Wiring structure of big data modular network

The design of the mounting frame and cable arrangement device solves the problems of complex network cable connections and entanglement, enables rapid positioning and convenient maintenance of network cables, and improves work efficiency.

CN223363737UActive Publication Date: 2025-09-19LAIXUN COMM (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202422438123.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-09-19
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

In the big data module network, network cable connections are complex and easy to tangle, and the connection line interfaces are unclear, which makes it difficult to identify the status and reduces work efficiency.

Method used

The installation frame and cable arrangement device are used, including a connector, a cable housing, a spring-fitting component and a press-fitting component. Through the coordinated use of these components, the network cable can be quickly positioned, installed and conveniently repaired.

Benefits of technology

It realizes the rapid positioning installation and convenient maintenance of network cables, improves work efficiency and simplifies the line identification process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wiring structure of a big data modular network, and relates to the field of network wiring, the wiring structure of the big data modular network comprises a mounting frame body and a plurality of wiring devices, a network cable is moved towards the interior of a wiring shell and passes through the wiring shell, and the surface of the network cable is in contact with the surface of a pressing assembly. The pressing assembly is pushed towards the flat cable shell, the pressing assembly rotates along the center axis of the pressing assembly, when the surface of the network cable makes contact with the surface of the elastic assembly, the elastic assembly shrinks due to the elastic force of the elastic assembly, after the pressing assembly and the elastic assembly are limited, fitting limiting of the network cable is completed, and when the connecting body and the mounting frame body are horizontal, the connecting body penetrates through the mounting groove. When the connecting body is higher than the mounting groove, the flat cable shell is rotated, and when the flat cable shell is perpendicular to the mounting frame body, the connecting body is placed in the mounting groove, so that limiting mounting of the network cable is completed, and through cooperative use of the components, quick mounting can be realized, arrangement and identification of lines are facilitated, and working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the field of network cabling, and in particular to a cabling structure of a big data modular network. Background Art

[0002] With the rapid development of big data module network information services, the functional devices for processing network data information interaction are more diverse. In order to process, store and transmit data more quickly, multifunctional interactive devices are indispensable.

[0003] In order to ensure the rapid exchange of information between close-range devices, network cables for information transmission are indispensable. However, when installing, replacing, and repairing network cables, the cables are often entangled due to the large number of device interfaces connected to each other. This leads to unclear interfaces and categories of the interconnected cables and the complexity of identifying the connection status of the cables, which can reduce work efficiency.

[0004] Therefore, it is necessary to provide a new wiring structure of big data modular network to solve the above technical problems. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides a wiring structure of a big data modular network.

[0006] The utility model provides a wiring structure of a big data modular network, comprising: a mounting frame and a plurality of wiring devices;

[0007] The interior of the mounting frame is provided with a mounting groove matching the cable arrangement device;

[0008] The cable arrangement device includes a connector, a cable housing, an elastic assembly and a pressing assembly, wherein one end surface of the connector is in contact with the four side walls inside the mounting groove, the other end of the connector is fixedly connected to the top of the cable housing, the inner top surface of the cable housing is fixedly connected to one side of the elastic assembly, and a movable groove for the pressing assembly to move is provided on the bottom surface of the cable housing, the pressing assembly passes through the bottom surface of the cable housing, and the pressing assembly is located inside the movable groove, wherein one end of the pressing assembly extends into the interior of the cable housing, and the other end of the pressing assembly is rotatably connected to the cable housing, and two information grooves are provided on the surface of the cable housing.

[0009] Preferably, the elastic-locking assembly includes a fixed block and an elastic-locking piece, one side of the fixed block is fixedly connected to the inner top surface of the cable housing, the elastic-locking piece is sleeved on the surface of the fixed block, and one side of the elastic-locking piece is in contact with the inner top surface of the cable housing, and one end of the elastic-locking piece is designed as a semicircular arc.

[0010] Preferably, the pressing assembly includes a pressing body, a pressing column and a pressing block. The pressing column passes through the bottom surface of the cable housing and is located inside the movable groove. One side of the pressing body is fixedly connected to one end of the pressing column, and one side of the pressing block is fixedly connected to the other end of the pressing column. Both ends of the pressing block are fitted with one end surface of the elastic sheet with a semicircular arc design, and the pressing block is designed as a semicircular arc.

[0011] Preferably, the pressing body includes a pressing plate and a latch, the surface of the pressing plate is provided with a rotating hole 1 matching the latch, the latch passes through the surface of the pressing plate, and the latch is located inside the rotating hole 1, the surface of the latch is in contact with the inner wall of the rotating hole 1, the bottom surface of the cable housing is provided with a pressing groove matching the pressing plate, the pressing plate is located inside the pressing groove, and both side walls of the pressing groove are provided with rotating holes 2 matching the two ends of the latch, the two ends of the latch are respectively located inside the two rotating holes 2, and the surfaces of both ends of the latch are in contact with the inner walls of the two rotating holes 2, and the latch is rotatably connected to the cable housing.

