Weak current system module box
By planning the circuit structure of the weak current system module box before leaving the factory, the problem of confusing lines in the existing technology is solved, and the installation difficulty and cost are reduced, and the system stability and aesthetics are improved.
Patent Information
- Application Number
- CN202421989041.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-15
AI Technical Summary
After the existing weak current module box is built, the line design is chaotic, resulting in high installation difficulty, increased cost and unsightly, making it inconvenient for users to use and maintain.
Before leaving the factory, the circuits of the weak current system module box include the first to fifth strong current components and weak current components. After assembly, a stable box structure is formed, and the system stability is ensured by standardizing assembly line procedures, and troubleshooting is carried out before leaving the factory.
By planning the circuit before leaving the factory, we can reduce on-site construction and commissioning time, reduce costs, improve system stability, reduce material waste, and improve user experience.
Smart Images

Figure CN223093357U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical equipment, in particular to a weak current system module box. Background Art
[0002] The weak current module box manages and distributes the wiring of household weak current signals in a unified manner, including weak current wiring for network, telephone, television, security, etc., mainly to avoid interference of weak current signals by strong current and improve the quality of family life. There are many weak current module boxes, and with the increase of information sources carrying voice, image, data and other information, the lines in the weak current module box are becoming increasingly complex, which brings many inconveniences to the user's use, distribution and maintenance. In the prior art, the weak current system is usually built after the module box is built. The electrical line design is messy, there are many inlet and outlet troughs, the lines are difficult to organize and not beautiful, which increases the difficulty and cost of installation. Utility Model Content
[0003] In view of the above technical problems, the utility model proposes a weak current system module box, which completes the construction process of the weak current system before leaving the factory, can better plan and design the lines, and at the same time reduce the time of on-site construction and debugging, thereby reducing costs.
[0004] The technical solution adopted by the utility model is as follows: a weak current system module box, comprising a first facade, a second facade, a third facade, a fourth facade and a top surface. Before assembly, the first facade is provided with a first strong current component, the second facade is provided with a distribution box and a second strong current component, the third facade is provided with a third strong current component and a first weak current component, the fourth facade is provided with a fourth strong current component and a second weak current component, and the top surface is provided with a fifth strong current component, a third weak current component, a strong current box and a weak current box; after assembly, the first facade, the second facade, the third facade, the fourth facade and the top surface are combined to form a box body, the first strong current component, the second strong current component, the third strong current component, the fourth strong current component and the fifth strong current component are respectively connected to the strong current box, the first weak current component, the second weak current component and the third weak current component are respectively connected to the weak current box, and the strong current box and the weak current box are respectively connected to the distribution box.
[0005] Optionally, the first high-voltage component includes a first adapter panel, a first high-voltage pipeline, and a first switch connected in sequence; the second high-voltage component includes a second adapter panel, a first high-voltage pipeline, and an air-conditioning socket connected in sequence; the third high-voltage component includes a third adapter panel, a third high-voltage pipeline, and a first socket connected in sequence; the fourth high-voltage component includes a fourth adapter panel, a fourth high-voltage pipeline, and a second socket connected in sequence; the fifth high-voltage component includes a fifth adapter panel, a fifth high-voltage pipeline, and a lamp connected in sequence; the first low-voltage component includes a sixth adapter panel, a first low-voltage pipeline, and a first network interface; the second low-voltage component includes a seventh adapter panel, a second low-voltage pipeline, and a second network interface; the third low-voltage component includes an eighth adapter panel and a third low-voltage pipeline connected to the eighth adapter panel.
[0006] Optionally, the first facade is provided with a door and a first window, and the second facade is provided with a second window.
[0007] Optionally, the second facade is provided with a pipe orifice for an air-conditioning pipe to pass through, and a waterproof plug is arranged in the pipe orifice.
[0008] Optionally, the top surface is provided with a suspended ceiling and a supporting top beam supported on the bottom surface of the suspended ceiling.
