Wiring device

By designing a separate structure and spring-loaded connection for the wiring device, the process of connecting cables to network ports is simplified, solving the problems of complex operation and tool dependence in existing technologies, and achieving rapid connection and efficient circuit connectivity.

CN121055097APending Publication Date: 2025-12-02CIXI NKS ELECTRONIC CO LTD
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Patent Information

Application Number
CN202511477864.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2025-12-02

AI Technical Summary

Technical Problem

The existing cable and network port connection operation is complicated, requires a variety of special tools, is highly professional, time-consuming, and has insufficient signal stability.

Method used

Design a wiring device including a wiring assembly, a connecting assembly, a wiring frame, and a circuit board. A separate setup and spring-loaded structure enable quick connection of cables to the circuit board, simplifying the operation process and reducing reliance on tools.

Benefits of technology

It enables quick connection between cables and network ports and circuit connectivity, reducing operation time and tool requirements, and improving connection efficiency and signal stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a wiring device, and relates to the technical field of data transmission, and the wiring device comprises a wiring assembly which is used for connecting a cable so as to output an electric signal transmitted by the cable from a network interface; the communication assembly is connected with the wiring assembly and is used for electrically connecting the cable with the wiring assembly so as to transmit an electric signal; the wiring assembly comprises a wiring frame which is connected with the communication assembly and is used for fixedly installing the communication assembly; the circuit board is installed on the wiring frame and connected with the communication assembly to transmit electric signals; the communication assembly comprises a communication body which is detachably connected with the wiring frame; and the communication elastic sheet is mounted on the communication body and is connected with the cable and the circuit board so as to electrically communicate the cable with the circuit board. According to the invention, wiring and circuit connection can be rapidly completed without additional tools.
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Description

Technical Field

[0001] This invention relates to the field of data transmission technology, and in particular to a wiring device. Background Technology

[0002] A reliable connection between cables and network ports is the core foundation for realizing Ethernet communication, monitoring data transmission, and smart home networking. With the increasing demand for gigabit and higher speed data transmission, the market has placed higher demands on the convenience, reliability, maintenance efficiency, and signal stability of cable and network port connections.

[0003] The connection between existing cables and network ports requires several complex steps: First, the outer insulation of the cable must be stripped with a wire stripper to avoid damaging the eight twisted pairs inside; then, the cables must be manually arranged according to standards to ensure that the order of the wire bundle is correct; finally, the wire bundle must be fixed to the conductive contacts of the RJ45 connector or network port module with crimping pliers or a punch-down knife, and the pressure must be even to avoid poor contact.

[0004] The above connection process requires a high level of professionalism from the operators, and also requires carrying multiple sets of specialized tools such as wire strippers, crimping pliers, and punching knives, which is inconvenient to operate and greatly increases the time and cost of wiring and debugging. Summary of the Invention

[0005] To simplify the connection operation between cables and network ports and improve the connection efficiency, this invention provides a wiring device.

[0006] The present invention provides a wiring device, which adopts the following technical solution: A wiring device, comprising: Wiring assembly, used to connect cables to output the electrical signals they transmit from the network interface; A connecting component, connected to the wiring component and used to electrically connect a cable to the wiring component to transmit an electrical signal; The wiring assembly includes: A wiring frame, connected to the connecting component, is used for the fixed installation of the connecting component; A circuit board, mounted on a wiring frame and connected to the communication component to transmit electrical signals; The connectivity component includes: The main body is detachably connected to the wiring frame; A connecting spring is mounted on the connecting body and connected to the cable and the circuit board to electrically connect the two.

[0007] By adopting the above technical solution, the cable is inserted into the connecting body to complete the electrical connection with the connecting spring, and then the connecting body and the connecting spring are inserted into the wiring frame to complete the electrical connection between the connecting spring and the circuit board. At the same time, the separate setting of the connecting component and the wiring component facilitates the wiring operation, thereby realizing fast wiring and circuit connection, reducing operation time and improving efficiency.

[0008] Optionally, the wiring frame is provided with a mounting slot and a network port. The two ends of the circuit board are located in the mounting slot and the network port, respectively. The end of the circuit board located in the mounting slot is provided with a contact point for engaging with the connecting spring to transmit electrical signals.

