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1. INTRODUCTION TO WIRELESS SYSTEMS
2. TRANSMISSION LINES AND MICROWAVE NETWORKS
3. NOISE AND DISTORTION IN MICROWAVE SYSTEMS
4. ANTENNAS AND PROPAGATION FOR WIRELESS SYSTEMS
5. FILTERS
6. AMPLIFIERS
7. MIXERS
8. TRANSISTOR OSCILLATORS AND FREQUENCY
9. MODULATION TECHNIQUES
10. RECEIVER DESIGN
Appendices 1. Wireless System Frequency Bands
Appendices 2. Useful Mathematical Results
Appendices 3. Fourier and Laplace Transforms
Appendices 4. The Complementary Error Function
Appendices 5. Chebyshev Polynomials
Appendices 6. Decibels and Nepers
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Understand every aspect of modern wireless system design from the antenna to the baseband level-Da
vid Pozar's Microwave and RF Design of Wireless systems offers the most complete and up-to-date pr
esentation of the operation and design of modern wireless telecommunication systems. Integrating a
wide range of topics into one design-oriented framework, the text covers antennas and propagation
, noise characterization of systems and components, digital modulation methods and the design and
operation of wireless components such as filters, amplifiers, mixers, and phase-locked loops. This
comprehensive approach helps readers understand how the various technologies involved in wireless
systems are interrelated. The text builds on a strong foundation of fundamental principles, and o
ffers many practical examples and design problems. You'll learn how to; 1. design modern wireless
telecommunication and data transmission systems 2. analyze a complete radio system, from the tran
smitter through the receiver front-end. 3. evaluate factors such as carrier-to-noise ratio, receiv
er noise figure, intermodulation products, spurious mixer products, image frequencies, dynamic ran
ge, rayleigh fading, bit error rate and maximum data rate.
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University of Massachusetts at Amherst
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