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Low-Power VLSI and Mixed-Signal Circuit Design MTA
Techniques for energy-efficient integrated circuits, layout, and noise management for modern chips

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About this book:
Low-Power VLSI and Mixed-Signal Circuit Design

In the rapidly evolving world of integrated circuits, "Low-Power VLSI and Mixed-Signal Circuit Design" stands as an essential guide for engineers and students confronting the critical challenges of energy efficiency in modern chips. This comprehensive book delves into the fundamental sources of power dissipation in CMOS circuits—dynamic and static—and systematically explores a vast array of cutting-edge techniques for their reduction. Readers will gain a deep understanding of concepts like Dynamic Voltage and Frequency Scaling (DVFS), clock gating, multi-threshold CMOS (MTCMOS), and power gating, along with advanced methods like adaptive body biasing and near-threshold computing, equipping them to balance the delicate trade-offs between power, performance, and area from architectural planning to detailed physical layout.

Beyond purely digital domains, the book provides an invaluable exploration of mixed-signal circuit design, a critical aspect of modern System-on-Chip (SoC) integration. It illuminates the unique challenges of noise management, signal integrity, and power delivery when sensitive analog components coexist with noisy digital logic. Detailed chapters cover low-power analog circuit techniques, the revolutionary paradigm of digital-assisted analog design, and specialized approaches for energy-efficient data converters (ADCs and DACs) and clock generation. Crucial mixed-signal layout strategies, including partitioning, grounding, and shielding, are meticulously explained to combat noise coupling effectively. Featuring case studies from mobile and IoT silicon and insights into future trends like AI/ML at the edge and heterogeneous integration, this book bridges theory and practice, preparing designers to innovate in a power-conscious technological landscape.

What You'll Find Inside:
  • Master the foundational principles and advanced techniques for minimizing power dissipation in CMOS circuits, covering both dynamic and static power reduction.
  • Learn effective strategies like Dynamic Voltage and Frequency Scaling (DVFS), clock gating, power gating, and Multi-Threshold CMOS (MTCMOS) for optimizing energy efficiency in digital designs.
  • Understand the unique challenges of mixed-signal circuit design, including noise sources, coupling mechanisms, and sophisticated layout strategies for signal integrity and isolation.
  • Explore specialized techniques for ultra-low-power design in mobile and IoT devices, encompassing near-threshold computing, energy-harvesting integration, and optimized memory architectures.
  • Discover the transformative role of digital-assisted analog methods for calibration, compensation, and performance enhancement in analog circuits, enabling higher precision at lower power.
Who's It For:

This book is essential for electrical engineering students, practicing VLSI and mixed-signal circuit designers, and technology professionals involved in developing energy-efficient integrated circuits. It is particularly valuable for those working on mobile devices, IoT applications, and high-performance systems where power consumption, signal integrity, and robust mixed-signal integration are critical design constraints.

Table of Contents:
  • Introduction
  • Chapter 1 Fundamentals of Low-Power VLSI Design
  • Chapter 2 Sources of Power Dissipation in CMOS Circuits
  • Chapter 3 Design Metrics and Trade-offs for Energy Efficiency
  • Chapter 4 Dynamic Power Reduction Techniques
  • Chapter 5 Static Power Reduction Techniques
  • Chapter 6 Supply Voltage Scaling and Adaptive Methods
  • Chapter 7 Clock Gating Concepts and Implementation
  • Chapter 8 Multi-Threshold CMOS (MTCMOS) and Body Biasing
  • Chapter 9 Power Gating and Domain Management
  • Chapter 10 Reducing Switching Activity and Capacitance
  • Chapter 11 Low-Power System and Architecture-Level Techniques
  • Chapter 12 Energy-Efficient Memory and Storage Design
  • Chapter 13 Ultra-Low-Power Design for IoT and Mobile Devices
  • Chapter 14 Fundamentals of Mixed-Signal Circuit Design
  • Chapter 15 Analog Circuit Techniques for Power Reduction
  • Chapter 16 Digital-Assisted Analog Design Methods
  • Chapter 17 Data Conversion Circuits: Low-Power ADCs and DACs
  • Chapter 18 Low-Power Oscillators and Clock Generation
  • Chapter 19 Mixed-Signal Layout Strategies for Signal Integrity
  • Chapter 20 Noise Sources and Coupling in Mixed-Signal ICs
  • Chapter 21 Noise Isolation and Shielding Techniques
  • Chapter 22 Power Delivery Design for Mixed-Signal Systems
  • Chapter 23 Measurement and Characterization of Low-Power Circuits
  • Chapter 24 Case Studies in Mobile and IoT Silicon
  • Chapter 25 Future Trends in Low-Power and Mixed-Signal VLSI
Author:

Laura Ellis

Published By:

MixCache.com


Date Published:

December 9, 2025

Type:

Nonfiction

Language:

English

Word Count:

47,334 words

Reading Time:

3 hours 19 minutes

Sample:

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