Industrial wireless router with stable installation and enhanced heat dissipation

The integrated installation structure and epoxy resin coating solve the problems of cumbersome and unstable installation of traditional industrial wireless routers, achieving rapid installation, stable heat dissipation, and corrosion resistance.

CN224139099UActive Publication Date: 2026-04-17SHANGHAI WEIRUI ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI WEIRUI ELECTRONIC TECH CO LTD
Filing Date
2025-05-09
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional industrial wireless routers are cumbersome to install and not very stable, have poor heat dissipation, and are prone to loosening due to vibration and thermal expansion and contraction.

Method used

It adopts an integrated installation structure, including a mounting base plate for the installation equipment. Through the integrated installation structure, the wireless router body and heat sink can be quickly installed and removed using spring springs and snap-fit ​​design. The stability and corrosion resistance of the heat sink are improved by epoxy resin coating.

Benefits of technology

It enables quick installation and removal of the wireless router body and heat sink, improving installation efficiency, enhancing device stability and heat dissipation, preventing loosening and corrosion, and extending service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of routers, and discloses an industrial wireless router with stable installation and enhanced heat dissipation, which comprises an installation bottom plate, a wireless router main body is installed at the top end of the installation bottom plate, a radiator is installed at the top end of the wireless router main body, two sides of the radiator are fixedly connected with first connecting frames, and the first connecting frames are fixedly connected with second connecting frames. And the tail end of the first connecting frame is fixedly connected with a first mounting plate. According to the industrial wireless router with stable installation and enhanced heat dissipation, by adopting a convenient and uniform installation structure, installation personnel can quickly install the radiator and the wireless router main body on the installation plate as a whole, fixation can be completed through simple operation, the installation time is greatly shortened, and the installation efficiency is improved; and due to the design of the same fixed structure, the overall heat of the wireless router main body is easier to dissipate, and the overall parts are not easy to loosen, shift and the like.
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Description

Technical Field

[0001] This utility model relates to the field of router technology, and in particular to an industrial wireless router with stable installation and enhanced heat dissipation. Background Technology

[0002] A router is a computer network device that forwards data packets from one network to another, enabling interconnection between networks. Industrial wireless routers are essentially routers, following the same basic working principles as ordinary routers, such as routing based on IP addresses and transmitting data through network protocols. They all need to have functions such as data forwarding and routing calculation to ensure smooth network communication.

[0003] Traditional industrial wireless router installation methods may require first fixing the router body to the mounting plate, and then installing the heat sink separately. The installation process requires aligning multiple mounting holes and using various tools for tightening, which is cumbersome and time-consuming. Furthermore, the separate fixing design may result in an unstable or loose connection. During equipment operation, factors such as vibration and thermal expansion and contraction can easily lead to loose connections. Summary of the Invention

[0004] The technical problem to be solved by this utility model is that the existing technology has the disadvantages of separate fixing design, which makes the operation cumbersome, the fixing not stable enough, and the heat dissipation effect poor. To this end, we propose an industrial wireless router with stable installation and enhanced heat dissipation.

[0005] To achieve the above objectives, this application adopts the following technical solution: an industrial wireless router with stable installation and enhanced heat dissipation, comprising a mounting base plate, a wireless router body mounted on the top of the mounting base plate, a heat sink mounted on the top of the wireless router body, first connecting brackets fixedly connected to both sides of the heat sink, a first mounting plate fixedly connected to the end of the first connecting brackets, second connecting brackets fixedly connected to both sides of the wireless router body, a second mounting plate fixedly connected to the end of the second connecting brackets, fixing blocks fixedly connected to both sides of the mounting base plate, two buckles slidably connected inside the fixing blocks, a fixing plate fixedly connected inside the fixing blocks, spring springs fixedly connected to both the front and rear ends of the fixing plates, the end of the spring spring near the buckle being fixedly connected to the buckle, sliding sleeves fixedly connected to both the front and rear ends of the fixing blocks, sliding grooves formed inside both ends of the fixing blocks and the sliding sleeves, sliding rods slidably connected inside the sliding grooves, and a push-pull plate fixedly connected to the end of the sliding rod away from the sliding sleeve.

[0006] Preferably, a return spring is slidably connected to the surface of the sliding rod, and the front end and rear end of the return spring are fixedly connected to the sliding sleeve and the push-pull plate, respectively.

[0007] Preferably, the fixing block has a first sliding groove on both sides inside, and the buckle has a first slider fixedly connected to both sides, with the inside of the first sliding groove slidably connected to the first slider.

[0008] Preferably, a second sliding groove is provided on both sides of the inside of the sliding sleeve, and a second slider is fixedly connected to both sides of the sliding rod, with the inside of the second sliding groove slidably connected to the second slider.

