Wiring device of communication optical cable

The combination structure of the base, positioning strip and hanging plate seat solves the problems of flexibility and stability of traditional optical cable routing devices, realizes flexible adjustment and stable fixation of optical cables, improves installation efficiency and reduces wear risk.

CN224263452UActive Publication Date: 2026-05-19GUANGDONG TANTU ENG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG TANTU ENG TECH CO LTD
Filing Date
2025-07-21
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional optical cable routing devices cannot flexibly adjust the number of optical cables and the laying path, resulting in messy stacking of optical cables, high risk of wear and tear, low installation efficiency, and difficulty in meeting the needs of rapid deployment.

Method used

The system adopts a combination structure of base, positioning strip, hanging plate seat and auxiliary binding strap. The position of the hanging plate seat can be adjusted by the driving component to realize flexible laying and fixing of optical cable. The middle frame seat and positioning strip are connected by clamps and bolts to simplify the installation process.

Benefits of technology

It enables flexible adjustment and stable fixation of optical cables, reduces the risk of optical cable wear, improves installation efficiency and aesthetics, and adapts to the needs of different numbers and routes of optical cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a wiring device of a communication optical cable, and relates to the field of optical cable wiring equipment. The device comprises a base, a positioning strip is transversely arranged in the middle of the upper end face of the base, the positioning strip and the base are integrally formed, a plurality of middle frame bases are installed on the positioning strip, the middle frame bases are fixedly connected with the positioning strip in an inserted mode, two sets of hanging plate bases are symmetrically installed on the two sides of each middle frame base, and the hanging plate bases are connected with the middle frame bases in a sliding mode. A driving part for adjusting the position of the hanging plate seat is mounted on the middle frame seat, and a plurality of auxiliary binding belts are uniformly mounted at the lower end of the hanging plate seat. The position of the hanging plate seat can be flexibly adjusted through the driving part, so that the laying distance and position of the communication optical cable can be conveniently adjusted, and different laying requirements can be met. And the middle frame base and the positioning strips are connected through clamping and bolts, so that the mounting and dismounting processes are simple and rapid, and the construction difficulty and time cost are reduced.
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Description

Technical Field

[0001] This application relates to the technical field of optical cable routing equipment, and in particular to a routing device for communication optical cables. Background Technology

[0002] In the field of communication network construction, the laying of optical fiber cables is a crucial step in building information transmission channels. Traditional optical fiber cable routing systems mostly employ fixed brackets or cable tray structures. Early optical fiber cable routing systems primarily used fixed brackets welded from angle steel. The bracket spacing and installation positions were predetermined before construction, making it impossible to flexibly adjust according to the actual number, specifications, and laying path of optical cables. When additional optical cables are needed, they cannot be properly arranged and can only be temporarily hung externally or wrapped around existing brackets. This not only affects aesthetics but also poses a risk of mutual compression and wear of optical cables, shortening their lifespan.

[0003] Meanwhile, when multiple optical cables for different purposes need to be laid, they are piled up haphazardly in the cable trays, making them difficult to distinguish and manage. During the operation and maintenance of large data centers, due to the chaotic cable routing within the cable trays, technicians often have to spend a lot of time sorting out the cables when troubleshooting or adding new lines, which seriously affects work efficiency.

[0004] Furthermore, existing cabling devices often use welding or complex bolting methods to connect components, requiring specialized tools and skilled workers for installation, which is time-consuming. In emergency communication projects, the low installation efficiency of traditional cabling devices makes it difficult to meet the needs of rapid deployment, thus delaying the restoration of communication networks. Utility Model Content

[0005] To achieve flexible installation, use, and convenient maintenance, this application provides a wiring device for communication optical cables.

[0006] The cable routing device for communication optical cables provided in this application adopts the following technical solution:

[0007] A cable routing device for communication optical cables includes a base. A positioning strip is horizontally arranged in the middle of the upper surface of the base. The positioning strip is integrally formed with the base. A plurality of intermediate frame seats are installed on the positioning strip. The intermediate frame seats are inserted and fixedly connected to the positioning strip. Two sets of hanging plate seats are symmetrically installed on both sides of the intermediate frame seats. The hanging plate seats are slidably connected to the intermediate frame seats. A driving component for adjusting the position of the hanging plate seats is installed on the intermediate frame seats. A plurality of auxiliary straps are evenly installed at the lower end of the hanging plate seats. The two ends of the auxiliary straps are fixedly connected to the hanging plate seats.

