et Blanc |
EAN13 | 9780131207646 |
ISBN13 | 978-0-13-120764-6 |
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