Switch cabinet display device with real-time monitoring and early warning functions
By combining leveling components and multi-angle adjustment components, the problem of switchgear swaying on uneven ground is solved, enabling real-time monitoring and flexible adjustment, thus improving the safety and ease of use of the switchgear.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-04-07
AI Technical Summary
The existing switch cabinets cannot monitor their own status in real time, which causes them to shake when used on uneven ground, posing a safety hazard. In addition, the existing display devices have a simple installation structure, are inconvenient to fix in place, and are not flexible in adjustment.
The system employs leveling and multi-angle adjustment components, including a level monitor, leveling components, multi-angle adjustment components, a 180-degree lifting and rotating mechanism, and an elevation tilting platform mechanism, to achieve real-time monitoring and multi-angle adjustment, ensuring stable placement of the switchgear and flexible adjustment of the display device.
It enables stable placement of the switch cabinet on uneven ground, reducing safety hazards, and the flexible adjustment of the display device improves the safety factor and ease of use.
Smart Images

Figure CN121813136A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of switchgear equipment, specifically relating to a switchgear display device with real-time monitoring and early warning capabilities. Background Technology
[0002] A switch cabinet is an electrical device. External power lines first enter the main control switch inside the cabinet, then proceed to the branch control switches. Each branch circuit is configured according to its needs, such as instruments, automatic control systems, motor magnetic switches, various AC contactors, etc. Some switch cabinets also have high-voltage and low-voltage compartments, and high-voltage busbars, such as in power plants. Some also have underfrequency load shearing features to protect key equipment. Existing switch cabinet structures cannot monitor their own condition. For example, during installation, the switch cabinet may wobble due to being placed on uneven ground. Even if leveling plates are used initially, over time, these plates may thin under weight, or the cabinet may be impacted, causing the plates to lose their support. Due to various reasons, including lack of support, existing switchgear cannot monitor its stability in real time and make timely adjustments. This makes it unsuitable for prolonged placement on uneven ground. At best, it damages the internal electrical components; at worst, it may cause the switchgear to tip over, posing a significant hazard. Furthermore, the installation structure of the real-time monitoring and early warning display devices on existing switchgear is relatively simple, and their fixed positions are inconvenient, hindering effective adjustment and resulting in poor overall practicality. Therefore, it is essential to provide a switchgear display device with a simple and reasonable structure, real-time monitoring and timely adjustment, reduced safety hazards, a high safety factor, and convenient and quick adjustment. Summary of the Invention
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a switch cabinet display device with real-time monitoring and early warning that features a simple and reasonable structure, real-time monitoring and timely adjustment, reduced safety hazards, high safety factor, and convenient and quick adjustment.
[0004] The objective of this invention is achieved as follows: A switch cabinet display device with real-time monitoring and early warning capabilities includes a cabinet, a leveling assembly, and a multi-angle adjustment assembly. A leveling monitor is installed at the bottom of the cabinet, front, back, left, and right, for real-time monitoring of the cabinet's horizontal status in all directions. The leveling assembly is located at the bottom of the cabinet and contains a leveling data transmitter that communicates with the leveling monitors to receive monitoring data. A mounting plate is located at the front of the cabinet, and the multi-angle adjustment assembly is located in front of the mounting plate. A display device body is located in front of the multi-angle adjustment assembly. The display device body is movably connected to the multi-angle adjustment assembly via a folding bracket. The display device body processes data from the leveling data transmitter and controls the leveling assembly's movement, ensuring stable installation of the cabinet.
[0005] The leveling assembly includes a base, inside which a cross brace is provided. Adjusting rods are threadedly installed on both the left and right sides of the cross brace. A support plate is provided through the lower end of the cross brace, and a bevel gear power unit is provided through the lower end of the cross brace. The bevel gear power unit is connected to the driver. Fasteners for locking the support plate are provided on both the left and right sides of the front of the base.
