A relay fiber distribution frame for facilitating temporary optical path use
By designing a repeater fiber optic distribution frame that is easy to adjust and stably supported, the problem of labor-intensive and space-consuming fiber optic deployment in MODF splicing projects has been solved, enabling fast and simple fiber optic installation and efficient management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-23
- Publication Date
- 2026-03-20
AI Technical Summary
In existing MODF splicing projects, directly laying optical fibers is labor-intensive and results in high losses. Using old ODF racks takes up a lot of space and is inconvenient to adjust, making it difficult to quickly and easily build temporary optical fiber links.
A repeater fiber optic patch panel was designed, comprising a bracket, unit patch panel, integrated tray, and base. The bracket can be raised and lowered and stably supported by adjusting and sliding components. The use of magnetic blocks and casters simplifies the installation and management of optical fibers.
It enables rapid and easy deployment of optical fibers, reduces space occupation, improves utilization, and provides structural stability and convenient management.
Smart Images

Figure CN116560023B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of fiber distribution frame, and particularly relates to a relay fiber distribution frame convenient for temporary optical path use. BACKGROUND
[0002] MODF splicing engineering needs to build a large number of and uncertain number of temporary fiber links in different machine rooms, one method: directly laying in different machine rooms according to the splicing order in different equipment and different ODF fibers, directly laying work is extremely labor-intensive, fiber laying loss is great, multiple utilization rate is greatly reduced, and fiber cost is too large. Another method: using the existing old ODF rack as a relay optical path connection communication point, which is bulky, occupies a large space, and has a constant construction height. The original frame structure has an outer frame which is not conducive to simple and rapid laying of ordinary optical fibers and reinforced optical fibers, and it is inconvenient to adjust the number of unit distribution frames and integrated trays according to the needs to select the installation unit distribution frame and integrated tray, and the unit distribution frame and integrated tray are separated for installation and operation, which is troublesome and inconvenient for line management. Therefore, a relay fiber distribution frame convenient for temporary optical path use is urgently needed. SUMMARY
[0003] The present application aims to provide a relay fiber distribution frame convenient for temporary optical path use to solve the problems in the background art.
[0004] The technical scheme of the present application is: a relay fiber distribution frame convenient for temporary optical path use, comprising a support, a unit distribution frame, an integrated tray and a base for the fiber distribution frame, both sides of the outer wall of the top end of the base are fixed with a fixed block, the top end of the outer wall of the fixed block is fixed with a ring plate, both sides of the outer wall of the top end of the ring plate are fixed with a sliding plate, the sliding plate is slidably connected with the support, the top end of the outer wall of the support is provided with an auxiliary assembly at four corners, the top inner wall of the base is provided with an adjusting assembly, and the inner wall of the base is provided with a sliding assembly at four corners.
[0005] Preferably, the support is provided in a cylindrical shape, mounting grooves are formed at the four corners of the outer wall of the support, the mounting grooves are matched with the size of the sliding plates, mounting holes are formed in the outer wall of one side of the mounting grooves and the sliding plates, the auxiliary assemblies each comprise an L-shaped plate, the L-shaped plates are connected with the outer wall at the top end of the support through hinges, mounting plates are connected to the inner wall of one side of the L-shaped plates through screws, magnetic blocks are fixed to the inner walls of the two sides of one side of the bottom of the L-shaped plates, the unit distribution frames are matched with the size of the mounting holes, the integrated trays are matched with the size of the mounting plates, wire arranging holes are formed at the four corners of the outer wall at the top end of the support, the adjusting assembly comprises a rotating disc, a circular groove is formed in the outer wall at the top end of the base, the rotating disc is slidably connected to the inner wall of the circular groove, a threaded rod is connected to the outer wall at the top end of the rotating disc through a screw, a threaded hole is formed in the outer wall at the bottom end of the support, and the threaded rod is matched with the size of the threaded hole.
[0006] Preferably, wire arranging grooves are formed in the inner wall of the other side of the mounting grooves, the wire arranging grooves are communicated with the wire arranging holes, and the wire arranging holes are matched with the size of the L-shaped plates.
