Modularized optical fiber communication box body connecting mechanism
The modular fiber optic communication box connection mechanism solves the problem of poor stability of traditional fiber optic communication box connection mechanisms, achieving stable connection and efficient heat dissipation, and improving the efficiency of modular replacement and sorting.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN ZHENGFAN HARDWARE TECHNOLOGY CO LTD
- Filing Date
- 2025-07-01
- Publication Date
- 2026-04-28
AI Technical Summary
The connection mechanism of traditional fiber optic communication boxes has poor stability in terms of modularity, resulting in unstable assembly of the communication connection structure and the inability to modularly replace hardware, which affects the efficiency of communication cable management.
The modular fiber optic communication box connection mechanism includes a control mechanism, a fiber optic connector mechanism, a fiber optic cable management mechanism, and a heat dissipation mechanism. Stable connection and heat dissipation are achieved through components such as adjusting screws, protective covers, and cooling fans, and modular replacement and efficient cable management are supported.
It improves the stability of communication connections and the convenience of modular replacement, enhances the overall component connection stability and heat dissipation efficiency of the fiber optic communication box, and improves the efficiency of communication cable management.
Smart Images

Figure CN224176770U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of communication module box technology, and more specifically, to a modular optical fiber communication box connection mechanism. Background Technology
[0002] Fiber optic communication enclosures play a crucial role in fiber optic communication networks and mainly include fiber optic terminal boxes and fiber optic distribution frames.
[0003] The communication box technology disclosed in application number CN202221503984.1 relates to the field of communication equipment technology. This utility model discloses a communication box in which a pivot assembly is provided on one outer wall of the upper cover, connecting to the lower cover. The pivot assembly includes an upper pivot plate and a lower pivot plate. The upper pivot plate is fixed to one outer wall of the upper cover, and the lower pivot plate is fixed to the outer wall of the lower cover corresponding to the upper pivot plate. A pivot shaft extends from the surface of the upper pivot plate near its end, and a pivot hole penetrates the surface of the lower pivot plate near its end. This communication box, through the pivot assembly on the outer walls of the upper and lower covers, allows the upper cover to be pivotally connected to the lower cover. This enables the upper cover to be directly hung on one side edge of the lower cover after it is opened, via the rotational connection of the upper and lower pivot plates, increasing the convenience of maintenance during communication box repair. The detachable limiting piece connected to the pivot shaft can limit the axial position of the pivot shaft within the pivot hole, preventing the pivot shaft from disengaging from the pivot hole and ensuring the connection stability of the upper and lower pivot plates.
[0004] Based on this, we agree with the advantages of the aforementioned products, but the following drawbacks still exist:
[0005] 1) Traditional fiber optic communication has poor stability in terms of corresponding connection mechanisms and modular communication connection structures, which can easily lead to unstable assembly of the corresponding communication connection structure.
[0006] 2) The communication structure in the traditional modular processing stage cannot be modularized. The overall fiber optic communication box cannot be uniformly disassembled and replaced. The overall components cannot be replaced compared to modularization, and the efficiency of managing communication cables is poor. Utility Model Content
[0007] The purpose of this utility model is to provide a modular optical fiber communication box connection mechanism to solve the problem that the connection mechanism in the traditional optical fiber communication stage mentioned in the background technology has poor stability in terms of modular communication connection structure, which easily causes the problem of unstable assembly of corresponding communication connection structure.
[0008] This utility model embodiment provides a modular optical fiber communication box connection mechanism, including a control mechanism. The control mechanism includes a first control box for support. A communication panel is provided at the end of the surface of the first control box. A plurality of heat dissipation holes are sequentially opened in the middle of the communication panel. An adjustment base for assembly is embedded inside the plurality of heat dissipation holes.
[0009] The communication panel has a connecting base on its side surface, and a fiber optic connector is horizontally installed at the top center of the communication panel.
[0010] As a preferred embodiment of this utility model: the fiber optic crystal head connection mechanism includes a connection crystal groove disposed at the top center of the communication panel, and several access sockets are provided on the surface of the communication panel, and several access sockets are arranged sequentially on the surface of the communication panel.
[0011] As a preferred embodiment of this utility model: fiber optic cable combing mechanisms are symmetrically installed on both sides of the communication panel.
