The present invention relates to a mounting bracket for an antenna and an antenna assembly using the mounting bracket, and particularly to a mounting bracket for a satellite dish antenna and a satellite dish antenna assembly using the mounting bracket.
A satellite dish antenna is a type of parabolic antenna designed to receive microwave signals from communications satellites, which transmit data transmissions or broadcasts, such as satellite television. Generally, the satellite dish antenna is mounted by use of a mounting bracket so that stable microwave signals can be received. The satellite dish antenna can be mounted on an object, for example, a plane (e.g., the ground, a roof and a wall), an edge of a plate (e.g., an edge of a table top), a mast, and so on. However, a typical mounting bracket only has a single mounting function so that the typical mounting bracket can only be mounted on an object having a corresponding structure. That is, a sort of mounting bracket can only be mounted on a plane, a sort of mounting bracket can only be mounted on an edge of a plate, and a sort of mounting bracket can only be mounted on a mast. Thus, the mount of the satellite dish antenna is limited by the structure of the mounting bracket. Particularly, when a user is in a trip, the user can not find a suitable object corresponding to the mounting bracket anywhere. Thus, the satellite dish antenna can not be mounted by use of the typical mounting bracket conveniently, thereby causing some troubles of using the satellite dish antenna.
Therefore, what is needed is a mounting bracket having a number of mounting functions for a satellite dish antenna to overcome the disadvantages of the typical mounting bracket described above.
The present invention provides a mounting bracket having a number of mounting functions for a satellite dish antenna.
The present invention also provides a satellite dish antenna assembly using the mounting bracket having a number of mounting functions.
The present invention provides a mounting bracket for a satellite dish antenna. The mounting bracket includes a mounting base for mounting the satellite dish antenna thereon, a first frame and a second frame. The first frame includes a pivoting portion at one end thereof. The pivoting portion is pivoted to one side of the mounting base so that the pivoting portion is capable of rotating from a horizontal position to a vertical position. The second frame includes a pivoting portion at one end thereof. The pivoting portion is pivoted to another side of the mounting base opposite to the one side of mounting base so that the pivoting portion being capable of rotating from a horizontal position to a vertical position. The first frame and the second frame are capable of rotating in the horizontal position simultaneously by rotating the respective pivoting portion, thereby making the mounting bracket in an extending state. The first frame and the second frame are also capable of rotating in the vertical position simultaneously by rotating the respective pivoting portion, thereby making the mounting bracket in a folding state.
In one aspect, the mounting bracket further includes a fixing device configured for cooperating with the mounting bracket in the folding state to mount the satellite dish antenna on an edge of a plate. The fixing device includes an upper clamping member located on the mounting bracket in the folding state, the upper clamping having a first rim and a second rim, the first rim and the second rim attaching to two opposite sides of the mounting bracket in the folding state; a lower clamping member located on a bottom surface of the plate; and a coupling rod for connecting the upper clamping member and the lower clamping member, the coupling rod comprising a bending portion, an upper portion upwardly vertically extending from the upper end of the bending portion and a lower portion transversely horizontally extending from the lower end of the bending portion, the lower portion being installed in the lower clamping member, the bending portion being around the edge of the plate, the upper portion passing through the mounting bracket in the folding state and the upper clamping member, and the upper portion having a screw thread section for cooperating with a screw cap so as to fasten the fixing device.
In another aspect, the mounting bracket further includes a fixing device configured for cooperating with the mounting bracket in the folding state to mount the satellite dish antenna on a surface of a vertical plate. The fixing device includes a sucker and a control member having a hanging latch, the first frame further comprises an erect portion substantially vertical thereto, the second frame further comprises an erect portion substantially vertical thereto, the two erect portions face to each other, and a hanging groove corresponding to the hanging latch is defined between the two erect portions and configured for hanging the hanging latch of the control member.
In still another aspect, the mounting bracket further includes a fixing device configured for cooperating with the mounting bracket in the folding state to mount the satellite dish antenna on a mast, the fixing device comprises a U-shaped screw and two corresponding screw caps, the first frame further comprises an erect portion substantially vertical thereto, a corner of the erect portion of the first frame is cut out along the extending direction of the erect portion of the first frame, thereby forming an attaching portion at an inner side of the erect portion of the first frame, the second frame further comprises an erect portion substantially vertical thereto, a corner of the erect portion of the second frame is cut out along the extending direction of the erect portion of the second frame, thereby forming an attaching portion at an inner side of the erect portion of the second frame, the two erect portions face to each other, the U-shaped screw and the two erect portion cooperate for surrounding the mast so that the mast attach to the two attaching portion of the two erect portions, and the U-shaped screw is cooperated with the corresponding screw caps so as to fasten the mounting bracket in the folding state on the mast.
The first frame includes a transverse portion and a slant portion, the pivoting portion of the first frame extends from the slant portion, the slant portion of the first frame is located between the pivoting portion and the transverse portion of the first frame, the second frame comprises a transverse portion and a slant portion, the pivoting portion of the second frame extends from the slant portion of the second frame, and the slant portion of the second frame is located between the pivoting portion and the transverse portion of the second frame.
