Building equipment control box layered wiring structure

By installing sound insulation layers and sealing rings inside the building equipment control box, and using adjustable cable management racks and clamps for layered cabling, the electromagnetic interference and noise problems caused by messy cables were solved, improving the stability and quietness of the equipment, improving heat dissipation, and enhancing the overall performance and lifespan of the equipment.

CN224683801UActive Publication Date: 2026-08-25SHANGHAI YIJIE INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202520429218.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-08-25
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

The messy cabling in modern building equipment control boxes leads to electromagnetic interference and noise that affects equipment operation and the working environment, and poor heat dissipation affects equipment performance and lifespan.

Method used

Sound insulation layers and sealing rings are installed on the inner wall of the control box. Adjustable height cable management racks and cable clips are used, along with partitions for layered wiring. The cable management racks are fixed with support frames and slots, and the cable clips and limiting plates are used to position the cable bundles layer by layer to ensure the neatness of the cable bundles and heat dissipation space.

Benefits of technology

It reduces the impact of electrical noise on the environment, reduces electromagnetic interference, improves the stability and quietness of the equipment, and improves heat dissipation, thereby enhancing the overall performance and lifespan of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of building equipment control box layered wiring structure, including control box, the inner wall fixed mounting sound insulation layer of control box;Wiring assembly, the wiring assembly includes support frame and uniform fixed mounting in support frame's wire arranging frame, the outer wall of the wire arranging frame is detachably fixed mounting wire arranging clip by screw, the wire arranging clip includes bottom plate and the limiting plate of layerable installation, it is related to layered wiring structure technical field, by adjustable installation different height's wire arranging frame and wire arranging clip cooperation use in the inside of control box, to facilitate the distribution of wiring harness layer by layer, and install partition between two adjacent wire arranging frames, the wiring harness between different layers play certain separating effect, to avoid mutual influence between current, improve the stability of equipment work.
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Description

Technical Field

[0001] This utility model relates to the field of layered cabling structure technology, specifically a layered cabling structure for a building equipment control box. Background Technology

[0002] In modern buildings, the operation of various devices requires centralized control and management through control boxes. These control boxes are typically filled with a large number of cables, and traditional wiring methods are often messy and disorganized. This not only hinders cable maintenance and management but also easily generates electromagnetic interference and noise. Electromagnetic interference between cables can affect the normal operation of equipment, while noise generation can impact the working environment of staff and disturb nearby residents. Furthermore, control boxes generate heat during operation, and messy wiring impedes heat dissipation, further affecting equipment performance and lifespan. Utility Model Content

[0003] The purpose of this utility model is to provide a layered wiring structure for a building equipment control box to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A layered cabling structure for a building equipment control box, comprising: A control box, wherein a sound insulation layer is fixedly installed on the inner wall of the control box; A cabling assembly, comprising a support frame and cable management racks uniformly fixedly mounted on the support frame, wherein cable management clips are detachably fixedly mounted on the outer wall of the cable management rack by screws, and the cable management clips include a bottom plate and a stackable limiting plate.

[0006] In a preferred embodiment of this utility model, the top inner wall of the control box is provided with uniformly spaced inlet holes, and a sealing ring is fixedly installed on the front outer wall of the control box.

[0007] In a preferred embodiment of this utility model, the outer wall of the control box is rotatably connected to the cabinet door via a hinge, a viewing window is fixedly installed on the front outer wall of the cabinet door, a handle is fixedly installed on the outer wall of the cabinet door, a back plate is fixedly installed on the rear inner wall of the control box, and a controller bracket is fixedly installed on the outer wall of the back plate.

[0008] In a preferred embodiment of this utility model, two sets of support frames are symmetrically arranged on the left and right sides. The support frames are detachably and fixedly installed on the inner wall of the control box by screws. The inner wall of the support frame is evenly provided with slots, and the inner wall of the slots is detachably and fixedly installed with cable management racks by screws.

[0009] In a preferred embodiment of this utility model, the cable management rack is rectangular, and the inner wall of the cable management rack has rounded rectangular holes. The left and right ends of the bottom plate are provided with first ear hooks.

[0010] In a preferred embodiment of this utility model, the first ear hook is fixedly connected to the outer wall of the rounded rectangular hole by a threaded clip and a screw, the front end of the bottom plate is fixedly connected to an L-shaped plate, the end of the L-shaped plate is the second ear hook, and the outer wall of the L-shaped plate is provided with a slot.

[0011] In a preferred embodiment of this utility model, the outer wall of the rear end of the limiting plate is fixedly connected to the insert plate, and two sets of insert plates are symmetrically arranged on the left and right sides. The insert plates are connected to the slots by insertion.

[0012] In a preferred embodiment of this utility model, the outer walls of the left and right rear sides of the limiting plate are provided with third ear hooks, the third ear hooks are fixedly connected to the second ear hooks by screws, and the two adjacent limiting plates are fixedly connected by screws.