[0007] Preferably, iron sheets are fixed to the four corners of the outer wall at the top end of the support, and the iron sheets are matched with the size of the magnetic blocks.
[0008] Preferably, reinforcing plates are fixed to the outer walls of the two sides of the base, and the reinforcing plates are provided in a triangular shape.
[0009] Preferably, the sliding assemblies each comprise a U-shaped frame and a universal wheel, sliding grooves are formed at the four corners of the outer wall at the bottom end of the base, the universal wheels are slidably connected to the inner walls of the sliding grooves, support pipes are fixed to the outer wall at the top end of the universal wheels, threaded knobs are slidably connected to the outer wall at the top end of the U-shaped frames, and the threaded knobs are connected with the support pipes through threads.
[0010] The application provides a relay optical fiber distribution frame facilitating temporary optical path use by improvement, and has the following improvements and advantages compared with the prior art.
[0011] One: the present application is provided with support, unit wiring frame, integrated tray, base, sliding assembly and adjusting assembly, the threaded rod rotates to drive the support to lift, the exposed length of the sliding plate is selected according to the number of unit wiring frames to be installed, the unit wiring frame is installed in the mounting hole, the auxiliary assembly at the top of the support can be pulled to open through the hinge, the integrated tray can be installed in the mounting plate of the L-shaped plate, then rotate and reset through the magnetic block adsorption limiting, the wire is arranged through the wire arrangement hole, the volume is small, the occupied space is reduced, the loss is low, the utilization rate is improved, the optical fiber can be arranged simply and quickly, the height size can be adjusted according to the demand to select the number of unit wiring frames and integrated trays, the unit wiring frame and the integrated tray are combined in the same structure, the installation operation is convenient, the line management is neat and not easy to confuse;
[0012] Secondly, the reinforcing plate and the sliding assembly are arranged, the reinforcing plate reinforces and supports the base more stably, when the structure position needs to be adjusted, the threaded knob in the sliding assembly is rotated, the support pipe drives the universal wheel to stretch out from the bottom of the base to support and facilitate sliding, reverse rotation is not needed after moving to reset, the practicability of the optical fiber distribution frame is improved. BRIEF DESCRIPTION OF DRAWINGS
[0013] The present application will be further explained in conjunction with the drawings and examples:
[0014] Figure 1 It is the overall structure schematic diagram of the present application;
[0015] Figure 2 It is the support connecting structure schematic diagram of the present application;
[0016] Figure 3 It is the auxiliary assembly structure schematic diagram of the present application;
[0017] Figure 4 It is the sliding assembly structure schematic diagram of the present application.
[0018] Explanation of reference signs:
[0019] 1, support; 2, adjusting assembly; 21, turntable; 22, threaded rod; 3, sliding assembly; 31, U-shaped frame; 32, threaded knob; 33, support pipe; 34, universal wheel; 4, auxiliary assembly; 41, L-shaped plate; 42, integrated tray; 43, mounting plate; 44, magnetic block; 5, base; 6, mounting hole; 7, unit wiring frame; 8, sliding plate; 9, wire arrangement hole; 10, reinforcing plate; 11, annular plate. DETAILED DESCRIPTION
[0020] The present application is described in detail below, and the technical solutions in the embodiments of the present application are clearly and completely described. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.
[0021] The present application provides a relay optical fiber distribution frame for temporary optical path use by improvement. The technical solutions of the present application are:
[0022] As shown in Figures 1-4 A relay optical fiber distribution frame for temporary optical path use, comprising a support 1 for optical fiber distribution frame, a unit distribution frame 7, an integrated tray 42 and a base 5, the outer walls of both sides of the top end of the base 5 are fixed with fixing blocks, the outer walls of the top end of the fixing blocks are fixed with annular plates 11, the outer walls of both sides of the top end of the annular plates 11 are fixed with sliding plates 8, the sliding plates 8 are slidably connected with the support 1, the outer walls of the top end of the support 1 are provided with auxiliary assemblies 4 at the corners, the inner wall of the top of the base 5 is provided with an adjusting assembly 2, the inner walls of the four corners of the base 5 are provided with sliding assemblies 3, and specifically, the support 1 and the base 5 for temporary optical path are installed at the designated position, the structure is adjusted by the adjusting assembly 2, the unit distribution frame 7 and the integrated tray 42 are installed by the auxiliary assembly 4 cooperating with the support 1, and the support of the structure is moved conveniently by the sliding assembly 3.
