Multi-layer assembled optical fiber distribution frame
The design of the snap-fit fixing components and the pre-installed cable management components solves the problem of disassembly and organization when there are many cables at the distribution end of the multi-layer assembled fiber optic distribution frame, realizing convenient installation and management of fiber optic cables and improving the modular assembly and expansion capabilities of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WANMA TECH CO LTD
- Filing Date
- 2025-06-12
- Publication Date
- 2026-04-14
AI Technical Summary
Existing multi-layer assembled fiber optic patch panels are difficult to disassemble and organize when there are too many patch terminals, especially the connection and fixation of fusion splice modules, patch modules and storage modules.
It adopts a snap-fit fixing component and a pre-installed cable management component. Through the structure of snap-fit plate, cable distribution module rack, cable management rack, built-in module and rubber channel rack, it realizes the flexible wrapping and snap-fit fixing of fiber optic cables, replacing the traditional cable tie fixing, which facilitates later disassembly and organization.
It improves the ease of disassembly and installation of fiber optic cabling, enhances the flexibility and scalability of modular assembly, simplifies the cabling organization process, and improves the management and maintenance efficiency of equipment.
Smart Images

Figure CN224122807U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of multi-layer assembled fiber optic distribution frames, specifically a multi-layer assembled fiber optic distribution frame. Background Technology
[0002] Multi-layer assembled fiber optic patch panels employ a multi-layer design, typically composed of multiple patch modules or units. Each module or unit can independently connect, splice, and manage fiber optic cables, improving space utilization and cabling flexibility. Modular assembly: It has a high degree of modularity, allowing for the selection and assembly of different types and quantities of modules according to actual needs, such as splicing modules, patch modules, and storage modules, facilitating expansion and upgrades. Rack-mount installation: It is generally installed on a standard 19-inch rack and can be integrated with other communication equipment in a computer room or communication cabinet for centralized management and cabling.
[0003] Existing multi-layer assembled fiber optic distribution frames have too many patch terminals. They are assembled individually and require connections to splice modules, patch modules, and storage modules before installation. The internal installation structure is separate. The back-end processing cable of the multi-layer assembled fiber optic distribution frame is fixed with cable ties, which makes it difficult to disassemble and reassemble the patch panels later. It is also difficult to organize and install the patch panels according to the splice modules, patch modules, and storage modules. Utility Model Content
[0004] The purpose of this invention is to provide a multi-layer assembled fiber optic distribution frame to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A multi-layer assembled fiber optic patch panel includes a patch connection module, a snap-on plate, a patch module frame, and a patch assembly. The snap-on plate is fixed to a mounting point on the patch connection module, and the patch module frame is mounted on a mounting point on the snap-on plate. The patch assembly also includes a patch connection module and a patch module frame mounted on a mounting point.
[0007] A snap-fit fixing assembly is installed on the wiring module frame;
[0008] The cable management pre-assembly assembly is mounted on the wiring module frame;
[0009] The wiring module frame has module holes inside, and a cable management rack is threaded to the rear end of the wiring module frame. The cable management rack has a buckle hole, and a fixing bolt is threaded through the buckle hole.
[0010] As described above, the multi-layer assembled fiber optic patch panel: the patch panel connection module and the clip plate are fastened to the cable management rack via the patch panel module frame.
[0011] As described above, the multi-layer assembled fiber optic distribution frame: the cable management frame and the distribution module frame are threaded together by locking holes and fixing bolts.
[0012] As described above, the multi-layer assembled fiber optic distribution frame includes an assembly slot on the cable management frame, and a built-in module is provided at the fixing point on the assembly slot.
[0013] As described above, the multi-layer assembled fiber optic patch panel: the built-in module and the assembly slot are mounted on the patch panel frame via a cable management rack.
[0014] As described above, the multi-layer assembled fiber optic patch panel includes a built-in pin fixedly connected to the patch panel frame, and the mounting position of the built-in pin is provided with a groove frame.
[0015] As described above, the multi-layer assembled fiber optic distribution frame includes an assembly slot frame assembled on the cable management frame. The mounting point of the assembly slot frame is provided with an assembly protrusion. A rubber slot frame is snap-fitted onto the assembly slot frame. The assembly point of the rubber slot frame is provided with a placement slot.
