1984
DOI: 10.1109/tap.1984.1143318
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Broad-band half-wave dipole

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Cited by 35 publications
(17 citation statements)
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“…The use of a bowtie layout for the antennas (i.e., a triangular shape with rounded corners) instead of the rectangular shape of a standard dipole allows improving the antenna impedance bandwidth [21,22]. Figure 2 shows the layouts corresponding to the proposed approach for the case of N = 2 and N = 4.…”
Section: Architecture Of the Proposed Antenna: Numerical And Experimementioning
confidence: 99%
“…The use of a bowtie layout for the antennas (i.e., a triangular shape with rounded corners) instead of the rectangular shape of a standard dipole allows improving the antenna impedance bandwidth [21,22]. Figure 2 shows the layouts corresponding to the proposed approach for the case of N = 2 and N = 4.…”
Section: Architecture Of the Proposed Antenna: Numerical And Experimementioning
confidence: 99%
“…In the literature, printed bowtie antennas are sometimes mounted above a ground plane [8][9]. However, in order to preserve the omnidirectional radiation pattern, which is necessary for some RFID fixed reader applications, the ground plane is discarded in our design.…”
Section: Introduced Modificationsmentioning
confidence: 99%
“…Moreover, by increasing the width of the printed dipole antennas, the bandwidth of antenna increases [4]. By using triangular instead of rectangular dipole arms (bow-tie-configuration), the bandwidth can be further expanded to 37% as presented by Bailey [5]. Coplanar parasitic elements have been proposed by Deal et al [6] in a quasi-Yagi configuration, yielding an impedance bandwidth of 48%.…”
Section: Introductionmentioning
confidence: 99%