Title :
Theory and Demonstration of Narrowband Bent Hairpin Filters Integrated With AC-Coupled Plasma Limiter Elements
Author :
Cross, Lee W. ; Almalkawi, Mohammad J. ; Devabhaktuni, Vijay K.
Author_Institution :
Electr. Eng. & Comput. Sci. Dept., Univ. of Toledo, Toledo, OH, USA
Abstract :
A novel narrowband filter with integral high-power microwave limiter behavior is proposed to protect cost-sensitive microwave systems. The filter-limiter consists of a third-order microstrip bent hairpin filter with encapsulated gas plasma limiters, designed for operation at 870 MHz. An equivalent circuit model is presented for the ac-coupled plasma-shell components used in this study, and parameter values were extracted from measured results and electromagnetic simulation. The theory of operation of the proposed filter-limiter was experimentally validated and key predictions were demonstrated including two modes of operation in the on-state: a constant output power mode and constant attenuation mode at relatively higher power. The filter-limiter operates passively from incident microwave energy, and can also use an external priming voltage source to reduce the limiter turn-on power threshold and reduce output power variation during limiting.
Keywords :
microstrip filters; AC-coupled plasma limiter elements; ac-coupled plasma-shell components; attenuation mode; cost-sensitive microwave systems; electromagnetic simulation; encapsulated gas plasma limiters; equivalent circuit model; frequency 870 MHz; incident microwave energy; integral high-power microwave limiter behavior; limiter turn-on power threshold; narrowband bent hairpin filters; output power mode; output power variation; third-order microstrip bent hairpin filter; Electrodes; Filtering theory; Integrated circuit modeling; Loss measurement; Passband; Plasma measurements; Plasmas; Bandpass filter; bent hairpin; microstrip filter; plasma limiter;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2013.2247403