[0012] Preferably, a limiting block matching the pressing plate is fixedly provided on a side of the cable housing adjacent to the pressing plate, and a side of the pressing plate away from the pressing groove is in contact with an inner surface of the limiting block.

[0013] Preferably, two mounting bodies are fixedly provided on one side of the mounting frame, and fixing grooves are provided on the surfaces of the two mounting bodies.

[0014] Compared with related technologies, the wiring structure of a big data modular network provided by the present invention has the following beneficial effects:

[0015] 1. When the line needs to be installed, first move the network cable to the inside of the cable housing. When the network cable connector passes through the cable housing and the surface of the network cable contacts the surface of the press-fit component, push the press-fit component toward the cable housing. The press-fit component will rotate along its own central axis. When the surface of the network cable contacts the surface of the elastic component, the elastic component shrinks due to its own elastic force. When the press-fit components themselves fit together to complete the limit, the position restriction of the network cable is completed. The connector and the mounting frame are horizontally passed through the mounting slot. When they contact the top surface of the mounting frame, the cable arrangement device is rotated. When the cable arrangement device and the mounting frame are vertical, the connector is placed inside the mounting slot to complete the placement of the cable arrangement device. Through the mutual cooperation of the above components, the network cable can be quickly positioned and installed, which is convenient for line organization and identification and improves work efficiency.

[0016] 2. When the network line needs to be repaired or replaced, the cable housing is pushed toward the top surface of the mounting frame. When the top of the cable housing contacts the top surface of the mounting frame, the cable housing is rotated. When the connector and the mounting frame are vertical, the cable arrangement device loses its position restriction, and the cable arrangement device and the network cable can be directly removed. The mutual coordination between the above components facilitates the removal of the network cable for maintenance and repair, as well as rapid position change, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall structure of the wiring structure of a big data modular network provided by the utility model;

[0018] Figure 2 A schematic diagram of the overall structure of the mounting frame provided by the utility model;

[0019] Figure 3 This is a schematic diagram of the overall structure of the cable arrangement device provided by the utility model;

[0020] Figure 4 This is a schematic cross-sectional view of the overall cable arrangement device provided by the present invention;

[0021] Figure 5 This is a schematic overall cross-sectional view of another state of the cable arrangement device provided by the present invention;

[0022] Figure 6 This is a schematic diagram of the structure of the cable arrangement device provided by the utility model;

[0023] Figure 7 This is a schematic diagram of the structure of the cable arrangement device provided by the utility model from another perspective;

[0024] Figure 8 A schematic diagram of the overall structure of the press-fit assembly provided by the present invention;

[0025] Figure 9 This is a schematic diagram of the overall structure of the elastic assembly provided by the utility model.

[0026] Numbers in the figure: 1. Mounting frame; 11. Mounting slot; 12. Mounting body; 13. Fixed slot; 2. Wiring device; 22. Connecting body; 23. Wiring shell; 231. Movable slot; 232. Information slot; 233. Pressing slot; 24. Spring-fitting assembly; 241. Fixed block; 242. Spring-fitting piece; 25. Pressing assembly; 251. Limiting block; 252. Pressing column; 253. Pressing block; 254. Pressing body; 255. Pressing plate; 256. Pin; 257. Rotating hole one; 258. Rotating hole two. DETAILED DESCRIPTION

[0027] The present invention will be further described below with reference to the accompanying drawings and implementation examples.

[0028] Please refer to Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 as well as Figure 9 ,in, Figure 1 This is a schematic diagram of the overall structure of the wiring structure of a big data modular network provided by the utility model; Figure 2 A schematic diagram of the overall structure of the mounting frame provided by the utility model; Figure 3 This is a schematic diagram of the overall structure of the cable arrangement device provided by the utility model; Figure 4 This is a schematic cross-sectional view of the overall cable arrangement device provided by the present invention; Figure 5 This is a schematic overall cross-sectional view of another state of the cable arrangement device provided by the present invention;

[0029] Figure 6 This is a schematic diagram of the structure of the cable arrangement device provided by the utility model; Figure 7 This is a schematic diagram of the structure of the cable arrangement device provided by the utility model from another perspective; Figure 8 A schematic diagram of the overall structure of the press-fit assembly provided by the present invention; Figure 9 This is a schematic diagram of the overall structure of the elastic assembly provided by the utility model.

