Connector for connecting network cable in gateway equipment

By adopting a direct-plug magnetic locking structure and an anti-accidental-touch design in the gateway device, the problem of micro-motion corrosion caused by hand contact during the tightening process of the network cable connector is solved, realizing the stability of the network cable connection and the long-term reliability of electrical performance, which is suitable for high vibration or critical communication scenarios.

CN121484547APending Publication Date: 2026-02-06DONGGUAN WEIQI ELECTRONICS CO LTD
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Patent Information

Application Number
CN202511610154.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-02-06

AI Technical Summary

Technical Problem

In existing gateway devices, during the tightening process of network cable connectors, hand contact can easily cause relative displacement and friction between the gold fingers of the crystal head and the contacts inside the interface, leading to fretting corrosion and affecting the long-term reliability and stability of the electrical connection.

Method used

It adopts a direct-insertion magnetic locking structure. Through the cooperation design of the plug and socket, the magnetic ejection component and the push component are used to achieve quick and stable docking, avoiding rotation operation and ensuring a solid connection between the network cable RJ45 head and the interface. It is also equipped with an anti-accidental contact structure to prevent accidental disconnection.

Benefits of technology

It effectively avoids fretting corrosion, improves the reliability and stability of the connection, and ensures excellent electrical performance over a long period of time, making it particularly suitable for high vibration or critical communication scenarios.

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Abstract

The invention discloses a connector for connecting a network cable in gateway equipment, and particularly relates to the technical field of network cable connectors, the connector comprises a socket, the socket is fixed outside the gateway equipment, and the surface of the socket is provided with jacks corresponding to network cable interfaces; a cavity for fixing a network cable crystal head is formed in the connecting plug; the invention discloses a plug-in connector which comprises a plug-in connector, a magnetic attraction pop-up assembly and a pushing assembly, and in the process that the plug-in connector is transversely and straightly inserted into a jack, the pushing assembly and the plug-in connector move synchronously and get close to the magnetic attraction pop-up assembly until the pushing assembly is tightly attracted by a magnetic attraction structure of the magnetic attraction pop-up assembly.The direct insertion type magnetic attraction locking structure is adopted, micro-motion corrosion is effectively avoided, the connection reliability is improved, and the service life of the plug-in connector is prolonged. The connection mode does not need rotation operation, the hand does not touch the adjacent interface during installation, the relative displacement and friction between the golden finger of the network cable crystal head and the contact in the interface caused by external force interference are fundamentally avoided, and the risk of fretting corrosion is obviously reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of network cable connectors, in particular to a network cable connector in a gateway device. BACKGROUND

[0002] With the rapid development of the Internet, the Internet of Things and smart home technology, the gateway device, as the core hub connecting local area networks and wide area networks and realizing data exchange and protocol conversion, is becoming increasingly important. In various types of gateways, wired Ethernet connections have become the main way to carry critical data traffic due to their high stability and high bandwidth. The network cable connector, as the physical interface for wired connections, is the foundation and key component for realizing this function.

[0003] Common network cable connectors are usually composed of two parts: one part is fixed to the network cable interface of the gateway device, and the other part is connected to the crystal head of the network cable. With the physical assistance of the connector, the crystal head can be securely inserted into the network cable interface to ensure the reliability of signal transmission. Currently, such connectors mostly use a threaded connection structure. During installation, the crystal head is first inserted into the threaded connector, and then the connector is screwed to the device interface shell. In network architectures that require secure, stable and efficient dedicated communication channels, direct connections between two gateway devices often use network cables for interconnection. Existing gateway devices usually have multiple network cable interfaces with close connector spacing. When tightening a threaded connector, the operator's hand may touch the adjacent connector, causing the gold fingers of the inserted crystal head to move relative to the gold fingers inside the interface and rub against each other. This may cause fretting corrosion over time, affecting the long-term reliability of the electrical connection. SUMMARY

[0004] The purpose of the present application is to overcome the shortcomings of the prior art and provide a network cable connector in a gateway device.

