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FinFET/GAA Modeling for IC Simulation and Design: Using the BSIM-CMG Standard, Second Edition is the first to book to explain FinFET modeling for IC simulation and the industry standard – BSIM-CMG - describing the rush in demand for advancing the technology from planar to 3D architecture as now enabled by the approved industry standard. The book gives a strong foundation on the physics and operation of FinFET, details aspects of the BSIM-CMG model such as surface potential, charge and current calculations, and includes a dedicated chapter on parameter extraction procedures, thus providing a step-by-step approach for the efficient extraction of model parameters. With this book, users will learn Why you should use FinFET, The physics and operation of FinFET Details of the FinFET standard model (BSIM-CMG), Parameter extraction in BSIM-CMG FinFET circuit design and simulation, and more.
This book is the first to explain FinFET modeling for IC
simulation and the industry standard for FinFET modeling BSIM-CMG.
It gives a foundation on the physics and operation of FinFET,
explaining the need to go from planar to 3D architecture. It then
covers detailed aspects of the BSIMCMG model such as surface
potential, charge and current calculations. A dedicated chapter on
parameter extraction procedures provides a step-by-step approach
for the efficient extraction of model parameters. This book is an
indispensible reference and handbook for device and modeling
engineers, circuit designers and students. With this book you will
learn: Why you should use FinFET The physics and operation of
FinFET Details of the FinFET standard model (BSIM-CMG) Parameter
extraction in BSIM-CMG FinFET circuit design and simulation
Industry Standard FDSOI Compact Model BSIM-IMG for IC Design helps readers develop an understanding of a FDSOI device and its simulation model. It covers the physics and operation of the FDSOI device, explaining not only how FDSOI enables further scaling, but also how it offers unique possibilities in circuits. Following chapters cover the industry standard compact model BSIM-IMG for FDSOI devices. The book addresses core surface-potential calculations and the plethora of real devices and potential effects. Written by the original developers of the industrial standard model, this book is an excellent reference for the new BSIM-IMG compact model for emerging FDSOI technology. The authors include chapters on step-by-step parameters extraction procedure for BSIM-IMG model and rigorous industry grade tests that the BSIM-IMG model has undergone. There is also a chapter on analog and RF circuit design in FDSOI technology using the BSIM-IMG model.
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