Parameter Extraction and Complex Nonlinear Transistor Models

Download or Read eBook Parameter Extraction and Complex Nonlinear Transistor Models PDF written by Gunter Kompa and published by Artech House. This book was released on 2019-12-31 with total page 610 pages. Available in PDF, EPUB and Kindle.
Parameter Extraction and Complex Nonlinear Transistor Models
Author :
Publisher : Artech House
Total Pages : 610
Release :
ISBN-10 : 9781630817459
ISBN-13 : 1630817457
Rating : 4/5 (59 Downloads)

Book Synopsis Parameter Extraction and Complex Nonlinear Transistor Models by : Gunter Kompa

Book excerpt: All model parameters are fundamentally coupled together, so that directly measured individual parameters, although widely used and accepted, may initially only serve as good estimates. This comprehensive resource presents all aspects concerning the modeling of semiconductor field-effect device parameters based on gallium-arsenide (GaAs) and gallium nitride (GaN) technology. Metal-semiconductor field-effect transistors (MESFETs), high electron mobility transistors (HEMTs) and heterojunction bipolar transistors (HBTs), their structures and functions, and existing transistor models are also classified. The Shockley model is presented in order to give insight into semiconductor field-effect transistor (FET) device physics and explain the relationship between geometric and material parameters and device performance. Extraction of trapping and thermal time constants is discussed. A special section is devoted to standard nonlinear FET models applied to large-signal measurements, including static-/pulsed-DC and single-/two-tone stimulation. High power measurement setups for signal waveform measurement, wideband source-/load-pull measurement (including envelope source-/load pull) are also included, along with high-power intermodulation distortion (IMD) measurement setup (including envelope load-pull). Written by a world-renowned expert in the field, this book is the first to cover of all aspects of semiconductor FET device modeling in a single volume.


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