[0030] In the specific implementation process, Figures 1-9 As shown, the present invention provides a wiring structure for a big data modular network, comprising a mounting frame 1 and a plurality of wiring devices 2;

[0031] The mounting frame 1 is provided with a mounting slot 11 that matches the cable arrangement device 2. The mounting slot 11 is provided with many grooves to facilitate the position adjustment, installation, and removal of the cable arrangement device 2.

[0032] The cable arrangement device 2 includes a connector 22, a cable housing 23, an elastic component 24 and a pressing component 25. One end surface of the connector 22 is in contact with the four side walls inside the mounting groove 11, and the other end of the connector 22 is fixedly connected to the top of the cable housing 23. The top surface of the cable housing 23 is fixedly connected to one side of the elastic component 24. The bottom surface of the cable housing 23 is provided with a movable groove 231 for the pressing component 25 to move. The pressing component 25 passes through the bottom surface of the cable housing 23 and is located inside the movable groove 231. One end of the pressing component 25 extends into the cable housing 23, and the other end of the pressing component 25 is rotatably connected to the cable housing 23. The elastic component 24 and the pressing component 25 can be well pressed together, and the position of the network cable can be well defined. The surface of the cable housing 23 is provided with two information slots 232. The information slots 232 can be used to place network cable information for easy identification and annotation of network cable information.

[0033] The elastic component 24 includes a fixed block 241 and an elastic piece 242. One side of the fixed block 241 is fixedly connected to the inner top surface of the cable housing 23. The elastic piece 242 is sleeved on the surface of the fixed block 241, and one side of the elastic piece 242 is in contact with the inner top surface of the cable housing 23. One end of the elastic piece 242 is designed in a semicircular arc. The elastic piece 242 itself has a certain elasticity and can be fitted with the pressing block 253 to provide a pressing force for the network cable. It can limit the position of network cables of different thicknesses. The semicircular arc design of the elastic piece 242 can prevent the surface of the network cable from being scratched and extend its service life.

[0034] The pressing assembly 25 includes a pressing body 254, a pressing column 252 and a pressing block 253. The pressing column 252 passes through the bottom surface of the cable housing 23 and is located inside the movable groove 231. One side of the pressing body 254 is fixedly connected to one end of the pressing column 252, and one side of the pressing block 253 is fixedly connected to the other end of the pressing column 252. Both ends of the pressing block 253 are in contact with the surface of one end of the elastic piece 242 with a semicircular arc design. The pressing block 253 has a semicircular arc design. The pressing assembly 25 can make the network cable better contact the elastic piece 242, better limit the position of different thicknesses, and prevent the network cable from loosening. The semicircular arc design of the pressing block 253 can prevent the surface of the network cable from being scratched, thereby extending the service life.

[0035] The pressing body 254 includes a pressing plate 255 and a latch 256. A rotating hole 257 matching the latch 256 is provided on the surface of the pressing plate 255. The latch 256 passes through the surface of the pressing plate 255 and is located inside the rotating hole 257. The surface of the latch 256 fits with the inner wall of the rotating hole 257. A pressing groove 233 matching the pressing plate 255 is provided on the bottom surface of the cable housing 23. The pressing plate 255 is located inside the pressing groove 233. Both side walls of the pressing groove 233 are provided with rotating holes 258 matching the two ends of the latch 256. The two ends of the latch 256 are respectively located inside the two rotating holes 258, and the surfaces of both ends of the latch 256 fit with the inner walls of the two rotating holes 258. The latch 256 is rotatably connected to the cable housing 23. The latch 256 provided on the pressing body 254 can make the pressing plate 255 rotate and move, which is convenient for fixing the network cable.

[0036] A limiting block 251 matching the pressing plate 255 is fixedly provided on one side of the cable housing 23 adjacent to the pressing plate 255 , and a side of the pressing plate 255 away from the pressing groove 233 is in contact with the inner surface of the limiting block 251 .

[0037] Two mounting bodies 12 are fixedly provided on one side of the mounting frame 1 . Both mounting bodies 12 have fixing grooves 13 on their surfaces. The mounting bodies 12 can be fixed and connected between different equipment cabinets.

[0038] The working principle provided by the utility model is as follows:

[0039] When the line needs to be installed, the network cable is moved into the cable housing 23. When the network cable connector passes through the cable housing 23 and the surface of the network cable contacts the surface of the pressing block 253, the pressure plate 255 is pushed toward the cable housing 23. The pressure plate 255 will drive the pressing column 252, the pressing block 253 and the network cable to rotate along the central axis of the pin 256. When the surface of the network cable contacts the surface of the elastic piece 242, the elastic piece 242 contracts toward the fixed block 241 due to its own elastic force. When one end of the pressure plate 255 contacts the limit block 251, the limit block 251 will use its own elastic force to move along the surface of one end of the pressure plate 255 away from the pressure plate 255. When the pressing plate 255 is no longer in contact with the limiting block 251, the limiting block 251 returns to its initial state according to its own elastic force. At this time, the limiting of the pressing plate 255 is completed, and the position restriction of the line is completed. The connector 22 and the mounting frame 1 are horizontally passed through the mounting groove 11. When the top surface of the cable housing 23 contacts the inner top surface of the mounting frame 1, the cable arrangement device 2 is rotated. When the cable arrangement device 2 and the mounting frame 1 are in a vertical state, the connector 22 is placed inside the mounting groove 11. When the four sides of the connector 22 are in contact with the inner wall of the mounting groove 11, the cable arrangement device 2 is placed in the position, and rapid positioning and installation are achieved.

