Resolution Enhancement Techniques in Optical Lithography

Resolution Enhancement Techniques in Optical Lithography
Title Resolution Enhancement Techniques in Optical Lithography PDF eBook
Author Alfred Kwok-Kit Wong
Publisher SPIE Press
Pages 238
Release 2001
Genre Science
ISBN 9780819439956

Download Resolution Enhancement Techniques in Optical Lithography Book in PDF, Epub and Kindle

Ever-smaller IC devices are pushing the optical lithography envelope, increasing the importance of resolution enhancement techniques. This tutorial encompasses two decades of research. It discusses theoretical and practical aspects of commonly used techniques, including optical imaging and resolution, modified illumination, optical proximity correction, alternating and attenuating phase-shifting masks, selecting RETs, and second-generation RETs. Useful for students and practicing lithographers

Field Guide to Optical Lithography

Field Guide to Optical Lithography
Title Field Guide to Optical Lithography PDF eBook
Author Chris A. Mack
Publisher Society of Photo Optical
Pages 122
Release 2006
Genre Technology & Engineering
ISBN 9780819462077

Download Field Guide to Optical Lithography Book in PDF, Epub and Kindle

This Field Guide distills the material written by Chris Mack over the past 20 years, including notes from his graduate-level lithography course at the University of Texas at Austin. It details the lithography process, image formation, imaging onto a photoresist, photoresist chemistry, and lithography control and optimization. An introduction to next-generation lithographic technologies is also included, as well as an extensive lithography glossary and a summation of salient equations critical to anyone involved in the lithography industry.

Computational Lithography

Computational Lithography
Title Computational Lithography PDF eBook
Author Xu Ma
Publisher John Wiley & Sons
Pages 225
Release 2011-01-06
Genre Technology & Engineering
ISBN 111804357X

Download Computational Lithography Book in PDF, Epub and Kindle

A Unified Summary of the Models and Optimization Methods Used in Computational Lithography Optical lithography is one of the most challenging areas of current integrated circuit manufacturing technology. The semiconductor industry is relying more on resolution enhancement techniques (RETs), since their implementation does not require significant changes in fabrication infrastructure. Computational Lithography is the first book to address the computational optimization of RETs in optical lithography, providing an in-depth discussion of optimal optical proximity correction (OPC), phase shifting mask (PSM), and off-axis illumination (OAI) RET tools that use model-based mathematical optimization approaches. The book starts with an introduction to optical lithography systems, electric magnetic field principles, and the fundamentals of optimization from a mathematical point of view. It goes on to describe in detail different types of optimization algorithms to implement RETs. Most of the algorithms developed are based on the application of the OPC, PSM, and OAI approaches and their combinations. Algorithms for coherent illumination as well as partially coherent illumination systems are described, and numerous simulations are offered to illustrate the effectiveness of the algorithms. In addition, mathematical derivations of all optimization frameworks are presented. The accompanying MATLAB® software files for all the RET methods described in the book make it easy for readers to run and investigate the codes in order to understand and apply the optimization algorithms, as well as to design a set of optimal lithography masks. The codes may also be used by readers for their research and development activities in their academic or industrial organizations. An accompanying MATLAB® software guide is also included. An accompanying MATLAB® software guide is included, and readers can download the software to use with the guide at ftp://ftp.wiley.com/public/sci_tech_med/computational_lithography. Tailored for both entry-level and experienced readers, Computational Lithography is meant for faculty, graduate students, and researchers, as well as scientists and engineers in industrial organizations whose research or career field is semiconductor IC fabrication, optical lithography, and RETs. Computational lithography draws from the rich theory of inverse problems, optics, optimization, and computational imaging; as such, the book is also directed to researchers and practitioners in these fields.

Fundamental Principles of Optical Lithography

Fundamental Principles of Optical Lithography
Title Fundamental Principles of Optical Lithography PDF eBook
Author Chris Mack
Publisher John Wiley & Sons
Pages 503
Release 2011-08-10
Genre Technology & Engineering
ISBN 1119965071

Download Fundamental Principles of Optical Lithography Book in PDF, Epub and Kindle

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 categories: 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 Information: Visiting http://www.lithoguru.com/textbook/index.html 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.

Optical and EUV Lithography

Optical and EUV Lithography
Title Optical and EUV Lithography PDF eBook
Author Andreas Erdmann
Publisher
Pages
Release 2021-02
Genre
ISBN 9781510639010

Download Optical and EUV Lithography Book in PDF, Epub and Kindle

Selected Papers on Resolution Enhancement Techniques in Optical Lithography

Selected Papers on Resolution Enhancement Techniques in Optical Lithography
Title Selected Papers on Resolution Enhancement Techniques in Optical Lithography PDF eBook
Author F. M. Schellenberg
Publisher SPIE-International Society for Optical Engineering
Pages 910
Release 2004
Genre Integrated circuits
ISBN

Download Selected Papers on Resolution Enhancement Techniques in Optical Lithography Book in PDF, Epub and Kindle

Optical lithography for integrated circuits is undergoing a renaissance with the adoption of Resolution Enhancement Technology (RET). Some RET concepts have become routine in manufacturing. This volume gathers together seminal RET papers.

EDA for IC Implementation, Circuit Design, and Process Technology

EDA for IC Implementation, Circuit Design, and Process Technology
Title EDA for IC Implementation, Circuit Design, and Process Technology PDF eBook
Author Luciano Lavagno
Publisher CRC Press
Pages 608
Release 2018-10-03
Genre Technology & Engineering
ISBN 1420007955

Download EDA for IC Implementation, Circuit Design, and Process Technology Book in PDF, Epub and Kindle

Presenting a comprehensive overview of the design automation algorithms, tools, and methodologies used to design integrated circuits, the Electronic Design Automation for Integrated Circuits Handbook is available in two volumes. The second volume, EDA for IC Implementation, Circuit Design, and Process Technology, thoroughly examines real-time logic to GDSII (a file format used to transfer data of semiconductor physical layout), analog/mixed signal design, physical verification, and technology CAD (TCAD). Chapters contributed by leading experts authoritatively discuss design for manufacturability at the nanoscale, power supply network design and analysis, design modeling, and much more. Save on the complete set.