[0016] Compared with the prior art, the beneficial effects of this utility model are as follows: the optical fiber distribution cable is arranged inside the rubber tray, and the rubber tray can elastically wrap around the outside of the optical fiber distribution cable. The assembly tray is snapped into the inside of the rubber tray, which facilitates the pre-installation of the optical fiber distribution cable in the rubber tray and the assembly tray. After the assembly bracket and the placement slot are assembled, the distribution module frame is installed inside the groove bracket, the assembly bracket and the placement slot through the built-in pin. It is then further snapped and fixed by the fixing bolt. The rubber tray and the assembly tray replace cable ties for fixing, which facilitates the disassembly and assembly of the distribution cable later. The distribution cable is organized and installed according to the splicing module, distribution module, storage module, etc., and then the rubber tray and the assembly tray are used for protective buckle and cable fixing.
[0017] When the number of patch terminals in a multi-layer assembled fiber optic patch panel is too large, and individual assembly is used, fusion splicing modules, patch modules, storage modules, etc. are installed on the patch panel frame through patch connection modules and module holes. When patch connection modules and module holes are used, they can also be connected and installed through built-in modules and assembly slots. At the same time, internal separate installation is carried out. Built-in modules and assembly slots can replace patch connection modules and module holes for patch installation, increase the patch structure of the multi-layer assembled fiber optic patch panel, and provide separate backup installation. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is a schematic diagram of the structure of the buckle fixing component of this utility model;
[0020] Figure 3 This is a schematic diagram of the pre-assembled cable management component of this utility model;
[0021] Figure 4 This is a schematic diagram of the assembly slot frame of this utility model.
[0022] In the diagram: 1. Wiring connection module; 2. Clip plate; 3. Module hole; 4. Wiring module rack; 5. Cable management rack; 6. Clip hole; 7. Fixing bolt; 8. Built-in module; 9. Assembly slot; 10. Built-in pin; 11. Groove rack; 12. Assembly slot rack; 13. Rubber slot rack; 14. Assembly protrusion; 15. Placement slot. Detailed Implementation
[0023] Various exemplary embodiments, features, and aspects of this application will now be described in detail with reference to the accompanying drawings. The same reference numerals in the drawings denote elements that have the same or similar functions. Although various aspects of the embodiments are shown in the drawings, they are not necessarily drawn to scale unless specifically indicated otherwise.
[0024] The term “exemplary” as used herein means “serving as an example, embodiment, or illustration.” Any embodiment illustrated herein as “exemplary” is not necessarily to be construed as superior to or better than other embodiments.
[0025] Furthermore, to better illustrate this application, numerous specific details are provided in the following detailed embodiments. Those skilled in the art should understand that this application can be implemented even without certain specific details. In some instances, methods, means, and elements well-known to those skilled in the art have not been described in detail in order to highlight the main points of this application.
[0026] Please see Figures 1-4 A multi-layer assembled fiber optic distribution frame is proposed, including a wiring connection module 1, a snap-fit plate 2, a wiring module frame 4, and wiring components.
[0027] A clip plate 2 is connected to the fixing point on the wiring connection module 1. A wiring module frame 4 is provided at the mounting point on the clip plate 2. The wiring assembly is provided with the wiring connection module 1 and the wiring module frame 4 at the mounting point. A clip fixing component is installed on the wiring module frame 4. A cable management pre-assembly component is set on the wiring module frame 4.
[0028] The fiber optic cable is securely installed on the cable connection module 1. The cable connection module 1 is inserted into the cable module frame 4 through the snap plate 2. The fiber optic cable on the cable connection module 1 can be snapped on and installed. Different types and quantities of modules can be selected for assembly according to actual needs.
[0029] The wiring module frame 4 has a module hole 3 inside, and a cable management frame 5 is threadedly connected to the rear end of the wiring module frame 4. The cable management frame 5 has a buckle hole 6 at the buckle, and a fixing bolt 7 is threaded through the buckle hole 6.
[0030] In this embodiment, module holes 3 are distributed inside the wiring module frame 4, so that the wiring connection module 1 is inserted and snapped into the module hole 3 through the snap plate 2. The wiring module frame 4 is installed on the cable management frame 5. The snap hole 6 is opened on the cable management frame 5. When the wiring module frame 4 and the cable management frame 5 are assembled together, the fixing bolt 7 is threaded through the snap hole 6, which can snap and fix the wiring module frame 4 and the cable management frame 5.
