Structural layout of WiFi antenna
By using an antenna board assembly on the bracket surface shell and the bracket bottom shell in the WiFi antenna, and fixing the antenna board with a snap or positioning column structure, the problems of WiFi signal interference and complex installation are solved, the signal strength is improved and the installation efficiency is improved, thereby improving the user experience and market competitiveness.
Patent Information
- Application Number
- CN202422749253.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-11
AI Technical Summary
The antenna layout of existing WiFi electronic products is unreasonable, resulting in signal interference, complex installation steps, weak signals, poor user experience, and low market competitiveness.
A first antenna board assembly and a second antenna board assembly are used on the bracket surface shell and the bracket bottom shell, and multiple antenna boards are fixed through a snap-on structure or a positioning column structure to increase the distance between the antenna board assemblies, avoid signal interference, and improve signal strength through multiple antenna boards, while simplifying the installation process.
It effectively avoids mutual interference of WiFi signals, improves signal strength, simplifies installation steps, enhances user experience and improves product market competitiveness.
Smart Images

Figure CN223427761U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to antenna technical field especially relates to a structure layout of WiFi antenna. BACKGROUND
[0002] The current market WiFi electronic product antenna layout is unreasonable, WiFi signal is easy to interfere with each other, and the installation procedure is more complex, in the use process product WiFi signal is weak, leads to user experience difference, causes market competitiveness not to be high. INVENTION CONTENTS
[0003] The utility model discloses a structure layout of WiFi antenna, which solves the problems of unreasonable antenna layout, easy interference of WiFi signals, complex installation steps, weak WiFi signals in the use process, poor user experience and low market competitiveness of the existing WiFi electronic products.
[0004] The utility model discloses a structure layout of WiFi antenna, which solves the problems of unreasonable antenna layout, easy interference of WiFi signals, complex installation steps, weak WiFi signals in the use process, poor user experience and low market competitiveness of the existing WiFi electronic products.
[0005] Further, the first antenna plate assembly includes an antenna plate three fixed to the bracket face shell through the positioning column structure, the positioning column structure includes a plurality of first column bodies and a first positioning convex part arranged on the first column body, and the antenna plate three is provided with a plurality of first positioning holes for embedding the first positioning convex part on the first column body.
[0006] Further, after the first positioning convex part on the first column body is embedded into the first positioning hole of the antenna plate three, the antenna plate three and the first column body are fixedly connected through hot glue.
[0007] Further, the first antenna plate assembly further includes an antenna plate four and an antenna plate five symmetrically arranged on both sides of the bracket face shell, and the buckle structure includes a plurality of first buckles and second buckles for buckling the antenna plate four and the antenna plate five on both sides of the bracket face shell.
[0008] Furthermore, a first mounting platform is provided at the front end of the bracket surface shell, and the first mounting platform has a symmetrically arranged first inclined surface and inclined surface E. The first antenna board assembly also includes an antenna board A and an antenna board E respectively arranged on the first inclined surface and inclined surface E, and the antenna board A and the antenna board E are fixed on the first inclined surface and inclined surface E by a third clip and a fourth clip.
[0009] Furthermore, the second antenna board assembly includes an antenna board 2 fixed to the bottom shell of the bracket through the positioning column structure, and the antenna board 2 is provided with a plurality of second positioning holes for the second positioning protrusions on the second column to be embedded.
[0010] Furthermore, after the second positioning protrusion on the second column is embedded in the second positioning hole of the second antenna board, the second antenna board and the second column are fixedly connected by hot glue.
[0011] Furthermore, the second antenna board assembly also includes antenna board 1 and antenna board 7 symmetrically arranged on both sides of the bracket bottom shell, and the snap-fit structure also includes a number of fifth snaps and sixth snaps for snapping the antenna board 1 and antenna board 7 to both sides of the bracket surface shell.
[0012] Furthermore, a second mounting platform is provided at the front end of the bracket bottom shell, and the second mounting platform has symmetrically arranged inclined surfaces B and inclined surfaces C. The second antenna board assembly also includes antenna board B and antenna board C respectively arranged on the inclined surfaces B and inclined surfaces C, and the antenna board B and antenna board C are fixed on the inclined surfaces B and inclined surfaces C by the seventh clip and the eighth clip.
[0013] Furthermore, the second antenna board assembly also includes an antenna board D arranged on the front side of the second mounting platform. After the antenna board D is fixed to the front side of the second mounting platform through a fixing column, the antenna board D and the second mounting platform are fixedly connected by hot glue.
