An optical fiber line regulator for a network communication box

By adopting a combined structure of clamping sliders and clamping strips in the network communication box, the limitations of optical fiber line fixing methods and low maintenance efficiency are solved, and the stable fixation and orderly arrangement of optical fiber lines are achieved, and the maintenance efficiency is improved.

CN115774308BActive Publication Date: 2025-07-11STATE GRID ANHUI ULTRA HIGH VOLTAGE CO
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Patent Information

Application Number
CN202211561329.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-07
Publication Date
2025-07-11
Estimated Expiration
2042-12-07

AI Technical Summary

Technical Problem

The fiber optic cable fixing method in the existing network communication box is very limited and cannot be adjusted according to the number of fibers. The fiber optic cable is messy during maintenance, which affects the maintenance efficiency.

Method used

The combined structure of clamping slider and clamping elastic strip is adopted. The clamping elastic strip at the bottom of the clamping slider is stuffed into the sliding groove, and the bottom of the sliding groove is jammed by the inner lining clamping strip, thereby realizing clamping and fixing of the optical fibers. It is also divided into bundling and orderly arrangement through the optical fiber bundling plate, and is in line with the clamping of the movable shaft and the elastic strip, making it easy to quickly find the designated optical fiber during maintenance.

Benefits of technology

The stable fixation and orderly arrangement of optical fibers are achieved, the maintenance efficiency of optical fiber lines is improved, the disassembly and installation process of optical fiber lines is simplified, sufficient maintenance space is provided, and the operation efficiency of staff is improved.

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Abstract

The present invention provides an optical fiber line regulator for a network communication box applied to the technical field of communication equipment accessories. The clamping spring bar at the bottom of the clamping slider is inserted into the sliding groove, and the bottom of the sliding groove is clamped by the inner lining clamping strip, so that the elastic tension of the clamping spring bar is used to tighten the clamping slider, and then the port optical fiber is clamped and fixed. The number of clamping sliders corresponds to the number of port optical fibers to meet the needs of different numbers of optical fibers. The two optical fibers clamped by the clamping slider are respectively bundled on both sides of the optical fiber bundling plate to achieve differentiated bundling of the optical fibers. At the same time, the clamping notch at the bottom end of the movable rotating shaft is clamped with the elastic strip to achieve orderly arrangement and placement of the optical fiber bundling plate. During the maintenance process, the staff can also freely open the optical fiber bundling plate, which is convenient for quickly finding the specified optical fiber during the maintenance process, and the opened optical fiber bundling plate provides sufficient space for the maintenance operation, effectively improving the work efficiency.
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Description

Technical Field

[0001] This application relates to the technical field of communication device accessories, and particularly relates to an optical fiber line regulator for a network communication box. Background Art

[0002] Optical fiber communication, also known as fiber optic communication, refers to a way of transmitting information using light and optical fibers. Most modern optical fiber communication systems include a transmitter that converts electrical signals into optical signals and then transmits the optical signals through optical fibers. The optical fibers are mostly buried underground and connect different buildings. The system also includes several optical amplifiers and a photoreceiver that converts the optical signals back into electrical signals. Most of the signals transmitted in the optical fiber communication system are digital signals, and the sources include computers, telephone systems, or cable television systems.

[0003] Describe the areas where the technology needs to be improved (corresponding to the main technical features of this application).

[0004] Existing network communication boxes are connected to multiple optical fiber lines, and these optical fiber lines need to be centrally adjusted and fixed using a special optical fiber line central regulator. Most of the existing optical fiber central regulators with patch panels use an opening method for the optical fibers to pass through, and the size of the opening is fixed. The number of distribution holes on the patch panel cannot be changed according to the number of optical fibers in the network communication box. Therefore, there are certain limitations. The method of fixing the optical fibers by centralized perforation is also not convenient for extracting single optical fibers. In addition, when the staff repairs the optical fiber lines fixed by the regulator, the installation of the optical fiber lines inside the communication box is relatively messy. Generally, they are directly bundled together and placed inside the box body, making it difficult to quickly select the optical fiber single line that needs to be repaired, which affects the maintenance efficiency.