[0009] By adopting the above technical solution, the mounting slot and the network port facilitate the fixed installation of the connecting components and the network cable, respectively. When the connecting spring is inserted into the wiring frame along with the connecting body, the connecting spring and the contact are made to abut against each other, and then the two are electrically connected through the circuit board, realizing the rapid connection of the circuit.

[0010] Optionally, the connected body includes: The mounting bracket is installed in the mounting slot for connecting and securing cables. A wire guide is rotatably mounted on the side of the mounting base near the mounting groove and is used to install the connecting spring. The wire guide is located in the mounting groove and abuts against the wiring frame. The mounting structure is mounted on the mounting base and is used to lock the mounting base to the wiring frame. A locking structure is mounted on the mounting base and is used to lock the threading connector to the mounting base.

[0011] By adopting the above technical solution, the cable is inserted into the mounting base, the cable guide is rotated and fixed to the mounting base through the locking structure, and at the same time, the cable guide drives the connecting spring to pierce the insulation layer of the wire harness and insert into the conductor of the wire harness to achieve electrical connection. Then, the connecting component is inserted into the mounting slot and fixed to the wiring frame through the mounting structure. At the same time, the cable guide drives the connecting spring to abut against the contact point to achieve circuit connection. The rotation setting of the cable guide and the connecting spring relative to the mounting base realizes the rapid connection of the cable without the need for additional tools and wire stripping operations.

[0012] Optionally, the mounting base is provided with a cable management table on the side facing the cable threading base for separating and placing multiple wire bundles in the cable; The cable management table is provided with multiple cable slots for placing cable bundles so that the cable bundles can be connected to the connecting springs respectively. The mounting base and the cable management table are provided with a through-hole for the cable to pass through and be fixed in the cable placement slot.

[0013] By adopting the above technical solution, the cable is inserted into the mounting base through the cable inlet slot and extends to the cable management table. The cable is then separated into multiple bundles. The cable management table and cable slot can be used to pre-separate and fix the multiple bundles of the cable, which facilitates the precise insertion of the bundles by the connecting springs to achieve rapid wiring.

[0014] Optionally, the wire threading socket has a slot on the side away from the mounting base for accommodating and mounting the connecting spring and for inserting the circuit board; The cable threading base has a receiving groove on the side near the mounting base, and is used to engage with the cable management table.

[0015] By adopting the above technical solution, when the wire guide rotates toward the mounting base, the receiving groove is used to cooperate with the wire management table of the mounting base. At the same time, the cooperation between the wire management table and the receiving groove enables the mounting base and the wire guide to be fixed relatively accurately, which improves the insertion accuracy of the connecting spring and the wire harness.

[0016] Optionally, the mounting structure includes: A deformation plate is mounted on the mounting base and deforms during the assembly and disassembly of the mounting base and the wiring frame. The first locking block is installed on the deformation plate and is used to engage and fix it to the wiring frame; The mounting base has a clearance groove on one side where the deformation plate is located, which provides sufficient clearance space when the deformation plate deforms. The side wall of the mounting groove is provided with a snap-fit ​​hole for engaging with the first snap-fit ​​block to fix the mounting base to the wiring frame.

[0017] By adopting the above technical solution, the mounting base is inserted into the mounting slot, the deformation plate deforms and drives the first locking block to slide along the inner wall of the wiring frame. When the first locking block moves to the locking hole, the deformation plate pushes the first locking block into the locking hole. When disassembling, the deformation plate is pushed to make the first locking block disengage from the locking hole and pull the mounting base away from the mounting slot, thus achieving quick disassembly and assembly without the need for additional tools.

[0018] Optionally, the locking structure includes: A limiting plate is installed on the side of the mounting base facing the wire threading base and is used to engage with the wire threading base to fix the mounting base and the wire threading base. The threading seat has a snap-fit ​​groove on the side near the limiting plate and is used to engage with the limiting plate.

[0019] By adopting the above technical solution, the wire guide is rotated to make the limiting plate contact the snap-fit ​​groove. When the wire guide is fully snapped into the receiving groove, the wire guide drives the connecting spring to pierce the insulation layer of the wire harness and insert into the conductor of the wire harness. At the same time, the limiting plate and the wire guide are snapped and fixed, realizing the rapid connection between the connecting spring and the wire harness without the need for additional tools.

