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Flip-Flop Design in Nanometer CMOS - From High Speed to Low Energy (Hardcover, 2015 ed.): Massimo Alioto, Elio Consoli, Gaetano... Flip-Flop Design in Nanometer CMOS - From High Speed to Low Energy (Hardcover, 2015 ed.)
Massimo Alioto, Elio Consoli, Gaetano Palumbo
R4,219 R3,625 Discovery Miles 36 250 Save R594 (14%) Ships in 12 - 19 working days

This book provides a unified treatment of Flip-Flop design and selection in nanometer CMOS VLSI systems. The design aspects related to the energy-delay tradeoff in Flip-Flops are discussed, including their energy-optimal selection according to the targeted application, and the detailed circuit design in nanometer CMOS VLSI systems. Design strategies are derived in a coherent framework that includes explicitly nanometer effects, including leakage, layout parasitics and process/voltage/temperature variations, as main advances over the existing body of work in the field. The related design tradeoffs are explored in a wide range of applications and the related energy-performance targets. A wide range of existing and recently proposed Flip-Flop topologies are discussed. Theoretical foundations are provided to set the stage for the derivation of design guidelines, and emphasis is given on practical aspects and consequences of the presented results. Analytical models and derivations are introduced when needed to gain an insight into the inter-dependence of design parameters under practical constraints. This book serves as a valuable reference for practicing engineers working in the VLSI design area, and as text book for senior undergraduate, graduate and postgraduate students (already familiar with digital circuits and timing).


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Model and Design of Bipolar and MOS Current-Mode Logic - CML, ECL and SCL Digital Circuits (Hardcover, 2005 ed.): Massimo... Model and Design of Bipolar and MOS Current-Mode Logic - CML, ECL and SCL Digital Circuits (Hardcover, 2005 ed.)
Massimo Alioto, Gaetano Palumbo
R4,542 Discovery Miles 45 420 Ships in 10 - 15 working days

The main focus of this book is to provide the reader with a deep understanding of modeling and design strategies of Current-Mode digital circuits, as well as to organize in a coherent manner all the original and powerful authorsa (TM) results in the domain of Current-Mode digital circuits.

Model and Design of Bipolar and MOS Current-Mode Logic includes bipolar Current-Mode digital circuits, which emerged as an approach to realize digital circuits with the highest speed, and CMOS Current-Mode digital circuits, which together with its speed performance has been rediscovered to allow logic gates implementations having the feature of low noise level generation.

Model and Design of Bipolar and MOS Current-Mode Logic allows the reader not only to understand the operating principle and the features of bipolar and MOS Current-Mode digital circuits, but also to design optimized digital gates. And, although the material is presented in a formal and theoretical manner, much emphasis is devoted to a design perspective. Moreover, to further link the booka (TM)s theoretical aspects with practical issues, and to provide the reader with an idea of the real order of magnitude involved assuming actual technologies, numerical examples together with SPICE simulations are included in the book.

Model and Design of Bipolar and MOS Current-Mode Logic can be used as a reference to practicing engineers working in this area and as text book to senior undergraduate, graduate and postgraduate students (already familiar with electronic circuits and logic gates) who want to extend their knowledge and cover all aspects of the analysis and design of Current-Mode digital circuits.

CMOS Current Amplifiers (Hardcover, 1999 ed.): Giuseppe Palmisano, Gaetano Palumbo, Salvatore Pennisi CMOS Current Amplifiers (Hardcover, 1999 ed.)
Giuseppe Palmisano, Gaetano Palumbo, Salvatore Pennisi
R4,446 Discovery Miles 44 460 Ships in 10 - 15 working days

CMOS Current Amplifiers presents design strategies for high performance current amplifiers based on CMOS technology. After an introduction to various architectures of operational amplifiers, the operating principles of the current amplifier are outlined. This book provides the reader with simple and compact design equations for use in a pencil and paper design and the following simulation step. Chapter 1 introduces the general aspects of current amplifiers. After a preliminary classification of operational amplifiers, ideal blocks and models are discussed for different architectures and a first high-level comparison is made between traditional amplifiers and current amplifiers. Analysis and examples of basic circuits, as well as signal processing applications involving current amplifiers, are also given. Non-idealities and second- order effects causing limitations in performance are then discussed and evaluated. Chapter 2 focuses on low-drive current amplifiers. Several design examples for current conveyors and class A current amplifiers are discussed in detail and design equations are presented for the main performance parameters, which allows a good trade-off between requirements. High-performance solutions for high bandwidth and low voltage capability are also considered, and, finally, current comparators with progressively enhanced performance are reported and analyzed critically. Chapter 3 deals with current amplifiers for off-chip loads. Several class AB current-mode output stages are discussed and design strategies which improve performance are presented. A detailed analysis of non-ideal effect is carried out with particular emphasis on linearity. Design examples are given and circuit arrangements for further developments are included. CMOS Current Amplifiers serves as an excellent reference for researchers and professionals of analog IC design, and may also be used as an advanced text on current amplifiers.

Feedback Amplifiers - Theory and Design (Hardcover, 2002 ed.): Gaetano Palumbo, Salvatore Pennisi Feedback Amplifiers - Theory and Design (Hardcover, 2002 ed.)
Gaetano Palumbo, Salvatore Pennisi
R4,376 Discovery Miles 43 760 Ships in 10 - 15 working days

This comprehensive book deals with feedback and feedback amplifiers, presenting original material on the topic of feedback circuits. After describing the fundamental properties of feedback, the book illustrates techniques of analysis for greater insight into feedback amplifiers and design strategies to optimise their performance.

