Title :
Ultra-Wideband Bandpass Filter With Multiple Notch Bands Using Nonuniform Periodical Slotted Ground Structure
Author :
Hao, Zhang-Cheng ; Hong, Jia-Sheng ; Parry, Jonathan P. ; Hand, Duncan P.
Author_Institution :
Sch. of Eng. & Phys. Sci., Heriot-Watt Univ., Edinburgh, UK
Abstract :
A novel ultra-wideband (UWB) bandpass filter that is capable of integrating multiple notch bands is proposed in this paper. A multilayer nonuniform periodical structure, which can generate multiple transmission zeros, is deployed in the filter design to improve the selectivity and upper stopband performance of the filter. Short-circuited stub resonators are then integrated to obtain multiple notch bands. The compact footprint of the filter is achieved. UWB filters of this type without a notch and with single-, double-, and triple-notch bands are designed to meet the Federal Communications Commission-defined UWB indoor limit. The designed filters are verified by experiments and fabricated by using multilayer liquid-crystal polymer lamination technology. Both full-wave simulated and measured results are presented and good agreement between them is observed. The proposed filter has good performance and is attractive for UWB communication and radar systems.
Keywords :
band-pass filters; laminations; liquid crystal polymers; microwave filters; multilayers; notch filters; periodic structures; resonator filters; ultra wideband communication; UWB bandpass filter; UWB communication; filter design; full-wave simulation; multilayer liquid-crystal polymer lamination technology; multilayer nonuniform periodical structure; multiple notch bands; nonuniform periodical slotted ground structure; radar system; stop band filter; transmission zero; ultra-wideband bandpass filter; Bandpass filter; liquid-crystal polymer (LCP); microstrip filters; microwave filters; ultra-wideband (UWB);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2009.2034230