High-speed signal line wiring structure

By designing the half-stitched cable sleeve and splitter structure, the problem of insufficient convenience of signal cable replacement and installation in the prior art is solved, convenient splitting and repair of signal cables is achieved, and the convenience and stability of installation are improved.

CN223053293UActive Publication Date: 2025-07-01SHENZHEN ZHOUGUANG TECH CO LTD
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Patent Information

Application Number
CN202421554225.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-07-01
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

The existing high-speed signal wiring structure is difficult to distinguish or extract when a single signal line is replaced or repaired, and the installation is insufficient.

Method used

A high-speed signal wiring structure is designed, using a half-stitched cable sleeve, and a rectangular cable channel and a splitter seat are set inside. The splitter seat is fixed by screws to realize the splitting discharge of the signal line, and a suspension rack and soil insertion rod are installed above the cable sleeve to facilitate suspension and ground positioning and installation.

Benefits of technology

It realizes convenient line division and maintenance of signal lines, improves work convenience, and improves installation convenience and stability through the design of suspension racks and soil insertion rods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of signal wire wiring, in particular to a high-speed signal wire wiring structure, which comprises a wire arrangement sleeve, a wire arrangement channel with a rectangular section is arranged in the wire arrangement sleeve, the wire arrangement sleeve is of a half-and-half splicing structure and is divided into an upper half sleeve and a lower half sleeve, and the upper half sleeve and the lower half sleeve are integrally formed. The upper half sleeve and the lower half sleeve are internally provided with branching seats, the outer wall surfaces of the branching seats are fixed with the inner wall surface of the flat cable sleeve through screws, the interiors of the branching seats are provided with flat cable holes penetrating through the interiors of the branching seats, each branching seat is provided with at least five flat cable holes, and the adjacent flat cable holes are distributed at equal intervals. By means of the wire arrangement sleeve structure, basic base line protection can be carried out when a plurality of signal wires are arranged, meanwhile, the branching seats and the wire arrangement holes are matched, internal branching arrangement can be achieved, the situations that wires are disordered and the signal wires are difficult to take can be avoided when a single signal wire is replaced or maintained, and the operation convenience of workers is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of signal line wiring, in particular to a high-speed signal line wiring structure. Background Art

[0002] A high-speed signal line wiring structure refers to the layout of lines for transmitting high-speed data signals in electronic products or systems. High-speed signal lines usually refer to data lines with relatively high transmission rates, such as interface standards like PCI e, SATA, and USB.

[0003] Due to the high transmission rate of high-speed signal lines, higher requirements are imposed on the layout and grounding of the lines to reduce signal attenuation and interference.

[0004] The advantages of high-speed signal lines mainly include:

[0005] High data transmission rate: High-speed signal lines can support relatively high data transmission rates, which is very important for application scenarios that require fast data exchange, such as high-speed network communication, data storage, and the interconnection between processors;

[0006] Low latency: High-speed signal lines usually have relatively low signal transmission latency, which helps to improve the real-time performance of data transmission and is very important for real-time processing tasks;

[0007] Low power consumption: Compared with some traditional signal transmission methods, high-speed signal lines can operate at a lower voltage, thereby reducing power consumption, which is particularly important for portable electronic devices.

[0008] Currently, when most signal lines are not time-limited, a simple strip-shaped sleeve structure is used as the load-bearing structure for bundling and gathering the signal lines. The signal lines pass through such sleeves to prevent multiple signal lines from becoming loose. At the same time, the sleeve structure can protect the signal lines in some areas with relatively harsh environments.

[0009] However, most sleeve structures only bundle multiple signal lines with plastic ties and then gather them through. This method cannot further subdivide the wiring in the sleeve, resulting in difficulty in distinguishing or extracting a single signal line when it needs to be replaced or repaired. At the same time, when passing through different areas, it is necessary to reasonably design an installation adaptation structure according to the installation conditions in the area to improve the convenience of installing the entire sleeve. Summary of the Utility Model

[0010] The purpose of the utility model is to propose a high-speed signal line wiring structure to solve the above-mentioned disadvantages in the prior art.

