Planar antenna array with circular polarization used in radar system, has layer of earth that is provided on back side of dielectric substrate, antenna elements made in form of closed elliptical microstrip line and connected to feeder using capacitive coupling
2024-09-16
专利权人KOGNITIV STOCK CO (KOGN-Non-standard)
申请日期2024-09-16
专利号RU230992-U1
成果简介NOVELTY - The array has a dielectric substrate (1). An input is provided on one outer layer of the dielectric substrate, which is a feeder (3) and is made in the form of a microstrip straight line. A radiating unit is antenna elements (4) located at half the wavelength with an indentation from the feeder. A layer (2) of earth is provided on the back side of the dielectric substrate. The antenna elements are made in the form of a closed elliptical microstrip line and are connected to the feeder using capacitive coupling. USE - Planar antenna array with circular polarization used in radar system, machine vision system, and in communication system e.g. fifth-generationcommunication system. ADVANTAGE - The selection of the number of emitters is based on the requirements for the gain and determines the final length of the feeder line. The gap between the emitter and the feeder line is selected in accordance with the window function coefficients to ensure the suppression of lateral radiation. DESCRIPTION OF DRAWING(S) - The drawing shows a schematic view of a planar antenna array with circular polarization. 1Dielectric substrate 2Layer of earth 3Feeder 4Antenna element
IPC 分类号H01Q-001/38 ; H01Q-021/06
国家俄罗斯
专业领域信息技术
语种英语
成果类型专利
文献类型科技成果
条目标识符http://119.78.100.226:8889/handle/3KE4DYBR/15143
专题中国科学院新疆生态与地理研究所
作者单位
KOGNITIV STOCK CO (KOGN-Non-standard)
推荐引用方式
GB/T 7714
LEVYAKOV V V,YUNCHIS A F,VASILYEV A S. Planar antenna array with circular polarization used in radar system, has layer of earth that is provided on back side of dielectric substrate, antenna elements made in form of closed elliptical microstrip line and connected to feeder using capacitive coupling. RU230992-U1[P]. 2024.
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