DocumentCode :
36919
Title :
Compact Self-Shielded 2–3 GHz High-Q Coaxial Fixed and Tunable Filters
Author :
Tao Yang ; Ho, Kayla ; Rebeiz, Gabriel M.
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of California San Diego, La Jolla, CA, USA
Volume :
62
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
3370
Lastpage :
3379
Abstract :
A novel coaxial stepped-impedance resonator (SIR) filter is proposed based on conventional multi-layer printed-circuit board (PCB) technology. The resonator results in a measured unloaded quality factor (Qu) of 185 at 3.7 GHz, has compact size, is self-shielded and has very low electromagnetic (EM) coupling to nearby RF circuits. The 3-D filter topology easily lends to advanced filter design with multiple transmission zeroes using cross coupling and source-to-load coupling on the top printed-circuit board layer. Two third-order fixed-band bandpass filters, and two fourth-order tunable bandpass filters are demonstrated in this technology. The fixed-band filters have an insertion loss of 1.6 dB with a fractional bandwidth of 6.5% at 3.6 GHz and occupy a size of 9 × 12 mm2. The tunable filter covers 2.1-2.9 GHz with a fractional bandwidth of 3.5%, and an insertion loss of 4.2-9.2 dB, limited by the silicon varactors. Multiple transmission zeroes are used in these designs to significantly improve the filter selectivity. Application areas are in fixed and tunable filters with very compact size and high shielding from nearby circuits for advanced communication systems.
Keywords :
UHF filters; band-pass filters; circuit tuning; coupled circuits; electromagnetic coupling; electromagnetic shielding; elemental semiconductors; microwave filters; printed circuits; resonator filters; silicon; varactors; 3D filter topology; EM coupling; PCB technology; RF circuit; SIR filter; Si; advanced communication system; bandwidth 3.6 GHz; coaxial stepped-impedance resonator filter; compact selfshielded high-Q coaxial fixed filter; cross coupling; electromagnetic coupling; electromagnetic shieldeding; fourth-order tunable bandpass filter; frequency 2 GHz to 3 GHz; frequency 3.7 GHz; loss 1.6 dB; loss 4.2 dB to 9.2 dB; multilayer printed-circuit board technology; multiple transmission zero; quality factor; silicon varactor; source-to-load coupling; third-order fixed-band bandpass filter; tunable filter; Copper; Couplings; Rough surfaces; Substrates; Surface impedance; Surface roughness; Stepped-impedance resonator (SIR); transmission zeros; tunable filter; vertical resonator;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2014.2364812
Filename :
6953300
Link To Document :
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