[0006] The multi-angle adjustment assembly includes a 180-degree lifting and rotating mechanism and an elevation tilting platform mechanism. The 180-degree lifting and rotating mechanism includes a support plate, a rotating component, and a bracket. The support plate is located in front of the mounting plate, the rotating component is located between the support plate and the bracket, and the bracket is connected to the elevation tilting platform mechanism.
[0007] The rotating assembly includes a base plate, with cylinder top plates on both the left and right sides of the base plate. MGPM80-50 type guide rod cylinders are installed inside the cylinder top plates. A lifting rotating shaft seat is provided in the middle of the base plate, and an MDME302GCHM type braked servo motor and motor mount are provided on the upper part of the base plate. A lifting rotating shaft is installed inside the lifting rotating shaft seat. One end of the lifting rotating shaft is connected to the support plate shaft, and the other end is poweredly connected to the braked servo motor and motor mount through a synchronous belt drive assembly.
[0008] Multiple eccentric crankshaft adjusting wheel sets are arranged around the center of the substrate on one side of the substrate relative to the tray. A set of positioning pins is installed at the diagonal of one side of the substrate relative to the tray. A set of buffer brackets is arranged on the outer periphery of the lifting rotating shaft seat. A stop block is installed in front of the buffer bracket. The stop block is connected to the buffer bracket using an ACA2020-1N type hydraulic buffer.
[0009] The tilting platform mechanism includes a lead screw assembly and a tilting platform assembly. The lead screw assembly is connected to a 180-degree lifting and rotating mechanism, and the tilting platform assembly is connected to the display device body via a folding bracket.
[0010] The lead screw assembly includes a lead screw support bracket. A frame is provided on one side of the lead screw support bracket relative to the tilting table assembly. Slide rails are provided on both the left and right sides of the frame, and a set of spaced sliders are installed on each slide rail. A ball screw is provided in the middle of the frame, and the upper and lower ends of the ball screw are connected to the frame through FK-25 type ball screw support seats.
[0011] An MDME402GCHM type drive motor is installed above the lead screw support. A coupling is installed at the output end below the drive motor. The coupling is connected to the ball screw. A lead screw nut transmission block is installed in the middle of the ball screw. A movable plate is fixedly installed in front of the lead screw nut transmission block. Both ends of the movable plate are connected to corresponding sliders. A hinge seat is provided in the middle of the front of the movable plate.
[0012] The tilting table assembly includes a tilting plate, with side plates on both sides of the tilting plate. The side plates are connected by a U-shaped base bracket. The base bracket is connected to the lower part of the lead screw sub-bracket. A set of connecting plates is spaced apart on the upper part of the base bracket. A position sensor is provided on one side of the lower connecting plate. Bearing seats are provided on the left and right sides of the front of the upper connecting plate. The bearing seats are connected by a crossbar. A push rod is movably mounted on the crossbar. The free end of the push rod is movably connected to the hinge seat.
[0013] The folding bracket includes a first fixing plate connected to the display device body. Folding single rods are movably installed on both the upper and lower sides of the first fixing plate. Folding double rods are movably connected to the free ends of the folding single rods. A second fixing plate is movably connected to the free ends of the folding double rods. The second fixing plate is connected to the flip plate.
[0014] The beneficial effects of this invention are as follows: This invention is a switch cabinet display device with real-time monitoring and early warning. In use, this invention monitors the horizontal status of the cabinet in all directions in real time through a level monitor. When the cabinet structure shakes due to various factors causing it to be placed on an uneven ground, the leveling component controls the raising and lowering of the support plate. Once the cabinet structure is stable, the support plate is fixed with fasteners, thus placing the cabinet structure stably on the uneven ground and reducing safety hazards. This invention utilizes a multi-angle adjustment component to achieve multi-angle adjustment operations such as rotation and tilt of the display device body. A 180-degree lifting and rotating mechanism achieves planar rotation, allowing the display device body to be rotated to a specified position according to usage requirements. A tilting and flipping mechanism achieves multi-angle flipping, allowing the tilt angle to be adjusted to change the angle of the display device body according to usage requirements. This invention utilizes a folding bracket to achieve telescopic adjustment of the display device body, allowing for adaptive adjustment of the display device body according to usage requirements. This invention has the advantages of simple and reasonable structure, real-time monitoring and timely adjustment, reduced safety hazards, high safety factor, and convenient and quick adjustment. Attached Figure Description
[0015] Figure 1 This is a front view of the present invention.
