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An End-fed Wide Bandwidth Beam Ridge Horn

A ridge horn and wide bandwidth technology, applied in waveguide horns, electrical components, circuits, etc., can solve the problems of small structural size, structural size limitation, waveguide size that cannot meet the requirements, etc., and achieve excellent performance

Active Publication Date: 2017-06-06
CHENGDU JINJIANG ELECTRONICS SYST ENG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Conventional standard waveguide dimensions under this caliber cannot meet the requirements
[0004] Existing broadband horn antennas include standard waveguide horns and broadband ridge horns. Standard waveguide horns can usually meet broadband matching. However, due to the limitation of their structural size, the broadside of the waveguide cannot be compressed, so standard waveguide horns cannot meet the requirements of use.
Broadband ridge horns are usually used in the field of broadband ultra-wideband, and their wide beam characteristics cannot meet the requirements of use
[0005] Therefore, the existing technology cannot meet the requirements of ensuring small structure size and wide beam width

Method used

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  • An End-fed Wide Bandwidth Beam Ridge Horn
  • An End-fed Wide Bandwidth Beam Ridge Horn
  • An End-fed Wide Bandwidth Beam Ridge Horn

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Embodiment Construction

[0027] The technical solution of the present invention will be further described in detail below in conjunction with the accompanying drawings, but the protection scope of the present invention is not limited to the following description.

[0028] Taking advantage of the small size of the ridge waveguide structure, adjusting the caliber of the waveguide, and changing the distance c between the ridge of the trapezoidal waveguide and the inner wall of the rectangular horn shell, the waveguide size can meet the structural requirements and at the same time resonate at the required operating frequency; By adjusting the distance between the trapezoidal waveguide ridge and the coaxial connector 3 to d, the reactance component of the horn at resonance can be adjusted to achieve the impedance matching of the horn in the working frequency band; finally, the output ridge transformation waveguide-coaxial conversion of the end surface is used To achieve the matching between the impedance 50...

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Abstract

The invention discloses an end-feedback broadband wide beam ridge horn. The end-feedback broadband wide beam ridge horn comprises a rectangular horn shell (1), a trapezoidal waveguide ridge (2) and a coaxial connector (3), wherein the trapezoidal waveguide ridge (2) is arranged on the inner wall of the rectangular horn shell (1) and is fixedly connected to the rectangular horn shell (1) and the coaxial connector (3); the rectangular horn shell (1) and the trapezoidal waveguide ridge (2) compose a ridge waveguide structure. By utilizing the characteristic that the ridge waveguide structure is small in structure, the caliber of the waveguide is adjusted, the distance from the trapezoidal waveguide ridge to the inner wall of the rectangular horn shell is changed, and the distance between the trapezoidal waveguide ridge and the coaxial connector is adjusted; matching between impedance 50 ohm of a coaxial line input end and impedance 377 ohm of free space wave at the output end is realized by utilizing ridge-shaped conversion type waveguide output by the end face and coaxial conversion. The end-feedback broadband wide beam ridge horn can realize broadband optimal matching and meet with a wide-angle coverage requirement, an input standing wave VSWR is less than 1.5 within a frequency range of a nearly octave, and a directional diagram can meet with an antenna scanning need.

Description

technical field [0001] The invention relates to a radar antenna structure, in particular to an end-fed wide bandwidth beam ridge horn. Background technique [0002] The beam width of the radiation unit in the two-dimensional phased array system radar is small, and the matching is difficult. The quality of its performance will directly affect the performance of the radar antenna. The wide bandwidth angle matching of the radiating element creates conditions for realizing the radar with low sidelobe and small loss of scanning gain. [0003] According to the requirements of the antenna array on the telecommunication performance and structural size of the radiating unit, that is, the diameter of the E-plane of the horn is less than 56mm, and the H-plane is less than 68mm. Conventional standard waveguide dimensions under this caliber cannot meet the requirements. [0004] Existing broadband horn antennas include standard waveguide horns and broadband ridge horns. Standard wavegu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01Q13/02H01Q23/00
Inventor 唐传机王浩周成哲于嘉嵬
Owner CHENGDU JINJIANG ELECTRONICS SYST ENG
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