[0011] To achieve the above purpose, the utility model adopts the following technical solutions:

[0012] A high-speed signal line wiring structure is designed, including a cable sleeve, wherein a cable channel with a rectangular cross-section is arranged inside the cable sleeve, the cable sleeve is a half-spliced ​​structure, and the cable sleeve is divided into an upper half sleeve and a lower half sleeve, a branching seat is arranged inside the upper half sleeve and the lower half sleeve, and the outer wall surface of the branching seat is fixed to the inner wall surface of the cable sleeve by screws, a cable hole running through the inside of the branching seat is opened inside, and each branching seat is opened with at least five cable holes, and adjacent cable holes are equidistantly distributed, extension blocks are distributed on both sides of the lower half sleeve, and one end of the extension block is welded and fixed to the outer wall surface of the lower half sleeve, and the upper end of the extension block is provided with A threaded column is arranged, and the lower end of the threaded column is welded and fixed to the surface of the extension block, rings are distributed on both sides of the upper half sleeve, and one end of the ring is welded and fixed to the outer wall of the upper half sleeve, the surface of the threaded column and the inner ring wall of the ring are slidably penetrated, a threaded cap is arranged on the upper end of the threaded column, and the end face of the threaded cap is tightly arranged with the surface of the ring, the internal thread surface of the threaded cap and the external thread surface of the threaded column are threadedly connected with each other, and the upper end of the upper half sleeve is equidistantly provided with suspension frames, and the lower end of the suspension frames is welded and fixed to the surface of the upper half sleeve, and the suspension frames are T-shaped structures, and the surface of the suspension frames is provided with symmetrically distributed mounting holes.

[0013] In detail, the upper half and the lower half are composed of an outer layer and an inner layer, and the outer layer is coated on the inner layer.

[0014] In detail, the outer layer is made of stainless steel material, and the inner layer is made of soft magnetic tape material.

[0015] In detail, soil insertion rods are evenly distributed at the lower end of the lower half sleeve, and the lower ends of the soil insertion rods are conical structures.

[0016] In detail, a square block is also provided at the lower end of the lower half sleeve, one end of the square block is welded and fixed to the surface of the lower half sleeve, a square groove is opened at the end of the soil insertion rod, and the surface of the square block is slidably sleeved with the inner wall of the square groove.

[0017] In detail, a groove is provided on one side of the square block, a bayonet is arranged inside the groove, the end of the bayonet is an arc structure, the surface of the bayonet is slidably connected with the inner wall of the groove, a spring is arranged inside the groove, and the two ends of the spring are respectively fixedly assembled with the surface of the bayonet and the inner wall of the groove.

[0018] In detail, a through hole is provided on the inner wall of the groove and penetrates the interior thereof, and the surface of the bayonet is penetrated by the interior of the through hole.

[0019] The design scheme proposed by the utility model has the following beneficial effects during application:

[0020] 1. Through the cable arrangement sleeve structure, basic baseline protection can be provided for multiple signal lines during wiring. At the same time, in cooperation with the wire splitting base and the cable arrangement holes, internal wire splitting and discharging can be achieved, which is convenient for replacing or repairing a single signal line without the occurrence of messy wires and difficult access to the signal lines, improving the convenience of the operator's work.

[0021] 2. Through the suspension frame structure above the cable arrangement sleeve, the cable arrangement sleeve can be suspended at the top or side-mounted on the wall by screws in cooperation with the mounting holes. When set on the ground outdoors through the soil insertion rod of the lower half sleeve, the soil insertion rod can be inserted into the ground to achieve the positioning and docking of the cable arrangement sleeve with the ground, which is applicable to the roadside of provincial roads or highways. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is the overall structural schematic diagram of the present utility model;

[0023] Figure 2 is the oblique top view schematic diagram of the overall structure of the present utility model;

[0024] Figure 3 is the front view of the end face position of the cable arrangement sleeve of the present utility model;

[0025] Figure 4 is the enlarged schematic diagram at position a of the present utility model;

[0026] Figure 5 is the structural composition diagram of the cable arrangement sleeve of the present utility model.

[0027] In the figure: 10, cable arrangement sleeve; 11, wire splitting base; 12, cable arrangement holes; 13, threaded post; 14, collar; 15, threaded nut; 16, suspension frame; 17, mounting hole; 20, outer layer; 21, inner layer; 30, soil insertion rod; 31, square groove; 32, groove; 33, retaining pin; 34, through hole; 35, spring; 36, square block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.

