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Fundamental Principles of Optical Lithography

The Science of Microfabrication

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The fabrication of an integrated circuit requires a variety of physical and chemical processes to be performed on a semiconductor substrate. In general, these processes fall into three film deposition, patterning, and semiconductor doping. Films of both conductors and insulators are used to connect and isolate transistors and their components.By creating structures of these various components millions of transistors can be built and wired together to form the complex circuitry of modern microelectronic devices. Fundamental to all of these processes is lithography, ie, the formation of three-dimensional relief images on the substrate for subsequent transfer of the pattern to the substrate.This book presents a complete theoretical and practical treatment of the topic of lithography for both students and researchers. It comprises ten detailed chapters plus three appendices with problems provided at the end of each chapter.Additional Visiting enhances the reader's understanding as the website supplies information on how you can download a free laboratory manual, Optical Lithography Modelling with MATLAB, to accompany the textbook. You can also contact the author and find help for instructors.

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Fundamental Principles of Optical Lithography, Chris A. Mack

Sprache
Erscheinungsdatum
2007
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Titel
Fundamental Principles of Optical Lithography
Untertitel
The Science of Microfabrication
Sprache
Englisch
Autor*innen
Chris A. Mack
Verlag
Wiley
Erscheinungsdatum
2007
Einband
Paperback
Seitenzahl
534
ISBN10
0470727306
ISBN13
9780470727300
Reihe
Bewertung
4 von 5 Sternen
Beschreibung
The fabrication of an integrated circuit requires a variety of physical and chemical processes to be performed on a semiconductor substrate. In general, these processes fall into three film deposition, patterning, and semiconductor doping. Films of both conductors and insulators are used to connect and isolate transistors and their components.By creating structures of these various components millions of transistors can be built and wired together to form the complex circuitry of modern microelectronic devices. Fundamental to all of these processes is lithography, ie, the formation of three-dimensional relief images on the substrate for subsequent transfer of the pattern to the substrate.This book presents a complete theoretical and practical treatment of the topic of lithography for both students and researchers. It comprises ten detailed chapters plus three appendices with problems provided at the end of each chapter.Additional Visiting enhances the reader's understanding as the website supplies information on how you can download a free laboratory manual, Optical Lithography Modelling with MATLAB, to accompany the textbook. You can also contact the author and find help for instructors.