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Pipelined ADC Design and Enhancement Techniques

Author : Imran Ahmed
Publisher : Springer Science & Business Media
Page : 225 pages
File Size : 14,20 MB
Release : 2010-03-10
Category : Technology & Engineering
ISBN : 9048186528

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Pipelined ADCs have seen phenomenal improvements in performance over the last few years. As such, when designing a pipelined ADC a clear understanding of the design tradeoffs, and state of the art techniques is required to implement today's high performance low power ADCs.

Systematic Design for Optimisation of Pipelined ADCs

Author : João Goes
Publisher : Springer Science & Business Media
Page : 171 pages
File Size : 41,50 MB
Release : 2006-04-18
Category : Technology & Engineering
ISBN : 0306481936

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This excellent reference proposes and develops new strategies, methodologies and tools for designing low-power and low-area CMOS pipelined A/D converters. The task is tackled by following a scientifically-consistent approach. The book may also be used as a text for advanced reading on the subject.

Switched-Capacitor Techniques for High-Accuracy Filter and ADC Design

Author : Patrick J. Quinn
Publisher : Springer Science & Business Media
Page : 261 pages
File Size : 26,67 MB
Release : 2007-07-20
Category : Technology & Engineering
ISBN : 1402062583

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This book proposes alternative switched capacitor techniques which allow the achievement of higher intrinsic analogue functional accuracy than previously possible in such application areas as analogue filter and ADC design. The validity of the concepts developed and analyzed in Switched-Capacitor Techniques for High-Accuracy Filter and ADC Design has been demonstrated in practice with the design of CMOS SC bandpass filters and algorithmic ADC stages.

Reference-Free CMOS Pipeline Analog-to-Digital Converters

Author : Michael Figueiredo
Publisher : Springer Science & Business Media
Page : 189 pages
File Size : 41,40 MB
Release : 2012-08-24
Category : Technology & Engineering
ISBN : 146143467X

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This book shows that digitally assisted analog to digital converters are not the only way to cope with poor analog performance caused by technology scaling. It describes various analog design techniques that enhance the area and power efficiency without employing any type of digital calibration circuitry. These techniques consist of self-biasing for PVT enhancement, inverter-based design for improved speed/power ratio, gain-of-two obtained by voltage sum instead of charge redistribution, and current-mode reference shifting instead of voltage reference shifting. Together, these techniques allow enhancing the area and power efficiency of the main building blocks of a multiplying digital-to-analog converter (MDAC) based stage, namely, the flash quantizer, the amplifier, and the switched capacitor network of the MDAC. Complementing the theoretical analyses of the various techniques, a power efficient operational transconductance amplifier is implemented and experimentally characterized. Furthermore, a medium-low resolution reference-free high-speed time-interleaved pipeline ADC employing all mentioned design techniques and circuits is presented, implemented and experimentally characterized. This ADC is said to be reference-free because it precludes any reference voltage, therefore saving power and area, as reference circuits are not necessary. Experimental results demonstrate the potential of the techniques which enabled the implementation of area and power efficient circuits.

Low Power Design Techniques for High Speed Pipelined ADCs

Author : Naga Sasidhar Lingam
Publisher :
Page : 222 pages
File Size : 25,21 MB
Release : 2009
Category : Low voltage integrated circuits
ISBN :

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Real world is analog but the processing of signals can best be done in digital domain. So the need for Analog to Digital Converters (ADCs) is ever rising as more and more applications set in. With the advent of mobile technology, power in electronic equipment is being driven down to get more battery life. Because of their ubiquitous nature, ADCs are prime blocks in the signal chain in which power is intended to be reduced. In this thesis, four techniques to reduce power in high speed pipelined ADCs have been proposed. The first is a capacitor and opamp sharing technique that reduces the load on the first stage opamp by three fold. The second is a capacitor reset technique that aids removing the sample and hold block to reduce power. The third is a modified MDAC which can take rail-to-rail input swing to get an extra bit thus getting rid of a power hungry opamp. The fourth is a hybrid architecture which makes use of an asynchronous SAR ADC as the backend of a pipelined ADC to save power. Measurement and simulation results that prove the efficiency of the proposed techniques are presented.

High-Performance and High-Speed Pipelined ADCs

Author : Manar El-Chammas
Publisher : Springer Nature
Page : 161 pages
File Size : 37,75 MB
Release : 2023-05-19
Category : Technology & Engineering
ISBN : 3031297008

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This book discusses the theoretical foundations and design techniques needed to effectively design high-speed (multi-GS/s) and high-performance pipelined ADCs, which play a critical role in the signal chain of various systems. Readers will be walked through the design and analysis of pipelined ADCs and their topologies, and will learn both theoretical and practical design details that will enable them to explore and build these data converters. The author also presents details on various aspects of pipelined ADCs and their impact on the ADC speed and performance, with a focus on the input buffer and sampling network, the reference amplifier, comparators and their impact on ADC error rate and high-frequency performance, and mismatch estimation and correction.

Digitally Assisted Pipeline ADCs

Author : Boris Murmann
Publisher : Springer Science & Business Media
Page : 164 pages
File Size : 38,49 MB
Release : 2007-05-08
Category : Technology & Engineering
ISBN : 1402078404

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Digitally Assisted Pipeline ADCs: Theory and Implementation explores the opportunity to reduce ADC power dissipation by leveraging digital signal processing capabilities in fine line integrated circuit technology. The described digitally assisted pipelined ADC uses a statistics-based system identification technique as an enabling element to replace precision residue amplifiers with simple open-loop gain stages. The digital compensation of analog circuit distortion eliminates one key factor in the classical noise-speed-linearity constraint loop and thereby enables a significant power reduction. Digitally Assisted Pipeline ADCs: Theory and Implementation describes in detail the implementation and measurement results of a 12-bit, 75-MSample/sec proof-of-concept prototype. The Experimental converter achieves power savings greater than 60% over conventional implementations. Digitally Assisted Pipeline ADCs: Theory and Implementation will be of interest to researchers and professionals interested in advances of state-of-the-art in A/D conversion techniques.