Optical fiber welding distribution module

By designing a fiber optic fusion splicing and distribution module, and utilizing the interference fit of the connector posts and QR code labels to achieve digital management of optical fibers, the problem of inaccurate resource management in the fiber optic distribution system is solved, maintenance efficiency is improved, and optical signal interruption is avoided.

CN223756931UActive Publication Date: 2026-01-02SHENZHEN ANDAXIN COMM EQUIP
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Patent Information

Application Number
CN202520263844.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-01-02
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

Inaccurate resource management in existing fiber optic distribution systems leads to port resources becoming "zombie" resources, making maintenance difficult and causing resource waste. Furthermore, existing fiber optic fusion splicing and distribution modules are difficult to manage intelligently, which can easily lead to optical signal transmission interruptions.

Method used

Design a fiber optic fusion splicing and distribution module, including a fusion splicing module, an adapter, and an information management panel. Digital management of optical fibers is achieved through interference fit of the clips and QR code labels. The management labels and information management panel are used to input and display optical fiber information, avoiding the need to disassemble and adjust the fusion splicing module.

Benefits of technology

It enables digital and intelligent management of optical fibers, reduces resource waste, improves maintenance efficiency, avoids optical signal interruptions, and simplifies the maintenance and management process of optical fiber information.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an optical fiber welding distribution module, which comprises a welding module, switching devices and an information management panel, the welding module is used for welding distribution of optical fibers, the number of the switching devices is two, the upper ends of the switching devices are provided with guide grooves, the lower end of the welding module is provided with clamping columns corresponding to the guide grooves, and the information management panel is arranged on the welding module. The switching devices are inserted into the lower end of the welding module through one sides of the clamping columns for interference fit, the two switching devices are arranged on the two sides of the welding module respectively, the two ends of the information management panel are fixedly connected with the two corresponding switching devices through fasteners, and a plurality of management labels are arranged on the surface of the information management panel. And an optical fiber core number serial number and a label clamping groove are arranged corresponding to the management label. The utility model provides an optical fiber welding and distributing module, which can perform corresponding digital intelligent management on optical fibers by not dismounting and replacing the optical fiber welding and distributing module in use and adding a structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to optical fiber fusion splicing technical field especially relates to a kind of optical fiber fusion splicing distribution module. BACKGROUND

[0002] Optical fiber distribution system belongs to passive network, contains optical fiber, pipeline, distribution frame and many other resources, and at present, ODN construction mostly adopts extensive laying mode, through simple paper label marks port, and also only uses original manual input and update in subsequent maintenance. Due to the complexity of on-site construction, it is easy to cause inconsistency between on-site operation and background resource scheduling instruction, and with the superposition effect of time, the accuracy of resource management system will seriously decrease. Data statistics show that at least 30% of port resources become zombie resources due to inaccurate resource management, and when expansion demand is encountered, only re-investment is laid, causing a lot of resource waste.

[0003] The wiring table information in the existing optical fiber distribution unit is numerous and complex, and it is difficult to realize simple and convenient real-time management. Paper label or electronic form is easy to damage or illegible, easy to fall off, information is not easy to modify, easy to be contaminated, inconvenient to read, not conducive to cost saving, and brings great hidden trouble to maintenance. When line error occurs, the wiring information to be maintained is difficult to modify, and the modified information is difficult to reflect in all related systems in time.

[0004] Intelligent upgrading is needed on the existing optical fiber fusion splicing distribution module, the original optical fiber fusion splicing distribution module needs to be removed and replaced, which is easy to damage the optical fiber in work, cause optical signal transmission interruption, and bring immeasurable loss to users. INVENTION CONTENT

[0005] The utility model aims at providing a kind of optical fiber fusion splicing distribution module, by not removing and replacing the optical fiber fusion splicing distribution module in use, by increasing structure, optical fiber can be corresponding digital intelligent management.

[0006] The utility model discloses a kind of optical fiber fusion splicing distribution module, and the technical scheme adopted is:

[0007] The application discloses a fiber fusion wiring module which comprises a fusion module, two adapter devices and an information management panel, the fusion module is used for the fusion wiring of optical fibers, the adapter devices are provided with guide grooves at upper ends, the fusion module is provided with clamping columns corresponding to the guide grooves at lower ends, the adapter devices are inserted into the lower ends of the fusion module through one side of the clamping columns to realize interference fit, the two adapter devices are arranged on the two sides of the fusion module respectively, the information management panel is fixedly connected with the two adapter devices through fasteners at two ends, the information management panel is provided with a plurality of management labels on a surface, and the management labels are provided with optical fiber core number serial numbers and label clamping grooves.

[0008] As a preferred solution, the fusion module comprises a disc body and a disc cover which are fixed through buckle connection, the disc body is provided with a fiber fusion area in the middle, the fiber fusion area is used for the fusion wiring of optical fibers, the disc body is provided with a plurality of fiber adapters at a lower end, the fiber adapters are detachably connected with the disc body, and the fiber adapters are arranged corresponding to the management labels.