[0005] In response to the above problems, this solution makes a technical conjecture to change the fixing method of the optical fibers passing through the distribution holes and fix them by clamping. At the same time, the clamping structure can be selectively adjusted according to the number of optical fibers, and the optical fibers can also be bundled separately to quickly find the specified optical fiber during subsequent maintenance. Summary of the Invention

[0006] 2. The purpose of this application is to improve the fixing effect and maintenance efficiency of optical fibers, compared with the prior art

[0007] A fiber optic line adjuster for a network communication box, wherein a clamping pad is fixedly connected to the inside of the front end of the communication box body, and a sliding groove is provided in the middle of the clamping pad, a clamping slider is movably connected to the top of the clamping pad, and the clamping slider and the clamping pad clamp the port optical fiber, a clamping spring bar is fixedly connected to the bottom of the clamping slider, and the clamping spring bar extends into the sliding groove, and an inner lining strip is fixedly connected to the bottom end of the clamping spring bar; a card seat pad is fixedly connected to the bottom of the optical fiber communication equipment, and an optical fiber bundling plate is movably connected between the card seat pad and the clamping pad, a movable rotating shaft is fixedly connected to the middle of the optical fiber bundling plate, an elastic strip is fixedly connected to the rear of the card seat pad, a clamping slot is provided at the bottom end of the movable rotating shaft, and the clamping slot is clamped with the elastic strip.

[0008] The port optical fiber entering the communication box body is neatly placed on the clamping pad, the clamping spring bar at the bottom of the clamping slider is inserted into the sliding groove, the lining card strip is used to clamp the bottom of the sliding groove, and the clamping slider is tightened and fixed by the pulling force of the clamping spring bar, so that the clamping slider clamps and fixes the port optical fibers on both sides of the bottom. The optical fiber clamping structure is simple, and the number of clamping sliders corresponds to the number of port optical fibers to meet the needs of different optical fiber numbers. An optical fiber bundling plate is installed between the clamping slider and the card seat pad, and the two optical fibers clamped by the clamping slider are respectively bundled on both sides of the optical fiber bundling plate to achieve differentiated bundling of optical fibers. At the same time, the clamping notch at the bottom end of the movable shaft is clamped with the elastic strip to achieve orderly arrangement and placement of the optical fiber bundling plate. During the maintenance process, the staff can also freely open the optical fiber bundling plate, which is convenient for quickly finding the specified optical fiber during the maintenance process, and the opened optical fiber bundling plate provides sufficient space for the maintenance operation, effectively improving work efficiency.

[0009] Furthermore, the sliding groove connects the two ends of the clamping pad strip, the clamping pad strip is made of aluminum alloy material, and rubber pads are fixed on both sides of the top of the clamping pad strip. The sliding groove connects the two ends of the clamping pad strip, which is convenient for the clamping slider to slide out from both ends of the clamping pad strip, and facilitates the disassembly and removal of the clamping slider. The rubber pad laid on the clamping pad strip effectively improves the clamping effect of the optical fiber, and at the same time provides a movable buffer space for the insertion of the clamping spring bar, which is convenient for the assembly of the clamping slider.

[0010] Furthermore, semicircular clamping grooves are provided on both sides of the bottom of the clamping slider, and rubber pads are laid inside the semicircular clamping grooves. The semicircular clamping grooves cooperate with the built-in rubber pads to effectively improve the clamping effect of the clamping slider on the optical fiber.

