A single-layer reflector antenna combining eight and four correcting Fresnel zones is presented. The progressive phase shift is achieved by circular and annular patches. The choice of a quarter-wavelength thickness substrate provides naturally 0 and 180° correcting zones that simplify the reflector design. A prototype of reflector antenna...
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September 2004 (v1)Journal articleUploaded on: February 28, 2023
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September 7, 2005 (v1)Conference paper
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September 7, 2005 (v1)Conference paper
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2005 (v1)Journal article
This paper presents a millimeter waveguide-to-microstrip line transition based on E-mode coupling. It uses a standard W-band waveguide and a microstrip line made on alumina substrate. It has been designed for the center frequency of 94 GHz. A back-to-back transition has been done and measured between 90 and 100 GHz. A bandwidth of more than 12%...
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June 7, 2004 (v1)Conference paper
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June 7, 2004 (v1)Conference paper
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May 11, 2005 (v1)Conference paper
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May 11, 2005 (v1)Conference paper
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November 21, 2008 (v1)Journal article
A 94 GHz folded Fresnel reflector (FFR) for helicopter collision avoidance Radar is presented. The antenna system consists of a primary source illuminating a semi-reflecting grid that reflects the primary source polarization toward the main reflector opposite the grid. The main reflector has two functions. It focuses the field in the desired...
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November 21, 2005 (v1)Conference paper
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November 21, 2005 (v1)Conference paper
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November 6, 2006 (v1)Conference paper
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September 6, 2005 (v1)Conference paper
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November 6, 2006 (v1)Conference paper
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August 2, 2006 (v1)Conference paper
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September 6, 2005 (v1)Conference paper
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November 6, 2006 (v1)Conference paper
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November 6, 2006 (v1)Conference paper
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August 2, 2006 (v1)Conference paper
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November 8, 2004 (v1)Conference paper
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November 8, 2004 (v1)Conference paper
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December 5, 2006 (v1)Conference paper
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December 5, 2006 (v1)Conference paper
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