Title :
A Single-Layer Compact HF-UHF Dual-Band RFID Tag Antenna
Author :
Ma, Zi Long ; Jiang, Li Jun ; Xi, Jingtian ; Ye, Terry Tao
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. of Hong Kong, Hong Kong, China
fDate :
7/4/1905 12:00:00 AM
Abstract :
This letter presents a novel dual-band (HF and UHF) radio frequency identification (RFID) tag antenna. Two key challenges are faced: the compact dimension and the impaired bandwidth due to the couplings between two band structures. To enable the implementation of whole design on a credit-card-size single-layer support, a spiral coil along the edges of the card is designed to handle the HF (13.56 MHz) near-field coupling, and the UHF antenna is placed inside the coil instead of outside. Meanwhile, a diagonal symmetric design consisting of two meander lines inside the spiral coil is adopted for UHF band. This structure supports multiple resonance modes around 915 MHz to broaden the working bandwidth under the large inductive circumstance from the HF coil. The proposed antenna is easy for adjustment with ways of handling both coarse tuning and fine-tuning. Its overall dimension is of a credit card size on a single-layer thin substrate. The design methodology and antenna measurement results are both presented and discussed in the letter.
Keywords :
HF antennas; UHF antennas; antenna testing; coils; multifrequency antennas; radiofrequency identification; spiral antennas; tuning; HF coil; antenna measurement; band structures; coarse tuning; credit-card-size single layer support; diagonal symmetric design; fine-tuning; frequency 13.56 MHz; impaired bandwidth; meander lines; multiple resonance modes; near-field coupling; radio frequency identification; single-layer compact HF-UHF dual-band RFID tag antenna; spiral coil; Antenna measurements; Coils; Impedance; Radiofrequency identification; Resonant frequency; UHF antennas; Compact structure; HF tag antenna; UHF tag antenna; dual-band radio frequency identification (RFID) tag antenna; single layer;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2012.2225821