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Showing 1 - 6 of 6 matches in All Departments
Circuit Design for RF Transceivers covers key building blocks which
are needed to make an integrated transceiver for wireless and
cellular applications, that is low-noise amplifiers, mixers,
voltage controlled oscillators, RF power amplifiers and
phase-locked loop systems. Starting from detailed RF concepts and
specifications, the authors discuss the circuits in detail and
provide solutions to many design problems. The circuits are
implemented in a wide range of modern technology processes.
Production requirements are taken into account, and measurement
results are presented and discussed. Several of the presented
circuits are used in IC products. The text also includes several RF
technologies (for example double-poly, Silicon-on-Anything,
SiGe-bipolar, RF-CMOS, etc.) and microwave design techniques, such
as transmission line concepts. In addition, the problem of
connecting the RF signals on-chip to the PCB and to the antenna
will be discussed, including the influence of the package, ESD and
bond pads.
This book investigates solutions, benefits, limitations, and costs associated with multi-standard operation of RF front-ends and their ability to adapt to variable radio environments. Next, it highlights the optimization of RF front-ends to allow maximum performance within a certain power budget, while targeting full integration. Finally, the book investigates possibilities for low-voltage, low-power circuit topologies in CMOS technology.
This text covers the analysis and design of all high-frequency oscillators required to realize integrated transceivers for wireless and wired applications. Starting with an in-depth review of basic oscillator theory, the authors provide a detailed analysis of many oscillator types and circuit topologies.
Applicable for bookstore catalogue
This book investigates solutions, benefits, limitations, and costs associated with multi-standard operation of RF front-ends and their ability to adapt to variable radio environments. Next, it highlights the optimization of RF front-ends to allow maximum performance within a certain power budget, while targeting full integration. Finally, the book investigates possibilities for low-voltage, low-power circuit topologies in CMOS technology.
This text covers the analysis and design of all high-frequency oscillators required to realize integrated transceivers for wireless and wired applications. Starting with an in-depth review of basic oscillator theory, the authors provide a detailed analysis of many oscillator types and circuit topologies.
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