Wireless communication intelligent control cabinet
By introducing temperature and humidity regulation, identification, and wire harness protection devices into the intelligent control cabinet, the problems of temperature and humidity self-regulation and waterproofing are solved, improving safety and wire harness lifespan, and enhancing safety and stability in use.
Patent Information
- Application Number
- CN202422659533.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-11-01
AI Technical Summary
Existing intelligent control cabinets lack self-regulating temperature and humidity functions, have low safety performance, poor waterproofing of wiring that is prone to aging, and lack safety measures to prevent unauthorized personnel from operating them.
A wireless communication intelligent control cabinet was designed, equipped with a temperature and humidity control device, an identification device, and a wire harness protection device. The temperature and humidity control device controls the cooling fan and heating unit through temperature and humidity sensors and a microprocessor; the identification device controls the electromagnetic lock through facial recognition via a camera; and the wire harness protection device waterproofs and organizes the wire harness through clamping components.
It achieves self-regulation of temperature and humidity inside the cabinet, improves safety and waterproofing, prevents unauthorized operation, and extends the service life of the wiring harness.
Smart Images

Figure CN223729284U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of control cabinet, and specifically point to a wireless communication intelligent control cabinet. BACKGROUND
[0002] The control cabinet is assembled in a closed or semi-closed metal cabinet or screen according to the electrical wiring requirements, and the arrangement should meet the requirements of the normal operation of the power system, facilitate maintenance, and not endanger the safety of the person and the surrounding equipment.
[0003] Part of the intelligent control cabinet lacks the function of real-time monitoring of the temperature and humidity changes in the cabinet, and does not have a self-regulating system, which affects the stability and safety of the intelligent control cabinet. Attention should be paid to the waterproofness of the external wiring to the control cabinet itself, and the defects of wiring disorder and accelerated aging of the wiring harness should be avoided. In addition, the existing control cabinet needs to avoid the operation of irrelevant personnel on the inside of the control cabinet, thereby improving the safety performance in use. UTILITY MODEL CONTENT
[0004] In view of the above situation, in order to overcome the defects of the prior art, the utility model provides a wireless communication intelligent control cabinet, which is used to solve the problems of the lack of temperature and humidity self-regulating function in the cabinet, low safety performance in use, and waterproof and anti-aging of wiring in the prior art.
[0005] The technical scheme adopted by the present application is as follows:
[0006] The utility model provides a wireless communication intelligent control cabinet, including the cabinet body, the front surface of cabinet body is equipped with the protective door, the back of cabinet body is equipped with the mounting panel;
[0007] The cabinet body is internally provided with a temperature and humidity adjusting device, which comprises a temperature and humidity sensor, a microprocessor and a cooling fan, the temperature and humidity sensor and the microprocessor are arranged in the cabinet body, a driving assembly is arranged in the cabinet body for driving the cooling fan to dehumidify and ventilate, and the microprocessor and the driving assembly are electrically connected;
[0008] The cabinet body is provided with an identification device about the front end of the protective door, an electromagnetic lock is arranged between the protective door and the cabinet body, and the identification device is connected with the microprocessor for opening and closing the electromagnetic lock;
[0009] The back of the cabinet body is also provided with a wiring harness protection device for waterproofing the wiring harness.
[0010] In the preferred solution, the recognition device comprises a recognition box which is fixed on the protection door, one side of the recognition box is provided with a passage, a communication antenna is arranged in the passage and connected with the recognition box and the cabinet, a camera is arranged on one side of the recognition box and connected with the microprocessor, the microprocessor comprises a storage unit for storing the images of the staff, the camera extracts and compares the images of the staff from the storage unit after obtaining the images, and the microprocessor drives the opening and closing of the electromagnetic lock.
