Optical network communication mechanism convenient to install

The optical network communication mechanism designed with V-shaped blocks and guide structures solves the problems of complex installation and inconvenient maintenance of traditional optical network communication mechanisms, realizes fast installation and convenient maintenance, and improves the stability and maintenance efficiency of the equipment.

CN223401079UActive Publication Date: 2025-09-30WUXI ZHULIANGUANG NETWORK TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422857524.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-09-30
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Traditional optical network communication mechanisms have complex installation structures, are difficult to install, and are inconvenient to maintain, which affects the normal operation and maintenance efficiency of communication equipment.

Method used

The optical network communication mechanism adopts V-block, rectangular block and guide structure design, including sliding cover, guide frame and threaded connection. Through precise alignment and multi-point fixation, it simplifies the installation process and improves maintenance convenience.

Benefits of technology

It realizes the rapid installation and convenient maintenance of optical network communication mechanisms, reduces the difficulty of operation, improves the installation accuracy and maintenance efficiency, enhances the stability and durability of the mechanism, and optimizes the cable wiring and equipment aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of optical network communication, and discloses an optical network communication mechanism convenient to install, which comprises an optical network communication box, a transverse support plate and a guide frame, and is characterized in that the optical network communication box is provided with a sliding cover plate for sealing an inner cavity of the optical network communication box; the transverse support plate is limited and fixed on the rear end face of the optical network communication box; v-shaped guide blocks A extending outwards are arranged on the two sides of the transverse supporting plate, and isosceles trapezoid guide grooves A are formed in the V-shaped guide blocks A; the two guide frames are matched with the V-shaped guide blocks A on the two sides of the transverse supporting plate to slide in a guiding mode. A guide rod in threaded connection with the V-shaped guide block A penetrates through a longitudinal straight groove hole in the guide frame, and the transverse supporting plate is locked and fixed to the guide support by rotating a handle located at the top of the guide rod and located above the guide frame. The arrangement of the guide frame and the handle enables the optical network communication box to be conveniently installed and fixed or pulled out for maintenance, and the optical network communication box is simple in installation structure and convenient to install and maintain.
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Description

Technical Field

[0001] The utility model belongs to the technical field of optical network communications, and in particular relates to an optical network communication mechanism that is easy to install. Background Art

[0002] With the rapid development of communication technology, optical network communication equipment plays an increasingly important role in modern communication systems. To ensure the efficient and stable operation of optical networks, optical network communication equipment requires regular inspection and maintenance. Traditional optical network communication mechanisms often present certain inconveniences during installation and maintenance, such as complex structures, difficult installation, and inconvenient maintenance. These issues hinder the normal operation and maintenance efficiency of communication equipment.

[0003] Traditional optical network communication mechanisms typically require multi-step assembly, including precise alignment and securing of multiple components. This makes the installation process cumbersome and time-consuming. Due to poor structural design, inspection and maintenance of the internal components of optical network communication boxes require disassembly of multiple fixed parts, increasing the difficulty and complexity of maintenance.

[0004] In view of this, an optical network communication mechanism that is easy to install is proposed. Utility Model Content

[0005] The present invention aims to solve the technical problem of inconvenience in installation and maintenance caused by the complex installation structure in the above-mentioned prior art.

[0006] To achieve the above purpose, the present invention provides the following technical solutions:

[0007] An optical network communication mechanism that is easy to install, comprising an optical network communication box, a transverse support plate and a guide frame, wherein the optical network communication box is provided with a sliding cover plate for sealing its inner cavity;

[0008] The horizontal support plate is fixed on the rear end face of the optical network communication box; both sides of the horizontal support plate are provided with V-shaped guide blocks A extending outward, and the V-shaped guide blocks A are provided with isosceles trapezoidal guide grooves A;

[0009] The guide frame is provided with two V-shaped guide blocks A on both sides of the horizontal support plate to guide the sliding;

[0010] The guide rod threadedly connected to the V-shaped guide block A passes through the longitudinal straight slot hole on the guide frame, and the horizontal support plate is locked and fixed to the guide bracket by rotating the handle located at the top of the guide rod and above the guide frame.

[0011] Preferably, the rear end face of the optical network communication box is provided with a V-shaped groove located in the center and rectangular concave grooves symmetrically arranged on both sides, and the horizontal support plate is provided with a V-shaped block positioned and inserted into the V-shaped groove and a rectangular block inserted into the rectangular concave groove.

[0012] Preferably, convex-shaped limit seats with holes are provided at the upper and lower ends of the center position of the rear end face of the optical network communication box, and two open grooves for inserting the limit seats with holes are provided at the upper and lower ends of the center position of the horizontal support plate. A mounting hole A is provided on the horizontal support plate and located inside the two open grooves. The horizontal support plate and the optical network communication box are fixed together by a screw A that passes through the limit seat with holes and the mounting hole A.

