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Written in a concise, easy-to-read style, this text for senior undergraduate and graduate courses covers all key topics thoroughly. It is also a useful self-study guide for practising engineers who need a complete, up-to-date review of the subject. Key features: Rigorous theoretical treatment combined with practical detail
A theoretical framework built up systematically from the Schrodinger Wave Equation and the Boltzmann Transport Equation
Covers MOSFETS, HBTs and HJFETS
Uses the PSP model for MOSFETS
Rigorous treatment of device capacitance
Describes the operation of modern, high-performance transistors and diodes
Evaluates the suitability of various transistor types and diodes for specific modern applications
Covers solar cells and LEDs and their potential impact on energy generation and reduction
Includes a chapter on nanotransistors to prepare students and professionals for the future
Provides results of detailed numerical simulations to compare with analytical solutions
End-of-chapter exercises
Online lecture slides for undergraduate and graduate courses
2009 IEEE Electron Devices Society Education Award For contributions to the teaching of semiconductor devices at both the undergraduate and graduate levels"
2009 Teaching Award for Excellence in Engineering and Geoscience Education "From the Association of Professional Engineers and Geoscientists of British Columbia."
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Written in a concise, easy-to-read style, this text for senior undergraduate and graduate courses covers all key topics thoroughly. It is also a useful self-study guide for practising engineers who need a complete, up-to-date review of the subject. Key features: Rigorous theoretical treatment combined with practical detail
A theoretical framework built up systematically from the Schrodinger Wave Equation and the Boltzmann Transport Equation
Covers MOSFETS, HBTs and HJFETS
Uses the PSP model for MOSFETS
Rigorous treatment of device capacitance
Describes the operation of modern, high-performance transistors and diodes
Evaluates the suitability of various transistor types and diodes for specific modern applications
Covers solar cells and LEDs and their potential impact on energy generation and reduction
Includes a chapter on nanotransistors to prepare students and professionals for the future
Provides results of detailed numerical simulations to compare with analytical solutions
End-of-chapter exercises
Online lecture slides for undergraduate and graduate courses
2009 IEEE Electron Devices Society Education Award For contributions to the teaching of semiconductor devices at both the undergraduate and graduate levels"
2009 Teaching Award for Excellence in Engineering and Geoscience Education "From the Association of Professional Engineers and Geoscientists of British Columbia."
Atsiliepimai