[0016] Figure 2 For the present invention Figure 1 A partial structural side view.
[0017] Figure 3 This is a schematic diagram of the structure of the multi-angle adjustment component of the present invention.
[0018] Figure 4 This is an exploded view of the multi-angle adjustment component of the present invention.
[0019] Figure 5 This is an exploded view of the lifting and rotating mechanism of the present invention.
[0020] Figure 6 This is a schematic diagram of the rotating component of the present invention.
[0021] Figure 7 This is an exploded view of the elevation tilting table mechanism of the present invention.
[0022] Figure 8 This is a schematic diagram of the structure of the folding bracket of the present invention.
[0023] In the diagram: 1. Cabinet; 2. Horizontal monitoring device; 3. Leveling assembly; 31. Base; 32. Horizontal data transmitter; 33. Cross brace; 34. Adjusting rod; 35. Bevel gear power unit; 36. Driver; 37. Support plate; 38. Fastener; 4. Mounting plate; 5. Multi-angle adjustment assembly; 51. 180-degree lifting and rotating mechanism; 11. Support plate; 12. Rotating assembly; 201. Base plate; 202. Cylinder top plate; 203. Guide rod cylinder; 204. Lifting and rotating shaft seat; 205. Lifting and rotating shaft; 206. Synchronous belt drive assembly; 207. Servo motor with brake and motor seat; 208. Eccentric crankshaft adjusting wheel assembly; 209. Positioning pin; 210. Buffer bracket; 211. Stop block; 212. 13. Hydraulic buffer 52. Bracket 52. Tilting table mechanism 221. Lead screw assembly 101. Lead screw support 102. Frame 103. Slide rail 104. Slider 105. Drive motor 106. Coupling 107. Ball screw support seat 108. Ball screw 109. Lead screw nut transmission block 110. Moving plate 111. Hinge seat 222. Tilting table assembly 21. Tilting plate 22. Side plate 23. Bottom support 24. Connecting plate 25. Position sensor 26. Bearing seat 27. Crossbar 28. Push rod 6. Display device body 7. Folding bracket 71. First fixing plate 72. Folding single rod 73. Folding double rod 74. Second fixing plate. Detailed Implementation
[0024] The present invention will be further described below with reference to the embodiments and / or accompanying drawings. Example 1
[0025] like Figure 1-8As shown, a switch cabinet display device with real-time monitoring and early warning includes a cabinet body 1, a leveling component 3, and a multi-angle adjustment component 5. A leveling monitor 2 is installed at the bottom of the cabinet body 1, front, back, left, and right, to monitor the horizontal status of the cabinet body 1 in real time. The leveling component 3 is located at the bottom of the cabinet body 1, and a leveling data transmitter 32, which is communicatively connected to the leveling monitor 2, is installed inside the leveling component 3 to receive monitoring data from the leveling monitor 2. A mounting plate 4 is installed at the front of the cabinet body 1, and a multi-angle adjustment component 5 is installed in front of the mounting plate 4. A display device body 6 is installed in front of the multi-angle adjustment component 5. The display device body 6 is movably connected to the multi-angle adjustment component 5 via a folding bracket 7. The display device body 6 processes data from the leveling data transmitter 32 and controls the operation of the leveling component 3 to ensure stable installation of the cabinet body 1.
[0026] The leveling assembly 3 includes a base 31, inside which a cross brace 33 is provided. Adjusting rods 34 are threadedly installed on both the left and right sides of the cross brace 33. The adjusting rods 34 pass through the lower end of the cross brace 33 and are provided with a support plate 37. A bevel gear power unit 35 is also provided through the lower end of the cross brace 33. The bevel gear power unit 35 is powered by a driver 36. Fasteners 38 for locking the support plate 37 are provided on both the left and right sides of the front of the base 31.
