Uninterruptible power supply intelligent power distribution cabinet

By installing rodent-proof and drive mechanisms inside the power distribution cabinet, synthetic camphor balls are used to repel rats and automatically remove impurities, solving the problems of rat carcass decay and the difficulty of rodent control, thus improving the operational stability and safety of the power distribution cabinet.

CN121769683APending Publication Date: 2026-03-31PRONA NEW ENERGY (GUANGDONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-07
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing intelligent power distribution cabinets, while preventing rats from entering, produce unpleasant odors from rotting rat carcasses, affecting their use. Furthermore, the multi-layered design makes rat prevention difficult and can easily lead to accidents such as short circuits and fires.

Method used

A rodent-proof mechanism is installed inside the distribution cabinet, including a moving frame, guide groove, guide block, synthetic camphor balls, and drive mechanism. The volatile odor of the synthetic camphor balls repels mice, and the drive mechanism automatically discharges impurities and lubricates the slide strips. Combined with a vacuum head, impurities and lubricate the slide grooves are cleaned.

Benefits of technology

It effectively repels rats, keeps the inside of the cabinet clean, ensures the stable operation and safety of electrical components, avoids short circuits and fires, and improves the operational stability and safety of the distribution cabinet.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of intelligent power distribution cabinets, and particularly discloses an uninterruptible power supply intelligent power distribution cabinet which comprises a cabinet body, a cavity is formed in the center of the interior of the cabinet body, the interior of the cavity is divided into a plurality of sockets through a plurality of partition plates, and box bodies are inserted into the sockets; placing cavities are formed in the positions, located at the two ends of the multiple sockets, in the cabinet body, UPS power supplies are placed in the two placing cavities, rat-proof mechanisms are arranged in the multiple box bodies, and a driving mechanism is arranged on the front face of the cabinet body. According to the invention, the rat-proof mechanism is arranged in the box body, so that a repelling effect on rats which want to enter the box body can be achieved, the rat repelling effect on the interior of the box body is maintained by virtue of the cooperation between the rat repelling mechanism and the driving mechanism, and the use of electrical elements in the box body is ensured not to be affected by the rats; and the overall operation stability and safety of the cabinet body are indirectly improved.
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Description

Technical Field

[0001] This invention relates to the field of intelligent power distribution cabinet technology, and specifically to an uninterruptible power supply intelligent power distribution cabinet. Background Technology

[0002] The uninterruptible power supply (UPS) intelligent distribution cabinet is a comprehensive device integrating UPS and intelligent power distribution management functions. Due to its built-in UPS module, it converts battery power into stable AC power via an inverter when the mains power is interrupted, ensuring continuous operation of the load and preventing data loss or equipment damage. Its modular design, remote monitoring, and redundancy mechanisms make it an ideal choice for data centers, industrial scenarios, and critical infrastructure, significantly reducing the risk of power outages and optimizing energy efficiency.

[0003] Distribution cabinets are the final-level devices in a power distribution system, playing a crucial role. If the wiring within a distribution cabinet breaks or short-circuits due to an accident, it can paralyze the entire power distribution system. This is especially true for outdoor distribution cabinets, where reliability and safety are paramount. If rodents are present in the environment where the distribution cabinet is used, they can enter the cabinet and gnaw on the wiring, causing system failure and affecting the cabinet's normal operation. More seriously, this can lead to short circuits, electrical leaks, fires, and other accidents.

[0004] Existing intelligent power distribution cabinets typically prevent small animals like rats from entering by setting traps inside the cabinet and then using pesticides to kill them. However, the carcasses of these animals remain inside the cabinet for extended periods, rotting and producing unpleasant odors, thus affecting the cabinet's functionality. This is especially true for existing multi-layered drawer-style power distribution cabinets, where each layer contains specific electrical components; damage to any layer can affect the entire cabinet's operation. Furthermore, the multi-layered design makes rodent control quite challenging. Summary of the Invention

[0005] To address the shortcomings of existing technologies, this invention provides an intelligent uninterruptible power supply (UPS) distribution cabinet.

[0006] An uninterruptible power supply (UPS) intelligent distribution cabinet includes a cabinet body. The cabinet body has a cavity in the center, and the cavity is divided into multiple sockets by multiple partitions. Each socket has a drawer-type box inserted inside. The cabinet body has placement chambers at both ends of the sockets, and each placement chamber contains a UPS power supply. Each of the multiple boxes is equipped with a rodent-proof mechanism to prevent rats from entering the cabinet body. The front of the cabinet body has a drive mechanism for operating the rodent-proof mechanism.

