Distribution box
By placing the fiber optic module box and the copper module box side by side in one enclosure, the problem of low space utilization caused by separate placement of the fiber optic module box and the copper module box is solved, realizing high-density fiber optic and copper cable connection and simplifying the installation and maintenance process.
Patent Information
- Application Number
- CN202520159197.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-23
AI Technical Summary
In existing technologies, the separate installation of fiber optic module boxes and copper module boxes results in low space utilization and increases the difficulty of data center layout and maintenance costs.
The fiber optic module box and the copper module box are integrated into a single enclosure. By setting at least two cavities within the enclosure, the fiber optic module box and the copper module box can be arranged side by side. The installation ports enable quick installation and disassembly, simplifying the installation process.
It improves space utilization, simplifies installation difficulty and time costs, reduces maintenance costs, and meets the installation needs of equipment with different communication requirements.
Smart Images

Figure CN223664822U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication equipment technical field, especially a distribution box. BACKGROUND
[0002] In modern communication network construction, optical fiber communication and copper network communication bear important roles respectively. Optical fiber communication is widely applied to backbone network and long distance transmission scene with the advantages of high bandwidth, long transmission distance and strong anti-interference, and copper network communication occupies an important position in local area network, home broadband access and other fields with mature access technology, good compatibility and lower cost. However, in practical application, optical fiber communication and copper network communication need to be fused to meet diversified communication demands and realize seamless network connection.
[0003] In the related art, the optical fiber module box and the copper module box are usually arranged separately and installed in different cabinets (distribution boxes) or devices. However, this arrangement results in low space utilization, increases the difficulty of layout and maintenance cost of the machine room, and also increases the workload and maintenance difficulty. SUMMARY
[0004] The main purpose of the utility model is to provide a distribution box, which aims to solve the technical problem of low space utilization caused by separate arrangement of optical fiber module boxes and copper network modules in the related art.
[0005] To achieve the above purpose, the distribution box provided by the utility model comprises:
[0006] A cabinet is provided with at least two cavities, and each cavity is provided with an installation opening on one side for communication between the cavity and the outside world.
[0007] An optical fiber module box is arranged in one of the cavities through one installation opening, and the optical fiber module box comprises at least six groups of distribution modules arranged side by side.
[0008] A copper module box is arranged in another cavity through another installation opening, and the copper module box comprises at least six groups of copper network modules arranged side by side.
[0009] In an embodiment, at least one partition is arranged in the cavity, each of the partitions divides the box into at least two cavities; two of the partitions and the inner wall of one of the cavities form a first chamber for accommodating the fiber module box, the fiber module box is detachably connected with the inner wall of the first chamber; two other of the partitions and the inner wall of another of the cavities form a second chamber for accommodating the copper module box, the copper module box is detachably connected with the inner wall of the second chamber.
[0010] In an embodiment, two side walls of the first chamber are respectively provided with first clamping grooves, two side walls of the second chamber are respectively provided with second clamping grooves, two sides of the fiber module box are respectively provided with first connecting protrusions, and two sides of the copper module box are respectively provided with second connecting protrusions, the first connecting protrusions are clamped in the first clamping grooves, and the second connecting protrusions are clamped in the second clamping grooves.
[0011] In an embodiment, the copper module box further comprises a copper box body, the copper box body is arranged in the cavity, each of the copper network modules is arranged in the inner cavity of the copper box body, each group of the copper network modules comprises two of the copper network modules, each group of the copper network modules is exposed from the copper box body, and each group of the copper network modules has one 2-core port.
[0012] In an embodiment, the copper network module further comprises at least six cable fixing members, the at least six cable fixing members are arranged in the inner cavity of the copper box body and away from the copper network modules, and each of the cable fixing members is arranged corresponding to one group of the copper network modules; each of the cable fixing members is arranged in a U shape.
[0013] In an embodiment, the distribution box comprises a plurality of copper module boxes, and another of the cavities is provided with at least one first mounting opening, each of the copper module boxes is arranged in another of the cavities through the at least one first mounting opening.
[0014] In an embodiment, the fiber module box further comprises a fiber box body, at least six groups of the distribution modules are arranged in the inner cavity of the fiber box body and exposed from the fiber box body, and each group of the distribution modules has one 8-core port.
[0015] In an embodiment, each group of the distribution modules comprises two duplex LC adapters arranged side by side, each of the duplex LC adapters has one 4-core port; and / or
[0016] The fiber module box further comprises at least one adapter, each of the adapters is arranged in the fiber box body, and each of the adapters is electrically connected with each group of the distribution modules.
