Fr. 96.00

Introduction to Rf Power Amplifier Design and Simulation

English · Paperback / Softback

Shipping usually within 3 to 5 weeks

Description

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This book provides step-by-step guidance for the design of radio frequency (RF) power amplifiers, from analytical formulation to simulation, implementation, and measurement. Demonstrating the use of computer-aided design (CAD) tools, the text explores active device modeling techniques for transistors, parasitic extraction methods for active devi

List of contents










Radio Frequency Amplifier Basics. Radio Frequency Power Transistors. Transistor Modeling and Simulation. Resonator Networks for Amplifiers. Impedance Matching Networks. Couplers, Multistate Reflectometers, and RF Power Sensors for Amplifiers. Filter Design for RF Power Amplifiers. Computer Aided Design Tools for Amplifier Design and Implementation.


About the author










Abdullah Eroglu is a professor of electrical engineering at Indiana University-Purdue University Fort Wayne (IPFW), USA. He previously worked as a radio frequency (RF) senior design engineer at MKS Instruments, ENI Products, Rochester, New York, USA, and as a faculty fellow in the Fusion Energy Division of Oak Ridge National Laboratory, Tennessee, USA. He holds a M.Sc and Ph.D in electrical engineering from Syracuse University, New York, USA, and is a recipient of the 2013 IPFW Outstanding Researcher Award; 2012 IPFW Featured Faculty Award; 2011 Sigma Xi Researcher of the Year Award; 2010 IPFW College of Engineering, Technology, and Computer Science (ETCS) Excellence in Research Award; and 2004 Syracuse University Electrical Engineering and Computer Science Department Outstanding Graduate Student Award. Dr. Eroglu is the author of four books and has published more than 100 peer-reviewed journal and conference papers. He also serves as a reviewer and editorial board member for several journals.


Summary

This book provides step-by-step guidance for the design of radio frequency (RF) power amplifiers, from analytical formulation to simulation, implementation, and measurement. Demonstrating the use of computer-aided design (CAD) tools, the text explores active device modeling techniques for transistors, parasitic extraction methods for active devi

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