[0031] Preferably, the wiring connection module 1 and the buckle plate 2 are fastened to the cable management rack 5 by the wiring module frame 4. When the wiring connection module 1 and the buckle plate 2 are distributed and installed inside the wiring module frame 4, the wiring module frame 4 is fastened to the cable management rack 5 by the fixing bolt 7 and the buckle is assembled.
[0032] Preferably, the cable management frame 5 and the cable management module frame 4 are threaded together through the locking hole 6 and the fixing bolt 7. When the cable management module frame 4 is threadedly fastened to the cable management frame 5 through the fixing bolt 7, the fixing bolt 7 is threaded through the locking hole 6 and the cable management frame 5 to fasten the cable management module frame 4 and the cable management frame 5.
[0033] Please refer to Figure 1 and Figure 2 In this embodiment, the snap-fit fixing component includes an assembly slot 9 formed on the cable management rack 5, and a built-in module 8 is provided at the fixing point on the assembly slot 9.
[0034] The assembly slots 9 are distributed inside the cable management rack 5, so that the built-in module 8 is fixedly installed on the assembly slots 9. When the cable module rack 4 and the cable management rack 5 are fastened by the clips 6 and the fixing bolts 7, the built-in module 8 and the assembly slots 9 are installed on the cable module rack 4.
[0035] Preferably, the built-in module 8 and the assembly slot 9 are installed on the distribution module frame 4 via the cable management frame 5. The cable connection module 1 and the module hole 3 on the distribution module frame 4 are aligned and installed inside the built-in module 8 and the assembly slot 9 via the clip 6 and the fixing bolt 7. The cable connection module 1 and the module hole 3 can be connected inside the cable management frame 5. The cable management frame 5 is connected and installed via the built-in module 8 and the assembly slot 9. When the number of cable terminals of the multi-layer assembled fiber optic distribution frame is too large, and a single assembly is used, the fusion splice module, the distribution module, the storage module, etc. are installed on the distribution module frame 4 via the distribution connection module 1 and the module hole 3. When the distribution connection module 1 and the module hole 3 are connected and installed via the built-in module 8 and the assembly slot 9, they can also be installed separately inside. The built-in module 8 and the assembly slot 9 can replace the distribution connection module 1 and the module hole 3 for cable installation, increase the cable distribution structure of the multi-layer assembled fiber optic distribution frame, and provide separate backup installation.
[0036] Please refer to Figure 3 and Figure 4 In this embodiment, the cable management pre-assembly component includes an internal pin 10 fixedly connected to the wiring module frame 4, and a groove frame 11 is provided at the mounting position on the internal pin 10.
[0037] The built-in pin 10 is fixedly connected to the wiring module frame 4. When the wiring module frame 4 is installed on the cable management frame 5, the wiring module frame 4 is installed on the cable management frame 5 through the built-in pin 10. The built-in pin 10 on the wiring module frame 4 is installed inside the groove frame 11. When the fixing bolt 7 is threaded through the clip hole 6 and the cable management frame 5, the wiring module frame 4 and the cable management frame 5 can be fastened.
[0038] Please refer to Figure 3 and Figure 4 In this embodiment, the cable management pre-assembly component also includes an assembly slot 12 assembled on the cable management frame 5. An assembly protrusion 14 is provided at the mounting position on the assembly slot 12. A rubber slot 13 is snapped onto the assembly slot 12. A placement slot 15 is provided at the assembly position on the rubber slot 13.
[0039] The assembly tray 12 is assembled and installed on the cable management frame 5, so that the assembly protrusion 14 on the assembly tray 12 is installed entirely inside the placement slot 15. The assembly tray 12 is installed inside the placement slot 15 through the assembly protrusion 14. The assembly tray 12 and the rubber tray 13 are assembled through the assembly protrusion 14 and the placement slot 15. The assembly tray 12 and the rubber tray 13 are installed entirely inside the cable management frame 5, and the fiber optic cables can be arranged inside the rubber tray 13. The rubber tray 13 can elastically wrap around the outside of the fiber optic cables. The assembly tray 12 is then fully engaged inside the rubber tray 13. The rubber tray 13 and the assembly tray 12 facilitate the pre-installation of fiber optic cabling within them. After the assembly bracket 14 and the placement slot 15 are assembled, the cabling module frame 4 is installed inside the recessed frame 11, the assembly bracket 14, and the placement slot 15 via the built-in pin 10. It is then further secured with fixing bolts 7. The rubber tray 13 and the assembly tray 12 replace cable ties for fixing, which facilitates the disassembly and reassembly of cabling later. The cabling is then organized and installed according to the splicing module, cabling module, storage module, etc., and then secured with protective buckles using the rubber tray 13 and the assembly tray 12.