[0005] To solve the above technical problems, the present application adopts the following technical solutions: The network cable connector in the gateway device comprises: a socket fixed to the outside of the gateway device, the socket surface being provided with a socket hole corresponding to the network cable interface; a plug-in head provided with a cavity for fixing the network cable crystal head; a magnetic ejection assembly arranged in the mounting groove on the front surface of the socket; a push assembly, which moves synchronously with the plug-in head and approaches the magnetic ejection assembly during the horizontal insertion of the plug-in head into the socket hole, until it is tightly attracted by the magnetic attraction structure of the magnetic ejection assembly.

[0006] Preferably, the bottom of the magnetic pop-out assembly is provided with a liftable supporting plate, and the bottom of the supporting plate is fixed with a plurality of springs.

[0007] Preferably, the magnetic pop-out assembly comprises a magnetic block fixed at the top of one end of the supporting plate, one side of the magnetic block is provided with a guide rail, and the top of the supporting plate is fixed with a spring sheet near the side of the guide rail.

[0008] Preferably, the spring sheet is fixed with a guide block near the side wall of the guide rail, the surface of the guide rail is provided with a guide hole corresponding to the guide block, the middle part of the spring sheet is provided with a through hole, and the surface of the guide rail is provided with a through hole corresponding to the through hole.

[0009] Preferably, the pushing assembly comprises a mounting block fixed at the top of the plug, one side of the mounting block is fixed with a top pipe, and the outer part of the top pipe is fixed with a pushing block.

[0010] In the present application, after the plug of the plug-in is completely inserted into the socket, the network crystal head and the network interface are connected, at the same time, the pushing assembly is inserted into the mounting groove, and the magnetic block of the magnetic pop-out assembly attracts the end of the top pipe of the pushing assembly. The network crystal head is more stable under the close cooperation of the plug and the socket and the action of the magnetic block attracting the top pipe. The network crystal head will not move relative to the socket, and the gold fingers of the network crystal head will not rub against the contacts of the network interface, thereby avoiding the problems of oxidation, wear accumulation, micro-motion corrosion, contact resistance increase and electrical performance degradation, effectively improving the stability of the network connection with the gateway, and making the network system more reliable.

[0011] Preferably, the top of the socket is provided with a rod hole communicating with the mounting groove, the upper part of the rod hole is provided with a pressing assembly, the pressing assembly comprises a pressing plate, the bottom of the pressing plate is provided with a pressing rod, and the end of the pressing rod can extend into the mounting groove.

[0012] Preferably, the top of the pressing plate is provided with a boss, the middle part of the boss is provided with a second through hole, and the side of the boss near the second through hole is provided with a first through hole.

[0013] Preferably, the upper part of the pressing plate is provided with an anti-mis-touch device, the anti-mis-touch device comprises a main shaft inserted into the second through hole, the outer wall of the main shaft is fixed with a limiting rod, and the limiting rod can slide in the first through hole.

[0014] Preferably, the top of the socket is provided with a rod groove, and the limiting rod can fall into the rod groove after sliding above the rod groove.

[0015] A rod groove is also provided at the top of the socket, and the limiting rod can fall into the rod groove after sliding above the rod groove. Figure 14The position state of the main shaft and the limiting rod is shown, the limiting rod is not above the rod groove, but by pinching the rotating cap with fingers, and rotating the rotating cap, the rotating cap drives the main shaft to rotate, the main shaft drives the limiting rod to move in the first through hole, in the moving process, the limiting rod will extrude the elastic reset member (the elastic reset member can adopt a spring), until the limiting rod moves to the upper part of the rod groove (due to the resistance of the elastic reset member, after moving to the upper part of the rod groove, the rotating cap cannot be continuously rotated), and then the rotating cap is pressed downward, the rotating cap drives the main shaft and the limiting rod to move downward, the limiting rod is inserted into the rod groove, this process makes the pressing plate also be pressed downward, the pressing plate will push the pressing rod to extrude the supporting plate downward, so as to achieve the purpose of pressing, trigger the elastic sheet reset, and the propelling assembly is popped out.

[0016] Preferably, the plug connector comprises a plug tube, one end of the plug tube is fixed with a connecting tube, one end of the connecting tube is threadedly connected with a threaded tube; during the process of plugging the network crystal head, the threaded tube needs to be held by hand, the plug tube is inserted horizontally and vertically into the jack, the end of the network crystal head can be directly connected to the network interface, at this time, the network crystal head can be stable under the close cooperation of the plug tube and the jack, and then can be firmly connected to the network interface.

