Router shell structure
By designing a double-layer structure antenna hole on the router housing and setting a limit slot, combining the integrated fitting and recessed structure of the antenna hole and the side, the problem of easy breakage in the existing router housing antenna installation structure is solved, improving damage resistance and service life, and reducing packaging costs.
Patent Information
- Application Number
- CN202421713056.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-18
AI Technical Summary
The existing router housing antenna installation structure mostly adopts a single-layer hole design, which can easily cause the antenna hole interface to break during fall resistance test or long-term use, affecting the service life of the router.
An antenna hole with a double-layer structure is adopted, and a first limit groove for the antenna to engage and rotate is provided on the inner layer, and the antenna hole is integrated with the side and the opposite side is arranged as a recessed structure.
It improves the damage resistance of the antenna hole, ensures the stable installation of the antenna, extends the service life of the router, and increases the stability of the shell structure and reduces the packaging cost.
Smart Images

Figure CN222884696U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of routers, and in particular to a housing structure of a router. Background Art
[0002] With the rapid development of wireless communication technology, the performance and design of routers, as the core equipment of network connection, are attracting more and more attention from users. Although the design of routers on the market is constantly pursuing the improvement of signal stability and strength, the shell structure design still needs to be optimized.
[0003] At present, the antenna installation structure of router shells on the market mostly adopts a single-layer hole design. During the process of assembling the router antenna for drop resistance testing or during long-term use, the antenna hole is subjected to impact force, which can easily cause the interface to break and easily affect the service life of the router. Utility Model Content
[0004] In order to overcome at least some of the defects and shortcomings in the prior art, the present application provides a router housing structure that can improve the damage resistance of the antenna hole to extend the service life of the router.
[0005] Specifically, an embodiment of the present invention provides a router housing structure, which adopts the following technical solution:
[0006] A router housing structure comprises: a housing, on which an antenna hole is arranged, the antenna hole is a double-layer structure, and a first limiting groove for the antenna to engage and rotate is arranged on the inner layer.
[0007] By adopting the above technical solution, the antenna hole is set to a double-layer structure, and a first limiting groove is set in the inner layer for the antenna to be engaged and rotated. This can ensure that the antenna is firmly installed while improving the damage resistance of the antenna hole to extend the service life of the router.
[0008] Optionally, the first limiting groove is a semicircular groove.
[0009] By adopting the above technical solution, the first limiting groove is set as a semicircular groove, so that the antenna can be rotated at a certain angle based on the semicircular groove, thereby facilitating the user to perform the rotation operation.
[0010] Optionally, the antenna hole is integrally embedded with the side surface, and the side surface relative to the antenna hole is a recessed structure.
[0011] By adopting the above technical solution, the antenna hole and the side are integrally embedded to increase the stability of the shell structure, and by setting the opposite side of the antenna hole as a recessed structure, the protruding length of the antenna hole can be shortened to further reduce the damage of the antenna hole due to protruding too long, and it can also reduce the packaging cost of the shell when transportation is required.
[0012] Optionally, a first limiting member is disposed on the inner side surface of the shell, an upper cover is disposed on the shell, and a second limiting groove for accommodating a side edge of the upper cover is disposed between the first limiting member and the inner side surface of the shell.
[0013] By adopting the above technical solution, when the shell and the upper cover are covered, the side edge of the upper cover can be accommodated in the second limiting groove to limit the side edge of the upper cover.
[0014] Optionally, the upper end of the first limiting member is configured as an inclined surface.
[0015] By adopting the above technical solution, when the shell and the upper cover are covered, the side edge of the upper cover can slide into the second limiting groove through the inclined surface to limit the side edge of the upper cover.
[0016] Optionally, a blocking member for buckling the upper cover is further provided on the inner side surface of the shell, and the blocking member is an inverted triangle structure.
[0017] By adopting the above technical solution and setting the blocking member, the upper cover can be buckled to enhance the buckling stability of the upper cover and prevent the upper cover from falling off.
[0018] Optionally, a bottom plate is provided on the shell, and an elastic fastening piece for fastening the shell is provided on the bottom plate.
[0019] By adopting the above technical solution and arranging elastic buckling parts on the bottom plate, the bottom plate can be conveniently buckled and assembled on the shell.
[0020] Optionally, a second limiting member is further provided on the shell for the side of the bottom plate to be inserted into.
[0021] By adopting the above technical solution, the second limiting member is arranged in cooperation with the elastic buckle member arranged on the bottom plate, so as to ensure the engagement stability between the bottom plate and the shell.
