Network wiring box

The modular design of the network cabling box solves the problems of low modularity and high design cost, making it easy to disassemble and reuse, improving space utilization and heat dissipation, and reducing design costs.

CN223843401UActive Publication Date: 2026-01-27ZHONGCHENG TIMES CO LTD
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Patent Information

Application Number
CN202520122356.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-01-27
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing network cabling boxes have low modularity, insufficient applicability, low reusability, are not easy to modularly disassemble and assemble, and have high design costs.

Method used

The modular design of the opening and closing heat dissipation door panel, protective side panel, cable guide partition, cable bottom plate, transmission top plate, perforated back plate and cable clip provides multiple installation methods, facilitates reuse, reduces design costs, and is easy to disassemble and use.

Benefits of technology

It enables easy modular assembly and disassembly, improves space utilization, provides heat dissipation and protection functions, reduces the difficulty of layout in limited spaces, facilitates recycling and reuse, and reduces design costs.

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Abstract

The utility model relates to the field of network layout auxiliary equipment, and provides a network wiring box, which comprises an opening and closing heat dissipation door plate, two groups of protection side plates, a threading partition plate, a wire passing bottom plate, a transmission top plate, a hole back plate and a wire clamp, and is characterized in that the two groups of protection side plates are symmetrically arranged on the upper side of the wire passing bottom plate; the threading partition plate is arranged between the two sets of protection side plates in a sliding mode, the upper sides of the two sets of protection side plates are fixedly connected with the transmission top plate, the threading bottom plate and the front side of the transmission top plate are hinged to the opening and closing heat dissipation door plate, and the rear sides of the two sets of protection side plates are fixedly connected with the hole back plate. The utility model is convenient for reuse, reduces the design cost, is convenient for assembly, disassembly and use, reduces the arrangement difficulty in a limited space, and has certain heat dissipation and noise reduction effects at the same time.
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Description

Technical Field

[0001] This utility model relates to the field of network deployment auxiliary equipment, and in particular to a network cabling box. Background Technology

[0002] A network cabling box, also known as a network patch panel, low-voltage box, or structured cabling box, is a device used to manage and centrally connect various cables in a computer network system. It is an important component of a building's internal communication and network cabling system, typically installed inside a wall or in a location easily managed and maintained. The primary purpose of a network cabling box is to house routers, making the routers and their connecting cables appear more organized.

[0003] As disclosed in application number CN202220510747.1, a network cabling box includes a cabling box body, a fixing plate installed inside the cabling box body, a box cover hinged to one side of the cabling box body, and a plurality of ventilation holes evenly spaced at the lower end of the box cover. A heat-conducting copper pipe is installed inside each ventilation hole. A rotating shaft passing through all the heat-conducting copper pipes is installed between the first extension hole and the first extension hole via a bearing. A circular gate plate installed on the rotating shaft is provided inside each heat-conducting copper pipe. The diameter of the circular gate plate is the same as the diameter of the heat-conducting copper pipe. The front side wall of the box cover has a slot that is the same as the first extension hole.

[0004] However, existing network cabling boxes have low modularity, insufficient applicability, low reusability, are not easy to modularly disassemble and assemble, and have high design costs. Utility Model Content

[0005] To address the problems of low modularity, insufficient applicability, low reusability, inconvenience in modular assembly and disassembly, and high design costs of existing network cabling boxes, this utility model provides a network cabling box to solve these problems.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A network cabling box includes: a hinged heat dissipation door panel, protective side panels, a cable guide partition, a cable pass-through bottom plate, a transmission top plate, a perforated back plate, and cable clips. Two sets of protective side panels are symmetrically arranged on the upper side of the cable pass-through bottom plate. The cable guide partition is slidably disposed between the two sets of protective side panels. The upper side of the two sets of protective side panels is fixedly connected to the transmission top plate. The front sides of the cable pass-through bottom plate and the transmission top plate are hinged to the hinged heat dissipation door panel. The rear sides of the two sets of protective side panels are fixedly connected to the perforated back plate. Multiple sets of cable clips are arranged on the perforated back plate.

