International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is proposed. This antenna is linearly polarized and designed to cover all the Global Navigation Satellite System (GNSS) bands. It exhibits small external dimensions of 90 × 90 × 40 mm3 (0.34 × 0.34 × 0.15 λ3 at lowest frequency) and achieves a wide impedance bandwidth of 40.5% (from 1.14 to 1.72 GHz) due to the excitation of a third resonance of the ME structure. It also provides a regular broadside gain of 5.2 dBi and stable radiation pattern in both E and H planes of the antenna. © 2021 by the authors. Licensee MDPI, Basel, Switzerland
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
603-608Ku (12-18 GHz) band is prominently utilized for application related to satellite communicatio...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
603-608Ku (12-18 GHz) band is prominently utilized for application related to satellite communicatio...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper, a wideband small cavity-backed magneto-electric (ME) antenna is...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a small dual-band cavity-backed magnetoelectric (ME) antenna is ...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
International audienceIn this paper a linearly polarized cylindrically conformal cavity-backed magne...
603-608Ku (12-18 GHz) band is prominently utilized for application related to satellite communicatio...