Optical fiber main distribution frame equipped with wire arrangement structure

By introducing a combination structure of guide rods, screws, dual-axis motors, and cable management shells into the fiber optic distribution frame, the problem of messy fiber optic cables is solved, achieving neat and orderly fiber optic cabling and improving maintenance convenience and signal quality.

CN224232015UActive Publication Date: 2026-05-12SHENZHEN SOPTO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SOPTO TECH CO LTD
Filing Date
2025-06-17
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

During the installation and use of traditional fiber optic distribution frames, fiber optic cables are often placed haphazardly, resulting in messy wiring, affecting aesthetics and ease of maintenance, and may also lead to cable damage and signal attenuation.

Method used

A fiber optic distribution frame equipped with a cable management structure was designed. It adopts a combination of guide rod, screw, dual-axis motor, sliding plate and cable management shell. The dual-axis motor drives the screw to move the sliding plate and cable management shell to limit and organize the fiber optic cables, ensuring that the cabling is neat and orderly.

Benefits of technology

It improves the management efficiency of fiber optic cables, reduces signal interference and safety hazards, and enhances the practicality and reliability of fiber optic distribution frames.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of communication network infrastructure, and especially relates to an optical fiber main distribution frame equipped with a wire arrangement structure. The utility model provides an optical fiber main distribution frame equipped with a wire arrangement structure, which comprises an optical fiber main distribution frame, a plurality of soft cushions, a support frame and the like, the optical fiber main distribution frame is connected with the plurality of soft cushions, and the rear side of the optical fiber main distribution frame is connected with the support frame. Through arrangement of a guide rod, screw rods, a double-shaft motor, sliding plates and a wire arrangement shell, an output shaft of the double-shaft motor drives the two screw rods to rotate, the two screw rods drive the two sliding plates and the wire arrangement shell to move along the guide rod until the two wire arrangement shell moves to be in contact with an optical fiber cable, and the optical fiber cable is limited and arranged, so that neat and orderly wiring is ensured; according to the design, the management efficiency of the optical fiber cables is improved, signal interference and potential safety hazards caused by disordered wiring are effectively reduced, and the practicability and reliability of the optical fiber main distribution frame are remarkably improved.
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Description

Technical Field

[0001] This utility model relates to the field of communication network infrastructure, and in particular to a fiber optic distribution frame equipped with a cable management structure. Background Technology

[0002] Fiber optic distribution frames equipped with cable management structures are devices used to manage and optimize fiber optic cabling, playing a crucial role in communication network infrastructure. These distribution frames not only provide a centralized location for connecting, distributing, and managing fiber optic lines, but also emphasize the importance of orderly organizing fiber optic cables.

[0003] In the current construction of communication network infrastructure, the fiber optic distribution frame, as one of the core components, undertakes the important responsibility of centralized management and distribution of fiber optic lines. However, traditional fiber optic distribution frames have revealed a significant problem in actual installation and use: a large number of fiber optic cables are often placed haphazardly, resulting in messy cabling. This lack of systematic and organized cabling not only affects the overall aesthetics of the equipment room, but more importantly, it brings great inconvenience to subsequent maintenance work. In addition, messy cabling may lead to excessive compression or bending between cables, which may not only damage the optical fiber, but also cause signal attenuation or crosstalk, affecting the quality of data transmission.

[0004] To address the aforementioned issues, it is necessary to design a fiber optic distribution frame equipped with a cable management structure that can limit and organize fiber optic cables. Utility Model Content

[0005] To overcome the problem of messy cabling caused by the disorganized placement of large numbers of fiber optic cables, which not only affects the overall aesthetics of the computer room but also causes great inconvenience to subsequent maintenance, this utility model provides a fiber optic distribution frame equipped with a cable management structure.

[0006] The technical solution of this utility model is as follows: a fiber optic distribution frame equipped with a cable management structure, comprising a fiber optic distribution frame, soft pads, a support frame, a guide rod, screws, a dual-axis motor, sliding plates, and cable management shells. Multiple soft pads are connected to the fiber optic distribution frame. A support frame is connected to the rear side of the fiber optic distribution frame. A guide rod is connected to the lower side of the support frame. A dual-axis motor is installed on the rear side of the support frame. Screws are connected to the output shafts at both ends of the dual-axis motor. Sliding plates are slidably connected to the two screws. The two sliding plates are slidably connected to the guide rods. Multiple cable management shells are connected between the two sliding plates.