[0017] In an embodiment, the distribution box comprises a plurality of fiber module boxes, wherein each of the fiber module boxes is installed in one of the cavities through the second installation opening.
[0018] In an embodiment, the box comprises a top cover plate, two side plates and a bottom plate, the two side plates are respectively fixed on two sides of the bottom plate, the top cover plate is arranged on the side of the two side plates away from the bottom plate, and the top cover plate, the bottom plate and the two side plates form a cavity with the installation opening; the shape of the two side plates gradually shrinks from the end close to the installation opening to the end away from the installation opening.
[0019] The technical scheme of the utility model discloses integrates fiber module boxes and copper module boxes in one box, compared with the related art of arranging fiber module boxes and copper module boxes in different boxes, the application utilizes the arrangement of the at least two cavities in the box, so that the fiber module boxes and the copper module boxes can be arranged side by side without interfering with each other, improving the space utilization, so that the distribution box can accommodate more module boxes, meeting the equipment installation of different communication requirements. At least six groups of distribution modules are arranged side by side in the fiber module box, each module can accommodate multiple fiber ports, realizing high-density fiber connection. At least six groups of copper network modules are arranged side by side in the copper module box, each module can accommodate multiple copper ports, realizing high-bandwidth copper cable connection. The arrangement of arranging the optical module box and the copper module box side by side can realize effective conversion and transmission of optical and electrical signals. Each cavity is provided with an installation opening, and the fiber module boxes and the copper module boxes can be quickly installed in the cavities through the corresponding installation openings, simplifying the installation process, reducing the installation difficulty and time cost, and improving the maintenance efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings from the structures shown in the drawings without creating creative labor.
[0021] Figure 1 The structure diagram of the distribution box provided by the utility model is shown.
[0022] Figure 2 The structure diagram of the fiber module box provided by the utility model is shown.
[0023] Figure 3 The structure diagram of the copper module box provided by the utility model is shown.
[0024] Figure 4The utility model provides an explosion view of distribution box.
[0025] Explanation of reference numerals:
[0026] 1000, distribution box; 1, box; 11, cavity; 11a, installation port; 12, partition; 121, first clamping groove; 122, second clamping groove; 13, upper cover plate; 14, side plate; 15, bottom plate; 2, optical fiber module box; 21, first connecting protrusion; 22, optical fiber box body; 23, distribution module; 24, adapter; 3, copper module box; 31, second connecting protrusion; 32, copper box body; 33, copper network module; 34, cable fixing piece.
[0027] The utility model discloses the realization, functional characteristics and advantages will be further explained in conjunction with the embodiment, reference drawing. DETAILED DESCRIPTION
[0028] The technical scheme in the utility model embodiment will be clearly and completely described below in conjunction with the drawings in the utility model embodiment, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the range of protection of the utility model.
[0029] It should be noted that if the embodiment of the utility model has the directionality indication (such as up, down, left, right, front, back, etc.), the directionality indication is only used to explain the relative position relationship, movement condition and the like between the components in a certain specific posture, and if the specific posture changes, the directionality indication also changes accordingly.
[0030] In addition, if the embodiment of the utility model has the description of "first", "second" and the like, the description of "first", "second" and the like is only for the description purpose, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In addition, "and / or" or "and / or" appears in the whole text, which includes three parallel schemes, for example, "A and / or B", which includes A scheme, or B scheme, or A and B scheme. In addition, the technical scheme of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skill in the art, when the combination of technical schemes appears contradictory or unachievable, it should be considered that the combination of technical schemes does not exist, and is not within the protection scope required by the utility model.
[0031] The utility model provides a kind of distribution box 1000.
[0032] Please refer to Figures 1 to 4 In an embodiment of the present application, the distribution box comprises a box body 1, a fiber module box 2 and a copper module box 3. The box body 1 is provided with at least two cavities 11. Each cavity 11 is provided with a mounting opening 11a on one side for connecting the cavity 11 with the outside. The fiber module box 2 is arranged in one of the cavities 11 through one of the mounting openings 11a. The fiber module box 2 comprises at least six groups of distribution modules 23, which are arranged side by side. The copper module box 3 is arranged in the other cavity 11 through the other mounting opening 11a. The copper module box 3 comprises at least six groups of copper network modules 33, which are arranged side by side. The copper module box 3 is arranged side by side with the fiber module box 2.
