Microwave De-embedding: From Theory to Applications

Author:   Giovanni Crupi (University of Messina, Italy) ,  Dominique Schreurs (Professor at KU Leuven, Leuven, Belgium.)
Publisher:   Elsevier Science Publishing Co Inc
ISBN:  

9780124017009


Pages:   480
Publication Date:   20 November 2013
Format:   Hardback
Availability:   Manufactured on demand   Availability explained
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Microwave De-embedding: From Theory to Applications


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Overview

This groundbreaking book is the first to give an introduction to microwave de-embedding, showing how it is the cornerstone for waveform engineering. The authors of each chapter clearly explain the theoretical concepts, providing a foundation that supports linear and non-linear measurements, modelling and circuit design. Recent developments and future trends in the field are covered throughout, including successful strategies for low-noise and power amplifier design. This book is a must-have for those wishing to understand the full potential of the microwave de-embedding concept to achieve successful results in the areas of measurements, modelling, and design at high frequencies. With this book you will learn: The theoretical background of high-frequency de-embedding for measurements, modelling, and design Details on applying the de-embedding concept to the transistor’s linear, non-linear, and noise behaviour The impact of de-embedding on low-noise and power amplifier design The recent advances and future trends in the field of high-frequency de-embedding

Full Product Details

Author:   Giovanni Crupi (University of Messina, Italy) ,  Dominique Schreurs (Professor at KU Leuven, Leuven, Belgium.)
Publisher:   Elsevier Science Publishing Co Inc
Imprint:   Academic Press Inc
Dimensions:   Width: 19.10cm , Height: 2.70cm , Length: 23.50cm
Weight:   1.040kg
ISBN:  

9780124017009


ISBN 10:   0124017002
Pages:   480
Publication Date:   20 November 2013
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Foreword by G. Ghione Foreword by S. Maas About the Editors Authors Biographies 1. A Clear-Cut Introduction to the De-embedding Concept: Less is More by G. Crupi, D. Schreurs and A. Caddemi 2. Millimeter-Wave Characterization of Silicon Devices under Small-Signal Regime: Instruments and Measurement Methodologies by G. Dambrine 3. Characterization and Modeling of High-Frequency Active Devices Oriented to High-Sensitivity Subsystems Design by E. Limiti, W. Ciccognani, and S. Colangeli 4. High-Frequency and Microwave Electromagnetic Analysis Calibration and De-embedding by J. Rautio 5. Large-Signal Time-Domain Waveform-Based Transistor Modeling by I. Angelov, G. Avolio, and D. Schreurs 6. Measuring and Characterizing Nonlinear Radio-Frequency Systems by W. Van Moer, L. Lauwers, and K. Barbe 7. Behavioral Models for Microwave Circuit Design by J. Pedro, and T. Cunha 8. Electromagnetic-Analysis-Based Transistor De-embedding and Related Radio-Frequency Ampli?er Design by M. Yarlequé, D. Scheurs, B. Nauwelaers, D. Resca, and G. Vannini 9. Nonlinear Embedding and De-embedding: Theory and Applications by A. Raffo, V. Vadalà, and G. Vannini

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Author Information

Giovanni Crupi is an assistant professor at the University of Messina, Italy, where he teaches microwave electronics and optoelectronics. Since 2005, he has been a visiting scientist with KU Leuven and IMEC, Leuven, Belgium. Giovanni's main research interests include small and large signal modeling of advanced microwave devices. He is the chair of the IEEE Microwave Theory and Techniques Society (MTT-S) Fellowship program and serves as an associate editor of International Journal of Numerical Modelling: Electronic Networks, Devices and Fields. Dominique Schreurs is a full professor at KU Leuven, Leuven, Belgium. Previously, she has been a visiting scientist at Agilent Technologies (USA), Eidgenossische Technische Hochschule Zurich (Switzerland), and the National Institute of Standards and Technology (USA). Dominique's main research interests concern linear and nonlinear characterization and modeling of microwave devices and circuits, as well as linear and nonlinear hybrid and integrated circuit design for telecommunications and biomedical applications. She is the technical chair of ARFTG and serves as the editor of the IEEE Transactions on Microwave Theory and Techniques.

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