[0013] Preferably, V-shaped guide blocks B extending outward are provided on the left and right sides of the rear end face of the optical network communication box, and an isosceles trapezoidal guide groove B and a straight slot connected to the isosceles trapezoidal guide groove B are provided on the V-shaped guide block B. A mounting hole B is provided on the V-shaped guide block A, and the transverse support plate and the optical network communication box are fixed together by a screw B passing through the straight slot and the mounting hole B.

[0014] Preferably, both sides of the optical network communication box are provided with avoidance grooves for fitting the screw rod B. The design of the avoidance grooves ensures that the screw rod B will not interfere with other parts of the optical network communication box during installation, thus ensuring a smooth installation process.

[0015] Preferably, the guide frame is provided with a V-shaped guide groove for slidingly guiding the V-shaped guide block A and the V-shaped guide block B, and the guide frame is provided with an isosceles trapezoidal guide rail located inside the V-shaped guide groove and slidingly guiding the isosceles trapezoidal guide groove A and the isosceles trapezoidal guide groove B. The design of the V-shaped guide groove and the isosceles trapezoidal guide rail on the guide frame provides precise guidance, ensuring the stability of the transverse support plate during the sliding process.

[0016] Preferably, two mounting plates are provided on the front and rear sides of the guide frame, which are symmetrically arranged up and down. The mounting plates are installed on the rack inside the optical network communication chassis.

[0017] Preferably, the horizontal support plate is provided with a wiring harness insertion hole matching the wiring of the optical network communication box, making the wiring work of the optical network communication box more convenient.

[0018] Compared with the prior art, the technical effects and advantages of the utility model are:

[0019] This easy-to-install optical network communication mechanism utilizes precisely designed V-shaped blocks, rectangular blocks, and guide structures. The transverse support plates can be quickly and accurately aligned and secured to the optical network communication box, significantly simplifying the installation process and saving time and manpower. The sliding cover design allows technicians to easily open and close the optical network communication box, facilitating inspection and maintenance of internal components and improving maintenance efficiency.

[0020] The V-shaped guide grooves and isosceles trapezoidal guide rails on the guide frame provide precise guidance, reducing wear between the guide block and the guide groove, and improving the durability of the mechanism. The slidable transverse support plate allows the optical network communication box to be adjusted as needed to adapt to different installation environments, increasing installation flexibility. The transverse support plate can be locked with a simple turn of the handle, reducing operational difficulty and improving the operator experience.

[0021] The through-hole design of screws A and B provides multi-point fixation, strengthening the connection between the transverse support plate and the optical network communication box, and improving the stability and vibration resistance of the entire mechanism. The design of the harness insertion hole makes wiring in the optical network communication box more convenient, helps optimize cable routing, improves the neatness and aesthetics of the chassis interior, and also reduces interference of cables on equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a structural diagram of the utility model;

[0023] Figure 2 This is a diagram of the optical network communication box of the utility model being pulled outward;

[0024] Figure 3 This is an exploded view of the present invention.

[0025] Figure 4 This is a structural diagram of the optical network communication box of the utility model;

[0026] Figure 5 This is a structural diagram of the transverse support plate of the utility model;

[0027] Figure 6 This is a structural diagram of the guide frame of the utility model.

[0028] In the figure: 1. Optical network communication box; 11. Sliding cover; 12. V-shaped groove; 13. Rectangular concave groove; 14. Limit seat with hole; 15. V-shaped guide block B; 16. Isosceles trapezoidal guide groove B; 17. Straight groove; 18. Avoidance groove; 2. Horizontal support plate; 21. Handle; 22. Opening groove; 23. Mounting hole A; 24. V-shaped guide block A; 25. Isosceles trapezoidal guide groove A; 26. Guide rod; 27. V-shaped block; 28. Rectangular block; 29. ​​Mounting hole B; 210. Wire harness insertion hole; 3. Guide frame; 31. Longitudinal straight groove hole; 33. V-shaped guide groove; 34. Isosceles trapezoidal guide rail; 4. Mounting plate. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] The following is combined with Figure 1-6 To further explain this application,

[0031] The embodiment of the present application discloses an optical network communication mechanism that is easy to install, including an optical network communication box 1, a horizontal support plate 2 and a guide frame 3; the horizontal support plate 2 is fixed to the rear end surface of the optical network communication box 1;

[0032] The optical network communication box 1 is provided with a sliding cover 11 that closes its inner chamber; opening the sliding cover 11 facilitates inspection and maintenance of the internal components of the optical network communication box 1;

[0033] The rear end face of the optical network communication box 1 is provided with a V-shaped groove 12 located at the center and a rectangular concave groove 13 symmetrically arranged on both sides. The transverse support plate 2 is provided with a V-shaped block 27 positioned and inserted into the V-shaped groove 12 and a rectangular block 28 inserted into the rectangular concave groove 13.