[0011] As the preferred solution, the cabinet is provided with an air inlet on one side and an air outlet on the other side, the air outlet is provided with a mounting shell, the driving assembly is arranged in the mounting shell, the driving assembly comprises a motor, a worm and a heating unit, the motor is arranged at the bottom of the mounting shell, the worm is arranged in the mounting shell in a vertical rotating manner, a partition plate is arranged in the mounting shell for fixing the rotation of the heat dissipation fan, the heat dissipation fan is provided with a worm wheel on the other side of the partition plate, the worm is engaged with the worm wheel, the output shaft of the motor is connected with the worm, the heating unit is arranged on the front side of the air outlet relative to the heat dissipation fan, the heating unit and the motor are connected with the microprocessor, the microprocessor sends a signal to the microprocessor after detecting the temperature and humidity in the cabinet, the microprocessor controls the operation of the motor according to the temperature and controls the operation of the heating unit according to the humidity, so as to achieve the effect of self-regulating the internal temperature and humidity.
[0012] Further, the wire harness protection device comprises a lower clamping sleeve and an upper protection sleeve, the cabinet is provided with a wire hole on the back, the lower clamping sleeve is fixedly arranged at the bottom of the wire hole, and the upper protection sleeve is slidingly arranged above the lower clamping sleeve relative to the wire hole, the lower clamping sleeve is arranged in an arc shape which is arched downward, the upper protection sleeve is arranged in an arc shape which is arched upward, and the outer ends of the lower clamping sleeve and the upper protection sleeve extend downward, the upper protection sleeve is provided with a linkage frame on the top, and the linkage frame is provided with a clamping assembly, the clamping assembly is used to drive the reciprocating linear motion of the upper protection sleeve, so as to realize the clamping effect on the wire harness by moving the lower clamping sleeve close to or away from the upper protection sleeve.
[0013] In the present solution, the clamping assembly comprises a motor, a screw rod and a sliding sleeve, the cabinet is provided with a driving cavity above the wire hole, the screw rod is arranged in the driving cavity in a rotating manner, the motor is arranged in the driving cavity and the output shaft is connected with the screw rod, and the sliding sleeve is threadedly connected to the outside of the screw rod, the sliding sleeve is connected with the linkage frame, and the cross section of the sliding sleeve is in an inverted L shape, and the driving cavity limits the up and down sliding of the sliding sleeve.
[0014] The beneficial effects achieved by the present application with the above structure are as follows:
[0015] 1. By setting the temperature and humidity adjusting device, the temperature and humidity inside the cabinet body are detected by the temperature and humidity sensor, and the operation of the cooling fan and the heating unit is automatically controlled, thereby solving the problem that the existing technology does not have a temperature and humidity self-regulating function inside the cabinet body.
[0016] 2. By setting the identification device, the opening and closing of the electromagnetic lock is controlled by the face recognition function provided by the camera when the cabinet door is opened or maintained, thereby improving the safety performance.
[0017] 3. By setting the wire harness protection device, the wire harness is protected by the lower clamp during the upward and downward movement of the upper protective sleeve, and the lower clamp and the upper protective sleeve are extended downward, which can solve the problem of waterproof connection and has certain regularity for the arrangement of the wire harness, thereby prolonging the service life of the wire harness. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The overall structure schematic diagram of the wireless communication intelligent control cabinet provided by the present scheme is shown in the figure.
[0019] Figure 2 The rear structure schematic diagram of the wireless communication intelligent control cabinet provided by the present scheme is shown in the figure.
[0020] Figure 3 The internal structure schematic diagram of the wireless communication intelligent control cabinet provided by the present scheme is shown in the figure.
[0021] Figure 4 The local enlarged schematic diagram of the wire harness protection device in the present scheme is shown in the figure.
[0022] Figure 5 The principle schematic diagram provided by the present scheme is shown in the figure.
[0023] The meaning of the reference signs in the drawings is shown as follows:
[0024] 1. Cabinet body, 2. Temperature and humidity adjusting device, 3. Identification device, 4. Electromagnetic lock, 5. Wire harness protection device.
[0025] 11. Protective door, 12. Installation panel, 13. Air vent, 14. Air passage.
[0026] 21. Temperature and humidity sensor, 22. Microprocessor, 23. Cooling fan, 24. Drive assembly, 25. Installation shell.
[0027] 241. Motor one, 242. Worm, 243. Heating unit, 244. Worm gear, 245. Partition.
