A highly secure power manager

By introducing a protective box and sliders, racks, gears and other structures into the power manager, the power manager can be easily disassembled and cleaned, solving the problems of damage to the wall and dust blockage during disassembly and assembly, and improving safety and heat dissipation efficiency.

CN114614654BActive Publication Date: 2025-09-05MATRIX POWER TECH (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202210402021.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-18
Publication Date
2025-09-05
Estimated Expiration
2042-04-18

AI Technical Summary

Technical Problem

Existing power managers are prone to damaging the wall during assembly and disassembly, the filter is easily clogged with dust, affecting heat dissipation, and are inconvenient to store, resulting in reduced safety.

Method used

A power manager is designed, which includes a protective box and a slidably connected slider, rack, gear, connecting rod and other structures. The filter is cleaned by a cleaning brush driven by a motor, and easy disassembly and storage are achieved by using threaded rods and connecting rods.

Benefits of technology

It effectively prevents dust from clogging the filter and affecting heat dissipation, simplifies the disassembly and assembly process of the power manager, and improves safety and ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a power manager with high security, comprising a protective box, wherein a slider is slidably connected to the middle of the right end face of the inner wall of the protective box through a slide groove, the left end face of the slider is fixedly connected to a placement plate, the upper end face of the placement plate is placed on the power manager, the rear side of the left end face of the placement plate is rotatably connected to an upper connecting rod and a lower connecting rod respectively through a pin shaft, the upper ends of the upper connecting rod and the lower connecting rod are both rotatably connected to a cover plate through a pin shaft, the front end face of the cover plate is slidably connected to the protective box, and filters are provided on both sides of the power manager. The present invention relates to the technical field of power managers. The highly secure power manager solves the problems of frequent disassembly and assembly of the power manager with the wall causing damage to the wall, dust clogging the filter screen affecting the heat dissipation efficiency, and the inconvenience of storing the power manager to increase safety.
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Description

Technical Field

[0001] The present invention relates to the technical field of power supply managers, and in particular to a power supply manager with strong security. Background Art

[0002] The power manager is a programmable switch module used in control systems. A power manager panel is usually installed on the power manager to install components and serve as a decoration.

[0003] Existing power managers are usually fixed to the wall with bolts when installed. Frequent disassembly will cause damage to the wall, making it inconvenient to easily disassemble and assemble the power manager. After long-term use, a large amount of dust will be blocked on the filter surface of the power manager, making it inconvenient to clean the blocked dust, thereby affecting the heat dissipation efficiency. In addition, it is inconvenient to use or store the power manager to improve the safety of the power manager. Summary of the Invention

[0004] (1) Technical problems solved

[0005] In response to the deficiencies in the prior art, the present invention provides a highly secure power manager that solves the problems of frequent disassembly and assembly of the power manager with the wall causing damage to the wall, dust clogging the filter and affecting heat dissipation efficiency, and the inconvenience of storing the power manager to increase safety.

[0006] (2) Technical solution

[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: a power manager with strong safety, including a protective box, a slider is slidably connected to the middle of the right end face of the inner wall of the protective box through a sliding groove, the left end face of the slider is fixedly connected to a placement plate, the power manager is placed on the upper end face of the placement plate, the rear side of the left end face of the placement plate is rotatably connected to the upper connecting rod and the lower connecting rod through a pin shaft, the upper ends of the upper connecting rod and the lower connecting rod are rotatably connected to a cover plate through a pin shaft, the front end face of the cover plate is slidably connected to the protective box, and filters are provided on the left and right sides of the power manager.

[0008] Preferably, the upper side of the front end surface of the power manager is slidably connected to a second rack through a reciprocating groove, the middle part of the lower side of the front end surface of the power manager is fixedly connected to a motor, and the output end of the motor is fixedly connected to a rotating block through a first rotating shaft.

[0009] Preferably, the lower side of the front end surface of the rotating block is slidably connected to a groove block via a first sliding column, the upper end surface of the groove block is fixedly connected to the second rack, and the second rack is meshedly connected to the second gear.

[0010] Preferably, the middle part of the second gear is rotatably connected to a support plate via a second rotating shaft, the rear end face of the support plate is fixedly connected to the power manager, the lower end face of the second rotating shaft is fixedly connected to a reciprocating rod, and the left and right sides of the reciprocating rod are slidably connected to a moving rod via a second sliding column.

[0011] Preferably, the movable rod is slidably connected to a limiting block, the limiting block is fixedly connected to the power manager, the rear end surface of the movable rod is fixedly connected to a cleaning brush, and the cleaning brush is slidably connected to the filter.

[0012] Preferably, the lower middle ends of the left and right end surfaces of the power manager are fixedly connected to plug-in blocks, the middle of the lower end surface of the placement plate is rotatably connected to a second threaded rod, the second threaded rod is threadedly connected to a lifting rod, and the lifting rod is slidably connected to the placement plate through a limit column.