[0034] Convex-shaped stoppers 14 with holes are provided at the upper and lower ends of the center position of the rear end face of the optical network communication box 1. Two open slots 22 for inserting the stoppers 14 with holes are provided at the upper and lower ends of the center position of the transverse support plate 2. Mounting holes A23 are provided on the transverse support plate 2 and located inside the two open slots 22. The transverse support plate 2 and the optical network communication box 1 are fixed together by screws A that pass through the stoppers 14 with holes and the mounting holes A23. The design of the V-shaped block 27 and the rectangular block 28 allows the transverse support plate 2 to be accurately inserted into the V-shaped groove 12 and the rectangular concave groove 13 of the optical network communication box 1, ensuring the correct position of the support plate and improving the accuracy of installation. The transverse support plate 2 and the optical network communication box 1 are fixed together by screws A, which enhances the stability of the entire structure. The penetration and fixation of screws A make the connection between the transverse support plate 2 and the optical network communication box 1 more secure, improving the vibration resistance and stability of the overall structure. The design of the convex-shaped limit seat 14 with a hole and the open groove 22 provides a limit function, so that the horizontal support plate 2 and the optical network communication box 1 are stably installed and aligned.

[0035] The left and right sides of the rear end face of the optical network communication box 1 are provided with outwardly extending V-shaped guide blocks B15. The V-shaped guide blocks B15 are provided with isosceles trapezoidal guide grooves B16 and straight slots 17 connected to the isosceles trapezoidal guide grooves B16. The V-shaped guide blocks A24 are provided with mounting holes B29. The transverse support plate 2 and the optical network communication box 1 are fixed together by screws B that pass through the straight slots 17 and the mounting holes B29. The through-fixing of screws B increases the number of fixing points, further enhances the connection strength between the transverse support plate 2 and the optical network communication box 1, and improves the durability of the entire mechanism. The use of screws A and B makes the installation process simpler. Only the screws need to be passed through the corresponding holes and tightened, reducing installation time and complexity.

[0036] On both sides of the optical network communication box 1, there are avoidance grooves 18 for the installation of screw rods B. The design of the avoidance grooves 18 prevents the screw rods B from interfering with other parts of the optical network communication box 1 during installation, ensuring a smooth installation process. With the avoidance grooves 18, the installation of screw rods B is more convenient, reducing the installation steps and time.

[0037] The horizontal support plate 2 is provided with a wire harness insertion hole 210 that matches the wiring of the optical network communication box 1. The design of the wire harness insertion hole 210 makes the wiring of the optical network communication box 1 more convenient and reduces the trouble of wiring. The wire harness insertion hole 210 helps to optimize the wiring of the cable, making cable management more standardized and improving the neatness and aesthetics of the interior of the chassis.

[0038] On both sides of the transverse support plate 2, there are provided V-shaped guide blocks A24 extending outwards, and the V-shaped guide blocks A24 are provided with isosceles trapezoidal guide grooves A25; the guide frame 3 is provided with two V-shaped guide blocks A24 on both sides of the transverse support plate 2 for guiding and sliding;

[0039] Guide frame 3 is provided with a V-shaped guide groove 33 that slidably guides V-shaped guide block A24 and V-shaped guide block B15. Guide frame 3 is also provided with an isosceles trapezoidal guide rail 34 located inside V-shaped guide groove 33 and cooperating with isosceles trapezoidal guide grooves A25 and B16 for slidable guidance. The design of V-shaped guide groove 33 and isosceles trapezoidal guide rail 34 on guide frame 3 provides precise guidance, ensuring the stability of transverse support plate 2 during sliding. The guide rail design reduces wear between the guide block and the guide groove, improving the durability of the mechanism. The guide rail provides additional support points, enhancing the stability of guide frame 3 and thus ensuring the robustness of the entire mechanism.

[0040] The guide rod 26 threadedly connected to the V-shaped guide block A24 passes through the longitudinal straight slot 31 on the guide frame 3. The horizontal support plate 2 is locked and fixed to the guide bracket by rotating the handle 21 located at the top of the guide rod 26 and above the guide frame 3.

[0041] Two symmetrical mounting plates 4 are provided on the front and rear sides of the guide frame 3. The mounting plates 4 are mounted on the rack inside the optical network communication chassis. The design of the mounting plates 4 allows the guide frame 3 to be firmly mounted on the rack inside the optical network communication chassis, enhancing the stability of the overall structure.