[0007] Optionally, each of the partitions has a sliding groove at its top, and each of the boxes has a sliding strip at its bottom that slides back and forth inside the sliding groove.

[0008] Optionally, each of the multiple enclosures is equipped with a touch screen and a handle on its front, and both placement cavities are rotatably fitted with sealing doors on their front.

[0009] Optionally, the rodent-proof mechanism includes a movable frame installed inside the box. Two guide grooves are opened on both sides of the inner wall of the box. Guide blocks are installed inside the two guide grooves. Both ends of the movable frame are connected to the guide blocks that are close to it. The bottom end of the movable frame is connected to the inner bottom surface of the box through multiple springs.

[0010] Optionally, cylinders are installed at the four corners inside the box, base plates are rotatably installed at the bottom of the four cylinders, torsion springs are fitted on the rotating parts of the four base plates, synthetic camphor balls are filled inside the four cylinders, and rubber stoppers are provided on the top of the four cylinders.

[0011] Optionally, the top of the movable frame and directly below the four cylinders are provided with placement slots. The inner bottom surfaces of the four placement slots are all inclined. After the four base plates are rotated to a horizontal state, they abut against the higher end of the inner bottom surface of the four placement slots.

[0012] Optionally, a protective plate is rotatably mounted on the top of the mobile frame, and two parallel limiting plates are mounted on the top of the protective plate. An inclined block is mounted on one end of the two limiting plates near the rotating part of the protective plate, and the inclined surface of one side of the inclined block faces the two limiting plates.

[0013] Optionally, the drive mechanism includes two first slide grooves opened on the front of the cabinet, each of which is equipped with a first slider. Each of the two first sliders is equipped with a moving rod at the end away from the first slide groove. Each of the two moving rods is provided with a second slide groove on the outer wall of the side where they are close to each other. Each of the two second slide grooves is equipped with a second slider. Each of the two second sliders is rotatably mounted with a rotating plate at the end away from the second slide groove via a rotating shaft.

[0014] Optionally, the rotating plate has a rectangular through groove inside, and a storage box is installed inside the rectangular through groove. The top of the storage box is provided with an oil filling port. One end of the rotating plate has two notches, and a U-shaped hollow plate is installed inside each of the two notches. An oil-absorbing pad is installed on the inner wall of each of the two hollow plates. One end of each of the two hollow plates is connected to the storage box through a pipe, and an oil drain port is provided on the inner wall of each of the two hollow plates.

[0015] Optionally, a groove is provided on one side of the outer wall of the rotating plate, and a double-ended lead screw is rotatably installed inside the groove. Two clamping plates are threaded on the outer wall of the double-ended lead screw. Two electric telescopic rods are installed at the other end of the rotating plate, and a dust suction head is installed at the telescopic end of the two electric telescopic rods.

[0016] The beneficial effects of this invention are reflected in:

[0017] 1. In this invention, by placing four synthetic camphor balls inside the box, it can repel mice that want to enter the box. After the synthetic camphor balls evaporate, the synthetic camphor balls can be automatically discharged outward by means of the cooperation between the mouse repelling mechanism and the drive mechanism, maintaining the mouse repelling effect inside the box, ensuring that the use of electrical components inside the box is not adversely affected by mice, and indirectly improving the overall operational stability and safety of the cabinet.

[0018] 2. In this invention, since a suction head is provided at one end of the rotating plate, when there are impurities on the top of the protective plate inside the box, the rotating plate drives the suction head to enter the box together. The two electric telescopic rods are controlled to drive the suction head to abut against the top of the protective plate. With the two second sliders moving back and forth in the corresponding second slide grooves, the suction head can be driven to thoroughly remove and clean the impurities on the top of the protective plate, ensuring the cleanliness of the protective plate when used inside the box and avoiding the problem of a large amount of impurities accumulating on the top of the protective plate, which would affect the use of electrical components.