[0028] 31. Identification box, 32. Passage, 33. Communication antenna, 34. Camera.
[0029] 51, lower jacket, 52, upper protective sleeve, 53, linkage frame, 54, motor two, 55, screw rod, 56, sliding sleeve. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.
[0031] Embodiment 1
[0032] Please refer to Figure 1 and Figure 2 The embodiment provides a wireless communication intelligent control cabinet, which comprises a cabinet body 1, the front of the cabinet body 1 is provided with a protective door 11, the back of the cabinet body 1 is provided with a mounting panel 12, one side of the cabinet body 1 is provided with a ventilation opening 13, and the other side of the cabinet body 1 is provided with a ventilation channel 14, and the outside of the ventilation channel 14 is provided with a mounting shell 25.
[0033] Please refer to Figure 3 and Figure 5 In order to solve the problem that the temperature and humidity inside the cabinet body 1 cannot be self-adjusted and enhance the safety of electrical elements, a temperature and humidity adjusting device 2 is arranged inside the cabinet body 1, the temperature and humidity adjusting device 2 comprises a temperature and humidity sensor 21, a microprocessor 22 and a heat dissipation fan 23, the temperature and humidity sensor 21 and the microprocessor 22 are arranged in the cabinet body 1, a driving assembly 24 is arranged in the cabinet body 1 and used for driving the heat dissipation fan 23 to dehumidify and ventilate, and the microprocessor 22 is electrically connected with the driving assembly 24.
[0034] The driving assembly 24 is arranged in the mounting shell 25, the driving assembly 24 comprises a motor one 241, a worm 242 and a heating unit 243, the motor one 241 is arranged at the bottom of the mounting shell 25, the worm 242 is arranged in the mounting shell 25 in a vertical rotating mode, a partition plate 245 is arranged in the mounting shell 25 and used for fixing the rotation of the heat dissipation fan 23, the heat dissipation fan 23 is provided with a worm wheel 244 on the other side of the partition plate 245, the worm 242 is engaged with the worm wheel 244, the output shaft of the motor one 241 is connected with the worm 242, and the heating unit 243 is arranged at the front end side of the ventilation channel 14 relative to the heat dissipation fan 23.
[0035] In use of the structure, the heating unit 243 adopts an electric heating structure, including but not limited to an electric heating rod and an electric heating coil. The heating unit 243 and the motor 241 are connected with the microprocessor 22. The temperature and humidity sensor 21 detects the temperature and humidity inside the cabinet 1 and sends a signal to the microprocessor 22. The microprocessor 22 controls the operation of the motor 241 according to the temperature and controls the operation of the heating unit 243 according to the humidity, so as to achieve the effect of self-regulating the temperature and humidity inside. The motor 241 drives the worm 242 to rotate, the worm 242 meshes with the worm gear 244 to rotate, the worm gear 244 in turn drives the coaxial cooling fan 23 to rotate, and the side of the mounting shell 25 is provided with air holes. Combined with the use of the air holes, the effect of air exchange, heat dissipation and dehumidification is achieved. At the same time, the heating unit 243 is located at the front end of the cooling fan 23, and the heating unit 243 is turned on for dehumidification work. Through the setting of the temperature and humidity adjusting device 2, the temperature and humidity inside the cabinet 1 are detected by the temperature and humidity sensor 21, and the operation of the cooling fan 23 and the heating unit 243 is automatically controlled, so as to solve the problem that the cabinet 1 in the prior art does not have the function of self-regulating the temperature and humidity.
[0036] As shown in Figure 1 In order to enhance the safety of the cabinet 1 during opening and closing for maintenance, an identification device 3 is arranged at the front end of the cabinet 1 relative to the protective door 11, and an electromagnetic lock 4 is arranged between the protective door 11 and the cabinet 1. The identification device 3 is connected with the microprocessor 22 for opening and closing of the electromagnetic lock 4.
[0037] The identification device 3 includes an identification box 31, which is fixedly arranged on the protective door 11. A passage 32 is arranged on one side of the identification box 31, and a communication antenna 33 is arranged in the passage 32 and connected with the identification box 31 and the cabinet 1. A camera 34 is arranged on one side of the identification box 31 and connected with the microprocessor 22.
