Wall-mounted router
By designing a mount and a combination of multiple sets of heat sinks and holes on a wall-mounted router, the problem of inconvenient installation and untimely heat dissipation of the router is solved, and better installation convenience and use effect are achieved.
Patent Information
- Application Number
- CN202422037649.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing wall-mounted routers are large in size and are not easy to install when installed. The heat dissipation holes installed on the sides cannot dissipate heat to the internal components of the router in time, which affects the use effect.
A wall-mounted router is designed, using a mounting bracket to install the router on the wall, and three sets of heat sinks distributed in rectangular arrays and several first heat sinks are provided on the router housing to promote air circulation and heat dissipation.
Through the design of the mounting bracket, the problem of inconvenience in installation of the router is solved, and through the combination of multiple sets of heat sinks and heat dissipation holes, timely heat dissipation of internal components of the router is achieved, improving the router's usage effect.
Smart Images

Figure CN222916068U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of communication equipment, and particularly relates to a wall-mounted router. Background Art
[0002] A router is a high-end communication device that can resist complex environments and is widely used in high-end fields. With its many advantages, it can process data of industrial equipment at high speed and stability. As a core component of the Internet and enterprise networks, routers have a wide range of application fields, and the current technical situation is also constantly developing and upgrading. It is widely used in industries such as finance, transportation, monitoring, environmental protection, postal service, meteorology, mobile Internet of Things, and telecommunications Internet of Things.
[0003] A router is a network device used to forward data packets in a computer network. The structural components of a modern router include: a housing, a central processing unit, memory, network interface cards, wireless modules, a power supply unit, indicator lights, buttons, access ports, a heat dissipation system, an operating system, and software. The design and functions of routers will vary according to their uses and performance requirements.
[0004] In the prior art, when a wall-mounted router is installed, it will be attached to the wall and restricted by space, resulting in poor heat dissipation. Most wall-mounted routers will set up heat dissipation devices such as heat dissipation fans inside the router with a compact structure or directly set up heat dissipation holes on the side of the router. However, routers with heat dissipation fans are relatively large in size and not easy to install. Setting heat dissipation holes on the side of the router cannot dissipate heat from the internal components of the router in a timely manner, affecting the use of the router and even damaging the router, thus affecting the use effect of the router. Summary of the Utility Model
[0005] The purpose of the embodiments of the present utility model is to provide, aiming to solve the problem that most wall-mounted routers will set up heat dissipation devices such as heat dissipation fans inside the router with a compact structure or directly set up heat dissipation holes on the side of the router. However, routers with heat dissipation fans are relatively large in size and not easy to install. Setting heat dissipation holes on the side of the router cannot dissipate heat from the internal components of the router in a timely manner, affecting the use of the router and even damaging the router, thus affecting the use effect of the router.
[0006] The embodiments of the present utility model are implemented as follows. A wall-mounted router, the wall-mounted router includes:
[0007] A mounting bracket, the mounting bracket is connected to the router body, and the mounting bracket is used to mount the router body on the wall;
[0008] Router body, the router body includes a housing and a main control component. The housing is provided with three sets of heat sinks distributed in a rectangular array and several first heat dissipation holes. The three sets of heat sinks are the first heat sink, the second heat sink, and the third heat sink respectively. The first heat dissipation holes are arranged between adjacent heat sinks. The heat sinks and the heat dissipation holes are used to dissipate heat from the router body. The main control component is installed inside the housing and is used for transmitting and storing signals.
[0009] Preferably, the mounting bracket is an irregular plate-like structure with a higher middle and lower sides. The mounting bracket is provided with a mounting area and a positioning area. The mounting areas are arranged on both sides of the positioning area. The back surface of the mounting area is connected to the bottom surface of the housing. A cavity structure is formed between the lower part of the positioning area and the back surface of the router body to facilitate air circulation.
[0010] Preferably, the mounting area is provided with a plurality of first mounting holes for connecting with the housing of the router body. The positioning area is provided with a plurality of first positioning holes, and the first positioning holes are used to position the mounting bracket on the wall through fixing parts.
[0011] Preferably, the housing includes an upper top shell and a lower bottom shell. The back surface of the upper top shell is provided with a plurality of first mounting rods, a plurality of first positioning columns, and second positioning holes. The first mounting rods are arranged at the edge of the back surface of the upper top shell and are used for connecting with the lower bottom shell. The first positioning columns are arranged on the back surface of the upper top shell and are located inside the first mounting rods. The first positioning columns and the second positioning holes are used to position the main control component.