[0017] (1) The magnetic attraction locking structure is adopted, micro-motion corrosion is effectively avoided, and connection reliability is improved. Through the cooperation design of the plug connector and the socket, the network crystal head is fixed in the plug connector in advance; in the plugging process, the propelling assembly at the top of the plug connector drives the magnetic attraction pop-out assembly in the socket, and the magnetic attraction auxiliary positioning of the magnetic block is used, so that the plug connector and the propelling assembly are quickly and stably connected to the socket; the connection mode does not need to be rotated, the hand does not touch the adjacent interface during installation, the relative displacement and friction between the network crystal head gold finger and the contact in the interface caused by external interference are fundamentally eliminated, the micro-motion corrosion risk is significantly reduced, and the long-term reliability of electrical connection is ensured.

[0018] (2) Based on the magnetic attraction pop-out assembly in the socket, when the plug connector is inserted, the propelling assembly synchronously presses the elastic sheet of the magnetic attraction pop-out assembly, so that the elastic sheet is in an energy storage state; when the plug connector is pulled out, the elastic sheet is quickly restored to the original state by the external pressing assembly pressing the supporting plate, and an elastic pushing force is generated to smoothly pop out the plug connector. The mechanism is simple to operate and clear in hand feeling, can be operated by a single hand and a single finger, effectively avoids accidental touch of adjacent connections in a dense interface environment, and improves maintenance efficiency and operation safety.

[0019] (3) Based on the pressing assembly, the pressing assembly is provided with a rotating anti-misoperation structure, the limiting rod needs to be rotated to align the rod groove before the elastic sheet is pressed to perform the pop-out operation, the two-step operation mechanism effectively prevents network disconnection caused by accidental touch, is especially suitable for high-vibration or critical communication scenes, and further guarantees the continuity and stability of the connection system. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced. Obviously, the drawings in the following description only represent some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.

[0021] Figure 1 It is a schematic diagram of the overall structure of the present application. Figure 2 It is a schematic diagram of the structure of the socket of the present application. Figure 3 It is a perspective view of the socket of the present application. Figure 4 It is a schematic diagram of the structure of the plug, the network crystal plug and the pushing assembly of the present application. Figure 5 It is a perspective view of the plug, the network crystal plug and the pushing assembly of the present application. Figure 6 It is a two-dimensional schematic diagram of the plug and the pushing assembly of the present application. Figure 7 It is a schematic diagram of the structure of the socket, the plug and the pushing assembly of the present application. Figure 8 It is a schematic diagram of the structure of the socket, the plug and the pushing assembly of the present application. Figure 7 It is an enlarged view of part A in FIG. Figure 9 It is a state diagram after the pipe extrusion spring of the present application. Figure 10 It is a two-dimensional schematic diagram of part B in FIG. Figure 9 Figure 11 It is a schematic diagram of the structure of the magnetic attraction ejection assembly and the pushing assembly of the present application. Figure 12 It is a schematic diagram of the structure of the socket, the mistaken touch prevention device and the pressing assembly of the present application. Figure 13 It is an enlarged view of part B in FIG. Figure 12 Figure 14 It is a schematic diagram of the structure of the main shaft and the pressing assembly of the present application. Figure 15 It is an exploded view of the main shaft and the pressing assembly of the present application.

[0022] Explanation of reference signs: 100, socket; 110, socket hole; 120, mounting groove; 130, rod hole; 140, insertion slot; 150, limiting slot; 160, rod slot; 200, plug; 210, plug pipe; 220, connecting pipe; 230, threaded pipe; 300, gateway device; 310, network cable interface; ​​400, RJ45; 410, dial piece; 500, push assembly; 510, top pipe; 520, push block; 530, mounting block; 600, anti-misoperation device; 610, rotating cap; 620, main shaft; 6210, limiting rod; 700, pressing assembly; 710, pressing rod; 720, guide rod; 7210, bent piece; 730, boss; 7310, 7320, second through hole; 740, pressing plate; 800, magnetic pop-out assembly; 810, magnetic block; 820, guide rail; 8210, guide hole; 8220, through hole; 830, spring piece; 8310, guide block; 8320, through hole; 900, supporting plate; 910, spring. DETAILED DESCRIPTION

[0023] In order to make the technical personnel in the art better understand the technical solutions of the present application, the present application will be further described in detail below in conjunction with the drawings.