[0027] In this embodiment, when the cabinet structure is installed on an uneven surface, the level monitor continuously monitors the cabinet's level and sends the monitoring data to the level data transmitter. The display device receives and processes the data from the level data transmitter, then activates the driver. The driver, through a bevel gear power unit, drives the adjusting rod, which, in conjunction with the threaded engagement between the adjusting rod and the cross brace, raises and lowers the support plate, adjusting the overall state of the cabinet. This adjustment, combined with the monitoring data from the level monitor, continues until the cabinet structure is stabilized. The support plate is then secured with fasteners, preventing the cabinet from wobbling due to the uneven surface and ensuring stable placement, thus reducing safety hazards. Of course, during use, if the cabinet becomes unbalanced due to various factors, the level monitor continuously monitors the cabinet's level and quickly adjusts it using the leveling components, ensuring stable and reliable placement.
[0028] The folding bracket 7 includes a first fixing plate 71 connected to the display device body 6. Folding single rods 72 are movably installed on both the upper and lower sides of the first fixing plate 71. Folding double rods 73 are movably connected to the free ends of the folding single rods 72. A second fixing plate 74 is movably connected to the free ends of the folding double rods 73. The second fixing plate 74 is connected to the flip plate 21.
[0029] In this embodiment, since the folding double rod and the folding single rod are connected by a folding mechanism, and the folding double rod is movably connected to the second fixed plate and the folding single rod is movably connected to the first fixed plate, the folding state between the folding double rod and the folding single rod can be changed to achieve a fully folded state (the folding single rod is located inside the folding double rod, and the two overlap), a fully unfolded state (the folding single rod and the folding double rod are in a single line, and the two are connected end to end), and a state between the two states (e.g., ...). Figure 8 As shown in the figure, this allows for the extension and retraction adjustment of the display device body according to actual usage needs.
[0030] This invention relates to a switch cabinet display device with real-time monitoring and early warning capabilities. During use, the device uses a level monitor 2 to monitor the horizontal status of the cabinet 1 in all directions. When the cabinet 1 wobbles due to uneven ground caused by various factors, the leveling component 3 controls the raising and lowering of the support plate 37. Once the cabinet structure is stable, fasteners 38 secure the support plate 37, thus placing the cabinet 1 stably on the uneven ground and reducing safety hazards. This invention also utilizes a multi-angle adjustment component 5 to achieve rotation and tilting of the display device body 6. The angle adjustment operation utilizes a 180-degree lifting and rotating mechanism 51 to achieve planar rotation, allowing the display device body 6 to be rotated to a specified position according to usage requirements. A tilt-up tilting mechanism 52 enables multi-angle tilting, allowing the tilt angle to be adjusted to change the angle of the display device body 6 according to usage requirements. The invention also utilizes a folding bracket 7 to achieve telescopic adjustment of the display device body 6, enabling adaptive adjustment according to usage needs. This invention has the advantages of simple and reasonable structure, real-time monitoring and timely adjustment, reduced safety hazards, high safety factor, and convenient and quick adjustment. Example 2
[0031] like Figure 1-8 As shown, a switch cabinet display device with real-time monitoring and early warning includes a cabinet body 1, a leveling component 3, and a multi-angle adjustment component 5. A leveling monitor 2 is installed at the bottom of the cabinet body 1, front, back, left, and right, to monitor the horizontal status of the cabinet body 1 in real time. The leveling component 3 is located at the bottom of the cabinet body 1, and a leveling data transmitter 32, which is communicatively connected to the leveling monitor 2, is installed inside the leveling component 3 to receive monitoring data from the leveling monitor 2. A mounting plate 4 is installed at the front of the cabinet body 1, and a multi-angle adjustment component 5 is installed in front of the mounting plate 4. A display device body 6 is installed in front of the multi-angle adjustment component 5. The display device body 6 is movably connected to the multi-angle adjustment component 5 via a folding bracket 7. The display device body 6 processes data from the leveling data transmitter 32 and controls the operation of the leveling component 3 to ensure stable installation of the cabinet body 1.