[0042] The optical network communication mechanism is easy to install, and the transverse support plate 2 is installed on the optical network communication box 1. The transverse support plate 2 can be slid and guided along the guide frame 3 and the transverse support plate 2 can be fixed on the guide frame 3 by the cooperation and locking of the guide rod 26 and the handle 21. The transverse support plate 2 and the optical network communication box 1 are pulled outward to expose the optical network communication box 1 relative to the chassis. The setting of the sliding cover 11 on the optical network communication box 1 makes it convenient to open the sliding cover 11 to inspect and maintain the internal components of the optical network communication box 1.

[0043] The provision of the sliding cover 11 makes it easy to open and close the internal components of the optical network communication box 1, making it convenient for technicians to perform inspections and maintenance. Through the cooperation of the guide frame 3 and the guide rod 26, the transverse support plate 2 can be easily slid and locked in place, thus reducing complex steps and time during the installation process. The cooperation between the guide frame 3 and the V-shaped guide block ensures the stability of the transverse support plate 2, making the entire mechanism more sturdy and durable during operation. The transverse support plate 2 can slide along the guide frame 3, so that the position of the optical network communication box 1 can be adjusted as needed to adapt to different installation environments. The slidability and locking mechanism of the transverse support plate 2 allow the optical network communication box 1 to be compactly installed inside the chassis, saving space.

[0044] The transverse support plate 2 can be locked by simply rotating the handle 21, which reduces the difficulty of operation and improves the operator's experience.

[0045] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An optical network communication mechanism that is easy to install, characterized in that: include: An optical network communication box (1) is provided with a sliding cover (11) for sealing an inner chamber thereof; A transverse support plate (2) is fixed to the rear end surface of the optical network communication box (1); both sides of the transverse support plate (2) are provided with V-shaped guide blocks A (24) extending outwards, and the V-shaped guide blocks A (24) are provided with isosceles trapezoidal guide grooves A (25); The guide frame (3) is provided with two V-shaped guide blocks A (24) on both sides of the transverse support plate (2) for guiding and sliding; A guide rod (26) threadedly connected to the V-shaped guide block A (24) is inserted into a longitudinal straight slot (31) on the guide frame (3). The transverse support plate (2) is locked and fixed to the guide frame by rotating a handle (21) located at the top of the guide rod (26) and above the guide frame (3).

2. The optical network communication mechanism that is easy to install according to claim 1, characterized in that: The rear end surface of the optical network communication box (1) is provided with a V-shaped groove (12) located at a central position and rectangular concave grooves (13) symmetrically arranged on both sides; the transverse support plate (2) is provided with a V-shaped block (27) positioned and inserted into the V-shaped groove (12) and a rectangular block (28) inserted into the rectangular concave groove (13).

3. The optical network communication mechanism that is easy to install according to claim 1, characterized in that: The optical network communication box (1) is provided with convex-shaped limit seats (14) with holes at the upper and lower ends of the center position of the rear end surface, and two open grooves (22) are provided at the upper and lower ends of the center position of the transverse support plate (2) for inserting the limit seats (14) with holes. A mounting hole A (23) is provided on the transverse support plate (2) and located inside the two open grooves (22). The transverse support plate (2) and the optical network communication box (1) are fixed together by a screw A that passes through the limit seat (14) with holes and the mounting hole A (23).

4. The optical network communication mechanism that is easy to install according to claim 1, characterized in that: V-shaped guide blocks B (15) extending outward are provided on the left and right sides of the rear end surface of the optical network communication box (1). The V-shaped guide blocks B (15) are provided with isosceles trapezoidal guide grooves B (16) and straight slots (17) connected to the isosceles trapezoidal guide grooves B (16). The V-shaped guide blocks A (24) are provided with mounting holes B (29). The transverse support plate (2) and the optical network communication box (1) are fixed together by screws B that pass through the straight slots (17) and the mounting holes B (29).

5. The optical network communication mechanism that is easy to install according to claim 4, characterized in that: Both sides of the optical network communication box (1) are provided with avoidance grooves (18) for installation in conjunction with the screw rods B.

6. The optical network communication mechanism that is easy to install according to claim 4, characterized in that: The guide frame (3) is provided with a V-shaped guide groove (33) for slidingly guiding the V-shaped guide block A (24) and the V-shaped guide block B (15), and the guide frame (3) is provided with an isosceles trapezoidal guide rail (34) located inside the V-shaped guide groove (33) and cooperating with the isosceles trapezoidal guide groove A (25) and the isosceles trapezoidal guide groove B (16) for slidingly guiding.

7. The optical network communication mechanism that is easy to install according to claim 1, characterized in that: Two mounting plates (4) symmetrically arranged up and down are provided on the front and rear sides of the guide frame (3); the mounting plates (4) are mounted on a frame inside an optical network communication chassis.

8. The optical network communication mechanism that is easy to install according to claim 1, characterized in that: A wire harness insertion hole (210) matching the wiring of the optical network communication box (1) is provided on the transverse support plate (2).