[0019] 3. In this invention, during the process of the housing moving back and forth inside the socket for a long time, the two sliding strips at the bottom inevitably wear against the sliding groove. In order to ensure that the housing can move and adjust smoothly inside the socket, the cooperation between the relevant components of the drive mechanism can be controlled to drive the two oil-absorbing pads to rotate upward to the top, so that the position of the two oil-absorbing pads is on the same straight line as the two sliding grooves. While controlling the housing to move outward, the two sliding strips at the bottom rub against the inner wall of the two oil-absorbing pads, so that the grease is automatically applied to the surface of the two sliding strips and the outer wall of the two sliding strips is automatically lubricated, maintaining the smooth movement and adjustment of the housing inside the socket.

[0020] 4. In this invention, since the two second sliders can drive the rotating plate to move back and forth within the corresponding second slide groove, if the box is not completely closed inside the corresponding socket, the two first sliders can be controlled to drive the rotating plate to move to a position parallel to the box within the corresponding first slide groove. With the help of the two second sliders, the rotating plate can be driven to move towards the cabinet, thereby driving the rotating plate to push the box that is not completely closed, ensuring that the box is completely closed inside the socket, and avoiding the problem of the box not being closed, which affects the normal use of its internal electrical components. Attached Figure Description

[0021] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0022] Figure 1 This is a schematic diagram of the overall structure of an uninterruptible power supply intelligent distribution cabinet proposed in this invention.

[0023] Figure 2 This is a schematic diagram of the structure in which the UPS power supply is placed inside the placement cavity in this invention;

[0024] Figure 3 This is a schematic diagram of the bottom structure of the box in this invention;

[0025] Figure 4 This is a schematic diagram of the internal structure of the box in this invention;

[0026] Figure 5 This is a schematic diagram of the structure of the four cylinders inside the box in this invention;

[0027] Figure 6 This is a cross-sectional view of one of the cylinders in this invention;

[0028] Figure 7 This is a schematic diagram of the structure of the protective plate after it has been rotated and adjusted on the top of the movable frame in this invention;

[0029] Figure 8 This is a schematic diagram of the drive mechanism in this invention;

[0030] Figure 9 for Figure 8 A schematic diagram of the structure excluding the two moving rods;

[0031] Figure 10 This is a cross-sectional view of the rotating plate in this invention;

[0032] Figure 11 This is a schematic diagram of the double-ended lead screw and two clamping plates in this invention;

[0033] Figure 12 This is a schematic diagram of the vacuum head in this invention.

[0034] In the attached diagram: 1. Cabinet; 2. Placement cavity; 3. Sealed door; 4. Box body; 5. First slide rail; 6. Moving rod; 7. UPS power supply; 8. Partition; 9. Sliding groove; 10. Socket; 11. Sliding strip; 12. Handle; 13. Touch screen; 14. Protective plate; 15. Guide groove; 16. Cylinder; 17. Synthetic mothballs; 18. Rubber stopper; 19. Base plate; 20. Moving frame; 21. Placement groove; 2 2. Spring; 23. Guide block; 24. Limiting plate; 25. Inclined block; 26. First slider; 27. Second slide groove; 28. Second slider; 29. ​​Rotating shaft; 30. Rotating plate; 31. Rectangular through groove; 32. Groove; 33. Storage box; 34. Dust suction head; 35. Oil inlet; 36. Pipe; 37. Hollow plate; 38. Oil absorbent pad; 39. Double-ended lead screw; 40. Clamping plate; 41. Electric telescopic rod. Detailed Implementation

[0035] The embodiments of the technical solution of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the technical solution of the present invention and are therefore intended to limit the scope of protection of the present invention.

[0036] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application should have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains.

[0037] like Figures 1-12 As shown, an uninterruptible power supply (UPS) intelligent distribution cabinet includes a cabinet body 1. A cavity is centrally located inside the cabinet body 1. The cavity is divided into multiple sockets 10 by partitions 8. Each socket 10 contains a drawer-type cabinet 4. Placement chambers 2 are located at both ends of each socket 10 inside the cabinet body 1. UPS power supplies 7 are placed inside each of the two placement chambers 2. Each cabinet 4 is equipped with a rodent-proof mechanism to prevent rodents from entering the cabinet body 1. A drive mechanism for operating the rodent-proof mechanism is located on the front of the cabinet body 1. The installation of multiple UPS power supplies 7 inside the cabinet body 1 significantly improves the stability and reliability of power supply, especially in critical loads or scenarios with high power quality requirements. Multiple UPS power supplies 7 operate independently; if one UPS power supply 7 fails, the others can continue to supply power, avoiding a single point of failure that could paralyze the entire system. When the main UPS power supply 7 is under maintenance or fails, the backup UPS power supply 7 can immediately take over the load, achieving zero-interruption power supply and ensuring the continuous operation of critical equipment.