[0007] Furthermore, it also includes connecting blocks, connecting plates, sliding rods, locking blocks, elastic elements, mounting blocks, hinge plates, support blocks, connecting frames, and mounting bases. Connecting plates are symmetrically connected to the left and right sides of the outer side of the fiber optic main distribution frame. Connecting blocks are symmetrically connected to the front and rear sides of the outer side of the two connecting plates. Each connecting block is slidably connected to a sliding rod. A locking block is connected to one end of every two sliding rods facing each other. An elastic element is connected between each locking block and the corresponding connecting block. Mounting blocks are symmetrically connected to the left and right sides of the outer side of the two connecting plates. A hinge plate is hinged to each of the two mounting blocks. A support block is rotatably connected to each of the two hinge plates. A connecting frame is rotatably connected to each of the two connecting frames. A mounting base is rotatably connected to each of the two connecting frames. Each locking block engages with the corresponding mounting base.

[0008] Furthermore, it also includes anti-slip mats; the bottom of the fiber optic distribution frame is connected to an anti-slip mat.

[0009] Furthermore, it also includes protective pads, with protective pads connected to the inner sides of each pair of cable management shells.

[0010] Furthermore, it also includes handles, with each sliding rod having a handle at its outer end.

[0011] Furthermore, both support blocks have multiple openings.

[0012] Furthermore, several of the cushions are made of foam plastic.

[0013] Furthermore, it also includes a protective shell, with the dual-axis motor wrapped in a protective shell.

[0014] The beneficial effects of this utility model are as follows: Through the arrangement of guide rods, screws, dual-axis motors, sliding plates, and cable management shells, the output shaft of the dual-axis motor drives two screws to rotate. The two screws drive two sliding plates and cable management shells to move along the guide rods until the two cable management shells move to contact the optical fiber cables, thereby limiting and organizing the optical fiber cables, ensuring neat and orderly cabling, and facilitating subsequent maintenance and management. This design not only improves the management efficiency of optical fiber cables but also effectively reduces signal interference and safety hazards caused by messy cabling, significantly enhancing the practicality and reliability of the optical fiber distribution frame. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0016] Figure 2 This is a three-dimensional structural diagram of the fiber optic distribution frame, anti-slip pad, and soft pad of this utility model.

[0017] Figure 3 This is a cross-sectional view of the protective shell of this utility model.

[0018] Figure 4This is a three-dimensional structural diagram of the connecting block, connecting plate, and sliding rod of this utility model.

[0019] Figure 5 This is a three-dimensional structural diagram of the mounting block, hinge plate, and support block of this utility model.

