DocumentCode :
2990898
Title :
Self-switching vibrating micromechanical filter bank
Author :
Li, Sheng-Shian ; Lin, Yu-Wei ; Ren, Zeying ; Nguyen, Clark T -C
Author_Institution :
Center for Wireless Integrated Micro Syst., Michigan Univ., Ann Arbor, MI, USA
fYear :
2005
fDate :
29-31 Aug. 2005
Abstract :
Bridged MEMS-based micromechanical filters have been demonstrated that use a self-switching property of their dc-biased capacitive transducers to achieve zero-loss on/off filter switching without the need for lossy series switches, and with settling times down to 1.5 μs. By dispensing with the need for series switches in the signal path, a small bank of 0.087% bandwidth, 9-MHz beam-based filters has achieved programmable channel/band selection with only 3 dB of insertion loss, comprised entirely of filter loss (i.e., no switch loss), with switching times 7× faster than the typical 10 μs of some of the fastest RF MEMS switches, and without the high actuation voltages (>90V) and reliability issues often associated with RF MEMS switches. Higher frequency 155-MHz disk resonators achieve even faster switching speeds, with settling times down to only 430 ns. Equipped with this self-switching property, capacitively transduced micromechanical resonators are attractive candidates for realization of the switchable filter banks targeted for future wireless transceivers.
Keywords :
bridge circuits; capacitive sensors; channel bank filters; micromechanical resonators; microswitches; 155 MHz; 3 dB; 9 MHz; RF MEMS switches; capacitive transducers; disk resonators; filter loss; micromechanical filter bank; programmable channel selection; self-switching property; wireless transceivers; Bandwidth; Channel bank filters; Filter bank; Insertion loss; Micromechanical devices; RF signals; Radiofrequency microelectromechanical systems; Resonator filters; Switches; Transducers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium and Exposition, 2005. Proceedings of the 2005 IEEE International
Print_ISBN :
0-7803-9053-9
Type :
conf
DOI :
10.1109/FREQ.2005.1573915
Filename :
1573915
Link To Document :
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