[0032] The multi-angle adjustment component 5 includes a 180-degree lifting and rotating mechanism 51 and an elevation tilting platform mechanism 52. The 180-degree lifting and rotating mechanism 51 includes a support plate 11, a rotating component 12, and a bracket 13. The support plate 11 is located in front of the mounting plate 4, the rotating component 12 is located between the support plate 11 and the bracket 13, and the bracket 13 is connected to the elevation tilting platform mechanism 52.
[0033] The rotating assembly 12 includes a base plate 201. Cylinder top plates 202 are provided on both the left and right sides of the base plate 201. An MGPM80-50 type guide rod cylinder 203 is installed inside the cylinder top plates 202. A lifting rotating shaft seat 204 is provided in the middle of the base plate 201. An MDME302GCHM type braked servo motor and motor seat 207 are provided on the upper part of the base plate 201. A lifting rotating shaft 205 is installed inside the lifting rotating shaft seat 204. One end of the lifting rotating shaft 205 is connected to the support plate 11 shaft, and the other end is poweredly connected to the braked servo motor and motor seat 207 through a synchronous belt drive assembly 206.
[0034] Multiple eccentric crankshaft adjusting wheel sets 208 are arranged around the center of the base plate 201 on one side of the base plate 201 relative to the support plate 11. A set of positioning pins 209 are installed at the diagonal of one side of the base plate 201 relative to the support plate 11. A set of buffer brackets 210 are arranged on the outer periphery of the lifting rotating shaft seat 204. A stop block 211 is installed in front of the buffer bracket 210. The stop block 211 is connected to the buffer bracket 210 by an ACA2020-1N type hydraulic buffer 212.
[0035] In this embodiment, the guide rod cylinder is activated, which drives the entire rotating assembly to move closer to the support plate until the eccentric crankshaft adjusting wheel assembly rolls into contact with the support plate and stops. The positioning pin limits the travel of the guide rod cylinder, and the stop block, hydraulic buffer, and buffer bracket work together to ensure a certain buffer space between the rotating assembly and the support plate. Then, the servo motor with brake and motor mount is activated. The servo motor drives the lifting rotating shaft to rotate through the synchronous belt drive assembly, thereby driving the rotating assembly and the entire support plate to rotate relative to the support plate. During the rotation, the eccentric crankshaft adjusting wheel assembly, together with the stop block, hydraulic buffer, and buffer bracket, continuously adjusts the contact between the rotating assembly and the support plate to be within a controllable range. The rolling connection between the eccentric crankshaft adjusting wheel and the support plate makes the rotation of the rotating assembly more stable and reliable, thereby realizing the planar rotation adjustment of the multi-angle adjustment assembly. This allows the display device body to be angled under the action of the 180-degree lifting and rotating mechanism, rotating the display device body to a specified position.
[0036] The tilting platform mechanism 52 includes a lead screw assembly 221 and a tilting platform assembly 222. The lead screw assembly 221 is connected to the 180-degree lifting and rotating mechanism 51, and the tilting platform assembly 222 is connected to the display device body 6 via a folding bracket 7.
[0037] The lead screw assembly 221 includes a lead screw support 101. A frame 102 is provided on one side of the lead screw support 101 relative to the tilting table assembly 222. Slide rails 103 are provided on both the left and right sides of the frame 102. A set of spaced sliders 104 are installed on each slide rail 103. A ball screw 108 is provided in the middle of the frame 102. The upper and lower ends of the ball screw 108 are connected to the frame 102 through FK-25 type ball screw support seats 107.
[0038] An MDME402GCHM type drive motor 105 is installed above the lead screw support 101. A coupling 106 is installed at the output end below the drive motor 105. The coupling 106 is connected to the ball screw 108. A lead screw nut transmission block 109 is installed in the middle of the ball screw 108. A movable plate 110 is fixedly installed in front of the lead screw nut transmission block 109. Both ends of the movable plate 110 are connected to the corresponding sliders 104. A hinge seat 111 is provided in the middle of the front of the movable plate 110.
