A router for a smart home
By adopting dust-proof and dehumidification components and multi-layer heat dissipation structure in smart home routers, the problems of unsatisfactory heat dissipation effect at high ambient temperatures and moisture failures caused by water vapor entering are solved, and better heat dissipation effect and equipment stability are achieved.
Patent Information
- Application Number
- CN202410836590.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2044-07-17
AI Technical Summary
The existing smart home routers have poor heat dissipation effect at high ambient temperatures, and are prone to moisture failure due to entry of water vapor, and the network cable and power cable connecting the equipment are easily disconnected due to tension.
Dust-proof and dehumidification components and multi-layer heat dissipation structures are adopted, including a card strip group, a heat dissipation card board, a heat dissipation fan, a semiconductor heat dissipation plate and a conductive copper sheet. The dust and water vapor are filtered through a dust-proof mesh frame and a dehumidification filter paper frame, and the dehumidification effect and heat dissipation effect are enhanced through an electric heating wire and a heat dissipation fan.
Maintain good heat dissipation effect at high ambient temperatures, avoid dust and water vapor entering the router, extend the service life of the equipment, and stabilize the network cable and power cable through anti-disconnection cable components to avoid disengagement.
Smart Images

Figure CN118509734B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of communications, and particularly to a router for a smart home. Background Art
[0002] A smart home router is one of the important devices in a smart home system. Its powerful signal coverage ability can ensure that the entire home environment can be stably connected to the network, meet the networking needs of various smart devices, facilitate the management of the smart home system, and achieve remote control.
[0003] Chinese Patent with the publication number "CN209201100U" discloses "a smart home router with dust-proof and heat dissipation functions, including a router main body, a heat dissipation port and a ventilation port. A signal transmitter is fixedly connected to the rear end of the router main body. Heat dissipation ports are provided on both sides of the router main body. Fixed slots are provided on the outer edges of the heat dissipation ports. A filter screen frame is inserted into the fixed slots. The lower end of the filter screen frame passes through the router side wall on the side of the router main body. A filter screen is fixedly connected in the middle of the filter screen frame. A waterproof frame is fixedly connected outside the heat dissipation port. Fixed seats are integrally formed on both sides of the waterproof frame. Compared with traditional routers, the present invention has a stronger heat dissipation effect. While dissipating heat, it can prevent dust from entering the interior of the router main body, increasing the dust-proof effect, increasing the heat dissipation effect and service life of the router, and the dust-proof mechanism is easy to disassemble, facilitating maintenance, replacement and cleaning, effectively increasing the service life and reducing the use cost". Although it has the effects of "having a stronger heat dissipation effect, preventing dust from entering the interior of the router main body while dissipating heat, increasing the dust-proof effect, increasing the heat dissipation effect and service life of the router, and the dust-proof mechanism is easy to disassemble, facilitating maintenance, replacement and cleaning, effectively increasing the service life and reducing the use cost", when dissipating heat through a cooling fan, the principle is to cool down by accelerating the flow of air. When the ambient temperature is too high itself, its heat dissipation effect is not ideal. And during the process of the cooling fan guiding the air flow, water vapor in the air will also enter the router, easily causing the router to get damp and malfunction, and the network cable and power cord connected to the router are easily detached from the router after being pulled. Summary of the Invention
[0004] The main object of the present invention is to provide a router for a smart home, which can ensure a good heat dissipation effect on the premise of a relatively high ambient temperature, and at the same time can prevent water vapor in the environment from entering the router and causing the interior of the router to get damp.
[0005] To achieve the above object, the technical solution adopted by the present invention is as follows:
[0006] A router for a smart home, comprising a router main body. On both sides of the router main body, a first set of clamping strips is fixedly installed. Inside the first set of clamping strips, a dust-proof and dehumidifying component is arranged. At the bottom of the router main body, a mounting component is installed. A bottom plate is fixedly connected to the bottom of the router main body through screws. At the bottom of the bottom plate, a second set of clamping strips is fixedly installed. Inside the second set of clamping strips, a heat dissipation clamping plate is clamped. At the bottom of the heat dissipation clamping plate, a heat dissipation fan is fixedly installed. A semiconductor heat dissipation plate is fixedly installed in the middle, penetrating the upper and lower ends of the bottom plate. Conductive copper sheets I are fixedly installed in the middle, penetrating the front and rear ends of the heat dissipation clamping plate.