[0024] In the wired networking application of the gateway device, the network cable is often directly interconnected to build a stable communication link. However, in the actual use process, the mechanical disturbance caused by frequent plugging and unplugging of the network cable or external device vibration and collision easily causes the relative displacement and continuous friction between the network cable RJ45 gold finger and the contact pin in the network cable interface of the gateway device at the microscopic level. Under the long-term effect, such micro-motion will cause oxidation and wear accumulation at the contact interface, form fretting corrosion, cause the contact resistance to rise and the electrical performance to deteriorate. At the same time, the attenuation of the mechanical locking force will also cause the connection between the network cable RJ45 and the interface to loosen, further aggravate the unstable signal transmission, and in severe cases will cause the communication of the gateway device to be interrupted, affecting the reliable operation of the entire network system. In order to overcome the above problems, the technical solutions are provided as follows: A connector for connecting a network cable in a gateway device, comprising: a socket 100, a plug 200, a push assembly 500, and a magnetic pop-out assembly 800; As shown in Figure 1 , Figure 2 , the network cable interface 310 of the two gateway devices 300 is connected with the socket 100 on one side, a threaded hole is formed on the top of the shell of the gateway device 300, and a threaded hole is also formed on the top of the socket 100. A U-shaped groove is formed on one side wall of the socket 100, the U-shaped groove of the socket 100 is clamped on the shell of the gateway device 300, and then the socket 100 and the shell of the gateway device 300 are fixed by screws, so that the socket 100 and the gateway device 300 can be stably connected; As shown in Figure 2 , Figure 3 , a socket 110 corresponding to the network cable interface 310 is formed on the front surface of the socket 100, and the plug 200 is inserted into the socket 110.Figure 1 As shown, a connector 200 is inserted into the front surface of the socket 110; Specifically, such as Figure 4 As shown, the connector 200 includes a insertion tube 210, one end of which is fixed with a connecting tube 220. The insertion tube 210 and the connecting tube 220 are an integral structure. The insertion tube 210 is a hollow square tube structure, as shown in the figure. Figure 6 As shown, a network cable connector 400 can be inserted into the hollow cavity inside the insertion tube 210. Existing network cable connectors 400 are equipped with a tab 410 at the bottom. During the process of inserting and fixing the network cable RJ400 into the inner cavity of the connector 210, the network cable RJ400 must first be inserted into the connector 220 from one side opening, then pass through the connector 220 and be pushed into the inner cavity of the connector 210. During this process, the tab 410 at the bottom of the network cable RJ400 will be locked in the inner cavity of the connector 210, thereby achieving the purpose of fixing the network cable RJ400 to the connector 210. like Figure 4 , Figure 5 , Figure 6 As shown, a threaded pipe 230 is also connected to the end of the connecting pipe 220. The outer wall of the connecting pipe 220 is provided with external threads, and the inner wall of the threaded pipe 230 is provided with internal threads. The connecting pipe 220 and the threaded pipe 230 are connected by threads. Specifically, during the process of plugging in the network cable connector 400, the threaded tube 230 needs to be held in hand, and the insertion tube 210 should be inserted horizontally into the socket 110. The end of the network cable connector 400 can be directly connected to the network cable interface 310. At this time, the network cable connector 400 can remain stable under the tight cooperation between the insertion tube 210 and the socket 110, and can then be firmly connected to the network cable interface 310.

