Intelligent system centralized control cabinet based on Internet of Things

By introducing a cooling system with temperature sensors and vacuum pumps into the intelligent system centralized control cabinet, the problems of poor cooling and inconvenient disassembly and assembly are solved, effective cooling and convenient cleaning are achieved, and the normal operation of the control cabinet is guaranteed.

CN223488602UActive Publication Date: 2025-10-28ZHENGZHOU CHUANGZHI SIYUAN MECHANICAL & ELECTRICAL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202422655385.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-28
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The existing IoT-based intelligent system centralized control cabinet has a relatively limited heat dissipation effect. When the cabinet overheats, it is difficult to discharge the high-temperature air in time, affecting normal operation. In addition, it is inconvenient to disassemble and clean the heat dissipation grille.

Method used

A structure including an Internet terminal mechanism, an opening and closing component, a heat dissipation grille, first and second mounting components, an exhaust fence and a heat dissipation component is designed. The temperature is monitored by a temperature sensor, and an exhaust pump is started to exhaust the hot air through the exhaust fence and pipes, simplifying the installation and disassembly steps of the heat dissipation grille.

Benefits of technology

It achieves effective heat dissipation, avoids cabinet overheating failure, simplifies the disassembly and assembly process of the heat dissipation structure, facilitates cleaning, and enhances the practical value of the control cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent system centralized control cabinets, in particular to an intelligent system centralized control cabinet based on the Internet of Things, which comprises a cabinet body, an Internet terminal mechanism, an opening and closing assembly, a heat dissipation grid, a mounting assembly, an exhaust fence and a heat dissipation assembly, one side of the cabinet body is provided with an Internet terminal mechanism, the other side of the cabinet body is provided with an opening and closing assembly, one side of the cabinet body is provided with a heat dissipation grid, the heat dissipation grid is arranged below the Internet terminal mechanism, one side of the heat dissipation grid is provided with a first installation assembly, and one side of the heat dissipation grid is further provided with a second installation assembly. The other side of the cabinet body is provided with an exhaust fence, and one side of the exhaust fence is provided with a heat dissipation assembly. According to the utility model, through a mode of pumping out hot air, overheated internal environment air in the cabinet body is exhausted in time, effective heat dissipation is guaranteed, faults of the cabinet body caused by overheated environment are avoided, meanwhile, the disassembly and assembly steps of the heat dissipation structure are simplified, cleaning treatment is convenient, and thus the practical value of the control cabinet is enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent system centralized control cabinet technology, and in particular to an intelligent system centralized control cabinet based on the Internet of Things. Background Technology

[0002] A centralized control cabinet for intelligent systems based on the Internet of Things (IoT) is a device that integrates advanced technologies. It enables centralized monitoring and management of multiple devices and systems through IoT technology. This type of control cabinet is commonly used in fields such as industrial automation, intelligent buildings, energy management, and data centers to improve the intelligence level and operational efficiency of the system.

[0003] Most current IoT-based smart system centralized control cabinets have relatively simple heat dissipation structures, resulting in limited heat dissipation effects. When the cabinet overheats, it is difficult to expel the hot air inside in time, which may affect the normal operation of the cabinet. Furthermore, disassembling and cleaning the heat dissipation grilles is difficult and inconvenient to use.

[0004] Therefore, given the limited heat dissipation effect of existing IoT-based intelligent system centralized control cabinets and the inconvenience of disassembling and cleaning the heat dissipation grilles, an IoT-based intelligent system centralized control cabinet can be designed. This cabinet can extract hot air to promptly expel overheated internal air, ensuring effective heat dissipation and preventing cabinet malfunctions due to overheating. At the same time, it simplifies the disassembly and assembly steps of the heat dissipation structure and facilitates cleaning, thereby enhancing the practical value of the control cabinet. Utility Model Content

[0005] In order to overcome the limitations of centralized control in most IoT-based smart systems, heat dissipation is often limited. When the cabinet overheats, it is difficult to expel the hot air inside the cabinet in time, which may lead to problems that affect the normal operation of the cabinet.