The mounting bracket in the folding state has two surfaces facing to each other, the two surfaces have a plurality of cushions disposed thereon, the cushions is configured for forming a gap between the first frame and the second frame when the mounting bracket is in the folding state, and the cushions is also configured for attaching to a plane when the mounting bracket is in the extending state.
The mounting base defines a hole, the hole is configured for installing the satellite dish antenna therein so that the satellite dish antenna is capable of rotating in 360 degrees in the hole, a fastening screw is disposed at a side of the mounting base and configured for fastening the satellite dish antenna in the hole.
The mounting bracket can be changed from the extending state to the folding state. The mounting bracket in the extending state can be mounted on a plane. The mounting bracket in the folding state can be mounted on an edge of the plate, a surface of the plate or a mast by cooperating with various fixing devices. Accordingly, the mounting bracket of the satellite dish antenna assembly has a number of mounting functions.
These and other features and advantages of the various embodiments disclosed herein will be better understood with respect to the following description and drawings, in which like numbers refer to like parts throughout, and in which:
Referring to
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The mounting base 21 is configured for coupling to the antenna 1 so that the antenna 1 is mounted on the mounting bracket 2. A hole 211 is defined in the top portion of the mounting base 21 and a fastening screw 212 is disposed at a side of the mounting base 21. The shaft 12 at the bottom of the antenna base 11 inserts into the hole 211 and is configured for rotating in 360 degrees in the hole 211. The fastening screw 212 is screwed to attach to the shaft 12 in the hole 211 so as to fix the shaft 12 when the antenna 1 is adjusted to a suitable position by rotating the shaft 12.
The first frame 22 includes a pivoting portion 221, a transverse portion 222 and a slant portion 223. The pivoting portion 221 is located at one end of the first frame 22. The transverse portion 222 is located at another end of the first frame 22. The slant portion 223 connects to the pivoting portion 221 and the transverse portion 222 respectively. That is, the pivoting portion 221 extends from the slant portion 223 and the slant portion 223 is located between the pivoting portion 221 and the transverse portion 222. The pivoting portion 221 is pivoted to one side of the mounting base 21 so that the first frame 22 can be rotated from a horizontal position to a vertical position.
Further, the second frame 23 includes a pivoting portion 231, a transverse portion 232 and a slant portion 233. The pivoting portion 231 is located at one end of the first frame 23. The transverse portion 232 is located at another end of the second frame 23. The slant portion 233 connects to the pivoting portion 231 and the transverse portion 232 respectively. That is, the pivoting portion 231 extends from the slant portion 233 and the slant portion 233 is located between the pivoting portion 231 and the transverse portion 232. The pivoting portion 231 is pivoted to another side of the mounting base 21 opposite to the one side of the mounting base 21 so that the second frame 23 can be rotated from a horizontal position to a vertical position.
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Additionally, the mounting bracket 2 in the folding state has two surfaces facing to each other. One surface is located on the first frame 22, and the other surface is located on the second frame 23. Each surface defines a slot 52 therein. A stable wing 53 is rotatably pivoted in the slot 52. The slot 52 is configured for containing the corresponding stable wing 53. Referring to
Further, the mounting bracket 2 in the folding state has two surfaces facing to each other. When the first frame 22 and the second frame 23 are both in the horizontal position to make the mounting bracket 2 in the extending state, the two surfaces are actually located at the bottom of the mounting bracket 2 in the extending state. The two surfaces have a number of cushions 51 disposed thereon. The cushions 51 can be made of a material selected from a group consisting of silicone, rubber and soft plastics. The cushions 51 of the mounting bracket 2 in the extending state are located at the bottom of the mounting bracket 2 in the extending state and contact with the plane 31 so as to protect the mounting bracket 2 in the extending state and increase stability of the mounting bracket 2 in the extending state. The cushions 51 of the mounting bracket 2 in the folding state are located two surfaces facing to each other of the mounting bracket 2 in the folding state, thereby forming a gap 27 between the first frame 22 and the second frame 23 of the mounting bracket 2 in the folding state. The gap 27 can be configured for receiving the coupling rod 43 or other fixing associated device.
The satellite dish antenna assembly can be used readily anywhere. The mounting bracket can be changed from the extending state to the folding state. The mounting bracket in the extending state can be mounted on a plane. The mounting bracket in the folding state can be mounted on an edge of the plate, a surface of the plate or a mast by cooperating with various fixing devices. Accordingly, the mounting bracket of the satellite dish antenna assembly has a number of mounting functions.
The above description is given by way of example, and not limitation. Given the above disclosure, one skilled in the art could devise variations that are within the scope and spirit of the invention disclosed herein, including configurations ways of the recessed portions and materials and/or designs of the attaching structures. Further, the various features of the embodiments disclosed herein can be used alone, or in varying combinations with each other and are not intended to be limited to the specific combination described herein. Thus, the scope of the claims is not to be limited by the illustrated embodiments.
Number | Name | Date | Kind |
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6734830 | Bickham | May 2004 | B1 |
7456802 | Bourgeois | Nov 2008 | B1 |
7880682 | Fruh et al. | Feb 2011 | B2 |
Number | Date | Country | |
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20100289718 A1 | Nov 2010 | US |