[0007] The mounting component includes a mounting plate. A fixing plate is fixedly installed through the back surface of the mounting plate. An adhesive sticker is fixedly installed through the back surface of the fixing plate. Through grooves are opened at the positions in the front and middle of the upper and lower ends of the mounting plate. Inside the through grooves, heating wires are fixedly installed. Four card slots are opened on the top surface of the mounting plate and outside the through grooves. A docking groove is opened on the top surface of the mounting plate and behind the through grooves. A power interface II is fixedly installed through one side of the mounting plate and behind the docking groove. At the front end of the bottom of the mounting plate, a third set of clamping strips is fixedly installed. Conductive copper sheets II are fixedly installed on the inner walls of the front and rear ends of the first set of clamping strips and the second set of clamping strips and on both inner walls of the third set of clamping strips.
[0008] As a further solution of the present invention, the dust-proof and dehumidifying component includes a first dust-proof and dehumidifying clamping plate and a second dust-proof and dehumidifying clamping plate arranged in an up-and-down manner. Sealing grooves are opened at the top of the back surface of the first dust-proof and dehumidifying clamping plate and at the top of the front surface of the second dust-proof and dehumidifying clamping plate. Dust-proof mesh frames are fixedly installed in the middle of the front surfaces of the first dust-proof and dehumidifying clamping plate and the second dust-proof and dehumidifying clamping plate. A dehumidifying filter paper frame is installed through the top of the dust-proof mesh frame.
[0009] As a further solution of the present invention, the first dust-proof and dehumidifying clamping plate and the second dust-proof and dehumidifying clamping plate are clamped to the router main body through the first set of clamping strips. The filter paper in the dehumidifying filter paper frame is arranged in a honeycomb shape. The dehumidifying filter paper frame is clamped between the dust-proof mesh frame and the first dust-proof and dehumidifying clamping plate.
[0010] As a further solution of the present invention, an anti-disconnection wire clamping component is installed at the position corresponding to the docking groove on the top of the mounting plate. The anti-disconnection wire clamping component includes a base. At the bottom of the base, a docking clamping strip is fixedly installed. Through the top of the base, two parallel arranged wire clamping plates are movably installed through a torsion spring and a rotating shaft. A number of wire clamping grooves are opened on the opposite surfaces of the two wire clamping plates. The base is clamped to the mounting plate through the docking clamping strip in cooperation with the docking groove.
[0011] As a further solution of the present invention, an access port is fixedly installed through the bottom end of the back surface of the router body, a first power interface is fixedly installed through the back surface of the router body and above the access port, and a plurality of output ports are fixedly installed through the back surface of the router body and above the first power interface. The positions of the access port, the first power interface, the output ports and the plurality of card slots correspond to each other.
[0012] As a further solution of the present invention, the bottom of the router body is snap-connected to the carrier board through a card slot.
[0013] As a further solution of the present invention, storage grooves are respectively formed at the four corners of the top surface of the router body, and antennas are movably installed inside the storage grooves.
[0014] As a further solution of the present invention, the first conductive copper sheet is electrically connected to the second conductive copper sheet, the first conductive copper sheet is electrically connected to the cooling fan, and the second conductive copper sheet is electrically connected to the first power interface and the second power interface.
[0015] The above embodiments of the present invention can achieve the following beneficial effects:
[0016] By providing a dust-proof and dehumidifying component, the dust in the ambient air is filtered by the dust-proof mesh frame, and the water vapor in the ambient air is absorbed by the dehumidifying filter paper frame, so as to prevent dust and water vapor from entering the router body. By providing the first card strip component, the first dust-proof and dehumidifying card board and the second dust-proof and dehumidifying card board, the installation and disassembly of the dust-proof and dehumidifying component are facilitated;
[0017] By providing the second card strip group, the heat dissipation card board, the cooling fan, the semiconductor heat dissipation plate, the first conductive copper sheet and the second conductive copper sheet, the heat dissipation card board is inserted into the second card strip component, so that the cooling fan is facilitated to be butted against the bottom plate. Through the contact of the first conductive copper sheet and the second conductive copper sheet, it is convenient for the cooling fan to be powered on at different positions. After the cooling fan is started, it is beneficial to improve the surface heat dissipation of the semiconductor heat dissipation plate, thereby enhancing the internal heat dissipation of the router body;