[0006] The technical solution of this utility model is as follows: a centralized control cabinet for an intelligent system based on the Internet of Things, comprising a cabinet, an Internet terminal mechanism, an opening and closing component, a heat dissipation grille, a first mounting component, a second mounting component, an exhaust grille, and a heat dissipation component; the Internet terminal mechanism is provided on one side of the cabinet, the opening and closing component is provided on the other side of the cabinet, the heat dissipation grille is provided on one side of the cabinet and is located below the Internet terminal mechanism, the first mounting component is provided on one side of the heat dissipation grille, the second mounting component is also provided on one side of the heat dissipation grille, the exhaust grille is provided on the other side of the cabinet and is symmetrical to the heat dissipation grille, and a heat dissipation component is provided on one side of the exhaust grille.

[0007] Preferably, the cabinet is centrally controlled via an internet terminal, and the cabinet can be opened and closed flexibly using opening and closing components, facilitating internal maintenance and repair. The installation position of the heat dissipation grille is clearly defined by the first installation component, and the heat dissipation grille is locked and fixed using the second installation component, flexibly installing and fixing the heat dissipation grille to one side of the cabinet. The heat dissipation components draw hot air from inside the cabinet, allowing the air inside the cabinet to be discharged through the exhaust grille, effectively reducing the operating temperature of the cabinet and ensuring normal operation. This achieves effective heat dissipation, preventing cabinet malfunctions due to overheating, and simplifies the disassembly and assembly steps of the heat dissipation structure, enhancing the practical value of the control cabinet.

[0008] Preferably, the opening and closing components include a door panel, hinges, a handle, a door lock, and a lock cylinder; a door panel is provided on one side of the cabinet, a hinge is provided on one side of the door panel, a handle is provided on the other side of the door panel, a door lock is provided on one side of the door panel, and a lock cylinder is provided on one side of the cabinet; the door panel is connected and fixed by the hinges, the cabinet is flexibly closed by the door panel, the door lock is extended and retracted by turning the handle, and the door lock position is determined by the lock cylinder.

[0009] Preferably, there are two sets of hinges, with the door panel and the hinges rotating to each other, and the door lock and the lock cylinder engaging with each other; the door panel is rotated by the hinges, which allows the door panel to open and close flexibly, and the door lock engages with the lock cylinder, thereby closing the door panel.

[0010] Preferably, the first installation component includes a placement slot, a positioning frame, a support rod, a positioning block, a positioning groove, a recess, and a protrusion; a placement slot is provided on one side of the cabinet, a positioning frame is provided inside the placement slot, a support rod is provided on one side of the positioning frame, a positioning block is provided on one side of the support rod, a positioning groove is provided on one side of the ventilation grille, a recess is also provided on one side of the cabinet, and a protrusion is also provided on one side of the ventilation grille; the position of the positioning frame is defined by the placement slot, the positioning frame is used to hold the ventilation grille in place, the positioning block is fixed by the support rod, the positioning groove is used to define the fitting position of the positioning block, and the recess is used to define the placement position of the protrusion.

[0011] Preferably, the placement slot is located below the Internet terminal mechanism, the positioning block and the positioning slot are interlocked, two sets of grooves are symmetrically provided, the grooves and the placement slot are interconnected, and the grooves and the protrusions are engaged with each other; the heat dissipation grille is placed in the placement slot, so that the positioning block is embedded in the positioning slot, and at the same time, the protrusion is engaged in the groove, thereby initially determining the installation position of the heat dissipation grille.

[0012] Preferably, the second mounting component includes an annular slot, a rotating shaft, a mounting plate, and a rotating plate; an annular slot is provided on one side of the cabinet, a rotating shaft is provided on one side of the ventilation grille, a mounting plate is provided on the outside of the rotating shaft, and a rotating plate is provided at one end of the rotating shaft; the annular slot ensures the normal rotation of the mounting plate, the rotating shaft is used to fix the mounting plate, and the rotating plate is used to rotate the rotating shaft.