[0020] Explanation of reference numerals in the attached drawings: 1: Fiber optic main distribution frame; 101: Anti-slip pad; 2: Soft pad; 3: Support frame; 4: Guide rod; 5: Screw; 6: Dual-axis motor; 61: Protective shell; 7: Sliding plate; 8: Cable management shell; 81: Protective pad; 9: Connecting block; 91: Connecting plate; 10: Sliding rod; 1001: Handle; 11: Locking block; 12: Elastic element; 13: Mounting block; 14: Hinge plate; 15: Support block; 16: Connecting frame; 17: Mounting base. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Example: A fiber optic distribution frame equipped with a cable management structure, such as... Figures 1-5As shown, the system includes a fiber optic main distribution frame 1, an anti-slip pad 101, a soft pad 2, a support frame 3, a guide rod 4, a screw 5, a dual-axis motor 6, a protective shell 61, a sliding plate 7, a cable management shell 8, a protective pad 81, a connecting block 9, a connecting plate 91, a sliding rod 10, a handle 1001, a locking block 11, an elastic element 12, a mounting block 13, a hinge plate 14, a support block 15, a connecting frame 16, and a mounting base 17. The fiber optic main distribution frame 1 serves as the main frame of the entire device, used for centralized management and distribution of fiber optic lines. It is the core equipment for fiber optic cabling. The bottom of the fiber optic main distribution frame 1 is connected to an anti-slip pad 101, which increases friction with the ground, preventing slippage during use and improving overall stability. Multiple soft pads 2, made of foam plastic, are connected to the patch panel 1. These pads protect the fiber optic cables from direct contact with hard surfaces, preventing damage or wear. A support frame 3 is connected to the rear of the fiber optic patch panel 1, and a guide rod 4 is connected to the lower side of the support frame 3. The guide rod 4 guides the movement of the sliding plate 7. A dual-axis motor 6 is installed at the rear of the support frame 3. The dual-axis motor 6 is covered by a protective shell 61, which protects the motor. Screws 5 are connected to the output shafts at both ends of the dual-axis motor 6. Sliding plates 7 are slidably connected to both screws 5. The two sliding plates 7 are slidably connected to the guide rod 4. Multiple cable management shells 8 are connected between the two sliding plates 7. These shells are used to manage the fiber optic cables. Cables are positioned and organized to ensure neat and orderly cabling for easy maintenance. Protective pads 81 are attached to the inner sides of every two cable management shells 8. These pads prevent fiber optic cables from being squeezed or scratched during organization and positioning, providing cushioning and protection. Connecting plates 91 are symmetrically connected to the left and right sides of the outer side of the fiber optic main distribution frame 1. Connecting blocks 9 are symmetrically connected to the front and rear sides of the outer sides of the two connecting plates 91. Each connecting block 9 has a sliding rod 10 slidably connected to it. Each sliding rod 10 has a handle 1001 at its outer end. A locking block 11 is connected to the opposite end of every two sliding rods 10. The locking block 11 is used to lock or release the mounting base 17, ensuring the stability of the mounting base 17 in its unfolded or folded state. Each locking block 11 is connected to a corresponding... Elastic elements 12 are connected between the connecting blocks 9. Mounting blocks 13 are symmetrically connected to the outer sides of the two connecting plates 91. Hinges 14 are hinged to the two mounting blocks 13. The hinges 14 are used to support the unfolding and folding of the support blocks 15, ensuring that the support blocks 15 can be firmly fixed to the ground. Support blocks 15 are rotatably connected to the two hinges 14. The support blocks 15 provide additional support force for the device, ensuring the stability of the overall structure. Multiple openings are provided on the two support blocks 15. Connecting frames 16 are rotatably connected to the two hinges 14. Connecting frames 16 are used to adjust the angle of the mounting base 17. Mounting bases 17 are rotatably connected to the two connecting frames 16. Each locking block 11 is engaged with the corresponding mounting base 17.

[0023] When this device is needed to manage fiber optic cables, the operator first pulls the two upper handles 1001, causing the connected sliding rod 10 to move outward. The sliding rod 10 then moves the corresponding locking block 11 outward, compressing the two upper elastic elements 12. When the two upper locking blocks 11 move to the appropriate position, the mounting base 17 is no longer locked, and the operator can then pull the hinge plate 14, causing it to rotate along the mounting block 13 until the support block 15 contacts the ground. During this process, the operator releases the two upper handles 1001, and the two upper elastic elements 12 reset. The two upper sliding rods 10 drive the connected locking blocks 11 and handles 1001 to move inward until they reach their initial positions. Then, the operator rotates the connecting frame 16 and mounting base 17 until the connecting frame 16 rotates to a suitable angle. Next, the mounting base 17 rotates along the connecting frame 16 until it contacts the two lower locking blocks 11, applying pressure to them. This causes the lower locking blocks 11 to drive the connected sliding rods 10 and handles 1001 to move outward. The two lower elastic elements 1... 2. After the mounting base 17 is fully positioned between the two lower locking blocks 11 and in contact with the connecting plate 91, the mounting base 17 is released. When the two lower locking blocks 11 are no longer compressed, under the reset action of the two lower elastic elements 12, the two lower sliding rods 10 drive the connected locking blocks 11 and handle 1001 to move inward until the two lower locking blocks 11 are firmly fixed inside the mounting base 17, completing the stable fixing of the overall structure. Repeat the above steps to perform the same operation on the other side support block 15 and mounting base 17, so that the entire device can be stably fixed on the ground, paving the way for subsequent fiber optic cable installation. After preparation, the staff placed multiple fiber optic cables on the corresponding soft pads 2 to avoid direct contact with hard surfaces and potential damage. Then, the fiber optic cables on the pads 2 were arranged and pulled back to ensure neat alignment. Next, the dual-axis motor 6 was started. The output shafts at both ends of the motor 6 drove two screws 5 to rotate. The two screws 5 then moved two sliding plates 7 and cable management shells 8 inward along the guide rod 4. When the two cable management shells 8 reached contact with the fiber optic cables and limited their movement, the dual-axis motor 6 was turned off. This ensured that the fiber optic cables were effectively organized and limited, facilitating subsequent maintenance and management.

