DocumentCode :
915624
Title :
RF MEMS Sequentially Reconfigurable Sierpinski Antenna on a Flexible Organic Substrate With Novel DC-Biasing Technique
Author :
Kingsley, Nickolas ; Anagnostou, Dimitrios E. ; Tentzeris, Manos ; Papapolymerou, John
Author_Institution :
Auriga Meas. Syst., Lowell
Volume :
16
Issue :
5
fYear :
2007
Firstpage :
1185
Lastpage :
1192
Abstract :
Devices and systems that use RF microelectromechanical systems (RF MEMS) switching elements typically use one switch topology. The switch is designed to meet all of the performance criteria. However, this can be limiting for highly dynamic applications that require a great deal of reconfigurability. In this paper, three sets of RF MEMS switches with different actuation voltages are used to sequentially activate and deactivate parts of a multiband Sierpinski fractal antenna. The implementation of such a concept allows for direct actuation of the electrostatic MEMS switches through the RF signal feed, therefore eliminating the need for individual switch dc bias lines. This reconfigurable antenna was fabricated on liquid crystal polymer substrate and operates at several different frequencies between 2.4 and 18 GHz while maintaining its radiation characteristics. It is the first integrated RF MEMS reconfigurable antenna on a flexible organic polymer substrate for multiband antenna applications. Simulation and measurement results are presented in this paper to validate the proposed concept.[2007-0013]
Keywords :
UHF antennas; fractal antennas; liquid crystal polymers; microswitches; microwave antennas; RF MEMS antenna; RF MEMS switches; Sierpinski antenna; dc-biasing technique; flexible organic substrate; fractal antenna; liquid crystal polymer substrate; multiband antenna; sequentially reconfigurable antenna; Electrostatics; Feeds; Fractal antennas; Frequency; Liquid crystal polymers; Microswitches; Radiofrequency microelectromechanical systems; Switches; Topology; Voltage; Liquid crystal polymer (LCP); RF microelectromechanical systems(RF MEMS); Sierpinski fractal antenna; multiband; reconfigurable antenna;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2007.902462
Filename :
4337797
Link To Document :
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