[0029] Refer to Figures 1 - 5A high-speed signal line wiring structure includes a cable sleeve 10, wherein a cable channel with a rectangular cross section is arranged inside the cable sleeve 10, the cable sleeve 10 is a half-spliced ​​structure, and the cable sleeve 10 is divided into an upper half sleeve and a lower half sleeve, and a branching seat 11 is arranged inside the upper half sleeve and the lower half sleeve, and the outer wall surface of the branching seat 11 is fixed to the inner wall surface of the cable sleeve 10 by screws, and a cable hole 12 running through the inside of the branching seat 11 is opened inside, and each branching seat 11 is opened with at least five cable holes 12, and adjacent cable holes 12 are equidistantly distributed, and extension blocks are distributed on both sides of the lower half sleeve, and one end of the extension block is welded and fixed to the outer wall surface of the lower half sleeve, and a threaded column is arranged on the upper end of the extension block 13, and the lower end of the threaded column 13 is welded and fixed to the surface of the extension block, collars 14 are distributed on both sides of the upper half sleeve, and one end of the collar 14 is welded and fixed to the outer wall of the upper half sleeve, the surface of the threaded column 13 and the inner ring wall of the collar 14 are slidably penetrated, a threaded cap 15 is provided on the upper end of the threaded column 13, and the end face of the threaded cap 15 is tightly set with the surface of the collar 14, the internal thread surface of the threaded cap 15 and the external thread surface of the threaded column 13 are threadedly connected with each other, and the upper end of the upper half sleeve is equidistantly distributed with hangers 16, and the lower end of the hanger 16 is welded and fixed to the surface of the upper half sleeve, and the hanger 16 is a T-shaped structure, and the surface of the hanger 16 is provided with symmetrically distributed mounting holes 17.

[0030] It should be further explained that both the upper half and the lower half are composed of an outer layer 20 and an inner layer 21 , and the outer layer 20 is coated on the inner layer 21 .

[0031] It should be further explained that the outer layer 20 is made of stainless steel material, and the inner layer 21 is made of soft magnetic tape material. The stainless steel material has good corrosion resistance and compressive strength, and the soft magnetic material can block external electromagnetic interference.

[0032] It should be further explained that soil insertion rods 30 are evenly distributed at the lower end of the lower half set, and the lower end of the soil insertion rods 30 is a conical structure, which can be applied to a wide soil ground without a hanging point. A more common environment is the curb of a provincial road or a highway connecting road outside a city. Because one of the requirements for high-speed signal line wiring is to reduce the wiring distance as much as possible while ensuring the safety of the installation position, it is safer to wire along the curb, and the wiring path will not deviate too much.

[0033] It should be further explained that a square block 36 is also provided at the lower end of the lower half sleeve, one end of the square block 36 is welded and fixed to the surface of the lower half sleeve, a square groove 31 is provided at the end of the soil insertion rod 30, and the surface of the square block 36 is slidably sleeved with the inner wall surface of the square groove 31, which can realize the rapid positioning of the soil insertion rod 30 and the lower half sleeve, and the square connection structure can better perform limited docking.

[0034] Further, it should be noted that a groove 32 is formed on one side of the square block 36. A latch 33 is arranged inside the groove 32. The end of the latch 33 is of an arc surface structure. The surface of the latch 33 is slidably sleeved with the inner wall surface of the groove 32. A spring 35 is arranged inside the groove 32. Two ends of the spring 35 are fixedly assembled with the surface of the latch 33 and the inner wall surface of the groove 32 respectively. The spring 35 can ensure the stable expansion and reset of the latch 33.

[0035] Further, it should be noted that a through hole 34 penetrating through its interior is formed on the inner wall of the groove 32. The surface of the latch 33 penetrates through the interior of the through hole 34, which is convenient for the soil insertion rod 30 to be quickly assembled and docked with the lower half sleeve when actually needed.

[0036] Working mode: When the half installation of the wire arranging sleeve 10 is required, the upper half sleeve and the lower half sleeve are covered in half. At this time, the threaded column 13 penetrates through the interior of the sleeve ring 14 and is threadedly docked with the threaded column 13 through the threaded cap 15, so as to realize the assembly and docking of the wire arranging sleeve 10. The half installation method is convenient for the disassembly and assembly operation of the wire dividing seat 11. Then, a plurality of wires are respectively penetrated through the wire arranging holes 12, which can ensure wiring and is also convenient for distinction, avoiding the situation of chaotic wires caused by mutual aggregation.