[0013] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.

[0014] 1. By fixing a sound insulation layer to the inner wall of the control box and fixing a sealing ring to the outer wall of the control box, the impact of the current noise during equipment operation on the environment can be reduced when the cabinet door is closed, thus improving the quietness effect. 2. By using adjustable cable management racks and clamps of different heights inside the control box, it is convenient to distribute the wire harnesses layer by layer. A partition plate is installed between two adjacent cable management racks to separate the wire harnesses of different layers, thereby avoiding mutual interference between currents and improving the stability of the equipment operation. Attached Figure Description

[0015] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which: Figure 1 This is a schematic diagram of the main structure of a layered wiring structure for a building equipment control box. Figure 2 This is a schematic diagram of the internal structure of a building equipment control box in a layered wiring structure. Figure 3 This is a schematic diagram of a cable management frame structure in a layered cabling structure for a building equipment control box. Figure 4 A schematic diagram of the cable management frame installation structure in a layered cabling structure for a building equipment control box; Figure 5 A schematic diagram of a cable management clip structure in a layered wiring structure of a building equipment control box; Figure 6 This is a schematic diagram of a partition plate structure in a layered wiring structure for a building equipment control box. In the diagram: control box 100, sound insulation layer 110, sealing ring 120, cable inlet 130, back panel 140, controller bracket 141, cabinet door 150, viewing window 151, handle 152, support frame 200, card slot 210, cable management rack 220, rounded rectangular hole 221, bottom plate 230, threaded card 231, first ear hook 232, second ear hook 233, slot 234, limit plate 235, insertion plate 236, third ear hook 237, partition plate 240, rubber insulation layer 241. Detailed Implementation

[0016] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0017] Example 1: As Figures 1-6 ,include Control box 100, with sound insulation layer 110 fixedly installed on the inner wall of control box 100; The cabling assembly includes a support frame 200 and a cable management rack 220 uniformly fixedly installed on the support frame 200. The outer wall of the cable management rack 220 is detachably fixedly installed with cable management clips by screws. The cable management clips include a bottom plate 230 and a stackable limiting plate 235.

[0018] The specific application scenario of this embodiment is as follows: By fixing a sound insulation layer 110 to the inner wall of the control box 100 and fixing a sealing ring to the outer wall of the control box 100, the impact of the current noise during equipment operation on the environment can be reduced when the cabinet door 150 is closed, thus improving the quietness effect. By adjusting the cable management racks 220 and cable management clips of different heights inside the control box 100, it is convenient to distribute the wire harness layer by layer. A partition plate is installed between two adjacent cable management racks 220 to separate the wire harnesses of different layers, thereby avoiding the influence of electromagnetic interference between currents and improving the stability of equipment operation.

[0019] Example 2: As Figures 1-3The control box 100 has evenly spaced inlet holes 130 on its top inner wall. A sealing ring 120 is fixedly installed on the front outer wall of the control box 100. The outer wall of the control box 100 is rotatably connected to the cabinet door 150 via a hinge. A viewing window 151 is fixedly installed on the front outer wall of the cabinet door 150. A handle 152 is fixedly installed on the outer wall of the cabinet door 150. A back plate 140 is fixedly installed on the rear inner wall of the control box 100. A controller bracket 141 is fixedly installed on the outer wall of the back plate 140.

[0020] The specific application scenario of this embodiment is as follows: by setting the sealing ring 120 to seal the connection between the control box 100 and the cabinet door 150, the impact of the current noise generated by the building equipment controller on the environment is reduced to a certain extent, and the quietness of the equipment operation is improved. By setting the back plate 140 and the controller bracket 141 to work together, it is convenient to install the building equipment controller.

[0021] Example 3: As Figure 4 and Figure 5 Two sets of support frames 200 are symmetrically arranged on the left and right sides. The support frames 200 are detachably and fixedly installed on the inner wall of the control box 100 by screws. The inner wall of the support frame 200 is evenly provided with slots 210. The inner wall of the slots 210 is detachably and fixedly installed with cable management racks 220 by screws. The cable management racks 220 are rectangular in shape. The inner wall of the cable management racks 220 is provided with rounded rectangular holes 221. The left and right ends of the bottom plate 230 are provided with first ear hooks 232. The first ear hooks 232 are fixed to the outer wall of the rounded rectangular holes 221 by threaded clips 231 and screws. The bottom plate 230 is connected to an L-shaped plate at the front end of the outer wall. The end of the L-shaped plate is a second ear hook 233. The outer wall of the L-shaped plate is provided with a slot 234. The outer wall of the rear end of the limiting plate 235 is connected to an insert plate 236. Two sets of insert plates 236 are symmetrically arranged on the left and right sides. The insert plates 236 and the slots 234 are connected by insertion. The outer walls of the left and right sides of the rear end of the limiting plate 235 are provided with third ear hooks 237. The third ear hooks 237 and the second ear hooks 233 are fixedly connected by screws. The two adjacent limiting plates 235 are fixedly connected by screws.