[0009] As a preferred solution, the fiber fusion area is provided with arc-shaped blocking pieces at two sides, the arc-shaped blocking pieces form a fiber storage area together with the inside of the disc body.

[0010] As a preferred solution, the disc body is provided with lugs at two sides, the clamping columns are arranged at one end of the lugs, the diameter of the clamping columns is larger than the thickness of the lugs, the shape of the guide grooves is matched with the shapes of the lugs and the clamping columns, and the adapter devices cannot be separated from the disc body from the vertical direction.

[0011] As a preferred solution, the adapter devices are provided with limiting blocks at one end close to the guide grooves, the limiting blocks are matched with the disc body to limit the insertion position of the adapter devices.

[0012] As a preferred solution, the adapter devices are provided with wire arranging holes on surfaces, and the adapter devices are provided with embedded parts at one end away from the guide grooves, the embedded parts are screw-connected with the fasteners.

[0013] As a preferred solution, the fasteners are hand screws, and the hand screws are provided with springs on surfaces.

[0014] As a preferred solution, the management labels can record data through two-dimensional codes.

[0015] The optical fiber fusion splicing module has the advantages that the optical fiber is fused and spliced through the fusion module, after the optical fiber is spliced, the adapter device is fixed to the lower side of the fusion module in the form of insertion to realize interference fit, the adapter device is fixed to the lower side of the fusion module, the information management panel is fixed to the lower side of the adapter device, the management label corresponding to the optical fiber is fixed to the information management panel through the label clamping groove, the management label is matched with the single optical fiber in the fusion module through the optical fiber core number serial number, the information of the optical fiber is inputted and displayed by using the management label, the corresponding optical fiber information can be obtained by the management label when people maintain the optical fiber in the future, and the optical fiber can be managed in the form of digitization and intelligence when the optical fiber is identified without adjusting the fusion module, the management label can be set through the information management panel, and the optical fiber can be managed in the form of digitization and intelligence. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a structural schematic view of the optical fiber fusion splicing module.

[0017] Figure 2 is a structural schematic view of the optical fiber fusion splicing module.

[0018] Figure 3 is a structural schematic view of the adapter device of the optical fiber fusion splicing module. DETAILED DESCRIPTION

[0019] The utility model makes further elaboration and illustration to the utility model by combining specific embodiment and the drawing of specification:

[0020] Please refer to Figure 1 and Figure 2 An optical fiber fusion splicing module, comprising a fusion module 10, an adapter device 20 and an information management panel 30, the fusion module 10 is used for the fusion splicing of optical fiber, the adapter device 20 is two in number, the adapter device 20 is provided with a guide groove 21 at the upper end, the fusion module 10 is provided with a clamping column 11 corresponding to the guide groove 21 at the lower end, the adapter device 20 is inserted into the lower end of the fusion module 10 through one side of the clamping column 11 to realize interference fit, and the two adapter devices 20 are arranged on the two sides of the fusion module 10, the information management panel 30 is fixedly connected with the corresponding two adapter devices 20 through fasteners 31 at both ends, the information management panel 30 is provided with a plurality of management labels 32 on the surface, and the management label 32 is provided with an optical fiber core number serial number 33 and a label clamping groove 34.

[0021] The optical fiber is fused and wired through the fusion module 10, and after the optical fiber is wired, the adapter 20 is fixed below the fusion module 10 in a plug-in manner, and the information management panel 30 is fixed below the adapter 20, the management tag 32 corresponding to the optical fiber is fixed on the information management panel 30 through the tag card slot 34, the management tag 32 is corresponded to the single optical fiber in the fusion module 10 through the optical fiber core number serial number 33, the information of the optical fiber is recorded and displayed by using the management tag 32, and when people maintain subsequently, the corresponding optical fiber information can be obtained through the management tag 32, and when the optical fiber is identified, the fusion module 10 does not need to be adjusted, the management tag 32 can be set through the information management panel 30 directly, so that the optical fiber can be managed digitally and intelligently.

[0022] In the above scheme, the fusion module 10 includes a disc body 12 and a disc cover 13, the disc body 12 and the disc cover 13 are fixed by buckle connection, the disc body 12 is provided with an optical fiber fusion area 121 in the middle, the optical fiber fusion area 121 is used for the fusion and wiring of the optical fiber, the disc body 12 is provided with a plurality of optical fiber adapters 14 at the lower end, the optical fiber adapters 14 are detachably connected with the disc body 12, and the optical fiber adapters 14 are arranged correspondingly to the management tags 32.

[0023] And the arc-shaped baffle 122 is arranged on both sides of the optical fiber fusion area 121, the arc-shaped baffle 122 and the inside of the disc body 12 form an optical fiber storage area 123, and the excess optical fiber can be wound in the optical fiber storage area 123, so as to avoid disorderly placement of the optical fiber wire.

[0024] The disc body 12 is provided with a lug 124 on both sides, the clamping column 11 is arranged at one end of the lug 124, and the diameter of the clamping column 11 is greater than the thickness of the lug 124, the shape of the guide groove 21 is matched with the shapes of the lug 124 and the clamping column 11, so that the adapter 20 cannot fall off from the vertical direction between the fixed adapter 20 and the disc body 12.

