DocumentCode
1264037
Title
Low-Loss Elliptical Response Filter at 100 GHz
Author
Leal-Sevillano, Carlos A. ; Montejo-Garai, José R. ; Ruiz-Cruz, Jorge A. ; Rebollar, Jesús M.
Author_Institution
Dept. de Electromagnetismo y Teor. de Circuitos, Univ. Politec. de Madrid, Madrid, Spain
Volume
22
Issue
9
fYear
2012
Firstpage
459
Lastpage
461
Abstract
The design, method of fabrication and experimental validation of a pseudo-elliptical four-poles asymmetric response filter at 100 GHz with 10% of fractional bandwidth is presented. The designed filter is part of an image radar system and must fulfill stringent specifications. The proposed topology and method of fabrication improves the out of band rejection above the pass band in comparison with other classical structures, while keeping a low insertion loss level. A two-fold geometry for implementing a transmission zero is proposed, avoiding the excitation of the first higher order mode and easing the manufacturing without any tuning element. A low-cost milling process is used for the fabrication of the device. The final design fulfills the desired specifications and presents 0.6 dB of insertion loss level at 100 GHz. The excellent agreement between simulations and measurements at this frequency band in both, return loss and insertion loss, is pointed out.
Keywords
band-pass filters; elliptic filters; millimetre wave filters; milling; radar; fabrication method; fractional bandwidth; frequency 100 GHz; higher order mode; image radar system; insertion loss; loss 0.6 dB; low insertion loss level; low-cost milling process; low-loss elliptical response filter; out of band rejection; pseudo-elliptical four-poles asymmetric response filter; return loss; transmission zero; two-fold geometry; Fabrication; Filtering theory; Insertion loss; Loss measurement; Microwave filters; Milling; Radar; Asymmetric; W-band; extracted pole; filter; low loss; milling;
fLanguage
English
Journal_Title
Microwave and Wireless Components Letters, IEEE
Publisher
ieee
ISSN
1531-1309
Type
jour
DOI
10.1109/LMWC.2012.2212237
Filename
6268297
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