DocumentCode :
2728481
Title :
Novel low loss thin film materials for wireless 60 GHz application
Author :
Lopez, Aida L. Vera ; Bhattacharya, Swapan K. ; Morcillo, Carlos A. Donado ; Papapolymerou, John ; Choudhury, Debabani
Author_Institution :
School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA 30332
fYear :
2010
fDate :
1-4 June 2010
Firstpage :
1990
Lastpage :
1995
Abstract :
RXP is a novel and emerging low loss thin core experimental material that has shown promising results as an RF dielectric substrate. In this paper, Ring Resonator Method was utilized to characterize its dielectric properties (relative permittivity and loss tangent) from 30 to 70 GHz frequency domain. BT, a PCB compatible substrate, and RO3003™, an RF organic material, were also characterized for the purpose of comparison. The measured dielectric constant for RXP4 is found to be stable near 3.13, and the loss tangent remains below 0.005. For RXP1, the dielectric constant averages 4.2, and its loss tangent stays below 0.01. To verify application of RXP at higher frequencies, an aperture-coupled patch antenna was designed at 60 GHz and fabricated using three metal layers. The performance of the antenna was found to be comparable to that of Liquid Crystal Polymer (LCP) substrate. The achieved bandwidth was ~3 GHz, and the gain was around 4.7 dBi (simulation results). The measured bandwidth on the fabricated antenna was ~2 GHz. These results show for the first time that RXP can be a good candidate material for wireless 60 GHz application.
Keywords :
Antenna measurements; Bandwidth; Dielectric constant; Dielectric loss measurement; Dielectric losses; Dielectric materials; Dielectric substrates; Dielectric thin films; Radio frequency; Transistors; BT; RXP; aperture-coupled antenna; dielectric characterization; ring resonator;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Components and Technology Conference (ECTC), 2010 Proceedings 60th
Conference_Location :
Las Vegas, NV, USA
ISSN :
0569-5503
Print_ISBN :
978-1-4244-6410-4
Electronic_ISBN :
0569-5503
Type :
conf
DOI :
10.1109/ECTC.2010.5490675
Filename :
5490675
Link To Document :
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