2018
DOI: 10.2528/pierc17101902
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A Broad-Side Coupled SRR Inspired CPW Fed Dual Band Antenna for Wimax and Wave Applications

Abstract: Abstract-In present scenario, this paper intends to demonstrate the practicality of a miniaturized coplanar waveguide fed metamaterial inspired antenna that can be effectively operated at dual bands. A broad-side coupled Split Ring Resonator is used to obtain dual bands with an impedance bandwidth (−10 dB) of 840 MHz (3.00-3.84 GHz) and 310 MHz (5.94-6.25 GHz), which resonates at dual bands, viz., 3.42 GHz and 6.07 GHz. The impedance bandwidth (S 11 < −10 dB) is 25% for the first band and 5.1% for the second b… Show more

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Cited by 9 publications
(6 citation statements)
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“…It is very compact size due to metamaterial effect by loading the antenna with ELC metamaterial resonator. Similar better impedance matching was achieved to make the antenna resonate efficiently [3,4]. A SRR loaded material antenna is proposed for RF-ID applications.…”
Section: Iintroductionmentioning
confidence: 84%
“…It is very compact size due to metamaterial effect by loading the antenna with ELC metamaterial resonator. Similar better impedance matching was achieved to make the antenna resonate efficiently [3,4]. A SRR loaded material antenna is proposed for RF-ID applications.…”
Section: Iintroductionmentioning
confidence: 84%
“…In order to increase the bandwidth slots are etched on the radiating patch. The rectangular patch is the modified design from [7]. The proposed single radiating patch is shown in figure.1.…”
Section: Design Of Single Radiating Patch Antennamentioning
confidence: 99%
“…The radiating patch is fed by a strip line feed with a coplanar waveguide ground. [7]CPW ground has low dispersion and is used for broadband performance. The proposed elliptical patch is shown infigure 1.…”
Section: Figure 1 Geometry Of Elliptical Patch Antennamentioning
confidence: 99%