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Electronic Logic Circuits

Multiplier-Cum-Divider Circuits Principles Design and Applications

VLSI Circuits and Embedded Systems

VLSI Circuits and Embedded Systems

Very Large-Scale Integration (VLSI) creates an integrated circuit (IC) by combining thousands of transistors into a single chip. While designing a circuit reduction of power consumption is a great challenge. VLSI designs reduce the size of circuits which eventually reduces the power consumption of the devices. However it increases the complexity of the digital system. Therefore computer-aided design tools are introduced into hardware design processes. Unlike the general-purpose computer an embedded system is engineered to manage a wide range of processing tasks. Single or multiple processing cores manage embedded systems in the form of microcontrollers digital signal processors field-programmable gate arrays and application-specific integrated circuits. Security threats have become a significant issue since most embedded systems lack security even more than personal computers. Many embedded systems hacking tools are readily available on the internet. Hacking in the PDAs and modems is a pervasive example of embedded systems hacking. This book explores the designs of VLSI circuits and embedded systems. These two vast topics are divided into four parts. In the book's first part the Decision Diagrams (DD) have been covered. DDs have extensively used Computer-Aided Design (CAD) software to synthesize circuits and formal verification. The book's second part mainly covers the design architectures of Multiple-Valued Logic (MVL) Circuits. MVL circuits offer several potential opportunities to improve present VLSI circuit designs. The book's third part deals with Programmable Logic Devices (PLD). PLDs can be programmed to incorporate a complex logic function within a single IC for VLSI circuits and Embedded Systems. The fourth part of the book concentrates on the design architectures of Complex Digital Circuits of Embedded Systems. As a whole from this book core researchers academicians and students will get the complete picture of VLSI Circuits and Embedded Systems and their applications.

GBP 99.99
1

Power Converter Circuits

Design of Function Circuits with 555 Timer Integrated Circuit

Design of Function Circuits with 555 Timer Integrated Circuit

This text discusses sigma- delta- type function circuits peak detecting function circuits and peak sampling function circuits in a detailed manner. It further covers all the function circuits designed by using the basic principles of the six building blocks: integrator the 555 timer integrated circuit switch low pass fi lter peak detector and sample and hold circuit. It is a useful reference text for senior undergraduate and graduate students in the fi elds of electrical engineering and electronics and communication engineering. This book is accompanied by teaching resources including a solution manual for the instructors. • Discusses function circuits such as multipliers dividers and multiplier cum dividers using the 555 timer. • Explains how function circuits are developed with a simple integrator and the 555 timer. • Extends the applications of 555 timers to perform in function circuits. • Covers important topics such as monostable multivibrator inverting amplifi er and peak responding divider. • Presents function circuit conversion such as multiplier to square root and divider to a multiplier. This comprehensive book covers the design of function circuits with the help of 555 timer integrated circuits in a single volume. It further discusses how derived function circuits are implemented with integrator comparator low pass fi lter peak detector and sample and hold circuits. | Design of Function Circuits with 555 Timer Integrated Circuit

GBP 120.00
1

Mixed-Signal Circuits

Mixed-Signal Circuits

Mixed-Signal Circuits offers a thoroughly modern treatment of integrated circuit design in the context of mixed-signal applications. Featuring chapters authored by leading experts from industry and academia this book:Discusses signal integrity and large-scale simulation verification and testingDemonstrates advanced design techniques that enable digital circuits and sensitive analog circuits to coexist without any compromiseDescribes the process technology needed to address the performance challenges associated with developing complex mixed-signal circuitsDeals with modeling topics such as reliability variability and crosstalk that define pre-silicon design methodology and trends and are the focus of companies involved in wireless applicationsDevelops methods to move analog into the digital domain quickly minimizing and eliminating common trade-offs between performance power consumption simulation time verification size and costDetails approaches for very low-power performances high-speed interfaces phase-locked loops (PLLs) voltage-controlled oscillators (VCOs) analog-to-digital converters (ADCs) and biomedical filtersDelineates the respective parts of a full system-on-chip (SoC) from the digital parts to the baseband blocks radio frequency (RF) circuitries electrostatic-discharge (ESD) structures and built-in self-test (BIST) architecturesMixed-Signal Circuits explores exciting opportunities in wireless communications and beyond. The book is a must for anyone involved in mixed-signal circuit design for future technologies.