[0025] like Figure 3 As shown, a mounting groove 120 is provided on the front surface of the socket 100; like Figure 7 , Figure 8 As shown, a tray 900 is provided inside the mounting slot 120, and a magnetic ejection assembly 800 is provided on the top of the tray 900. like Figure 11 As shown, the magnetic ejection assembly 800 includes a magnetic block 810 fixed to the top of one end of a tray 900. A guide rail 820 is provided on one side of the magnetic block 810. A spring piece 830 is fixed to the top of the tray 900 near the guide rail 820. (The spring piece 830 is originally a vertical plate. Because a spring 910 is provided at the bottom of the tray 900, the spring 910 pushes the tray 900 upward, and the tray 900 pushes the spring piece 830 upward, pressing the spring piece 830 into a vertical position.) Figure 8 The bending state shown indicates that the change from a bent state to a vertical state exhibits elastic impact force. likeFigure 4 , Figure 6 As shown, a push assembly 500 is provided at the top of the insertion tube 210. The push assembly 500 includes a mounting block 530 fixed to the top of the connecting tube 220 of the insertion joint 200. A top tube 510 is fixed to one side of the mounting block 530, and a push block 520 is fixed to the outside of the top tube 510. like Figure 8 , Figure 9 As shown, during the insertion of the connector 200 into the socket 110, the push assembly 500 moves synchronously with the connector 200. The push block 520 and the top tube 510 of the push assembly 500 enter the mounting groove 120. During the movement, the push block 520 pushes the spring piece 830, and the spring piece 830 is... Figure 8 The bending state in the middle becomes Figure 9 In the bent state (energy storage state), after the spring piece 830 undergoes bending deformation, the curved surface of the spring piece 830 fits against the arc surface of the guide rail 820 (the guide rail 820 has the function of limiting the spring piece 830 from continuing to bend, avoiding excessive bending of the spring piece 830 and mechanical fatigue, which would prevent it from automatically returning to its original position later). At this time, the jacking tube 510 passes through the spring piece 830 (e.g., Figure 11 As shown, the spring piece 830 has a through hole 8320 in the middle for the top tube 510 to pass through, and passes through the guide rail 820 (as shown). Figure 11 As shown, the guide rail 820 also has a through hole 8220 for the top tube 510 to pass through. The end of the top tube 510 is attached to the magnet 810 and is attracted by the magnet 810 (the top tube 510 is made of iron). It should be noted that a guide block 8310 is fixed on one side wall of the spring 830 near the guide rail 820, and a guide hole 8210 corresponding to the guide block 8310 is opened on the surface of the guide rail 820. Figure 8 The bending state in the middle becomes Figure 9 During the bending process, the guide block 8310 is inserted into the guide hole 8210. Under the combined auxiliary guiding action, the spring piece 830 is more stably attached to the guide rail 820, making the deformation of the spring piece 830 more reliable. To further explain, such as Figure 10 As shown, the top of the spring piece 830 contacts and firmly abuts against the inner wall of the mounting groove 120 of the socket 100, and the bottom of the spring piece 830 is fixedly connected to the top of the support plate 900. During the process of the spring 830 being pushed by the pusher block 520, the spring 830 wants to move from... Figure 8 The bending state in the middle becomes Figure 9 In the bending state, the spring piece 830 needs to press downward against the support plate 900 when under force, so that the spring piece 830 has a process of instantaneously straightening and then bending. That is to say, when the push block 520 is continuously pushed, the spring piece 830 changes from a vertical state to a bent state. Figure 9 andFigure 10 (The bending state shown).

[0026] In this invention, after the insertion tube 210 of the connector 200 is fully inserted into the socket 110 of the socket 100, the network cable connector 400 and the network cable interface 310 are connected. At the same time, the push assembly 500 is inserted into the mounting slot 120, and the magnetic block 810 of the magnetic ejection assembly 800 attracts the end of the top tube 510 of the push assembly 500. Under the tight fit between the insertion tube 210 and the socket 110 and the attraction of the top tube 510 by the magnetic block 810, the network cable connector 400 is more stable. The network cable connector 400 will not move relative to the socket 100, and the gold fingers of the network cable connector 400 will not rub against the contacts of the network cable interface 310. This will prevent oxidation and wear accumulation at the contact interface, prevent fretting corrosion, and prevent increased contact resistance and deterioration of electrical performance. This effectively improves the stability of the connection between the network cable and the gateway, making the network system more reliable.