[0008] By adopting the above technical solution, the base is designed to ensure that the device can be suspended and fixed to the roof or other locations during installation using slings or other equipment. The base allows for stable installation of the positioning strip, ensuring its stable use. The positioning strip also facilitates the insertion and installation of the intermediate frame. After several sets of intermediate frame seats are inserted and installed onto the positioning strip, the intermediate frame seats and positioning strips can be locked together using vertical mounting bolts. Finally, two sets of hanging plate seats are symmetrically installed on both sides of the intermediate frame seats. The position of the hanging plate seats can be adjusted according to the actual number of communication optical cables to be routed. Adjustment can be easily performed using the drive mechanism. Finally, auxiliary binding straps are evenly installed at the lower end of the hanging plate seats to bind the communication optical cables, fixing them to the hanging plate seats and preventing the optical cables from shaking or shifting during use.

[0009] Optionally, the base includes a main base plate and a bracket, the bracket being evenly installed on the lower end face of the main base plate and fixedly connected to the main base plate.

[0010] By adopting the above technical solution, the base consists of a main base plate and brackets. The brackets are evenly installed on the lower end face of the main base plate and fixedly connected. The main base plate provides a stable support plane for the entire cable routing device, ensuring that the device can be placed stably. The brackets further enhance the stability of the base, distribute the weight of the device, and reduce the pressure on the installation ground. At the same time, the brackets are designed to facilitate better suspension installation.

[0011] Optionally, the positioning strip includes a vertical plate and a top plate. The vertical plate is vertically installed on the upper surface of the base, and the top plate is installed on the upper surface of the vertical plate, and the top plate and the vertical plate are integrally formed.

[0012] By adopting the above technical solution, the positioning strip includes a vertical plate and a top plate. The vertical plate is vertically installed on the upper surface of the base, and the top plate is integrally formed with the vertical plate. The vertical plate provides vertical support for the top plate, enabling the top plate to be stably positioned above the base. The top plate provides a positioning and support platform for the installation of the intermediate frame, ensuring that the intermediate frame can be accurately installed in the designated position.

[0013] Optionally, the middle frame includes a clamping vertical plate and a horizontal plate for sliding installation of the hanging plate seat. The clamping vertical plate is clamped and fixed on the top plate, and the horizontal plate is installed on the upper end surface of the clamping vertical plate, and the horizontal plate and the clamping vertical plate are integrally formed.

[0014] By adopting the above technical solution, the clamping vertical plate engages with the threaded groove on the top plate through the clamping groove and connecting through hole, achieving a firm connection between the middle frame base and the positioning strip. The horizontal plate provides a track and support for the sliding of the hanging plate base, enabling the hanging plate base to move flexibly in the horizontal direction.

[0015] Optionally, the lower end face of the clamping vertical plate is provided with a clamping groove, and a plurality of connecting through holes are also evenly provided on the clamping vertical plate, and the upper end face of the top plate is provided with a threaded groove corresponding to the connecting through holes.

[0016] By adopting the above technical solution, the clamping groove can fit tightly against the top plate, increasing the stability of the connection. The connecting through hole and the threaded groove are connected by bolts, further strengthening the connection between the center frame and the positioning strip and preventing the center frame from loosening during use.

[0017] Optionally, the horizontal plate has several guide grooves symmetrically opened on both sides, and the upper end surface of the horizontal plate is provided with a storage groove corresponding to the connecting through hole.

[0018] By adopting the above technical solution, the guide groove provides a sliding track for the guide rails on the hanging plate base, ensuring that the hanging plate base can slide smoothly and steadily. The storage groove can store bolts and other connecting parts, preventing the connecting parts from protruding and affecting the overall aesthetics and safety of the device.

[0019] Optionally, the hanging plate base includes a bent frame plate and a guide slide bar, wherein the guide slide bar is fixedly installed on one side of the bent frame plate and slidably installed in the guide groove.

[0020] By adopting the above technical solution, the bent frame plate provides an installation position for the auxiliary binding straps to fix the communication optical cable. The cooperation between the guide slide and the guide groove allows the hanging plate base to slide flexibly on the horizontal plate, facilitating the adjustment of the laying position and spacing of the optical cable.

[0021] Optionally, the driving component includes a middle base plate and a connecting screw. The connecting screw is symmetrically installed on both sides of the middle base plate and is rotatably connected to the middle base plate. A threaded sleeve that mates with the connecting screw is fixedly installed on the upper end face of the bent frame plate.

