Title :
A novel tunable filter enabling both center frequency and bandwidth tunability
Author :
Inoue, H. ; Xiaoyu Mi ; Fujiwara, Toshihito ; Toyoda, O. ; Ueda, Shuichi ; Nakazawa, Fumihiko
Author_Institution :
Super-Adv. Electron. Technol., Akashi, Japan
fDate :
Oct. 29 2012-Nov. 1 2012
Abstract :
This paper presents a novel filter circuit configuration that enables both the center frequency and the bandwidth to be tuned with a steep frequency response. Digital-type and microelectromechanical system (MEMS) analog-type tunable filters with a small size of 3.3 mm × 3.8 mm on a high-k low-temperature-co-fired-ceramics (LTCC) wiring wafer have been developed to verify the proposed filter configuration. The digital type achieved a wide tuning range of 62.7% from 1.4GHz to 2.7 GHz with an insertion loss of 2.21 - 2.48 dB. And a 119% bandwidth tuning from 300 MHz to 650 MHz was also verified with an insertion loss under -3dB. Moreover, the analog type achieved a center frequency tuning about 600 MHz from 2.8 GHz to 3.4 GHz using integrated MEMS varactors. The new filter configuration was verified to enable a steep frequency response with a shape factor less than 2.
Keywords :
UHF filters; frequency response; micromechanical devices; microwave filters; varactors; LTCC wiring wafer; bandwidth 300 MHz to 650 MHz; bandwidth tunability; center frequency; digital-type MEMS tunable filters; filter circuit configuration; frequency 1.4 GHz to 2.7 GHz; frequency 2.8 GHz to 3.4 GHz; high-k low-temperature-co-fired-ceramics; integrated MEMS varactors; loss 2.21 dB to 2.48 dB; microelectromechanical system analog-type tunable filters; steep frequency response; Band pass filters; Bandwidth; Electrodes; Micromechanical devices; Microwave filters; Resonator filters; Tuning; LTCC; MEMS; bandwidth; center frequency; high-k; microstrip; reconfigurable radio; tunable filter; tuning;
Conference_Titel :
Microwave Conference (EuMC), 2012 42nd European
Conference_Location :
Amsterdam
Print_ISBN :
978-1-4673-2215-7
Electronic_ISBN :
978-2-87487-026-2