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Wiley Surfaces, Interfaces, and Films for Microelectronics

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Description

The practical, accessible independent-study guide and text on surface science fundamentals and microelectronics processes, this reference explains key concepts and important analytical techniques. It discusses films and interfaces, electronic passivation of semiconductor-dielectric film interfaces, the Si-SiO2 interface, and other MOSFET interfaces, and includes figures, charts, exercises, and examples of applications. This is the ideal guide to help professionals in the electronics industry get up to speed fast. It is also an excellent text for upper-level graduate and undergraduate students. From the Inside Flap The practical, accessible independent-study guide and text on surface science fundamentals and microelectronics processes Electronic and microelectronic materials are vital to technologies such as semiconductors, integrated circuits, magnetic alloys, insulators, and optical/display materials.? The microelectronic material surfaces, interfaces, and films play an important role in their function. Detailing fundamentals and important analytical techniques, this reference helps scientists and engineers in this rapidly growing field understand existing microelectronic applications and design new ones. After an introduction to essential key concepts, Surfaces, Interfaces, and Thin Films for Microelectronics: Provides a thorough explanation of surface science fundamentals, covering both geometric and electronic structure, surface thermodynamics, morphology, and a sampling of surface science techniques Discusses microelectronics processes, covering films and interfaces, electronic passivation of semiconductor-dielectric film interfaces, the Si-SiO2 interface, and other MOSFET interfaces Includes figures, charts, exercises, and numerous examples of applications to enhance and ingrain understanding Provides references to other resources for further study With its accessible explanations of both fundamentals and microelectronics processes, this is the ideal self-study guide to help professionals in the electronics industry get up to speed fast. It is also an excellent text for upper-level undergraduate and graduate students taking materials science, chemistry, physics, and electrical engineering courses. From the Back Cover The practical, accessible independent-study guide and text on surface science fundamentals and microelectronics processes Electronic and microelectronic materials are vital to technologies such as semiconductors, integrated circuits, magnetic alloys, insulators, and optical/display materials.? The microelectronic material surfaces, interfaces, and films play an important role in their function. Detailing fundamentals and important analytical techniques, this reference helps scientists and engineers in this rapidly growing field understand existing microelectronic applications and design new ones. After an introduction to essential key concepts, Surfaces, Interfaces, and Thin Films for Microelectronics: Provides a thorough explanation of surface science fundamentals, covering both geometric and electronic structure, surface thermodynamics, morphology, and a sampling of surface science techniques Discusses microelectronics processes, covering films and interfaces, electronic passivation of semiconductor-dielectric film interfaces, the Si-SiO2 interface, and other MOSFET interfaces Includes figures, charts, exercises, and numerous examples of applications to enhance and ingrain understanding Provides references to other resources for further study With its accessible explanations of both fundamentals and microelectronics processes, this is the ideal self-study guide to help professionals in the electronics industry get up to speed fast. It is also an excellent text for upper-level undergraduate and graduate students taking materials science, chemistry, physics, and electrical engineering courses. About the Author Eugene A. Irene, PhD, is Professor of Chemis

Product Specifications

Brand
Wiley
Format
hardcover
Domain
Amazon UK
Release Date
11 March 2008
Listed Since
01 March 2007

Barcode

No barcode data available

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