[0014] The structural layout of a WiFi antenna provided by the present invention has the beneficial effect that: by respectively arranging the first antenna plate assembly and the second antenna plate assembly on the bracket face shell and the bracket bottom shell, the distance between the first antenna plate assembly and the second antenna plate assembly can be effectively increased, thereby effectively avoiding mutual interference of WiFi signals, and by using multiple antenna plates in the first antenna plate assembly and the second antenna plate assembly, the WiFi signal strength can be effectively improved, thereby improving the user experience during use, and further improving the market competitiveness of the product; in addition, by fixing multiple antenna plates to the bracket face shell and the bracket bottom shell through a snap-on structure or a positioning column structure, the installation structure of the antenna plates can be effectively simplified, the installation efficiency can be improved, and the stability of the multiple antenna plates fixed to the bracket face shell and the bracket bottom shell can be ensured. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the structural layout of the WiFi antenna provided by the utility model. Figure 1 ;
[0016] Figure 2 This is a schematic diagram of the structural layout of the WiFi antenna provided by the utility model. Figure 2 ;
[0017] Figure 3 This is a schematic diagram of the structural layout of the WiFi antenna provided by the utility model. Figure 3 ;
[0018] Figure 4 This is a schematic diagram of the structural layout of the WiFi antenna provided by the utility model. Figure 4 ;
[0019] Figure 5 This is a schematic structural diagram of antenna board 3 and antenna board 2 in the structural layout of the WiFi antenna provided by the present invention.
[0020] In the picture:
[0021] 100-WiFi antenna structure layout,
[0022] 10- bracket surface shell, 11- bracket bottom shell, 20- positioning column structure, 21- first column,
[0023] 22-first positioning protrusion, 23-second column, 24-second positioning protrusion, 30-first buckle,
[0024] 31-second snap, 32-third snap, 33-fourth snap, 34-fifth snap, 35-sixth snap, 36-seventh snap, 37-eighth snap, 40-antenna board three, 41-antenna board four, 42-antenna board five, 43-antenna board A, 44-antenna board E, 45-antenna board two, 46-antenna board one, 47-antenna board seven, 48-antenna board B, 49-antenna board C, 50-antenna board D, 60-first mounting platform, 61-inclined surface A, 62-inclined surface E, 70-second mounting platform, 71-inclined surface B, 72-inclined surface C. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0026] See also Figures 1-5The utility model provides a structure layout 100 of WIFI antenna, the structure layout 100 of WIFI antenna, the structure layout 100 of WIFI antenna includes support surface shell 10, support bottom shell 11 and the first antenna board subassembly and the second antenna board subassembly respectively arranged on support surface shell 10 and support bottom shell 11, and the first antenna board subassembly and the second antenna board subassembly all include a plurality of antenna boards, and a plurality of antenna boards are fixed on support surface shell 10 and support bottom shell 11 through buckle structure or positioning column structure 20, the WiFi antenna provided by the utility model can effectively increase the distance between the first antenna board subassembly and the second antenna board subassembly through the first antenna board subassembly and the second antenna board subassembly respectively arranged on support surface shell 10 and support bottom shell 11, thereby effectively avoiding the mutual interference of WIFI signal, and through a plurality of antenna boards in the first antenna board subassembly and the second antenna board subassembly, WIFI signal strength can be effectively improved, thereby improving the experience of user in the use process, and further improving the market competitiveness of product, in addition, a plurality of antenna boards are fixed on support surface shell 10 and support bottom shell 11 through buckle structure or positioning column structure 20, can effectively simplify the installation structure of antenna board, improve the installation efficiency, and guarantee the stability of a plurality of antenna boards fixed on support surface shell 10 and support bottom shell 11.
[0027] As Figure 1 , Figure 3 and Figure 5 indicated, in the embodiment provided by the utility model, the first antenna board subassembly includes antenna board three 40 fixed on support surface shell 10 through positioning column structure 20, positioning column structure 20 includes a plurality of first column 21 and the first positioning convex part 22 arranged on the first column 21, and antenna board three 40 is provided with a plurality of first positioning holes for the first positioning convex part 22 on the first column 21 embedding. By embedding the first positioning convex part 22 on the first column 21 into the first positioning hole of antenna board three 40, the positioning accuracy of antenna board three 40 on support surface shell 10 and the stability of fixed connection between antenna board three 40 and the first column 21 can be effectively improved. In addition, after embedding the first positioning convex part 22 on the first column 21 into the first positioning hole of antenna board three 40, antenna board three 40 and the first column 21 are fixedly connected through hot glue, which can further improve the stability of fixed connection between antenna board three 40 and the first column 21, and prevent antenna board three 40 from falling off the first column 21.