[0011] Furthermore, both the clamping spring strip and the elastic strip are arranged in a flat shape, and both the clamping spring strip and the elastic strip are made of elastic rubber material. The flat clamping spring strip can be twisted to facilitate the insertion of the inner lining strip into the sliding groove. Subsequently, the shape of the clamping spring strip is restored to realize that the inner lining strip catches the bottom of the sliding groove. The flat elastic strip can catch the clamping groove at the bottom end of the movable rotating shaft. When the movable rotating shaft rotates, the elastic strip is twisted and deformed, and then the deformation force of the elastic strip can be used to restore the movable rotating shaft.

[0012] Furthermore, the bottom end of the clamping spring strip and the inner lining strip are arranged in a cross shape, and the width of the inner lining strip corresponds to the width of the sliding groove. The clamping spring strip is first twisted to allow the inner lining strip with corresponding width to pass through the sliding groove smoothly. Subsequently, the clamping spring strip is restored to realize that the inner lining strip catches the bottom of the sliding groove.

[0013] Furthermore, a device optical fiber is fixedly connected to the surface of the optical fiber communication device, and the device optical fiber and the port optical fiber are fixedly connected through an adapter sleeve. A suitable sleeve fixing groove is fixedly connected to the middle of the optical fiber bundling plate, and optical fiber bundling teeth are fixedly connected to the four corners of the optical fiber bundling plate. The device optical fiber and the port optical fiber are coupled through docking and then sleeved with an adapter sleeve. Then, the adapter sleeve is placed in the suitable sleeve fixing groove. The adapter sleeve is located in the middle of the optical fiber bundling plate, which is convenient for maintenance personnel to quickly check. Together with the optical fiber bundling teeth, it is convenient to place the bundled optical fibers on the optical fiber bundling plate.

[0014] Optionally, a rotating shaft seat is fixedly connected to the top of the clamping slider, and the rotating shaft seat is movably clamped with the top end of the movable rotating shaft. A rotating shaft hole is formed in the top surface of the seat cushion strip, and the rotating shaft hole is movably sleeved with the bottom end of the movable rotating shaft, respectively detachably fixing the top end and the bottom end of the movable rotating shaft, which is convenient for the optical fiber bundling plate to be assembled corresponding to the clamping slider and improves the flexible adaptability of the regulator.

[0015] Furthermore, a C-shaped clamping shaft piece is fixedly inlaid on the top of the rotating shaft seat, and the C-shaped clamping shaft piece is made of elastic metal material. The C-shaped clamping shaft piece made of elastic metal material is convenient for the top end of the movable rotating shaft to be inserted and is also convenient for the disassembly of the movable rotating shaft.

[0016] Furthermore, the number of the rotating shaft holes is set to be multiple, and the multiple rotating shaft holes are arranged horizontally at equal intervals. The elastic strip is parallel to the horizontally arranged rotating shaft holes. The multiple horizontally arranged rotating shaft holes provide sufficient selection and installation space for the bottom end of the movable rotating shaft and also facilitate the quick clamping connection between the clamping groove at the bottom end of the movable rotating shaft and the elastic strip.

[0017] Furthermore, a flip card is fixedly connected to one side of the bottom end of the optical fiber bundling plate, and blocking holes are provided in the middle of the flip card and the bottom surface of the card seat pad, and the two groups of blocking holes correspond vertically. When the optical fiber bundling plate is flipped for inspection, the maintenance tools at hand are inserted into the two groups of blocking holes to fix the flipped state of the optical fiber bundling plate, thereby facilitating the maintenance operation.

[0018] Compared with the prior art, the advantages of this application are:

