DocumentCode :
1088784
Title :
Optimization and Implementation of Impedance-Matched True-Time-Delay Phase Shifters on Quartz Substrate
Author :
Lakshminarayanan, Balaji ; Weller, Thomas M.
Author_Institution :
Dept. of Electr. & Comput. Eng., California Univ., San Diego, La Jolla, CA
Volume :
55
Issue :
2
fYear :
2007
Firstpage :
335
Lastpage :
342
Abstract :
In this paper, design equations for true-time-delay microelectromechanical (MEM) phase shifters comprised of impedance-matched slow-wave unit cells are presented. The input to these equations requires only the specification of the maximum frequency of operation (fmax) and substrate dielectric constant (epsi r). The basis of the design methodology is to maximize the phase shift versus insertion loss performance. Experimental data for three 1-bit devices that are 11.44-mm long (fmax=12 GHz), 4.6-mm long (fmax=50 GHz), and 3.12-mm long (fmax=110 GHz) shows a maximum phase deviation of 3% compared to predicted performance, with S11 less than -19 dB from 1 to 110 GHz. The worst case insertion loss is 0.9 dB for fmax=12 GHz, 1.16 dB for fmax=50 GHz, and 2.65 dB for fmax=110 GHz. The MEM beams are actuated using high-resistance SiCr bias lines with typical actuation voltage around 30-45 V
Keywords :
UHF phase shifters; beams (structures); impedance matching; micromechanical devices; microwave phase shifters; millimetre wave phase shifters; quartz; silicon compounds; 0.9 dB; 1 bit; 1.16 dB; 11.44 mm; 110 GHz; 12 GHz; 2.65 dB; 3.12 mm; 30 to 45 V; 4.6 mm; 50 GHz; MEM beams; RF MEMS; SiCr; design equations; design methodology; dielectric constant; impedance-matched phase shifter; impedance-matched slow-wave unit; insertion loss; microelectromechanical phase shifters; phase shift; true-time-delay phase shifters; Design methodology; Dielectric constant; Dielectric substrates; Equations; Frequency; Impedance; Insertion loss; Performance loss; Phase shifters; Voltage; Microelectromechanical systems (MEMS); RF MEMS; phase shifter; true time delay (TTD);
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2006.890076
Filename :
4084835
Link To Document :
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