[0018] By inserting the heat dissipation card board into the first card strip group, when the cooling fan is started, the air flow inside the router body is enhanced, so as to facilitate the extraction of dust and water vapor that accidentally enter the router body, and prevent dust and water vapor from staying in the router body for a long time, resulting in damage to the components inside the router body;
[0019] By inserting the first dust-proof and dehumidifying card board or the second dust-proof and dehumidifying card board into the third card strip group, it is convenient to place the dehumidifying filter paper frame directly below the through groove. When the heating wire and the cooling fan are started, the hot air blows towards the dehumidifying filter paper frame, which is convenient for the water vapor on the dehumidifying filter paper frame to be desorbed, and facilitates the reuse of the dehumidifying filter paper frame;
[0020] By setting up the anti-disconnection wire clamping component, after unfolding the wire clamping board, insert the power cord and network cable into the first power interface, the access port and the output port. After loosening the wire clamping board, the wire clamping board closes again, and the power cord and network cable are limited and fixed through the wire clamping groove, preventing the power cord and network cable from detaching from the router body when subjected to tensile force. At the same time, the docking card strip is clamped into the docking groove, facilitating the installation and disassembly of the anti-disconnection wire clamping component. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 FIG. 1 is a schematic diagram of the overall structure of a router for a smart home according to the present invention;
[0022] Figure 2 FIG. 2 is a demonstration diagram after the antenna of a router for a smart home according to the present invention is unfolded;
[0023] Figure 3 FIG. 3 is a rear view perspective diagram of a router for a smart home according to the present invention; Figure 2 FIG. 4 is a rear view perspective diagram of the router body of a router for a smart home according to the present invention;
[0024] Figure 4 FIG. 5 is a bottom view perspective diagram of the router body of a router for a smart home according to the present invention;
[0025] Figure 5 FIG. 6 is a schematic diagram of the structure after removing the heat dissipation fan and its components of a router for a smart home according to the present invention;
[0026] Figure 6 FIG. 7 is a schematic diagram of the structure of the heat dissipation fan and its components of a router for a smart home according to the present invention; Figure 5 FIG. 8 is an enlarged view of a partial structure of a router for a smart home according to the present invention;
[0027] Figure 7 FIG. 9 is a schematic diagram of the structure of the components carried by a router for a smart home according to the present invention;
[0028] Figure 8 FIG. 10 is an enlarged view of a partial structure of a router for a smart home according to the present invention;
[0029] Figure 9 FIG. 11 is a schematic diagram of the structure of the components carried by a router for a smart home according to the present invention;
[0030] Figure 10 FIG. 12 is a bottom view perspective diagram of the components carried by a router for a smart home according to the present invention;
[0031] Figure 11 FIG. 13 is an exploded view of the structure of the dust-proof and dehumidifying component of a router for a smart home according to the present invention;
[0032] Figure 12 FIG. 14 is a schematic diagram of the structure of the anti-disconnection wire clamping component of a router for a smart home according to the present invention.
[0033] In the figure: 1, router main body; 2, storage slot; 3, antenna; 4, first set of clamping strips; 5, dust-proof and dehumidifying component; 6, mounting component; 7, anti-disconnection wire clamping component; 8, access port; 9, first power interface; 10, output port; 11, bottom plate; 12, second set of clamping strips; 13, heat dissipation clamping plate; 14, cooling fan; 15, semiconductor heat dissipation plate; 16, first conductive copper sheet; 17, second conductive copper sheet; 501, first dust-proof and dehumidifying clamping plate; 502, second dust-proof and dehumidifying clamping plate; 503, sealing groove; 504, dust-proof mesh frame; 505, dehumidifying filter paper frame; 601, mounting plate; 602, fixing plate; 603, adhesive sticker; 604, through groove; 605, heating wire; 606, card slot; 607, docking slot; 608, second power interface; 609, third set of clamping strips; 701, base; 702, docking clamping strip; 703, wire clamping plate; 704, wire clamping groove. Detailed implementation mode
[0034] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with the specific implementation modes.
[0035] As Figures 1 - 12 shown, a router for smart home includes a router main body 1. On both sides of the router main body 1, a first set of clamping strips 4 are fixedly installed. Inside the first set of clamping strips 4, a dust-proof and dehumidifying component 5 is arranged. At the bottom of the router main body 1, a mounting component 6 is installed. The bottom of the router main body 1 is penetrated and fixedly connected with a bottom plate 11 by screws. At the bottom of the bottom plate 11, a second set of clamping strips 12 are fixedly installed. Inside the second set of clamping strips 12, a heat dissipation clamping plate 13 is clamped. At the bottom of the heat dissipation clamping plate 13, a cooling fan 14 is fixedly installed. A semiconductor heat dissipation plate 15 is fixedly installed through the upper and lower ends of the bottom plate 11 at the center. A first conductive copper sheet 16 is fixedly installed through the front and rear ends of the heat dissipation clamping plate 13 at the center.