[0033] In the embodiment, the distribution box has the structure of the box body 1, which can be arranged in a power distribution cabinet or a distribution box. The whole distribution box shell is pulled out or inserted from the power distribution cabinet. The box body 1 is used to accommodate all the fiber module boxes 2 and the copper module boxes 3. Figure 1 According to the present application, the distribution box adopts a standard 1U case, which can simultaneously arrange four fiber module boxes 2 and four copper module boxes 3, or eight fiber module boxes 2, i.e. 192 fiber connections, or eight copper module boxes 3, i.e. 48 copper cable connections. Each fiber module box 2 is provided with twelve LC duplex fiber adapters 24 and at least six groups of distribution modules 23. Each copper module box 3 is provided with six groups of copper network modules 33. In order to meet the demand for ultra-high-density optical and copper mixed use, the box body 1 is provided with a plurality of cavities 11, so as to simultaneously integrate a plurality of fiber module boxes 2 and a plurality of copper module boxes 3 in one box body 1. In a traditional computer room, the fiber wiring and the copper cable wiring are arranged separately, which cannot realize the compatibility between the two and easily causes space waste. The present application realizes optical and electrical hybrid wiring and improves the space utilization. It can be understood that the fiber module box 2 and the copper module box 3 can be connected with the box body 1 by means of bolt connection, clamping, plug-in connection and the like, which are not limited herein. In an embodiment, the fiber module box 2 and the copper module box 3 can be connected through a partition plate 12. In another embodiment, one end of one of the two is provided with a protruding structure, and the other end of the other one is provided with a groove structure. The two are connected through the clamping and matching relationship between the protruding structure and the groove structure, which are not limited herein. It can be understood that in order to facilitate the installation of the distribution box with other structures, mounting ears are further provided on both sides of the box body. In order to facilitate operation, part of the structure of the fiber module box 2 and the copper module box 3 is exposed to the mounting opening, so that the wiring and other operations become more intuitive and convenient.
[0034] The utility model discloses a technical scheme through the integration of optical fiber module box 2 and copper module box 3 in a box 1, relative to the setting of optical fiber module box 2 and copper module box 3 in different box 1 in the related art, the present application utilizes the setting that the box 1 is provided with at least two cavities 11, so that optical fiber module box 2 and copper module box 3 can be side by side arrangement, do not interfere with each other, improve the space utilization, so that the distribution box can accommodate more module box, satisfy the equipment installation of different communication demand. Optical fiber module box 2 is side by side arranged at least six groups of distribution module 23 in, and each module can accommodate multiple optical fiber ports, realize high density optical fiber connection. Copper module box 3 is side by side arranged at least six groups of copper network module 33 in, and each module can accommodate multiple copper ports, realize high bandwidth copper cable connection. The setting mode that optical module box and copper module box 3 are side by side arranged can realize the effective conversion and transmission of optical signal. And every cavity 11 one side is equipped with the installation mouth 11a, and optical fiber module box 2 and copper module box 3 can be quickly installed into the cavity 11 through the corresponding installation mouth 11a, simplify the installation process, reduce the installation difficulty and time cost, improve the maintenance efficiency.
[0035] In an embodiment of the utility model, at least one partition 12 is arranged in the cavity 11, and the box 1 is divided into at least two cavities 11 by the partition 12; one of the two partitions 12 and the inner wall of one of the cavities 11 form a first chamber, and the optical fiber module box 2 is detachably arranged in the first chamber; the other two partitions 12 and the inner wall of the other cavity 11 form a second chamber, and the copper module box 3 is detachably arranged in the second chamber.
[0036] In an embodiment, in order to realize high-density and modular design, at least one partition 12 is arranged in the cavity 11 to avoid signal interference and physical collision. The optical fiber module box 2 is arranged in the space formed by the at least two partitions 12 and the inner wall of the cavity 11, and the optical fiber module box 2 is connected to the inner wall of the first chamber by buckle, screw connection, sliding rail connection, magnetic attraction connection, etc., and the copper network module 33 is connected to the inner wall of the second chamber by buckle, screw connection, sliding rail connection, magnetic attraction connection, etc. Taking the optical fiber module box 2 as an example, in one embodiment, the optical fiber module box 2 and the inner wall of the first chamber are provided with threaded holes, respectively, and the optical fiber module box 2 is fixed in the first chamber by bolts or other fasteners. In another embodiment, magnets are arranged on the optical fiber module box 2 and the inner wall of the first chamber, and the optical fiber module box 2 is attracted to the inner wall of the first chamber by magnetic force. The copper module box 3 is arranged as described above. It can be understood that one optical module box can be placed in the first chamber, or two optical module boxes can be arranged above and below; one copper module box 3 can be placed in the second chamber, or two copper module boxes 3 can be arranged above and below, which is not limited here. The above arrangement makes the installation and maintenance of each module more convenient, and the module can be quickly replaced or upgraded.