[0013] Preferably, the upper parts of the rear end surfaces on both sides of the lifting rod are slidably connected to clamping blocks through fourth sliding columns, and the clamping blocks are rotatably connected to rectangular blocks through pin shafts, and the lower end surfaces of the rectangular blocks are fixedly connected to the placement plate.

[0014] Preferably, the front side of the left end face of the placement plate is slidably connected to a slide rod through a third slide column, the lower side of the right end face of the slide rod is rotatably connected to the protective box through a third rotating shaft, the right end face of the third rotating shaft is fixedly connected to the first gear, the first gear is meshed with the first rack, the left end face of the first rack is slidably connected to the protective box, the middle part of the first rack is threadedly connected to the first threaded rod, and the first threaded rod is rotatably connected to the protective box.

[0015] Preferably, the power manager (8) adopts high-frequency conversion and isolation technology for AC input to DC output, and can withstand a withstand voltage of 3kV.

[0016] Beneficial effects

[0017] The present invention provides a highly secure power manager with the following beneficial effects:

[0018] (1) The power manager with high safety is driven by a starting motor to rotate the first slide column, which drives the groove block to move back and forth. The second rack drives the second gear to rotate forward and backward, causing the reciprocating rod to rotate back and forth. The second slide column drives the moving rod to slide inside the limit block, causing the cleaning brush to move back and forth to clean the filter surface, thereby preventing dust from clogging the filter and affecting the heat dissipation efficiency of the power manager. The protective box is fixed to the wall by the threaded block, and then the power manager is placed on the upper end of the placement plate. The second threaded rod is then rotated to drive the lifting rod to rise. The fourth slide column drives the pressing block to rotate, so that the pressing block is inserted into the inside of the plug-in block to complete the fixation, thereby making it easier to disassemble the power manager and avoiding frequent connection with the wall and damage to the wall.

[0019] (2) The power manager with strong safety drives the first rack to move by rotating the first threaded rod, the first rack drives the first gear to rotate, the first gear drives the third shaft to rotate, and the third shaft drives the placement plate to move through the slide rod and the third slide column. When the placement plate moves, it drives the upper connecting rod and the lower connecting rod to rotate, and opens the protective box, so that it is more convenient to protect and store the power manager, thereby improving the safety of the power manager. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of a partial cross-section of the three-dimensional structure of the protection box of the present invention;

[0021] Figure 2 For the present invention Figure 1 Schematic diagram of the enlarged structure of area A in the middle;

[0022] Figure 3 It is a partial cross-sectional and partial three-dimensional structural diagram of the protection box of the present invention;

[0023] Figure 4 For the present invention Figure 3 Schematic diagram of the structure of the enlarged area B in the middle;

[0024] Figure 5 It is a schematic diagram of the three-dimensional structure of the present invention.

[0025] In the figure: 1. protective box; 2. cover plate; 3. threaded block; 4. first gear; 5. support block; 6. first rack; 7. first threaded rod; 8. power manager; 9. motor; 10. first rotating shaft; 11. rotating block; 12. first slide post; 13. groove block; 14. second rack; 15. support plate; 16. second gear; 17. second rotating shaft; 18. reciprocating rod; 19. second slide post; 20. moving rod; 21. limit block; 22. cleaning brush; 23. slide rod; 24. third slide post; 25. placement plate; 26. fourth slide post; 27. upper connecting rod; 28. lower connecting rod; 29. ​​slide; 30. slider; 31. third rotating shaft; 32. lifting rod; 33. second threaded rod; 34. limit post; 35. rectangular block; 36. pressing block; 37. plug-in block; 38. filter screen; 39. reciprocating groove DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0027] See also Figure 1-5 , the present invention provides a technical solution:

[0028] Example 1: A highly secure power manager includes a protective case 1. A slider 30 is slidably connected to the middle portion of the right end surface of the inner wall of the protective case 1 via a slot 29. A placement plate 25 is fixedly connected to the left end surface of the slider 30. A power manager 8 is placed on the upper end surface of the placement plate 25. An upper connecting rod 27 and a lower connecting rod 28 are pivotally connected to the rear side of the left end surface of the placement plate 25 via pins. The upper ends of the upper and lower connecting rods 27 and 28 are pivotally connected to a cover plate 2 via pins. The front end surface of the cover plate 2 is slidably connected to the protective case 1. Filters 38 are provided on both sides of the power manager 8. A second rack 14 is slidably connected to the upper portion of the front end surface of the power manager 8 via a reciprocating slot 39. A motor 9 is fixedly connected to the middle portion of the lower portion of the front end surface of the power manager 8. The output end of the motor 9 is fixedly connected to a rotating block 11 via a first rotating shaft 10. The front end of the rotating block 11 is slidably connected to a groove block 13 via a first slide post 12. The upper end of the groove block 13 is fixedly connected to a second rack 14, which is meshed with a second gear 16. The middle portion of the second gear 16 is rotatably connected to a support plate 15 via a second rotating shaft 17. The rear end of the support plate 15 is fixedly connected to the power supply manager 8. The lower end of the second rotating shaft 17 is fixedly connected to a reciprocating rod 18. The left and right sides of the reciprocating rod 18 are slidably connected to a moving rod 20 via second slide posts 19. The moving rod 20 is slidably connected to a limit block 21, which is fixedly connected to the power supply manager 8. The rear end of the moving rod 20 is fixedly connected to a cleaning brush 22, which is slidably connected to a filter 38. By starting the motor 9, the first slide 12 is driven to rotate, the first slide 12 drives the groove block 13 to move back and forth, the second rack 14 drives the second gear 16 to rotate back and forth, so that the reciprocating rod 18 rotates back and forth, and the second slide 19 drives the moving rod 20 to slide inside the limit block 21, so that the cleaning brush 22 moves back and forth to clean the surface of the filter 38, thereby preventing dust from clogging the filter and affecting the heat dissipation efficiency of the power manager 8.

[0029] Example 2: This embodiment differs from Example 1 in that a plug-in block 37 is fixedly connected to the lower middle end of each of the left and right end surfaces of the power manager 8. A second threaded rod 33 is rotatably connected to the middle of the lower end surface of the placement plate 25. The second threaded rod 33 is threadably connected to a lifting rod 32. The lifting rod 32 is slidably connected to the placement plate 25 via a limiting post 34. A clamping block 36 is slidably connected to the upper rear end surfaces of the left and right lifting rods 32 via a fourth sliding post 26. The clamping block 36 is rotatably connected to a rectangular block 35 via a pin. The lower end surface of the rectangular block 35 is fixedly connected to the placement plate 25. The protective box 1 is secured to the wall using the threaded blocks 3. The power manager 8 is then placed on the upper end surface of the placement plate 25. The second threaded rod 33 is then rotated to raise the lifting rod 32. The fourth sliding post 26 then rotates the clamping block 36, causing it to insert into the plug-in block 37 and secure it. This makes it easier to remove the power manager 8 and avoids damage to the wall caused by frequent connection. The front left end face of the placement plate 25 is slidably connected to the guide rod 23 via a third slide post 24. The lower right end face of the guide rod 23 is rotatably connected to the protective box 1 via a third shaft 31. The right end face of the third shaft 31 is fixedly connected to the first gear 4, which is meshed with the first rack 6. The left end face of the first rack 6 is slidably connected to the protective box 1. The middle portion of the first rack 6 is threadedly connected to the first threaded rod 7, and the front end face of the first threaded rod 7 is rotatably connected to the protective box 1 via a support block 5. Rotation of the first threaded rod 7 drives the first rack 6 to move, which in turn drives the first gear 4 to rotate, which in turn drives the third shaft 31 to rotate. The third shaft 31 drives the placement plate 25 to move via the guide rod 23 and the third slide post 24. As the placement plate 25 moves, it also drives the upper connecting rod 27 and the lower connecting rod 28 to rotate, opening the protective box 1. This facilitates the protective storage of the power manager 8 and improves the safety of the power manager 8.

[0030] During operation, when the surface of the filter 38 is clogged, the motor 9 can be started to drive the first slide post 12 to rotate, the first slide post 12 drives the groove block 13 to move back and forth, the second rack 14 drives the second gear 16 to rotate forward and backward, so that the reciprocating rod 18 rotates back and forth, and the second slide post 19 drives the moving rod 20 to slide inside the limit block 21, so that the cleaning brush 22 moves back and forth to clean the surface of the filter 38, the protective box 1 is fixed to the wall through the threaded block 3, and then the power manager 8 is placed on the upper end surface of the placement plate 25, and then Rotate the second threaded rod 33 to drive the lifting rod 32 to rise, and the fourth slide column 26 drives the clamping block 36 to rotate, so that the clamping block 36 is inserted into the inner side of the plug-in block 37 to complete the fixation, and then rotate the first threaded rod 7 to drive the first rack 6 to move, the first rack 6 drives the first gear 4 to rotate, and the first gear 4 drives the third rotating shaft 31 to rotate. The third rotating shaft 31 drives the placement plate 25 to move through the slide rod 23 and the third slide column 24. When the placement plate 25 moves, it drives the upper connecting rod 27 and the lower connecting rod 28 to rotate, and the protective box 1 is opened for use or storage. The entire device is driven by a starting motor 9 to rotate the first slide 12, which in turn drives the groove block 13 to reciprocate left and right. The second rack 14 drives the second gear 16 to rotate forward and reverse, causing the reciprocating rod 18 to reciprocate. The second slide 19 drives the moving rod 20 to slide inside the limit block 21, causing the cleaning brush 22 to reciprocate back and forth to clean the surface of the filter 38, thereby preventing dust from clogging the filter and affecting the heat dissipation efficiency of the power manager 8. The protective box 1 is fixed to the wall using the threaded block 3. The power manager 8 is then placed on the upper end surface of the placement plate 25. The second threaded rod 33 is then rotated to drive the lifting rod 32 upward. The fourth slide 26 drives the pressing block 36 to rotate, inserting the pressing block 36 into the plug-in block 37 to secure it. This makes it easier to disassemble the power manager 8 and avoids damage to the wall caused by frequent connection. By rotating the first threaded rod 7, the first rack 6 is driven to move, the first rack 6 drives the first gear 4 to rotate, the first gear 4 drives the third shaft 31 to rotate, and the third shaft 31 drives the placement plate 25 to move through the slide rod 23 and the third slide column 24. When the placement plate 25 moves, it drives the upper connecting rod 27 and the lower connecting rod 28 to rotate, opening the protective box 1, making it easier to protect and store the power manager 8, thereby improving the safety of the power manager 8.

