Techniques and Challenges for 300 Mm Silicon

Techniques and Challenges for 300 Mm Silicon
Author: H. Richter,P. Wagner,G. Ritter,European Materials Research Society. Meeting
Publsiher: Elsevier Science Limited
Total Pages: 213
Release: 1999
Genre: Technology & Engineering
ISBN: 0080436099

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The activities of the semiconductor industry to introduce a new, large wafer diameter were triggered by expected potential overall savings - cost and resource - and an anticipated increasing demand for Silicon wafers. In the beginning, around 1994, agreement on the diameter of the next wafer generation had to be achieved and finally 300 mm was globally accepted to be the next wafer diameter, a decision obtained at international summits in 1994/1995, based on the work of a SEMI task force. Several workshops on 300 mm wafers have been held by SEMI, JSNM and other organizations during the past few years. However, the present E-MRS conference on Techniques and Challenges for 300 mm Silicon: Processing, Characterization, Modeling and Equipment was the first international scientific conference about this subject. The papers - invited as well as submitted - cover a wide range of subjects, financial issues, fab concepts, crystal growth, wafer process development, material and defect issues, wafer characterization and provide an excellent review of the present status of 300 mm technology.

Silicon Materials Science and Technology

Silicon Materials Science and Technology
Author: Anonim
Publsiher: Unknown
Total Pages: 800
Release: 1998
Genre: Semiconductors
ISBN: STANFORD:36105023559763

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Semiconductor Silicon 2002

Semiconductor Silicon 2002
Author: Howard R. Huff,László Fábry,Seigo Kishino
Publsiher: The Electrochemical Society
Total Pages: 650
Release: 2002
Genre: Science
ISBN: 1566773741

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Extending Moore s Law through Advanced Semiconductor Design and Processing Techniques

Extending Moore s Law through Advanced Semiconductor Design and Processing Techniques
Author: Wynand Lambrechts,Saurabh Sinha,Jassem Ahmed Abdallah,Jaco Prinsloo
Publsiher: CRC Press
Total Pages: 361
Release: 2018-09-13
Genre: Computers
ISBN: 9781351248655

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This book provides a methodological understanding of the theoretical and technical limitations to the longevity of Moore’s law. The book presents research on factors that have significant impact on the future of Moore’s law and those factors believed to sustain the trend of the last five decades. Research findings show that boundaries of Moore’s law primarily include physical restrictions of scaling electronic components to levels beyond that of ordinary manufacturing principles and approaching the bounds of physics. The research presented in this book provides essential background and knowledge to grasp the following principles: Traditional and modern photolithography, the primary limiting factor of Moore’s law Innovations in semiconductor manufacturing that makes current generation CMOS processing possible Multi-disciplinary technologies that could drive Moore's law forward significantly Design principles for microelectronic circuits and components that take advantage of technology miniaturization The semiconductor industry economic market trends and technical driving factors The complexity and cost associated with technology scaling have compelled researchers in the disciplines of engineering and physics to optimize previous generation nodes to improve system-on-chip performance. This is especially relevant to participate in the increased attractiveness of the Internet of Things (IoT). This book additionally provides scholarly and practical examples of principles in microelectronic circuit design and layout to mitigate technology limits of previous generation nodes. Readers are encouraged to intellectually apply the knowledge derived from this book to further research and innovation in prolonging Moore’s law and associated principles.

Defect Recognition and Image Processing in Semiconductors 1997

Defect Recognition and Image Processing in Semiconductors 1997
Author: J. Doneker
Publsiher: Routledge
Total Pages: 524
Release: 2017-11-22
Genre: Science
ISBN: 9781351456470

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Defect Recognition and Image Processing in Semiconductors 1997 provides a valuable overview of current techniques used to assess, monitor, and characterize defects from the atomic scale to inhomogeneities in complete silicon wafers. This volume addresses advances in defect analyzing techniques and instrumentation and their application to substrates, epilayers, and devices. The book discusses the merits and limits of characterization techniques; standardization; correlations between defects and device performance, including degradation and failure analysis; and the adaptation and application of standard characterization techniques to new materials. It also examines the impressive advances made possible by the increase in the number of nanoscale scanning techniques now available. The book investigates defects in layers and devices, and examines the problems that have arisen in characterizing gallium nitride and silicon carbide.

Materials Science Engineering

Materials Science   Engineering
Author: Anonim
Publsiher: Unknown
Total Pages: 906
Release: 2000
Genre: Biochemistry
ISBN: STANFORD:36105028829088

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The British National Bibliography

The British National Bibliography
Author: Arthur James Wells
Publsiher: Unknown
Total Pages: 1270
Release: 2000
Genre: English literature
ISBN: UOM:39015079755651

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Crystal Growth and Evaluation of Silicon for VLSI and ULSI

Crystal Growth and Evaluation of Silicon for VLSI and ULSI
Author: Golla Eranna
Publsiher: CRC Press
Total Pages: 432
Release: 2014-12-08
Genre: Science
ISBN: 9781040055854

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Silicon, as a single-crystal semiconductor, has sparked a revolution in the field of electronics and touched nearly every field of science and technology. Though available abundantly as silica and in various other forms in nature, silicon is difficult to separate from its chemical compounds because of its reactivity. As a solid, silicon is chemical