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This book thoroughly reviews the present knowledge on silicon
micromechanical transducers and addresses emerging and future
technology challenges. Readers will acquire a solid theoretical and
practical background that will allow them to analyze the key
performance aspects of devices, critically judge a fabrication
process, and then conceive and design new ones for future
applications. Envisioning a future complex versatile microsystem,
the authors take inspiration from Richard Feynman's visionary talk
"There is Plenty of Room at the Bottom" to propose that the time
has come to see silicon sensors as part of a "Feynman Roadmap"
instead of the "More-than-Moore" technology roadmap. The sharing of
the author's industrially proven track record of development,
design, and manufacturing, along with their visionary approach to
the technology, will allow readers to jump ahead in their
understanding of the core of the topic in a very effective way.
Students, researchers, engineers, and technologists involved in
silicon-based sensor and actuator research and development will
find a wealth of useful and groundbreaking information in this
book.
This book thoroughly reviews the present knowledge on silicon
micromechanical transducers and addresses emerging and future
technology challenges. Readers will acquire a solid theoretical and
practical background that will allow them to analyze the key
performance aspects of devices, critically judge a fabrication
process, and then conceive and design new ones for future
applications. Envisioning a future complex versatile microsystem,
the authors take inspiration from Richard Feynman’s visionary
talk “There is Plenty of Room at the Bottom” to propose that
the time has come to see silicon sensors as part of a “Feynman
Roadmap” instead of the “More-than-Moore” technology roadmap.
The sharing of the author’s industrially proven track record of
development, design, and manufacturing, along with their visionary
approach to the technology, will allow readers to jump ahead in
their understanding of the core of the topic in a very effective
way. Students, researchers, engineers, and technologists involved
in silicon-based sensor and actuator research and development will
find a wealth of useful and groundbreaking information in this
book.
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