[0028] As Figure 1 and Figure 3As shown, the first antenna plate assembly further comprises antenna plate four 41 and antenna plate five 42 symmetrically arranged on both sides of the support surface shell 10, and the buckle structure comprises a plurality of first buckles 30 and second buckles 31 for buckling the antenna plate four 41 and the antenna plate five 42 on both sides of the support surface shell 10. By buckling the antenna plate four 41 and the antenna plate five 42 on both sides of the support surface shell 10 by using the first buckles 30 and the second buckles 31, the installation structure and the installation steps of the antenna plate four 41 and the antenna plate five 42 can be simplified while ensuring the stability of the antenna plate four 41 and the antenna plate five 42 buckled on the support surface shell 10 and further avoiding WIFI interference, thereby effectively improving the installation efficiency. In addition, the two sides of the first buckles 30 and the second buckles 31 also have installation end faces respectively, and the movement of the antenna plate four 41 and the antenna plate five 42 on the support surface shell 10 can be effectively avoided by the installation end faces, thereby effectively ensuring the positioning accuracy of the antenna plate four 41 and the antenna plate five 42 on the support surface shell 10.
[0029] As shown in Figure 1 and Figure 3 , the front end of the support surface shell 10 is also provided with a first mounting table 60, the first mounting table 60 has an inclined surface A61 and an inclined surface E62 symmetrically arranged thereon, and the first antenna plate assembly further comprises an antenna plate A43 and an antenna plate E44 arranged on the inclined surface A61 and the inclined surface E62 respectively, and the antenna plate A43 and the antenna plate E44 are fixed on the inclined surface A61 and the inclined surface E62 by using a third buckle 32 and a fourth buckle 33. By buckling the antenna plate A43 and the antenna plate E44 on both sides of the support surface shell 10 by using the third buckle 32 and the fourth buckle 33, the installation structure and the installation steps of the antenna plate A43 and the antenna plate E44 can be simplified while ensuring the stability of the antenna plate A43 and the antenna plate E44 buckled on the support surface shell 10 and further avoiding WIFI interference, thereby effectively improving the installation efficiency. In addition, the two sides of the third buckle 32 and the fourth buckle 33 also have installation end faces respectively, and the movement of the antenna plate A43 and the antenna plate E44 on the support surface shell 10 can be effectively avoided by the installation end faces, thereby effectively ensuring the positioning accuracy of the antenna plate A43 and the antenna plate E44 on the support surface shell 10.
[0030] As shown in Figure 2 , Figure 4 and Figure 5As shown, in the embodiment provided by the present invention, the second antenna board assembly includes an antenna board 2 45 fixed to the bracket bottom shell 11 via a positioning column structure 20. The antenna board 2 45 is provided with a plurality of second positioning holes for the second positioning protrusions 24 on the second column 23 to be inserted into. By inserting the second positioning protrusions 24 on the second column 23 into the second positioning holes of the antenna board 2 45, the positioning accuracy of the antenna board 2 45 on the bracket surface shell 10 and the stability of the fixed connection between the antenna board 2 45 and the second column 23 can be effectively improved. In addition, after the second positioning protrusions 24 on the second column 23 are inserted into the second positioning holes of the antenna board 2 45, the antenna board 2 45 and the second column 23 are fixedly connected by hot glue, which can further improve the stability of the fixed connection between the antenna board 2 45 and the second column 23 and prevent the antenna board 2 45 from falling off the second column 23.
[0031] like Figure 2 and Figure 4 As shown, the second antenna panel assembly also includes antenna panels 1 (46) and 7 (47) symmetrically positioned on either side of the bracket bottom housing (11). The snap-fit structure also includes a plurality of fifth and sixth snaps (34, 35) for snapping antenna panels 1 (46) and 7 (47) to either side of the bracket housing (10). By utilizing the fifth and sixth snaps (34, 35) to snap antenna panels 1 (46) and 7 (47) to either side of the bracket housing (10), the mounting structure and installation steps for antenna panels 1 (46) and 7 (47) are simplified, while ensuring stability and preventing Wi-Fi interference. Furthermore, mounting end surfaces are provided on either side of the fifth and sixth snaps (34, 35). These end surfaces effectively prevent antenna panels 1 (46) and 7 (47) from moving on the bracket housing (10), thereby ensuring accurate positioning of antenna panels 1 (46) and 7 (47) on the bracket housing (10).
[0032] like Figure 2 and Figure 4As shown, the front end of the bracket bottom shell 11 is also provided with a second mounting platform 70, which has symmetrically arranged inclined surfaces B70 and C72. The second antenna panel assembly also includes antenna panels B48 and C49, which are respectively arranged on inclined surfaces B70 and C72. Antenna panels B48 and C49 are fixed to inclined surfaces B70 and C72 via seventh and eighth clips 36 and 37. By using the seventh and eighth clips 36 and 37 to fasten antenna panels B48 and C49 to the sides of the bracket bottom shell 11, the stability of antenna panels B48 and C49 fastened to the bracket bottom shell 11 is ensured and Wi-Fi interference is further avoided. At the same time, the mounting structure and installation steps of antenna panels B48 and C49 are simplified, thereby effectively improving installation efficiency. In addition, the seventh clip 36 and the eighth clip 37 have positioning end faces on both sides, which can effectively prevent the antenna board B48 and the antenna board C49 from moving on the bracket bottom shell 11, thereby effectively ensuring the positioning accuracy of the antenna board B48 and the antenna board C49 on the bracket bottom shell 11.
