Description: Antenna Design Solutions for RFID Tags Based on Metamaterial-Inspired Resonators and Other Resonant Structures Please note: this item is printed on demand and will take extra time before it can be dispatched to you (up to 20 working days). Author(s): Simone Zuffanelli Format: Hardback Publisher: Springer International Publishing AG, Switzerland Imprint: Springer International Publishing AG ISBN-13: 9783319620299, 978-3319620299 Synopsis This book describes innovative design solutions for radio-frequency identification (RFID) tags and antennas. Focusing mainly on passive ultra-high-frequency (UHF)-RFID tag antennas, it examines novel approaches based on the use of metamaterial-inspired resonators and other resonant structures as radiating elements. It also offers an exhaustive analysis of the radiation properties of several metamaterial-inspired resonators such as the split ring resonator (SRR) and related structures. Further, it discusses in detail an innovative technology for the RFID tagging of optical discs, which has demonstrated a significant improvement over the state of the art and resulted in a patent. By covering the entire research cycle of theory, design/simulation and fabrication/evaluation of RFID tags and antennas, while also reporting on cutting-edge technologies, the book provides graduate students, researchers and practitioners alike with a comprehensive and timely overview of RFID systems, and a closer look at several radiating structures.
Price: 72.55 GBP
Location: Aldershot
End Time: 2024-01-26T09:01:52.000Z
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Book Title: Antenna Design Solutions for RFID Tags Based on Metamaterial-I...
Subject Area: Material Science, Electrical Engineering
Item Height: 235mm
Item Width: 155mm
Author: Simone Zuffanelli
Publication Name: Antenna Design Solutions for RFID Tags Based on Metamaterial-Inspired Resonators and Other Resonant Structures
Format: Hardcover
Language: English
Publisher: Springer International Publishing A&G
Publication Year: 2017
Type: Textbook
Item Weight: 3731g
Number of Pages: 149 Pages