[0037] In the embodiment of the utility model, the two side walls of the first chamber are respectively provided with first clamping grooves 121, the two side walls of the second chamber are respectively provided with second clamping grooves 122, the two sides of the fiber module box 2 are protruded to form first connecting lugs 21, the two sides of the copper module box 3 are protruded to form second connecting lugs 31, the first connecting lugs 21 are clamped in the first clamping grooves 121, and the second connecting lugs 31 are clamped in the second clamping grooves 122.
[0038] In the embodiment, in order to facilitate the installation and dismounting of the fiber module box 2 and the copper module box 3, the two side walls of the first chamber and the two side walls of the second chamber are respectively provided with first clamping grooves 121 and second clamping grooves 122, the shape of the first lug is matched with the shape of the first clamping groove 121, the shape of the second lug is matched with the shape of the second clamping groove 122, and they are correspondingly arranged.When the fiber module box 2 and the copper module box 3 are installed into the chamber, the first lug and the second lug are respectively inserted into the first clamping groove 121 and the second clamping groove 122, and are fixed through the limiting action of the first clamping groove 121 and the second clamping groove 122. Further, in order to arrange two optical module boxes up and down in each first chamber and two copper module boxes 3 up and down in each second chamber, the two side walls of the first chamber are respectively provided with two first clamping grooves 121, two optical module boxes are arranged corresponding to the two first clamping grooves 121, and the two side walls of the second chamber are respectively provided with two second clamping grooves 122, two copper module boxes 3 are arranged corresponding to the two second clamping grooves 122. The above arrangement is not only convenient to install, but also convenient to maintain.
[0039] In the embodiment of the utility model, the copper module box 3 further includes a copper box body 32, the copper box body 32 is contained in the containing cavity 11, each copper network module 33 is arranged in the inner cavity of the copper box body 32, each group of copper network modules 33 includes two copper network modules 33, each group of copper network modules 33 is exposed to the copper box body 32, and each group of copper network modules 33 has a 2-core port.
[0040] In the embodiment, in order to high-density integration of copper network modules 33, at least six groups of copper network modules 33 are integrated in the copper module box 3, each group contains two copper network modules 33, so that more network modules can be contained in limited space, and the space utilization of the equipment is improved. Each group of copper network modules 33 is provided with a 2-core port and is arranged in a linear shape. At present, the most common is 1U24-port distribution frame, and the application can meet the design of 48 ports, uses standard copper network modules 33, and adopts modular design. It can be understood that the copper network modules 33 are exposed to the copper box body 32, so that installation and wiring become more intuitive and convenient.
[0041] In an embodiment of the utility model, copper network module 33 still includes at least six cable fixing pieces 34, at least six cable fixing pieces 34 are located in the inner chamber of copper box body 32, and are away from copper network module 33, and each cable fixing piece 34 corresponds a group of copper network module 33 setting;Each cable fixing piece 34 is set in U type.
[0042] In this embodiment, in order to further conveniently manage cable, cable fixing piece 34 is arranged on the side of the inner chamber of copper box body 32 away from copper network module 33, each cable fixing piece 34 corresponds a group of copper network module 33 setting, so that the fixing and management of cable are more convenient, and cable disorder and entanglement are avoided.The setting of cable fixing piece 34 away from copper network module 33 rationally utilizes the internal space of copper box body 32, so that there is enough space between copper network module 33 and cable fixing piece 34 for wiring box maintenance, and the overall space utilization is improved.Correspondingly, cable fixing piece 34 is fixed in the inner chamber of copper box body 32 by welding.The material of cable fixing piece 34 includes but is not limited to rubber, polyformaldehyde and the like, which is not limited here.The shape of cable fixing piece 34 is preferably set in U type here, and in another embodiment, the shape of cable fixing piece 34 includes but is not limited to circular, square and the like, which is not limited here.The above setting mode ensures that the cable is fixed in position, reduces the movement and vibration of the cable, and improves the connection stability.
