2018
DOI: 10.1109/tap.2018.2790176
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Ultra-Wideband Antipodal Tapered Slot Antenna With Integrated Frequency-Notch Characteristics

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Cited by 43 publications
(18 citation statements)
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“…Likewise, by capitalizing the electromagnetic coupling of SRR with the CPW they have designed another notch antenna having dual complementary characteristics . Different configurations of square SRRs are designed to create notch at different frequencies in a tapered slot antenna (TSA) by placing them near the aperture as well as by allowing them to couple with the feed line in . A coplanar tapered slot antenna using SRR has been demonstrated for frequency notching in .…”
Section: Single Band‐notch Characteristicsmentioning
confidence: 99%
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“…Likewise, by capitalizing the electromagnetic coupling of SRR with the CPW they have designed another notch antenna having dual complementary characteristics . Different configurations of square SRRs are designed to create notch at different frequencies in a tapered slot antenna (TSA) by placing them near the aperture as well as by allowing them to couple with the feed line in . A coplanar tapered slot antenna using SRR has been demonstrated for frequency notching in .…”
Section: Single Band‐notch Characteristicsmentioning
confidence: 99%
“…Different other techniques [64][65][66][67][68][69][70][71][72][73][74][75][76][77] are also proposed for obtaining single notch characteristics in case of UWB antennas. An UWB dipole antenna with flat and sharp band notch characteristics is proposed for obtaining both WLAN band notch and a compact UWB RF-front structure.…”
Section: Other Techniquesmentioning
confidence: 99%
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“…With the rapid growth of ultra‐wideband (UWB) communication systems, UWB antenna designing with good performances on UWB impedance matching, compact appearance, low profile, and cheap manufacturing has been the focus of academia and industry communities of telecommunications . Among these designs, planar wide‐slot antennas are good candidates to realize wideband property, miniaturization and low profile.…”
Section: Introductionmentioning
confidence: 99%
“…They reported a bandwidth of 124.7%. Many authors have used techniques other than fractal elements like loading of L-shaped slot and meandered line slots [8], edge tapering, and adding parasitic stubs [9], elliptic single complementary split-ring resonators (ESCSRRs) [10], split ring resonator [11], using of parasitic units [12,13], step impedance resonator (SIR) [14,15], to achieve multifrequency and UWB response. The usage of fractal elements is advantageous due to their behaviour as interconnected capacitors & inductors and gives rise to different resonances which in turn results in high bandwidth, high gain, multi-frequency and multi-band response.…”
Section: Introductionmentioning
confidence: 99%