Title :
Reconfigurable independent multiband printed inverted F-antenna for wireless USB applications
Author :
Soliman, Ahmed ; Elsheakh, Dalia ; Abdallah, Esmat ; El-Henawy, Hadia
Author_Institution :
Microstrip Dept., Electron. Res. Inst., Giza, Egypt
Abstract :
A novel reconfigurable independent multiband CPW fed printed inverted F-antenna is presented in this paper for USB and wireless communication applications. The proposed antenna consists of four arms CPW fed IFAs loaded with four capacitive plates for size reduction. To avoid frequency steering problem, four varactor diodes are added. Varactor diodes with variable capacitors are added on each printed-IFA arms to electrically and independently tune the operating resonant frequencies over a wide frequency range. The size of the USB antenna is 16 × 20 mm2 which makes it easy to be integrated into USB package. Depending on the voltage applied to the vractor diode, the resonant frequencies could be operated at 1.3 GHz, 1.6 GHz, 2.8 GHz and 4.9 GHz and could be tuned over frequency range 11.5%, 12.5%, 25% and 28.5%, respectively from its resonant frequency. i.e., it covers several communication standards. The radiation patterns are provided. Very good agreements are achieved between measurements and EM simulations with the theoretical predictions.
Keywords :
UHF antennas; antenna feeds; antenna radiation patterns; coplanar waveguides; microstrip antennas; multifrequency antennas; peripheral interfaces; planar inverted-F antennas; varactors; EM simulations; antenna radiation patterns; capacitive plates; four arms CPW fed IFAs; frequency 1.3 GHz; frequency 1.6 GHz; frequency 2.8 GHz; frequency 4.9 GHz; frequency steering problem; operating resonant frequency; reconfigurable independent multiband CPW fed printed inverted F-antenna; size reduction; varactor diodes; variable capacitors; wireless USB applications; wireless communication; Antenna measurements; Antennas; Resonant frequency; Universal Serial Bus; Varactors; Wireless communication; Universal serial bus(USB); coplanar wave guide; multiband; printed inverted Fantenna (IFA);
Conference_Titel :
Microwave Conference (EuMC), 2013 European
Conference_Location :
Nuremberg