[0020] Optionally, the number of wire harnesses in the corresponding cable for the connecting spring is set to multiple, including: The deformable section is bent and disposed in the insertion slot and always has a deformation tendency. The deformable section abuts against the circuit board inserted in the insertion slot, thereby electrically connecting with the contact to realize the transmission of electrical signals. The insertion segment, connected to the deformed segment and extending through the wire guide to the space between the mounting base and the wire guide, is used to pierce the insulation layer of the wire harness in the wire placement groove and insert into the conductor of the wire harness to complete the electrical connection.

[0021] By adopting the above technical solution, while the cable holder rotates and the mounting base is fixed, the insertion segment of the connecting spring is inserted into the conductor of the wire harness and electrically connected. At the same time as the connecting component is inserted into the mounting slot, the circuit board is inserted into the insertion slot and abuts against the deformed segment of the connecting spring. The contact is electrically connected to the connecting spring, thus realizing the circuit connection from the cable to the circuit board during the fixed installation process. The operation is simple and convenient.

[0022] Optionally, the connecting spring also includes: The second locking block is installed on the plug segment to engage with the wire threading socket to fix the plug segment to the wire threading socket.

[0023] By adopting the above technical solution, the connecting spring is inserted into the slot of the insert plate, and the second locking block engages with the wire threading seat to fix the connecting spring.

[0024] Optionally, the wiring frame is provided with an auxiliary component installed on one side of the network port, and a first mounting hole and a second mounting hole are correspondingly opened on the wiring frame; The auxiliary component is located on the side of the wiring frame where the network port is provided and includes a dust cover and a label cover; The dust cover includes: The mounting section has a third locking block integrally provided on one side facing the wiring frame. The third locking block is inserted into the first mounting hole and is used to fix the mounting section to the wiring frame. A dustproof section is integrally set on the installation section to cover the network port to block dust and foreign objects. A support plate is integrally set on one side facing the wiring frame. The support plate is inserted into the network port for limiting support. The dust cover is made of elastic material, and the dustproof section can be bent relative to the mounting section to expose or cover the mesh opening; The label cover is located below the mesh opening and is made of transparent material, used to place labels to identify and distinguish different mesh openings; The label cover has a fourth locking block integrally provided on the side facing the wiring frame. The fourth locking block is inserted into the second mounting hole to fix the label cover to the wiring frame.

[0025] By adopting the above technical solution, the third card block is inserted and fixed with the first mounting hole facing it. At this time, the dustproof section covers the mesh opening to block dust and foreign objects. The labels corresponding to different mesh openings are placed inside the label cover and the fourth card block is inserted and fixed with the second mounting hole facing it. At this time, the labels correspond to the mesh openings respectively so that the staff can quickly identify them.

[0026] In summary, the present invention has at least one of the following beneficial technical effects: 1. Insert the cable into the connecting body to complete the electrical connection with the connecting spring, and then insert the connecting body and the connecting spring into the wiring frame to complete the electrical connection between the connecting spring and the circuit board. At the same time, the separate design of the connecting component and the wiring component facilitates the wiring operation, thereby achieving quick wiring and circuit connection, reducing operation time and improving efficiency. 2. Insert the cable into the mounting base, rotate the cable guide and lock it in place. Simultaneously, the cable guide causes the connecting spring to insert into the conductor of the cable bundle, establishing an electrical connection. Then, insert the connecting component into the mounting slot and secure it to the wiring frame via the mounting structure. The cable guide then causes the connecting spring to contact the contacts, establishing a circuit connection. The rotation of the cable guide and connecting spring relative to the mounting base enables rapid cable connection without the need for additional tools or wire stripping. 3. Insert the mounting base into the mounting slot. The deformation plate deforms and causes the first locking block to slide along the inner wall of the wiring frame. When the first locking block moves to the locking hole, the deformation plate pushes the first locking block into the locking hole. When disassembling, push the deformation plate to make the first locking block disengage from the locking hole and pull the mounting base away from the mounting slot. Rotate the wire guide to make the limiting plate contact the locking slot. When the wire guide is fully inserted into the receiving slot, the wire guide causes the connecting spring to insert into the conductor of the wire harness. At the same time, the limiting plate and the wire guide are locked together. Quick disassembly and wiring operations are achieved without the need for additional tools. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of a wiring device according to this application; Figure 2 This is a partial structural diagram of a wiring device according to this application. Figure 1 ; Figure 3This is a partial structural diagram of a wiring device according to this application. Figure 2 ; Figure 4 This is a partial structural diagram of a wiring device according to this application. Figure 3 ; Figure 5 This is a cross-sectional view of a wiring device according to this application; Figure 6 This is a cross-sectional view of the connecting component of a wiring device according to this application; Figure 7 This is a partial structural diagram of a wiring device according to this application. Figure 4 .

