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This book explores up-to-date research trends and achievements on
low-power and high-speed technologies in both electronics and
optics. It offers unique insight into low-power and high-speed
approaches ranging from devices, ICs, sub-systems and networks that
can be exploited for future mobile devices, 5G networks, Internet
of Things (IoT), and data centers. It collects heterogeneous topics
in place to catch and predict future research directions of
devices, circuits, subsystems, and networks for low-power and
higher-speed technologies. Even it handles about artificial
intelligence (AI) showing examples how AI technology can be
combined with concurrent electronics. Written by top international
experts in both industry and academia, the book discusses new
devices, such as Si-on-chip laser, interconnections using
graphenes, machine learning combined with CMOS technology,
progresses of SiGe devices for higher-speed electronices for optic,
co-design low-power and high-speed circuits for optical
interconnect, low-power network-on-chip (NoC) router, X-ray quantum
counting, and a design of low-power power amplifiers. Covers modern
high-speed and low-power electronics and photonics. Discusses novel
nano-devices, electronics & photonic sub-systems for high-speed
and low-power systems, and many other emerging technologies like Si
photonic technology, Si-on-chip laser, low-power driver for optic
device, and network-on-chip router. Includes practical applications
and recent results with respect to emerging low-power systems.
Addresses the future perspective of silicon photonics as a
low-power interconnections and communication applications.
Presenting the cutting-edge results of new device developments and
circuit implementations, High-Speed Devices and Circuits with THz
Applications covers the recent advancements of nano devices for
terahertz (THz) applications and the latest high-speed data rate
connectivity technologies from system design to integrated circuit
(IC) design, providing relevant standard activities and technical
specifications. Featuring the contributions of leading experts from
industry and academia, this pivotal work: Discusses THz sensing and
imaging devices based on nano devices and materials Describes
silicon on insulator (SOI) multigate nanowire field-effect
transistors (FETs) Explains the theory underpinning nanoscale
nanowire metal-oxide-semiconductor field-effect transistors
(MOSFETs), simulation methods, and their results Explores the
physics of the silicon-germanium (SiGe) heterojunction bipolar
transistor (HBT), as well as commercially available SiGe HBT
devices and their applications Details aspects of THz IC design
using standard silicon (Si) complementary metal-oxide-semiconductor
(CMOS) devices, including experimental setups for measurements,
detection methods, and more An essential text for the future of
high-frequency engineering, High-Speed Devices and Circuits with
THz Applications offers valuable insight into emerging technologies
and product possibilities that are attractive in terms of mass
production and compatibility with current manufacturing facilities.
This book explores up-to-date research trends and achievements on
low-power and high-speed technologies in both electronics and
optics. It offers unique insight into low-power and high-speed
approaches ranging from devices, ICs, sub-systems and networks that
can be exploited for future mobile devices, 5G networks, Internet
of Things (IoT), and data centers. It collects heterogeneous topics
in place to catch and predict future research directions of
devices, circuits, subsystems, and networks for low-power and
higher-speed technologies. Even it handles about artificial
intelligence (AI) showing examples how AI technology can be
combined with concurrent electronics. Written by top international
experts in both industry and academia, the book discusses new
devices, such as Si-on-chip laser, interconnections using
graphenes, machine learning combined with CMOS technology,
progresses of SiGe devices for higher-speed electronices for optic,
co-design low-power and high-speed circuits for optical
interconnect, low-power network-on-chip (NoC) router, X-ray quantum
counting, and a design of low-power power amplifiers. Covers modern
high-speed and low-power electronics and photonics. Discusses novel
nano-devices, electronics & photonic sub-systems for high-speed
and low-power systems, and many other emerging technologies like Si
photonic technology, Si-on-chip laser, low-power driver for optic
device, and network-on-chip router. Includes practical applications
and recent results with respect to emerging low-power systems.
Addresses the future perspective of silicon photonics as a
low-power interconnections and communication applications.
Presenting the cutting-edge results of new device developments and
circuit implementations, High-Speed Devices and Circuits with THz
Applications covers the recent advancements of nano devices for
terahertz (THz) applications and the latest high-speed data rate
connectivity technologies from system design to integrated circuit
(IC) design, providing relevant standard activities and technical
specifications. Featuring the contributions of leading experts from
industry and academia, this pivotal work: Discusses THz sensing and
imaging devices based on nano devices and materials Describes
silicon on insulator (SOI) multigate nanowire field-effect
transistors (FETs) Explains the theory underpinning nanoscale
nanowire metal-oxide-semiconductor field-effect transistors
(MOSFETs), simulation methods, and their results Explores the
physics of the silicon-germanium (SiGe) heterojunction bipolar
transistor (HBT), as well as commercially available SiGe HBT
devices and their applications Details aspects of THz IC design
using standard silicon (Si) complementary metal-oxide-semiconductor
(CMOS) devices, including experimental setups for measurements,
detection methods, and more An essential text for the future of
high-frequency engineering, High-Speed Devices and Circuits with
THz Applications offers valuable insight into emerging technologies
and product possibilities that are attractive in terms of mass
production and compatibility with current manufacturing facilities.
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