[0038] As a technical optimization of the present invention, each of the multiple partitions 8 has a sliding groove 9 on its top, and each of the multiple housings 4 has a slide bar 11 installed at its bottom that slides back and forth inside the sliding groove 9. The multiple housings 4 can be smoothly slidably adjusted inside the corresponding slots 10 by means of the two slide bars 11 at their bottom ends.

[0039] As a technical optimization of the present invention, each of the multiple enclosures 4 is equipped with a touch screen 13 and a handle 12 on its front side, and each of the two placement cavities 2 is rotatably mounted with a sealing door 3 on its front side. Through the touch screen 13 on the front side of the enclosure 4, the operating parameters of the relevant electrical components installed inside the enclosure 4 can be intelligently adjusted through a preset control system, resulting in a high degree of intelligence for the entire power distribution cabinet.

[0040] As a technical optimization of the present invention, the rodent-proof mechanism includes a movable frame 20 disposed inside the housing 4. Two guide grooves 15 are formed on both inner walls of the housing 4, and guide blocks 23 are installed inside each guide groove 15. Both ends of the movable frame 20 are connected to their respective guide blocks 23. The bottom end of the movable frame 20 is connected to the inner bottom surface of the housing 4 via multiple springs 22. When the movable frame 20 is pressed, it moves up and down within the corresponding guide grooves 15 using the two guide blocks 23 at both ends, ensuring that the movable frame 20 can move horizontally downwards. After the top of the movable frame 20 is no longer restricted, it moves upwards to its original position using the elastic reset of the multiple springs 22.

[0041] As a technical optimization of the present invention, cylinders 16 are installed at the four corners inside the box 4. A base plate 19 is rotatably mounted on the bottom of each of the four cylinders 16. A torsion spring is fitted onto the rotating parts of each of the four base plates 19. Synthetic camphor balls 17 are filled inside each of the four cylinders 16, and rubber stoppers 18 are placed on the top of each of the four cylinders 16. The synthetic camphor balls 17 are camphor balls containing naphthol or p-dichlorobenzene, which have a stronger pungent odor and a more pronounced rodent-repelling effect.

[0042] As a technical optimization of the present invention, the top of the mobile frame 20 and the four cylinders 16 are provided with placement slots 21. The inner bottom surfaces of the four placement slots 21 are all inclined. After the four base plates 19 are rotated to a horizontal state, they abut against the higher end of the inner bottom surface of the four placement slots 21. When the movable frame 20 is in its original state, the bottom surfaces of the four placement slots 21 at its top abut against the bottom plates 19 at the bottom ends of the four cylinders 16. After the movable frame 20 is pressed downward, the four bottom plates 19 can be opened downward by the elastic reset of the corresponding torsion springs, allowing the synthetic camphor balls 17 at the bottom of the cylinders 16 to be discharged downward and rolled along the inclined placement slots 21 to be placed on top of the movable frame 20, achieving the effect of quickly and automatically discharging the four synthetic camphor balls 17 outward. After the synthetic camphor balls 17 are discharged outward, the pressure on the top of the movable frame 20 is released, causing the movable frame 20 to move upward and reset, which can push the four bottom plates 19 to rotate upward and reset, continuing to seal the bottom ends of the four cylinders 16. The remaining synthetic camphor balls 17 can wait for subsequent discharge and use.

[0043] As a technical optimization of the present invention, a protective plate 14 is rotatably mounted on the top of the movable frame 20. Two parallel limiting plates 24 are mounted on the top of the protective plate 14. An inclined block 25 is mounted on one end of the two limiting plates 24 near the rotating part of the protective plate 14. The inclined surface of one side of the inclined block 25 faces the two limiting plates 24. A first driving device is preset on one side of the outer wall of the movable frame 20. The output end of the first driving device is connected to the rotating part of one end of the protective plate 14, thereby driving the protective plate 14 to rotate and adjust on the top of the movable frame 20. The two limiting plates 24 set on the top of the protective plate 14 can be used to place fire extinguishing dry powder bags or desiccant bags on the top of the protective plate 14 and between the two limiting plates 24, according to actual usage needs, so as to ensure the safety of the electrical components inside the box 4.

