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Tunable RF Components and Circuits: Applications in Mobile Handsets [Kõva köide]

Edited by (WiSpry, Incorporated, Irvine, California, USA)
  • Formaat: Hardback, 330 pages, kõrgus x laius: 234x156 mm, kaal: 635 g, 25 Tables, black and white; 18 Illustrations, color; 166 Illustrations, black and white
  • Sari: Devices, Circuits, and Systems
  • Ilmumisaeg: 16-Nov-2015
  • Kirjastus: CRC Press Inc
  • ISBN-10: 1498718892
  • ISBN-13: 9781498718899
  • Formaat: Hardback, 330 pages, kõrgus x laius: 234x156 mm, kaal: 635 g, 25 Tables, black and white; 18 Illustrations, color; 166 Illustrations, black and white
  • Sari: Devices, Circuits, and Systems
  • Ilmumisaeg: 16-Nov-2015
  • Kirjastus: CRC Press Inc
  • ISBN-10: 1498718892
  • ISBN-13: 9781498718899
An Industry Perspective on Key Tunable Technologies and Applications

Tunable RF Components and Circuits: Applications in Mobile Handsets provides a technical introduction to the state of the art in tunable radio frequency (RF) components, circuits, and applications and discusses the foundational work that has been done to date. Leading practitioners in the field share their expertise on tunable devices in mobile handset applications. Through these practical viewpoints, readers discover how to use tunable RF techniques and devices to develop successful product designs.

A substantial portion of the book focuses on antennas and antenna tuning, reflecting the dominance of the antenna tuning application in todays commercial market for tunable RF. The book explains how RF-microelectromechanical systems (RF-MEMS), barium strontium titinate (BST), silicon-on-insulator (SOI) field effect transistors (FETs), and high-performance complementary metal oxide semiconductors (CMOS) are used as enabling technologies for tunable functions in current and next-generation radio architectures. The book also describes power amplifier envelope tracking, an emerging and important technique for improving efficiency; presents a network operators perspective on the evolution of the handset front end; and explores emerging approaches to production testing of wireless devices.
Preface ix
Acknowledgments xiii
Series Editor xv
Editor xvii
Contributors xix
Chapter 1 Tunable RF Market Overview
1(22)
Jeffrey L. Hilbert
Chapter 2 RFSOI Technologies on HR Silicon Substrates for Reconfigurable Wireless Solutions
23(24)
Julio Costa
Chapter 3 BST Technology for Mobile Applications
47(26)
James G. Oakes
David W. Laks
Chapter 4 Tuned Antennas for Embedded Applications
73(30)
Frank Caimi
Chapter 5 Tunable and Adaptive Antenna Systems
103(20)
Laurent Desclos
Sebastian Rowson
Jeff Shamblin
Chapter 6 Effective Antenna Aperture Tuning with RF-MEMS
123(22)
Larry Morrell
Paul Tornatta
Chapter 7 RF-CMOS Impedance Tuners: Performance Metrics and Design Trade-Offs
145(20)
Tero Ranta
Chapter 8 Handset Antenna Tuning Using BST
165(26)
Paul McIntosh
Chapter 9 Aperture-Tunable Antennas: Handset OEM Perspective
191(14)
Ping Shi
Chapter 10 Power Amplifier Envelope Tracking
205(38)
Jeremy Hendy
Gerard Wimpenny
Chapter 11 MEMS Switching in the Handset RF Front End
243(14)
Igor Lalicevic
Chapter 12 Case Study of Tunable Radio Architectures
257(20)
Alpaslan Demir
Tanbir Haque
Chapter 13 Network Operator Perspectives
277(22)
Yuang Lou
Chapter 14 Testing Wireless Devices in Manufacturing
299(20)
Rob Brownstein
Minh-Chau Huynh
Index 319
Jeffrey L. Hilbert is the president and founder of WiSpry, Inc., a fabless semiconductor company utilizing CMOS-integrated radio frequency microelectromechanical systems (RF-MEMS) technology to develop tunable RF products for the cellular communications and wireless consumer electronics markets. He has more than 35 years of executive management and technical experience in a number of leading semiconductor and MEMS companies, including LSI Logic, Compass Design Automation, AMCC, Motorola, Harris, and Coventor. He received a BS in chemical engineering from the University of Florida and an MS in computer science from the Florida Institute of Technology, and has done course work toward a PhD in computer engineering from North Carolina State University.