[0012] The surface cover of the access socket is equipped with a protective cover, and a circuit board is located at the bottom of the protective cover. An optical fiber coordination chip is located in the center of the circuit board.
[0013] As a preferred embodiment of this utility model: the fiber optic coordination chip has access sockets on both sides of its top, and capacitors are provided on the sides of several access sockets. The circuit board has a connector for assembly on its top side.
[0014] As a preferred embodiment of this utility model: the optical fiber combing mechanism includes L-shaped clamping bases symmetrically installed on both sides of the communication panel. Each of the four corners of the sides of the L-shaped clamping bases is provided with an adjusting screw for connection. The surface of the L-shaped clamping bases is correspondingly installed with threaded sleeves for pipe passage. The back of the threaded sleeves is provided with a connecting pipe base, and the back of the connecting pipe base is provided with a combing box.
[0015] As a preferred embodiment of this utility model: the back of the combing box has an L-shaped connecting pipe, the end of the L-shaped connecting pipe is fitted with a covering sleeve, the top center of the covering sleeve is provided with a second control box for support, and the side of the second control box is fitted with a positioning mechanism.
[0016] As a preferred embodiment of the present invention: the positioning mechanism includes an access base installed on the top side of the second control box, a connecting rod provided on the side of the access base, an assembly cabinet vertically provided at the top center of the connecting rod, and a conical base vertically provided at the top center of the assembly cabinet.
[0017] As a preferred embodiment of the present invention: a heat dissipation mechanism is provided on the back of the first control box, the heat dissipation mechanism includes a cooling fan installed on the surface of the first control box, and a drive motor is installed on the surface of a plurality of cooling fans.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] 1) By using a communication panel and heat dissipation openings, heat exchange is achieved, and the surface is connected. The adjusting screw and one end of the protective cover are connected to one end of the comb box. By using a covering sleeve, the tube structure is directly placed into the control box to avoid damage to the fiber optic structure. The modular structure makes it more convenient to replace parts.
[0020] 2) The fiber optic cable is coordinated with chips and circuits. The number of plugs can be changed according to daily needs. The fiber optic communication box crystal head is plugged in. The surface of the connector and access socket is used to assemble various fiber optic communication structures. The drive motor is powered on to drive the fan blades of the cooling fan to rotate rapidly. As one end of the box, the gas is circulated and replaced internally and externally. The heat dissipation opening structure realizes the cyclic extraction and connection according to the circulated connection of the covering sleeve. Attached Figure Description
[0021] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:
[0022] Figure 1 This is a schematic diagram of the structure of this utility model;
[0023] Figure 2 This is a side view of the present invention.
[0024] Figure 3 This is a schematic diagram of the connecting seat structure of this utility model;
[0025] Figure 4 This is a schematic diagram of the protective cover structure of this utility model;
[0026] Figure 5 This is a schematic diagram of the encapsulated sleeve structure of this utility model;
[0027] Figure 6 This is a schematic diagram of the heat dissipation mechanism of this utility model.
[0028] In the diagram: 1. Control mechanism; 11. First control box; 12. Communication panel; 13. Heat dissipation vent; 14. Adjustment base;
[0029] 2. Fiber optic connector mechanism; 21. Connecting crystal slot; 22. Access socket; 23. Protective cover; 24. Circuit board; 25. Fiber optic cable coordination chip; 26. Mounting base; 27. Capacitor; 28. Connector base;
[0030] 3. Fiber optic cable combing mechanism; 31. L-shaped clamping base; 32. Adjusting screw; 33. Threaded sleeve; 34. Connector base; 35. Combing box; 36. L-shaped connecting tube; 37. Covering sleeve; 38. Second control box;
[0031] 4. Positioning mechanism; 41. Access base; 42. Connecting upright; 43. Assembly cabinet; 44. Conical base;
[0032] 5. Heat dissipation mechanism; 51. Cooling fan; 52. Drive motor. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Example
[0035] Please see Figure 1 - Figure 6 This utility model provides a technical solution: a modular optical fiber communication box connection mechanism, including a control mechanism 1. The control mechanism 1 includes a first control box 11 for support. A communication panel 12 is provided at the end of the box surface of the first control box 11. A plurality of heat dissipation holes 13 are sequentially opened in the middle of the communication panel 12. An adjustment base 14 for assembly is embedded inside the plurality of heat dissipation holes 13.