[0039] The tilting table assembly 222 includes a tilting plate 21, with side plates 22 on both sides of the tilting plate 21. The side plates 22 are connected by a U-shaped base bracket 23. The base bracket 23 is connected to the lower part of the lead screw sub-bracket 101. A set of connecting plates 24 are spaced apart on the upper part of the base bracket 23. A position sensor 25 is provided on one side of the lower connecting plate 24. Bearing seats 26 are provided on the left and right sides of the front of the upper connecting plate 24. The bearing seats 26 are connected by a crossbar 27. A push rod 28 is movably mounted on the crossbar 27. The free end of the push rod 28 is movably connected to the hinge seat 111.
[0040] In this embodiment, the drive motor is started, which drives the ball screw. The ball screw drives the screw nut transmission block to move on the ball screw. When the screw nut transmission block moves, it drives the moving plate to move. Both sides of the moving plate move synchronously on the slide rail through a set of sliders. Since the moving plate is hinged to the push rod through the hinge seat, when the drive motor drives the moving plate to move using the ball screw and the screw nut transmission block, the moving plate will drive the flip plate to flip relative to the screw assembly through the push rod, thereby realizing the tilt angle adjustment of the display device body. The screw assembly of the tilt tilting stage mechanism cooperates with the rotating component of the 180-degree lifting and rotating mechanism to realize the planar rotation and multi-angle flipping function of the display device body, making the adjustment of the display device body simple and flexible, greatly improving practicality and actual use effect.
[0041] This invention relates to a switch cabinet display device with real-time monitoring and early warning capabilities. During use, the device uses a level monitor 2 to monitor the horizontal status of the cabinet 1 in all directions. When the cabinet 1 wobbles due to uneven ground caused by various factors, the leveling component 3 controls the raising and lowering of the support plate 37. Once the cabinet structure is stable, fasteners 38 secure the support plate 37, thus placing the cabinet 1 stably on the uneven ground and reducing safety hazards. This invention also utilizes a multi-angle adjustment component 5 to achieve rotation and tilting of the display device body 6. The angle adjustment operation utilizes a 180-degree lifting and rotating mechanism 51 to achieve planar rotation, allowing the display device body 6 to be rotated to a specified position according to usage requirements. A tilt-up tilting mechanism 52 enables multi-angle tilting, allowing the tilt angle to be adjusted to change the angle of the display device body 6 according to usage requirements. The invention also utilizes a folding bracket 7 to achieve telescopic adjustment of the display device body 6, enabling adaptive adjustment according to usage needs. This invention has the advantages of simple and reasonable structure, real-time monitoring and timely adjustment, reduced safety hazards, high safety factor, and convenient and quick adjustment.
Claims
1. A switchgear display device with real-time monitoring and early warning, comprising a cabinet, a leveling assembly, and a multi-angle adjustment assembly, characterized in that: The cabinet is equipped with leveling devices at the bottom, front, back, left, and right to monitor the levelness of the cabinet in real time. The leveling assembly is located at the bottom of the cabinet and contains a leveling data transmitter that communicates with the leveling devices to receive monitoring data. A mounting plate is located at the front of the cabinet, and a multi-angle adjustment assembly is located in front of the mounting plate. A display device is located in front of the multi-angle adjustment assembly and is movably connected to the multi-angle adjustment assembly via a folding bracket. The display device processes data from the leveling data transmitter and controls the leveling assembly to ensure stable installation of the cabinet.
2. The switchgear display device with real-time monitoring and early warning as described in claim 1, characterized in that: The leveling assembly includes a base, inside which a cross brace is provided. Adjusting rods are threadedly installed on both the left and right sides of the cross brace. A support plate is provided through the lower end of the cross brace, and a bevel gear power unit is provided through the lower end of the cross brace. The bevel gear power unit is connected to the driver. Fasteners for locking the support plate are provided on both the left and right sides of the front of the base.