[0027] like Figure 13 As shown, the top of the socket 100 has a rod hole 130 that communicates with the mounting groove 120, and a pressing component 700 is provided above the rod hole 130. Specifically, such as Figure 12 , Figure 14 As shown, the pressing assembly 700 includes a pressure plate 740, with a pressure rod 710 at the bottom of the pressure plate 740. The pressure rod 710 extends downward through the rod hole 130 into the mounting groove 120 and is located on both sides of the guide rail 820. When the pressure plate 740 is pressed downward with a finger, the pressure plate 740 pushes the pressure rod 710, which in turn pushes the support plate 900. The support plate 900 compresses the spring 910, causing the spring piece 830 of the magnetic ejection assembly 800 to be released immediately. During the reset process of the spring piece 830 (from a bent state to a vertical state), the spring piece 830... The elasticity of 0 pushes the top tube 510 of the push component 500 away from the magnet 810 and springs the push component 500 away from the mounting slot 120 of the socket 100. At the same time, the push component 500 drives the insertion tube 210 of the connector 200 to move, and the insertion tube 210 also drives the connector 200 to move as a whole. The connector 200 moves to the outside of the socket hole 110 of the socket 100. At this time, by pulling the threaded tube 230 by hand, the connector 200 and the network cable crystal head 400 can be easily pulled out, achieving the purpose of quickly pulling out the network cable crystal head 400. It should be noted that a guide rod 720 is also fixed at the bottom of the pressure plate 740, and a bent piece 7210 is fixed at the bottom end of the guide rod 720. A slot 140 is provided at the top of the socket 100, and the guide rod 720 can move in the slot 140. When the pressure plate 740 is pressed, the pressure plate 740 pushes the pressure rod 710 and also pushes the guide rod 720 to move downward. The bending piece 7210 is made of metal. When the bending piece 7210 is subjected to downward pressure, it deforms. After the pressure is removed, the bending piece 7210 automatically returns to its original shape. The elasticity pushes the guide rod 720 and the pressure plate 740 upward, which is conducive to the reset of the pressure plate 740.

[0028] During the process of unplugging the network cable RJ45 connector 400, the connection is triggered by manually pressing the pressure plate 740. The pressure plate 740 is susceptible to being pressed at any time and lacks a safety mechanism. If accidentally pressed, the network cable RJ45 connector 400 may become loose. To solve this problem, the present invention provides the following technical solution: like Figure 12 As shown, an anti-accidental touch device 600 is provided above the pressing component 700; like Figure 14 , Figure 15 As shown, in the pressing assembly 700, the top of the pressure plate 740 is also fixed with a boss 730. A second through hole 7320 is provided downward at the center of the top of the boss 730, and a first through hole 7310 is provided on the side of the boss 730 near the second through hole 7320. Specifically, the anti-accidental touch device 600 includes a main shaft 620 inserted in the second through hole 7320, a limit rod 6210 fixed on the outer wall of the main shaft 620, the limit rod 6210 inserted in the first through hole 7310, a swivel cap 610 connected to the top of the main shaft 620, and an elastic reset member 630 fixed in the first through hole 7310. Working principle of the anti-accidental touch device 600: like Figure 13 As shown, a rod groove 160 is also provided at the top of the socket 100, such as... Figure 14 The position of the spindle 620 and the limiting rod 6210 is shown. The limiting rod 6210 is not above the rod groove 160, but by pinching the cap 610 with your fingers and rotating the cap 610, the cap 610 drives the spindle 620 to rotate. The spindle 620 drives the limiting rod 6210 to move in the first through hole 7310. During the movement, the limiting rod 6210 will squeeze the elastic reset member 630 (the elastic reset member 630 can be a spring) until the limiting rod 6210 moves above the rod groove 160 (in the elastic reset member 6310). Under the resistance of 30, after the limiting rod 6210 rotates to above the rod groove 160, the limiting rod 6210 can no longer rotate the cap 610. At this time, the cap 610 is pressed down again, and the cap 610 pushes the main shaft 620 and the limiting rod 6210 to move downward. The limiting rod 6210 is inserted into the rod groove 160. This process causes the pressure plate 740 to be pressed down as well. The pressure plate 740 will push the pressure rod 710 to press down on the support plate 900, thereby achieving the purpose of pressing and triggering the spring 830 to reset, thus popping out the push assembly 500. It should be noted that a limiting groove 150 is also provided at the top of the socket 100. After the main shaft 620 moves downward, the bottom end of the main shaft 620 continues to move into the limiting groove 150. The depth of the limiting groove 150 is sufficient to accommodate the main shaft 620, so as to ensure that the bottom end of the main shaft 620 is not blocked, which is conducive to the smooth downward movement of the entire structure of the pressing component 700 and the anti-accidental touch device 600.