[0036] The communication panel 12 has an adjustment base 14 for connection on the side of the panel, and a fiber optic crystal head connection mechanism 2 is horizontally installed at the top center of the communication panel 12.
[0037] In this embodiment: the fiber optic crystal head connection mechanism 2 includes a connection crystal groove 21 disposed at the top center of the communication panel 12, and several access sockets 22 are provided on the surface of the communication panel 12, and several access sockets 22 are arranged sequentially on the surface of the communication panel 12.
[0038] One end of the connecting crystal slot 21 is used to realize the board structure of the communication panel 12, and to implement the connection of the specific communication module crystal head.
[0039] In this embodiment: fiber optic cable combing mechanisms 3 are symmetrically installed on both sides of the communication panel 12.
[0040] The surface cover of the access socket 22 is provided with a protective cover 23, the bottom of the protective cover 23 is provided with a circuit board 24, and the center of the circuit board 24 is provided with an optical fiber coordination chip 25.
[0041] The protective cover 23 and the board structure of the circuit board 24 are used to implement the interconnection of the access socket 22. After being covered and fixed by the protective cover 23, the analysis connection of the built-in fiber optic coordination chip 25 is ensured.
[0042] In this embodiment: the top two sides of the fiber optic coordination chip 25 are provided with mounting bases 26, and the sides of several mounting bases 26 are provided with capacitors 27. The top side of the circuit board 24 is provided with connectors 28 for assembly.
[0043] The circuit board 24 and the fiber optic cable coordination chip 25 are used to improve the efficiency of communication between various information.
[0044] In this embodiment: the fiber optic cable combing mechanism 3 includes L-shaped clamping bases 31 symmetrically installed on both sides of the communication panel 12. Each of the four corners of the sides of the L-shaped clamping bases 31 is provided with adjusting screws 32 for connection. The surface of the L-shaped clamping bases 31 is correspondingly installed with threaded sleeves 33 for pipe passage. The back of the threaded sleeves 33 is provided with a connecting pipe base 34. The back of the connecting pipe base 34 is provided with a combing box 35.
[0045] The use of threaded sleeve 33 and connector base 34 allows the optical fiber to be inserted from the threaded sleeve 33 into the connector base 34, thus realizing the interconnection of the threaded sleeve 33 in a specific pipe-through state.
[0046] In this embodiment: the back of the comb box 35 has an L-shaped connecting pipe 36, the end of the L-shaped connecting pipe 36 is equipped with a covering sleeve 37, the top center of the covering sleeve 37 is provided with a second control box 38 for support, and the side of the second control box 38 is equipped with a positioning mechanism 4.
[0047] The second control box 38 allows users to connect fiber optic communication modules, and the positioning mechanism 4 serves as a structural connection between the combing boxes 35.
[0048] In this embodiment: the positioning mechanism 4 includes an access base 41 installed on the top side of the second control box 38, a connecting rod 42 is provided on the side of the access base 41, an assembly cabinet 43 is vertically provided at the top center of the connecting rod 42, and a conical base 44 is vertically provided at the top center of the assembly cabinet 43.
[0049] In this embodiment: a heat dissipation mechanism 5 is provided on the back of the first control box 11. The heat dissipation mechanism 5 includes a heat dissipation fan 51 installed on the surface of the first control box 11, and a drive motor 52 is installed on the surface of a plurality of heat dissipation fans 51.
[0050] The cooling fan 51 and drive motor 52 are used. When powered on, the cooling fan 51 is rotated, and the cooling fans 51 are interconnected, so that the internal heat is evenly replaced from inside the box.
[0051] In practical use, the first step is to connect the modules of the fiber optic communication box;
[0052] Firstly, based on the first control box 11 for assembly, for the connection of optical fibers, the personnel only need to place the optical fiber strands into the surface of the covering sleeve 37 according to the quantity of the comb tubes, and place them into the surface of the L-shaped connector tube 36 according to the tube structure of the covering sleeve 37. The combing state of the comb box 35 serves as the unified classification and replacement of the optical fibers. At this time, the personnel tighten the adjusting screws 32 according to the connection state of the adjusting screws 32, and place the fiber heads of the series connection into the surface of each adjusting screw 32 to achieve assembly. At this time, the user uses the surface of the L-shaped clamping base 31 and the specific box of the second control box 38 to achieve specific combination. During the combination stage, according to the communication panel 12, the user uses the surface of the corresponding access socket 22 to achieve the insertion of the crystal head. Through one end of the capacitor 27, the specific mounting base 26 is connected. The optical fiber coordination chip 25 achieves the unified analysis of the optical fiber cable. According to the connector 28, the various communication modules are realized and the communication modules are connected.