[0012] Preferably, the inner wall surface of the lower bottom shell is provided with a plurality of first mounting cylinders, a plurality of second positioning columns, and positioning bosses. The first mounting cylinders cooperate with the first mounting rods of the upper top shell to connect the upper top shell and the lower bottom shell. The second positioning columns and the positioning bosses are used to position the main control component.
[0013] Preferably, the lower bottom shell is also provided with several second heat dissipation holes, mounting grooves, and a plurality of mounting bumps. The second heat dissipation holes are arranged in a circular array on the outer side surface of the lower shell body. The heat sinks and the first heat dissipation holes are arranged on the bottom surface of the lower shell body. The mounting groove is a depression extending from the side surface of the lower shell body to one side. A plurality of connection ports are arranged on the mounting groove, and the connection ports are used for installing the main control component.
[0014] Preferably, the mounting bump is a rod-like structure, and a set of positioning grooves are arranged on the outer side surface of the mounting bump for positioning the mounting bracket.
[0015] Preferably, the main control component includes a main control board, a connecting member, and several electronic chips. The main control board is installed on the inner wall surface of the lower bottom shell. One end of the connecting member is electrically connected to the main control board, and the other end is installed at the connection port of the installation groove of the lower shell. The connecting member is connected to an external power supply or device through a connecting wire. The electronic chips are electrically connected to the main control board and are used for signal conversion and data storage.
[0016] A wall-mounted router provided by an embodiment of the present invention. The present invention is provided with a mounting bracket connected to the router body. The router body is mounted on the wall by using the mounting bracket. The main control component of the router body is installed inside the housing. Three groups of heat sinks and several first heat dissipation holes are arranged outside the housing. The three groups of heat sinks are distributed on the back of the housing, and a first heat dissipation hole is arranged between every two adjacent heat sinks to facilitate the air circulation inside the housing. The heat sinks and the first heat dissipation holes are respectively used for dissipating heat from the router body, so that the main control component inside the router body can dissipate heat in time, preventing the use effect of the router from being affected due to untimely heat dissipation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a three-dimensional structure diagram of a wall-mounted router provided by an embodiment of the present invention;
[0018] Figure 2 It is a bottom structure diagram of a wall-mounted router provided by an embodiment of the present invention;
[0019] Figure 3 It is a structure diagram of the upper top shell of a wall-mounted router provided by an embodiment of the present invention;
[0020] Figure 4 It is an internal structure diagram of a wall-mounted router provided by an embodiment of the present invention;
[0021] Figure 5 It is a structure diagram of the lower bottom shell of a wall-mounted router provided by an embodiment of the present invention;
[0022] Figure 6 It is a bottom surface structure diagram of the lower bottom shell of a wall-mounted router provided by an embodiment of the present invention.
[0023] In the accompanying drawings: 1. Mounting bracket; 2. Router body; 21. Housing; 211. First heat sink; 212. Second heat sink; 213. Third heat sink; 214. First heat dissipation holes; 215. Second heat dissipation holes; 216. Upper top shell; 2161. First mounting rod; 2162. First positioning post; 2163. Second positioning hole; 217. Lower bottom shell; 2171. First mounting cylinder; 2172. Second positioning post; 2173. Positioning boss; 2174. Connection port; 2175. Mounting lug; 21751. Positioning groove; 22. Main control component; 221. Main control board; 222. Electronic chip; 223. Connecting piece. Detailed implementation manners
[0024] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be 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 utility model and are not used to limit the present utility model.
[0025] The following describes in detail the specific implementation of the present utility model with reference to specific embodiments.
[0026] As Figure 1-6 shown, it is a structural diagram of a wall-mounted router that is easy to install provided by an embodiment of the present utility model, including: a mounting bracket 1, the mounting bracket 1 is connected to the router body 2, and the mounting bracket 1 is used to mount the router body 2 on a wall surface;
[0027] The router body 2, the router body 2 includes a housing 21 and a main control component 22. The housing 21 is provided with three groups of heat sinks distributed in a rectangular array and a plurality of first heat dissipation holes 214. The three groups of heat sinks are respectively the first heat sink 211, the second heat sink 212 and the third heat sink 213. The first heat dissipation holes 214 are arranged between adjacent heat sinks. The heat sinks and the heat dissipation holes are used to dissipate heat from the router body 2. The main control component 22 is installed inside the housing 21, and the main control component 22 is used to transmit and store signals.
