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Adaptive Low-Power Circuits for Wireless Communications - Aleksandar Tasic
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Adaptive Low-Power Circuits for Wireless Communications - novo libro

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Well over a billion people are currently using cellular telephones, and this number is expected to grow to over two billion in the next few years. It is remarkable that a device that was … mais…

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ISBN: 9781402052507

Adaptive radio transceivers require a comprehensive theoretical framework in order to optimize their performance. Adaptive Low-Power Circuits for Wireless Communications provides this fra… mais…

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Adaptive Low-Power Circuits for Wireless Communications - Aleksandar Tasic/ John R. Long/ Wouter A. Serdijn
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Aleksandar Tasic/ John R. Long/ Wouter A. Serdijn:
Adaptive Low-Power Circuits for Wireless Communications - novo libro

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ISBN: 9781402052507

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Adaptive Low-Power Circuits for Wireless Communications - novo libro

ISBN: 9781402052507

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Adaptive Low-Power Circuits for Wireless Communications - novo libro

2006, ISBN: 9781402052507

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EAN (ISBN-13): 9781402052507
ISBN (ISBN-10): 1402052502
Ano de publicação: 2007
Editor/Editora: Springer-Verlag GmbH
221 Páginas
Língua: eng/Englisch

Livro na base de dados desde 2009-09-20T05:34:34+01:00 (Lisbon)
Página de detalhes modificada pela última vez em 2024-03-30T20:41:26+00:00 (Lisbon)
Número ISBN/EAN: 1402052502

Número ISBN - Ortografia alternativa:
1-4020-5250-2, 978-1-4020-5250-7
Ortografia alternativa e termos de pesquisa relacionados:
Autor do livro: john long, aleksandar
Título do livro: signal, communication power, wireless communications, circuits


Dados da editora

Autor: Aleksandar Tasic; Wouter A. Serdijn; John R. Long
Título: Analog Circuits and Signal Processing; Adaptive Low-Power Circuits for Wireless Communications
Editora: Springer; Springer Netherland
221 Páginas
Ano de publicação: 2007-03-06
Dordrecht; NL
Língua: Inglês
149,79 € (DE)
154,00 € (AT)
177,00 CHF (CH)
Available
XV, 221 p.

EA; E107; eBook; Nonbooks, PBS / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Elektrotechnik; Verstehen; Intercept Point; LED; Phase; RAM; Radio; Signal; Transceiver; communication; integrated circuit; micro-alloy transistor; model; C; Electrical Engineering; Electronics and Microelectronics, Instrumentation; Microwaves, RF and Optical Engineering; Circuits and Systems; Communications Engineering, Networks; Electrical and Electronic Engineering; Electronics and Microelectronics, Instrumentation; Microwaves, RF Engineering and Optical Communications; Electronic Circuits and Systems; Communications Engineering, Networks; Engineering; Elektronik; Schaltkreise und Komponenten (Bauteile); Nachrichtententechnik, Telekommunikation; BB

FOREWORD. OUTLINE. LIST OF ABBREVIATIONS. 1 INTRODUCTION. 1.1 Why Silicon? 1.2 Why Wireless and RF? 1.3 Why Low-Power and Adaptive RF? 1.4 Why Multistandard and Adaptive RF? 1.5 Adaptivity Objectives. References. 2 PERFORMANCE PARAMETERS OF RF CIRCUITS. 2.1 Gain Parameters. 2.2 Nonlinearity Parameters. 2.3 Noise Figure. 2.4 Phase Noise. 2.5 Dynamic Range. 2.6 RF Front-End Performance Parameters. 2.7 Conclusions. References. 3 SPECTRUM-SIGNAL TRANSFORMATION. 3.1 Transceiver Architectures. 3.2 Signal and Spectral Transformations. 3.3 Mixer-Oscillator Models. 3.4 Image-Rejection Ratio Model. 3.5 IRR Model of Double-Quadrature Downconverters. 3.6 Conclusions. References. 4 SELECTION OF PERFORMANCE PARAMETERS FOR RECEIVER CIRCUITS. 4.1 System Considerations. 4.2 Independent Selection of NF And IIP3 Specifications. 4.3 Mutually Dependent Selection of NF And IIP3 Specifications. 4.4 Equilibrium, Optimality and Equality Criteria. 4.5 Notes on Power Consumption. 4.6 Performance Trade-offs in an RF Circuit. 4.7 Conclusions. References. 5 ADAPTIVITY OF LOW-NOISE AMPLIFIERS. 5.1 Adaptivity Phenomena of Amplifiers. 5.2 Performance Parameters of Inductively-Degenerated Low-Noise Amplifiers. 5.3 Adaptivity Models of Low-Noise Amplifiers 5.4 Conclusions. References. 6 ADAPTIVE VOLTAGE-CONTROLLED OSCILLATORS. 6.1 Adaptivity Phenomena of Oscillators. 6.2 An Adaptive Voltage-Controlled Oscillator. 6.3 Phase-Noise Model of LC Voltage-Controlled Oscillators. 6.4 Phase-Noise Performance of Quasi-Tapped Voltage-Controlled Oscillators. 6.5 Adaptivity Figures of Merit of Voltage-Controlled Oscillators. 6.6 K-rail Diagrams – Comprehensive Performance Characterization of Voltage-Controlled Oscillators. 6.7 Oscillator Design Problem. 6.8 Conclusions. References. 7 DESIGN OF ADAPTIVE VOLTAGE-CONTROLLED OSCILLATORS AND ADAPTIVE RF FRONT-ENDS. 7.1 An Adaptive Low-PowerVoltage-Controlled Oscillator. 7.2 A Multistandard Adaptive Voltage-Controlled Oscillator. 7.3 Multistandard Adaptive RF Front-Ends. 7.4 Conclusions. References. A Real-to-Complex-to-Real Transformation. B Transformer-Feedback Degeneration of Low-Noise Amplifiers. INDEX.

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