[0022] By adopting the above technical solution, the driving component includes a middle base plate and connecting screws. The connecting screws are symmetrically installed on both sides of the middle base plate and rotatably connected to the middle base plate. A threaded sleeve that mates with the connecting screws is fixedly installed on the upper surface of the bent frame plate. By rotating the connecting screws, the threaded sleeves can drive the hanging plate seat to slide on the horizontal plate, realizing precise adjustment of the hanging plate seat position.

[0023] In summary, this application includes at least one of the following beneficial technical effects: The position of the hanging plate can be flexibly adjusted via the driving component, thereby facilitating the adjustment of the laying spacing and position of the communication optical cable and adapting to different laying requirements. Furthermore, the connection between the center frame and the positioning strip via clamping and bolts simplifies and speeds up installation and disassembly, reducing construction difficulty and time costs. Simultaneously, the robust connection between components such as the base, positioning strip, and center frame ensures the stability of the entire cable routing device during use, reducing the risk of optical cable damage due to device vibration. Attached Figure Description

[0024] Figure 1 This is a perspective view of the overall structure in the embodiments of this application.

[0025] Figure 2 yes Figure 1 Side view of the device shown.

[0026] Figure 3 This is a perspective view of the cooperation between the central frame and the drive component in the embodiments of this application.

[0027] Figure 4 This is a perspective view of the hanging platform in the embodiments of this application.

[0028] Figure 5 yes Figure 4 Side view of the device shown.

[0029] Explanation of reference numerals in the attached drawings: 1. Base; 11. Main base plate; 12. Bracket; 2. Positioning strip; 21. Vertical plate; 22. Top plate; 221. Threaded groove; 3. Middle frame base; 31. Clamping vertical plate; 311. Clamping groove; 312. Connecting through hole; 32. Horizontal plate; 321. Guide groove; 322. Storage groove; 4. Hanging plate base; 41. Bending frame plate; 411. Threaded sleeve; 42. Guide slide; 5. Driving component; 51. Middle base plate; 52. Connecting screw; 6. Auxiliary strap. Detailed Implementation

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] This application discloses a routing device for communication optical cables. (Refer to...) Figure 1 , Figure 2 and Figure 3As shown, a cable routing device for communication optical cables includes a base 1. A positioning strip 2 is horizontally arranged in the middle of the upper surface of the base 1. The positioning strip 2 is integrally formed with the base 1. Several intermediate frame seats 3 are installed on the positioning strip 2. The intermediate frame seats 3 are inserted and fixedly connected to the positioning strip 2. Two sets of hanging plate seats 4 are symmetrically installed on both sides of the intermediate frame seats 3. The hanging plate seats 4 are slidably connected to the intermediate frame seats 3. A driving component 5 for adjusting the position of the hanging plate seats 4 is installed on the intermediate frame seats 3. Several auxiliary straps 6 are evenly installed at the lower end of the hanging plate seats 4. The two ends of the auxiliary straps 6 are fixedly connected to the hanging plate seats 4. The base 1 ensures that the cable can be suspended and fixed to the roof or other locations using slings or other equipment during installation. The base 1 then provides a stable mounting point for the positioning strip 2, ensuring its stable operation. The positioning strip 2 also facilitates the insertion and installation of the intermediate frame 3. After several sets of intermediate frame 3 are inserted and installed onto the positioning strip 2, they can be locked together using vertical mounting bolts. Finally, two sets of hanging plate seats 4 are symmetrically installed on both sides of the intermediate frame 3. The position of the hanging plate seats 4 is adjusted according to the number of communication optical cables to be routed. Adjustment is easily achieved using the drive unit 5. Finally, auxiliary binding straps 6 are evenly installed at the lower end of the hanging plate seats 4 to bind the communication optical cables, securing them to the hanging plate seats 4 and preventing them from swaying or shifting during use. The auxiliary binding straps 6 can be made of nylon cable ties, which have advantages such as high strength, wear resistance, and durability. The width can be selected according to the diameter of the optical cable. The base 1 includes a main base plate 11 and a bracket 12. The bracket 12 is evenly installed on the lower end face of the main base plate 11 and is fixedly connected to the main base plate 11. The base 1 consists of the main base plate 11 and the bracket 12, with the bracket 12 evenly installed on the lower end face of the main base plate 11 and fixedly connected. The main base plate 11 provides a stable support plane for the entire cable routing device, ensuring that the device can be placed stably. The bracket 12 further enhances the stability of the base 1, distributes the weight of the device, and reduces the pressure on the installation ground. At the same time, the bracket 12 is designed to facilitate better suspension installation. The main base plate 11 can be made of high-strength steel plate, and the thickness can be selected according to the actual load-bearing requirements, generally 5-10mm; the bracket 12 can be made of channel steel, and the model can be selected according to the size and load-bearing requirements of the main base plate 11, such as No. 8 channel steel.