[0040] As can be seen from the above, during use, the wiring connection module 1 is inserted into the wiring module frame 4 through the snap-fit plate 2, which allows for snap-fit installation of the fiber optic wiring on the wiring connection module 1. The wiring connection module 1 and the module hole 3 are aligned and installed inside the built-in module 8 and the assembly slot 9 through the snap-fit hole 6 and the fixing bolt 7. The wiring connection module 1 and the module hole 3 can be connected inside the cable management frame 5. The cable management frame 5 is connected and installed through the built-in module 8 and the assembly slot 9. The assembly slot frame 12 and the rubber slot frame 13 are assembled through the assembly protrusion 14 and the placement slot 15. The assembly slot frame 12 and the rubber slot frame 13 are installed as a whole inside the cable management frame 5. The fiber optic wiring can be arranged inside the rubber slot frame 13. The rubber slot frame 13 can elastically wrap around the outside of the fiber optic wiring. The assembly slot frame 12 is snapped into the rubber slot frame 13, which facilitates the pre-installation snap-fit of the fiber optic wiring in the rubber slot frame 13 and the assembly slot frame 12.
[0041] The wiring connection module 1 and module hole 3 are connected inside the cable management frame 5. The cable management frame 5 is connected and installed through the built-in module 8 and assembly slot 9. When the number of wiring terminals of the multi-layer assembled fiber optic distribution frame is too large, and a single assembly is adopted, the fusion splice module, wiring module, storage module, etc. are installed on the wiring module frame 4 through the wiring connection module 1 and module hole 3. When the wiring connection module 1 and module hole 3 are connected and installed through the built-in module 8 and assembly slot 9, the internal separate installation is also carried out. The built-in module 8 and assembly slot 9 can replace the wiring connection module 1 and module hole 3 for wiring installation.
[0042] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0043] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A multi-layer assembled fiber optic distribution frame, comprising a distribution connection module (1), a snap-on plate (2), a distribution module frame (4), and a distribution assembly, wherein the snap-on plate (2) is connected to a fixing point on the distribution connection module (1), the distribution module frame (4) is provided at a mounting point on the snap-on plate (2), and the distribution connection module (1) and the distribution module frame (4) are provided at a mounting point on the distribution assembly, characterized in that: It also includes settings, The snap-fit fixing assembly is installed on the wiring module frame (4); The cable management pre-assembly assembly is installed on the wiring module frame (4); The wiring module frame (4) has a module hole (3) inside, and a cable management frame (5) is threaded to the rear end of the wiring module frame (4). The cable management frame (5) has a buckle hole (6) on the buckle, and a fixing bolt (7) is threaded through the buckle hole (6).
2. The multi-layer assembled fiber optic distribution frame according to claim 1, characterized in that, The wiring connection module (1) and the buckle plate (2) are fastened to the cable management rack (5) by the wiring module frame (4).
3. The multi-layer assembled fiber optic distribution frame according to claim 1, characterized in that, The cable management frame (5) and the wiring module frame (4) are threaded together through the clips (6) and the fixing bolts (7).
4. The multi-layer assembled fiber optic distribution frame according to claim 1, characterized in that, The buckle fixing component includes an assembly slot (9) opened on the cable management rack (5), and a built-in module (8) is provided at the fixing point on the assembly slot (9).
5. A multi-layer assembled fiber optic distribution frame according to claim 4, characterized in that, The built-in module (8) and the assembly slot (9) are mounted on the wiring module rack (4) via the cable management rack (5).
6. A multi-layer assembled fiber optic distribution frame according to claim 1, characterized in that, The cable management pre-assembly assembly includes an internal pin (10) fixedly connected to the wiring module frame (4), and the mounting position of the internal pin (10) is provided with a groove frame (11).
7. A multi-layer assembled fiber optic distribution frame according to claim 6, characterized in that, The cable management pre-assembly assembly also includes an assembly slot (12) assembled on the cable management frame (5). An assembly protrusion (14) is provided at the mounting point on the assembly slot (12). A rubber slot (13) is snapped onto the assembly slot (12). A placement slot (15) is provided at the assembly point on the rubber slot (13).