[0019] (1) This solution is to neatly place the port optical fibers entering the communication box body on the clamping pad, insert the clamping spring bar at the bottom of the clamping slider into the sliding groove, use the lining card bar to clamp the bottom of the sliding groove, and tighten and fix the clamping slider by the tension of the clamping spring bar, so as to achieve the clamping slider to clamp and fix the port optical fibers on both sides of the bottom. The optical fiber clamping structure is simple, and the number of clamping sliders corresponds to the number of port optical fibers to meet the needs of different optical fiber numbers. An optical fiber bundling plate is installed between the clamping slider and the card seat pad. The two optical fibers clamped by the clamping slider are respectively bundled on both sides of the optical fiber bundling plate to achieve differentiated bundling of optical fibers. At the same time, the clamping groove at the bottom end of the movable shaft is clamped with the elastic bar to achieve orderly arrangement and placement of the optical fiber bundling plate. During the maintenance process, the staff can also freely open the optical fiber bundling plate, which is convenient for quickly finding the specified optical fiber during the maintenance process, and the opened optical fiber bundling plate provides sufficient space for maintenance operations, effectively improving work efficiency.

[0020] (2) The sliding groove connects the two ends of the clamping pad. The clamping pad is made of aluminum alloy material, and rubber pads are fixed on both sides of the top of the clamping pad. The sliding groove connects the two ends of the clamping pad, which is convenient for the clamping slider to slide out from both ends of the clamping pad, and is convenient for the disassembly and removal of the clamping slider. The rubber pad laid on the clamping pad effectively improves the clamping effect of the optical fiber, and at the same time provides a movable buffer space for the insertion of the clamping spring bar, which is convenient for the assembly of the clamping slider.

[0021] (3) Semicircular clamping grooves are provided on both sides of the bottom of the clamping slider, and rubber pads are laid inside the semicircular clamping grooves. The semicircular clamping grooves and the built-in rubber pads effectively improve the clamping effect of the clamping slider on the optical fiber.

[0022] (4) The clamping spring bar and the elastic bar are both flat and made of elastic rubber material. The flat clamping spring bar can be twisted to facilitate the insertion of the inner lining clip into the sliding groove. The shape of the clamping spring bar is then restored so that the inner lining clip can be clamped to the bottom of the sliding groove. The flat elastic bar can be clamped to the clamping notch at the bottom end of the movable shaft. When the movable shaft rotates, the elastic bar is twisted and deformed. The deformation force of the elastic bar can then be used to restore the movable shaft.

[0023] (5) The bottom end of the clamping spring strip is arranged in a cross with the inner lining clamping strip, and the width of the inner lining clamping strip corresponds to the width of the sliding groove. The clamping spring strip is first twisted so that the inner lining clamping strip with corresponding width can pass through the sliding groove smoothly, and then the clamping spring strip is restored to realize that the inner lining clamping strip clamps the bottom of the sliding groove.

[0024] (6) The surface of the optical fiber communication device is fixedly connected with a device optical fiber, and the device optical fiber and the port optical fiber are fixedly connected through an adapter sleeve. The middle of the optical fiber bundling plate is fixedly connected with an adapter fixing groove, and the four corners of the optical fiber bundling plate are all fixedly connected with optical fiber bundling retaining teeth. The device optical fiber and the port optical fiber are coupled through docking and then sleeved with an adapter sleeve, and then the adapter sleeve is placed in the adapter fixing groove. The adapter sleeve is located in the middle of the optical fiber bundling plate, which is convenient for maintenance personnel to quickly check, and the optical fiber bundling retaining teeth are convenient for the bundled optical fibers to be placed on the optical fiber bundling plate.

[0025] (7) The top of the clamping slider is fixedly connected with a rotating shaft seat, and the rotating shaft seat is movably clamped with the top end of the movable rotating shaft. The top surface of the seat cushion strip is provided with a rotating shaft hole, and the rotating shaft hole is movably sleeved with the bottom end of the movable rotating shaft, respectively detachably fixing the top end and the bottom end of the movable rotating shaft, which is convenient for the optical fiber bundling plate to be assembled corresponding to the clamping slider and improves the flexible adaptability of the regulator.

[0026] (8) The top of the rotating shaft seat is fixedly inlaid with a C-shaped clamping shaft piece, and the C-shaped clamping shaft piece is made of elastic metal material. The C-shaped clamping shaft piece made of elastic metal material is convenient for the top end of the movable rotating shaft to be inserted and is also convenient for the disassembly of the movable rotating shaft.