[0009] Preferably, the end of the buckle is rounded, and two friction plates are installed at the top of the first mounting plate.

[0010] Preferably, a limiting sleeve is installed at the bottom of the heat sink, and the shape of the limiting sleeve is designed to match the shape of the wireless router body.

[0011] Preferably, the surfaces of both the wireless router body and the heat sink are coated with an epoxy resin coating.

[0012] The technical effects and advantages of this utility model are as follows:

[0013] In this invention, when the operator needs to install the wireless router body and the heat sink, the second mounting plate is first aligned with the clip and snapped in. After snapping in, the heat sink is placed on top of the wireless router body, and the first mounting plate is aligned with the clip and snapped in. After snapping in, the elastic spring is released, allowing the first mounting plate, the second mounting plate, and the clip to be securely engaged, achieving an integrated installation of the wireless router body and the heat sink. When disassembly is required, the push-pull plate is pressed inward, causing the sliding rod to abut the clip, so that the first mounting plate and the second mounting plate are simultaneously disengaged, thereby achieving quick disassembly of the wireless router body and the heat sink. By adopting a convenient and unified installation structure, the installer can quickly install the heat sink and the wireless router body as a whole onto the mounting plate. The fixation can be completed with simple operation, greatly shortening the installation time and improving the installation efficiency. Moreover, the design of the same fixing structure makes it easier for the heat of the wireless router body to dissipate, and the overall components are less likely to loosen or shift. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the combined structure of the wireless router and heat sink of this utility model;

[0015] Figure 2 This is a schematic diagram of the disassembled structure of the heat sink of this utility model;

[0016] Figure 3 This is a schematic diagram of the disassembled structure of the wireless router of this utility model;

[0017] Figure 4This is a schematic diagram of the disassembled structure of the mounting base plate of this utility model;

[0018] Figure 5 This is a schematic cross-sectional view of the installation structure of this utility model;

[0019] Figure 6 This is a cross-sectional view of the internal structure of the fixing block of this utility model.

[0020] Legend: 1. Mounting base plate; 2. Wireless router body; 3. Heat sink; 4. First connecting bracket; 5. First mounting plate; 6. Second connecting bracket; 7. Second mounting plate; 8. Fixing block; 9. Buckle; 10. Fixing plate; 11. Spring; 12. Sliding sleeve; 13. Sliding groove; 14. Sliding rod; 15. Push-pull plate; 16. Return spring; 17. First sliding groove; 18. First slider; 19. Second sliding groove; 20. Second slider; 21. Rounded corner; 22. Friction plate; 23. Limiting sleeve. Detailed Implementation

[0021] The present invention will now be described in further detail with reference to the accompanying drawings and preferred embodiments. These drawings are simplified schematic diagrams, which only illustrate the basic structure of the present invention in a schematic manner, and therefore only show the components related to the present invention.

[0022] Reference Figures 1-5As shown, this utility model provides a technical solution: an industrial wireless router with stable installation and enhanced heat dissipation, including a mounting base plate 1, a wireless router body 2 mounted on the top of the mounting base plate 1, a heat sink 3 mounted on the top of the wireless router body 2, first connecting brackets 4 fixedly connected to both sides of the heat sink 3, a first mounting plate 5 fixedly connected to the end of the first connecting brackets 4, second connecting brackets 6 fixedly connected to both sides of the wireless router body 2, a second mounting plate 7 fixedly connected to the end of the second connecting brackets 6, and the mounting base plate 1 is fixedly connected to both sides of the heat sink 3. A fixed block 8 is connected, and two latches 9 are slidably connected inside the fixed block 8. A fixed plate 10 is fixedly connected inside the fixed block 8. A spring spring 11 is fixedly connected to both the front and rear ends of the fixed plate 10. The end of the spring spring 11 near the latch 9 is fixedly connected to the latch 9. A sliding sleeve 12 is fixedly connected to both the front and rear ends of the fixed block 8. Sliding grooves 13 are opened inside both ends of the fixed block 8 and the sliding sleeve 12. A sliding rod 14 is slidably connected inside the sliding groove 13. A push-pull plate is fixedly connected to the end of the sliding rod 14 away from the sliding sleeve 12. 15. When the staff needs to install the wireless router body 2 and the heat sink 3, the second mounting plate 7 is first aligned with the buckle 9 and snapped in. After snapping in, the heat sink 3 is placed on top of the wireless router body 2 and the first mounting plate 5 is aligned with the buckle 9 and snapped in. After snapping in, the elastic force of the spring spring 11 is released, so that the first mounting plate 5, the second mounting plate 7 and the buckle 9 are firmly connected, achieving the integrated installation of the wireless router body 2 and the heat sink 3. When disassembly is required, the push-pull plate 15 is pressed inward to drive the sliding rod 14 to abut the buckle 9, so that the first mounting plate 5 and the second mounting plate 7 are simultaneously released from the snap-fit ​​state, thereby achieving the quick disassembly of the wireless router body 2 and the heat sink 3. By adopting a convenient and unified installation structure, the installer can quickly install the heat sink 3 and the wireless router body 2 as a whole onto the mounting plate. The fixation can be completed with simple operation, which greatly shortens the installation time and improves the installation efficiency. Moreover, the design of the same fixing structure makes it easier for the heat of the wireless router body 2 to be dissipated, and the overall components are not prone to loosening or displacement.