[0028] The parts referred to by the numbers in the above attached diagrams are as follows: 1. Wiring assembly; 11. Wiring frame; 12. Circuit board; 121. Contact; 13. Mounting slot; 14. Network port; 15. Snap-fit ​​hole; 16. First mounting hole; 17. Second mounting hole; 2. Connecting assembly; 21. Connecting body; 211. Mounting base; 2111. Cable inlet slot; 2112. Cable management table; 2113. Cable placement slot; 2114. Clearance slot; 212. Cable guide; 2121. Insertion slot ; 2122, Receiving slot; 2123, Snap-fit ​​slot; 213, Mounting structure; 2131, Deformation plate; 2132, First snap-fit ​​block; 214, Locking structure; 2141, Limiting plate; 22, Connecting spring; 221, Deformation section; 222, Insertion section; 223, Second snap-fit ​​block; 3, Auxiliary components; 31, Dust cover; 311, Mounting section; 3111, Third snap-fit ​​block; 312, Dustproof section; 3121, Support plate; 32, Label cover; 321, Fourth snap-fit ​​block. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.

[0030] This invention discloses a wiring device.

[0031] Reference Figure 1 , Figure 2 and Figure 3 A wiring device includes a wiring assembly 1 and a communication assembly 2.

[0032] The wiring assembly 1 includes a wiring frame 11 and a circuit board 12.

[0033] The wiring frame 11 has multiple mounting slots 13 on one side for accommodating mounting bases 211, and multiple network ports 14 on the other side corresponding to the mounting slots 13 for connecting network cable connectors.

[0034] The mounting groove 13 has snap-fit ​​holes 15 on both sides of its sidewalls for snap-fitting and fixing with the first snap-fit ​​block 2132.

[0035] The circuit board 12 is provided with multiple contacts 121 for engaging with the deformable section 221 of the connecting spring 22 to transmit electrical signals.

[0036] The circuit board 12 is fixedly mounted on the wiring frame 11 and extends through the mounting groove 13 and the inside of the network port 14. The contact 121 is located on the circuit board 12 in the mounting groove 13.

[0037] With the above structure, the cable is inserted into the mounting base 211, and then the mounting base 211 is inserted into the mounting slot 13 of the wiring frame 11. The cable is electrically connected to the contact 121 on the circuit board 12, thereby outputting the electrical signal in the cable through the network port 14. The separate design of the mounting base 211 and the wiring frame 11 makes it easy for the cable to be disassembled and replaced without being directly connected to the circuit board 12.

[0038] Reference Figure 3 and Figure 4 The connecting component 2 includes a connecting body 21 and a connecting spring 22.

[0039] The connecting body 21 includes a mounting base 211, a wire threading base 212, a mounting structure 213, and a locking structure 214.

[0040] The mounting base 211 is provided with a cable management table 2112 on the side facing the cable threading base 212. The cable management table 2112 has eight cable placement slots 2113, which are used to fix the eight wire bundles in the cable respectively so as to facilitate the connection between the connecting spring 22 and the wire bundle.

[0041] The mounting base 211 and the cable management table 2112 have through-cut cable inlet slots 2111 for one end of the cable to pass through and move to the cable placement slot 2113 position.

[0042] The mounting base 211 has clearance grooves 2114 on both sides to provide sufficient clearance space when the deformation plate 2131 deforms.

[0043] The wire threading base 212 is located on the side of the mounting base 211 near the mounting groove 13 and one end is rotatably connected to the mounting base 211. The other end of the wire threading base 212 is provided with a snap-fit ​​groove 2123, which is used to engage with the limiting plate 2141 to fix the wire threading base 212 to the mounting base 211. One side of the snap-fit ​​groove 2123 is set as an inclined surface.

