Electrical and Electronic Devices, Circuits, and Materials. Группа авторов

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      Scrivener Publishing 100 Cummings Center, Suite 541J Beverly, MA 01915-6106

      Publishers at Scrivener Martin Scrivener ([email protected]) Phillip Carmical ([email protected])

      Electrical and Electronic Devices, Circuits, and Materials

      Technological Challenges and Solutions

      Edited by

      Suman Lata Tripathi

      Parvej Ahmad Alvi

       and

       Umashankar Subramaniam

      © 2021 Scrivener Publishing LLC

      For more information about Scrivener publications please visit www.scrivenerpublishing.com.

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      While the publisher and authors have used their best efforts in preparing this work, they make no representations or warranties with respect to the accuracy or completeness of the contents of this work and specifically disclaim all warranties, including without limitation any implied warranties of merchant-ability or fitness for a particular purpose. No warranty may be created or extended by sales representatives, written sales materials, or promotional statements for this work. The fact that an organization, website, or product is referred to in this work as a citation and/or potential source of further information does not mean that the publisher and authors endorse the information or services the organization, website, or product may provide or recommendations it may make. This work is sold with the understanding that the publisher is not engaged in rendering professional services. The advice and strategies contained herein may not be suitable for your situation. You should consult with a specialist where appropriate. Neither the publisher nor authors shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages. Further, readers should be aware that websites listed in this work may have changed or disappeared between when this work was written and when it is read.

       Library of Congress Cataloging-in-Publication Data

      ISBN 978-1-119-75036-9

      Cover image: Cyberspace Technology Background, Alongkorn Paingam | Dreamstime.com; Circuit Board Background, Artnoy Vector | Dreamstime.com

      Cover design by Kris Hackerott

      Set in size of 11pt and Minion Pro by Manila Typesetting Company, Makati, Philippines

      Printed in the USA

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      Preface

      The objective of this edition is to provide a broad view of the electronic device and Circuit design and technological challenges in a concise way for fast and easy understanding. This book provides information regarding almost all the aspects to make it highly beneficial for all the students, researchers and teachers of this field. Fundamental principles of electrical and electronic device & circuit design are discussed herein in a clear and detailed manner with an explanatory diagram wherever necessary. All the chapters are illustrated in simple language will felicitate readability of the chapters.

       Chapter Organization

      This book is organized into two parts as Part I & Part II with 28 chapters in total. Part I mainly deals with technological challenges and solutions to electronic devices and circuit including the use of advanced materials. Part II describes electrical devices and systems such as solar cells, power converters, and renewable energy systems.

       Part I Design and Analysis

      Chapter 1 discusses various theoretical, simulation and experimental research work on strain engineering that is discussed in brief. The gradual development of this performance-enhancing technique is also included along with some latest reports in this field of research in modern devices.

      Chapter 2 is mainly focused on double-gate (DG) TFET, having band engineering and high - k dielectrics with a detailed investigation of the transfer (Id-Vg), C-V and RF characteristics DG-TFET.

      Chapter 3 deals with a brief introduction to supercapacitors, followed by characteristics of electrolyte, types and modification strategies for the electrolyte. Further, important preparation techniques and advanced characterization techniques are also explored.

      Chapter 4 presents a tunable microstrip filter with fractal DGS. Fractal DGS is used to reduce the size of the filter. The proposed filter is

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