[0029] In this invention, by using the anti-accidental touch device 600, the limiting rod 6210 must first be rotated to align with the rod groove 160 before the entire anti-accidental touch device 600 can be pressed down, thereby pressing the pressure plate 740 of the pressing assembly 700 to perform the pop-out operation; The two-step operation mechanism of rotating first and then pressing effectively prevents network disconnection due to accidental contact, making it particularly suitable for high-vibration or critical communication scenarios, and further ensuring the continuity and stability of the connection system.

[0030] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A connector for connecting network cables in a gateway device, characterized in that: include: A socket (100) is fixed to the outside of the gateway device (300), and the surface of the socket (100) is provided with a socket (110) corresponding to the network cable interface (310). A connector (200) having a cavity for fixing a network cable crystal head (400); A magnetic ejection assembly (800) is disposed in a mounting groove (120) on the front surface of a socket (100); During the process of the push assembly (500) and the plug (200) being inserted horizontally into the socket (110), the push assembly (500) and the plug (200) move synchronously and approach the magnetic ejection assembly (800) until they are tightly attracted by the magnetic structure of the magnetic ejection assembly (800).

2. The connector for connecting network cables in a gateway device according to claim 1, characterized in that: The bottom of the magnetic ejection assembly (800) is provided with a liftable tray (900), and multiple springs (910) are fixed to the bottom of the tray (900).

3. The connector for connecting network cables in a gateway device according to claim 2, characterized in that: The magnetic ejection assembly (800) includes a magnetic block (810) fixed to the top of one end of the tray (900), a guide rail (820) is provided on one side of the magnetic block (810), and a spring piece (830) is fixed on the top of the tray (900) near the guide rail (820).

4. The connector for connecting network cables in a gateway device according to claim 3, characterized in that: A guide block (8310) is fixed to one side wall of the spring piece (830) near the guide rail (820). A guide hole (8210) corresponding to the guide block (8310) is opened on the surface of the guide rail (820). A through hole (8320) is opened in the middle of the spring piece (830). A through hole (8220) corresponding to the through hole (8320) is opened on the surface of the guide rail (820).

5. The connector for connecting network cables in a gateway device according to claim 1, characterized in that: The propulsion assembly (500) includes a mounting block (530) fixed to the top of the connector (200), a top tube (510) fixed to one side of the mounting block (530), and a push block (520) fixed to the outside of the top tube (510).

6. The connector for connecting network cables in a gateway device according to claim 1, characterized in that: The top of the socket (100) is provided with a rod hole (130) communicating with the mounting groove (120). A pressing assembly (700) is provided above the rod hole (130). The pressing assembly (700) includes a pressure plate (740). A pressing rod (710) is provided at the bottom of the pressure plate (740). The end of the pressing rod (710) can extend into the mounting groove (120).

7. The connector for connecting network cables in a gateway device according to claim 6, characterized in that: The top of the pressure plate (740) is provided with a boss (730), a second through hole (7320) is provided in the middle of the boss (730), and a first through hole (7310) is provided on the side of the boss (730) near the second through hole (7320).

8. The connector for connecting network cables in a gateway device according to claim 7, characterized in that: An anti-accidental touch device (600) is provided above the pressure plate (740). The anti-accidental touch device (600) includes a spindle (620) inserted into the second through hole (7320). A limit rod (6210) is fixed to the outer wall of the spindle (620). The limit rod (6210) can slide in the first through hole (7310).

9. The connector for connecting network cables in a gateway device according to claim 8, characterized in that: The top of the socket (100) is provided with a rod groove (160). After the limiting rod (6210) slides above the rod groove (160), it can fall into the rod groove (160).

10. The connector for connecting network cables in a gateway device according to claim 1, characterized in that: The connector (200) includes a tube (210), one end of which is fixed with a connecting tube (220), and one end of the connecting tube (220) is threadedly connected with a threaded tube (230).

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