[0044] The wire guide 212 has a slot 2121 on the side away from the mounting base 211, which is used to accommodate the mounting contact spring 22 and for the circuit board 12 to be inserted. The contact spring 22 is fixedly installed in the slot 2121 and abuts against the contact 121 after the circuit board 12 is inserted.

[0045] The cable guide 212 has a receiving groove 2122 on the side near the mounting base 211, which is used to engage with the cable management table 2112 to increase the docking accuracy between the mounting base 211 and the cable guide 212.

[0046] With the above structure, the cable is passed through the inlet slot 2111 and separated into eight wire bundles. The eight wire bundles are placed in the placement slot 2113 respectively. The wire guide 212 is rotated so that the wire management table 2112 is inserted into the receiving slot 2122. At this time, the connecting spring 22 pierces the insulation layer of the wire bundle and inserts into the conductor of the wire bundle to complete the electrical connection. Then, the mounting base 211 and the wire guide 212 are inserted into the mounting slot 13. At this time, the connecting spring 22 is electrically connected to the contact 121 of the circuit board 12, realizing the rapid connection from the cable to the connecting spring 22 and then to the circuit board 12. There is no need to strip and connect the wire bundles, which reduces the installation and maintenance time. At the same time, the mounting base 211 and the wire guide 212 provide a fully enclosed installation of the wire bundle, reducing signal loss and interference, making the wire management clearer and more beautiful, and facilitating maintenance and troubleshooting.

[0047] Reference Figure 4 The mounting structure 213 is symmetrically arranged on both sides of the mounting base 211, and includes a deformation plate 2131 and a first locking block 2132.

[0048] One end of the deformation plate 2131 is fixedly connected to the mounting base 211 and located in the clearance groove 2114. The deformation plate 2131 is used to deform during the disassembly and assembly of the mounting base 211 and the wiring frame 11 to facilitate disassembly and assembly.

[0049] The first locking block 2132 is fixedly installed on the side of the deformation plate 2131 away from the mounting base 211 and is used to engage with the locking hole 15 to fix the mounting base 211 to the wiring frame 11.

[0050] The locking structure 214 includes a limiting plate 2141 and is fixedly installed on the side of the mounting base 211 facing the wire threading base 212. The limiting plate 2141 is away from the rotating end of the mounting base 211 and the wire threading base 212. The limiting plate 2141 has deformation capability and has a protrusion at its end.

[0051] Through the above structure, rotating the threading seat 212 causes the protrusion of the limiting plate 2141 to contact the inclined surface of the locking groove 2123, causing the limiting plate 2141 to deform. Continuing to rotate the threading seat 212 causes the cable management table 2112 to engage with the receiving groove 2122. At this time, the deformation of the limiting plate 2141 causes the protrusion to engage with the locking groove 2123, thus fixing the mounting base 211 and the threading seat 212. Then, the mounting base 211 and the threading seat 212 are pushed into the mounting groove 13, and the first locking block... 2132 abuts against the wiring frame 11 and causes the deformation plate 2131 to deform in the clearance groove 2114. When the mounting base 211 and the wire guide 212 are fully inserted into the mounting groove 13, the wire guide 212 abuts against the wiring frame 11, and the first locking block 2132 engages with the locking hole 15 to fix the mounting base 211 to the wiring frame 11. With the installation structure 213 and the locking structure 214, no additional parts are needed, and the assembly and disassembly can be completed directly and quickly.

[0052] Reference Figure 5 and Figure 6 The connecting spring 22 is located inside the wire threading base 212 and there are two sets of them symmetrically arranged. Each set of connecting springs 22 contains four pieces. The connecting springs 22 correspond one-to-one with the wire placement slots 2113. The connecting spring 22 includes a deformation section 221, a wire insertion section 222, and a second locking block 223, and the three are arranged as a whole.

[0053] The deformable segment 221 is bent and disposed in the insertion slot 2121 and always has a deformation tendency. The deformable segment 221 abuts against the circuit board 12 inserted in the insertion slot 2121, thereby electrically connecting with the contact 121 to realize the transmission of electrical signals.

[0054] The insertion segment 222 is fixedly connected to the deformation segment 221 and extends through the wire guide 212 to the space between the mounting base 211 and the wire guide 212. The end of the insertion segment 222 is provided with an opening to facilitate piercing the wire harness along with the wire guide 212.

