Title :
Reconfigurable millimeter-wave filters using CPW-based periodic structures with novel multiple-contact MEMS switches
Author :
Park, Jae-Hyoung ; Lee, Sanghyo ; Kim, Jung-Mu ; Kim, Hong-Teuk ; Kwon, Youngwoo ; Kim, Yong-Kweon
Author_Institution :
LG Electron. Inst. of Technol., Seoul, South Korea
fDate :
6/1/2005 12:00:00 AM
Abstract :
In this paper, fully monolithic reconfigurable millimeter-wave filters are proposed using the CPW-based periodic structures with novel multiple-contact MEMS switches. Millimeter-wave low-pass and band-pass filters were designed, fabricated, and tested. Three cascaded CPW-based periodic structures, with low-pass and band-pass intrinsic filtering characteristics, are reconfigured into a self-similar single unit cell by the operation of the novel multiple-contact MEMS switches with single actuation. By using the multiple-contact MEMS switches, the insertion loss can be reduced and the operating frequency ranges are extended to millimeter-waves with little increase of loss. Additionally, the number of the switching elements has been reduced and the bias-decoupling circuits are not required, resulting in a very small chip size. The measured results of the reconfigurable low-pass filter show the 3-dB cutoff frequency change from 67 to 28 GHz with very small change in the insertion loss from 0.32 to 0.27 dB. The center frequency of the reconfigurable band-pass filter is tuned from 55 to 20 GHz, and the measured 3-dB cutoff bandwidth changed from 32 to 12 GHz, while the average insertion loss changed from 1.27 to 1.61 dB. The chip size of the low-pass and band-pass filter including dc bias line is 1.2 mm × 1.5 mm and 1.2 mm × 4.5 mm, respectively.
Keywords :
band-pass filters; coplanar waveguide components; low-pass filters; microswitches; microwave switches; millimetre wave filters; periodic structures; waveguide filters; 0.32 to 0.27 dB; 1.2 mm; 1.27 to 1.61 dB; 1.5 mm; 12 GHz; 20 GHz; 28 GHz; 32 GHz; 4.5 mm; 55 GHz; 67 GHz; CPW-based periodic structures; band-pass filter; bias-decoupling circuits; insertion loss; low-pass filter; multiple-contact MEMS switches; reconfigurable millimeter-wave filters; single actuation; Band pass filters; Cutoff frequency; Filtering; Frequency measurement; Insertion loss; Loss measurement; Microswitches; Periodic structures; Semiconductor device measurement; Testing; CPW-based periodic structures; multiple-contact MEMS switches; reconfigurable millimeter-wave filters;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2005.844849