[0013] Preferably, two sets of annular slots are symmetrically provided, and the annular slots are interconnected with the placement slots. Two sets of rotating shafts are symmetrically provided, and the rotating shafts are rotatably connected to the heat dissipation grille. The card plate rotates in the annular slot; rotating the rotating shaft drives the card plate to rotate, and rotates the card plate into the annular slot, thereby abutting the card plate and fixing the position of the heat dissipation grille.

[0014] Preferably, the heat dissipation component includes a temperature sensor, an exhaust duct, an exhaust pipe, and an air pump. A temperature sensor is installed inside the cabinet, an exhaust duct is installed on one side of the exhaust grille, an exhaust pipe is installed at one end of the exhaust duct, and an air pump is installed on the outside of the exhaust pipe. The air pump is electrically connected to the temperature sensor. The temperature sensor monitors the internal temperature of the cabinet in real time. When the internal temperature rises to a set value, the air pump is activated to draw air from the exhaust pipe, thereby discharging the hot air from the exhaust grille into the exhaust duct, which then discharges the hot air into the exhaust pipe, where it is finally expelled.

[0015] The beneficial effects of this utility model are:

[0016] 1. Compared to traditional IoT-based intelligent system centralized control cabinets, which mostly rely on heat dissipation grilles for heat dissipation, the heat dissipation effect is often limited. When the cabinet overheats, it is difficult to expel the hot air inside the cabinet in time, which may affect the normal operation of the cabinet. Moreover, the operation of disassembling and cleaning the heat dissipation grilles is difficult and inconvenient to use. By extracting hot air, the overheated internal environment air inside the cabinet can be expelled in time, ensuring effective heat dissipation and preventing the cabinet from malfunctioning due to overheating. At the same time, the disassembly and assembly steps of the heat dissipation structure are simplified, and cleaning is convenient, thereby enhancing the practical value of the control cabinet.

[0017] 2. When the cabinet temperature is too high, the temperature sensor monitors the internal ambient temperature of the cabinet. When the temperature exceeds the preset value, the air pump is started to discharge the hot air inside the cabinet through the exhaust grille to the exhaust duct, and then the exhaust duct delivers the hot air to the exhaust pipe. Finally, the exhaust pipe discharges the hot air. This solves the problem that most IoT-based smart system centralized control cabinets have limited heat dissipation and are inconvenient to disassemble and clean the heat dissipation grille, thus ensuring the normal use of the control cabinet.

[0018] 3. When installing the heat dissipation grille, place the heat dissipation grille in the placement slot, so that the positioning frame abuts against the heat dissipation grille. At the same time, use the support rod to support and fix the positioning block. By embedding the positioning block into the positioning slot and placing the protrusion into the groove, the installation position of the heat dissipation grille is initially determined. Then, rotate the rotating plate to drive the clamping plate on the rotating shaft to rotate, and rotate the clamping plate into the annular clamping groove, thereby abutting against the clamping plate and fixing the position of the heat dissipation grille. Attached Figure Description

[0019] Figure 1The diagram shown is a three-dimensional structural schematic of a centralized control cabinet for an intelligent system based on the Internet of Things according to this utility model.

[0020] Figure 2 The diagram shown is a first three-dimensional structural schematic of the heat dissipation component of a centralized control cabinet for an intelligent system based on the Internet of Things according to this utility model.

[0021] Figure 3 The diagram shown is a three-dimensional structural schematic of the opening and closing components of a centralized control cabinet for an intelligent system based on the Internet of Things according to this utility model.

[0022] Figure 4 The diagram shown is a three-dimensional structural schematic of the installation components of a centralized control cabinet for an intelligent system based on the Internet of Things according to this utility model.

[0023] Figure 5 The diagram shown is a three-dimensional structural schematic of the heat dissipation grille of a centralized control cabinet for an intelligent system based on the Internet of Things according to this utility model.

[0024] Figure 6 The diagram shown is a second three-dimensional structural schematic of the heat dissipation component of a centralized control cabinet for an Internet of Things-based intelligent system according to this utility model.

