Semiconductor Devices Using Electronics Workbench


Book Description

Using Electronics Workbench software as a powerful learning tool to teach circuit simulation and electronic devices, this text delivers practical, straight-forward experimental instruction. This text is presented in an easy-to-understand, interactive format that promotes dynamic and exciting learning. *Illustrates circuit measurements with instruments that look and adjust like real ones. - Allows students to see results of altered part values, study circuit features, and learn how to use equipment prior to actual hands-on experience. *Easy-to-perform troubleshooting exercises on power supplies and amplifiers using Electronics Workbench. - Generates creative thinking by allowing students to put their own faults in the circuit. Gives instructors flexibility to hide and modify troubles, as well as create many different types of faults to stimulate interest and discussion. *Immediate circuit analysis, reducing the amount of time wiring circuits. - Enables students to learn at a faster pace by seeing results of circuit building. Saves blackboard time by letting instructors project the circuit examples to a large screen. *Analyzes fixed bias, emitter biasing, feedback biasing and volta




Microelectronics Laboratory Using Electronics Workbench


Book Description

This course is designed for engineers, engineering managers and technicians interested in the applicatoins of Electronic Workbench simulation for analysis and design of microelectronics circuits. The author introduces the characteristics and biasing techniques of semiconductor devices such as diodes, op-amps, MOSFETs, JFETs and BJTs. Applications of op-amps are also covered through design examples of op-amp circuits. The analysis and design of electronics circuits are emphasized and verified by Electronics Workbench software. There are also 15 design projects assigned to the course.




Electronic Devices


Book Description

This textbook for a one- or two-semester course covers electronic devices and circuits, including troubleshooting and practical applications. The first section is devoted to discrete devices and circuits while the second covers linear integrated circuits. A sampling of topics includes special-purpose diodes, power amplifiers, field-effect transistors, oscillators, and voltage regulators. The fourth edition features a new chapter on communications circuits. The CD-ROM contains exercises and problems using Electronics Workbench 5 and Electronics Workbench Multisim 6 circuit files. Annotation copyrighted by Book News, Inc., Portland, OR.




Electronic Devices and Circuits


Book Description

CD-ROM contains: "extensive number of circuit files prepared by the authors for students to experiment with using Electronic Workbench Multisim," and "Multisim 2001 Enhanced Textbook Edition."










Electronics Circuit Design Using Electronics Workbench


Book Description

This exciting new lab manual brings the real-time circuit simulation and testing capabilities of the STUDENT EDITION OF ELECTRONICS WORKBENCH (EWB) to your electronics lab. Written by a recognized authority on SPICE technology, this exciting new lab manual takes full advantage of ELECTRONIC WORKBENCH'S easy-to-use, visual schematic capture interface and virtual test bench equipment. The 15 design projects in this book start users off with circuit model specifications and then walks them through the process of finding component values. Using ELECTRONIC WORKBENCH, users learn how to verify circuit designs, investigate how robust or sensitive a circuit is to component variation, and explore the design effects of varying component values on circuit performance, A volume in the Brooks/Cole Thomson Learning BookWare Companion SeriesO, it acts as a useful lab supplement to any electronics text."




Semiconductor Devices


Book Description

This book examines in detail how a semiconductor device is designed and fabricated to satisfy best the requirements of the target application. The author presents and explains both basic and state-of-art semiconductor industry standards used in large/small signal equivalent circuit models for semiconductor devices that electronics engineers routinely use in their design calculations. The presentation includes detailed, step-by-step information on how a semiconductor device is fabricated, and the very sophisticated supporting technologies used in the process flow. The author also explains how standard laboratory equipment can be used to extract useful performance metrics of a semiconductor device.




Power Electronics, Drives, and Advanced Applications


Book Description

Concern for reliable power supply and energy-efficient system design has led to usage of power electronics-based systems, including efficient electric power conversion and power semiconductor devices. This book provides integration of complete fundamental theory, design, simulation and application of power electronics, and drives covering up-to-date subject components. It contains twenty-one chapters arranged in four sections on power semiconductor devices, basic power electronic converters, advanced power electronics converters, power supplies, electrical drives and advanced applications. Aimed at senior undergraduate and graduate students in electrical engineering and power electronics including related professionals, this book • Includes electrical drives such as DC motor, AC motor, special motor, high performance motor drives, solar, electrical/hybrid vehicle and fuel cell drives • Reviews advances in renewable energy technologies (wind, PV, hybrid power systems) and their integration • Explores topics like distributed generation, microgrid, and wireless power transfer system • Includes simulation examples using MATLAB®/Simulink and over four hundred solved, unsolved and review problems




Electric Circuits Using Electronics Workbench


Book Description

Using Electronics Workbench software as a learning tool to empower students to learn electronics at a more rapid pace, this interactive manual takes them from basic DC and AC series and parallel circuits to simulation of circuits using transformers, inductors, and capacitor. It includes numerous laboratory instrument exercises to enable students to use the oscillosope and function generator, and to get a much better understanding of adjusting the controls on the real equipment used in hands-on labs.