2012•Unpublished venueRequires access

A compact dielectric rod-loaded conical horn antenna for millimeter-wave apllications

Hong-Min Lee, Hyungsup Lee

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Abstract

A new design concept for compact conical horn antenna exhibiting high directive gain and low cross-polarization is proposed. In this work, a dielectric rod-loaded conical horn antenna with rectangular waveguide structure feed was built and tested. By inserting a E-plane tapered dielectric rod material of relative permittivity εr= 2.08, the guided mode excited at the feed end is smoothly converted into that at the free end in a tapered dielectric rod. The diameter of the fabricated circular horn aperture is 20 mm and axial length is 28 mm. A peak gain of 16 dB with cross-polarization of 32 dB was measured at 37.3 GHz.

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What this paper is about

A new design concept for compact conical horn antenna exhibiting high directive gain and low cross-polarization is proposed. In this work, a dielectric rod-loaded conical horn antenna with rectangular waveguide structure feed was built and tested. By inserting a E-plane tapered dielectric rod material of relative permittivity εr= 2.08, the guided mode excited at the feed end is smoothly converted into that at the free end in a tapered dielectric rod. The diameter of the fabricated circular horn aperture is 20 mm and axial length is 28 mm. A peak gain of 16 dB with cross-polarization of 32 dB was measured at 37.3 GHz.

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Available abstract

A new design concept for compact conical horn antenna exhibiting high directive gain and low cross-polarization is proposed. In this work, a dielectric rod-loaded conical horn antenna with rectangular waveguide structure feed was built and tested. By inserting a E-plane tapered dielectric rod material of relative permittivity εr= 2.08, the guided mode excited at the feed end is smoothly converted into that at the free end in a tapered dielectric rod. The diameter of the fabricated circular horn aperture is 20 mm and axial length is 28 mm. A peak gain of 16 dB with cross-polarization of 32 dB was measured at 37.3 GHz.

Key concepts: Dielectric, Conical surface, Optics, Materials science, Horn antenna, Extremely high frequency, Polarization (electrochemistry), French horn

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