This non-provisional application claims priority under 35 U.S.C. ยง 119(a) to Patent Application No. 110109852 filed in Taiwan, R.O.C. on Mar. 18, 2021, the entire contents of which are hereby incorporated by reference.
The present invention provides an antenna assembly, and in particular, an external antenna assembly.
Currently, millimeter wave antennas are mostly disposed inside electronic devices. For example, a millimeter wave antenna is disposed in a laptop computer. Since the millimeter wave antenna is fixedly disposed in the electronic device, a range covered by the antenna beam is only a fixed angle of 120 degrees, which easily causes poor signals of the antennas. In addition, the millimeter wave antenna is likely to be overheated due to being disposed in the electronic device.
In view of this, according to some embodiments, an antenna assembly includes a base, a lower shell, a heat-dissipating support, an antenna body, and an upper shell. The base includes a base and a connecting portion connected to each other. The lower shell includes a pivotal base, the pivotal base is located at a first end of the lower shell, and a second end of the lower shell is connected to the connecting portion. The heat-dissipating support includes a bottom portion, a fixed portion, and an extension portion connected in sequence, and the bottom portion is pivotally disposed on the pivotal base. The antenna body includes an adapter board and a first antenna connected to each other, the adapter board includes a fixed end, and the fixed end is fixed to the extension portion. The upper shell includes an accommodation space, the accommodation space is configured to accommodate the heat-dissipating support and the antenna body, and the fixed portion is fixed to the upper shell.
According to some embodiments, the base body has a first opening, the connecting portion has a second opening, and the first opening is in communication with the second opening. The pivotal base has a through hole, the adapter board includes a contact terminal, and the contact terminal is opposite to the fixed end. The antenna assembly includes a cable, and the cable extends through the first opening, the second opening, and the through hole, and is electrically connected to the contact terminal.
According to some embodiments, the lower shell includes a bearing surface, the bearing surface is located at the first end of the lower shell, and the pivotal base is located on the bearing surface. The bottom portion has a pivotal hole, and the pivotal hole is sleeved on the pivotal base, so that the heat-dissipating support is pivoted about the pivotal axis of the pivotal base.
According to some embodiments, the upper shell includes an underside and a guide post located on the underside, the lower shell includes a guide rail, the guide rail is located in the bearing surface, and the guide post is located in the guide rail.
According to some embodiments, the lower shell envelops at least part of the connecting portion, the connecting portion has a pivotal shaft, the lower shell has a pivotal hole, the pivotal shaft is located in the pivotal hole, and an included angle is formed between the pivotal shaft and the pivotal axis.
According to some embodiments, the lower shell envelops at least part of the connecting portion, the connecting portion has a pivotal shaft, the lower shell has a pivotal hole, and the pivotal shaft is located in the pivotal hole.
According to some embodiments, the connecting portion includes a plurality of positioning elements, the shell has a matching element, and when the lower shell is pivoted relative to the connecting portion about the pivotal shaft, the matching element is selectively located in one of the positioning elements.
According to some embodiments, the antenna assembly further includes an adhering member. One side of the adhering member is adhered to the fixed end, and the other side adhered to the extension portion, so that the fixed end is fixed to the extension portion.
According to some embodiments, the extension portion includes a first extension portion and a second extension portion connected in sequence, and the adapter board includes an adhering end. The adhering end is spaced apart from the first extension portion by a distance, a part of the first antenna is connected to the adhering end, and the other part of the first antenna is connected to the second extension portion.
According to some embodiments, the antenna body further includes a second antenna, one part of the second antenna is connected to the extension portion, and the other part of the second antenna protrudes from the extension portion.
According to some embodiments, the base body further includes a pivotal portion and a snap-fit portion connected to each other. The pivotal portion is pivotally connected to an external device, and the snap-fit portion is snap-fitted to an inner edge of the external device.