GBP 59.99
1

Analog Function Circuits Fundamentals Principles Design and Applications

CMOS Analog Integrated Circuits High-Speed and Power-Efficient Design

CMOS Analog Integrated Circuits High-Speed and Power-Efficient Design

High-speed power-efficient analog integrated circuits can be used as standalone devices or to interface modern digital signal processors and micro-controllers in various applications including multimedia communication instrumentation and control systems. New architectures and low device geometry of complementary metaloxidesemiconductor (CMOS) technologies have accelerated the movement toward system on a chip design which merges analog circuits with digital and radio-frequency components. CMOS: Analog Integrated Circuits: High-Speed and Power-Efficient Design describes the important trends in designing these analog circuits and provides a complete in-depth examination of design techniques and circuit architectures emphasizing practical aspects of integrated circuit implementation. Focusing on designing and verifying analog integrated circuits the author reviews design techniques for more complex components such as amplifiers comparators and multipliers. The book details all aspects from specification to the final chip of the development and implementation process of filters analog-to-digital converters (ADCs) digital-to-analog converters (DACs) phase-locked loops (PLLs) and delay-locked loops (DLLs). It also describes different equivalent transistor models design and fabrication considerations for high-density integrated circuits in deep-submicrometer process circuit structures for the design of current mirrors and voltage references topologies of suitable amplifiers continuous-time and switched-capacitor circuits modulator architectures and approaches to improve linearity of Nyquist converters. The text addresses the architectures and performance limitation issues affecting circuit operation and provides conceptual and practical solutions to problems that can arise in the design process. This reference provides balanced coverage of theoretical and practical issues that will allow the reader to design CMOS analog integrated circuits with improved electrical performance. The chapters contain easy-to-follow mathematical derivations of all equations and formulas graphical plots and open-ended design problems to help determine most suitable architecture for a given set of performance specifications. This comprehensive and illustrative text for the design and analysis of CMOS analog integrated circuits serves as a valuable resource for analog circuit designers and graduate students in electrical engineering. | CMOS Analog Integrated Circuits High-Speed and Power-Efficient Design

GBP 77.99
1

Systems Medicine Physiological Circuits and the Dynamics of Disease

Power Management Integrated Circuits

Electronic Circuits Fundamentals and Applications

Electronic Circuits Fundamentals and Applications

Electronics explained in one volume using both theoretical and practical applications. Mike Tooley provides all the information required to get to grips with the fundamentals of electronics detailing the underpinning knowledge necessary to appreciate the operation of a wide range of electronic circuits including amplifiers logic circuits power supplies and oscillators. The 5th edition includes an additional chapter showing how a wide range of useful electronic applications can be developed in conjunction with the increasingly popular Arduino microcontroller as well as a new section on batteries for use in electronic equipment and some additional/updated student assignments. The book's content is matched to the latest pre-degree level courses (from Level 2 up to and including Foundation Degree and HND) making this an invaluable reference text for all study levels and its broad coverage is combined with practical case studies based in real-world engineering contexts. In addition each chapter includes a practical investigation designed to reinforce learning and provide a basis for further practical work. A companion website at http://www. key2electronics. com offers the reader a set of spreadsheet design tools that can be used to simplify circuit calculations as well as circuit models and templates that will enable virtual simulation of circuits in the book. These are accompanied by online self-test multiple choice questions for each chapter with automatic marking to enable students to continually monitor their own progress and understanding. A bank of online questions for lecturers to set as assignments is also available. | Electronic Circuits Fundamentals and Applications

GBP 39.99
1

Learn Audio Electronics with Arduino Practical Audio Circuits with Arduino Control

Learn Audio Electronics with Arduino Practical Audio Circuits with Arduino Control

Learn Audio Electronics with Arduino: Practical Audio Circuits with Arduino Control teaches the reader how to use Arduino to control analogue audio circuits and introduces electronic circuit theory through a series of practical projects including a MIDI drum controller and an Arduino-controlled two-band audio equalizer amplifier. Learn Audio Electronics with Arduino provides all the theoretical knowledge needed to design analyse and build audio circuits for amplification and filtering with additional topics like C programming being introduced in a practical context for Arduino control. The reader will learn how these circuits work and also how to build them allowing them to progress to more advanced audio circuits in the future. Beginning with electrical fundamentals and control systems DC circuit theory is then combined with an introduction to C programming to build Arduino-based systems for audio (tone sequencer) and MIDI (drum controller) output. The second half of the book begins with AC circuit theory to allow analogue audio circuits for amplification and filtering to be analysed simulated and built. These circuits are then combined with Arduino control in the final project – an Arduino-controlled two-band equalizer amplifier. Building on high-school physics and mathematics in an accessible way Learn Audio Electronics with Arduino is suitable for readers of all levels. An ideal tool for those studying audio electronics including as a component within other fields of study such as computer science human-computer interaction acoustics music technology and electronics engineering. | Learn Audio Electronics with Arduino Practical Audio Circuits with Arduino Control

GBP 44.99
1

CMOS Analog Integrated Circuits High-Speed and Power-Efficient Design Second Edition

Thermal-Aware Testing of Digital VLSI Circuits and Systems

Circuits and Electronics Hands-on Learning with Analog Discovery

Semiconductor Memory Devices and Circuits

Electronic Design Automation for Integrated Circuits Handbook Second Edition - Two Volume Set

