This Application claims priority of Taiwan Patent Application No. 106140100, filed on Nov. 20, 2017, the entirety of which is incorporated by reference herein.
Field of the Invention
The present invention relates to an antenna cover, and in particular to an antenna cover of a horn antenna module.
Description of the Related Art
Conventionally, the free end of a waveguide of a horn antenna is covered by an antenna cover. The antenna cover prevents water from entering the wave guide, and prevents the convertor of the horn antenna from being damaged by water.
Conventional antenna covers are planar, and are made of materials that have a low dielectric coefficient (for example, polypropylene). However, when the environmental temperature changes, the difference between environmental pressure and the inner pressure of the horn antenna deforms the planar antenna cover. The performance (such as cross polarization) of the horn antenna is affected, and the signal transmission of the horn antenna deteriorates.
Conventionally, an antenna cover with one single protrusion is provided to increase the strength of the antenna cover, and to prevent deformation. However, the antenna cover with a single protrusion cannot optimize the signal transmission of each horn antenna on the horn antenna module (for example, one horn antenna module may have one low-band horn antenna and two high-band horn antennae). In particular, the performance of the horn antennas located on lateral sides of the horn antenna module may become deteriorated.
In one embodiment, a horn antenna module is provided. The horn antenna module includes a waveguide and an antenna cover. The waveguide includes a plurality of waveguide paths. The antenna cover covers one end of the waveguide. The antenna cover includes a plurality of protrusions and a bottom surface. The protrusions are formed on the bottom surface. The protrusions correspond one-to-one with the waveguide paths. Each protrusion has a top surface and a lateral surface. The lateral surface is located between the top surface and the bottom surface. The top surface is planar.
In one embodiment, the lateral surface forms a first side and a second side on a cross section, the cross section is perpendicular to the bottom surface, and the first side and the second side are straight lines.
In one embodiment, the lateral surface forms a first side and a second side on a cross section, the cross section is perpendicular to the bottom surface, and the first side and the second side are curves with the same radius.
In one embodiment, the protrusions comprise a first protrusion, a second protrusion and a third protrusion, the waveguide paths comprise a first waveguide path, a second waveguide path and a third waveguide path, the first protrusion corresponds to the first waveguide path, the second protrusion corresponds to the second waveguide path, the third protrusion corresponds to the third waveguide path, the first protrusion is located between the second protrusion and the third protrusion, the first waveguide path transmits a low-band signal, and the second waveguide path and the third waveguide path transmit a high-band signal.
In one embodiment, the top surface of the first protrusion projects a first circular area on a projection plane, the projection plane is parallel to the bottom surface, the first protrusion projects an elliptical area on the projection plane, the ratio of the diameter of the first circular area to the major axis of the elliptical area is between 0.05:1 and 0.4:1.
In one embodiment, the top surface of the second protrusion projects a second circular area on the projection plane, the second protrusion projects a third circular area on the projection plane, and the ratio of the diameter of the second circular area to the diameter of the third circular area is between 0.1:1 and 0.6:1.
In one embodiment, the height of the first protrusion differs from that of the second protrusion and of the third protrusion.
In one embodiment, the first waveguide path comprises a tube-shaped section and a cone-shaped section, one end of the tube-shaped section is connected to a narrow end of the cone-shaped section, a distance is formed between the narrow end and the top surface of the first protrusion, and the distance is equal to a quarter of the wavelength of the low-band signal.
In one embodiment, each protrusion comprises a material feed feature, and the material feed feature is formed on the lateral surface.
In one embodiment, the waveguide path projects a path area on a projection plane, the projection plane is parallel to the bottom surface, and a projection of the material feed feature on the projection plane is out of the path area.
In one embodiment, the material feed feature is a recess.
In one embodiment, an antenna cover is provided. The antenna cover covers an end of a waveguide. The antenna cover includes a plurality of protrusions and a bottom surface. The protrusions are formed on the bottom surface, each protrusion has a top surface and a lateral surface. The lateral surface is located between the top surface and the bottom surface. The top surface is planar.
Utilizing the horn antenna module and the antenna cover of the embodiment of the invention. The protrusions increase the strength of the antenna cover. The antenna cover therefore can resist the difference between the environmental pressure and the inner pressure of the horn antennas due to temperature change. The antenna cover is prevented from deforming, and the thickness of the antenna cover is reduced. The radio frequency (RF) performance of the horn antenna module is therefore improved. The shape of each protrusion can be optimized according to the corresponding waveguide to improve the performance of the horn antenna module. In one embodiment, the cross polarization of the converter utilizing the antenna cover of the embodiment of the invention can be more than 23 dB (full band).
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
The following description is of the best-contemplated mode of carrying out the invention. This description is made for the purpose of illustrating the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
With reference to
In this embodiment of the invention, the top surface of the protrusion is planar. The thickness of the top portion of the protrusion is decreased, and the radio frequency (RF) performance of the horn antenna module can be improved.
With reference to
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In the embodiments above, the top surface 211 of the first protrusion 21 projects the circular area on the projection plane. The first protrusion 21 projects the elliptical area on the projection plane. The top surface 221 of the second protrusion 22 projects the circular area on the projection plane. The second protrusion 22 projects the circular area on the projection plane. However, the disclosure is not meant to restrict the invention.
Utilizing the horn antenna module and the antenna cover of the embodiment of the invention. The protrusions increase the strength of the antenna cover. The antenna cover therefore can resist the difference between the environmental pressure and the inner pressure of the horn antennas due to temperature change. The antenna cover is prevented from deforming, and the thickness of the antenna cover is reduced. The radio frequency (RF) performance of the horn antenna module is therefore improved. The shape of each protrusion can be optimized according to the corresponding waveguide to improve the performance of the horn antenna module. In one embodiment, the cross polarization of the converter utilizing the antenna cover of the embodiment of the invention can be more than 23 dB (full band).
Use of ordinal terms such as “first”, “second”, “third”, etc., in the claims to modify a claim element does not by itself connote any priority, precedence, or order of one claim element over another or the temporal order in which acts of a method are performed, but are used merely as labels to distinguish one claim element having a certain name from another element having the same name (but for use of the ordinal term).
While the invention has been described by way of example and in terms of the preferred embodiments, it should be understood that the invention is not limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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106140100 A | Nov 2017 | TW | national |
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Number | Date | Country | |
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20190157750 A1 | May 2019 | US |