High performance LPF with negligible group delay using circular resonator and transfer function analysis

Using circular and rectangular resonators, a new design of a compact microstrip lowpass filter (LPF) with negligible losses is proposed and fabricated. The proposed LPF has a 3 dB cut‐off frequency at 1.375 GHz with an adjusting range of 14.5%; moreover, the suggested configuration leads to a compet...

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Veröffentlicht in:Microwave and optical technology letters 2019-06, Vol.61 (6), p.1540-1544
Hauptverfasser: Rahmatinezhad, Seyedeh Mitra, Makki, Seyed Vahab Al‐Din, Mousavi, Seyed Mohammad Hadi
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container_end_page 1544
container_issue 6
container_start_page 1540
container_title Microwave and optical technology letters
container_volume 61
creator Rahmatinezhad, Seyedeh Mitra
Makki, Seyed Vahab Al‐Din
Mousavi, Seyed Mohammad Hadi
description Using circular and rectangular resonators, a new design of a compact microstrip lowpass filter (LPF) with negligible losses is proposed and fabricated. The proposed LPF has a 3 dB cut‐off frequency at 1.375 GHz with an adjusting range of 14.5%; moreover, the suggested configuration leads to a competitive roll‐off rate of 189 dB/ GHz and a negligible group delay of 0.47 ns. Attenuator cells have capability to produce numerous transmission zeros (TZs) at high frequencies; consequently, an ultra‐wide stopband (14 fc) with high suppression level (25 dB) is successfully obtained. Furthermore, the LPF has a small size of 0.067λg × 0.134λg (λg is the guided wavelength at 1.375 GHz). The transfer function is also calculated to adjust the location of the main TZs and the cut‐off frequency. Finally, an acceptable similarity between the simulated results and the tested ones verifies the simulation results.
doi_str_mv 10.1002/mop.31785
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subjects Acceptable noise levels
circular resonator
Function analysis
Group delay
Low pass filters
lowpass filter
Resonators
selectivity
Transfer functions
title High performance LPF with negligible group delay using circular resonator and transfer function analysis
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