[0022] Optionally, an elastic arm is provided on the elastic fastening member, one end of the elastic arm is connected to the bottom plate, and the other end is provided with a fastening protrusion.
[0023] By adopting the above technical solution, the setting of the elastic arm can facilitate the user to assemble the base plate to the shell and make the base plate tightly connected to the shell; in addition, the snap-fit protrusion is set on the elastic arm, which can also facilitate the user to remove the base plate from the shell for subsequent maintenance.
[0024] In summary, the present application includes at least one of the following beneficial technical effects:
[0025] 1. The antenna hole is set to a double-layer structure, and a first limit groove is set in the inner layer for the antenna to engage and rotate. This can ensure that the antenna is firmly installed while improving the anti-damage ability of the antenna hole to extend the service life of the router;
[0026] 2. The first limiting groove is set as a semicircular groove, so that the antenna can be rotated at a certain angle based on the semicircular groove, so that the user can perform the rotation operation conveniently;
[0027] 3. Integrating the antenna hole with the side can increase the stability of the shell structure, and by setting the side opposite to the antenna hole as a recessed structure, the protruding length of the antenna hole can be shortened to further reduce the risk of damage to the antenna hole due to protruding too long, and can also reduce the packaging cost of the shell when transportation is required. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 A schematic diagram of a three-dimensional structure of a router housing structure disclosed in an embodiment of the present application;
[0029] Figure 2 for Figure 1 A schematic structural diagram of a router housing structure from another angle is shown;
[0030] Figure 3 for Figure 2 An enlarged schematic diagram of structure A in a router housing structure shown;
[0031] Figure 4 for Figure 1 A schematic diagram of the back structure of a router housing structure is shown.
[0032] Description of reference numerals:
[0033] 10. Shell; 11. Antenna hole; 111. First limiting groove; 12. First limiting member; 13. Second limiting groove; 14. Blocking member; 15. Second limiting member; 20. Bottom plate; 21. Elastic buckling member; 211. Elastic arm; 212. Buckling protrusion; A. Partial enlarged view. DETAILED DESCRIPTION
[0034] The terms used in the following embodiments of the present application are only for the purpose of describing specific embodiments, and are not intended to be used as limitations to the present application. As used in the specification and appended claims of the present application, the singular expressions "one", "a kind of", "above", "the" and "this" are intended to also include plural expressions, unless there is a clear indication to the contrary in the context. It should also be understood that the term "and / or" used in the present application refers to and includes any or all possible combinations of one or more listed items.
[0035] In the following, the terms "first" and "second" are used for descriptive purposes only and are not to be understood as suggesting or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features, and in the description of the embodiments of the present application, unless otherwise specified, "plurality" means two or more.
[0036] The technical solution of the embodiments of the present application is described in detail below with reference to the accompanying drawings.
[0037] See also Figure 1 The embodiment of the present application discloses a router housing structure, including: a housing 10, on which an antenna hole 11 is arranged, the antenna hole 11 is a double-layer structure, and the inner layer of the double-layer structure is provided with a first limiting groove 111 for the antenna to engage and rotate.
[0038] The first limiting groove 111 is a semicircular groove, the antenna is inserted into the antenna hole 11, and based on the limiting of the semicircular groove, the antenna can rotate at a certain angle, such as 180 degrees, in the antenna hole 11 based on the user's operation. With this structure, this embodiment can ensure that the antenna is firmly installed while improving the anti-damage ability of the antenna hole 11, thereby extending the service life of the router.
[0039] See also Figure 2 The antenna hole 11 is integrally embedded with the side surface, that is, formed by injection molding together, which can increase the structural stability of the housing 10. Figure 3 It can be seen that the antenna hole 11 and the surrounding side surfaces are not on the same plane, that is, the side surfaces relative to the antenna hole 11 are recessed structures, thereby shortening the protruding length of the side surfaces relative to the antenna hole 11, so as to further reduce the damage of the antenna hole 11 due to being too long, and also reduce the packaging cost of the shell 10 when transportation is required.
[0040] See also Figure 2 A first limiting member 12 is provided on the inner side surface of the shell 10, and the first limiting member 12 can be provided in plurality. Here, an upper cover (not shown) is also provided on the shell 10, and a second limiting groove 13 for accommodating the side edge of the upper cover is provided between the first limiting member 12 and the inner side surface of the shell 10.
[0041] When the housing 10 and the upper cover are covered, the side edge of the upper cover is accommodated in the second limiting groove 13, so that the second limiting groove 13 can limit the side edge of the upper cover.