[0008] Preferably, the wire-threading partition is provided with a wire-threading hole, and both ends of the wire-threading partition are slidably connected to two sets of protective side plates respectively. A first magnet is provided on the rear side of the wire-threading partition, and the wire-threading partition is connected to the hole back plate through the first magnet.

[0009] Preferably, the protective side panel includes: a protective side panel body and a wall connecting plate. Two sets of wall connecting plates are provided, and the two sets of wall connecting plates are symmetrically arranged in the corner grooves opened on the rear side of the protective side panel body. The protective side panel body is slidably connected to the wire-passing partition. A central groove is provided in the middle of the rear side of the protective side panel body. The protective side panel body is fixedly connected to the hole back plate through the central groove.

[0010] Preferably, multiple sets of sliding grooves are arranged parallel to each other on the inner side of the protective side plate body, and the wire-passing partition is slidably connected to the sliding grooves.

[0011] Preferably, a magnetic strip is provided on the front side of the perforated back panel, the magnetic strip is magnetically connected to the first magnet, the two sides of the perforated back panel are fixedly connected to the central groove, multiple sets of through holes are arranged in an array on the perforated back panel, the wire clip is engaged with the through holes, and a slot for the wire clip is provided on the rear side of the perforated back panel.

[0012] Preferably, the wire clip includes: a limiting part, an elastic connecting part, and a bundling part, wherein the limiting part, the elastic connecting part, and the bundling part are an integral structure, the limiting part is connected to the bundling part through the elastic connecting part, the limiting part and the elastic connecting part are engaged with the through hole, and the bundling part is used to organize the lead wires.

[0013] Preferably, the opening and closing heat dissipation door panel includes: heat dissipation grille, handle, embedded magnet and planter. The opening and closing heat dissipation door panel is provided with heat dissipation grille and handle on the front side, and planter is provided on the lower side of handle. The embedded magnet is provided on the side of the opening and closing heat dissipation door panel near another set of opening and closing heat dissipation door panels, and the embedded magnets of the two sets of opening and closing heat dissipation door panels are magnetically connected.

[0014] Preferably, the wire guide plate includes: wire guide holes and weight reduction grids, wherein multiple sets of wire guide holes are provided, and weight reduction grids are provided between adjacent wire guide holes.

[0015] Preferably, the transmission top plate is provided with a signal antenna slot.

[0016] The advantages of this utility model are as follows: This utility model adopts a modular design with an openable heat dissipation door, protective side panel, wiring partition, wiring bottom plate, transmission top plate, perforated back plate, and wire clips, which are suitable for multiple installation methods, facilitate reuse, reduce design costs, and facilitate disassembly and use. The openable heat dissipation door provides a certain heat dissipation and protection function. The wiring partition improves the space utilization rate inside the wiring box. The wiring bottom plate and transmission top plate facilitate the installation of leads and antennas, reducing the difficulty of layout in a limited space. The perforated back plate facilitates the installation of electronic components and has a certain heat dissipation and noise reduction effect, which is conducive to recycling and reuse. The wire clips facilitate the organization of wire harnesses. Attached Figure Description

[0017] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the structure of the wire-threading partition of this utility model;

[0020] Figure 3 This is a schematic diagram of the structure of the protective side plate of this utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the protective side plate body of this utility model;

[0022] Figure 5 This is a structural schematic diagram of the perforated back panel at angle one of this utility model;

[0023] Figure 6 This is a structural schematic diagram of the perforated back panel at angle two of this utility model;

[0024] Figure 7 This is a schematic diagram of the structure of the line clip of this utility model;

[0025] Figure 8 This is a schematic diagram of the structure of the opening and closing heat dissipation door panel of this utility model;

[0026] Figure 9 This is a schematic diagram of the structure of the wire guide plate of this utility model;

[0027] Figure 10 This is a schematic diagram of the structure of the transmission top plate of this utility model.

