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Mixed-Signal Circuits offers a thoroughly modern treatment of
integrated circuit design in the context of mixed-signal
applications. Featuring chapters authored by leading experts from
industry and academia, this book: Discusses signal integrity and
large-scale simulation, verification, and testing Demonstrates
advanced design techniques that enable digital circuits and
sensitive analog circuits to coexist without any compromise
Describes the process technology needed to address the performance
challenges associated with developing complex mixed-signal circuits
Deals with modeling topics, such as reliability, variability, and
crosstalk, that define pre-silicon design methodology and trends,
and are the focus of companies involved in wireless applications
Develops methods to move analog into the digital domain quickly,
minimizing and eliminating common trade-offs between performance,
power consumption, simulation time, verification, size, and cost
Details approaches for very low-power performances, high-speed
interfaces, phase-locked loops (PLLs), voltage-controlled
oscillators (VCOs), analog-to-digital converters (ADCs), and
biomedical filters Delineates the respective parts of a full
system-on-chip (SoC), from the digital parts to the baseband
blocks, radio frequency (RF) circuitries, electrostatic-discharge
(ESD) structures, and built-in self-test (BIST) architectures
Mixed-Signal Circuits explores exciting opportunities in wireless
communications and beyond. The book is a must for anyone involved
in mixed-signal circuit design for future technologies.
Noise Coupling is the root-cause of the majority of Systems on Chip
(SoC) product fails. The book discusses a breakthrough substrate
coupling analysis flow and modelling toolset, addressing the needs
of the design community. The flow provides capability to analyze
noise components, propagating through the substrate, the parasitic
interconnects and the package. Using this book, the reader can
analyze and avoid complex noise coupling that degrades RF and mixed
signal design performance, while reducing the need for conservative
design practices. With chapters written by leading international
experts in the field, novel methodologies are provided to identify
noise coupling in silicon. It additionally features case studies
that can be found in any modern CMOS SoC product for mobile
communications, automotive applications and readout front ends.
Mixed-Signal Circuits offers a thoroughly modern treatment of
integrated circuit design in the context of mixed-signal
applications. Featuring chapters authored by leading experts from
industry and academia, this book: Discusses signal integrity and
large-scale simulation, verification, and testing Demonstrates
advanced design techniques that enable digital circuits and
sensitive analog circuits to coexist without any compromise
Describes the process technology needed to address the performance
challenges associated with developing complex mixed-signal circuits
Deals with modeling topics, such as reliability, variability, and
crosstalk, that define pre-silicon design methodology and trends,
and are the focus of companies involved in wireless applications
Develops methods to move analog into the digital domain quickly,
minimizing and eliminating common trade-offs between performance,
power consumption, simulation time, verification, size, and cost
Details approaches for very low-power performances, high-speed
interfaces, phase-locked loops (PLLs), voltage-controlled
oscillators (VCOs), analog-to-digital converters (ADCs), and
biomedical filters Delineates the respective parts of a full
system-on-chip (SoC), from the digital parts to the baseband
blocks, radio frequency (RF) circuitries, electrostatic-discharge
(ESD) structures, and built-in self-test (BIST) architectures
Mixed-Signal Circuits explores exciting opportunities in wireless
communications and beyond. The book is a must for anyone involved
in mixed-signal circuit design for future technologies.
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