[0027] (9) The number of the rotating shaft holes is set to be multiple, and the multiple rotating shaft holes are arranged horizontally at equal intervals. The elastic strip is parallel to the horizontally arranged rotating shaft holes. The multiple horizontally arranged rotating shaft holes enable the bottom end of the movable rotating shaft to have sufficient selection and installation space and also facilitate the quick clamping of the clamping groove at the bottom end of the movable rotating shaft with the elastic strip.

[0028] (10) One side of the bottom end of the optical fiber bundling plate is fixedly connected with a flipping clamping plate. The middle of the flipping clamping plate and the bottom surface of the seat cushion strip are both provided with blocking insertion holes, and the two groups of blocking insertion holes are vertically corresponding. When the optical fiber bundling plate is flipped for maintenance and inspection, the maintenance tool on hand is inserted into the two groups of blocking insertion holes to realize the fixation of the flipping state of the optical fiber bundling plate, thereby facilitating the progress of the maintenance operation. Brief Description of the Drawings

[0029] Figure 1 is a three-dimensional structural schematic diagram of the present application;

[0030] Figure 2 is a pictorial diagram of the change of the clamping slider assembly inserted into the sliding groove of the present application;

[0031] Figure 3Schematic three-dimensional structure diagram of the clamping slider and clamping strip of the present application;

[0032] Figure 4 Schematic three-dimensional structure diagram of the twisted state and natural state of the clamping spring strip of the present application;

[0033] Figure 5 Schematic side-sectional structure diagram of the communication box body of the present application;

[0034] Figure 6 Schematic three-dimensional structure diagram of the optical fiber bundling plate of the present application;

[0035] Figure 7 Partially enlarged side view structure diagram of the card seat strip of the present application;

[0036] Figure 8 Pictogram of the twisted change of the elastic strip driven by the movable rotating shaft of the present application;

[0037] Figure 9 Schematic three-dimensional structure diagram of the card seat strip of the present application;

[0038] Figure 10 For the present application Figure 1 Partially enlarged view.

[0039] Explanation of reference numerals in the figure:

[0040] 1 Communication box body, 2 Optical fiber communication device, 3 Optical fiber port, 4 Port optical fiber, 5 Clamping strip, 6 Sliding groove, 7 Clamping slider, 8 Clamping spring strip, 9 Inner lining card strip, 10 Card seat strip, 11 Optical fiber bundling plate, 12 Movable rotating shaft, 13 Elastic strip, 14 Clamping groove opening, 15 Semi-circular clamping groove, 16 Equipment optical fiber, 17 Adaptable fixing groove, 18 Optical fiber bundling stop teeth, 19 Rotating shaft card seat, 20 Rotating shaft hole, 21 C-shaped card shaft piece, 22 Flipping card plate, 23 Blocking jack. Detailed implementation manners

[0041] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0042] Embodiment 1:

[0043] The present invention provides an optical fiber line regulator for a network communication box. Please refer to Figures 1-4, including a communication box body 1, and a fiber optic communication device 2 is fixedly connected inside the communication box body 1 (the fiber optic communication device 2 is a prior art, and those skilled in the art can select the corresponding model by themselves, and will not be described in detail here). A fiber optic port 3 is fixedly connected to the outside of the front end of the communication box body 1, and a port optical fiber 4 is fixedly connected to the inside of the fiber optic port 3. A clamping cushion strip 5 is fixedly connected to the inside of the front end of the communication box body 1. The clamping cushion strip 5 is made of aluminum alloy material with a light structural quality, so that the port optical fiber 4 entering the communication box body 1 is neatly placed on the clamping cushion strip 5. The rubber pad laid on the clamping cushion strip 5 effectively improves the clamping effect of the optical fiber, and at the same time provides an active buffer space for the insertion of the clamping spring strip 8, which is convenient for the assembly of the clamping slider 7. A sliding groove 6 is opened in the middle of the clamping cushion strip 5, which is convenient for the clamping slider 7 to slide out from both ends of the clamping cushion strip 5, and is convenient for the disassembly and removal of the clamping slider 7. The sliding groove 6 communicates with both ends of the clamping cushion strip 5. A clamping slider 7 is movably connected to the top of the clamping cushion strip 5. A clamping spring strip 8 is fixedly connected to the bottom of the clamping slider 7, and the clamping spring strip 8 extends into the sliding groove 6. A lining clamping strip 9 is fixedly connected to the bottom end of the clamping spring strip 8. After the clamping spring strip 8 at the bottom of the clamping slider 7 is distorted and deformed, it is inserted into the sliding groove 6. The clamping spring strip 8 is first distorted so that the lining clamping strip 9 with a corresponding width can smoothly pass through the sliding groove 6, and then the clamping spring strip 8 is restored to realize that the lining clamping strip 9 clamps the bottom of the sliding groove 6. The clamping slider 7 is tightened and fixed by the pulling force of the clamping spring strip 8. Semi-circular clamping grooves 15 are opened on both sides of the bottom of the clamping slider 7. The semi-circular clamping grooves 15 are matched with the built-in rubber pads, which effectively improves the clamping effect of the clamping slider 7 on the optical fiber;

[0044] Please refer to Figures 5-6 , a device optical fiber 16 is fixedly connected to the surface of the fiber optic communication device 2, and the device optical fiber 16 and the port optical fiber 4 are fixedly connected through an adapter sleeve. After the port optical fiber 4 and the device optical fiber 16 on the fiber optic communication device 2 are laser welded, an adapter sleeve is put on for protection. A suitable sleeve fixing groove 17 is fixedly connected to the middle of the fiber optic bundling plate 11. The adapter sleeve for connection and protection is placed in the suitable sleeve fixing groove 17. The adapter sleeve is in the middle position of the fiber optic bundling plate 11, and the position is relatively eye-catching, which is convenient for maintenance personnel to quickly check. The port optical fiber 4 and the device optical fiber 16 are respectively bundled at both ends of the fiber optic bundling plate 11. With the cooperation of the fiber optic bundling stop teeth 18, the bundled optical fibers are conveniently placed on the fiber optic bundling plate 11, realizing the stable placement of the port optical fiber 4 and the device optical fiber 16;

[0045] Please refer to Figures 6-8The bottom of the optical fiber communication device 2 is fixedly connected with a card seat pad 10, and a fiber bundling plate 11 is movably connected between the card seat pad 11 and the clamping pad 5. The two optical fibers clamped by the clamping slider 7 are respectively bundled on both sides of the fiber bundling plate 11, so that the optical fibers can be bundled separately, which is convenient for quickly finding the designated optical fiber during maintenance. The middle of the fiber bundling plate 11 is fixedly connected with a movable shaft 12, and the rear of the card seat pad 10 is fixedly connected with an elastic strip 13. The bottom end of the movable shaft 12 is provided with a clamping slot 1 4, and the snap-in slot 14 is snap-in with the elastic strip 13, the flat elastic strip 13 can snap-in the snap-in slot 14 at the bottom end of the movable shaft 12, and the optical fiber bundling plate 11 can be stacked in an orderly manner by snapping, and the staff can also freely push the optical fiber bundling plate 11 apart during the maintenance process, and during the pushing apart process, the movable shaft 12 rotates, and the elastic strip 13 is twisted and deformed, and the deformation force of the elastic strip 13 is subsequently used to allow the movable shaft 12 to drive the optical fiber bundling plate 11 to be restored, thereby effectively improving the work efficiency;