[0044] As a technical optimization of the present invention, the driving mechanism includes two first slide grooves 5 opened on the front of the cabinet 1. A first slider 26 is installed inside the two first slide grooves 5. A moving rod 6 is installed at the end of the two first sliders 26 away from the first slide groove 5. A second slide groove 27 is opened on the outer wall of the side of the two moving rods 6 that are close to each other. A second slider 28 is installed inside the two second slide grooves 27. A rotating plate 30 is rotatably installed at the end of the two second sliders 28 away from the second slide groove 27 through a rotating shaft 29. Each of the two first slide grooves 5 is equipped with a first linear motor, which drives the two first sliders 26 to move up and down within their respective slide grooves 5, thereby causing the two moving rods 6 and the rotating plate 30 to move up and down synchronously for adjustment. Each of the two second slide grooves 27 is equipped with a second linear motor, which drives the two second sliders 28 to move back and forth within their respective slide grooves 27, thereby causing the rotating plate 30 to move back and forth between the two moving rods 6 for adjustment. A second drive device is installed inside one of the second sliders 28, and the output end of the second drive device is connected to the rotating shaft 29, thereby enabling the rotating plate 30 to rotate between the two second sliders 28 for adjustment.

[0045] As a technical optimization of the present invention, a rectangular through groove 31 is provided inside the rotating plate 30, and a storage box 33 is installed inside the rectangular through groove 31. An oil filling port 35 is provided on the top of the storage box 33. Two notches are provided at one end of the rotating plate 30, and U-shaped hollow plates 37 are installed inside the two notches. Oil-absorbing pads 38 are installed on the inner walls of the two hollow plates 37. One end of the two hollow plates 37 is connected to the storage box 33 through a pipe 36. An oil drain port is provided on the inner wall of the two hollow plates 37. Lubricating grease can be injected into the storage box 33 through the oil filling port 35. Then, the relevant sealing cap is tightened on the surface of the oil filling port 35 to prevent the lubricating grease from leaking out. The lubricating grease that has entered the storage box 33 can be transported to the inside of the two hollow plates 37 through the pipe 36 after the rotating plate 30 rotates to a vertical state, and discharged into the inside of the oil-absorbing pads 38 through the oil drain port, so that the two oil-absorbing pads 38 can absorb and temporarily store the lubricating grease for subsequent lubrication of the surfaces of the two slide bars 11.

[0046] As a technical optimization of the present invention, a groove 32 is provided on one outer wall of the rotating plate 30. A double-ended lead screw 39 is rotatably installed inside the groove 32. Two clamping plates 40 are threaded onto the outer wall of the double-ended lead screw 39. Two electric telescopic rods 41 are installed at the other end of the rotating plate 30. The telescopic ends of the two electric telescopic rods 41 are jointly equipped with a suction head 34. A third driving device is preset on one outer wall of the rotating plate 30. The output end of the third driving device is connected to one end of the double-ended lead screw 39, thereby driving the double-ended lead screw 39 to rotate inside the groove 32, and consequently driving the two clamping plates 40 to move closer or further apart. During the telescopic process of the two electric telescopic rods 41, the telescopic ends can drive the suction head 34 to move and adjust. The suction head 34 can be connected to an externally preset vacuuming device through a preset hose, so that it can automatically remove dust and other debris during use.

[0047] In this invention, when the user uses the device, the operator opens multiple boxes 4 outwards in sequence, installs the corresponding electrical components inside the matching boxes 4, and then pushes the multiple boxes 4 into the corresponding sockets 10 in sequence. Subsequently, multiple UPS power supplies 7 are installed inside the two placement cavities 2, which can significantly improve the stability and reliability of power supply, especially in critical loads or scenarios with high power quality requirements. When the main UPS power supply 7 is under maintenance or fails, the backup UPS power supply 7 can immediately take over the load, achieving zero-interruption power supply and ensuring the continuous operation of critical equipment.

[0048] Since the two second sliders 28 can drive the rotating plate 30 to move back and forth within the corresponding second slide groove 27, if the box 4 is not completely closed within the corresponding socket 10, the two first sliders 26 can be controlled to drive the rotating plate 30 to move to a position parallel to the box 4 within the corresponding first slide groove 5. With the help of the two second sliders 28, the rotating plate 30 can be moved towards the cabinet 1, thereby driving the rotating plate 30 to push the box 4 that is not completely closed, ensuring that the box 4 is completely closed within the socket 10, and avoiding the problem of the box 4 not being closed, which would affect the normal use of its internal electrical components.