[0009] Optionally, it further includes a bottom surface, the bottom surface is provided with a bottom plate and a supporting bottom beam supported on the bottom of the bottom plate. After assembly, the first facade, the second facade, the third facade, the fourth facade, the top surface, and the bottom surface enclose to form a box body. The first facade and the second facade are correspondingly arranged, the third facade and the fourth facade are correspondingly arranged, and the bottom surface and the top surface are correspondingly arranged.
[0010] Optionally, the top surface and the bottom surface are respectively provided with through holes for a downpipe to pass through.
[0011] Optionally, the distribution box is provided with a high-voltage external interface and a low-voltage external interface. The low-voltage bus extended from the low-voltage box is connected to the low-voltage external interface, and the high-voltage bus extended from the high-voltage box is connected to the high-voltage external interface.
[0012] The beneficial effects of the present utility model are as follows: By presetting the first high-voltage component, the second high-voltage component, the third high-voltage component, the fourth high-voltage component, the fifth high-voltage component, the first low-voltage component, the second low-voltage component, and the third low-voltage component on the first facade, the second facade, the third facade, the fourth facade, and the top surface respectively, the construction process of the low-voltage system can be completed before leaving the factory, which can be better planned and designed. The stability of the low-voltage system of the box body can be guaranteed to a certain extent through the procedures of a standardized assembly line. Factory inspection can further troubleshoot faults, and can also reduce unnecessary material waste. At the same time, it reduces the time of on-site construction and debugging, thereby reducing costs. Description of the Drawings
[0013] Figure 1 Schematic diagram of the first elevation of the weak current system module box proposed by the embodiment of the present utility model;
[0014] Figure 2 Schematic diagram of the second elevation of the weak current system module box proposed by the embodiment of the present utility model;
[0015] Figure 3 Schematic diagram of the third elevation of the weak current system module box proposed by the embodiment of the present utility model;
[0016] Figure 4 Schematic diagram of the fourth elevation of the weak current system module box proposed by the embodiment of the present utility model;
[0017] Figure 5 Schematic diagram of the top surface of the weak current system module box proposed by the embodiment of the present utility model;
[0018] Figure 6 Schematic diagram of the bottom surface of the weak current system module box proposed by the embodiment of the present utility model.
[0019] The markings in each figure are: 1, the first elevation; 2, the second elevation; 3, the third elevation; 4, the fourth elevation; 5, the top surface; 6, the first transfer panel; 7, the first strong current pipeline; 8, the first switch; 9, the second transfer panel; 10, the second strong current pipeline; 11, the air conditioner socket; 12, the third transfer panel; 13, the third strong current pipeline; 14, the first socket; 15, the fourth transfer panel; 16, the fourth strong current pipeline; 17, the second socket; 18, the fifth transfer panel; 19, the fifth strong current pipeline; 20, the lamp; 21, the sixth transfer panel; 22, the first weak current pipeline; 23, the first network cable port; 24, the seventh transfer panel; 25, the second weak current pipeline; 26, the second network cable port; 27, the eighth transfer panel; 28, the third weak current pipeline; 29, the door body; 30, the first window; 31, the second window; 32, the pipe orifice; 33, the ceiling; 34, the support top beam; 35, the bottom surface; 36, the bottom plate; 37, the support bottom beam; 38, the through hole; 39, the distribution box; 40, the strong current box; 41, the weak current box; 42, the strong current external interface; 43, the weak current external interface. Detailed implementation manners
[0020] The following further elaborates the present application in conjunction with the drawings and embodiments.
