Title :
Multilayer Planar Tunable Filter With Very Wide Tuning Bandwidth
Author :
Sun, Jim S. ; Kaneda, Noriaki ; Baeyens, Yves ; Itoh, Tatsuo ; Chen, Young-kai
Author_Institution :
Electr. Eng. Dept., Univ. of California at Los Angeles, Los Angeles, CA, USA
Abstract :
In this paper, we propose and develop a partially shielded tunable filter structure using a varactor-loaded split-ring resonator. The novel physical topology of the filter is suitable for vertical stacking of filters and enables a compact multilayer tunable filter for applications requiring a very wide tuning range. The capacitance range and ratio needed to achieve the designated tuning range are presented, and analytical solutions are given for the second and third higher order modes for synthesis in the spurious-free filter operation range. Two prototypes are developed. A partially shielded tunable filter using varactor-loaded split-ring resonators is developed to verify the design method and to demonstrate the wide tuning range of a tunable filter. To further extend the tuning range, a filter bank with three stacked tunable filters at different frequency bands are designed and developed. With slight overlap between neighboring bands, a continuous tuning range of more than 6:1 is achieved.
Keywords :
capacitance; channel bank filters; resonator filters; tuning; varactors; analytical solutions; capacitance range; capacitance ratio; compact multilayer tunable filter; continuous tuning range; design method; designated tuning range; filter bank; frequency bands; higher order modes; multilayer planar tunable filter; neighboring bands; partially shielded tunable filter structure; physical topology; spurious-free filter operation range; stacked tunable filters; varactor-loaded split-ring resonators; vertical filter stacking; very wide tuning bandwidth; Capacitance; Filter banks; Prototypes; Resonant frequency; Stripline; Tunable circuits and devices; Split-ring resonators; stripline circuits; tunable filters; varactor tuned; wideband filters;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2011.2163201