Athanasios T. Ramkaj Marcel J.M. Pelgrom Michiel S. J. Steyaert Filip Tavernier Ramkaj Multi-Gigahertz Nyquist Analog-to-Digital Converters

Multi-Gigahertz Nyquist Analog-to-Digital Converters

von Athanasios T. Ramkaj Marcel J.M. Pelgrom Michiel S. J. Steyaert Filip Tavernier

Architecture and Circuit Innovations in Deep-Scaled CMOS and FinFET Technologies

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Beschreibung

This book proposes innovative circuit, architecture, and system solutions in deep-scaled CMOS and FinFET technologies, which address the challenges in maximizing the accuracy*speed/power of multi-GHz sample rate and bandwidth Analog-to-Digital Converters (ADC)s. A new holistic approach is introduced that first identifies the major error sources of a converter’ building blocks, and quantitatively analyzes their impact on the overall performance, establishing the fundamental circuit-imposed accuracy – speed – power limits. The analysis extends to the architecture level, by introducing a mathematical framework to estimate and compare the accuracy – speed – power limits of several ADC architectures and variants. To gain system-level insight, time-interleaving is covered in detail, and a framework is also introduced to compare key metrics of interleaver architectures quantitatively. The impact of technology is also considered by adding process effects from several deep-scaled CMOS technologies.

The validity of the introduced analytical approach and the feasibility of the proposed concepts are demonstrated by four silicon prototype Integrated Circuits (IC)s, realized in ultra-deep-scaled CMOS and FinFET technologies.


This book proposes innovative circuit, architecture, and system solutions in deep-scaled CMOS and FinFET technologies, which address the challenges in maximizing the accuracy*speed/power of multi-GHz sample rate and bandwidth Analog-to-Digital Converters (ADC)s. A new holistic approach is introduced that first identifies the major error sources of a converter’ building blocks, and quantitatively analyzes their impact on the overall performance, establishing the fundamental circuit-imposed accuracy – speed – power limits. The analysis extends to the architecture level, by introducing a mathematical framework to estimate and compare the accuracy – speed – power limits of several ADC architectures and variants. To gain system-level insight, time-interleaving is covered in detail, and a framework is also introduced to compare key metrics of interleaver architectures quantitatively. The impact of technology is also considered by adding process effects from several deep-scaled CMOS technologies.

The validity of the introduced analytical approach and the feasibility of the proposed concepts are demonstrated by four silicon prototype Integrated Circuits (IC)s, realized in ultra-deep-scaled CMOS and FinFET technologies.


Introduces a holistic approach for the analysis and design of high-performance ADCs in deep-scaled CMOS technologies Proposes novel techniques across the entire chain to push the accuracy–speed–power envelope of multi-GHz ADCs Provides a useful reference and a valuable tool for beginners as well as experienced ADC design engineers

Autor*in

Athanasios T. Ramkaj

Themen in »Multi-Gigahertz Nyquist Analog-to-Digital Converters«

multi-GHz ADC deep-scaled CMOS ADC High-Efficiency GHz-Range ADCs Ultrahigh-Speed High-Sensitivity Dynamic Comparator High-Speed Wide-Bandwidth Single-Channel SAR ADC

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Details

ISBN: 9783031227110
Verlag: Springer International Publishing
Erscheinung: 14.01.2024

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