10% off all books and free delivery over £50
Buy from our bookstore and 25% of the cover price will be given to a school of your choice to buy more books. *15% of eBooks.

New Approaches to Image Processing based Failure Analysis of Nano-Scale ULSI Devices

View All Editions (1)

The selected edition of this book is not available to buy right now.
Add To Wishlist
Write A Review

About

New Approaches to Image Processing based Failure Analysis of Nano-Scale ULSI Devices Synopsis

New Approaches to Image Processing Based Failure Analysis of Nano-Scale ULSI Devices introduces the reader to transmission and scanning microscope image processing for metal and non-metallic microstructures. Engineers and scientists face the pressing problem in ULSI development and quality assurance: microscopy methods can’t keep pace with the continuous shrinking of feature size in microelectronics. Nanometer scale sizes are below the resolution of light, and imaging these features is nearly impossible even with electron microscopes, due to image noise. This book presents novel "smart" image processing methods, applications, and case studies concerning quality improvement of microscope images of microelectronic chips and process optimization. It explains an approach for high-resolution imaging of advanced metallization for micro- and nanoelectronics. This approach obviates the time-consuming preparation and selection of microscope measurement and sample conditions, enabling not only better electron-microscopic resolution, but also more efficient testing and quality control. This in turn leads to productivity gains in design and development of nano-scale ULSI chips. The authors also present several approaches for super-resolving low-resolution images to improve failure analysis of microelectronic chips.

About This Edition

ISBN: 9780323241434
Publication date:
Author: Zeev Faculty of Engineering and the Center for Advanced Materials and Nanotechnology, BarIlan University Zalevsky, Livshits
Publisher: William Andrew Publishing
Format: Paperback
Pagination: 110 pages
Series: Micro & Nano Technologies
Genres: Image processing
Mechanical engineering