[0038] The microprocessor 22 includes a storage unit for storing images of workers. The camera 34 extracts and compares the images of workers from the storage unit after acquiring the images, so that the microprocessor 22 drives the electromagnetic lock 4 to open and close. By using the identification device 3, the face recognition function provided by the camera 34 is used to control the opening and closing of the electromagnetic lock 4 when the cabinet door is opened or maintained, so as to improve the safety performance.
[0039] As shown in Figure 2 and Figure 4 In order to increase the safety during use of the wire harness, a wire harness protection device 5 for waterproofing of the wire harness is arranged on the back of the cabinet 1.
[0040] In a further embodiment, the wire harness protection device 5 comprises a lower clamping sleeve 51 and an upper protection sleeve 52, the cabinet 1 is provided with a wire hole at the back, the lower clamping sleeve 51 is fixedly arranged at the bottom of the wire hole, and the upper protection sleeve 52 is slidably arranged above the lower clamping sleeve 51, the lower clamping sleeve 51 is arranged in an arc shape that arches downward, the upper protection sleeve 52 is arranged in an arc shape that arches upward, and the outer ends of the lower clamping sleeve 51 and the upper protection sleeve 52 extend downward, the upper protection sleeve 52 is provided with a linkage frame 53 at the top, the linkage frame 53 is provided with a clamping assembly, and the clamping assembly is used to drive the reciprocating linear motion of the upper protection sleeve 52, so as to realize the clamping effect of the wire harness by moving the lower clamping sleeve 51 closer or farther away.
[0041] In a further embodiment, the clamping assembly comprises a second motor 54, a screw rod 55, and a sliding sleeve 56, the cabinet 1 is provided with a driving cavity above the wire hole, the screw rod 55 is rotatably arranged in the driving cavity, the second motor 54 is arranged in the driving cavity and the output shaft thereof is connected with the screw rod 55, and the sliding sleeve 56 is threadedly connected to the outside of the screw rod 55, the sliding sleeve 56 is connected with the linkage frame 53, and preferably the sliding sleeve 56 is arranged in an inverted L-shaped cross section, and the driving cavity limits the up-down sliding of the sliding sleeve 56. The second motor 54 is provided with a forward-reverse button for controlling the forward-reverse rotation of the second motor 54 on one side of the cabinet 1.
[0042] In use of the utility model, the forward-reverse rotation of the second motor 54 is controlled through the forward-reverse button, the second motor 54 drives the screw rod 55 to rotate, the sliding sleeve 56 is threadedly connected to the outside of the screw rod 55 and moves up and down relative to the screw rod 55, thereby driving the linkage frame 53 to move up and down, so that the upper protection sleeve 52 moves closer to or farther away from the lower clamping sleeve 51 to realize the clamping of the wire harness. Through the arrangement of the wire harness protection device 5, the wire harness is protected during the up-down movement of the upper protection sleeve 52 in combination with the lower clamping sleeve 51, and the outer ends of the lower clamping sleeve 51 and the upper protection sleeve 52 extend downward, which can solve the problem of waterproof connection and has certain regularity for the arrangement of the wire harness, thereby helping to prolong the service life of the wire harness.
[0043] It should be noted that although the embodiments of the utility model have been shown and described, for those skilled in the art, similar structural modes and embodiments can be designed without departing from the creative purpose of the utility model, which shall belong to the protection scope of the utility model.
Claims
1. A wireless communication intelligent control cabinet, comprising a cabinet body (1), the front of the cabinet body (1) is provided with a protective door (11), and the back of the cabinet body (1) is provided with a mounting panel (12), characterized in that: The cabinet (1) is internally provided with a temperature and humidity adjusting device (2), which comprises a temperature and humidity sensor (21), a microprocessor (22) and a heat dissipation fan (23), the temperature and humidity sensor (21) and the microprocessor (22) are arranged in the cabinet (1), and a driving assembly (24) is arranged in the cabinet (1) for driving the heat dissipation fan (23) to dehumidify and ventilate, and the microprocessor (22) is electrically connected with the driving assembly (24); The cabinet (1) is provided with an identification device (3) at the front end of the protective door (11), an electromagnetic lock (4) is arranged between the protective door (11) and the cabinet (1), and the identification device (3) is connected with the microprocessor (22) for opening and closing the electromagnetic lock (4); and the back of the cabinet (1) is further provided with a wire harness protection device (5).