[0028] In the embodiment of the present utility model, preferably, the wall-mounted router mainly consists of a mounting bracket 1 and a router body 2. The router body 2 is mounted on the wall or ceiling by using the mounting bracket 1, so that the router body 2 is not directly attached to the wall or ceiling, which is easy to install and allows air to circulate behind the router body 2. The router body 2 mainly consists of a housing 21 and a main control component 22. The main control component 22 is installed in the internal cavity structure of the housing 21. Multiple groups of heat sinks and several first heat dissipation holes 214 are provided on the housing 21. According to their lengths and installation positions, the heat sinks are divided into a first heat sink 211, a second heat sink 212, and a third heat sink 213. Among them, multiple first heat sinks 211 and third heat sinks 213 are respectively located on both sides of the second heat sink 212, and the first heat sinks 211 and third heat sinks 213 are of the same size and thickness. The second heat sink 212 is arranged and distributed perpendicular to the first heat sink 211 and the third heat sink 213 respectively, and first heat dissipation holes 214 are provided in the gaps between any heat sinks to facilitate the heat dissipation of the router body 2. On the back of the router body 2, heat dissipation is timely carried out not only through multiple groups of heat sinks, but also the several first heat dissipation holes 214 are provided to facilitate the air circulation inside the router body 2 and play a certain heat dissipation role, so that the main control component 22 installed inside the router body 2 can be timely cooled during operation.
[0029] In an example of the present utility model, the present utility model provides a connection between the mounting bracket 1 and the router body 2. The router body 2 is mounted on the wall by using the mounting bracket 1. The main control component 22 of the router body 2 is installed inside the housing 21. Three groups of heat sinks and several first heat dissipation holes 214 are provided outside the housing 21. The three groups of heat sinks are distributed on the back of the housing 21, and a first heat dissipation hole 214 is provided between every two adjacent heat sinks to facilitate the air circulation inside the housing 21. The heat sinks and the first heat dissipation holes 214 are respectively used for dissipating heat from the router body 2, so that the main control component 22 inside the router body 2 can be timely cooled, preventing the use effect of the router from being affected due to untimely heat dissipation.
[0030] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the mounting bracket 1 is an irregular plate-like structure with a higher middle part and lower sides. The mounting bracket 1 is provided with a mounting area and a positioning area. The mounting areas are arranged on both sides of the positioning area. The back of the mounting area is connected to the bottom surface of the housing 21. A cavity structure is formed between the lower part of the positioning area and the back of the router body 2 to facilitate air circulation.
[0031] In the embodiment of the present utility model, preferably, the mounting bracket 1 can be a rectangular shell with a certain thickness, higher in the middle and lower on both sides. The middle part of the mounting bracket 1 is a positioning area, and mounting areas are arranged on both sides of the positioning area. The mounting areas are connected to the outer shell 21 of the router body 2. The positioning area is used to position the installation position of the router so as to facilitate the installation of the mounting bracket 1 on the wall or ceiling.
[0032] As Figure 1-6 shown, as a preferred embodiment of the present utility model, a plurality of first mounting holes are arranged in the mounting area. The first mounting holes are used to connect with the outer shell 21 of the router body 2. A plurality of first positioning holes are arranged in the positioning area. The first positioning holes position the mounting bracket 1 on the wall through fixing parts.
[0033] In the embodiment of the present utility model, preferably, a plurality of first mounting holes can be arranged in the mounting areas on both sides of the mounting bracket 1. The first mounting holes are connected to the back of the outer shell 21. The connection between the mounting bracket 1 and the outer shell 21 can be set as a detachable connection to facilitate the installation of the router body 2 on the mounting bracket 1. A plurality of first positioning holes are arranged in the positioning area. The first positioning holes can position the mounting bracket 1 on the wall through fixing parts, or after the fixing parts are installed on the wall, the mounting bracket 1 is positioned on the wall through the first positioning holes.
[0034] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the outer shell 21 includes an upper top shell 216 and a lower bottom shell 217. A plurality of first mounting rods 2161, a plurality of first positioning posts 2162 and a second positioning hole 2163 are arranged on the back of the upper top shell 216. The first mounting rods 2161 are arranged at the edge of the back of the upper top shell 216. The first mounting rods 2161 are used to connect with the lower bottom shell 217. The first positioning posts 2162 are arranged on the back of the upper top shell 216 and are located inside the first mounting rods 2161. The first positioning posts 2162 and the second positioning hole 2163 are used to position the main control component 22.