Flip-Flop Design in Nanometer CMOS - From High Speed to Low Energy (Paperback, Softcover reprint of the original 1st ed. 2015):... Flip-Flop Design in Nanometer CMOS - From High Speed to Low Energy (Paperback, Softcover reprint of the original 1st ed. 2015)
Massimo Alioto, Elio Consoli, Gaetano Palumbo
R3,614 Discovery Miles 36 140 Ships in 10 - 15 working days

This book provides a unified treatment of Flip-Flop design and selection in nanometer CMOS VLSI systems. The design aspects related to the energy-delay tradeoff in Flip-Flops are discussed, including their energy-optimal selection according to the targeted application, and the detailed circuit design in nanometer CMOS VLSI systems. Design strategies are derived in a coherent framework that includes explicitly nanometer effects, including leakage, layout parasitics and process/voltage/temperature variations, as main advances over the existing body of work in the field. The related design tradeoffs are explored in a wide range of applications and the related energy-performance targets. A wide range of existing and recently proposed Flip-Flop topologies are discussed. Theoretical foundations are provided to set the stage for the derivation of design guidelines, and emphasis is given on practical aspects and consequences of the presented results. Analytical models and derivations are introduced when needed to gain an insight into the inter-dependence of design parameters under practical constraints. This book serves as a valuable reference for practicing engineers working in the VLSI design area, and as text book for senior undergraduate, graduate and postgraduate students (already familiar with digital circuits and timing).

CMOS Current Amplifiers (Paperback, Softcover reprint of the original 1st ed. 1999): Giuseppe Palmisano, Gaetano Palumbo,... CMOS Current Amplifiers (Paperback, Softcover reprint of the original 1st ed. 1999)
Giuseppe Palmisano, Gaetano Palumbo, Salvatore Pennisi
R4,314 Discovery Miles 43 140 Ships in 10 - 15 working days

CMOS Current Amplifiers presents design strategies for high performance current amplifiers based on CMOS technology. After an introduction to various architectures of operational amplifiers, the operating principles of the current amplifier are outlined. This book provides the reader with simple and compact design equations for use in a pencil and paper design and the following simulation step. Chapter 1 introduces the general aspects of current amplifiers. After a preliminary classification of operational amplifiers, ideal blocks and models are discussed for different architectures and a first high-level comparison is made between traditional amplifiers and current amplifiers. Analysis and examples of basic circuits, as well as signal processing applications involving current amplifiers, are also given. Non-idealities and second- order effects causing limitations in performance are then discussed and evaluated. Chapter 2 focuses on low-drive current amplifiers. Several design examples for current conveyors and class A current amplifiers are discussed in detail and design equations are presented for the main performance parameters, which allows a good trade-off between requirements. High-performance solutions for high bandwidth and low voltage capability are also considered, and, finally, current comparators with progressively enhanced performance are reported and analyzed critically. Chapter 3 deals with current amplifiers for off-chip loads. Several class AB current-mode output stages are discussed and design strategies which improve performance are presented. A detailed analysis of non-ideal effect is carried out with particular emphasis on linearity. Design examples are given and circuit arrangements for further developments are included. CMOS Current Amplifiers serves as an excellent reference for researchers and professionals of analog IC design, and may also be used as an advanced text on current amplifiers.

Feedback Amplifiers - Theory and Design (Paperback, Softcover reprint of the original 1st ed. 2002): Gaetano Palumbo, Salvatore... Feedback Amplifiers - Theory and Design (Paperback, Softcover reprint of the original 1st ed. 2002)
Gaetano Palumbo, Salvatore Pennisi
R4,345 Discovery Miles 43 450 Ships in 10 - 15 working days

This comprehensive book deals with feedback and feedback amplifiers, presenting original material on the topic of feedback circuits. After describing the fundamental properties of feedback, the book illustrates techniques of analysis for greater insight into feedback amplifiers and design strategies to optimise their performance.

Model and Design of Bipolar and MOS Current-Mode Logic - CML, ECL and SCL Digital Circuits (Paperback, Softcover reprint of... Model and Design of Bipolar and MOS Current-Mode Logic - CML, ECL and SCL Digital Circuits (Paperback, Softcover reprint of hardcover 1st ed. 2005)
Massimo Alioto, Gaetano Palumbo
R4,365 Discovery Miles 43 650 Ships in 10 - 15 working days

Current-Mode digital circuits have been extensively analyzed and used since the early days of digital ICs. In particular, bipolar Current-Mode digital circuits emerged as an approach to realize digital circuits with the highest speed. Together with its speed performance, CMOS Current-Mode logic has been rediscovered to allow logic gates implementations which, in contrast to classical VLSI CMOS digital circuits, have the feature of low noise level generation. Thus, CMOS Current-Mode gates can be efficiently used inside analog and mixed-signal ICs, which require a low noise silicon environment. For these reasons, until today, many works and results have been published which reinforce the importance of Current-Mode digital circuits. In the topic of Current-Mode digital circuits, the authors spent a lot of effort in the last six years, and their original results highly enhanced both the modeling and the related design methodologies. Since the fundamental Current-Mode logic building block is the classical differential amplifier, the winning idea, that represents the starting point of the authors' research, was to change the classical point of view typically followed in the investigation and design of Current-Mode digital circuits. In particular, they properly exploited classical paradigms developed and used in the analog circuit domain (a topic in which one of the authors maturated a great experience).

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