[0021] As Figures 1 to 5As shown in the figure, this embodiment discloses a weak current system module box, which includes a first facade 1, a second facade 2, a third facade 3, a fourth facade 4 and a top surface 5. Before assembly, the first facade 1 is provided with a first strong current component, the second facade 2 is provided with a distribution box 39 and a second strong current component, the third facade 3 is provided with a third strong current component and a first weak current component, the fourth facade 4 is provided with a fourth strong current component and a second weak current component, and the top surface 5 is provided with a fifth strong current component, a third weak current component, a strong current box 40 and a weak current box 41; after assembly, the first facade 1, the second facade 2, the third facade 3, the fourth facade 4 and the top surface 5 enclose to form a box body. The first strong current component, the second strong current component, the third strong current component, the fourth strong current component and the fifth strong current component are respectively connected to the strong current box 40, the first weak current component, the second weak current component and the third weak current component are respectively connected to the weak current box 41, and the strong current box 40 and the weak current box 41 are respectively connected to the distribution box 39. By presetting the first strong current component, the second strong current component, the third strong current component, the fourth strong current component, the fifth strong current component, the first weak current component, the second weak current component and the third weak current component on the first facade 1, the second facade 2, the third facade 3, the fourth facade 4 and the top surface 5 respectively, the construction process of the weak current system can be completed before leaving the factory, which can be better planned and designed. The stability of the weak current system of the box body can be guaranteed to a certain extent by standardizing the procedures of the assembly line. Factory inspection can further troubleshoot faults, reduce unnecessary material waste, and reduce the time of on-site construction and debugging, thereby reducing costs. The distribution box 39 is provided with a strong current external interface 42 and a weak current external interface 43. The weak current bus extended from the weak current box 41 is connected to the weak current external interface 43, and the strong current bus extended from the strong current box 40 is connected to the strong current external interface 42. The distribution box 39 is also connected with a protective shell, the protective shell is provided with channels for the weak current bus bundle and the strong current bus bundle to pass through respectively, and a monitoring alarm for preventing current leakage and water leakage is also provided in the protective shell.
[0022] As Figures 1 - 5As shown, the first high-voltage component includes a first adapter panel 6, a first high-voltage pipeline 7, and a first switch 8 connected in sequence. The second high-voltage component includes a second adapter panel 9, a first high-voltage pipeline 7, and an air-conditioning socket 11 connected in sequence. The third high-voltage component includes a third adapter panel 12, a third high-voltage pipeline 13, and a first socket 14 connected in sequence. The fourth high-voltage component includes a fourth adapter panel 15, a fourth high-voltage pipeline 16, and a second socket 17 connected in sequence. The fifth high-voltage component includes a fifth adapter panel 18, a fifth high-voltage pipeline 19, and a lamp 20 connected in sequence. The first low-voltage component includes a sixth adapter panel 21, a first low-voltage pipeline 22, and a first network cable port 23. The second low-voltage component includes a seventh adapter panel 24, a second low-voltage pipeline 25, and a second network cable port 26. The third low-voltage component includes an eighth adapter panel 27 and a third low-voltage pipeline 28 connected to the eighth adapter panel 27. The first high-voltage pipeline 7, the second high-voltage pipeline 10, the third high-voltage pipeline 13, the fourth high-voltage pipeline 16, and the fifth high-voltage pipeline 19 are respectively connected to the high-voltage box 40. The first low-voltage pipeline 22, the second low-voltage pipeline 25, and the third low-voltage pipeline 28 are respectively connected to the low-voltage box 41. The distribution box 39 is provided with a high-voltage external interface 42 connected to the high-voltage box 40, and the distribution box 39 is provided with a low-voltage external interface 43 connected to the low-voltage box 41.
[0023] As Figure 1 and 2 shown, the first facade 1 is provided with a door body 29 and a first window 30, and the second facade 2 is provided with a second window 31. The second facade 2 is provided with a pipe orifice 32 for the air-conditioning pipe to pass through, and a waterproof plug is arranged in the pipe orifice 32. The top surface 5 is provided with a ceiling 33 and a support top beam 34 supported on the bottom surface 35 of the ceiling 33. The ceiling 33 is made of steel plate.
[0024] As Figure 5 and 6 shown, it further includes a bottom surface 35. The bottom surface 35 is provided with a bottom plate 36 and a support bottom beam 37 supported on the bottom of the bottom plate 36. After assembly, the first facade 1, the second facade 2, the third facade 3, the fourth facade 4, the top surface 5, and the bottom surface 5 enclose to form a box body. The first facade 1 and the second facade 2 are arranged corresponding to each other. The third facade 3 and the fourth facade 4 are arranged corresponding to each other. The bottom surface 35 and the top surface 5 are arranged corresponding to each other. The bottom plate 36 is made of cement fiber board and floor glue board. The top surface 5 and the bottom surface 35 are respectively provided with through holes 38 for the downpipe to pass through. The downpipe is used for drainage.
