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Digitally assisted, fully integrated...
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Del Rio, David.
Digitally assisted, fully integrated, wideband transmitters for high-speed millimeter-wave wireless communication links
Record Type:
Electronic resources : Monograph/item
Title/Author:
Digitally assisted, fully integrated, wideband transmitters for high-speed millimeter-wave wireless communication linksby David del Rio ... [et al.].
other author:
Del Rio, David.
Published:
Cham :Springer International Publishing :2019.
Description:
xxii, 255 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Wireless communication systems.
Online resource:
http://dx.doi.org/10.1007/978-3-319-93281-1
ISBN:
9783319932811$q(electronic bk.)
Digitally assisted, fully integrated, wideband transmitters for high-speed millimeter-wave wireless communication links
Digitally assisted, fully integrated, wideband transmitters for high-speed millimeter-wave wireless communication links
[electronic resource] /by David del Rio ... [et al.]. - Cham :Springer International Publishing :2019. - xxii, 255 p. :ill., digital ;24 cm. - Analog circuits and signal processing,1872-082X. - Analog circuits and signal processing..
Introduction -- System level analysis of millimeter-wave wireless links -- Effect of Front-End Imperfections on Wideband Millimeter-Wave Signals -- Digital Compensation and Mitigation of I/Q gain and Phase Imbalance -- Design Methodology for BiCMOS mmW Integrated Circuits -- Upconverters -- Power Amplifiers -- Power Detectors -- A Fully Integrated and Digitally Assisted BiCMOS Transmitter for a 10-Gbps Wireless Link in the E-band.
This book presents design methods and considerations for digitally-assisted wideband millimeter-wave transmitters. It addresses comprehensively both RF design and digital implementation simultaneously, in order to design energy- and cost-efficient high-performance transmitters for mm-wave high-speed communications. It covers the complete design flow, from link budget assessment to the transistor-level design of different RF front-end blocks, such as mixers and power amplifiers, presenting different alternatives and discussing the existing trade-offs. The authors also analyze the effect of the imperfections of these blocks in the overall performance, while describing techniques to correct and compensate for them digitally. Well-known techniques are revisited, and some new ones are described, giving examples of their applications and proving them in real integrated circuits. Discusses the design of mm-wave transceivers from both the analog and digital design perspectives; Analyzes different well-known architectures and revisits some key aspects in order to make them suitable for mmW circuits; Covers design considerations at the system, block/circuit and transistor levels of abstraction; Enables readers to build high-performance, energy and cost-efficient mm-wave radios; Addresses circuit reliability and sensibility to environmental variations, in order to implement robust and auto-adjustable systems; Analyzes quantitatively the effect of different imperfections on the performance of the whole system, and proposes different methods to compensate for them and mitigate their effects; Applies design techniques described in real examples, demonstrating the transmission of multi-Gbps signals.
ISBN: 9783319932811$q(electronic bk.)
Standard No.: 10.1007/978-3-319-93281-1doiSubjects--Topical Terms:
182744
Wireless communication systems.
LC Class. No.: TK5103.2 / .D45 2019
Dewey Class. No.: 621.384
Digitally assisted, fully integrated, wideband transmitters for high-speed millimeter-wave wireless communication links
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Introduction -- System level analysis of millimeter-wave wireless links -- Effect of Front-End Imperfections on Wideband Millimeter-Wave Signals -- Digital Compensation and Mitigation of I/Q gain and Phase Imbalance -- Design Methodology for BiCMOS mmW Integrated Circuits -- Upconverters -- Power Amplifiers -- Power Detectors -- A Fully Integrated and Digitally Assisted BiCMOS Transmitter for a 10-Gbps Wireless Link in the E-band.
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This book presents design methods and considerations for digitally-assisted wideband millimeter-wave transmitters. It addresses comprehensively both RF design and digital implementation simultaneously, in order to design energy- and cost-efficient high-performance transmitters for mm-wave high-speed communications. It covers the complete design flow, from link budget assessment to the transistor-level design of different RF front-end blocks, such as mixers and power amplifiers, presenting different alternatives and discussing the existing trade-offs. The authors also analyze the effect of the imperfections of these blocks in the overall performance, while describing techniques to correct and compensate for them digitally. Well-known techniques are revisited, and some new ones are described, giving examples of their applications and proving them in real integrated circuits. Discusses the design of mm-wave transceivers from both the analog and digital design perspectives; Analyzes different well-known architectures and revisits some key aspects in order to make them suitable for mmW circuits; Covers design considerations at the system, block/circuit and transistor levels of abstraction; Enables readers to build high-performance, energy and cost-efficient mm-wave radios; Addresses circuit reliability and sensibility to environmental variations, in order to implement robust and auto-adjustable systems; Analyzes quantitatively the effect of different imperfections on the performance of the whole system, and proposes different methods to compensate for them and mitigate their effects; Applies design techniques described in real examples, demonstrating the transmission of multi-Gbps signals.
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