Low Power Designs in Nanodevices and Circuits for Emerging Applications

Low Power Designs in Nanodevices and Circuits for Emerging Applications

This reference textbook discusses low power designs for emerging applications. This book focuses on the research challenges associated with theory design and applications towards emerging Microelectronics and VLSI device design and developments about low power consumptions. The advancements in large-scale integration technologies are principally responsible for the growth of the electronics industry. This book is focused on senior undergraduates graduate students and professionals in the field of electrical and electronics engineering nanotechnology. This book: Discusses various low power techniques and applications for designing efficient circuits Covers advance nanodevices such as FinFETs TFETs CNTFETs Covers various emerging areas like Quantum-Dot Cellular Automata Circuits and FPGAs and sensors Discusses applications like memory design for low power applications using nanodevices The number of options for ICs in control applications telecommunications high-performance computing and consumer electronics continues to grow with the emergence of VLSI designs. Nanodevices have revolutionized the electronics market and human life; it has impacted individual life to make it more convenient. They are ruling every sector such as electronics energy biomedicine food environment and communication. This book discusses various emerging low power applications using CMOS and other emerging nanodevices. | Low Power Designs in Nanodevices and Circuits for Emerging Applications

GBP 140.00
1

The Shared Space The Two Circuits of the Urban Economy in Underdeveloped Countries

Opto-VLSI Devices and Circuits for Biomedical and Healthcare Applications

Opto-VLSI Devices and Circuits for Biomedical and Healthcare Applications

The text comprehensively discusses the latest Opto-VLSI devices and circuits useful for healthcare and biomedical applications. It further emphasizes the importance of smart technologies such as artificial intelligence machine learning and the internet of things for the biomedical and healthcare industries. Discusses advanced concepts in the field of electro-optics devices for medical applications. Presents optimization techniques including logical effort particle swarm optimization and genetic algorithm to design Opto-VLSI devices and circuits. Showcases the concepts of artificial intelligence and machine learning for smart medical devices and data auto-collection for distance treatment. Covers advanced Opto-VLSI devices including a field-effect transistor and optical sensors spintronic and photonic devices. Highlights application of flexible electronics in health monitoring and artificial intelligence integration for better medical devices. The text presents the advances in the fields of optics and VLSI and their applicability in diverse areas including biomedical engineering and the healthcare sector. It covers important topics such as FET biosensors optical biosensors and advanced optical materials. It further showcases the significance of smart technologies such as artificial intelligence machine learning and the internet of things for the biomedical and healthcare industries. It will serve as an ideal design book for senior undergraduate graduate students and academic researchers in the fields including electrical engineering electronics and communication engineering computer engineering and biomedical engineering. | Opto-VLSI Devices and Circuits for Biomedical and Healthcare Applications

GBP 110.00
1

FinFET Devices for VLSI Circuits and Systems

Fluid Power Circuits and Controls Fundamentals and Applications Second Edition

Testing for Small-Delay Defects in Nanoscale CMOS Integrated Circuits

Testing for Small-Delay Defects in Nanoscale CMOS Integrated Circuits

Advances in design methods and process technologies have resulted in a continuous increase in the complexity of integrated circuits (ICs). However the increased complexity and nanometer-size features of modern ICs make them susceptible to manufacturing defects as well as performance and quality issues. Testing for Small-Delay Defects in Nanoscale CMOS Integrated Circuits covers common problems in areas such as process variations power supply noise crosstalk resistive opens/bridges and design-for-manufacturing (DfM)-related rule violations. The book also addresses testing for small-delay defects (SDDs) which can cause immediate timing failures on both critical and non-critical paths in the circuit. Overviews semiconductor industry test challenges and the need for SDD testing including basic concepts and introductory material Describes algorithmic solutions incorporated in commercial tools from Mentor Graphics Reviews SDD testing based on alternative methods that explores new metrics top-off ATPG and circuit topology-based solutions Highlights the advantages and disadvantages of a diverse set of metrics and identifies scope for improvement Written from the triple viewpoint of university researchers EDA tool developers and chip designers and tool users this book is the first of its kind to address all aspects of SDD testing from such a diverse perspective. The book is designed as a one-stop reference for current industrial practices research challenges in the domain of SDD testing and recent developments in SDD solutions.

GBP 74.99
1

Fundamentals of Systems Biology From Synthetic Circuits to Whole-cell Models

Fundamentals of Systems Biology From Synthetic Circuits to Whole-cell Models

For decades biology has focused on decoding cellular processes one gene at a time but many of the most pressing biological questions as well as diseases such as cancer and heart disease are related to complex systems involving the interaction of hundreds or even thousands of gene products and other factors. How do we begin to understand this complexity? Fundamentals of Systems Biology: From Synthetic Circuits to Whole-cell Models introduces students to methods they can use to tackle complex systems head-on carefully walking them through studies that comprise the foundation and frontier of systems biology. The first section of the book focuses on bringing students quickly up to speed with a variety of modeling methods in the context of a synthetic biological circuit. This innovative approach builds intuition about the strengths and weaknesses of each method and becomes critical in the book‘s second half where much more complicated network models are addressed including transcriptional signaling metabolic and even integrated multi-network models. The approach makes the work much more accessible to novices (undergraduates medical students and biologists new to mathematical modeling) while still having much to offer experienced modelers-whether their interests are microbes organs whole organisms diseases synthetic biology or just about any field that investigates living systems. | Fundamentals of Systems Biology From Synthetic Circuits to Whole-cell Models

GBP 180.00
1