[0036] The mounting component 6 includes a mounting plate 601. A fixing plate 602 is fixedly installed through the back of the mounting plate 601. An adhesive sticker 603 is fixedly installed through the back of the fixing plate 602. Through grooves 604 are opened at the positions in front of and centered on the upper and lower ends of the mounting plate 601. A heating wire 605 is fixedly installed inside the through grooves 604. Four card slots 606 are opened through the top surface of the mounting plate 601 and located outside the through grooves 604. A docking slot 607 is opened through the top surface of the mounting plate 601 and located behind the through grooves 604. A second power interface 608 is fixedly installed through one side of the mounting plate 601 and located behind the docking slot 607. At the front end of the bottom of the mounting plate 601, a third set of clamping strips 609 are fixedly installed. Second conductive copper sheets 17 are fixedly installed through the inner walls of the front and rear ends of the first set of clamping strips 4 and the second set of clamping strips 12 and the inner walls of both sides of the third set of clamping strips 609.
[0037] In this embodiment, the dust-proof and dehumidifying component 5 includes a first dust-proof and dehumidifying card board 501 and a second dust-proof and dehumidifying card board 502 arranged vertically. Sealing grooves 503 are formed at the top of the back surface of the first dust-proof and dehumidifying card board 501 and the top of the front surface of the second dust-proof and dehumidifying card board 502. Dust-proof mesh frames 504 are fixedly installed in the middle of the front surfaces of the first dust-proof and dehumidifying card board 501 and the second dust-proof and dehumidifying card board 502. A dehumidifying filter paper frame 505 is installed through the top of the dust-proof mesh frame 504. After the sealing grooves 503 on the first dust-proof and dehumidifying card board 501 and the second dust-proof and dehumidifying card board 502 are engaged with each other, the sealing performance is improved. The dust-proof mesh frame 504 is used to filter dust in the ambient air, and the dehumidifying filter paper frame 505 is used to filter water vapor in the ambient air, preventing dust and water vapor from entering the interior of the router body 1.
[0038] In this embodiment, the first dust-proof and dehumidifying card board 501 and the second dust-proof and dehumidifying card board 502 are clamped to the router body 1 through a first card strip group 4. The filter paper in the dehumidifying filter paper frame 505 is arranged in a honeycomb shape. The dehumidifying filter paper frame 505 is clamped between the dust-proof mesh frame 504 and the first dust-proof and dehumidifying card board 501. After the ambient air is filtered by the dust-proof mesh frame 504 to remove dust, the contact area with the air is increased through the honeycomb-shaped filter paper, and the water vapor in the air is absorbed.
[0039] In this embodiment, an anti-disconnection wire clamping component 7 is installed at the top of the carrier board 601 corresponding to the docking groove 607. The anti-disconnection wire clamping component 7 includes a base 701. A docking card strip 702 is fixedly installed at the bottom of the base 701. Two mutually parallel arranged wire clamping plates 703 are movably installed through the top of the base 701 by a torsion spring and a rotating shaft. A plurality of wire clamping grooves 704 are formed on the opposite surfaces of the two wire clamping plates 703. The base 701 is clamped to the carrier board 601 through the docking card strip 702 in cooperation with the docking groove 607. By providing the anti-disconnection wire clamping component 7, it is convenient to limit and fix the power cord and the network cable.
[0040] In this embodiment, an access port 8 is fixedly installed through the bottom end of the back surface of the router body 1. A first power interface 9 is fixedly installed through the back surface of the router body 1 and above the access port 8. A plurality of output ports 10 are fixedly installed through the back surface of the router body 1 and above the first power interface 9. The positions of the access port 8, the first power interface 9, the output ports 10 and the plurality of wire clamping grooves 704 correspond to each other. After the two wire clamping plates 703 are unfolded, the power cord and the network cable are inserted. When the wire clamping plates 703 are closed again, the power cord and the network cable are clamped by the wire clamping grooves 704, preventing the power cord and the network cable from being pulled out of the router body 1.
[0041] In this embodiment, the bottom of the router body 1 is clamped to the carrier board 601 through a card slot 606, facilitating the docking of the router body 1 and the carrier board 601 and conveniently fixing the router body 1.
[0042] In this embodiment, receiving grooves 2 are formed at the four corner positions on the top surface of the router main body 1. An antenna 3 is movably installed inside the receiving groove 2. The receiving groove 2 facilitates the storage of the antenna 3. At the same time, by adjusting the angle of the antenna 3, it is convenient for the router main body 1 to better receive signals.