[0049] If it is necessary to place fire extinguishing dry powder bags or desiccant bags for dehumidification inside multiple boxes 4, firstly, control the two first sliders 26 to move downwards together to the lowest position within the corresponding first slide grooves 5, driving the two moving rods 6 and the rotating plate 30 to move downwards synchronously for adjustment. Then, the operator can neatly place multiple dry powder bags or desiccant bags on top of the rotating plate 30, and control the double-ended screw 39 to drive the two clamping plates 40 to move towards each other, clamping and fixing the multiple dry powder bags or desiccant bags. Then, control the two first sliders 26 to move upwards within the corresponding first slide grooves 5, thereby driving the rotating plate 30 upwards. After moving to the highest position, control the topmost box 4 to move outward and open, then control the two second sliders 28 to move together in the corresponding second slide grooves 27 in a direction away from the cabinet 1, thereby driving the rotating plate 30 to move and adjust to a suitable position. Then control the end of the rotating plate 30 near the cabinet 1 to rotate downward to an inclined state, and control the two clamping plates 40 to move and adjust in a direction away from each other, so that one of the dry powder bags or desiccant bags slides down and falls onto the top of the protective plate 14, and is located between the two limit plates 24 and the inclined block 25, thus achieving the effect of automatically placing the dry powder bag or desiccant bag inside the box 4;

[0050] When placing subsequent dry powder packets or desiccant packets inside other housings 4, the two first sliders 26 can be controlled to slide downwards inside the corresponding first slide grooves 5 to the top of the second housing 4, cooperating with the housing 4 to move outwards and extend. Then, the above steps can be repeated, so that the drive mechanism can place the dry powder packets or desiccant packets into the interiors of multiple housings 4 in sequence according to actual usage requirements, ensuring the safe use of electrical components inside multiple housings 4.

[0051] If the dry powder or desiccant packs inside the cabinet 4 need to be replaced after a period of use, firstly, control the two first sliders 26 within the corresponding first slide grooves 5 to move and adjust the rotating plate 30 and other components to a position suitable for the cabinet 4. Then, control the two second sliders 28 within the corresponding second slide grooves 27 to move and adjust the rotating plate 30 away from the cabinet 1. After the cabinet 4 is moved outward and extended, control the protective plate 14 to move upward on top of the moving frame 20, thereby moving the old dry powder or desiccant pack placed on top of it towards the cabinet 1. The material slides outward and is discharged from the inside of the housing 4 to the top of the rotating plate 30 through the inclined surface of the inclined block 25. Then, the two first sliders 26 are controlled to drive the rotating plate 30 to move downward. After the operator removes the old dry powder pack or desiccant pack placed on the top of the rotating plate 30, the new dry powder pack or desiccant pack is placed on the top of the rotating plate 30. The above steps of placing the dry powder pack or desiccant pack inside the housing 4 are repeated to achieve the effect of automatically replacing the dry powder pack or desiccant pack inside the housing 4, ensuring that the dry powder pack or desiccant pack can maintain good performance inside the housing 4.

[0052] While installing electrical components inside the corresponding enclosure 4, the movable frame 20 and protective plate 14 can also be installed inside the enclosure 4. This allows the movable frame 20 and protective plate 14 to protect multiple electrical components without affecting their normal use inside the enclosure 4, thus preventing external debris from falling into the enclosure 4 and affecting the use of the electrical components when the enclosure 4 extends outward.

[0053] Meanwhile, in order to further improve the rat-repelling and protective effect of the cabinet 1, the staff can fill multiple synthetic mothballs 17 into the inside of multiple cylinders 16, and seal the top of the cylinders 16 with rubber stoppers 18. The bottom plate 19 of the cylinders 16 is in contact with the top of the mobile frame 20. Then the staff can directly place four synthetic mothballs 17 into the corresponding placement slots 21, so that the odor emitted by the four synthetic mothballs 17 can repel rats.

