Title :
Miniaturized microstrip window hairpin resonator with T-feeder coupling lines
Author :
Maharjan, Ram Krishna ; Kim, Nam-Young
Author_Institution :
Dept. of Electron. Eng., Kwangwoon Univ., Seoul, South Korea
Abstract :
In this paper, a new structure of planar hairpin resonator with T-feeder coupling lines was developed. Two symmetrical T-shaped feedlines mounted inside the side-by-side window structure behave as resonators, and they are responsible for maintaining the 50 Ω input/output impedance matching and transforming electrical energy into electromagnetic (EM) energy with the desired resonance characteristics. With varying widths for the X-axis and heights for the Y-axis of the window configuration of the hairpin resonator, corresponding changes in the resonant frequency and useable bandwidth can be observed. Hence, frequency tuning can be easily achieved by adjusting window dimensions of the proposed hairpin resonator. The dimensions of the proto-type resonator are approximately 0.24λg mm by 0.48λg. The measurement results showed that an acceptable return loss (S11) equal to -22.6 dB and an insertion loss (S21) of 0.95 dB are measured at a resonant frequency 5.8 GHz. The measurement results are quite matched with the simulation results.
Keywords :
impedance matching; microstrip couplers; microstrip resonators; microwave resonators; tuning; T-feeder coupling lines; X-axis; Y-axis; frequency 5.8 GHz; frequency tuning; impedance matching; insertion loss; loss -22.6 dB; loss 0.95 dB; microstrip window hairpin resonator; microwave resonators; planar hairpin resonator; resistance 50 ohm; return loss; symmetrical T-shaped feedlines; window configuration; Band pass filters; Frequency measurement; Loss measurement; Microstrip filters; Microwave filters; Optical resonators; Resonant frequency; Hairpin resonator; T-feeder line; bandpass filter; electromagnetic coupling; impedance matching;
Conference_Titel :
Communications (APCC), 2012 18th Asia-Pacific Conference on
Conference_Location :
Jeju Island
Print_ISBN :
978-1-4673-4726-6
Electronic_ISBN :
978-1-4673-4727-3
DOI :
10.1109/APCC.2012.6388098