[0023] Reference Figure 5 As shown in this embodiment: a return spring 16 is slidably connected to the surface of the sliding rod 14. The front end and rear end of the return spring 16 are fixedly connected to the sliding sleeve 12 and the push-pull plate 15, respectively. With the setting of the return spring 16, when the push-pull plate 15 is pressed and the sliding rod 14 is moved, the push-pull plate 15 is released. At this time, the elastic force stored in the return spring 16 is released and the sliding rod 14 is pushed back to the initial pressed position, thereby achieving quick reset of the sliding rod 14 after movement, which is convenient for the next press.

[0024] Reference Figure 6As shown in this embodiment: both sides of the inside of the fixing block 8 are provided with first sliding grooves 17, and both sides of the buckle 9 are fixedly connected with first sliders 18. The inside of the first sliding groove 17 is slidably connected to the first sliders 18. Through the setting of the first sliding groove 17 and the first sliders 18, the buckle 9 can form a stable limiting effect when sliding inside the fixing block 8, so that the buckle 9 will not be offset when it is engaged with the first mounting plate 5 and the second mounting plate 7, effectively ensuring the stability of the wireless router body 2 and the heat sink 3 during installation.

[0025] Reference Figure 6 As shown in this embodiment: a second sliding groove 19 is provided on both sides of the inside of the sliding sleeve 12, and a second slider 20 is fixedly connected to both sides of the sliding rod 14. The inside of the second sliding groove 19 is slidably connected to the second slider 20. Through the setting of the second sliding groove 19 and the second slider 20, the sliding rod 14 can form a stable limiting effect when sliding inside the sliding sleeve 12, so that the sliding rod 14 will not move excessively, effectively improving the stability of the wireless router body 2 and the heat sink 3 during installation and disassembly.

[0026] Reference Figure 2 and Figure 5 As shown in this embodiment: the end of the buckle 9 is provided with a rounded corner 21, and two friction plates 22 are installed on the top of the first mounting plate 5. By setting the rounded corner 21 and the friction plates 22, when the first mounting plate 5 is engaged with the second mounting plate 7 and the buckle 9, the friction generated during engagement can be significantly reduced, and after engagement, it is not easy to slip or fall off, effectively improving the stability between the mounting base plate 1, the wireless router body 2 and the heat sink 3.

[0027] Reference Figure 2 As shown in this embodiment: a limiting sleeve 23 is installed at the bottom of the heat sink 3. The shape of the limiting sleeve 23 is adapted to the shape of the wireless router body 2. With the setting of the limiting sleeve 23, when the heat sink 3 needs to be installed, the limiting sleeve 23 can be directly aligned with the wireless router body 2 and slid in, so that the first mounting plate 5 can be automatically aligned with the buckle 9 and snapped in, achieving quick installation of the heat sink 3 and further improving the operating efficiency.

[0028] Reference Figure 1 As shown in this embodiment, the surfaces of the wireless router body 2 and the heat sink 3 are both coated with epoxy resin. By coating the surfaces of the wireless router body 2 and the heat sink 3 with epoxy resin, the contact between the metal substrate and the external corrosive medium can be effectively isolated, preventing the wireless router body 2 and the heat sink 3 from corrosion due to moisture, chemical gas erosion, etc., and extending their service life.

