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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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Patent
31 Mar 1995
TL;DR: In this paper, a deployable satellite antenna system with elevation and azimuth control on the roof of a vehicle is described. But the antenna is not attached to the vehicle.
Abstract: A deployable satellite antenna system permits an antenna with elevation and azimuth control to be mounted to the roof of a vehicle. The elevation control assembly for the antenna system has a base with two parallel tracks and a slider that moves along these tracks. The antenna is connected to a support frame pivotally attached to the slider. Pivot arms are pivotally attached between the reflector and the base adjacent to the parallel tracks. The elevational position of the antenna is adjusted by a motor that controls the position of the slider along the parallel tracks between a stowed position in which the antenna is stowed facing the vehicle and a deployed position in which the antenna is rotated to a maximum elevational angle. The azimuth of the antenna is controlled by a rotating assembly mounted to the roof of the vehicle beneath the base of the elevation control assembly.

87 citations

Patent
25 Apr 2003
TL;DR: In this article, a radiation-emitting device comprising a side emitting optoelectronic device having an upper surface and a heat sink in thermal conductivity with the side emitter is presented, where a reflector is positioned and shaped to reflect the emitted light in an output direction.
Abstract: A radiation-emitting device comprising a side-emitting optoelectronic device having an upper surface and a heat sink in thermal conductivity with the side-emitting optoelectronic device. A reflector at least partially surrounds the side-emitting optoelectronic device. The reflector is positioned and shaped to reflect the emitted light substantially in an output direction. A reflective, non-transparent layer is disposed adjacent the upper surface of the side-emitting optoelectronic device.

87 citations

Patent
21 Oct 2008
TL;DR: In this paper, a reflector for an ultraviolet lamp can be used in a substrate processing apparatus, where the reflector comprises a longitudinal strip extending the length of the ultraviolet lamp, and comprises a plurality of through holes to direct a coolant gas toward the UV lamp.
Abstract: A reflector for an ultraviolet lamp can be used in a substrate processing apparatus. The reflector comprises a longitudinal strip extending the length of the ultraviolet lamp. The longitudinal strip has a curved reflective surface and comprises a plurality of through holes to direct a coolant gas toward the ultraviolet lamp. A chamber that uses an ultraviolet lamp module with the reflector, and a method of ultraviolet treatment are also described.

87 citations

Journal ArticleDOI
Lei Zhao1, Yuhua Zuo1, C.L. Zhou1, Huanyin Li1, Hongwei Diao1, Wenjing Wang1 
TL;DR: In this paper, a light-trapping structure with an indium tin oxide (ITO) diffraction grating, an a-Si:H/ITO DBR and an Ag reflector was optimized by the simulation via rigorous coupled-wave analysis (RCWA).

87 citations

Journal ArticleDOI
TL;DR: In this paper, the effect of mutual coupling on the operation of a multiantenna system was investigated through simulations, where the authors designed a mushroom-type electromagnetic band-gap (EBG) structure to isolate the antennas and reduce the influence of coupling on radiation characteristics.
Abstract: This letter investigates the effect of mutual coupling on the operation of a multiantenna system. Radiation pattern, input impedance, gain, and efficiency of a slot antenna in proximity of another slot antenna are studied through simulations. A mushroom-type electromagnetic band-gap (EBG) structure is designed to isolate the antennas and reduce the influence of coupling on radiation characteristics. Two multiantenna prototypes are fabricated and experimentally evaluated. Measurement results confirm the improvement of isolation between the antennas by 28 dB at the radiation frequency of 5.2 GHz when the EBG reflector is utilized. In addition, the diversity gain of the two prototypes are measured using a reverberation chamber demonstrating an increase of 3.3 dB in the combined received power for 99% of transmission trials when the EBG structure is added in the substrate of the multiantenna system.

87 citations


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