High Performance Integrated Circuit Design
Series: ELECTRONICS;
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Product details:
- Publisher McGraw Hill
- Date of Publication 16 July 2012
- ISBN 9780071635769
- Binding Hardback
- No. of pages736 pages
- Size 236x160x45 mm
- Weight 1149 g
- Language English 0
Categories
Short description:
This in-depth guide reviews each component of mixed-signal SoC to achieve the design of high performance ICs?essential for applications such as high-speed portable computers and low-power wireless communications.
MoreLong description:
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
The latest techniques for designing robust, high performance integrated circuits in nanoscale technologies
Focusing on a new technological paradigm, this practical guide describes the interconnect-centric design methodologies that are now the major focus of nanoscale integrated circuits (ICs). High Performance IntegratedCircuit Design begins by discussing the dominant role of on-chip interconnects and provides an overview of technology scaling. The book goes on to cover data signaling, power management, synchronization, andsubstrate-aware design.
Specific design constraints and methodologies unique to each type of interconnect are addressed. This comprehensive volume also explains the design of specialized circuits such as tapered buffers and repeaters for data signaling, voltage regulators for power management, and phase-locked loops for synchronization. This is an invaluable resource for students, researchers, and engineers working in the area of high performance ICs.
Coverage includes:
- Technology scaling
- Interconnect modeling and extraction
- Signal propagation and delay analysis
- Interconnect coupling noise
- Global signaling
- Power generation
- Power distribution networks
- CAD of power networks
- Techniques to reduce power supply noise
- Power dissipation
- Synchronization theory and tradeoffs
- Synchronous system characteristics
- On-chip clock generation and distribution
- Substrate noise in mixed-signal ICs
- Techniques to reduce substrate noise
Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
The latest techniques for designing robust, high performance integrated circuits in nanoscale technologies
Focusing on a new technological paradigm, this practical guide describes the interconnect-centric design methodologies that are now the major focus of nanoscale integrated circuits (ICs). High Performance IntegratedCircuit Design begins by discussing the dominant role of on-chip interconnects and provides an overview of technology scaling. The book goes on to cover data signaling, power management, synchronization, andsubstrate-aware design.
Specific design constraints and methodologies unique to each type of interconnect are addressed. This comprehensive volume also explains the design of specialized circuits such as tapered buffers and repeaters for data signaling, voltage regulators for power management, and phase-locked loops for synchronization. This is an invaluable resource for students, researchers, and engineers working in the area of high performance ICs.
Coverage includes:
- Technology scaling
- Interconnect modeling and extraction
- Signal propagation and delay analysis
- Interconnect coupling noise
- Global signaling
- Power generation
- Power distribution networks
- CAD of power networks
- Techniques to reduce power supply noise
- Power dissipation
- Synchronization theory and tradeoffs
- Synchronous system characteristics
- On-chip clock generation and distribution
- Substrate noise in mixed-signal ICs
- Techniques to reduce substrate noise
Table of Contents:
This in-depth guide reviews each component of mixed-signal SoC to achieve the design of high performance ICs?essential for applications such as high-speed portable computers and low-power wireless communications.
More