Microwave millimeter-wave substrate integrated waveguide medium resonator antenna

A substrate-integrated waveguide and dielectric resonator technology, applied in resonators, waveguide-type devices, waveguides, etc., can solve the problems of high processing accuracy, expensive processing costs, cumbersome debugging, etc., and achieve good radiation directivity and device size reduction. , the effect of simple structure

Inactive Publication Date: 2006-09-27
SOUTHEAST UNIV
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AI Technical Summary

Problems solved by technology

In the microwave and millimeter wave frequency band, the design of dielectric resonant antenna can be realized by using traditional microstrip line technology, but when working at high frequency, the microstrip device has large spatial parasitic radiation and large loss, which directly affects the performance of the antenna
On the other hand, traditional metal waveguide technology can also be used to realize the design of dielectric resonator antennas, but when working at high frequencies, the antenna volume is very small, and the design of dielectric resonator antennas using traditional waveguide technology requires high processing accuracy And expensive processing costs. At the same time, it is difficult for this form of antenna to be directly integrated with the system circuit without gaps. After the processing is completed, cumbersome debugging is required, which increases the design cycle and design cost.

Method used

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  • Microwave millimeter-wave substrate integrated waveguide medium resonator antenna
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Embodiment Construction

[0020] A microwave and millimeter wave substrate integrated waveguide dielectric resonator antenna applied to microwave and millimeter wave circuits, comprising a dielectric substrate with metal patches on both sides, and an integrated waveguide on the dielectric substrate, the integrated waveguide consists of at least 2 rows It is composed of metal through holes. An input end is provided on one surface of the dielectric substrate and is connected to one end of the integrated waveguide. The other end of the integrated waveguide is short-circuited by a metal through hole. There is a coupling window covered with a dielectric resonator. The shape of the above-mentioned coupling window can be square, cross, circular, elliptical, etc., and the dielectric resonator is a dielectric column, which can be cylindrical, rectangular, cubic, elliptical, or special-shaped. The test of the present invention shows that the antenna has better radiation characteristics, better frequency characte...

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Abstract

This invention relates a microwave millimeter wave base sheet integration waveguide medium resonator antenna, which includes medium base sheet whose two faces are arranged with metal paster, on the metal paster there has integration waveguide, the waveguide is composed of at least two rows of metal through-holes, one face of the medium base sheet is arranged with inlet, and the inlet connects with one end of the integration waveguide, the other end of the integration waveguide connects with the metal through-hole in short circuit, the metal paster in the integration waveguide is arranged with the coupling window, on the coupling window there covers with medium resonator. The advantage in this invention is that the structure is simple, which is easy for designing; it has no parasitic radiation and exterior radiation, so it has lower wastage.

Description

technical field [0001] The invention relates to a substrate integrated antenna applied to microwave and millimeter wave circuits, in particular to a microwave and millimeter wave substrate integrated waveguide dielectric resonator antenna. Background technique [0002] Microwave and millimeter wave antennas are important components in modern communication systems. With the rapid development of modern communication systems, there is an urgent need for microwave and millimeter wave antennas with small size, low cost, easy integration and high performance. In the microwave and millimeter wave frequency band, the design of dielectric resonant antenna can be realized by using traditional microstrip line technology, but when working at high frequency, the microstrip device has large spatial parasitic radiation and large loss, which directly affects the performance of the antenna . On the other hand, traditional metal waveguide technology can also be used to realize the design of...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01P7/10H01P3/00H01Q13/00
Inventor 洪伟郝张成陈继新刘冰汤红军
Owner SOUTHEAST UNIV
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