"synopsis" may belong to another edition of this title.
"...clearly written with...many helpful hints...highly recommended." (MRS Bulletin, January 2005)
"This book sucks in a good way...the third edition will never get dusty on my bookshelf...although the text is certainly not coffee-table reading material, it will have a wide appeal...it is particularly valuable as a reference for those who work practically with vacuum technologies and a must-buy for those who design them." (JOM, February 26, 2004)
"...a fundamental understanding of modern vacuum technology and a practical user's perspective of laboratory and industrial vacuum technology. This edition, while still providing core information in a very practical style...covers many new advances in the field...there are loads of graphs, data, and tables to provide practical and useful information to the vacuum user." (IEEE Electrical Insulation Magazine)
In the decade and a half since the publication of the Second Edition of A User's Guide to Vacuum Technology there have been many important advances in the field, including spinning rotor gauges, dry mechanical pumps, magnetically levitated turbo pumps, and ultraclean system designs. These, along with improved cleaning and assembly techniques have made contamination-free manufacturing a reality. Designed to bridge the gap in both knowledge and training between designers and end users of vacuum equipment, the Third Edition offers a practical perspective on today's vacuum technology. With a focus on the operation, understanding, and selection of equipment for industrial processes used in semiconductor, optics, packaging, and related coating technologies, A User's Guide to Vacuum Technology, Third Edition provides a detailed treatment of this important field. While emphasizing the fundamentals and touching on significant topics not adequately covered elsewhere, the text avoids topics not relevant to the typical user.
The Third Edition features significant additions, including:
As with previous editions, the Third Edition is an important resource for both students and professionals in microelectronics, optics, thin-film coating, and other industries dependent on leading-edge applications of vacuum technology.
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