[0055] The second locking block 223 is installed on the plug segment 222 to engage with the wire threading socket 212 to fix the plug segment 222 and the wire threading socket 212.

[0056] With the above structure, during the rotation of the wire guide 212, the insertion segment 222 moves with the wire guide 212 to the insertion slot 2113, thereby piercing the insulation layer of the wire harness in the slot 2113 and inserting the conductor of the wire harness to achieve electrical connection. As the mounting base 211 and the wire guide 212 move and are inserted into the mounting slot 13, the circuit board 12 is simultaneously inserted between the two sets of connecting springs 22. The deformation segment 221 deforms and always abuts against the contact 121 on the circuit board 12 to complete the electrical connection. Through the setting of the deformation segment 221 and the insertion segment 222, they can quickly and directly contact the circuit board 12 and the cable respectively, thereby completing the circuit connection. The installation is flexible and simple, the later maintenance and upgrade efficiency is high, and the downtime is reduced.

[0057] Reference Figure 7 The wiring frame 11 is provided with a network port 14 and an auxiliary component 3 is installed on one side. A plurality of first mounting holes 16 and a plurality of second mounting holes 17 are correspondingly opened on the wiring frame 11.

[0058] Multiple auxiliary components 3 are provided, and each auxiliary component 3 corresponds to multiple network ports 14. The auxiliary component 3 includes a dust cover 31 and a label cover 32.

[0059] The dust cover 31 includes an installation section 311 and multiple dust-proof sections 312.

[0060] The mounting section 311 has multiple third locking blocks 3111 integrally provided on the side facing the wiring frame 11 for inserting into the first mounting hole 16 to fix the mounting section 311 to the wiring frame 11.

[0061] Multiple dustproof sections 312 are integrated on the upper part of the installation section 311 to cover the network port 14 to block dust and foreign objects. Two support plates 3121 are integrated on the side of the dustproof section 312 facing the wiring frame 11 for inserting into the network port 14 for limiting support.

[0062] The dust cover 31 is made of elastic rubber. When the mounting section 311 is inserted into the first mounting hole 16 through the third locking block 3111 for fixing, the dust cover section 312 can be bent to expose the mesh opening 14 for use without disassembling the entire dust cover 31.

[0063] The label cover 32 is semi-circular and located below the mesh port 14. Multiple fourth clips 321 are integrally provided on the side of the label cover 32 facing the wiring frame 11 for inserting into the second mounting hole 17 to fix the label cover 32 to the wiring frame 11.

[0064] The label cover 32 is made of transparent material. When the label cover 32 is fixed to the wiring frame 11, a gap is formed between the two. Labels are placed in the gap to identify and distinguish different network ports 14, making it easy for staff to quickly identify the function of different network ports 14.

[0065] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. A wiring device, characterized in that, include: Wiring assembly (1) is used to connect cables to output the electrical signals they transmit from the network interface; A connecting component (2) is connected to the wiring component (1) and is used to electrically connect a cable to the wiring component (1) to transmit an electrical signal; The wiring assembly (1) includes: The wiring frame (11) is connected to the connecting component (2) for fixing and installing the connecting component (2); A circuit board (12) is mounted on a wiring frame (11) and connected to the communication component (2) to transmit electrical signals; The connectivity component (2) includes: The connecting body (21) is detachably connected to the wiring frame (11); A connecting spring (22) is mounted on the connecting body (21) and connected to the cable and the circuit board (12) to electrically connect the two.

2. The wiring device according to claim 1, characterized in that, The wiring frame (11) is provided with a mounting slot (13) and a network port (14). The two ends of the circuit board (12) are located in the mounting slot (13) and the network port (14) respectively. The circuit board (12) is provided with a contact (121) at one end of the mounting slot (13) and is used to cooperate with the connecting spring (22) to abut and transmit electrical signals.

3. A wiring device according to claim 2, characterized in that, The connected body (21) includes: Mounting bracket (211) is installed in the mounting slot (13) for connecting and fixing cables; A wire threading bracket (212) is rotatably mounted on the side of the mounting base (211) near the mounting groove (13) and is used to install the connecting spring (22). The wire threading bracket (212) is located in the mounting groove (13) and abuts against the wiring frame (11). Mounting structure (213) is mounted on the mounting base (211) and is used to lock the mounting base (211) to the wiring frame (11); A locking structure (214) is mounted on the mounting base (211) and is used to lock the threading seat (212) to the mounting base (211).