[0043] In this embodiment, the first conductive copper sheet 16 is electrically connected to the second conductive copper sheet 17. The first conductive copper sheet 16 is electrically connected to the heat dissipation fan 14. The second conductive copper sheet 17 is electrically connected to the first power supply interface 9 and the second power supply interface 608. After the heat dissipation card board 13 is inserted into the second card strip group 12, the first conductive copper sheet 16 contacts the second conductive copper sheet 17, and the heat dissipation fan 14 starts to enhance the surface heat dissipation of the semiconductor heat dissipation plate 15, thereby reducing the temperature inside the router main body 1. When the heat dissipation card board 13 is inserted into the first card strip group 4, the first conductive copper sheet 16 contacts the second conductive copper sheet 17, and the heat dissipation fan 14 starts to facilitate the extraction of dust entering the router main body 1.
[0044] It should be noted that the present invention is a router for a smart home. When in use, the router is installed according to requirements. When the installation surface is convenient for drilling, four installation holes are drilled on the installation surface, and the fixing plate 602 is fixed to the installation surface by cooperating with external bolts. When the installation surface is not convenient for drilling, the protective layer of the adhesive sticker 603 is torn off, and the fixing plate 602 is attached to the installation surface through the adhesive sticker 603. Then, the bottom of the router main body 1 is inserted into the card slot 606 to fix the router main body 1;
[0045] After the installation of the router is completed, the two wire clamping plates 703 in the anti-disconnection wire clamping assembly 7 are unfolded, and then the network cable and the power cable are inserted into the access port 8, the first power supply interface 9, and the output port 10. After the wire clamping plate 703 is released, the wire clamping plate 703 is driven by the torsion spring to close again, and the network cable and the power cable are limited and fixed through the wire clamping groove 704 to prevent the network cable and the power cable from detaching from the router main body 1 after being subjected to a pulling force. Then, another power cable is inserted into the second power supply interface 608, and the antenna 3 is pulled out from the receiving groove 2 and the angle of the antenna 3 is adjusted;
[0046] When the router is running, the environmental air is filtered by the dust-proof net frame 504 in the dust-proof and dehumidification assembly 5 to remove dust, and then filtered by the dehumidification filter paper frame 505 to filter the water vapor in the air. Then, the air enters the inside of the router main body 1 to facilitate the heat dissipation of the router main body 1. At the same time, after the heat dissipation fan 14 starts, it enhances the surface heat dissipation of the semiconductor heat dissipation plate 15 and enhances the heat dissipation effect inside the router main body 1;
[0047] After removing the dust-proof and dehumidifying component 5 from the inside of the first card strip group 4, insert the first dust-proof and dehumidifying card plate 501 or the second dust-proof and dehumidifying card plate 502 into the third card strip group 609, so as to place the dehumidifying filter paper frame 505 directly below the through groove 604. After the radiator fan 14 and the heating wire 605 are started, hot air blows towards the dehumidifying filter paper frame 505, facilitating the desorption of the water vapor absorbed on the dehumidifying filter paper frame 505 and facilitating the reuse of the dehumidifying filter paper frame 505;
[0048] After removing the dust-proof and dehumidifying component 5 from the inside of the first card strip group 4, pull out the heat dissipation card plate 13 from the second card strip group 12, and then insert the heat dissipation card plate 13 into the inside of the first card strip group 4. After the first conductive copper sheet 16 and the second conductive copper sheet 17 come into contact, the radiator fan 14 is powered on and started, facilitating the extraction of the dust and water vapor that enter the router main body 1 due to improper operation, and avoiding the occurrence of failures in the components inside the router main body 1 caused by the retention of dust and water vapor.