[0042] In this embodiment, in order to facilitate the side edge of the upper cover to be accommodated in the second limiting groove 13, the upper end of the first limiting member 12 can be set as an inclined surface, so that when the upper cover is set on the shell 10, the side edge of the upper cover can be guided to slide into the second limiting groove 13 for a snap-fit connection.
[0043] In addition, in order to further increase the buckling stability of the upper cover and the housing 10, a plurality of blocking members 14 for the upper cover to buckle are further provided on the inner side of the housing 10, and the blocking members 14 are inverted triangle structures (such as Figure 2 ), the buckling member provided on the inner side of the upper cover can be guided to buckle the blocking member 14 to prevent the upper cover from falling off due to external force impact.
[0044] See also Figure 4 A bottom plate 20 is also provided on the shell 10 , and a plurality of elastic fastening members 21 for fastening the shell 10 are provided on the bottom plate 20 . The bottom plate 20 can be conveniently fastened and assembled on the shell 10 through elastic deformation of the elastic fastening members 21 .
[0045] Among them, a second limiting member 15 is also provided on the shell 10 corresponding to the bottom plate 20. In the present embodiment, the second limiting member 15 is set to one. When the bottom plate 20 is engaged with the shell 10 via the elastic fastening member 21, one end thereof is first embedded in the second limiting member 15, and then the elastic fastening member 21 is engaged, so that the bottom plate 20 can be limited.
[0046] In addition, an elastic arm 211 is disposed on the elastic fastening member 21 , one end of the elastic arm 211 is connected to the bottom plate 20 , and the other end of the elastic arm 211 is disposed with a fastening protrusion 212 .
[0047] Among them, the setting of the elastic arm 211 can facilitate the user to snap the snap-fit protrusion 212 to assemble the base plate 20 to the shell 10, and make the base plate 20 tightly connected to the shell 10, and the snap-fit protrusion 212 can also be snapped to remove the base plate 20 from the shell 10 for subsequent maintenance.
[0048] In summary, a router shell structure disclosed in an embodiment of the present application sets the antenna hole 11 as a double-layer structure, and sets a first limiting groove 111 in the inner layer for the antenna to be engaged and rotated, thereby ensuring that the antenna is firmly installed while improving the damage resistance of the antenna hole 11 to extend the service life of the router; the first limiting groove 111 is set as a semicircular groove, and the antenna can be rotated at a certain angle based on the semicircular groove, so that the user can conveniently perform the rotation operation; the antenna hole 11 is integrally embedded with the side surface to increase the stability of the shell 10 structure, and the relative side of the antenna hole 11 is set as a recessed structure, which can shorten the protruding length of the antenna hole 11, so as to further reduce the damage of the antenna hole 11 due to being too long, and can also reduce the packaging cost of the shell 10 when transportation is required.
[0049] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A router housing structure, comprising: A shell (10) is provided with an antenna hole (11) on the shell (10), characterized in that the antenna hole (11) is a double-layer structure, and a first limiting groove (111) for the antenna to engage and rotate is provided on the inner layer.
2. A router housing structure according to claim 1, characterized in that: The first limiting groove (111) is a semicircular groove.
3. A router housing structure according to claim 1, characterized in that: The antenna hole (11) is integrally embedded with the side surface, and the side surface opposite to the antenna hole (11) is a recessed structure.
4. A router housing structure according to claim 3, characterized in that: A first limiting member (12) is provided on the inner side surface of the shell (10), an upper cover is provided on the shell (10), and a second limiting groove (13) for accommodating a side edge of the upper cover is provided between the first limiting member (12) and the inner side surface of the shell (10).
5. A router housing structure according to claim 4, characterized in that: The upper end of the first limiting member (12) is arranged as an inclined surface.
6. A router housing structure according to claim 4, characterized in that: The inner side surface of the shell (10) is also provided with a blocking member (14) for the upper cover to buckle, and the blocking member (14) is an inverted triangle structure.
7. A router housing structure according to claim 3, characterized in that: A bottom plate (20) is provided on the shell (10), and an elastic fastening piece (21) fastened to the shell (10) is provided on the bottom plate (20).
8. A router housing structure according to claim 7, characterized in that: The housing (10) is also provided with a second limiting member (15) for allowing the side surface of the bottom plate (20) to be inserted therein.
9. The router housing structure according to claim 7, characterized in that: The elastic fastening member (21) is provided with an elastic arm (211), one end of the elastic arm (211) is connected to the bottom plate (20), and the other end is provided with a fastening protrusion (212).