[0028] Explanation of reference numerals in the attached figures:

[0029] 1. Opening and closing heat dissipation door panel; 2. Protective side panel; 3. Wiring partition; 4. Wiring bottom plate; 5. Transmission top plate; 6. Perforated back panel; 7. Cable clip; 31. Wiring hole; 32. First magnet; 21. Protective side panel body; 22. Wall connecting plate; 211. Corner groove; 212. Central groove; 213. Multiple sliding grooves; 61. Magnetic strip; 62. Through hole; 63. Clearance groove; 71. Limiting part; 72. Elastic connection part; 73. Bundling part; 11. Heat dissipation grille; 12. Handle; 13. Embedded magnet; 14. Planting pot; 41. Wiring hole; 42. Weight reduction grille; 51. Signal antenna clearance groove. Detailed Implementation

[0030] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0031] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0032] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0033] Example 1, combined with Figure 1 Explanation:

[0034] A network cabling box includes: a hinged heat dissipation door panel 1, protective side panels 2, cable guide partitions 3, cable pass-through bottom plates 4, transmission top plates 5, perforated back plates 6, and cable clips 7. The protective side panels 2 are provided in two sets, which are symmetrically arranged on the upper side of the cable pass-through bottom plates 4. The cable guide partitions 3 are slidably arranged between the two sets of protective side panels 2. The upper sides of the two sets of protective side panels 2 are fixedly connected to the transmission top plates 5. The front sides of the cable pass-through bottom plates 4 and the transmission top plates 5 are hingedly connected to the hinged heat dissipation door panel 1. The rear sides of the two sets of protective side panels 2 are fixedly connected to the perforated back plates 6. Multiple sets of cable clips 7 are provided and arranged on the perforated back plates 6.

[0035] The modular design, featuring a hinged heat dissipation door 1, protective side panel 2, wiring partition 3, wiring base plate 4, transmission top plate 5, perforated back plate 6, and cable clips 7, allows for various installation methods, facilitates reuse, reduces design costs, and is easy to disassemble and use. The hinged heat dissipation door 1 provides certain heat dissipation and protection functions. The wiring partition 3 improves the space utilization within the wiring box. The wiring base plate 4 and transmission top plate 5 facilitate the installation of leads and antennas, reducing the difficulty of layout in limited spaces. The perforated back plate 6 facilitates the installation of electronic components and provides certain heat dissipation and noise reduction effects, making it easy to recycle and reuse. The cable clips 7 facilitate the organization of wire harnesses.

[0036] Example 2, based on Example 1, combined with... Figure 2 Explanation:

[0037] The wire-threading partition 3 is provided with a wire-threading hole 31. Both ends of the wire-threading partition 3 are slidably connected to two sets of protective side plates 2 respectively. A first magnet 32 ​​is provided on the rear side of the wire-threading partition 3. The wire-threading partition 3 is connected to the hole back plate 6 through the first magnet 32.

[0038] With this configuration, the wire hole 31 is used for threading wires, and the first magnet 32 ​​is used to improve the stability of the wire threading partition 3 after installation and to facilitate disassembly and assembly.

[0039] Example 3, based on Example 2, combined with Figure 3 and Figure 4 Explanation:

[0040] The protective side panel 2 includes a protective side panel body 21 and a wall connecting plate 22. Two sets of wall connecting plates 22 are provided, and the two sets of wall connecting plates 22 are symmetrically arranged in the corner grooves 211 opened on the rear side of the protective side panel body 21. The protective side panel body 21 is slidably connected to the wire-passing partition 3. A central groove 212 is provided in the middle of the rear side of the protective side panel body 21. The protective side panel body 21 is fixedly connected to the hole back plate 6 through the central groove 212.

[0041] Production costs can be reduced by setting up a wall connection plate 22 and a protective side plate body 21. The wall connection plate 22 is used for fixed connection with the wall.

[0042] Multiple sets of sliding grooves 213 are arranged parallel to each other on the inner side of the protective side plate body 21, and the wire-passing partition 3 is slidably connected to the sliding grooves 213.

[0043] This configuration allows for easy adjustment of the position of the cable guide plate 3 according to the specifications of the network communication equipment by using the slide groove 213.