[0024] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent changes or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.

Claims

1. A fiber optic distribution frame equipped with a cable management structure, characterized in that, It includes a fiber optic main distribution frame (1), soft pads (2), support frame (3), guide rod (4), screw (5), dual-axis motor (6), sliding plate (7) and cable management shell (8). The fiber optic main distribution frame (1) is provided with multiple soft pads (2). The support frame (3) is fixedly connected to the rear side of the fiber optic main distribution frame (1). The guide rod (4) is fixedly connected to the lower side of the support frame (3). The dual-axis motor (6) is installed on the rear side of the support frame (3). Screws (5) are connected to the output shafts at both ends of the dual-axis motor (6). Sliding plates (7) are slidably connected to the two screws (5). The two sliding plates (7) are slidably connected to the guide rod (4). Multiple cable management shells (8) are fixedly connected between the two sliding plates (7).

2. The fiber optic distribution frame equipped with a cable management structure according to claim 1, characterized in that, It also includes connecting blocks (9), connecting plates (91), sliding rods (10), locking blocks (11), elastic elements (12), mounting blocks (13), hinge plates (14), support blocks (15), connecting frames (16), and mounting bases (17). Connecting plates (91) are symmetrically fixedly connected to the outer side of the fiber optic main distribution frame (1). Connecting blocks (9) are symmetrically fixedly connected to the outer side of the two connecting plates (91) from front to back. Each connecting block (9) is slidably connected to a sliding rod (10). Each pair of sliding rods (10) is fixedly connected to a locking block at one end facing each other. Each block (11) is provided with an elastic element (12) between each block (11) and the corresponding connecting block (9). Mounting blocks (13) are symmetrically installed on the outer sides of the two connecting plates (91). A hinge plate (14) is hinged on each of the two mounting blocks (13). A support block (15) is rotatably connected to each of the two hinge plates (14). A connecting frame (16) is rotatably connected to each of the two hinge plates (14). A mounting seat (17) is rotatably connected to each of the two connecting frames (16). Each block (11) is engaged with the corresponding mounting seat (17).

3. A fiber optic distribution frame equipped with a cable management structure according to claim 2, characterized in that, It also includes an anti-slip pad (101), and the bottom of the fiber optic distribution frame (1) is provided with an anti-slip pad (101).

4. A fiber optic distribution frame equipped with a cable management structure according to claim 3, characterized in that, It also includes a protective pad (81), with a protective pad (81) attached to the inner side of each pair of cable management shells (8).

5. A fiber optic distribution frame equipped with a cable management structure according to claim 4, characterized in that, It also includes a handle (1001), with a handle (1001) at the outer end of each sliding rod (10).

6. A fiber optic distribution frame equipped with a cable management structure according to claim 5, characterized in that, Multiple openings are provided on both support blocks (15).

7. A fiber optic distribution frame equipped with a cable management structure according to claim 6, characterized in that, Multiple cushions (2) are made of foam plastic.

8. A fiber optic distribution frame equipped with a cable management structure according to claim 7, characterized in that, It also includes a protective shell (61), and the outer side of the dual-axis motor (6) is wrapped with a protective shell (61).