Das erste Lehrbuch der Mikrowellentechnik aus der Perspektive der drahtlosen Kommunikation! Erläutert werden hier vorrangig Aspekte des Hardware-Designs. Dreizehn Kapitel, jedes von einem Spezialisten auf dem jeweiligen Gebiet verfasst, behandeln Grundlagen der Technologie von Elektronikbauteilen mit niedrigem Stromverbrauch. Das Werk entstand im Rahmen einer interdisziplinären Forschungsinitiative, finanziert vom US-Verteidigungsministerium.
Das erste Lehrbuch der Mikrowellentechnik aus der Perspektive der drahtlosen Kommunikation! Erläutert werden hier vorrangig Aspekte des Hardware-Designs. Dreizehn Kapitel, jedes von einem Spezialisten auf dem jeweiligen Gebiet verfasst, behandeln Grundlagen der Technologie von Elektronikbauteilen mit niedrigem Stromverbrauch. Das Werk entstand im Rahmen einer interdisziplinären Forschungsinitiative, finanziert vom US-Verteidigungsministerium. Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
TATSUO ITOH, PhD, is Professor in the Electrical Engineering Department at UCLA. He has published several hundred book chapters and journal articles and is also editor of Numerical Techniques for Microwave and Millimeter-Wave Passive Structures and Finite Element Software for Microwave Engineering (both from Wiley). GEORGE HADDAD, PhD, is Professor of Electrical Engineering and Computer Science at the University of Michigan. He has authored numerous publications in the areas of solid-state microwave devices and circuits. JAMES HARVEY is a Research Program Manager at the Electronics Division, Army Research Office, with primary responsibility for the fields of electromagnetics, antennas and antenna structures, innovative microwave and millimeter-wave circuit integration, low-power/minimum-power system design, and landmine detection.
Inhaltsangabe
Introduction (James F Harvey, Robert J. Trew, and Dwight L Woolard). 1. Wireless Communications System Architecture and Performance (Wayne Stark and Larry Milstein). 2. Advanced GaAs-Based HBT Designs for Wireless Communications Systems (M. Frank Chang and Peter M. Asbeck). 3. InP-Based Devices and Circuits (Dimitris Pavlidis, Donald Sawdai, and George I. Haddad). 4. Si/SiGe HBT Technology for Low-Power Mobile Communications System Applications (Lany Larson and M. Frank Chang). 5. Flicker Noise Reduction in GaN Field-Effect Transistors (Kang L. Wang and Alexander Balandin). 6. Power Amplifier Approaches for High Efficiency and Linearity (Peter M. Asbeck, Zoya Popovic, Tatsuo Itoh, and Lany Larson). 7. Characterization of Amplifier Nonlinearities and Their Effects in Communications Systems (Jack East, Wayne Stark, and George I. Haddad). 8. Planar-Oriented Passive Components (Yongxi Qian and Tatsuo Itoh). 9. Active and High-Performance Antennas (William R. Deal, Vesna Radisic, Yongxi Qian, and Tatsuo Itoh). 10. Microelectromechanical Switches for RF Applications (Sergio P. Pacheco and Linda P. B. Katehi). 11. Micromachined K-Band High-Q Resonators, Filters, and Low Phase Noise Oscillators (Andrew R. Brown and Gabriel M. Rebeiz,). 12. Transceiver Front-End Architectures Using Vibrating Micromechanical Signal Processors (Clark T.-C. Nguyen). Index.
Introduction (James F Harvey, Robert J. Trew, and Dwight L Woolard). 1. Wireless Communications System Architecture and Performance (Wayne Stark and Larry Milstein). 2. Advanced GaAs-Based HBT Designs for Wireless Communications Systems (M. Frank Chang and Peter M. Asbeck). 3. InP-Based Devices and Circuits (Dimitris Pavlidis, Donald Sawdai, and George I. Haddad). 4. Si/SiGe HBT Technology for Low-Power Mobile Communications System Applications (Lany Larson and M. Frank Chang). 5. Flicker Noise Reduction in GaN Field-Effect Transistors (Kang L. Wang and Alexander Balandin). 6. Power Amplifier Approaches for High Efficiency and Linearity (Peter M. Asbeck, Zoya Popovic, Tatsuo Itoh, and Lany Larson). 7. Characterization of Amplifier Nonlinearities and Their Effects in Communications Systems (Jack East, Wayne Stark, and George I. Haddad). 8. Planar-Oriented Passive Components (Yongxi Qian and Tatsuo Itoh). 9. Active and High-Performance Antennas (William R. Deal, Vesna Radisic, Yongxi Qian, and Tatsuo Itoh). 10. Microelectromechanical Switches for RF Applications (Sergio P. Pacheco and Linda P. B. Katehi). 11. Micromachined K-Band High-Q Resonators, Filters, and Low Phase Noise Oscillators (Andrew R. Brown and Gabriel M. Rebeiz,). 12. Transceiver Front-End Architectures Using Vibrating Micromechanical Signal Processors (Clark T.-C. Nguyen). Index.
Rezensionen
"...presents the latest findings from military-sponsored academic research on wireless communications from a hardware design perspective..." (SciTech Book News, Vol. 25, No. 4, December 2001)
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