[0025] The lug 124 and the clamping column 11 form structures with different sizes and thicknesses, so that when the guide groove 21 is inserted from one side, the adapter 20 and the lug 124 and the clamping column 11 form an interference fit, a damping force is generated, the adapter 20 is connected and fixed with the fusion module 10, and the different sizes and thicknesses of the lug 124 and the clamping column 11 limit the falling off of the adapter 20 in the vertical direction. The limiting block 22 is arranged at one end of the adapter 20 close to the guide groove 21, and the limiting block 22 cooperates with the disc body 12 to limit the position of the adapter 20 inserted, and the limiting block 22 cooperates with the surface of the disc body 12 to block.

[0026] Please refer to Figure 3The surface of the adapter device 20 is provided with a wire arranging hole 23, and the optical fiber can be passed through the wire arranging hole 23 to play a combing role, and the adapter device 20 is provided with a pre-buried part 24 away from one end of the guide groove 21, the pre-buried part 24 is in threaded connection with a fastener 31, and the fastener 31 adopts a hand screw, so that people can tighten the hand screw without the aid of tools, and the surface of the hand screw is sleeved with a spring, and the spring can prevent the hand screw from being manually screwed.

[0027] The management label 32 can adopt a two-dimensional code to record data, each two-dimensional code corresponds to a core optical fiber, and through scanning the two-dimensional code, the attribution information of the optical fiber can be quickly found, and the two-dimensional code on the management label 32 adopts a UV printing and laser engraving process, has accurate identification and strong adhesion, and never fades and falls off.

[0028] The utility model provides a kind of optical fiber fusion splicing distribution module, and the fusion splicing distribution of optical fiber is carried out by fusion module, after the distribution of optical fiber, it can be fixed to the below of fusion module by the way of insertion with adapter device to make interference fit, make adapter device fixed below fusion module, information management panel is fixed below adapter device, the management label corresponding to optical fiber is fixed on information management panel by label card slot, the management label is corresponded with single optical fiber in fusion module by optical fiber core number serial number, information of optical fiber is input and shown using management label, it is convenient for subsequent people to maintain, corresponding optical fiber information can be obtained by management label, and when optical fiber identification is carried out, fusion module also does not need to be adjusted, management label can be set directly by information management panel, so that optical fiber can be managed digitally and intelligently.

[0029] Finally, it should be explained that the above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit the protection scope of the utility model, although the utility model has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the essence and scope of the technical solutions of the utility model.

Claims

1. A fiber optic fusion splice enclosure module, comprising: Including the fusion module, the adapter device and the information management panel, the fusion module is used for the fusion of optical fiber wiring, the adapter device is two, the upper end of the adapter device is provided with a guide groove, the lower end of the fusion module is provided with a clamping column corresponding to the guide groove, the adapter device is inserted into the lower end of the fusion module through the interference fit of one side of the clamping column, and the two adapter devices are arranged on both sides of the fusion module, the information management panel is fixedly connected with the corresponding two adapter devices through the fastener at both ends, the information management panel is provided with a plurality of management tags on the surface, and the optical fiber core number serial number and the label card slot are arranged corresponding to the management tags.

2. A fiber optic fusion splice tray as in claim 1, wherein, The fusion module includes a disc body and a disc cover, the disc body and the disc cover are fixed by buckle connection, the disc body is provided with an optical fiber fusion area in the middle, the optical fiber fusion area is used for the fusion of optical fiber wiring, the disc body is provided with a plurality of optical fiber adapters at the lower end, and the optical fiber adapters are detachably connected with the disc body, and the optical fiber adapters are arranged corresponding to the management tags.

3. A fiber optic fusion splice tray as in claim 2, wherein, The optical fiber fusion area is provided with an arc-shaped baffle on both sides, and the arc-shaped baffle and the disc body form an optical fiber storage area inside.

4. A fiber optic fusion splice tray as in claim 2, wherein, The disc body is provided with a lug on both sides, the clamping column is arranged at one end of the lug, and the diameter of the clamping column is greater than the thickness of the lug, the shape of the guide groove is matched with the shape of the lug and the clamping column, so that the adapter device and the disc body cannot be separated from the vertical direction.

5. A fiber optic fusion splice tray as in claim 4, wherein, The adapter device is provided with a limiting block near one end of the guide groove, and the limiting block cooperates with the disc body to limit the position of the adapter device.

6. A fiber optic fusion splice tray as in claim 1, wherein, The surface of the adapter device is provided with a wire arranging hole, and the adapter device is provided with a pre-embedded part away from the guide groove, and the pre-embedded part is threadedly connected with the fastener.

7. A fiber optic fusion splice tray as in claim 6, wherein, The fastener adopts a hand screw, and the surface of the hand screw is provided with a spring.

8. A fiber optic fusion splice tray as in claim 1, wherein, The management tag can record data by using a two-dimensional code. The management tag can record data by using a two-dimensional code.