[0025] Explanation of reference numerals in the attached drawings: 1. Cabinet; 2. Internet terminal mechanism; 201. Door panel; 202. Hinge; 203. Handle; 204. Door lock; 205. Lock cylinder; 3. Ventilation grille; 301. Placement slot; 302. Positioning frame; 303. Support rod; 304. Positioning block; 305. Positioning groove; 306. Groove; 307. Protrusion; 401. Annular slot; 402. Rotating shaft; 403. Card plate; 404. Rotating plate; 5. Exhaust grille; 501. Temperature sensor; 502. Exhaust duct; 503. Exhaust pipe; 504. Air pump. Detailed Implementation

[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0027] Please see Figures 1-6This utility model provides an embodiment: a centralized control cabinet for an intelligent system based on the Internet of Things, including a cabinet body 1, an Internet terminal mechanism 2, an opening and closing component, a heat dissipation grille 3, a first mounting component, a second mounting component, an exhaust grille 5, and a heat dissipation component; the Internet terminal mechanism 2 is provided on one side of the cabinet body 1, the opening and closing component is provided on the other side of the cabinet body 1, the heat dissipation grille 3 is provided on one side of the cabinet body 1 and is located below the Internet terminal mechanism 2, the first mounting component is provided on one side of the heat dissipation grille 3, the second mounting component is also provided on one side of the heat dissipation grille 3, the exhaust grille 5 is provided on the other side of the cabinet body 1, the position of the exhaust grille 5 is symmetrical to the heat dissipation grille 3, and the heat dissipation component is provided on one side of the exhaust grille 5.

[0028] Please see Figures 2-6 In this embodiment, the opening and closing assembly includes a door panel 201, a hinge 202, a handle 203, a door lock 204, and a lock cylinder 205. A door panel 201 is provided on one side of the cabinet 1, a hinge 202 is provided on one side of the door panel 201, a handle 203 is provided on the other side of the door panel 201, a door lock 204 is provided on one side of the door panel 201, and a lock cylinder 205 is provided on one side of the cabinet 1. The door panel 201 is connected and fixed by the hinge 202, allowing the cabinet 1 to be flexibly closed by the door panel 201. Rotating the handle 203 causes the door lock 204 to extend or retract, and the lock cylinder 205 determines the locking position of the door lock 204. Two sets of hinges 202 are provided, with the door panel 201 and the hinges 202 rotatably connected. The door lock 204 and the lock cylinder 205 are interlocked. The hinges 202 drive the door panel 201 to rotate, allowing the door panel 201 to open and close flexibly, and engaging the door lock 204 with the lock cylinder 205. 5. This closes the door panel 201. The first installation component includes a placement groove 301, a positioning frame 302, a support rod 303, a positioning block 304, a positioning groove 305, a groove 306, and a protrusion 307. A placement groove 301 is provided on one side of the cabinet body 1. A positioning frame 302 is provided on the inner side of the placement groove 301. A support rod 303 is provided on one side of the positioning frame 302. A positioning block 304 is provided on one side of the support rod 303. A positioning groove 305 is provided on one side of the heat dissipation grille 3. A groove 306 is also provided on one side of the cabinet body 1. A protrusion 307 is also provided on one side of the heat dissipation grille 3. The position of the positioning frame 302 is determined by the placement groove 301. The positioning frame 302 is used to hold the heat dissipation grille 3. The positioning block 304 is fixed by the support rod 303. The fitting position of the positioning block 304 is determined by the positioning groove 305. The placement position of the protrusion 307 is determined by the groove 306.