[0035] In the embodiment of the present utility model, preferably, the outer shell 21 of the router body 2 is mainly composed of an upper top shell 216 and a lower bottom shell 217. The upper top shell 216 can be a shell with a certain thickness. A first mounting rod 2161 with a certain length and a plurality of first positioning posts 2162 are arranged on the back of the upper top shell 216. The rod-shaped first mounting rods 2161 are arranged outside the first positioning posts 2162 and close to the edge of the upper top shell 216. The first positioning posts 2162 and the rectangular second positioning hole 2163 are used to position the main control component 22, so that the main control component 22 is installed in place inside the outer shell 21 and the inner wall surface of the upper top shell 216 of the main control component 22 is not directly in contact, so that there is a certain space gap for air circulation to play a certain heat dissipation role.
[0036] As Figure 1-6 shown, as a preferred embodiment of the present utility model, a plurality of first mounting cylinders 2171, a plurality of second positioning columns 2172 and a positioning boss 2173 are provided on the inner wall surface of the lower bottom case 217. The first mounting cylinders 2171 cooperate with the first mounting rods 2161 of the upper top case 216 so that the upper top case 216 is connected to the lower bottom case 217. The second positioning columns 2172 and the positioning boss 2173 are used to position the main control component 22.
[0037] In the embodiment of the present utility model, preferably, the lower bottom case 217 can be a case with a certain depth, and a plurality of first mounting cylinders 2171 with a certain height are provided on its inner wall surface. The first mounting rods 2161 on the upper top case 216 are embedded in the first mounting cylinders 2171 so that the upper top case 216 is connected to the lower bottom case 217. A plurality of second positioning columns 2172 with a certain length are used to position the bottom surface of the main control component 22 so that the main control component 22 is not in direct contact with the lower bottom case 217 to facilitate air circulation for heat dissipation. A plurality of positioning bosses 2173 can be provided and are irregular in shape. The positioning bosses 2173 can be used to position the main control component 22 to prevent the components on the main control component 22 from falling due to the gravitational force of the center of gravity.
[0038] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the lower bottom case 217 is further provided with a plurality of second heat dissipation holes 215, a mounting groove and a plurality of mounting bumps 2175. The second heat dissipation holes 215 are arranged in a circular array on the outer side surface of the lower case. The heat dissipation fins and the first heat dissipation holes 214 are arranged on the bottom surface of the lower case. The mounting groove is a depression extending from the side surface of the lower case to one side. A plurality of connection ports 2174 are provided on the mounting groove, and the connection ports 2174 are used for the installation of the main control component 22.
[0039] In the embodiment of the present utility model, preferably, a plurality of second heat dissipation holes 215 arranged in a circular array can also be provided on the side surface of the lower bottom case 217 to enable air circulation inside the case for heat dissipation and cooperate with a plurality of heat dissipation fins and the first heat dissipation holes 214 on the back surface of the lower bottom case 217 so that the main control component 22 can be cooled in time during operation. The lower bottom case 217 has a rectangular mounting groove recessed to one side, and a plurality of connection ports 2174 for installing the main control component 22 are provided on its groove wall surface.
[0040] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the mounting bump 2175 is a rod-shaped structure, and a set of positioning grooves 21751 are provided on the outer side surface of the mounting bump 2175. The positioning grooves 21751 are used to position the mounting bracket 1.
[0041] In the embodiment of the present utility model, preferably, a plurality of rod-shaped mounting bumps 2175 are provided on the back surface of the lower bottom case 217. The mounting bumps 2175 can be located at the intersection of the first heat sink 211 and the second heat sink 212, and at the intersection of the second heat sink 212 and the third heat sink 213. And the positioning groove 21751 on the mounting bump 2175 is used in cooperation with the first mounting hole on the mounting frame 1 to install the router body 2 on the mounting area of the mounting frame 1, and the mounting area on the mounting frame 1 avoids the position of the first heat dissipation hole 214 to prevent affecting the air circulation of the router body 2.