[0046] See also Figure 4 and Figures 8-10 The top of the clamping slider 7 is fixedly connected with a shaft holder 19, and the shaft holder 19 is movably engaged with the top of the movable shaft 12. The top of the shaft holder 13 is fixedly inlaid with a C-shaped shaft piece 21, and the C-shaped shaft piece 21 is made of elastic metal material. The C-shaped shaft piece 21 made of elastic metal material is convenient for the top of the movable shaft 12 to be inserted, so as to realize the detachable splicing of the top of the movable shaft 12. The top surface of the holder cushion strip 10 is provided with a shaft hole 20, and the shaft hole 20 is movably sleeved with the bottom end of the movable shaft 12, so as to realize the detachable splicing of the bottom end of the movable shaft 12, so as to facilitate the assembly of the optical fiber bundling plate 11 corresponding to the clamping slider 7, and improve the flexible adaptability of the adjuster. The elastic strip 13 is parallel to the horizontally arranged shaft holes 20, and multiple horizontally arranged shaft holes 20 are arranged in parallel. The rotating shaft holes 20 in the row ensure that the bottom end of the movable rotating shaft 12 has enough optional installation space. After the bottom end of the movable rotating shaft 12 passes through the rotating shaft hole 20, the clamping groove 14 at the bottom end of the movable rotating shaft 12 is quickly clamped with the elastic strip 13, which effectively improves the assembly efficiency of the optical fiber bundling plate 11. A flip card plate 22 is fixedly connected to one side of the bottom end of the optical fiber bundling plate 11. The middle part of the flip card plate 22 and the bottom surface of the card seat cushion strip 10 are both provided with blocking holes 23, and the two groups of blocking holes 23 correspond vertically. When the optical fiber bundling plate 11 is turned over for inspection, the maintenance tools at hand are inserted into the two groups of blocking holes 23, such as the screwdriver used in the maintenance process, to fix the flipped state of the optical fiber bundling plate 11, thereby facilitating the maintenance operation.

[0047] Working principle: When using the regulator to fix the optical fiber, the port optical fibers 4 of the communication box body 1 are neatly stacked on the clamping pad strip 5, and are grouped in pairs according to the number of port optical fibers 4. A corresponding number of clamping slide blocks 7 are selected, and the clamping spring strips 8 at the bottom of the clamping slide block 7 are first twisted so that the lining card strip 9 can extend into the bottom of the sliding groove 6. The clamping spring strips 8 are subsequently restored so that the lining card strips 9 are clamped to the bottom of the sliding groove 6, and then the clamping slide block 7 is pulled upward to clamp the two port optical fibers 4 under the clamping slide block 7. The port optical fibers 4 are clamped and fixed by tightening the clamping slide block 7 through the clamping spring strips 8, and then the corresponding clamping The optical fiber bundling plate 11 is assembled with the slider 7, and after the port optical fiber 4 is docked with the device optical fiber 16 on the optical fiber communication device 2, the docked adapter sleeve is placed in the adapter sleeve fixing groove 17, and the port optical fiber 4 and the device optical fiber 16 are respectively bundled at the two ends of the optical fiber bundling plate 11, and the optical fiber bundling retaining teeth 18 are used to facilitate the placement of the bundled optical fibers on the optical fiber bundling plate 11. When the staff inspects the optical fiber, the staff manually opens the optical fiber bundling plate 11, and when the specified optical fiber is found, a screwdriver or other tool is used to insert the two sets of blocking holes 23 to fix the optical fiber bundling plate 11, so that there is space to operate the optical fiber.

[0048] The above is only a preferred specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can make equivalent substitutions or changes within the technical scope disclosed in the present application according to the technical solution and its improved conception, which should be covered by the protection scope of the present application.

