Handbook of Advanced Plasma Processing Techniques
Title | Handbook of Advanced Plasma Processing Techniques PDF eBook |
Author | R.J. Shul |
Publisher | Springer Science & Business Media |
Pages | 664 |
Release | 2000-08-28 |
Genre | Science |
ISBN | 9783540667728 |
This volume covers the topic of advanced plasma processing techniques, from the fundamental physics of plasmas to diagnostics, modeling and applications such as etching and deposition for microelectronics. The use of plasmas for patterning on a submicron scale has enabled successive generations of continually smaller transistors, lasers, micromachines, sensors and magnetic read/write heads that have formed the basis of our information age. This volume is the first to give coverage to this broad area of topics in a detailed fashion, especially in the rapidly expanding fields of micro-mechanical machines, photomask fabrication, magnetic data storage and reactor modeling. It provides the reader with a broad array of topics, authored by the leading experts in the field.
Handbook of Advanced Plasma Processing Techniques
Title | Handbook of Advanced Plasma Processing Techniques PDF eBook |
Author | R.J. Shul |
Publisher | Springer Science & Business Media |
Pages | 664 |
Release | 2011-06-28 |
Genre | Technology & Engineering |
ISBN | 3642569897 |
Pattern transfer by dry etching and plasma-enhanced chemical vapor de position are two of the cornerstone techniques for modern integrated cir cuit fabrication. The success of these methods has also sparked interest in their application to other techniques, such as surface-micromachined sen sors, read/write heads for data storage and magnetic random access memory (MRAM). The extremely complex chemistry and physics of plasmas and their interactions with the exposed surfaces of semiconductors and other materi als is often overlooked at the manufacturing stage. In this case, the process is optimized by an informed "trial-and-error" approach which relies heavily on design-of-experiment techniques and the intuition of the process engineer. The need for regular cleaning of plasma reactors to remove built-up reaction or precursor gas products adds an extra degree of complexity because the interaction of the reactive species in the plasma with the reactor walls can also have a strong effect on the number of these species available for etching or deposition. Since the microelectronics industry depends on having high process yields at each step of the fabrication process, it is imperative that a full understanding of plasma etching and deposition techniques be achieved.
Handbook of Plasma Processing Technology
Title | Handbook of Plasma Processing Technology PDF eBook |
Author | Stephen M. Rossnagel |
Publisher | William Andrew |
Pages | 523 |
Release | 1990 |
Genre | Reference |
ISBN | 9780815512202 |
This is a comprehensive overview of the technology of plasma-based processing, written by an outstanding group of 29 contributors.
Handbook of Physical Vapor Deposition (PVD) Processing
Title | Handbook of Physical Vapor Deposition (PVD) Processing PDF eBook |
Author | D. M. Mattox |
Publisher | Cambridge University Press |
Pages | 947 |
Release | 2014-09-19 |
Genre | Technology & Engineering |
ISBN | 0080946585 |
This book covers all aspects of physical vapor deposition (PVD) process technology from the characterizing and preparing the substrate material, through deposition processing and film characterization, to post-deposition processing. The emphasis of the book is on the aspects of the process flow that are critical to economical deposition of films that can meet the required performance specifications. The book covers subjects seldom treated in the literature: substrate characterization, adhesion, cleaning and the processing. The book also covers the widely discussed subjects of vacuum technology and the fundamentals of individual deposition processes. However, the author uniquely relates these topics to the practical issues that arise in PVD processing, such as contamination control and film growth effects, which are also rarely discussed in the literature. In bringing these subjects together in one book, the reader can understand the interrelationship between various aspects of the film deposition processing and the resulting film properties. The author draws upon his long experience with developing PVD processes and troubleshooting the processes in the manufacturing environment, to provide useful hints for not only avoiding problems, but also for solving problems when they arise. He uses actual experiences, called ""war stories"", to emphasize certain points. Special formatting of the text allows a reader who is already knowledgeable in the subject to scan through a section and find discussions that are of particular interest. The author has tried to make the subject index as useful as possible so that the reader can rapidly go to sections of particular interest. Extensive references allow the reader to pursue subjects in greater detail if desired. The book is intended to be both an introduction for those who are new to the field and a valuable resource to those already in the field. The discussion of transferring technology between R&D and manufacturing provided in Appendix 1, will be of special interest to the manager or engineer responsible for moving a PVD product and process from R&D into production. Appendix 2 has an extensive listing of periodical publications and professional societies that relate to PVD processing. The extensive Glossary of Terms and Acronyms provided in Appendix 3 will be of particular use to students and to those not fully conversant with the terminology of PVD processing or with the English language.
Thermal Plasma Processing of Ilmenite
Title | Thermal Plasma Processing of Ilmenite PDF eBook |
Author | Sneha Samal |
Publisher | Springer |
Pages | 86 |
Release | 2017-11-28 |
Genre | Technology & Engineering |
ISBN | 3319707337 |
This book shows how to prepare titania rich slag from metallized ilmenite using thermal plasma processing. The author reveals the development of a thermal plasma process alternative to the current used ones, which are highly energy costly. The appropriate design of the plasma reactor, which is crucial for achieving reduced energy consumption, is described in this book. The content can be of interest for industrial purposes.
Handbook of Deposition Technologies for Films and Coatings
Title | Handbook of Deposition Technologies for Films and Coatings PDF eBook |
Author | Peter M. Martin |
Publisher | William Andrew |
Pages | 932 |
Release | 2009-12-01 |
Genre | Technology & Engineering |
ISBN | 0815520328 |
This 3e, edited by Peter M. Martin, PNNL 2005 Inventor of the Year, is an extensive update of the many improvements in deposition technologies, mechanisms, and applications. This long-awaited revision includes updated and new chapters on atomic layer deposition, cathodic arc deposition, sculpted thin films, polymer thin films and emerging technologies. Extensive material was added throughout the book, especially in the areas concerned with plasma-assisted vapor deposition processes and metallurgical coating applications.
Atmospheric Pressure Plasma for Surface Modification
Title | Atmospheric Pressure Plasma for Surface Modification PDF eBook |
Author | Rory A. Wolf |
Publisher | John Wiley & Sons |
Pages | 268 |
Release | 2012-11-08 |
Genre | Technology & Engineering |
ISBN | 1118547551 |
This Book's focus and intent is to impart an understanding of the practical application of atmospheric plasma for the advancement of a wide range of current and emerging technologies. The primary key feature of this book is the introduction of over thirteen years of practical experimental evidence of successful surface modifications by atmospheric plasma methods. It offers a handbook-based approach for leveraging and optimizing atmospheric plasma technologies which are currently in commercial use. It also offers a complete treatment of both basic plasma physics and industrial plasma processing with the intention of becoming a primary reference for students and professionals. The reader will learn the mechanisms which control and operate atmospheric plasma technologies and how these technologies can be leveraged to develop in-line continuous processing of a wide variety of substrates. Readers will gain an understanding of specific surface modification effects by atmospheric plasmas, and how to best characterize those modifications to optimize surface cleaning and functionalization for adhesion promotion. The book also features a series of chapters written to address practical surface modification effects of atmospheric plasmas within specific application markets, and a commercially-focused assessment of those effects.