Title :
RF-MEMS tunable Evanescent Mode Cavity filter in LTCC technology at ku-band
Author :
Schulte, Benedikt ; Ziegler, Volker ; Schoenlinner, Bernhard ; Prechtel, Ulrich ; Schumacher, Hermann
Author_Institution :
Innovation Works, EADS Deutschland GmbH, Ottobrunn, Germany
Abstract :
Frequency-agile Evanescent Mode Cavity (EMC) filters were designed as Substrate Integrated Waveguide (SIW) components in LTCC technology. The tuning of the center frequency was performed by open ended microstrip stubs, whose length can be adjusted by RF-MEMS switches. Two different coupling methods of the tuning structures to the filter were designed and the frequency responses of the filters in each tuning state were measured and analyzed. A shift of the center frequency of 4 % and 6 % was realized with the different coupling methods. The minimal insertion loss is between 2.51 dB and 5.57 dB and the 3 dB bandwidth is between 537 MHz and 728 MHz, depending on the coupling method and the tuning status of the filters. The unloaded Q-factor is 167 and 148 for the filter with inductively coupled tuning structures for the two tuning states of the center frequency. A comparison to a similar, frequency-agile standard cavity filter is presented, to show the benefit of the evanescent mode approach.
Keywords :
UHF filters; cavity resonator filters; ceramic packaging; microswitches; substrate integrated waveguides; Ku-band; LTCC technology; Q-factor; RF-MEMS switches; RF-MEMS tunable evanescent mode cavity filter; SIW components; coupled tuning structures; frequency 537 MHz to 728 MHz; frequency response; frequency-agile EMC filters; frequency-agile evanescent mode cavity filters; loss 2.51 dB to 5.57 dB; open ended microstrip stubs; substrate integrated waveguide components; Cavity resonators; Couplings; Loss measurement; Microstrip; Resonant frequency; Resonator filters; Tuning; Resonator filters; cavity resonators; ceramics; tunable circuits and devices;
Conference_Titel :
Microwave Conference (EuMC), 2011 41st European
Conference_Location :
Manchester
Print_ISBN :
978-1-61284-235-6