4. A wiring device according to claim 3, characterized in that, The mounting base (211) is provided with a cable management table (2112) on the side facing the cable threading base (212) for separating and placing multiple wire bundles in the cable. The cable management table (2112) is provided with multiple cable placement slots (2113) for placing cable bundles to connect the cable bundles to the connecting springs (22) respectively. The mounting base (211) and the cable management table (2112) are provided with a through-hole (2111) for the cable to pass through and be fixed in the cable placement groove (2113).

5. A wiring device according to claim 4, characterized in that, The wire threading base (212) has a slot (2121) on the side away from the mounting base (211) for accommodating the connecting spring (22) and for the circuit board (12) to be inserted. The cable threading base (212) has a receiving groove (2122) on the side near the mounting base (211) and is used to engage with the cable management table (2112).

6. A wiring device according to claim 3, characterized in that, The mounting structure (213) includes: The deformation plate (2131) is mounted on the mounting base (211) and deforms during the assembly and disassembly of the mounting base (211) and the wiring frame (11); The first locking block (2132) is installed on the deformation plate (2131) and is used to lock and fix it to the wiring frame (11); The mounting base (211) has a clearance groove (2114) on one side where the deformation plate (2131) is located, which is used to provide sufficient clearance space when the deformation plate (2131) deforms; The side wall of the mounting groove (13) is provided with a snap-fit ​​hole (15) for engaging with the first snap-fit ​​block (2132) to fix the mounting base (211) to the wiring frame (11).

7. A wiring device according to claim 3, characterized in that, The locking structure (214) includes: A limiting plate (2141) is installed on the side of the mounting base (211) facing the threading seat (212) and is used to engage with the threading seat (212) to fix the mounting base (211) and the threading seat (212); The threading seat (212) has a snap-fit ​​groove (2123) on the side near the limiting plate (2141) and is used to engage with the limiting plate (2141).

8. A wiring device according to claim 5, characterized in that, The number of wire harnesses in the corresponding cable is set to multiple for the connecting spring (22), including: The deformation segment (221) is bent and disposed in the insertion slot (2121) and always has a deformation tendency. The deformation segment (221) abuts against the circuit board (12) inserted in the insertion slot (2121), thereby electrically connecting with the contact (121) to realize the transmission of electrical signals. The insertion segment (222), connected to the deformed segment (221) and extending through the wire guide (212) to the space between the mounting base (211) and the wire guide (212), is used to pierce the insulation layer of the wire harness in the wire placement groove (2113) and insert into the conductor of the wire harness to complete the electrical connection.

9. A wiring device according to claim 8, characterized in that, The connecting spring (22) also includes: The second locking block (223) is installed on the plug segment (222) for engaging with the threading seat (212) to fix the plug segment (222) and the threading seat (212).

10. A wiring device according to claim 1, characterized in that, The wiring frame (11) is provided with an auxiliary component (3) installed on one side of the network port (14), and a first mounting hole (16) and a second mounting hole (17) are correspondingly opened on the wiring frame (11). The auxiliary component (3) includes a dust cover (31) and a label cover (32); The dust cover (31) includes: The mounting section (311) has a third locking block (3111) integrally provided on one side facing the wiring frame (11). The third locking block (3111) is inserted into the first mounting hole (16) and is used to fix the mounting section (311) to the wiring frame (11). The dustproof section (312) is integrally set on the installation section (311) to cover the network port (14) to block dust and foreign objects. A support plate (3121) is integrally set on the side facing the wiring frame (11). The support plate (3121) is inserted into the network port (14) for limiting support. The dust cover (31) is made of elastic material, and the dust section (312) can be bent relative to the mounting section (311) to expose or cover the mesh opening (14). The label cover (32) is located below the mesh opening (14) and is made of transparent material. It is used to place labels to identify and distinguish different mesh openings. The label cover (32) is integrally provided with a fourth locking block (321) on the side facing the wiring frame (11). The fourth locking block (321) is inserted into the second mounting hole (17) to fix the label cover (32) to the wiring frame (11).