[0029] The placement slot 301 is located below the Internet terminal mechanism 2. The positioning block 304 and the positioning slot 305 are interlocked. Two sets of grooves 306 are symmetrically provided, and the grooves 306 and the placement slot 301 are interconnected. The grooves 306 and the protrusions 307 are engaged with each other. The heat dissipation grille 3 is placed in the placement slot 301, so that the positioning block 304 is embedded in the positioning slot 305. At the same time, the protrusions 307 are engaged in the grooves 306, thus initially defining the installation position of the heat dissipation grille 3. The second installation component includes an annular groove 401, a rotating shaft 402, and a locking mechanism. Plate 403 and rotating plate 404; an annular groove 401 is provided on one side of the cabinet 1, a rotating shaft 402 is provided on one side of the heat dissipation grille 3, a plate 403 is provided on the outer side of the rotating shaft 402, and a rotating plate 404 is provided at one end of the rotating shaft 402. The annular groove 401 ensures the normal rotation of the plate 403, and the rotating shaft 402 is fixedly connected to the plate 403. The rotating shaft 402 is rotated by the rotating plate 404; two sets of annular grooves 401 are symmetrically provided, and the annular grooves 401 and the grooves 306 are interconnected. Two rotating shafts 402 are symmetrically provided. The assembly consists of a rotating shaft 402 and a heat dissipation grille 3, with a retaining plate 403 rotating within an annular groove 401. Rotating the shaft 402 causes the retaining plate 403 to rotate, thus rotating the retaining plate 403 into the annular groove 401 and fixing the heat dissipation grille 3 in place. The heat dissipation assembly includes a temperature sensor 501, an exhaust duct 502, an exhaust pipe 503, and an air pump 504. A temperature sensor 501 is located on the inner side of the cabinet 1, and an exhaust duct 502 is located on one side of the exhaust grille 5. One end of the exhaust duct 502 is equipped with... An exhaust duct 503 is provided, and an air pump 504 is installed on the outside of the exhaust duct 503. The air pump 504 is electrically connected to a temperature sensor 501. The temperature sensor 501 monitors the internal ambient temperature of the cabinet 1 in real time. When the temperature inside the cabinet 1 rises to the set value, the air pump 504 is started to make the exhaust duct 503 perform exhaust operation, thereby discharging the hot air inside the cabinet 1 from the exhaust grille 5 to the exhaust duct 502. The hot air is then discharged to the exhaust duct 503 through the exhaust duct 502, and the hot air is discharged through the exhaust duct 503.

[0030] When installing the heat dissipation grille 3, place the heat dissipation grille 3 in the placement groove 301, so that the positioning frame 302 abuts against the heat dissipation grille 3, and at the same time, make the positioning block 304 on the support rod 303 embed into the positioning groove 305, and put the protrusion 307 into the groove 306.

[0031] Subsequently, rotating the rotating plate 404 drives the card plate 403 on the rotating shaft 402 to rotate, and rotates the card plate 403 into the annular slot 401, thereby fixing the position of the heat dissipation grille 3 against the card plate 403.

[0032] When closing cabinet 1, hold handle 203 to rotate door panel 201 around hinge 202, rotate handle 203 to retract door lock 204, close door panel 201 and lock door lock 204 into lock cylinder 205, close door panel 201, and perform centralized system control operation on cabinet 1 through Internet terminal mechanism 2.

[0033] When the temperature of cabinet 1 is too high, after the temperature sensor 501 detects that the temperature of cabinet 1 exceeds the preset value, the air pump 504 is started, so that the hot air in cabinet 1 is discharged through the exhaust grille 5 to the exhaust duct 502, and then transported by the exhaust duct 502 to the exhaust pipe 503 for discharge.

[0034] Through the above steps, the cabinet 1 is centrally controlled by the Internet terminal mechanism 2. The cabinet 1 is opened and closed flexibly using the opening and closing components, thereby facilitating the inspection and maintenance of the cabinet 1. The installation position of the heat dissipation grille 3 is determined by the first installation component, and the heat dissipation grille 3 is locked and fixed by the second installation component. The heat dissipation grille 3 is flexibly installed and fixed on one side of the cabinet 1. The heat dissipation components draw out the hot air inside the cabinet 1, and the air inside the cabinet 1 is discharged from the exhaust grille 5, effectively reducing the operating temperature of the cabinet 1 and ensuring the normal operation of the cabinet 1.