[0029] Working principle: When the operator needs to install the wireless router body 2 and the heat sink 3, the second mounting plate 7 is first aligned with the clip 9 and snapped in. After snapping in, the heat sink 3 is placed on top of the wireless router body 2, and the first mounting plate 5 is aligned with the clip 9 and snapped in. After snapping in, the elastic spring 11 releases its force, allowing the first mounting plate 5, the second mounting plate 7, and the clip 9 to be securely connected, achieving an integrated installation of the wireless router body 2 and the heat sink 3. When disassembly is required, the push-pull plate 15 is pressed inward, causing the sliding rod 14 to abut against the clip 9, so that the first mounting plate 5 and the second mounting plate 7 are simultaneously released from their snap-fit ​​state, thereby achieving quick disassembly of the wireless router body 2 and the heat sink 3. The convenient and standardized installation structure allows installers to quickly mount the heat sink 3 and the wireless router body 2 as a single unit onto the mounting plate. This simple operation significantly reduces installation time and improves efficiency. Furthermore, the unified mounting structure facilitates heat dissipation from the wireless router body 2, preventing loosening or displacement of components. The return spring 16 ensures that when the push-pull plate 15 is pressed, causing the sliding rod 14 to move, releasing the push-pull plate 15 releases the stored elasticity of the return spring 16, causing the sliding rod 14 to spring back to its initial pressed position. This achieves rapid reset of the sliding rod 14 after movement, facilitating the next press. This is achieved through the first sliding groove 17 and... The first slider 18 provides a stable limiting effect when the buckle 9 slides inside the fixing block 8, preventing it from shifting when engaging with the first mounting plate 5 and the second mounting plate 7. This effectively ensures the stability of the wireless router body 2 and the heat sink 3 during installation. The second slide groove 19 and the second slider 20 provide a stable limiting effect when the sliding rod 14 slides inside the sliding sleeve 12, preventing excessive movement of the sliding rod 14 and effectively improving the stability of the wireless router body 2 and the heat sink 3 during installation and disassembly. The rounded corner 21 and the friction plate 22 significantly reduce the impact when the first mounting plate 5 engages with the second mounting plate 7 and the buckle 9. The reduced friction during connection and the reduced slippage and detachment after connection effectively improve the stability between the mounting base plate 1, the wireless router body 2, and the heat sink 3. With the limiting sleeve 23, when the heat sink 3 needs to be installed, simply slide the limiting sleeve 23 into the wireless router body 2, allowing the first mounting plate 5 to automatically align with the clip 9 and snap into place, achieving rapid installation of the heat sink 3 and further improving operational efficiency. The epoxy resin coating on the surfaces of the wireless router body 2 and the heat sink 3 effectively isolates the metal substrate from external corrosive media, preventing corrosion of the wireless router body 2 and heat sink 3 due to moisture, chemical gases, etc., thus extending their service life.

[0030] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An industrial wireless router with stable installation and enhanced heat dissipation, comprising a mounting base plate (1), characterized in that: The top of the mounting base plate (1) is fitted with a wireless router body (2), and the top of the wireless router body (2) is fitted with a heat sink (3). A first connecting bracket (4) is fixedly connected to both sides of the heat sink (3), and a first mounting plate (5) is fixedly connected to the end of the first connecting bracket (4). A second connecting bracket (6) is fixedly connected to both sides of the wireless router body (2), and a second mounting plate (7) is fixedly connected to the end of the second connecting bracket (6). Fixing blocks (8) are fixedly connected to both sides of the mounting base plate (1), and two latches (9) are slidably connected inside the fixing blocks (8). The fixing block (8) is fixedly connected to a fixing plate (10). The front end and the rear end of the fixing plate (10) are fixedly connected to a spring spring (11). The end of the spring spring (11) near the buckle (9) is fixedly connected to the buckle (9). The front end and the rear end of the fixing block (8) are fixedly connected to a sliding sleeve (12). The two ends of the fixing block (8) and the interior of the sliding sleeve (12) are provided with sliding grooves (13). The interior of the sliding groove (13) is slidably connected to a sliding rod (14). The end of the sliding rod (14) away from the sliding sleeve (12) is fixedly connected to a push-pull plate (15).

2. The industrial wireless router of claim 1, wherein: A return spring (16) is slidably connected to the surface of the sliding rod (14), and the front end and rear end of the return spring (16) are fixedly connected to the sliding sleeve (12) and the push-pull plate (15) respectively.

3. The industrial wireless router of claim 1, wherein: The fixed block (8) has a first sliding groove (17) on both sides inside, and the buckle (9) has a first slider (18) fixedly connected to both sides. The inside of the first sliding groove (17) is slidably connected to the first slider (18).

4. The industrial wireless router of claim 1, wherein: The sliding sleeve (12) has a second sliding groove (19) on both sides inside, and the sliding rod (14) has a second slider (20) fixedly connected to both sides. The interior of the second sliding groove (19) is slidably connected to the second slider (20).

5. The stable mounted and reinforced heat dissipation industrial wireless router according to claim 1, wherein: The buckle (9) has a rounded corner (21) at its end, and two friction plates (22) are installed on the top of the first mounting plate (5).

6. The stable mounted and reinforced heat dissipation industrial wireless router of claim 1, wherein: The bottom of the heat sink (3) is fitted with a limiting sleeve (23), the shape of which is adapted to the shape of the wireless router body (2).

7. The stable mounted and reinforced heat dissipation industrial wireless router of claim 1, wherein: The surfaces of the wireless router body (2) and the heat sink (3) are both coated with epoxy resin.