DocumentCode
3104852
Title
Exploration of printing-friendly RFID antenna designs on paper substrates
Author
Xi, Jingtian ; Zhu, Hailong ; Ye, Terry Tao
Author_Institution
Hong Kong R&D Center for Logistics & Supply Chain Manage., Hong Kong, China
fYear
2011
fDate
12-14 April 2011
Firstpage
38
Lastpage
44
Abstract
Printed RFID antenna is a promising solution for item-level tagging applications. In order to integrate the antenna printing with the package printing process, it is highly preferred that antenna geometries are printed on paper substrates. However, the electromagnetic property and thickness of paper substrates are subject to change. Thus wideband and material-insensitive printed RFID antennas are desired. This paper presents an analytical model for wideband tag antenna designs. Two matching scenarios, i.e. single-tuned match and double-tuned match, are particularly discussed in detail. Two slim-line antennas printed on paper with screen printing technique are proposed. They benefit from the single-tuned/double-tuned bandwidth optimization and demonstrate a great potential in conductive ink saving. Influences of dielectrics on the bandwidth performance are also studied. It is demonstrated that the proposed double-tuned antenna can cover the whole UHF RFID band, and can tolerate a considerable variation in the permittivity like 1~9 on thin paper substrates.
Keywords
UHF antennas; broadband antennas; microstrip antennas; paper; printing; radiofrequency identification; UHF RFID band; analytical model; double-tuned antenna; double-tuned match; electromagnetic property; material-insensitive printed RFID antennas; package printing process; paper substrates; permittivity; printed-friendly RFID antenna designs; screen printing technique; single-tuned match; single-tuned-double-tuned bandwidth optimization; slim-line antennas; wideband tag antenna designs; Bandwidth; Integrated circuit modeling; Loaded antennas; Mathematical model; Printing; Substrates; UHF RFID; double-tuning; material-insensitive; paper substrates; printed RFID antenna; slim-line geometry; wideband;
fLanguage
English
Publisher
ieee
Conference_Titel
RFID (RFID), 2011 IEEE International Conference on
Conference_Location
Orlando, FL
Print_ISBN
978-1-4244-9607-5
Type
conf
DOI
10.1109/RFID.2011.5764634
Filename
5764634
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