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Mixed signal VLSI wireless design : circuits and systems

Author: Emad N Farag; Mohamed I Elmasry
Publisher: Boston : Kluwer Academic, ©2000.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:

Today one of the most challenging areas for VLSI designers is VLSI circuit and system design for wireless applications. The challenge is immense and the need for new generation of VLSI designers, who  Read more...

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Genre/Form: Electronic books
Additional Physical Format: Print version:
Farag, Emad N.
Mixed signal VLSI wireless design.
Boston : Kluwer Academic, ©2000
(DLC) 99046689
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Emad N Farag; Mohamed I Elmasry
ISBN: 0792386876 9780792386872 0306473070 9780306473074 6610207909 9786610207909
OCLC Number: 231582033
Description: 1 online resource (xxvi, 319 pages) : illustrations
Contents: Cover --
Table of Contents --
List of Figures --
List of Tables --
Preface --
Acknowledgments --
List of Acronyms --
Chapter 1. Introduction --
1.1 The History of Wireless Communications --
1.2 Wireless Communications Basics --
1.3 Wireless Communications Standards --
1.4 Terminology --
1.5 Book Organization --
Chapter 2. Wireless Communication Systems --
Overview --
2.1 Introduction --
2.2 Digital Communication Systems --
2.3 Minimum Bandwidth Requirement (The Nyquist Limit) --
2.4 The Shannon Limit --
2.5 Optimum Receiver Design for Band-pass Digital Systems --
Chapter 3. The Mobile Radio --
3.1 Introduction --
3.2 The Cellular Concept --
3.3 Channel Impairments --
3.4 Large Scale Fading --
3.5 Doppler Shift --
3.6 Small Scale Fading --
3.7 Diversity Techniques in Wireless Communications --
Chapter 4. Digital Modulation Schemes --
4.1 Introduction --
4.2 Amplitude Shift Keying --
4.3 Phase Shift Keying --
4.4 Frequency Shift Keying --
4.5 Digital Modulation Techniques Comparisons --
Chapter 5. Spread Spectrum --
5.1 Introduction --
5.2 Basic Principles of Spread Spectrum --
5.3 Spread Spectrum Techniques --
5.4 Pseudorandom Noise Sequence --
5.5 Practical Considerations in Spread Spectrum Systems --
Chapter 6. Receiver Architectures --
6.1 Introduction --
6.2 Noise Figure --
6.3 Intermodulation distortion --
6.4 The Superheterodyne Receiver --
6.5 The Homodyne Receiver --
6.6 Software Radio --
Chapter 7. Analog to Digital Conversion --
7.1 Introduction --
7.2 Performance Metrics of Analog-to-Digital Converters --
7.3 Sampling --
7.4 Band-pass Sampling --
7.5 Quantization --
7.6 Types of Analog-to-Digital Converters --
7.7 Sigma-Delta Analog-to-Digital Converters --
Chapter 8. VLSI Design Issues in Wireless Transceiver Design --
8.1 Introduction --
8.2 Transceiver Design Constraints --
8.3 Baseband Subsystem Design --
8.4 RF Subsystem Design --
Chapter 9. Low-Power Design Techniques --
9.1 Introduction --
9.2 Sources of Power Dissipation --
9.3 Estimating the Power Dissipation --
9.4 Low-Power Examples of Portable Systems --
9.5 Reducing the Power Dissipation at the Device and Circuit Levels --
9.6 Low-Voltage Low-Power Operation --
9.7 Reducing the Power Dissipation at the Architecture and Algorithm Levels --
Chapter 10. Amplifier Design for Wireless Communication Systems --
10.1 Introduction --
10.2 Amplifier Design --
10.3 Low Noise Amplifier --
10.4 Automatic Gain Control Amplifiers --
10.5 Power Amplifiers --
Chapter 11. Phase Locked Loops --
11.1 Introduction --
11.2 Operation of the Phase Locked Loop --
11.3 Phase Detectors --
11.4 Frequency Dividers --
11.5 Oscillator Design --
Chapter 12. Frequency Synthesizers --
12.1 Introduction --
12.2 Frequency synthesizer (FS) parameters --
12.3 Frequency Synthesizer Techniques --
12.4 Analyzing phase noise in frequency synthesizers --
12.5 Summary --
Bibliography
Responsibility: Emad N. Farag and Mohamed I. Elmasry.

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`...excellent overview of the key aspects of wireless systems including system fundamentals, system design issues, and electronic implementation issues including discussions of A/D and D/A Read more...

 
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