[0054] After the synthetic camphor balls 17 inside the four placement slots 21 evaporate and disappear, in order to maintain the rat-repelling effect inside the box 4, the two first sliders 26 can be controlled to move and adjust the rotating plate 30 and other components together in the corresponding first slide grooves 5. After the rotating plate 30 is moved above the box 4, it is controlled to rotate to a vertical position, and the box 4 is controlled to move outward and extend. Then, the two first sliders 26 are controlled to move downward together in the corresponding first slide grooves 5, driving the rotating plate 30, which is now in a vertical position, to move downward into the box 4. With the extension of the extension ends of the two electric telescopic rods 41, the vacuum head 34 is driven to press down on the protective plate 14, causing the moving frame 20 to move downward under pressure. After the four base plates 19 lose the contact limit of the moving frame 20, they move downward with the help of the corresponding... The torsion spring elastically resets, causing the base plate 19 to rotate downwards to a vertical position, discharging the synthetic camphor balls 17 at the bottom of the cylinder 16 downwards. These balls then roll along the inclined placement groove 21 and are placed on top of the movable frame 20, achieving the effect of quickly and automatically discharging four synthetic camphor balls 17 outwards. After the four synthetic camphor balls 17 are discharged outwards, the pressure on the top of the movable frame 20 is released, causing the movable frame 20 to move upwards and reset. This pushes the four base plates 19 upwards and resets, continuing to seal the bottom of the four cylinders 16. The remaining synthetic camphor balls 17 can wait to be discharged later, so that the four discharged synthetic camphor balls 17 maintain the rodent-repelling effect inside the cabinet 4, ensuring that the electrical components inside the cabinet 4 are not adversely affected by rodents, and indirectly improving the overall operational stability and safety of the cabinet 1.

[0055] Since a suction head 34 is provided at one end of the rotating plate 30, when there are impurities on the top of the protective plate 14 inside the box 4, the above-mentioned steps of entering the box 4 by means of the vertical rotating plate 30 can be repeated. After the suction head 34 enters the box 4, the telescopic ends of the two electric telescopic rods 41 are controlled to extend together, causing the suction head 34 to come into contact with the top of the protective plate 14. With the two second sliders 28 moving back and forth in the corresponding second slide grooves 27, the suction head 34 can be driven to thoroughly remove and clean the impurities on the top of the protective plate 14, ensuring the cleanliness of the protective plate 14 when used inside the box 4, and avoiding the problem of a large amount of impurities accumulating on the top of the protective plate 14, which may affect the use of electrical components.

[0056] During the prolonged reciprocating movement of the housing 4 within the socket 10, the two bottom sliding strips 11 inevitably experience wear against the sliding groove 9. To ensure smooth movement and adjustment of the housing 4 within the socket 10, the two first sliders 26 can be controlled to move and adjust the rotating plate 30 and other components within the corresponding first sliding groove 5 to below the two sliding strips 11 requiring lubrication. Then, the end of the rotating plate 30 with two hollow plates 37 mounted on it can be rotated downwards to its lowest point, allowing the grease stored inside the storage box 33 to flow through the pipe 36 into the two hollow plates 37. The oil is discharged into the interior of the 7 and temporarily stored in the oil-absorbing pad 38 through the corresponding drain port. Then, the control plate 30 drives the two oil-absorbing pads 38 to rotate upward to the top, so that the positions of the two oil-absorbing pads 38 and the two sliding grooves 9 are on the same straight line. While the control box 4 moves outward and extends, the two sliding strips 11 at the bottom of the box 4 rub against the inner wall of the two oil-absorbing pads 38, so that the grease is automatically applied to the surface of the two sliding strips 11 and the outer wall of the two sliding strips 11 is automatically lubricated, maintaining the smooth movement and adjustment of the box 4 inside the inlet 10.

[0057] At the same time, since the rotating plate 30 can rotate freely, the grease placed inside the storage box 33 can be shaken synchronously during the rotation of the rotating plate 30, ensuring that the grease can be quickly discharged through the pipe 36 into the interior of the two hollow plates 37, so that the two oil-absorbing pads 38 can quickly apply the absorbed grease to the surface of the two slide bars 11.

[0058] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and specification of the present invention.

Claims

1. An uninterruptible power supply intelligent power distribution cabinet, comprising a cabinet body (1), characterized in that, The inside of the cabinet body (1) is centrally provided with a cavity, the inside of the cavity is divided into multiple sockets (10) by multiple partitions (8), the inside of each socket (10) is inserted with a drawer type box (4), the inside of the cabinet body (1) and at both ends of the multiple sockets (10) are provided with placing cavities (2), the inside of each placing cavity (2) is placed with a UPS power supply (7), the inside of each box (4) is provided with a rat prevention mechanism for preventing rats from entering the inside of the cabinet body (1), and the front of the cabinet body (1) is provided with a driving mechanism for driving the rat prevention mechanism to operate.

