Title :
Multi-physics design and performance of a surface- micromachined Ka-band cavity backed patch antenna
Author :
Lukic, M. ; Kim, K. ; Lee, Y. ; Saito, Y. ; Filipovic, D.S.
Author_Institution :
Univ. of Colorado, Boulder
fDate :
Oct. 29 2007-Nov. 1 2007
Abstract :
A rectangular coaxial line fed cavity backed patch antenna element for a Ka-band phased array at 36 GHz is presented in this paper. The antenna is fabricated by a sequential microfabrication surface micromachining process with ten structural layers. The patch is 2.8 mm long and 3.2 mm wide and has two slits for impedance matching and six holes for releasing the sacrificial photoresist. It is supported with the feeding probe and two metallic posts located in the plane with zero E-field. The electromagnetic-thermal-stress analysis and design are conducted with the finite element and finite integration codes. Individual antenna elements have impedance bandwidth of about 5.1% around 36 GHz, with simulated gain and radiation efficiency of about 6.8 dBi and 95%, respectively.
Keywords :
antenna phased arrays; impedance matching; micromachining; microstrip antennas; Ka-band phased array; electromagnetic-thermal-stress analysis; electromagnetic-thermal-stress design; feeding probe; finite element codes; finite integration codes; impedance matching; metallic posts; multiphysics design; rectangular coaxial line fed cavity backed patch antenna; sacrificial photoresist; sequential microfabrication surface micromachining; simulated gain; surface-micromachined Ka-band cavity backed patch antenna; Antenna arrays; Coaxial components; Electromagnetic analysis; Finite element methods; Impedance matching; Micromachining; Patch antennas; Phased arrays; Probes; Resists; Cavity-backing; Multi-physics modeling; Phased array; Surface micromachining;
Conference_Titel :
Microwave and Optoelectronics Conference, 2007. IMOC 2007. SBMO/IEEE MTT-S International
Conference_Location :
Brazil
Print_ISBN :
978-1-4244-0661-6
Electronic_ISBN :
978-1-4244-0661-6
DOI :
10.1109/IMOC.2007.4404272