Detailed features and advantages of the present invention are described in detail in the following implementations, which are sufficient for any person skilled in the art to understand the technical content of the present invention and implement the operation accordingly. According to the content, the scope of patent application, and the drawings disclosed in this specification, any person skilled in the art can easily understand the related objective and advantage of the present invention.
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The base 10 includes a base body 11 and a connecting portion 12 connected to each other. The base body 11 has a first opening 10a, and the connecting portion 12 has a second opening 10b. In this way, the first opening 10a is in communication with the second opening 10b. The pivotal base 21 of the lower shell 20 has a through hole 22. Referring to
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In some embodiments, two guide rails 24 are provided and are respectively located on two sides of the pivotal base 21. In addition, a number of guide posts 52 correspond to the guide rails 24. In this way, the angle at which the upper shell 50 is pivoted is to be limited by the guide rails 24 on both sides of the pivotal base 21, and the upper shell is rotated in clockwise and counterclockwise directions by 45 degrees (as shown in
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In some embodiments, as shown in
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The antenna assembly further includes an adhering member 70. One side of the adhering member is adhered to the fixed end 41, and the other side adhered to the extension portion 33, so that the fixed end 41 is fixed to the extension portion 33. In this way, the antenna body 400 can be fixed to the heat-dissipating support 30. In addition, the extension portion 33 includes a first extension portion 33b and a second extension portion 33a connected in sequence. The adapter board 40 includes an adhering end 43, a part of the first antenna 80 is connected to the adhering end 43, and the adhering end 43 is located on the first extension portion 33b and is spaced apart from the first extension portion 33b by a distance. The other part of the first antenna 80 is connected to the second extension portion 33a. The adhering member 70 is, for example, but not limited to, a double-sided adhesive tape.
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An external device 100 is an electronic device, for example, but not limited to a tablet computer, a notebook computer, or the like. The base body 11 includes a pivotal portion 11a and a snap-fit portion 11b connected to each other. An outer diameter of the snap-fit portion 11b is greater than an outer diameter of the pivotal portion 11a. The external device 100 includes a disposing hole 110 for disposing the antenna assembly on the external device 100. In this way, the pivotal portion 11a extends through the disposing hole 110, and the snap-fit portion 11b is snap-fitted to an inner edge 120 of the external device 100, so that the antenna assembly is located on the external device 100 and is pivoted about the pivotal portion 11a.
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In some embodiments, the antenna body 400 further includes a second antenna 90. The second antenna 90 is, for example, but not limited to, a Wi-Fi antenna. The second antenna 90 is connected to the heat-dissipating support 30 and is located on a different surface of the adapter board 40 from the first antenna 80, that is, the adapter board 40 is located between the second antenna 90 and the first antenna 80. In some embodiments, the second antenna 90 and the first antenna 80 may be disposed on the same surface of the adapter board 40. When the second antenna 90 is connected to the heat-dissipating support 30, one part of the second antenna 90 is connected to the extension portion 33, and the other part of the second antenna 90 protrudes from the extension portion 33. Furthermore, the part of the second antenna 90 is connected to the second extension portion 33a, and the other part of the second antenna 90 protrudes from an end of the second extension portion 33a. In this way, the cable 60 can extend through the first antenna 80 and an upper part of the adapter board 40 and is electrically connected to the second antenna 90.
Based on the above, in some embodiments, an antenna unit and the heat-dissipating support are rotated by the antenna assembly through the rotation of the upper shell relative to the lower shell, so that the antenna unit can increase the coverage range of antenna beams with the angle of rotation, which solves at least one of the problems of an insufficient coverage range of the conventional antenna beam and overheating easily caused by disposing the antenna in the electronic device.
Although the present invention has been described in considerable detail with reference to certain preferred embodiments thereof, the disclosure is not for limiting the scope of the invention. Persons having ordinary skill in the art may make various modifications and changes without departing from the scope and spirit of the invention. Therefore, the scope of the appended claims should not be limited to the description of the preferred embodiments described above.
Number | Date | Country | Kind |
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110109852 | Mar 2021 | TW | national |