2. An uninterruptible power supply intelligent power distribution cabinet according to claim 1, characterized in that, The top of each partition (8) is provided with a sliding groove (9), and the bottom of each box (4) is provided with a sliding bar (11) sliding back and forth in the sliding groove (9).

3. An uninterruptible power supply intelligent power distribution cabinet according to claim 1, characterized in that, The front of each box (4) is provided with a touch screen (13) and a handle (12), and the front of each placing cavity (2) is rotatably provided with a sealing door (3).

4. An uninterruptible power supply intelligent power distribution cabinet according to claim 1, characterized in that, The rat prevention mechanism comprises a moving frame (20) arranged in the box (4), two guide grooves (15) are formed in the inner walls of the two sides of the box (4), guide blocks (23) are arranged in the two guide grooves (15), the two ends of the moving frame (20) are connected with the guide blocks (23) adjacent thereto, and the bottom end of the moving frame (20) is connected with the inner bottom surface of the box (4) through a plurality of springs (22).

5. An uninterruptible power supply intelligent power distribution cabinet according to claim 4, wherein, The inside of the box (4) is provided with four cylinders (16) at four corner positions, the bottom end of each of the four cylinders (16) is rotatably provided with a bottom plate (19), a torsional spring is sleeved on the rotating part of each of the four bottom plates (19), each of the four cylinders (16) is filled with synthetic camphor pellets (17), and the top of each of the four cylinders (16) is provided with a rubber plug (18).

6. An uninterruptible power supply intelligent power distribution cabinet according to claim 5, wherein, The top of the moving frame (20) and below the four cylinders (16) are provided with placing grooves (21), the inner bottom surfaces of the four placing grooves (21) are inclined, and the four bottom plates (19) are rotatable to abut against one end of the inner bottom surfaces of the four placing grooves (21) in a horizontal state.

7. An uninterruptible power supply intelligent power distribution cabinet according to claim 6, wherein, The top end of the moving frame (20) is rotatably provided with a protective plate (14), two parallel limiting plates (24) are arranged on the top of the protective plate (14), a slope (25) is arranged on the end of the two limiting plates (24) close to the rotating part of the protective plate (14), and the slope surface of one side of the slope (25) faces the two limiting plates (24).

8. An uninterruptible power supply intelligent power distribution cabinet according to claim 1, wherein, The driving mechanism comprises two first sliding grooves (5) formed in the front of the cabinet body (1), a first sliding block (26) is arranged in each of the two first sliding grooves (5), a moving rod (6) is arranged on the end of each of the two first sliding blocks (26) away from the first sliding groove (5), a second sliding groove (27) is formed in the side outer wall of each of the two moving rods (6) close to each other, a second sliding block (28) is arranged in each of the two second sliding grooves (27), and a rotating plate (30) is rotatably arranged on the end of each of the two second sliding blocks (28) away from the second sliding groove (27) through a rotating shaft (29).

9. An uninterruptible power supply intelligent power distribution cabinet according to claim 8, wherein, The inside of the rotating plate (30) is provided with a rectangular through slot (31), the inside of the rectangular through slot (31) is provided with a storage box (33), the top of the storage box (33) is provided with an oil inlet (35), one end of the rotating plate (30) is provided with two notches, the inside of the two notches is provided with two hollow plates (37) arranged in a U shape, the inner wall of the two hollow plates (37) is provided with an oil absorption pad (38), one end of the two hollow plates (37) is communicated with the storage box (33) through a pipeline (36), and the inner wall of the two hollow plates (37) is provided with an oil outlet.

10. An uninterruptible power supply intelligent power distribution cabinet according to claim 9, wherein, The side wall of the rotating plate (30) is provided with a groove (32), the inside of the groove (32) is rotatably provided with a double-head screw rod (39), the outer wall of the double-head screw rod (39) is provided with two clamping plates (40) in a threaded manner, the other end of the rotating plate (30) is provided with two electric telescopic rods (41), and the telescopic ends of the two electric telescopic rods (41) are jointly provided with a dust collection head (34).