[0044] Example 4, based on Example 3, combined with Figure 5 and Figure 6 Explanation:

[0045] A magnetic strip 61 is provided on the front side of the perforated back plate 6. The magnetic strip 61 is magnetically connected to the first magnet 32. The two sides of the perforated back plate 6 are fixedly connected to the central groove 212. Multiple sets of through holes 62 are arranged in an array on the perforated back plate 6. The wire clip 7 is snapped into the through hole 62. A slot 63 for the wire clip 7 is provided on the rear side of the perforated back plate 6.

[0046] This design allows the empty slot 63 to provide space for the limiting part of the wire clip 7, and the magnetic strip 61 can be easily fixed to the wire guide plate 3 of different heights.

[0047] Example 5, based on Example 4, combined with Figure 7 Explanation:

[0048] The wire clip 7 includes a limiting part 71, an elastic connecting part 72, and a bundling part 73. The limiting part 71, the elastic connecting part 72, and the bundling part 73 are an integral structure. The limiting part 71 is connected to the bundling part 73 through the elastic connecting part 72. The limiting part 71 and the elastic connecting part 72 are engaged with the through hole 62. The bundling part 73 is used to organize the lead wires.

[0049] With this configuration, pressing the elastic connecting part 72 will set the wire clip 7 on the hole back plate 6, and the limiting part 71 will help to stably set the wire clip 7 on the hole back plate 6 to prevent it from falling off.

[0050] Example 6, based on Example 5, combined with Figure 8 , Figure 9 and Figure 10 Explanation:

[0051] The hinged heat dissipation door panel 1 includes: a heat dissipation grille 11, a handle 12, embedded magnets 13, and a planter 14. The heat dissipation grille 11 and handle 12 are located on the front of the hinged heat dissipation door panel 1. A planter 14 is located below the handle 12. The embedded magnets 13 are located on the side of the hinged heat dissipation door panel 1 near another set of hinged heat dissipation door panels 1, and the embedded magnets 13 of the two sets of hinged heat dissipation door panels 1 are magnetically connected. With this arrangement, the heat dissipation grille 11 serves to dissipate heat, the handle 12 facilitates the opening and closing of the hinged heat dissipation door panel 1, the embedded magnets 13 secure the two hinged heat dissipation door panels 1 when closed, and the planter 14 enhances the greenery.

[0052] The cable guide plate 4 includes cable guide holes 41 and weight-reducing grilles 42. Multiple sets of cable guide holes 41 are provided, and weight-reducing grilles 42 are arranged between adjacent cable guide holes 41. This arrangement allows the cable guide holes 41 to be used for cable threading, and the weight-reducing grilles 42 to reduce the overall weight of the cable guide plate 4, thereby facilitating installation.

[0053] The transmission top plate 5 is provided with a signal antenna clearance slot 51. This arrangement allows the signal antenna clearance slot 51 to avoid the signal antenna pole of the network communication equipment, thereby improving space utilization.

[0054] The working principle of this utility model is as follows: When using this device, first install the wall connecting plate 22 on the protective side plate body 21, then connect the upper and lower ends of the wall connecting plate 22 to the cable guide bottom plate 4 and the transmission top plate 5. During the connection, rotate the opening and closing heat dissipation door plate 1 between the cable guide bottom plate 4 and the transmission top plate 5. Then, fix the perforated back plate 6 on the rear side of the protective side plate body 21. Then, fix the protective side plate body 21 to the wall through the wall connecting plate 22. According to the network communication equipment, set the position of the cable guide partition 3, push in the cable guide partition 3, so that the first magnet 32 ​​and the magnetic strip 61 are attached to fix the cable guide partition 3, and the installation is completed. This utility model is easy to reuse, reduces design costs, is easy to disassemble and use, reduces the difficulty of layout in a limited space, and at the same time plays a certain role in heat dissipation and noise reduction.

[0055] For those skilled in the art, this utility model is not limited to the details of the exemplary embodiments described above, and can be implemented in other specific forms without departing from the spirit or essential characteristics of this utility model; therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this utility model is defined by the appended claims rather than the foregoing description. Therefore, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0056] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any minor modifications, equivalent substitutions and improvements made to the above embodiments based on the technical essence of the present utility model should be included within the protection scope of the technical solution of the present utility model.