3. A switchgear display device with real-time monitoring and early warning as described in claim 2, characterized in that: The multi-angle adjustment assembly includes a 180-degree lifting and rotating mechanism and an elevation tilting platform mechanism. The 180-degree lifting and rotating mechanism includes a support plate, a rotating component, and a bracket. The support plate is located in front of the mounting plate, the rotating component is located between the support plate and the bracket, and the bracket is connected to the elevation tilting platform mechanism.
4. A switchgear display device with real-time monitoring and early warning as described in claim 3, characterized in that: The rotating assembly includes a base plate, with cylinder top plates on both the left and right sides of the base plate. MGPM80-50 type guide rod cylinders are installed inside the cylinder top plates. A lifting rotating shaft seat is provided in the middle of the base plate, and an MDME302GCHM type braked servo motor and motor mount are provided on the upper part of the base plate. A lifting rotating shaft is installed inside the lifting rotating shaft seat. One end of the lifting rotating shaft is connected to the support plate shaft, and the other end is poweredly connected to the braked servo motor and motor mount through a synchronous belt drive assembly.
5. A switchgear display device with real-time monitoring and early warning as described in claim 4, characterized in that: Multiple eccentric crankshaft adjusting wheel sets are arranged around the center of the substrate on one side of the substrate relative to the tray. A set of positioning pins is installed at the diagonal of one side of the substrate relative to the tray. A set of buffer brackets is arranged on the outer periphery of the lifting rotating shaft seat. A stop block is installed in front of the buffer bracket. The stop block is connected to the buffer bracket using an ACA2020-1N type hydraulic buffer.
6. A switchgear display device with real-time monitoring and early warning as described in claim 3, characterized in that: The tilting platform mechanism includes a lead screw assembly and a tilting platform assembly. The lead screw assembly is connected to a 180-degree lifting and rotating mechanism, and the tilting platform assembly is connected to the display device body via a folding bracket.
7. A switchgear display device with real-time monitoring and early warning as described in claim 6, characterized in that: The lead screw assembly includes a lead screw support bracket. A frame is provided on one side of the lead screw support bracket relative to the tilting table assembly. Slide rails are provided on both the left and right sides of the frame, and a set of spaced sliders are installed on each slide rail. A ball screw is provided in the middle of the frame, and the upper and lower ends of the ball screw are connected to the frame through FK-25 type ball screw support seats.
8. A switchgear display device with real-time monitoring and early warning as described in claim 7, characterized in that: An MDME402GCHM type drive motor is installed above the lead screw support. A coupling is installed at the output end below the drive motor. The coupling is connected to the ball screw. A lead screw nut transmission block is installed in the middle of the ball screw. A movable plate is fixedly installed in front of the lead screw nut transmission block. Both ends of the movable plate are connected to corresponding sliders. A hinge seat is provided in the middle of the front of the movable plate.
9. A switchgear display device with real-time monitoring and early warning as described in claim 6, characterized in that: The tilting table assembly includes a tilting plate, with side plates on both sides of the tilting plate. The side plates are connected by a U-shaped base bracket. The base bracket is connected to the lower part of the lead screw sub-bracket. A set of connecting plates is spaced apart on the upper part of the base bracket. A position sensor is provided on one side of the lower connecting plate. Bearing seats are provided on the left and right sides of the front of the upper connecting plate. The bearing seats are connected by a crossbar. A push rod is movably mounted on the crossbar. The free end of the push rod is movably connected to the hinge seat.
10. A switchgear display device with real-time monitoring and early warning as described in claim 1, characterized in that: The folding bracket includes a first fixing plate connected to the display device body. Folding single rods are movably installed on both the upper and lower sides of the first fixing plate. Folding double rods are movably connected to the free ends of the folding single rods. A second fixing plate is movably connected to the free ends of the folding double rods. The second fixing plate is connected to the flip plate.