A control cabinet for an energy management system
By designing adjustment and heat dissipation mechanisms, the problem of existing control cabinets being unable to adjust partitions has been solved, enabling adaptable installation and effective heat dissipation of electrical appliances, and meeting the usage needs of appliances of different sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING TUYANUO INTELLIGENT SYSTEM TECHNOLOGY CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-07-17
AI Technical Summary
The existing control cabinets are not convenient for adjusting the partitions during use and cannot accommodate electrical appliances of different sizes.
A control cabinet for an energy management system was designed. Through the cooperation of adjustment mechanism and heat dissipation mechanism, the height of the placement plate can be adjusted and heat dissipation functions can be realized. The cabinet includes the combined use of components such as adjustment plate, adjustment frame, positioning block, ventilation frame, compression bolt and cooling fan.
It enables the adjustment of the spacing between the adjustment plates according to the size of the appliances, and provides effective heat dissipation after the cabinet is closed, adapting to the installation needs of appliances of different sizes, while ensuring the normal working environment of the appliances.
Smart Images

Figure CN224520471U_ABST
Abstract
Claims
1. A control cabinet for an energy management system, characterized in that The cabinet (1) includes an adjustment mechanism at both the top and bottom ends of the cabinet (1). A placement plate (2) is connected between two adjustment mechanisms at the same height. The adjustment mechanism includes an adjustment plate (4), an adjustment frame (5), and a positioning block (7). The adjustment plate (4) is bolted to the cabinet (1). An adjustment frame (5) is slidably connected to one adjacent end of the adjustment plate (4) at both ends. The adjustment frame (5) is fixed to the placement plate (2). Positioning blocks (7) are provided on both the top and bottom sides of the adjustment frame (5). The positioning blocks (7) are slidably connected to the adjustment plate (4).
2. The control cabinet for an energy management system according to claim 1, characterized in that The two ends of the adjustment plate (4) are provided with positioning grooves (6) evenly distributed on both sides of one end, and the positioning grooves (6) on both sides are staggered. The positioning block (7) and the adjustment plate (4) are slidably connected through the positioning grooves (6).
3. The control cabinet for an energy management system of claim 1, wherein, The adjustment frame (5) has sliding blocks (10) on both sides. Lifting blocks (12) are slidably connected to the top and bottom of the sliding blocks (10). The lifting blocks (12) are fixed to the corresponding positioning blocks (7). A tension spring (13) is fixed between the two lifting blocks (12) on the same side and inside the sliding block (10). A compression spring (11) is fixed inside the adjustment frame (5) at the end where the two sliding blocks (10) are far apart from each other. The compression spring (11) is fixed to the sliding block (10).
4. The control cabinet for an energy management system of claim 3, wherein, On the same end, the bottom of the positioning blocks (7) on both sides away from the translation block (10) is fixed with a limiting block (8), and a limiting groove (9) is opened on one side of the top of the adjustment frame (5). The limiting block (8) and the limiting groove (9) are slidably connected.
5. The control cabinet for an energy management system of claim 1, wherein, Heat dissipation mechanisms are installed at both ends of the cabinet (1) and on one side of the adjustment plate (4). The heat dissipation mechanism includes a ventilation frame (3), a filter plate (15), and a cooling fan (19). The ventilation frame (3) is slidably connected to the cabinet (1). A ventilation slot (17) is provided inside the ventilation frame (3). An assembly slot (18) is provided inside one side of the ventilation frame (3). The ventilation slot (17) and the assembly slot (18) are connected. A filter plate (15) is slidably connected to the inner side of the assembly slot (18). Cooling fans (19) are evenly distributed and fixed on the inner side of the ventilation slot (17) near the placement plate (2).
6. The control cabinet for an energy management system of claim 5, wherein, The top of the ventilation frame (3) has a travel groove (16) inside, and the top of the cabinet (1) and the position corresponding to the travel groove (16) are threaded with a compression bolt (14).