[0023] Further, the support 1 is cylindrically arranged, mounting grooves are arranged at the four corners of the outer wall of the support 1, the mounting grooves are matched with the size of the sliding plate 8, mounting holes 6 are arranged on the side outer wall of the mounting grooves and the sliding plate 8, the auxiliary assembly 4 comprises an L-shaped plate 41, the L-shaped plate 41 is connected with the top end outer wall of the support 1 through a hinge, a mounting plate 43 is connected with the side inner wall of the L-shaped plate 41 through a screw, magnetic blocks 44 are fixed on the two side inner walls of the bottom side of the L-shaped plate 41, the unit distribution frame 7 is matched with the size of the mounting hole 6, the integrated tray 42 is matched with the size of the mounting plate 43, wire arranging holes 9 are arranged at the four corners of the top end outer wall of the support 1, the adjusting assembly 2 comprises a rotating disc 21, a circular groove is arranged on the top end outer wall of the base 5, the rotating disc 21 is slidingly connected with the inner wall of the circular groove, a threaded rod 22 is connected with the top end outer wall of the rotating disc 21 through a screw, a threaded hole is arranged on the bottom end outer wall of the support 1, the threaded rod 22 is matched with the size of the threaded hole, specifically, the base 5 is installed at a specified position, the unit distribution frame 7 is installed in the mounting groove of the support 1, the rotating disc 21 in the adjusting assembly 2 is rotated according to the requirement, so as to drive the threaded rod 22 to rotate, the threaded rod 22 rotates so as to drive the support 1 to ascend and descend, the exposed length of the sliding plate 8 is selected according to the number of the unit distribution frame 7 to be installed, the unit distribution frame 7 is installed in the mounting hole 6, the auxiliary assembly 4 on the top of the support 1 can be pulled to be opened through the hinge, the integrated tray 42 can be installed in the mounting plate 43 of the L-shaped plate 41, then the rotating disc 21 is rotated to be reset and is attracted and limited by the magnetic block 44, the wires are arranged and arranged through the wire arranging hole 9.
[0024] Further, the other side inner wall of the mounting groove is arranged with a wire arranging groove, the wire arranging groove is communicated with the wire arranging hole 9, the wire arranging hole 9 is matched with the size of the L-shaped plate 41, the communication facilitates the induction and arrangement of the wires.
[0025] Further, the four corners of the top end outer wall of the support 1 are fixed with iron sheets, the iron sheets are matched with the size of the magnetic blocks 44, so that the magnetic blocks 44 are attracted and limited.
[0026] Further, the two side outer walls of the base 5 are fixed with reinforcing plates 10, the reinforcing plates 10 are triangularly arranged, and the reinforcing plates 10 reinforce and support the base 5 more stably.
[0027] Further, the sliding assembly 3 comprises a U-shaped frame 31 and a universal wheel 34, sliding grooves are arranged at the four corners of the bottom end outer wall of the base 5, the universal wheels 34 are slidingly connected with the inner wall of the sliding grooves, support pipes 33 are fixed on the top end outer wall of the universal wheels 34, threaded knobs 32 are slidingly connected with the top end outer wall of the U-shaped frame 31, the threaded knobs 32 are connected with the support pipes 33 through threads, when the structure position needs to be adjusted, the threaded knob 32 in the sliding assembly 3 is rotated, the support pipe 33 drives the universal wheel 34 to extend from the bottom of the base 5 to support and facilitate sliding, and the reverse rotation reset improves the structure stability without moving.
