DocumentCode
1029106
Title
A Monolithic Phased Array Using 3-bit Distributed RF MEMS Phase Shifters
Author
Topalli, Kagan ; Civi, Özlem Aydin ; Demir, Simsek ; Koc, Sencer ; Akin, Tayfun
Author_Institution
Middle East Tech. Univ., Ankara
Volume
56
Issue
2
fYear
2008
Firstpage
270
Lastpage
277
Abstract
This paper presents a novel electronically scanning phased-array antenna with 128 switches monolithically implemented using RF microelectromechanical systems (MEMS) technology. The structure, which is designed at 15 GHz, consists of four linearly placed microstrip patch antennas, 3-bit distributed RF MEMS low-loss phase shifters, and a corporate feed network. MEMS switches and high-Q metal-air-metal capacitors are employed as loading elements in the phase shifter. The system is fabricated monolithically using an in-house surface micromachining process on a glass substrate and occupies an area of 6 cm times 5 cm. The measurement results show that the phase shifter can provide nearly 20deg/50deg/95deg phase shifts and their combinations at the expense of 1.5-dB average insertion loss at 15 GHz for eight combinations. It is also shown by measurements that the main beam can be steered to required directions by suitable settings of the RF MEMS phase shifters.
Keywords
antenna feeds; antenna phased arrays; micromachining; microstrip antenna arrays; microswitches; microwave antenna arrays; microwave phase shifters; 3-bit RF MEMS phase shifter; MEMS switch; corporate feed network; electronic scanning; frequency 15 GHz; glass substrate; metal-air-metal capacitor; microelectromechanical system; microstrip patch antenna; monolithic phased array antenna; surface micromachining process; Feeds; Micromechanical devices; Microstrip antenna arrays; Microstrip antennas; Patch antennas; Phase measurement; Phase shifters; Phased arrays; Radiofrequency microelectromechanical systems; Switches; Microelectromechanical systems (MEMS); micromachining; microwave; phase shifter; phased array;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2007.914377
Filename
4427253
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