[0031] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.

Claims

1. A power manager with strong security, comprising a protective box (1), characterized in that: The middle part of the right end face of the inner cavity wall of the protection box (1) is slidably connected to a slider (30) through a slide groove (29), the left end face of the slider (30) is fixedly connected to a placement plate (25), the upper end face of the placement plate (25) is placed with a power manager (8), the rear side of the left end face of the placement plate (25) is rotatably connected to an upper connecting rod (27) and a lower connecting rod (28) through a pin shaft, the upper ends of the upper connecting rod (27) and the lower connecting rod (28) are rotatably connected to a cover plate (2) through a pin shaft, the front end face of the cover plate (2) is slidably connected to the protection box (1), and the left and right sides of the power manager (8) are provided with filter screens (38); The upper side of the front end surface of the power manager (8) is slidably connected to a second rack (14) through a reciprocating groove (39); the middle part of the lower side of the front end surface of the power manager (8) is fixedly connected to a motor (9); the output end of the motor (9) is fixedly connected to a rotating block (11) through a first rotating shaft (10); the lower side of the front end surface of the rotating block (11) is slidably connected to a groove block (13) through a first sliding column (12); the upper end surface of the groove block (13) is fixedly connected to the second rack (14), and the second rack (14) is meshedly connected to the second gear (16); the middle part of the second gear (16) is fixedly connected to the second rotating shaft (10). The shaft (17) is rotatably connected to a support plate (15), the rear end face of the support plate (15) is fixedly connected to the power manager (8), the lower end face of the second rotating shaft (17) is fixedly connected to a reciprocating rod (18), and the left and right sides of the reciprocating rod (18) are slidably connected to a moving rod (20) through a second sliding column (19); the moving rod (20) is slidably connected to a limiting block (21), and the limiting block (21) is fixedly connected to the power manager (8); the rear end face of the moving rod (20) is fixedly connected to a cleaning brush (22), and the cleaning brush (22) is slidably connected to the filter (38); The lower ends of the middle portions of the left and right end surfaces of the power manager (8) are fixedly connected with plug-in blocks (37); the middle portion of the lower end surface of the placement plate (25) is rotatably connected with a second threaded rod (33); the second threaded rod (33) is threadedly connected with a lifting rod (32); the lifting rod (32) is slidably connected with the placement plate (25) through a limiting column (34); the upper portions of the rear end surfaces on both sides of the lifting rod (32) are slidably connected with a pressing block (36) through a fourth sliding column (26); the pressing block (36) is rotatably connected with a rectangular block (35) through a pin shaft; the lower end surface of the rectangular block (35) is fixedly connected with the placement plate (25); The front side of the left end face of the placement plate (25) is slidably connected to a slide rod (23) through a third slide column (24), and the lower side of the right end face of the slide rod (23) is rotatably connected to the protection box (1) through a third rotating shaft (31). The right end face of the third rotating shaft (31) is fixedly connected to a first gear (4), and the first gear (4) is meshedly connected to a first rack (6). The left end face of the first rack (6) is slidably connected to the protection box (1), and the middle part of the first rack (6) is threadedly connected to a first threaded rod (7), and the front end face of the first threaded rod (7) is rotatably connected to the protection box (1) through a support block (5).

2. The highly secure power manager according to claim 1, wherein: The power supply manager (8) adopts high-frequency conversion and isolation technology for AC input to DC output, and can withstand 3kV withstand voltage.

Citation Information

Patent Citations

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