[0025] It should be understood that the specific embodiments described above are only used to explain the relevant utility model, rather than limiting the utility model. In addition, it should be noted that for the convenience of description, only the parts related to the utility model are shown in the drawings. Multiple technical solutions in the same embodiment, as well as multiple technical solutions in different embodiments, can be arranged and combined to form new technical solutions without contradiction or conflict. Any equivalent structural transformation made by using the content of the specification and drawings of the present utility model, directly or indirectly applied to other related technical fields, shall be similarly included in the protection scope of the present utility model.
Claims
1. A weak current system module box, characterized in that, It includes a first facade, a second facade, a third facade, a fourth facade and a top surface. Before assembly, the first facade is provided with a first high-voltage electric component, the second facade is provided with a distribution box and a second high-voltage electric component, the third facade is provided with a third high-voltage electric component and a first low-voltage electric component, the fourth facade is provided with a fourth high-voltage electric component and a second low-voltage electric component, and the top surface is provided with a fifth high-voltage electric component, a third low-voltage electric component, a high-voltage electric box and a low-voltage electric box; After assembly, the first facade, the second facade, the third facade, the fourth facade and the top surface enclose to form a box body. The first high-voltage electric component, the second high-voltage electric component, the third high-voltage electric component, the fourth high-voltage electric component and the fifth high-voltage electric component are respectively connected to the high-voltage electric box. The first low-voltage electric component, the second low-voltage electric component and the third low-voltage electric component are respectively connected to the low-voltage electric box. The high-voltage electric box and the low-voltage electric box are respectively connected to the distribution box.
2. The weak current system module box according to claim 1, characterized in that, The first high-voltage electric component includes a first adapter panel, a first high-voltage electric pipeline and a first switch connected in sequence. The second high-voltage electric component includes a second adapter panel, a first high-voltage electric pipeline and an air-conditioning socket connected in sequence. The third high-voltage electric component includes a third adapter panel, a third high-voltage electric pipeline and a first socket connected in sequence. The fourth high-voltage electric component includes a fourth adapter panel, a fourth high-voltage electric pipeline and a second socket connected in sequence. The fifth high-voltage electric component includes a fifth adapter panel, a fifth high-voltage electric pipeline and a lamp connected in sequence. The first low-voltage electric component includes a sixth adapter panel, a first low-voltage electric pipeline and a first network interface. The second low-voltage electric component includes a seventh adapter panel, a second low-voltage electric pipeline and a second network interface. The third low-voltage electric component includes an eighth adapter panel and a third low-voltage electric pipeline connected to the eighth adapter panel.
3. The weak current system module box according to claim 1, characterized in that, The first facade is provided with a door body and a first window. The second facade is provided with a second window.
4. The weak current system module box according to claim 1, characterized in that, The second facade is provided with a pipe orifice for an air-conditioning pipe to pass through, and a waterproof plug is arranged in the pipe orifice.
5. The weak current system module box according to claim 1, characterized in that The top surface is provided with a suspended ceiling and a supporting ceiling beam supported on the bottom surface of the suspended ceiling.
6. The weak current system module box according to claim 1, characterized in that, It further includes a bottom surface. The bottom surface is provided with a bottom plate and a supporting bottom beam supported on the bottom of the bottom plate. After assembly, the first facade, the second facade, the third facade, the fourth facade, the top surface and the bottom surface enclose to form a box body. The first facade and the second facade are arranged corresponding to each other. The third facade and the fourth facade are arranged corresponding to each other. The bottom surface and the top surface are arranged corresponding to each other.
7. The weak current system module box according to claim 6, characterized in that, The top surface and the bottom surface are respectively provided with through holes for a downpipe to pass through.
8. The weak current system module box according to claim 1, characterized in that, The distribution box is provided with a high-voltage electric external interface and a low-voltage electric external interface. The low-voltage electric bus extending from the low-voltage electric box is connected to the low-voltage electric external interface. The high-voltage electric bus extending from the high-voltage electric box is connected to the high-voltage electric external interface.