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Extending Moore's Law through Advanced Semiconductor Design and Processing Techniques (Hardcover)
Loot Price: R3,883
Discovery Miles 38 830
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Extending Moore's Law through Advanced Semiconductor Design and Processing Techniques (Hardcover)
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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.
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