Claims
1. A smart home router, characterized in that: The router body (1) comprises a router main body (1), wherein a first card strip group (4) is fixedly installed on both sides of the router main body (1), a dustproof and dehumidification component (5) is arranged on the inner side of the first card strip group (4), a mounting component (6) is installed on the bottom of the router main body (1), a bottom plate (11) is fixedly connected to the bottom of the router main body (1) by screws, a second card strip group (12) is fixedly installed on the bottom of the bottom plate (11), a heat dissipation card plate (13) is clamped on the inner side of the second card strip group (12), a heat dissipation fan (14) is fixedly installed on the bottom of the heat dissipation card plate (13), a semiconductor heat dissipation plate (15) is fixedly installed in the middle of the upper and lower ends of the bottom plate (11), and a first conductive copper sheet (16) is fixedly installed in the middle of the front and rear ends of the heat dissipation card plate (13); The mounting assembly (6) comprises a mounting plate (601), a fixing plate (602) is fixedly installed through the back of the mounting plate (601), an adhesive sticker (603) is fixedly installed through the back of the fixing plate (602), a through groove (604) is opened through the upper and lower ends of the mounting plate (601) at the front and center position, a heating wire (605) is fixedly installed inside the through groove (604), and four card slots (606) are opened through the top surface of the mounting plate (601) and located at the outer circle of the through groove (604) ), a docking groove (607) is provided through the top surface of the mounting plate (601) and located behind the through groove (604), a power interface 2 (608) is fixedly installed through one side of the mounting plate (601) and located behind the docking groove (607), a card strip group 3 (609) is fixedly installed at the bottom of the mounting plate (601) near the front end, and a conductive copper sheet 2 (17) is fixedly installed through the front and rear end inner walls of the card strip group 1 (4) and the card strip group 2 (12) and the inner walls on both sides of the card strip group 3 (609); The dustproof and dehumidification component (5) comprises a dustproof and dehumidification card plate 1 (501) and a dustproof and dehumidification card plate 2 (502) arranged in an upper and lower manner, a sealing groove (503) is provided through the back side of the dustproof and dehumidification card plate 1 (501) near the top and the front side of the dustproof and dehumidification card plate 2 (502) near the top, a dustproof net frame (504) is fixedly installed in the center of the front side of the dustproof and dehumidification card plate 1 (501) and the dustproof and dehumidification card plate 2 (502), and a dehumidification filter paper frame (505) is installed through the top of the dustproof net frame (504); The dustproof and dehumidification card plate 1 (501) and the dustproof and dehumidification card plate 2 (502) are connected to the router body (1) via a card strip group 1 (4); the filter paper in the dehumidification filter paper frame (505) is arranged in a honeycomb shape; the dehumidification filter paper frame (505) is connected between the dustproof net frame (504) and the dustproof and dehumidification card plate 1 (501); After the dust-proof dehumidification component (5) is removed from the inner side of the card strip group 1 (4), the dust-proof dehumidification card plate 1 (501) or the dust-proof dehumidification card plate 2 (502) is inserted into the card strip group 3 (609), thereby placing the dehumidification filter paper frame (505) directly below the through groove (604). After the heat dissipation fan (14) and the electric heating wire (605) are started, hot air is blown toward the dehumidification filter paper frame (505), so as to facilitate the desorption of water vapor absorbed on the dehumidification filter paper frame (505) and facilitate the reuse of the dehumidification filter paper frame (505); An anti-dropping wire clamping assembly (7) is installed at the top of the carrying plate (601) and at a position corresponding to the docking groove (607), and the anti-dropping wire clamping assembly (7) comprises a base (701), a docking clamping strip (702) is fixedly installed at the bottom of the base (701), and two mutually parallel arranged wire clamping plates (703) are movably installed through the top of the base (701) via a torsion spring and a rotating shaft, and a plurality of wire clamping grooves (704) are provided on the opposite surfaces of the two wire clamping plates (703), and the base (701) is clamped with the carrying plate (601) via the docking clamping strip (702) and the docking groove (607); An access port (8) is fixedly installed through the back of the router body (1) near the bottom, a power interface (9) is fixedly installed through the back of the router body (1) and above the access port (8), and a plurality of output ports (10) are fixedly installed through the back of the router body (1) and above the power interface (9), and the positions of the access port (8), the power interface (9), the output port (10) and the plurality of cable slots (704) correspond to each other; The conductive copper sheet 1 (16) is electrically connected to the conductive copper sheet 2 (17), the conductive copper sheet 1 (16) is electrically connected to the heat dissipation fan (14), and the conductive copper sheet 2 (17) is electrically connected to the power interface 1 (9) and the power interface 2 (608).
2. The smart home router according to claim 1, characterized in that: The bottom of the router body (1) is snap-connected to the mounting plate (601) via a snap slot (606).
3. The smart home router according to claim 1, characterized in that: Storage slots (2) are provided at four corners of the top surface of the router body (1), and antennas (3) are movably installed inside the storage slots (2).
Citation Information
Patent Citations
Dustproof and heat-dissipation smart home router
CN209201100U
Dustproof dehumidification device of wireless router
CN217849465U
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CN219421459U
Dual-frequency wireless router for network communication
CN221263828U