[0032] Reference Figure 1 and Figure 2As shown, the positioning strip 2 includes a vertical plate 21 and a top plate 22. The vertical plate 21 is vertically installed on the upper surface of the base 1, and the top plate 22 is installed on the upper surface of the vertical plate 21, and the top plate 22 is integrally formed with the vertical plate 21. The vertical plate 21 provides vertical support for the top plate 22, enabling the top plate 22 to be stably positioned above the base 1. The top plate 22 provides a positioning and support platform for the installation of the intermediate frame 3, ensuring that the intermediate frame 3 can be accurately installed in the designated position. The vertical plate 21 and the top plate 22 can be made of aluminum alloy, which has the advantages of light weight, high strength, and corrosion resistance. The thickness can be selected according to actual needs, generally 3-5mm.

[0033] Reference Figure 3As shown, the intermediate frame 3 includes a clamping vertical plate 31 and a horizontal plate 32 for sliding installation of the hanging plate 4. The clamping vertical plate 31 is clamped and fixed on the top plate 22, and the horizontal plate 32 is installed on the upper end face of the clamping vertical plate 31, and the horizontal plate 32 is integrally formed with the clamping vertical plate 31. The clamping vertical plate 31 is clamped and fixed on the top plate 22, and the horizontal plate 32 is integrally formed with the clamping vertical plate 31. The clamping vertical plate 31 cooperates with the threaded groove 221 on the top plate 22 through the clamping groove 311 and the connecting through hole 312, realizing a firm connection between the intermediate frame 3 and the positioning strip 2. The horizontal plate 32 provides a track and support for the sliding of the hanging plate 4, allowing the hanging plate 4 to move flexibly in the horizontal direction. The clamping vertical plate 31 and the horizontal plate 32 can be made of stainless steel, which has good corrosion resistance and strength, and the thickness can be selected according to actual needs, generally 4-6mm. The lower end face of the clamping vertical plate 31 has a clamping groove 311, and several connecting through holes 312 are evenly provided on the clamping vertical plate 31. The upper end face of the top plate 22 is provided with a threaded groove 221 corresponding to the connecting through holes 312. The clamping groove 311 can fit tightly against the top plate 22, increasing the stability of the connection. The connecting through holes 312 and the threaded groove 221 are connected by bolts, which further strengthens the connection strength between the middle frame 3 and the positioning strip 2 and prevents the middle frame 3 from loosening during use. The bolts can be high-strength bolts of M8-M12 made of carbon steel. Several guide grooves 321 are symmetrically provided on both sides of the horizontal plate 32, and the upper end face of the horizontal plate 32 is provided with a receiving groove 322 corresponding to the connecting through holes 312. The horizontal plate 32 has several guide grooves 321 symmetrically formed on both sides, and a storage groove 322 corresponding to the connecting through hole 312 is provided on its upper end surface. The guide grooves 321 provide a sliding track for the guide rails 42 on the hanging plate base 4, ensuring that the hanging plate base 4 can slide smoothly and steadily. The storage groove 322 can store bolts and other connecting parts, preventing the connecting parts from protruding and affecting the overall aesthetics and safety of the device. The width of the guide grooves 321 of the horizontal plate 32 can be designed according to the size of the guide rails 42. The depth of the storage groove 322 can be designed according to the length of the bolts.

[0034] Reference Figure 4 and Figure 5As shown, the hanging plate base 4 includes a bent frame plate 41 and a guide slide 42. The guide slide 42 is fixedly installed on one side of the bent frame plate 41 and slidably installed in the guide groove 321. The bent frame plate 41 provides an installation position for the auxiliary binding strap 6 for fixing the communication optical cable. The cooperation between the guide slide 42 and the guide groove 321 allows the hanging plate base 4 to slide flexibly on the horizontal plate 32, facilitating the adjustment of the laying position and spacing of the optical cable. The bent frame plate 41 can be made of plastic, such as ABS plastic, which has the advantages of light weight, low cost, and easy processing; the guide slide 42 can be made of nylon material, which has good wear resistance and self-lubricating properties.