[0053] Step Two: Remote monitoring of communication;
[0054] At this point, the user connects to the base 41 and uses one end of the connecting pole 42 to remotely locate the specific communication terminal. Through the embedded end structure inside the second control box 38, communication with the specific built-in communication module is achieved. Through one end of the plug-in end of the access socket 22, it is directly guided to the inside of the second control box 38 to achieve mutual matching. When the cooling fan 51 rotates, the surface of the cooling fan 51 rotates after the drive motor 52 is powered on, ensuring the internal and external heat dissipation of the box temperature inside the modular unit.
[0055] The contents not described in detail in this description are existing technologies known to those skilled in the art. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A modular optical fiber communication housing connection mechanism, comprising a control mechanism (1), characterized in that, The control mechanism (1) includes a first control box (11) for support. A communication panel (12) is provided at the end of the box surface of the first control box (11). A plurality of heat dissipation openings (13) are sequentially opened in the middle of the communication panel (12). An adjustment base (14) for assembly is embedded inside the plurality of heat dissipation openings (13). The communication panel (12) has a connecting base (14) on its side surface, and a fiber optic crystal head connector (2) is horizontally installed at the top center of the communication panel (12).
2. The modular optical fiber communication housing connection mechanism according to claim 1, characterized in that: The fiber optic crystal head connection mechanism (2) includes a connection crystal groove (21) located at the top center of the communication panel (12), and access sockets (22) are provided on the surface of several communication panels (12), with several access sockets (22) arranged sequentially on the surface of the communication panel (12).
3. The modular optical fiber communication housing connection mechanism according to claim 2, characterized in that: The communication panel (12) is symmetrically equipped with fiber optic cable combing mechanisms (3) on both sides. The surface of the access socket (22) is covered with a protective cover (23), and the bottom of the protective cover (23) is provided with a circuit board (24), and the center of the circuit board (24) is provided with an optical fiber coordination chip (25).
4. The modular optical fiber communication housing connection mechanism according to claim 3, characterized in that: The fiber optic coordination chip (25) has mounting bases (26) on both sides of its top end, and capacitors (27) are provided on the sides of several mounting bases (26). The circuit board (24) has connecting bases (28) for assembly on its top side.
5. The modular optical fiber communication housing connection mechanism according to claim 3, characterized in that: The fiber optic cable combing mechanism (3) includes L-shaped clamping bases (31) symmetrically installed on both sides of the communication panel (12). Each of the four corners of the L-shaped clamping bases (31) is provided with an adjusting screw (32) for connection. The surface of the L-shaped clamping bases (31) is correspondingly installed with threaded sleeves (33) for pipe passage. The back of the threaded sleeves (33) is provided with a connecting pipe base (34). The back of the connecting pipe base (34) is provided with a combing box (35).
6. The modular optical fiber communication housing connection mechanism according to claim 5, characterized in that: The back of the combing box (35) is connected to an L-shaped connecting pipe (36), and a covering sleeve (37) is installed at the end of the L-shaped connecting pipe (36). A second control box (38) for support is provided at the middle of the top of the covering sleeve (37), and a positioning mechanism (4) is installed on the side of the box body of the second control box (38).
7. The modular optical fiber communication housing connection mechanism according to claim 6, characterized in that: The positioning mechanism (4) includes an access base (41) installed on the top side of the second control box (38). The access base (41) has a connecting rod (42) on its side. An assembly cabinet (43) is vertically provided at the top center of the connecting rod (42). A conical base (44) is vertically provided at the top center of the assembly cabinet (43).
8. The modular optical fiber communication housing connection mechanism according to claim 1, characterized in that: The back of the first control box (11) is provided with a heat dissipation mechanism (5), which includes a heat dissipation fan (51) installed on the surface of the first control box (11), and a drive motor (52) is installed on the surface of a plurality of the heat dissipation fans (51).
Citation Information
Patent Citations
Communication box body
CN217509233U