[0040] When the network line needs to be repaired or replaced, the cable housing 23 is pushed toward the top surface of the mounting frame 1. When the top of the cable housing 23 contacts the top surface of the mounting frame 1, the cable housing 23 is rotated. When the connector 22 and the mounting frame 1 are in a vertical state, the cable arrangement device 2 loses its limit, and the network cable and the cable housing 23 can be directly removed, making it easier to repair and adjust the position of the network cable.

[0041] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A wiring structure of a big data modular network, characterized in that: It comprises: a mounting frame (1) and a plurality of wiring devices (2); The mounting frame (1) is provided with a mounting groove (11) matching the wiring arrangement device (2); The cable arrangement device (2) comprises a connector (22), a cable housing (23), an elastic assembly (24) and a pressing assembly (25), wherein one end surface of the connector (22) is fitted with the four side walls inside the mounting groove (11), the other end of the connector (22) is fixedly connected to the top of the cable housing (23), the inner top surface of the cable housing (23) is fixedly connected to one side of the elastic assembly (24), the bottom surface of the cable housing (23) is provided with a movable groove (231) for the pressing assembly (25) to move, the pressing assembly (25) passes through the bottom surface of the cable housing (23), and the pressing assembly (25) is located inside the movable groove (231), wherein one end of the pressing assembly (25) extends into the inside of the cable housing (23), and the other end of the pressing assembly (25) is rotatably connected to the cable housing (23), and two information grooves (232) are provided on the surface of the cable housing (23).

2. The wiring structure of the big data modular network according to claim 1 is characterized in that: The elastic-locking assembly (24) comprises a fixed block (241) and an elastic-locking piece (242), one side of the fixed block (241) is fixedly connected to the inner top surface of the cable housing (23), the elastic-locking piece (242) is sleeved on the surface of the fixed block (241), and one side of the elastic-locking piece (242) is in contact with the inner top surface of the cable housing (23), and one end of the elastic-locking piece (242) is designed to be semicircular.

3. The wiring structure of the big data modular network according to claim 2, characterized in that: The pressing assembly (25) includes a pressing body (254), a pressing column (252) and a pressing block (253), wherein the pressing column (252) passes through the bottom surface of the cable housing (23), and the pressing column (252) is located inside the movable groove (231), one side of the pressing body (254) is fixedly connected to one end of the pressing column (252), and one side of the pressing block (253) is fixedly connected to the other end of the pressing column (252), and both ends of the pressing block (253) are in contact with the surface of one end of the elastic sheet (242) with a semicircular arc design, and the pressing block (253) has a semicircular arc design.

4. The wiring structure of the big data modular network according to claim 3 is characterized in that: The pressing body (254) includes a pressing plate (255) and a latch (256). The surface of the pressing plate (255) is provided with a rotation hole (257) that matches the latch (256). The latch (256) passes through the surface of the pressing plate (255) and is located inside the rotation hole (257). The surface of the latch (256) is in contact with the inner wall of the rotation hole (257). The bottom surface of the cable housing (23) is provided with a rotation hole (257) that matches the pressing plate (255). ) is provided with a pressing groove (233) that matches the pressing groove (233), the pressing plate (255) is located inside the pressing groove (233), and both side walls of the pressing groove (233) are provided with a second rotating hole (258) that matches the two ends of the latch (256), the two ends of the latch (256) are respectively located inside the two second rotating holes (258), and the surfaces of both ends of the latch (256) are in contact with the inner side walls of the two second rotating holes (258), and the latch (256) is rotatably connected to the cable housing (23).

5. The wiring structure of the big data modular network according to claim 4 is characterized in that: A limiting block (251) matching the pressing plate (255) is fixedly provided on one side of the cable housing (23) adjacent to the pressing plate (255), and a side of the pressing plate (255) away from the pressing groove (233) is in contact with the inner surface of the limiting block (251).

6. The wiring structure of the big data modular network according to claim 5, characterized in that: Two mounting bodies (12) are fixedly provided on one side of the mounting frame (1), and fixing grooves (13) are provided on the surfaces of the two mounting bodies (12).