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Reflector (antenna)

About: Reflector (antenna) is a research topic. Over the lifetime, 28730 publications have been published within this topic receiving 212618 citations.


Papers
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Journal ArticleDOI
TL;DR: In this article, an extension of the recently introduced nonlinear finite-difference time-domain technique for the study of electromagnetic wave propagation in a nonlinear Kerr medium to include absorption is presented.
Abstract: An extension of the recently introduced nonlinear finite-difference time-domain technique [Opt. Lett.21, 1138 (1996)] for the study of electromagnetic wave propagation in a non-linear Kerr medium to include absorption is presented. The optical limiting and switching of short pulses by use of a nonlinear quarter-wave reflector (a one-dimensional photonic bandgap structure) with a defect is studied. Comparison with an optical limiter and with an optical switch with a perfect nonlinear quarter-wave reflector shows that introducing a defect can improve the performance of these devices.

128 citations

Patent
07 Apr 1995
TL;DR: In this article, a compound-semiconductor optical device is provided with one or more asymmetrically-graded heterojunctions between compound semiconductor layers for forming a distributed Bragg reflector mirror having an improved electrical and thermal resistance.
Abstract: A compound-semiconductor optical device and method. The optical device is provided with one or more asymmetrically-graded heterojunctions between compound semiconductor layers for forming a distributed Bragg reflector mirror having an improved electrical and thermal resistance. Efficient light-emitting devices such as light-emitting diodes, resonant-cavity light-emitting diodes, and vertical-cavity surface-emitting lasers may be formed according to the present invention, which may be applied to the formation of resonant-cavity photodetectors.

128 citations

Patent
07 Jan 2000
TL;DR: In this article, the phase and amplitude control electronics are coupled to each reflector antenna to provide steering for the signal energy coupled between the reflectors and the feed arrays, which couples the steered signal energy between a phased array of reflector antennas.
Abstract: A deployable phased-array-of-reflectors antenna includes individual reflectors and feed arrays. Each feed array is disposed above a corresponding individual reflector. The individual reflector antennas are preferably disposed adjacent to one another (e.g., on a hexagonal lattice) to form a phased array antenna using the individual reflectors antennas as elements. Phase and amplitude control electronics are coupled to each reflector antenna to provide steering for the signal energy coupled between the reflectors and the feed arrays. Switching electronics are coupled to the feed arrays and selectively activate and deactivate beam forming clusters of feeds in the feed arrays. A method for generating a steerable antenna pattern couples signal energy through a beamforming section to form steered signal energy. Next, the method couples the steered signal energy between a phased array of reflector antennas. The method selectively activates a first feed cluster for a first reflector, a second feed cluster for a second reflector, and so on, until feed clusters are activated in all of the reflectors in the array. The method then couples the steered signal energy between the first and second feed clusters. The method subsequently activates and deactivates the feed clusters to reduce the impact of grating lobes in the total antenna pattern, or when a particular cluster attenuation has been reached.

128 citations

Patent
23 May 2013
TL;DR: In this article, a plurality of feet are coupled to the frame of a reflector, each of which is provided with a fastener coupling axis normal to a dish surface contacting each of the feet, the feed bore of the reflector dish aligned coaxial with the feed aperture.
Abstract: An antenna hub for a reflector dish has a frame with a feed aperture. A plurality of feet are coupled to the frame; each of the feet provided with a dish fastener coupling axis normal to a dish surface contacting each of the feet when the reflector dish is seated upon the feet, the feed bore of the reflector dish aligned coaxial with the feed aperture. The frame and feet may be formed via extrusion.

127 citations

Patent
27 Aug 2002
TL;DR: In this article, an apparatus (10) including at least one LED (16) mounted to a printed circuit board (14), a reflector (20), a heat stake (24, 26), and a mounting plate (30) comprising at least 1 aperture (36, 38) for receiving the heat stake was presented.
Abstract: An apparatus (10) including at least one LED (16) mounted to a printed circuit board (14), a reflector (20) including at least one heat stake (24, 26), and a mounting plate (30) comprising at least one aperture (36, 38) for receiving the at least one heat stake (24, 26). The at least one LED (16) is positioned between the reflector (20) and the mounting plate (30) such that the at least one LED (16) is held in position when the at least one heat stake (24, 26) is received within the at least one aperture (36, 38).

127 citations


Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20224
2021567
2020948
20191,159
20181,092
2017977