This nonprovisional application is based on Japanese Patent Application No. 2007-185798 filed on Jul. 17, 2007 with the Japan Patent Office, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a primary radiator used for receiving satellite broadcasting, a low noise blockdownconverter (hereinafter referred to as “LNB”) using the primary radiator and a satellite broadcasting receiving antenna.
2. Description of the Background Art
A first conventional example of a so-called dual horn will be described. The dual horn includes two horns arranged close to each other to form a main body of a primary radiator. Specifically, a die-casting die is used to mold only the dual horn or the dual horn together with the main body in one piece (see for example Japanese Patent Laying-Open No. 11-041028). As shown in
The first conventional example, however, lacks adaptability in that for example the shape cannot be changed after the horn is once fabricated, because the horn which is a casting is fabricated using a mold. In the case where the shape of the horn is to be drastically changed, a new mold has to be prepared, which means the investment cost increases. Further, the second conventional example has the problem that only one primary radiator can be formed using the sheet metals of similar shapes.
The present invention has been made to solve the above-described problems. An object of the present invention is to provide a primary radiator, an LNB using the primary radiator and a satellite broadcasting receiving antenna for which sheet metal processing can be used to form a horn of a flexibly adaptable shape and to form a plurality of horns at a time.
In order to achieve this object, a primary radiator of the present invention includes: a plurality of horns each having an opening on a larger-diameter side and an opening on a tapered smaller-diameter side opposite to the larger-diameter side; and at least one corrugated portion provided around the opening on the larger-diameter side of the horns each. At least one corrugated portion includes an outermost corrugated portion formed to surround all of the plurality of horns, and the outermost corrugated portion is formed of one sheet metal member.
The primary radiator according to an embodiment of the present invention further includes a base plate to which the horns and the corrugated portion are fixed, at least one corrugated portion includes a plurality of corrugated portions including an innermost first corrugated portion, and a plurality of holes are made in the base plate. Respective ends on the smaller-diameter side of the horns are passed respectively through the plurality of holes, and respective peripheries of respective openings on the outer-diameter side of the horns are fixed to respective rims of the holes. The first corrugated portion is fixed to the base plate or to a receiving piece extending from the horns each such that the first corrugated portion is placed concentrically with the opening on the outer-diameter side of the horns each.
In a preferred embodiment of the primary radiator of the present invention, the corrugated portion has the first corrugated portion placed concentrically with each of the plurality of horns and a second corrugated portion provided on the outside of the first corrugated portion, and the second corrugated portion is formed in one piece bent from a perimeter of the base plate such that the second corrugated portion entirely surrounds respective first corrugated portions of all of the horns. Further, the primary radiator of the present invention may include a plurality of corrugated portions each formed of one sheet metal member.
In the primary radiator of the present invention, the horns and the corrugated portion are connected and fixed to each other by welding, electrically conductive adhesive, caulking or fastening using a fastening member, for example.
Regarding the primary radiator of the present invention having the structure as described above, the horn and the corrugated portion are formed of a combination of a plurality of sheet metal components so that the shape is flexibly adaptable. Further, various components may be prepared so that it is unnecessary to newly fabricate a mold. The distance between the horns can be freely adjusted. Moreover, horns formed of the sheet metal can be used to form the primary radiator including a plurality of horns.
The present invention includes an LNB having the above-described primary radiator as well as a satellite broadcasting receiving antenna having the LNB.
As compared with the above-described conventional examples which are each formed in basically one shape by casting (sheet metal processing) and thus change of the shape is difficult, the prevent invention provides the particular effects that the shape is flexibly adaptable and a die can be commonly used, so that the investment cost for the die can be reduced and a plurality of horns can be integrated into one piece by combination.
The foregoing and other objects, features, aspects and advantages of the present invention will become more apparent from the following detailed description of the present invention when taken in conjunction with the accompanying drawings.
In the following, embodiments of the present invention will be described with reference to the drawings. As shown in
Specifically, in primary radiator 10 of the present embodiment, two holes are made in an oval base plate 11. The tapered smaller-diameter end of horn 12 is passed through the hole and the periphery of the opening on the larger-diameter side of horn 12 is fixed to the rim of the hole. The horn has a hollow conical main body 12a, and a flange 12b, a cylindrical leg 12c and a receiving piece 12d are formed in one piece to bent from the periphery of the opening on the larger-diameter side. Further, cylindrical first corrugated portion 13 is fixed between base plate 11 and receiving piece 12d extending from horn 12 such that a groove is formed concentrically with each horn 12.
Further, by sheet metal processing of one sheet metal member, oval second corrugated portion 14 is formed to surround first corrugated portion 13 from the perimeter of base plate 11 such that a groove is partially formed with the first corrugated portion. Second corrugated portion 14 includes a first body 14a partially contacting first corrugated portion 13 and a second body 14b forming the groove.
As seen from the above, while the conventional primary radiator having a plurality of horns is formed by die casting and thus the design of the mold has to be changed when the shape is to be changed, the present embodiment prepares a plurality of sheet metal components that are combined to form the horns and the corrugated portions so that the primary radiator can be shaped to have an equivalent performance to that achieved by die casting.
While the present embodiment shows the example of the structure in which the two horns are arranged close to each other and side by side, it is apparently seen that the embodiment is applicable to the structure in which three or more horns are arranged closed to each other and side by side. Moreover, while the present embodiment shows the example where two corrugated portions surrounding one horn are provided, the number of the corrugated portions is not limited to two and one or three or more corrugated portions may be provided.
A primary radiator 10 according to another embodiment of the present invention will be described with reference to
Two holes are made in oval base plate 11, and the tapered smaller-diameter end of horn 12 is passed through the hole, the horns are arranged to contact each other, and the periphery of the opening on the larger-diameter side of the horn is fixed to the rim of the hole. The horn has hollow conical body 12a, and flange 12b, cylindrical leg 12c and receiving piece 12d are formed in one piece to bent from the periphery of the opening on the larger-diameter side.
First corrugated portion 13 of an expanded cylinder in shape is provided to partially form a groove with the horn, such that the first corrugated portion 13 surrounds the horn from the perimeter of base plate 11. The receiving piece of first corrugated portion 13 is fixed between base plate 11 and the receiving piece extending from horn 12.
By sheet metal processing of one sheet metal member, the second corrugated portion is formed in one piece and bent from the perimeter of base plate 11. Second corrugated portion 14 of an expanded cylinder in shape is provided to surround first corrugated portion 13 such that a groove is formed with first corrugated portion 13. Second corrugated portion 14 includes first body 14a partially contacting first corrugated portion 13 and second body 14b forming the groove.
A fixing structure for the horn and the corrugated portions will be described.
A satellite broadcasting receiving antenna uses the primary radiator to which the present invention is applied. As shown in
While the above embodiments show the example of the structure in which two horns are arranged close to each other and side by side, the embodiments are applicable as well to the structure in which three or more horns are arranged close to each other and side by side. Further, the number of corrugated portions is not limited to two, and one or three or more corrugated portions may be provided.
Although the present invention has been described and illustrated in detail it is clearly understood that the same is by way of illustration and example only and is not to be taken by way of limitation, the scope of the present invention being interpreted by the terms of the appended claims.
Number | Date | Country | Kind |
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2007-185798 | Jul 2007 | JP | national |