[0043] In an embodiment of the utility model, the distribution box includes a plurality of copper module boxes 3, wherein another cavity 11 is provided with at least one first mounting port 11a, and each copper module box 3 is mounted in another cavity 11 by at least one first mounting port 11a.
[0044] In this embodiment, in order to further rationally utilize the internal space in the distribution box, at least one first mounting port 11a is arranged in one of the cavities 11 of the distribution box, so that each copper module box 3 can be conveniently mounted into the cavity 11 of the box body 1 through the first mounting port 11a.The above setting mode allows different numbers and types of copper module boxes 3 to be installed according to different needs, improving the versatility and flexibility of the distribution box.
[0045] In an embodiment of the utility model, the fiber module box 2 further includes a fiber box body 22, and at least six groups of distribution modules 23 are accommodated in the inner chamber of the fiber box body 22 and exposed to the fiber box body 22, and each group of distribution modules 23 has an 8-core port.
[0046] In the embodiment, it can be understood that the fiber module box 2 comprises an upper cover and a lower cover, and the upper cover and the lower cover can be connected in a snap-fit manner or a bolted manner, which is not limited herein. The distribution module 23 is exposed to the fiber box body 22, so that the wiring and other operations are more intuitive and convenient. In the case of using LC standard adapters 24 in the current fiber distribution, 144 cores and above can be achieved, and the application can achieve a 192-core design. At least six groups of distribution modules 23 are integrated in high density, so that more fiber ports can be accommodated in a limited space.
[0047] In an embodiment of the utility model, each group of distribution module 23 includes two duplex LC adapters 24 arranged side by side, and each duplex LC adapter 24 has a 4-core port.
[0048] The fiber module box 2 further comprises at least one adapter 24, and each adapter 24 is arranged in the fiber box body 22 and electrically connected to each group of distribution module 23.
[0049] In the embodiment, each group of distribution module 23 is arranged side by side. In the technical solution, the distribution module 23 can achieve a 192-core design. It can be understood that the adapter 24 can be an LC standard adapter 24, an MDC or an SN adapter 24, etc., which is not limited herein. When the LC standard adapter 24 is used, 192 cores can be achieved in a 1U case. When the MDC or SN adapter 24 is used, 384 cores can be achieved in a 1U case. Further, the adapter 24 can also be a 4-core LC fiber adapter 24, i.e., each module box uses a 4-core fiber adapter 24 to achieve a 24-core design for each module box.
[0050] In an embodiment of the utility model, the distribution box comprises a plurality of fiber module boxes 2, and at least one second mounting port 11a is arranged in one of the cavities 11. Each fiber module box 2 is mounted in one of the cavities 11 through the second mounting port 11a.
[0051] In the embodiment, in order to further reasonably utilize the internal space of the distribution box, at least one second mounting port 11a is arranged in another one of the cavities 11 of the distribution box, so that each fiber module box 2 can be conveniently mounted into the cavity 11 of the box 1 through the second mounting port 11a. The above arrangement allows different numbers and types of fiber module boxes 2 to be installed according to different requirements, improving the versatility and flexibility of the distribution box.
[0052] In an embodiment of the utility model, the box 1 includes an upper cover plate 13, two side plates 14 and a bottom plate 15, the two side plates 14 are fixed on the two sides of the bottom plate 15 respectively, the upper cover plate 13 is arranged on the side of the two side plates 14 away from the bottom plate 15, and the upper cover plate 13, the bottom plate 15 and the two side plates 14 enclose a cavity 11 with a mounting port 11a; the shape of the two side plates 14 gradually shrinks from the end close to the mounting port 11a to the end away from the mounting port 11a.
[0053] In the embodiment, the box 1 can adopt the form of a simple case or the form of a closed case. Figure 4 In an embodiment, the box 1 adopts the form of a simple case, the length of the upper cover plate 13 is shorter than the length of the bottom plate 15, the set length of the upper cover plate 13 is adapted to the set length of the module box in the distribution box, and the whole is arranged in the shape of high front and low back. The two side plates 14, the bottom plate 15 and the upper cover plate 13 are connected by buckle connection, bolt connection and the like respectively, which is not limited here. The upper cover plate 13, the bottom plate 15 and the two side plates 14 enclose the cavity 11, the cavity 11 is provided with the mounting port 11a penetrating the cavity 11, so as to put the module box into the cavity 11. The gradually shrinking shape of the two side plates 14 makes the module box more convenient to insert and take out. In another embodiment, the box 1 adopts the form of a closed case, the set length of the upper cover plate 13 is consistent with that of the bottom plate 15, which can effectively protect the internal components from dust and other environmental factors, improve the reliability and service life of the equipment.