[0035] Reference Figure 1 and Figure 2 As shown, the driving component 5 includes a middle base plate 51 and a connecting screw 52. The connecting screw 52 is symmetrically installed on both sides of the middle base plate 51 and is rotatably connected to the middle base plate 51. A threaded sleeve 411 that mates with the connecting screw 52 is fixedly installed on the upper end face of the bent frame plate 41. Rotating the connecting screw 52, ​​through the action of the threaded sleeve 411, can drive the hanging plate seat 4 to slide on the horizontal plate 32, achieving precise adjustment of the position of the hanging plate seat 4. The middle base plate 51 can be made of cast iron, which has high strength and stability; the connecting screw 52 can be a trapezoidal threaded screw, and the model can be selected according to actual adjustment requirements. The threaded sleeve 411 can be made of copper, which has good wear resistance and thread fit performance.

[0036] The implementation principle of the optical cable routing device in this application embodiment is as follows: During actual optical cable laying, the guide slide 42 of the hanging plate base 4 is slidably installed in the guide grooves 321 on both sides of the horizontal plate 32 of the intermediate frame base 3. By rotating the connecting screw 52, ​​the hanging plate base 4 is driven to slide on the horizontal plate 32, thereby precisely adjusting the position of the hanging plate base 4 to adapt to different optical cable laying requirements. After the position of the hanging plate base 4 is adjusted, the optical cable is tied and fixed to the bent frame plate 41 of the hanging plate base 4 using the auxiliary strap 6, and it can be used normally.

[0037] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A cable routing device for communication optical cables, comprising a base (1), characterized in that: A positioning strip (2) is horizontally arranged in the middle of the upper surface of the base (1). The positioning strip (2) is integrally formed with the base (1). Several middle frame seats (3) are installed on the positioning strip (2). The middle frame seats (3) are inserted and fixedly connected to the positioning strip (2). Two sets of hanging plate seats (4) are symmetrically installed on both sides of the middle frame seats (3). The hanging plate seats (4) are slidably connected to the middle frame seats (3). A driving component (5) for adjusting the position of the hanging plate seats (4) is installed on the middle frame seats (3). Several auxiliary straps (6) are evenly installed at the lower end of the hanging plate seats (4). The two ends of the auxiliary straps (6) are fixedly connected to the hanging plate seats (4).

2. The cable routing device for a communication optical cable according to claim 1, characterized in that: The base (1) includes a main base plate (11) and a bracket (12). The bracket (12) is evenly installed on the lower end face of the main base plate (11) and is fixedly connected to the main base plate (11).

3. The cable routing device for a communication optical cable according to claim 2, characterized in that: The positioning strip (2) includes a vertical plate (21) and a top plate (22). The vertical plate (21) is vertically installed on the upper surface of the base (1), and the top plate (22) is installed on the upper surface of the vertical plate (21). The top plate (22) and the vertical plate (21) are integrally formed.

4. The cable routing device for a communication optical cable according to claim 3, characterized in that: The middle frame (3) includes a clamping vertical plate (31) and a horizontal plate (32) for sliding installation of the hanging plate seat (4). The clamping vertical plate (31) is clamped and fixed on the top plate (22). The horizontal plate (32) is installed on the upper end surface of the clamping vertical plate (31), and the horizontal plate (32) and the clamping vertical plate (31) are integrally formed.

5. The cable routing device for a communication optical cable according to claim 4, characterized in that: The clamping vertical plate (31) has a clamping groove (311) on its lower end face, and a number of connecting through holes (312) are evenly provided on the clamping vertical plate (31). The top plate (22) has a threaded groove (221) corresponding to the connecting through hole (312) on its upper end face.

6. The cable routing device for a communication optical cable according to claim 5, characterized in that: The horizontal plate (32) has several guide grooves (321) symmetrically opened on both sides, and the upper end surface of the horizontal plate (32) is provided with a storage groove (322) corresponding to the connecting through hole (312).

7. The cable routing device for a communication optical cable according to claim 6, characterized in that: The hanging plate base (4) includes a bent frame plate (41) and a guide slide (42). The guide slide (42) is fixedly installed on one side of the bent frame plate (41) and is slidably installed in the guide groove (321).

8. The cable routing device for a communication optical cable according to claim 7, characterized in that: The driving component (5) includes a middle seat plate (51) and a connecting screw (52). The connecting screw (52) is symmetrically installed on both sides of the middle seat plate (51) and is rotatably connected to the middle seat plate (51). A threaded sleeve (411) that cooperates with the connecting screw (52) is fixedly installed on the upper end face of the bent frame plate (41).