[0037] When hanging is required, the hanging frame 16 can be used in cooperation with the mounting hole 17, and then a screw penetrates through the mounting hole 17 to install the wire arranging sleeve 10 on the roof or wall. If it is on the roadside of a highway or a provincial road, the roadside of this type of road is of soil structure. If wiring is required near the roadside, the soil insertion rod 30 can be docked with the lower half sleeve. With the conical end of the soil insertion rod 30, it can be inserted into the soil. When the soil insertion rod 30 is installed with the lower half sleeve, the square block 36 is inserted into the square groove 31 to realize preliminary positioning. At this time, the position of the latch 33 corresponds to the position of the through hole 34. Through the reset effect of the spring 35, the latch 33 is snapped into the through hole 34 to complete the fixation of the soil insertion rod 30 and the lower half sleeve.

[0038] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A high-speed signal line wiring structure, comprising a cable arrangement sleeve (10), characterized in that: The cable arranging sleeve (10) is provided with a cable arranging passage with a rectangular cross section. The cable arranging sleeve (10) is a half-jointed structure, and the cable arranging sleeve (10) is divided into an upper half sleeve and a lower half sleeve. A cable branching seat (11) is provided inside the upper half sleeve and the lower half sleeve, and the outer wall surface of the cable branching seat (11) is fixed to the inner wall surface of the cable arranging sleeve (10) by screws. The cable branching seat (11) is provided with a cable arranging hole (12) penetrating the inside thereof, and each cable branching seat (11) is provided with at least five cable arranging holes (12), and adjacent cable arranging holes (12) are equidistantly distributed. Extension blocks are distributed on both sides of the lower half sleeve, and one end of the extension block is welded and fixed to the outer wall surface of the lower half sleeve. A threaded column (13) is provided at the upper end of the extension block, and the lower end of the threaded column (13) is connected to the inner wall surface of the lower half sleeve. The surface of the extension block is welded and fixed, and collars (14) are distributed on both sides of the upper half sleeve, and one end of the collar (14) is welded and fixed to the outer wall of the upper half sleeve, the surface of the threaded column (13) and the inner ring wall of the collar (14) are slidably penetrated, and a threaded cap (15) is provided at the upper end of the threaded column (13), and the end face of the threaded cap (15) is tightly arranged with the surface of the collar (14), and the internal thread surface of the threaded cap (15) and the external thread surface of the threaded column (13) are threadedly connected with each other, and the upper end of the upper half sleeve is equidistantly distributed with suspension frames (16), and the lower end of the suspension frame (16) is welded and fixed to the surface of the upper half sleeve, and the suspension frame (16) is a T-shaped structure, and the surface of the suspension frame (16) is provided with symmetrically distributed mounting holes (17).

2. A high-speed signal line wiring structure according to claim 1, characterized in that: The upper half and the lower half both consist of an outer layer (20) and an inner layer (21), wherein the outer layer (20) is coated on the inner layer (21).

3. A high-speed signal line wiring structure according to claim 2, characterized in that: The outer layer (20) is made of stainless steel material, and the inner layer (21) is made of soft magnetic tape material.

4. A high-speed signal line wiring structure according to claim 1, characterized in that: The lower end of the lower half sleeve is provided with soil insertion rods (30) at equal intervals, and the lower ends of the soil insertion rods (30) are of a conical structure.

5. A high-speed signal line wiring structure according to claim 4, characterized in that: A square block (36) is also provided at the lower end of the lower half sleeve, one end of the square block (36) is welded and fixed to the surface of the lower half sleeve, a square groove (31) is provided at the end of the soil insertion rod (30), and the surface of the square block (36) is slidably sleeved with the inner wall of the square groove (31).

6. A high-speed signal line wiring structure according to claim 5, characterized in that: A groove (32) is provided on one side of the square block (36), a bayonet (33) is arranged inside the groove (32), the end of the bayonet (33) is an arc surface structure, the surface of the bayonet (33) is slidably sleeved with the inner wall surface of the groove (32), a spring (35) is arranged inside the groove (32), and the two ends of the spring (35) are respectively fixedly assembled with the surface of the bayonet (33) and the inner wall surface of the groove (32).

7. A high-speed signal line wiring structure according to claim 6, characterized in that: A through hole (34) penetrating the interior of the groove (32) is provided on the inner wall thereof, and the surface of the latch (33) penetrates the interior of the through hole (34).