Title :
High-Performance 1.5–2.5-GHz RF-MEMS Tunable Filters for Wireless Applications
Author :
El-Tanani, Mohammed A. ; Rebeiz, Gabriel M.
Author_Institution :
Intel Corp., Hillsboro, OR, USA
fDate :
6/1/2010 12:00:00 AM
Abstract :
This paper presents high-performance RF microelectromechanical systems (RF MEMS) tunable filters with constant absolute bandwidth for the 1.5-2.5-GHz wireless band. The filter design is based on corrugated coupled lines and ceramic substrates (εr=9.9) for miniaturization, and the 3-bit tuning network is fabricated using a digital/analog RF-MEMS device so as to provide a large capacitance ratio and continuous frequency coverage. Narrowband (72 ± 3 MHz) and wideband (115 ± 10 MHz) 1-dB bandwidth two-pole filters result in a measured insertion loss of 1.9-2.2 dB at 1.5-2.5 GHz with a power handling of 25 dBm and an IIP3 >> 33 dBm. The filters also showed no distortion when tested under wideband CDMA waveforms up to 24.8 dBm. The designs can be scaled to higher dielectric-constant substrates to result in smaller filters. To our knowledge, these filters represent the state-of-the-art at this frequency range using any planar tuning technology.
Keywords :
UHF filters; ceramics; code division multiple access; micromechanical devices; permittivity; RF-MEMS tunable filters; ceramic substrates; corrugated coupled lines; dielectric constant substrates; digital-analog RF-MEMS device; frequency 1.5 GHz to 2.5 GHz; insertion loss; loss 1.9 dB to 2.2 dB; microelectromechanical systems; planar tuning; tuning network; two-pole filters; wideband CDMA waveforms; wireless applications; wireless band; word length 3 bit; Alumina; RF microelectromechanical systems (RF MEMS); combline filter; constant bandwidth tunable filter; miniature planar filter; tunable filter;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2010.2049166