Claims

1. A network cabling box, characterized in that, include: The structure includes an opening and closing heat dissipation door panel (1), a protective side panel (2), a wire-passing partition (3), a wire-passing bottom plate (4), a transmission top plate (5), a perforated back plate (6), and wire clips (7). The protective side panel (2) is provided in two sets, which are symmetrically arranged on the upper side of the wire-passing bottom plate (4). The wire-passing partition (3) is slidably arranged between the two sets of protective side panels (2). The upper side of the two sets of protective side panels (2) is fixedly connected to the transmission top plate (5). The front side of the wire-passing bottom plate (4) and the transmission top plate (5) are hinged to the opening and closing heat dissipation door panel (1). The rear side of the two sets of protective side panels (2) is fixedly connected to the perforated back plate (6). The wire clips (7) are provided in multiple sets, which are arranged on the perforated back plate (6).

2. A network cabling box according to claim 1, characterized in that, The wire-threading partition (3) is provided with a wire-threading hole (31). The two ends of the wire-threading partition (3) are slidably connected to two sets of protective side plates (2). A first magnet (32) is provided on the rear side of the wire-threading partition (3). The wire-threading partition (3) is connected to the hole back plate (6) through the first magnet (32).

3. A network cabling box according to claim 2, characterized in that, The protective side panel (2) includes: a protective side panel body (21) and a wall connecting plate (22). The wall connecting plate (22) is provided in two sets. The two sets of wall connecting plates (22) are symmetrically arranged in the corner groove (211) opened on the rear side of the protective side panel body (21). The protective side panel body (21) is slidably connected to the wire-passing partition (3). A central groove (212) is provided in the middle of the rear side of the protective side panel body (21). The protective side panel body (21) is fixedly connected to the hole back plate (6) through the central groove (212).

4. A network cabling box according to claim 3, characterized in that, Multiple sets of sliding grooves (213) are arranged parallel to each other on the inner side of the protective side plate body (21), and the wire-threading partition (3) is slidably connected to the sliding grooves (213).

5. A network cabling box according to claim 3, characterized in that, A magnetic strip (61) is provided on the front side of the perforated back plate (6), and the magnetic strip (61) is magnetically connected to the first magnet (32). The two sides of the perforated back plate (6) are fixedly connected to the central groove (212). Multiple sets of through holes (62) are arranged in an array on the perforated back plate (6). The wire clip (7) is engaged with the through hole (62). A slot (63) for the wire clip (7) is provided on the rear side of the perforated back plate (6).

6. A network cabling box according to claim 5, characterized in that, The wire clip (7) includes: a limiting part (71), an elastic connecting part (72), and a bundling part (73). The limiting part (71), the elastic connecting part (72), and the bundling part (73) are an integral structure. The limiting part (71) is connected to the bundling part (73) through the elastic connecting part (72). The limiting part (71) and the elastic connecting part (72) are engaged with the through hole (62). The bundling part (73) is used to organize the lead wires.

7. A network cabling box according to claim 1, characterized in that, The opening and closing heat dissipation door panel (1) includes: heat dissipation grille (11), handle (12), embedded magnet (13) and plant pot (14). The opening and closing heat dissipation door panel (1) is provided with heat dissipation grille (11) and handle (12) on the front side. The plant pot (14) is provided on the lower side of the handle (12). The embedded magnet (13) is provided on the side of the opening and closing heat dissipation door panel (1) close to another set of opening and closing heat dissipation door panels (1). The embedded magnets (13) of the two sets of opening and closing heat dissipation door panels (1) are magnetically connected.

8. A network cabling box according to claim 1, characterized in that, The wire guide plate (4) includes: wire guide hole (41) and weight reduction grid (42). The wire guide hole (41) is provided in multiple sets, and the weight reduction grid (42) is provided between adjacent wire guide holes (41).

9. A network cabling box according to claim 1, characterized in that, The transmission top plate (5) is provided with a signal antenna slot (51).

Citation Information

Patent Citations

  • Network wiring box

    CN217064402U