[0035] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A centralized control cabinet for an intelligent system based on the Internet of Things, comprising a cabinet (1); characterized in that: It also includes an Internet terminal mechanism (2), an opening and closing component, a heat dissipation grille (3), a first mounting component, a second mounting component, an exhaust grille (5), and a heat dissipation component; the Internet terminal mechanism (2) is provided on one side of the cabinet (1), the opening and closing component is provided on the other side of the cabinet (1), the heat dissipation grille (3) is provided on one side of the cabinet (1), the heat dissipation grille (3) is located below the Internet terminal mechanism (2), the first mounting component is provided on one side of the heat dissipation grille (3), the second mounting component is also provided on one side of the heat dissipation grille (3), the exhaust grille (5) is provided on the other side of the cabinet (1), the position of the exhaust grille (5) is symmetrical to the heat dissipation grille (3), and a heat dissipation component is provided on one side of the exhaust grille (5).

2. The centralized control cabinet for an intelligent system based on the Internet of Things according to claim 1, characterized in that: The opening and closing components include a door panel (201), a hinge (202), a handle (203), a door lock (204), and a lock cylinder (205); a door panel (201) is provided on one side of the cabinet (1), a hinge (202) is provided on one side of the door panel (201), a handle (203) is provided on the other side of the door panel (201), a door lock (204) is provided on one side of the door panel (201), and a lock cylinder (205) is provided on one side of the cabinet (1).

3. The centralized control cabinet for an intelligent system based on the Internet of Things according to claim 2, characterized in that: There are two sets of hinges (202), the door panel (201) and the hinges (202) are connected to each other by rotation, and the door lock (204) and the lock cylinder (205) are engaged with each other.

4. The centralized control cabinet for an intelligent system based on the Internet of Things according to claim 2, characterized in that: The first installation component includes a placement slot (301), a positioning frame (302), a support rod (303), a positioning block (304), a positioning groove (305), a groove (306), and a protrusion (307); a placement slot (301) is provided on one side of the cabinet (1), a positioning frame (302) is provided on the inner side of the placement slot (301), a support rod (303) is provided on one side of the positioning frame (302), a positioning block (304) is provided on one side of the support rod (303), a positioning groove (305) is provided on one side of the heat dissipation grille (3), a groove (306) is also provided on one side of the cabinet (1), and a protrusion (307) is also provided on one side of the heat dissipation grille (3).

5. A centralized control cabinet for an intelligent system based on the Internet of Things according to claim 4, characterized in that: The placement slot (301) is located below the Internet terminal mechanism (2). The positioning block (304) and the positioning slot (305) are fitted together. Two sets of grooves (306) are symmetrically provided. The grooves (306) and the placement slot (301) are interconnected. The grooves (306) and the protrusions (307) are engaged with each other.

6. The centralized control cabinet for an intelligent system based on the Internet of Things according to claim 5, characterized in that: The second installation component includes an annular slot (401), a rotating shaft (402), a clamping plate (403), and a rotating plate (404); an annular slot (401) is provided on one side of the cabinet (1), a rotating shaft (402) is provided on one side of the heat dissipation grille (3), a clamping plate (403) is provided on the outside of the rotating shaft (402), and a rotating plate (404) is provided at one end of the rotating shaft (402).

7. A centralized control cabinet for an intelligent system based on the Internet of Things according to claim 6, characterized in that: Two sets of annular slots (401) are symmetrically provided. The annular slots (401) and the grooves (306) are interconnected. Two sets of rotating shafts (402) are symmetrically provided. The rotating shafts (402) are rotatably connected to the heat dissipation grille (3). The card plate (403) rotates in the annular slots (401).

8. A centralized control cabinet for an intelligent system based on the Internet of Things according to claim 6, characterized in that: The heat dissipation assembly includes a temperature sensor (501), an exhaust fan (502), an exhaust duct (503), and an air pump (504). The temperature sensor (501) is installed inside the cabinet (1), the exhaust fan (502) is installed on one side of the exhaust grille (5), the exhaust duct (503) is installed at one end of the exhaust fan (502), and the air pump (504) is installed on the outside of the exhaust duct (503). The air pump (504) is electrically connected to the temperature sensor (501).