[0022] The specific application scenario of this embodiment is as follows: By setting two sets of symmetrically distributed support frames 200, the cable management frame 220 can be flexibly fixed and installed as needed. The cable management frame 220 is arranged horizontally on the left and right sides. The height of the cable management frame 220 can be selected according to the appropriate height of the slot 210 for snap-fit ​​installation. By setting a bottom plate 230 and several limiting plates 235 in combination, the limiting plates 235 are installed layer by layer, which facilitates the layer-by-layer limiting of signal lines, increases the capacity for cable harness storage and improves the neatness of the cable harness.

[0023] The working principle of this utility model is as follows: When used by those skilled in the art, the cable for the control box of the building equipment is introduced into the interior of the control box 100 through the inlet hole 130. A heat dissipation hole (not shown in the figure) is provided on the inner right side wall of the control box 100. The building equipment controller is then snapped into the controller bracket 141 on the outer wall of the back plate 140. The signal lines connected to the building equipment controller are then neatly arranged horizontally and extended to the wiring assembly. According to the needs of the equipment, the cable management rack 220 is temporarily fixed in the slot 210 of the support frame 200 at a suitable height by snapping. The cable management rack 220 is then fixedly connected to the inner wall of the slot 210 by screws. Finally, the bottom plate 230 is fixedly installed on the rounded rectangle using screws and threaded clips 231. On the outer wall of hole 221, the signal wire is arranged and placed into the gap between the two L-shaped plates on the left and right. Then, the limiting plate 235 and the bottom plate 230 are connected by insert plate 236 and slot 234, so that the bottom plate 230 and the limiting plate 235 cooperate to clamp and position the signal wire, keeping the signal wire flat. Multiple limiting plates 235 are inserted and connected in sequence and fixed with screws, which facilitates the sequential clamping and limiting of multiple wire harnesses, improves the neatness of the wire harnesses, and at the same time maintains an appropriate heat dissipation space between each wire harness, improving the heat dissipation effect. A partition plate 240 is fixedly installed on the inner wall of the control box 100. The partition plate 240 is located between two wire racks 220. The inner layer of the partition plate is a metal plate 240, and the outer side of the metal plate 240 is wrapped with a rubber insulating layer 241.

[0024] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A layered wiring structure for a building equipment control box, characterized in that, include A control box (100) with a sound insulation layer (110) fixedly installed on the inner wall of the control box (100). The wiring assembly includes a support frame (200) and a cable management rack (220) uniformly fixedly installed on the support frame (200). The outer wall of the cable management rack (220) is detachably fixedly installed with cable management clips by screws. The cable management clips include a bottom plate (230) and a stackable limiting plate (235). Two sets of support frames (200) are symmetrically arranged on the left and right sides. The support frames (200) are detachably and fixedly installed on the inner wall of the control box (100) by screws. The inner wall of the support frame (200) is evenly provided with slots (210). The inner wall of the slots (210) is detachably and fixedly installed with cable management racks (220) by screws. The cable management rack (220) is rectangular in shape, and the inner wall of the cable management rack (220) is provided with rounded rectangular holes (221). The left and right ends of the bottom plate (230) are provided with first ear hooks (232). The first ear hook (232) is fixedly connected to the outer wall of the rounded rectangular hole (221) by a threaded clip (231) and a screw. The front end of the bottom plate (230) is fixedly connected to an L-shaped plate. The end of the L-shaped plate is the second ear hook (233). The outer wall of the L-shaped plate is provided with a slot (234).

2. The layered wiring structure for a building equipment control box according to claim 1, characterized in that, The control box (100) has evenly spaced inlet holes (130) on its top inner wall, and a sealing ring (120) is fixedly installed on the front outer wall of the control box (100).

3. The layered wiring structure for a building equipment control box according to claim 2, characterized in that, The outer wall of the control box (100) is rotatably connected to the cabinet door (150) via a hinge. A viewing window (151) is fixedly installed on the front outer wall of the cabinet door (150). A handle (152) is fixedly installed on the outer wall of the cabinet door (150). A back plate (140) is fixedly installed on the rear inner wall of the control box (100). A controller bracket (141) is fixedly installed on the outer wall of the back plate (140).

4. The layered wiring structure for a building equipment control box according to claim 1, characterized in that, The outer wall of the rear end of the limiting plate (235) is fixedly connected to the insert plate (236). Two sets of insert plates (236) are symmetrically arranged on the left and right sides. The insert plate (236) and the slot (234) are connected by insertion.

5. The layered wiring structure for a building equipment control box according to claim 4, characterized in that, The rear left and right outer walls of the limiting plate (235) are provided with a third ear hook (237). The third ear hook (237) and the second ear hook (233) are fixedly connected by screws. The two adjacent limiting plates (235) are fixedly connected by screws.