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Power Converter Circuits

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

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

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

Circuits and Electronics Hands-on Learning with Analog Discovery

Cooper EOLM-3 End of Line Module Bi-Wire Circuits Box of 8

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

Short-Circuits in AC and DC Systems ANSI IEEE and IEC Standards

An Introduction to Systems Biology Design Principles of Biological Circuits

An Introduction to Systems Biology Design Principles of Biological Circuits

Praise for the first edition: … superb beautifully written and organized work that takes an engineering approach to systems biology. Alon provides nicely written appendices to explain the basic mathematical and biological concepts clearly and succinctly without interfering with the main text. He starts with a mathematical description of transcriptional activation and then describes some basic transcription-network motifs (patterns) that can be combined to form larger networks. – Nature [This text deserves] serious attention from any quantitative scientist who hopes to learn about modern biology … It assumes no prior knowledge of or even interest in biology … One final aspect that must be mentioned is the wonderful set of exercises that accompany each chapter. … Alon’s book should become a standard part of the training of graduate students. – Physics Today Written for students and researchers the second edition of this best-selling textbook continues to offer a clear presentation of design principles that govern the structure and behavior of biological systems. It highlights simple recurring circuit elements that make up the regulation of cells and tissues. Rigorously classroom-tested this edition includes new chapters on exciting advances made in the last decade. Features: Includes seven new chapters The new edition has 189 exercises the previous edition had 66 Offers new examples relevant to human physiology and disease The book website including course videos can be found here: https://www. weizmann. ac. il/mcb/UriAlon/introduction-systems-biology-design-principles-biological-circuits. | An Introduction to Systems Biology Design Principles of Biological Circuits

GBP 56.99
1

Fireclass 517.001.301FC MTL7728 Zener Safety Barrier for Conventional Detection Circuits

Fireclass 517.001.301FC MTL7728 Zener Safety Barrier for Conventional Detection Circuits

Fireclass 517.001.301FC MTL7728 Zener Safety Barrier for Conventional Detection CircuitsThe MTL7728 is an intrinsically safe zone-powered Zener-diode barrier for use in conventional fire detection systems for protection within hazardous areas.Each Zone contains two stages of pulse-tested Zener or forward- connected diodes and an infallible terminating resistor. In the event of an electrical fault in the safe area the diodes limit the voltage that can reach the hazardous area and the resistor limits the current. A fuse protects the diodes and the two stages of voltage limitation ensure continued safety if either stage should fail. No active output-current limiting circuits are employed.Model MTL7728 is certified ia for all zones and IIC for all explosive atmospheres.The MTL7700 Series intrinsically safe shunt-diode safety barriers are innovative devices designed to provide exceptionally high packing densities straightforward installation and simplified connection commissioning and maintenance facilities. The MTL7700 Series include secondary replaceable fuses. These are useful where there is the possibility of faults occurring during commissioning which would otherwise blow the barriers internal safety fuses.One secondary replaceable fuse for each barrier channel is provided and is lower in value than the safety related fuse. Fuses are packaged in small mouldings which can be latched in a disconnect position to break the safe and hazardous areas during commissioning maintenance and fault finding thus avoiding the need for additional disconnect terminals.Key FeaturesRemovable colour-coded terminalsBussed power feed to other modulesRelay and solid state switch modulesDual channel variants - 6.3mm per channelProximity detector inputsCompatible terminal numbering and safety descriptionsDimensions 105 x 90 x 12.6mmNumber of Channels 1Supply Voltage 28 V dcSafety Voltage Maximum 26 V dcSafety Current Resistance 300ohmSafety Current Maximum 93mASignal Type AnalogueMinimum Operating Temperature -20CMaximum Operating Temperature 65CHazardous Area Certification ATEXOperating Temperature Range Maximum of 65 C

GBP 77.08
1

FireClass FC410CIM Contact Input Module

Amplifiers Comparators Multipliers Filters and Oscillators