[0033] like Figure 3 As shown, the second antenna panel assembly also includes an antenna panel D50 disposed on the front side of the second mounting platform 70. After the antenna panel D50 is secured to the front side of the second mounting platform 70 via fixing posts, the antenna panel D50 and the second mounting platform 70 are fixedly connected by hot glue. By securing the antenna panel D50 to the front side of the second mounting platform 70 via fixing posts, the positioning accuracy and installation stability between the antenna panel D50 and the second mounting platform 70 can be effectively ensured. After the antenna panel D50 is secured to the front side of the second mounting platform 70 via fixing posts, the antenna panel D50 and the second mounting platform 70 are fixedly connected by hot glue. This further improves the stability of the fixed connection between the antenna panel D50 and the second mounting platform 70 and prevents the antenna panel D50 from falling off the second mounting platform 70.
[0034] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A structural layout of a WiFi antenna, characterized in that: It includes a bracket face shell, a bracket bottom shell, and a first antenna board assembly and a second antenna board assembly respectively arranged on the bracket face shell and the bracket bottom shell. The first antenna board assembly and the second antenna board assembly each include a plurality of antenna boards, and the plurality of antenna boards are fixed to the bracket face shell and the bracket bottom shell through a snap structure or a positioning column structure.
2. The structural layout of a WiFi antenna according to claim 1, characterized in that: The first antenna board assembly includes an antenna board three fixed on the bracket surface shell through the positioning column structure. The positioning column structure includes a plurality of first columns and a first positioning protrusion arranged on the first columns. The antenna board three is provided with a plurality of first positioning holes for the first positioning protrusion on the first column to be embedded.
3. The structural layout of a WiFi antenna according to claim 2, characterized in that: After the first positioning protrusion on the first column is embedded in the first positioning hole of the antenna board three, the antenna board three is fixedly connected to the first column by hot glue.
4. The structural layout of a WiFi antenna according to claim 2, wherein: The first antenna board assembly also includes antenna board four and antenna board five symmetrically arranged on both sides of the bracket surface shell, and the snap-fit structure includes a plurality of first snaps and second snaps for snapping the antenna board four and antenna board five to both sides of the bracket surface shell.
5. The structural layout of a WiFi antenna according to claim 2, characterized in that: A first mounting platform is also provided at the front end of the bracket surface shell, and the first mounting platform has a first inclined surface and a second inclined surface symmetrically arranged. The first antenna board assembly also includes an antenna board A and an antenna board E respectively arranged on the first inclined surface and the second inclined surface, and the antenna board A and the antenna board E are fixed on the inclined surface A and the inclined surface E by a third clip and a fourth clip.
6. The structural layout of a WiFi antenna according to claim 2, wherein: The second antenna board assembly includes an antenna board 2 fixed to the bottom shell of the bracket through the positioning column structure, and the antenna board 2 is provided with a plurality of second positioning holes for the second positioning protrusions on the second column to be embedded.
7. The structural layout of a WiFi antenna according to claim 6, characterized in that: After the second positioning protrusion on the second column is embedded in the second positioning hole of the second antenna board, the second antenna board is fixedly connected to the second column by hot glue.
8. The structural layout of a WiFi antenna according to claim 6, characterized in that: The second antenna board assembly also includes antenna board 1 and antenna board 7 symmetrically arranged on both sides of the bracket bottom shell, and the snap-fit structure also includes a number of fifth snaps and sixth snaps for snapping antenna board 1 and antenna board 7 to both sides of the bracket surface shell.
9. The structural layout of a WiFi antenna according to claim 8, characterized in that: A second mounting platform is also provided at the front end of the bracket bottom shell, and the second mounting platform has symmetrically arranged inclined surfaces B and inclined surfaces C. The second antenna board assembly also includes antenna board B and antenna board C respectively arranged on the inclined surfaces B and inclined surfaces C, and the antenna board B and antenna board C are fixed on the inclined surfaces B and inclined surfaces C by the seventh clip and the eighth clip.
10. The structural layout of a WiFi antenna according to claim 9, characterized in that: The second antenna board assembly also includes an antenna board D arranged on the front side of the second mounting platform. After the antenna board D is fixed to the front side of the second mounting platform through a fixing column, the antenna board D and the second mounting platform are fixedly connected by hot glue.