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Circuit Design for Modern Applications

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Название: Circuit Design for Modern Applications
Автор: A. Andrew Roobert, M. Venkatesh, Shiromani Balmukund Rahi, G. Lakshmi Priya
Издательство: CRC Press
Год: 2025
Страниц: 407
Язык: английский
Формат: pdf (true), epub
Размер: 44.3 MB

This book offers a clear exploration of cutting-edge semiconductor circuit technologies and their practical applications. It covers topics like advanced transistor design, low-power consumption techniques, and high-performance circuit design.

Circuit Design for Modern Applications explores the recent innovations in semiconductor technology. Bandgap reference circuits, quad model transistors, voltagecontrolled oscillators, LDO regulators, power amplifiers, low noise amplifiers, operational amplifiers, low-power CNTFET-based quaternary multipliers, and STT MRAM-based cache memory for multicore systems are discussed. It points out the difficulties in designing CMOS analog and RF circuits for mmWave applications and looks into newly developed field-effect transistors for an alternate solution. Innovative devices such as III-V material-based HEMTs, and junctionless FETs are discussed. The book also looks at creative ways to improve circuit performance and energy efficiency, which is a useful resource for academics, researchers, and industry experts working in semiconductors.

Nowadays circuit design is one of the most important fields from consumer electronics to industrial systems, and from medical devices to quantum computing. The objective of this book is to give a thorough and deep look at the modern techniques and methods used in circuit design, with a focus on what they mean in real life and what they could mean in the future.

The idea for this book came from the realization that modern applications need new approaches in circuit design and device modeling perspectives. Even though traditional methods are important, they don’t always meet the complex needs of current applications. The never-ending quest for smaller size, better speed, lower power use, and higher reliability calls for new ways of designing things and creative solutions. This book tries to connect theory and practice by showing the most recent study results and how they can be used in real-time applications.

Another idea of this book is to look into new materials and device designs that could change the way circuits are designed. As silicon-based technology gets closer to its physical limits, there is a lot more interest in finding other materials. This book talks about the possibilities of compound semiconductors like Gallium Nitride (GaN) and other III-V materials. These materials have better electrical properties that can make gadgets work better and use less energy. These materials are not just new ideas in theory; they can also be used in high-power and high-frequency devices, which makes them very important to the progress of modern electronics.

The importance of saving energy comes up frequently in this book. As the world moves toward greener gadgets and sustainable technology becomes more important, it is more important than ever to make circuits use less power. A number of tactics are talked about, ranging from low-power design methods in CMOS technology to using new gadgets such as Spin-Transfer Torque Magnetic RAM (STT MRAM) and Carbon Nanotube Field-Effect Transistors (CNTFETs). Not only are these approaches given in a theoretical way, but they are also given as design examples.

This book also talks about the special problems and chances that come up when designing analog and RF circuits, especially for the millimeter-wave (mmWave) range. Higher frequency operations create some problems for designers, but it also opens up new ways to improve bandwidth and data rate. This book shows how to deal with the problems in these circuits.

Moreover, evaluating the performance at both the device and circuit levels is more important. The relationship between device physics and circuit function gets more complicated when it comes to nanoscale devices. There are detailed modeling and simulation methods shown that help show how things that happen at the nanoscale level affect how a circuit works as a whole. This all-around method makes sure that readers not only learn how to design circuits, but also how to predict and improve their performance in a wide range of settings.

This book will help the readers to stay on the cutting edge of contemporary circuit design technologies, covering various topics from fundamental circuit design to high-performance circuits.

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