DocumentCode :
1335796
Title :
Triple-Conductor Combline Resonators for Dual-Band Filters With Enhanced Guard-Band Selectivity
Author :
Ruiz-Cruz, Jorge A. ; Fahmi, Mohamed M. ; Mansour, Raafat R.
Author_Institution :
Escuela Politec. Super., Univ. Autonoma de Madrid, Madrid, Spain
Volume :
60
Issue :
12
fYear :
2012
Firstpage :
3969
Lastpage :
3979
Abstract :
Novel combline resonators and filters with enhanced dual-band characteristics are introduced in this paper. The proposed resonator is made up of three metallic conductors: an inner post, an intermediate conductor, and an enclosure. This structure provides two asynchronous resonant modes that can be used for realizing compact microwave dual-band filters. Such dual-band filters offer the low cost, compact size, and ease of manufacturing features of traditional combline resonator filters, with additional size reduction due to the fact that a single physical cavity provides two electrical resonators. In addition, the new cavity introduces a transmission zero in the guard-bands enhancing the filter selectivity, while keeping a simple and compact inline topology. The design of filters based on this novel resonator is discussed, starting with the resonator circuit model, the coupling scheme, and the complete filter design methodology. Simulations as well as experimental results of a tenth-order (2 × 5) dual-band filter with a measured rejection level in excess of 100 dB in the guard-band are presented to show the concept.
Keywords :
microwave filters; resonator filters; asynchronous resonant modes; combline resonator filter; compact inline topology; compact microwave dual band filter; enclosure; filter design methodology; guard band selectivity; inner post; intermediate conductor; metallic conductor; triple conductor combline resonator; Cavity resonators; Conductors; Dual band; Integrated circuit modeling; Power transmission lines; Resonant frequency; Standards; Dual-resonance TEM-mode filters; multiband filters; multiconductor combline; re-entrant cross section;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2012.2223482
Filename :
6354010
Link To Document :
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