[0042] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the main control component 22 includes a main control board 221, a connecting member 223, and several electronic chips 222. The main control board 221 is installed on the inner wall surface of the lower bottom case 217. One end of the connecting member 223 is electrically connected to the main control board 221, and the other end is installed on the connection port 2174 of the lower housing installation groove. The connecting member 223 is connected to an external power supply or device through a connecting wire; the electronic chip 222 is electrically connected to the main control board 221, and the electronic chip 222 is used for signal conversion and data storage.
[0043] In the embodiment of the present utility model, preferably, the main control component 22 mainly includes a main control board 221, a connecting member 223, and several electronic chips 222. The electronic chip 222 and the connecting member 223 are respectively electrically connected to the main control board 221. One end of the connecting member 223 can be installed on the connection port 2174 of the lower bottom case 217 to facilitate connecting it to an external power supply or device through a connecting wire. A plurality of slots or holes can be provided on the main control board 221 to facilitate positioning the main control board 221 by the first positioning post 2162 on the upper top case 216 or the second positioning post 2172 on the lower bottom case 217. When the electronic chip 222 is installed on the main control board 221, the electronic chip 222 can be positioned by the positioning boss 2173 on the lower bottom case 217, and the electronic chip 222 can be replaced with an electronic component with the same function.
[0044] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A wall-mounted router, characterized in that: The wall-mounted router comprises: A mounting frame, the mounting frame is connected to the router body, and the mounting frame is used to mount the router body on a wall; The router body includes a shell and a main control component. The shell is provided with three groups of heat sinks distributed in a rectangular array and a plurality of first heat dissipation holes. The three groups of heat sinks are respectively a first heat sink, a second heat sink and a third heat sink. The first heat dissipation hole is arranged between two adjacent heat sinks. The heat sink and the heat dissipation hole are used to dissipate heat for the router body. The main control component is installed inside the shell, and the main control component is used to transmit and store signals.
2. The wall-mounted router according to claim 1, characterized in that: The mounting frame is an irregular plate-shaped structure with a high middle portion and low two sides. The mounting frame is provided with an installation area and a positioning area. The installation areas are arranged on both sides of the positioning areas. The back of the installation areas is connected to the bottom surface of the shell. A cavity structure is formed between the bottom of the positioning area and the back of the router body to facilitate air circulation.
3. The wall-mounted router according to claim 2, characterized in that: The installation area is provided with a plurality of first installation holes, and the first installation holes are used to be connected to the housing of the router body. The positioning area is provided with a plurality of first positioning holes, and the first positioning holes position the mounting frame on the wall through fixing members.
4. The wall-mounted router according to claim 1, characterized in that: The shell includes an upper top shell and a lower bottom shell, and a plurality of first mounting rods, a plurality of first positioning columns and a second positioning hole are arranged on the back side of the upper top shell. The first mounting rod is arranged on the edge of the back side of the upper top shell, and the first mounting rod is used to connect with the lower bottom shell. The first positioning column is arranged on the back side of the upper top shell and is located on the inner side of the first mounting rod, and the first positioning column and the second positioning hole are used to position the main control component.
5. The wall-mounted router according to claim 4, characterized in that: The inner wall surface of the lower bottom shell is provided with a plurality of first mounting tubes, a plurality of second positioning columns and a positioning boss. The first mounting tubes cooperate with the first mounting rod of the upper top shell to connect the upper top shell with the lower bottom shell. The second positioning columns and the positioning boss are used to position the main control component.
6. The wall-mounted router according to claim 5, characterized in that: The lower shell is also provided with a plurality of second heat dissipation holes, a mounting groove and a plurality of mounting protrusions. The second heat dissipation holes are arranged in a ring-shaped array on the outer side of the lower shell. The heat sink and the first heat dissipation holes are arranged on the bottom surface of the lower shell. The mounting groove is a depression extending to one side from the side of the lower shell. A plurality of connection ports are arranged on the mounting groove, and the connection ports are used for the installation of the main control components.
7. The wall-mounted router according to claim 6, characterized in that: The mounting protrusion is a rod-shaped structure, and a group of positioning grooves are arranged on the outer side of the mounting protrusion, and the positioning grooves are used to position the mounting frame.
8. The wall-mounted router according to claim 6, characterized in that: The main control component includes a main control board, a connector and several electronic chips. The main control board is installed on the inner wall surface of the lower bottom shell. One end of the connector is electrically connected to the main control board, and the other end is installed on the connecting port of the lower shell mounting groove. The connector is connected to an external power supply or device through a connecting line; the electronic chip is electrically connected to the main control board, and the electronic chip is used for signal conversion and data storage.