A new compact narrow bandwidth slow-wave band-pass filter with high-Q resonators using μ-near zero metamaterial

ABSTRACT In this article, a new compact narrow bandwidth slow‐wave band‐pass filter (BPF) using combination of stepped impedance resonator‐shaped hair‐pin, interdigital capacitor, and meander‐line resonator with µ‐near zero (MNZ) metamaterial is suggested. The MNZ metamaterial resonator has band‐sto...

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Veröffentlicht in:Microwave and optical technology letters 2014-08, Vol.56 (8), p.1956-1960
Hauptverfasser: Park, Joung-Geun, Yoon, Ki-Cheol, Lee, Jong-Chul
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container_end_page 1960
container_issue 8
container_start_page 1956
container_title Microwave and optical technology letters
container_volume 56
creator Park, Joung-Geun
Yoon, Ki-Cheol
Lee, Jong-Chul
description ABSTRACT In this article, a new compact narrow bandwidth slow‐wave band‐pass filter (BPF) using combination of stepped impedance resonator‐shaped hair‐pin, interdigital capacitor, and meander‐line resonator with µ‐near zero (MNZ) metamaterial is suggested. The MNZ metamaterial resonator has band‐stop resonance and positive phase response (+90°) due to zero‐value permeability. The experimental result of the resonator shows the loaded quality factor (QL) of 249 at the resonant frequency of 10.0 GHz. Also, the insertion and return losses of the proposed BPF are 1.49 and 15.0 dB with the bandwidth of 4% and center frequency of 10 GHz, respectively. The size of the proposed BPF is 4.79 × 5.39 mm2. © 2014 Wiley Periodicals, Inc. Microwave Opt Technol Lett 56:1956–1960, 2014
doi_str_mv 10.1002/mop.28492
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The MNZ metamaterial resonator has band‐stop resonance and positive phase response (+90°) due to zero‐value permeability. The experimental result of the resonator shows the loaded quality factor (QL) of 249 at the resonant frequency of 10.0 GHz. Also, the insertion and return losses of the proposed BPF are 1.49 and 15.0 dB with the bandwidth of 4% and center frequency of 10 GHz, respectively. The size of the proposed BPF is 4.79 × 5.39 mm2. © 2014 Wiley Periodicals, Inc. 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Opt. Technol. Lett</addtitle><description>ABSTRACT In this article, a new compact narrow bandwidth slow‐wave band‐pass filter (BPF) using combination of stepped impedance resonator‐shaped hair‐pin, interdigital capacitor, and meander‐line resonator with µ‐near zero (MNZ) metamaterial is suggested. The MNZ metamaterial resonator has band‐stop resonance and positive phase response (+90°) due to zero‐value permeability. The experimental result of the resonator shows the loaded quality factor (QL) of 249 at the resonant frequency of 10.0 GHz. Also, the insertion and return losses of the proposed BPF are 1.49 and 15.0 dB with the bandwidth of 4% and center frequency of 10 GHz, respectively. The size of the proposed BPF is 4.79 × 5.39 mm2. © 2014 Wiley Periodicals, Inc. 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Microwave Opt Technol Lett 56:1956–1960, 2014</abstract><cop>New York</cop><pub>Blackwell Publishing Ltd</pub><doi>10.1002/mop.28492</doi><tpages>5</tpages></addata></record>
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subjects Bandpass filters
Bandwidth
interdigital capacitor
meander-line
Metamaterials
Microwaves
Noise levels
Quality factor
Resonant frequencies
Resonators
slow-wave band-pass filter
stepped impedance resonator hair-pin
µ-near zero metamaterial
title A new compact narrow bandwidth slow-wave band-pass filter with high-Q resonators using μ-near zero metamaterial
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