Dual-band antenna

US10916849B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10916849-B2
Application numberUS-201816134519-A
CountryUS
Kind codeB2
Filing dateSep 18, 2018
Priority dateJan 22, 2017
Publication dateFeb 9, 2021
Grant dateFeb 9, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present application discloses a coaxial dual-band antenna, including a waveguide tube, a ring groove, a high frequency feed, and a dielectric ring. The high frequency feed and the dielectric ring have a same axis with the waveguide tube. The waveguide tube has a tubular structure, and is configured to transmit a first electromagnetic wave, the ring groove whose opening direction is the same as an output direction of the first electromagnetic wave is on a wall of the waveguide tube. The high frequency feed is located in the waveguide tube. The dielectric ring is filled between the waveguide tube and the high frequency feed, and has a multi-layer structure. The area sizes of planes that are at layers of the dielectric ring and that are perpendicular to the axis alternately change, and a height of the dielectric ring is less than a height of the waveguide tube.

First claim

Opening claim text (preview).

What is claimed is: 1. A coaxial dual-band antenna, comprising: a waveguide tube, a ring groove, a high frequency feed, and a dielectric ring, wherein: the waveguide tube has a tubular structure and is configured to transmit a first electromagnetic wave, wherein the ring groove whose opening direction is the same as an output direction of the first electromagnetic wave is located on a wall plane at an output end of the waveguide tube, and wherein a frequency of the first electromagnetic wave is lower than a frequency of an electromagnetic wave transmitted by the high frequency feed; the high frequency feed is located in the waveguide tube and has a same axis with the waveguide tube, and wherein the first electromagnetic wave excites a transverse electric mode TE11 in the waveguide tube; the dielectric ring is filled between the waveguide tube and the high frequency feed, wherein the dielectric ring has a multi-layer structure and has the same axis with the waveguide tube, wherein area sizes of planes that are at layers of the dielectric ring and that are perpendicular to the axis alternately change, and wherein a height of the dielectric ring is less than a height of the waveguide tube; and wherein an outer wall of at least one of two adjacent layers of the dielectric ring is connected to an inner wall of the waveguide tube, and wherein an inner wall of the at least one of the two adjacent layers of the dielectric ring is connected to an outer wall of the high frequency feed. 2. The antenna according to claim 1 , wherein a height of the high frequency feed is the same as the height of the waveguide tube. 3. The antenna according to claim 1 , wherein a sum of a radius of the inner wall of the waveguide tube and a radius of the outer wall of the high frequency feed is greater than 1/π of a wavelength of the first electromagnetic wave, and wherein a difference between the two radiuses is less than ½ of the wavelength of the first electromagnetic wave. 4. The antenna according to claim 1 , wherein a difference between an inner radius of the ring groove and a radius of the inner wall of the waveguide tube is ⅛ of a wavelength of the first electromagnetic wave. 5. The antenna according to claim 4 , wherein a depth of the ring groove is between ⅕ and ¼ of the wavelength of the first electromagnetic wave, and wherein a width of the ring groove is ⅛ of the wavelength of the first electromagnetic wave. 6. The antenna according to claim 1 , wherein a layer of the dielectric ring that is farthest from an output plane of the waveguide tube is not connected to the waveguide tube and the high frequency feed at a same time. 7. The antenna according to claim 1 , wherein a height of each layer of the dielectric ring is ¼ of a wavelength of the first electromagnetic wave. 8. The antenna according to claim 1 , wherein a relative dielectric constant of the dielectric ring is between 2 and 4. 9. A dual-band parabolic antenna, comprising: a primary reflector; a secondary reflector; and a coaxial dual-band antenna, the coaxial dual-band antenna, comprising: a waveguide tube, a ring groove, a high frequency feed, and a dielectric ring, wherein: the waveguide tube has a tubular structure, and is configured to transmit a first electromagnetic wave, wherein the ring groove whose opening direction is the same as an output direction of the first electromagnetic wave is located on a wall plane at an output end of the waveguide tube, and wherein a frequency of the first electromagnetic wave is lower than a frequency of an electromagnetic wave transmitted by the high frequency feed; the high frequency feed is located in the waveguide tube, and has a same axis with the waveguide tube, and wherein the first electromagnetic wave excites a transverse electric mode TE11 in the waveguide tube; the dielectric ring is filled between the waveguide tube and the high frequency feed, wherein the dielectric ring has a multi-layer structure, and has the same axis with the waveguide tube, wherein area sizes of planes that are at layers of the dielectric ring and that are perpendicular to the axis alternately change, and wherein a height of the dielectric ring is less than a height of the waveguide tube; and wherein an outer wall of at least one of two adjacent layers of the dielectric ring is connected to an inner wall of the waveguide tube, and wherein an inner wall of the at least one of the two adjacent layers of the dielectric ring is connected to an outer wall of the high frequency feed. 10. The dual-band parabolic antenna according to claim 9 , wherein a height of the high frequency feed is the same as the height of the waveguide tube. 11. The dual-band parabolic antenna according to claim 9 , wherein a sum of a radius of the inner wall of the waveguide tube and a radius of the outer wall of the high frequency feed is greater than 1/π of a wavelength of the first electromagnetic wave, and wherein a difference between the two radiuses is less than ½ of the wavelength of the first electromagnetic wave. 12. The dual-band parabolic antenna according to claim 9 , wherein a difference between an inner radius of the ring groove and a radius of the inner wall of the waveguide tube is ⅛ of a wavelength of the first electromagnetic wave. 13. The dual-band parabolic antenna according to claim 12 , wherein a depth of the ring groove is between ⅕ and ¼ of the wavelength of the first electromagnetic wave, and wherein a width of the ring groove is ⅛ of the wavelength of the first electromagnetic wave. 14. The dual-band parabolic antenna according to claim 9 , wherein a layer of the dielectric ring that is farthest from an output plane of the waveguide tube is not connected to the waveguide tube and the high frequency feed at a same time. 15. The dual-band parabolic antenna according to claim 9 , wherein a height of each layer of the dielectric ring is ¼ of a wavelength of the first electromagnetic wave. 16. The dual-band parabolic antenna according to claim 9 , wherein a relative dielectric constant of the dielectric ring is between 2 and 4.

Assignees

Inventors

Classifications

  • comprising one main concave reflecting surface associated with an auxiliary reflecting surface · CPC title

  • Waveguide horns · CPC title

  • H01Q5/55Primary

    for horn or waveguide antennas · CPC title

  • with a coaxial arrangement of the feeds · CPC title

  • using reflecting surfaces · CPC title

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Frequently asked questions

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What does patent US10916849B2 cover?
The present application discloses a coaxial dual-band antenna, including a waveguide tube, a ring groove, a high frequency feed, and a dielectric ring. The high frequency feed and the dielectric ring have a same axis with the waveguide tube. The waveguide tube has a tubular structure, and is configured to transmit a first electromagnetic wave, the ring groove whose opening direction is the same…
Who is the assignee on this patent?
Huawei Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification H01Q5/55. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Feb 09 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).