[0028] Working principle: Install the bracket 1 and base 5 for temporary optical path at the designated position, adjust the structure through the adjusting assembly 2, install the unit distribution frame 7 and integrated tray 42 through the auxiliary assembly 4 cooperating with the bracket 1, facilitate the support movement of the structure through the sliding assembly 3, install the unit distribution frame 7 in the mounting slot of the bracket 1 after the base 5 is installed at the designated position, rotate the rotating disc 21 in the adjusting assembly 2 according to the requirement to drive the threaded rod 22 to rotate, the threaded rod 22 rotates to drive the bracket 1 to rise and fall, select the exposed length of the sliding plate 8 according to the number of unit distribution frames 7 to be installed, install the unit distribution frame 7 in the mounting hole 6, the auxiliary assembly 4 at the top of the bracket 1 can be pulled to open through the hinge, the integrated tray 42 can be installed in the mounting plate 43 of the L-shaped plate 41, then rotate and reset to be limited by the magnetic block 44, arrange and tidy the lines through the wire arrangement hole 9, when the structure position needs to be adjusted, rotate the threaded knob 32 in the sliding assembly 3, the support pipe 33 drives the universal wheel 34 to extend out from the bottom of the base 5 to support and facilitate sliding, and it is not necessary to move back to rotate and reset in the reverse direction to improve the stability of the structure.
Claims
1. A repeater fiber optic patch panel for easy use in temporary optical paths, comprising a support (1), a unit patch panel (7), an integrated tray (42), and a base (5) for the fiber optic patch panel, characterized in that: The base (5) has fixed blocks on both sides of its top outer wall, and annular plates (11) are fixed on the top outer wall of each fixed block. Sliding plates (8) are fixed on both sides of the top outer wall of the annular plates (11). The sliding plates (8) are slidably connected to the bracket (1). Auxiliary components (4) are provided at the four corners of the top outer wall of the bracket (1). An adjustment component (2) is provided on the top inner wall of the base (5). Sliding components (3) are provided at the four corners of the inner wall of the base (5). The bracket (1) is cylindrical. Mounting grooves are provided at the four corners of the outer wall of the bracket (1). The mounting grooves are adapted to the size of the sliding plates (8). Mounting holes (6) are provided on one side outer wall of the mounting groove and the sliding plates (8). The auxiliary components (4) include L-shaped plates (41). The L-shaped plates (41) are connected to the top outer wall of the bracket (1) by hinges. One side of the inner wall is connected to the mounting plate (43) by screws. The inner walls of the bottom side of the L-shaped plate (41) are fixed with magnetic blocks (44). The unit wiring frame (7) is adapted to the size of the mounting hole (6). The integrated tray (42) is adapted to the size of the mounting plate (43). The top outer wall of the bracket (1) is provided with cable routing holes (9) at the four corners. The adjustment component (2) includes a turntable (21). The top outer wall of the base (5) is provided with a circular groove. The turntable (21) is slidably connected to the inner wall of the circular groove. The top outer wall of the turntable (21) is connected to a threaded rod (22) by screws. The bottom outer wall of the bracket (1) is provided with a threaded hole. The threaded rod (22) is adapted to the size of the threaded hole. The other side of the inner wall of the mounting groove is provided with a cable routing groove. The cable routing groove is connected to the cable routing hole (9). The cable routing hole (9) is adapted to the size of the L-shaped plate (41).
2. The repeater fiber optic distribution frame for convenient temporary optical path use according to claim 1, characterized in that: Iron sheets are fixed at the four corners of the top outer wall of the bracket (1), and the iron sheets are all adapted to the size of the magnetic block (44).
3. A repeater fiber optic distribution frame for convenient temporary optical path use according to claim 1, characterized in that: The base (5) has reinforcing plates (10) fixed to the outer walls on both sides, and the reinforcing plates (10) are all triangular in shape.
4. A repeater fiber optic distribution frame for convenient temporary optical path use according to claim 1, characterized in that: Each sliding component (3) includes a U-shaped frame (31) and a universal wheel (34). The four corners of the bottom outer wall of the base (5) are provided with sliding grooves. The universal wheels (34) are slidably connected to the inner wall of the sliding grooves. The top outer wall of each universal wheel (34) is fixed with a support tube (33). The top outer wall of each U-shaped frame (31) is slidably connected with a threaded knob (32). The threaded knob (32) is connected to the support tube (33) by threads.
Citation Information
Patent Citations
Anti-static optical fiber distribution frame for machine room
CN114967017A
Four-in-one optical fiber distribution frame
CN209446858U
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CN217689532U