Claims

1. An optical fiber line regulator for a network communication box, comprising a communication box body (1), and an optical fiber communication device (2) fixedly connected inside the communication box body (1). A fiber optic port (3) is fixedly connected to the outer front end of the communication box body (1), and a port optical fiber (4) is fixedly connected to the inner side of the fiber optic port (3), characterized in that, Inside the front end of the communication box body (1), a clamping cushion strip (5) is fixedly connected, and a sliding groove (6) is opened in the middle of the clamping cushion strip (5). The top of the clamping cushion strip (5) is movably connected with a clamping slider (7), and the clamping slider (7) clamps the port optical fiber (4) with the clamping cushion strip (5). The bottom of the clamping slider (7) is fixedly connected with a clamping elastic strip (8), and the clamping elastic strip (8) extends into the sliding groove (6). The bottom end of the clamping elastic strip (8) is fixedly connected with an inner lining clamping strip (9). At the bottom of the optical fiber communication device (2), a card seat cushion strip (10) is fixedly connected, and an optical fiber bundling plate (11) is movably connected between the card seat cushion strip (11) and the clamping cushion strip (5). In the middle of the optical fiber bundling plate (11), a movable rotating shaft (12) is fixedly connected. At the rear of the card seat cushion strip (10), an elastic strip (13) is fixedly connected. At the bottom end of the movable rotating shaft (12), a clamping groove opening (14) is opened, and the clamping groove opening (14) is clamped with the elastic strip (13). At the top of the clamping slider (7), a rotating shaft card seat (19) is fixedly connected, and the top end of the rotating shaft card seat (19) is movably clamped with the top end of the movable rotating shaft (12). On the top surface of the card seat cushion strip (10), a rotating shaft hole (20) is opened, and the bottom end of the movable rotating shaft (12) is movably sleeved in the rotating shaft hole (20). At the top of the rotating shaft card seat (13), a C-shaped clamping shaft piece (21) is fixedly inlaid, and the C-shaped clamping shaft piece (21) is made of elastic metal material. The number of the rotating shaft holes (20) is set to be multiple, and the multiple rotating shaft holes (20) are arranged horizontally at equal intervals. The elastic strip (13) is parallel to the horizontally arranged rotating shaft holes (20).

2. The optical fiber line regulator for a network communication box according to claim 1, wherein, The sliding groove (6) communicates with both ends of the clamping cushion strip (5). The clamping cushion strip (5) is made of aluminum alloy material, and rubber pads are fixedly laid on both sides of the top of the clamping cushion strip (5).

3. The optical fiber line regulator for a network communication box according to claim 1, characterized in that, On both sides of the bottom of the clamping slider (7), semi-circular clamping grooves (15) are opened, and rubber pads are laid inside the semi-circular clamping grooves (15).

4. The optical fiber line regulator for a network communication box according to claim 1, characterized in that Both the clamping elastic strip (8) and the elastic strip (13) are arranged in a flat shape, and both the clamping elastic strip (8) and the elastic strip (13) are made of elastic rubber material.

5. A fiber optic line adjuster for a network communication box according to claim 1, characterized in that, The bottom end of the clamping elastic strip (8) is arranged in a cross shape with the inner lining clamping strip (9), and the width of the inner lining clamping strip (9) corresponds to the width of the sliding groove (6).

6. The optical fiber line regulator for a network communication box according to claim 1, wherein On the surface of the optical fiber communication device (2), a device optical fiber (16) is fixedly connected, and the device optical fiber (16) and the port optical fiber (4) are fixedly connected through an adapter tube sleeve. In the middle of the optical fiber bundling plate (11), an adapter sleeve fixing groove (17) is fixedly connected, and optical fiber bundling stop teeth (18) are fixedly connected to the four corners of the optical fiber bundling plate (11).

7. A fiber optic cable adjuster for a network communication box according to claim 1, wherein, On one side of the bottom end of the optical fiber bundling plate (11), a flipping clamping plate (22) is fixedly connected. In the middle of the flipping clamping plate (22) and on the bottom surface of the card seat cushion strip (10), blocking jacks (23) are opened, and the two groups of blocking jacks (23) are vertically corresponding.

Citation Information

Patent Citations

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  • Aluminum profile connecting piece

    CN206092599U