2. The intelligent control cabinet of claim 1, wherein: The identification device (3) comprises an identification box (31), the identification box (31) is fixedly arranged on the protective door (11), one side of the identification box (31) is provided with a channel (32), a communication antenna (33) is arranged in the channel (32) and connected between the identification box (31) and the cabinet (1), a camera (34) is arranged on one side of the identification box (31), the camera (34) is connected with the microprocessor (22), and the microprocessor (22) comprises a storage unit for storing the images of the staff, the camera (34) extracts and compares the personnel images from the storage unit after acquiring the personnel images, so that the microprocessor (22) drives the opening and closing of the electromagnetic lock (4).
3. The intelligent control cabinet of claim 2, wherein: One side of the cabinet (1) is provided with an air inlet (13), and the other side is provided with an air duct (14), the outside of the air duct (14) is provided with a mounting shell (25), the driving assembly (24) is arranged in the mounting shell (25), the driving assembly (24) comprises a motor (241), a worm (242) and a heating unit (243), the motor (241) is arranged at the bottom of the mounting shell (25), the worm (242) is arranged in the mounting shell (25) in a vertical rotating manner, a partition plate (245) is arranged in the mounting shell (25) for fixing the rotation of the heat dissipation fan (23), the heat dissipation fan (23) is provided with a worm wheel (244) on the other side of the partition plate (245), the worm (242) is engaged with the worm wheel (244), the output shaft of the motor (241) is connected with the worm (242), and the heating unit (243) is arranged on the front end of the air duct (14) on the side of the heat dissipation fan (23).
4. The intelligent control cabinet of claim 3, wherein: The wire harness protection device (5) comprises a lower clamping sleeve (51) and an upper protection sleeve (52), the back of the cabinet (1) is provided with a wire hole, the lower clamping sleeve (51) is fixedly arranged at the bottom of the wire hole, the upper protection sleeve (52) is slidably arranged above the lower clamping sleeve (51) of the wire hole, the upper protection sleeve (52) is provided with a linkage frame (53) at the top, the linkage frame (53) is provided with a clamping assembly, and the clamping assembly is used for driving the upper protection sleeve (52) to reciprocatingly move linearly, so as to realize the clamping of the wire harness by moving close to or away from the lower clamping sleeve (51).
5. The intelligent control cabinet of claim 4, wherein: The clamping assembly comprises a second motor (54), a screw rod (55) and a sliding sleeve (56), the cabinet (1) is provided with a driving cavity above the wire hole, the screw rod (55) is rotatably arranged in the driving cavity, the second motor (54) is arranged in the driving cavity and the output shaft is connected with the screw rod (55), and the sliding sleeve (56) is threadedly connected to the outside of the screw rod (55), and the sliding sleeve (56) is connected with the linkage frame (53).
6. The intelligent control cabinet of claim 3, wherein: The heating unit (243) adopts an electric heating structure.
7. The intelligent control cabinet of claim 6, wherein: The heating unit (243) and the first motor (241) are connected with the microprocessor (22), the temperature and humidity sensor (21) sends a signal to the microprocessor (22) after detecting the temperature and humidity in the cabinet (1), the microprocessor (22) controls the operation of the first motor (241) according to the temperature and controls the operation of the heating unit (243) according to the humidity, so that the internal temperature and humidity are self-adjusted.
8. The intelligent control cabinet of claim 4, wherein: The lower clamping sleeve (51) is arranged in an arc shape and arches downward, and the upper protective sleeve (52) is arranged in an arc shape and arches upward.
9. The intelligent control cabinet of claim 5, wherein: The second motor (54) is provided with a forward-reverse button for controlling the forward and reverse rotation of the second motor (54) on one side of the cabinet (1).