[0054] The above-mentioned is only the exemplary embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made by the utility model specification and the drawings contents or directly / indirectly applied in other related technical fields under the technical concept of the utility model is included in the patent protection range of the utility model.
Claims
1. A wiring box, characterized in that, The wiring box includes: The box (1) is provided with at least two cavities (11) spaced apart, and each cavity (11) has an installation port (11a) on one side that connects the cavity (11) to the outside. An optical fiber module box (2) is disposed within one of the cavities (11) through one of the mounting ports (11a). The optical fiber module box (2) includes at least six sets of wiring modules (23), which are arranged side by side. A copper module box (3) is disposed in another cavity (11) through another mounting port (11a). The copper module box (3) includes at least six sets of copper network modules (33). The at least six sets of copper network modules (33) are arranged side by side. The copper module box (3) and the fiber optic module box (2) are arranged side by side.
2. The wiring box as described in claim 1, characterized in that, At least one partition (12) is provided in the cavity (11) at intervals, and each partition (12) divides the box into at least two cavities (11); wherein two partitions and the inner wall of one of the cavities enclose a first chamber for accommodating the optical fiber module box, and the optical fiber module box is detachably connected to the inner wall of the first chamber; wherein the other two partitions and the inner wall of the other cavity enclose a second chamber for accommodating the copper module box, and the copper module box is detachably connected to the inner wall of the second chamber.
3. The wiring box as described in claim 2, characterized in that, The first chamber has a first slot (121) on each of its two side walls, and the second chamber has a second slot (122) on each of its two side walls. The optical fiber module box (2) has a first connecting protrusion (21) protruding from both sides, and the copper module box (3) has a second connecting protrusion (31) protruding from both sides. The first connecting protrusion (21) is engaged in the first slot, and the second connecting protrusion (31) is engaged in the second slot (122).
4. The wiring box as described in any one of claims 1 to 3, characterized in that, The copper module box (3) also includes a copper box body (32), which is housed in the cavity (11). Each copper network module (33) is located in the inner cavity of the copper box body (32). Each group of copper network modules includes two copper network modules. Each group of copper network modules (33) is exposed in the copper box body (32). Each group of copper network modules (33) has a 2-core port.
5. The wiring box as described in claim 4, characterized in that, The copper network module (33) further includes at least six cable fasteners (34), which are located in the inner cavity of the copper housing (32) and are positioned away from the copper network module (33). Each cable fastener (34) corresponds to a set of copper network modules (33). Each cable fastener (34) is U-shaped.
6. The wiring box as described in claim 5, characterized in that, The wiring box includes multiple copper module boxes (3), wherein another cavity (11) has at least one first mounting port (11a), and each copper module box (3) is installed in the other cavity (11) by at least one first mounting port (11a).
7. The wiring box as described in any one of claims 1 to 3, characterized in that, The fiber optic module box (2) also includes a fiber optic box body (22), at least six sets of the wiring modules (23) are housed in the cavity of the fiber optic box body (22) and exposed in the fiber optic box body (22), each set of the wiring modules (23) has an 8-core port.
8. The wiring box as described in claim 7, characterized in that, Each set of wiring modules (23) includes two side-by-side duplex LC adapters (24), each of the duplex LC adapters (24) having a 4-pin port; and / or The fiber optic module box (2) also includes at least one adapter (24), each adapter (24) is disposed inside the fiber optic box body (22), and each adapter (24) is electrically connected to each group of wiring modules (23).
9. The wiring box as described in claim 8, characterized in that, The distribution box includes multiple fiber optic module boxes (2), one of the cavities (11) having at least one second mounting port (11a), and each fiber optic module box (2) is installed in one of the cavities (11) by at least one second mounting port (11a).
10. The wiring box as described in any one of claims 1 to 3, characterized in that, The housing (1) includes an upper cover plate (13), two side plates (14) and a bottom plate (15). The two side plates (14) are respectively fixed to the two sides of the bottom plate (15). The upper cover plate (13) is located on the side of the two side plates (14) facing away from the bottom plate (15). The upper cover plate (13), the bottom plate (15) and the two side plates (14) enclose a cavity with the mounting opening (11a). The shape of the two side plates (14) gradually tapers from the end near the mounting opening (11a) to the end away from the mounting opening (11a).