Intelligent power node controller for AI

By using the first driving member to drive the support in the power node controller, the cover body is automatically closed, which solves the problem that the cover body of the traditional power node controller lacks the automatic closing function, and improves the safety and stability of the equipment.

CN222884909UActive Publication Date: 2025-05-16ZHONGSHEN NINGBO ELECTRIC POWER TECH CO LTD
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Patent Information

Application Number
CN202421260619.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-04
Publication Date
2025-05-16
Estimated Expiration
2034-06-04

AI Technical Summary

Technical Problem

The cover of the traditional power node controller lacks the automatic closing function, which causes anyone to operate the power node controller at will, bringing potential safety risks.

Method used

The first driving member drives the support member to close the cover body with respect to the housing, realizing automatic closing of the power node controller.

Benefits of technology

It effectively improves the safety and stability of the power node controller, prevents others from operating at will, thereby reducing safety hazards.

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Abstract

The utility model provides an AI intelligent electric power node controller comprising a housing, an installation space is formed in the housing, the housing is internally provided with a cut-out switch, and the cut-out switch is arranged in the installation space; the cover body is movably connected to the shell, and the cover body can be opened or closed relative to the shell; one end of the supporting piece is connected with the shell, and the other end is connected with the cover body; when the cover body moves relative to the shell, the supporting piece can support the cover body to be suspended at any position; the first driving piece is connected with the supporting piece; the first driving piece can drive the supporting piece, so that the cover body is closed relative to the shell. The electric power node controller solves the technical problem that potential safety hazards are caused by the fact that the cover body of a traditional electric power node controller lacks an automatic closing function, so that anyone can operate the electric power node controller at will, and the supporting piece is driven by the first driving piece to enable the cover body to be closed relative to the shell. Automatic closing of the power node controller is achieved, and the technical effect of improving the safety of the power node controller is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of switch contact operating mechanisms, and in particular to an AI intelligent power node controller. Background Art

[0002] With the continuous progress and development of science and technology, our lives are becoming more and more automated and intelligent. In the field of power safety, the power node controller, as a key device, plays a vital role. It can quickly cut off the power supply when a circuit fails to ensure the safety of the place of use. However, there is a defect in the traditional power node controller cover, that is, the lack of automatic closing function, which means that anyone can operate the power node controller at will, which brings potential safety hazards.

[0003] The problem is that the traditional power node controller cover lacks an automatic closing function, allowing anyone to operate the power node controller at will, which will bring potential safety hazards. Utility Model Content

[0004] The utility model solves the technical problem that the traditional power node controller cover lacks the automatic closing function, allowing anyone to operate the power node controller at will, which will bring potential safety hazards. The first drive member drives the support member to close the cover relative to the shell, thereby realizing the automatic closing of the power node controller and achieving the technical effect of improving the safety of the power node controller.

[0005] In order to solve the above problems, the utility model provides an AI intelligent power node controller, including: a shell, an installation space is formed inside the shell, a circuit breaker is arranged in the shell, and the circuit breaker is placed in the installation space; a cover body, the cover body is movably connected to the shell, and the cover body can be opened or closed relative to the shell; a support member, one end of the support member is connected to the shell, and the other end is connected to the cover body; when the cover body moves relative to the shell, the support member can support the cover body to remain suspended at any position; a first drive member, the first drive member is connected to the support member; wherein the first drive member can drive the support member to close the cover body relative to the shell.

[0006] Compared with the prior art, the technical effect achieved by adopting this technical solution is that one end of the support member is movably connected to the shell, and the other end is movably connected to the cover body, so that the shell can effectively support the cover body, thereby achieving the effect of enabling the cover body to remain suspended at any angle. In addition, the first driving member drives the support member so that the cover body can automatically close relative to the shell, so that other people cannot operate the power node controller at will, which effectively improves the safety and stability of the power node controller.

[0007] In one example of the utility model, the power node controller further includes a locking device, which is disposed in a cover; when the cover is closed relative to the shell, the locking device can lock the shell and the cover to limit movement of the cover relative to the shell.

[0008] Compared with the prior art, the technical effect achieved by adopting this technical solution is: by installing a locking device in the power node controller, the cover body and the shell are locked when the cover body is closed relative to the shell, which effectively prevents the power node controller from being accidentally opened or moved, thereby improving the safety of the power node controller.

[0009] In one example of the utility model, the power node controller also includes a magnetic control device, which can monitor the opening and closing status of the cover and the shell; wherein the magnetic control device includes a magnetic sensor and a magnetic strip, the magnetic sensor is installed in the installation space, and the magnetic strip is installed on the cover.

[0010] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: by installing a magnetic strip in the cover body and a magnetic sensor in the shell, effective detection of the opening and closing state of the cover body and the shell is achieved, and the magnetic sensor can detect the magnetic strip only when the shell and the cover body are closed; and, by detecting the opening and closing state of the cover body and the shell, the normal operation of the locking device is guaranteed, and the locking device will lock the cover body and the shell only after the magnetic sensor detects the magnetic strip, thereby increasing the accuracy and stability of the locking function of the power node controller.

[0011] In one example of the utility model, the shell also includes a locking hole, which is placed in the installation space; the locking device includes a locking assembly and a second driving member, wherein the second driving member can drive the locking assembly to move away from the second driving member so that the locking assembly is inserted into the locking hole or drive the locking assembly to move toward the second driving member so that the locking assembly leaves the locking hole.

[0012] Compared with the prior art, the technical effect achieved by adopting this technical solution is that the locking assembly is controlled by the second driving member to insert or leave the locking hole, thereby effectively realizing the activity restriction of the housing and the cover by the locking device. In addition, the cooperation between the locking assembly and the second driving member reduces the operation complexity of the locking device.

[0013] In one embodiment of the present invention, the locking assembly includes: a plurality of locking tongues; a connecting member, wherein the plurality of locking tongues are mounted on one end of the connecting member; and a rack portion, wherein the rack portion is disposed on the other end of the connecting member.

[0014] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: by connecting several lock tongues through a connecting piece, the coordinated control of several lock tongues is effectively realized, and by arranging a rack part at the other end of the connecting piece, the movement of the rack part can be controlled to drive several lock tongues to move together, thereby increasing the stability of the locking assembly.

[0015] In one example of the utility model, the second driving member includes a gear and a motor; wherein the gear is arranged corresponding to the rack portion, and the rotation of the motor will drive the gear to rotate, so that the rack portion moves in a direction close to or away from the motor.

[0016] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: the rotation of the motor will drive the gear to rotate, and the gear is arranged corresponding to the rack part. When the gear rotates with the motor, the rotation of the gear in the rack part will drive the rack part to drive the lock tongue to move, thereby realizing the locking of the lock tongue to the shell.

[0017] In one example of the utility model, the support member includes: a support rod, one end of which is movably connected to the cover body; a sliding track, which is arranged on the shell; a sliding block, which is placed in the sliding track and the other end of the support rod is movably connected to the sliding block, wherein when the sliding block moves relative to the sliding track, it can drive the support rod to move; a positioning member, which is installed on the shell, the support rod is in contact with the positioning member, and the positioning member can fix the support rod to make the cover body hover.

[0018] Compared with the prior art, the technical effect achieved by adopting this technical solution is: the support rod is movably connected to the shell and the cover respectively, so that the shell supports the cover movement, and by setting a sliding track on the shell and connecting the support rod to the sliding block in the sliding track, the support rod effectively follows the cover movement. At the same time, the positioning of the support rod by the positioning member enables the cover to remain suspended at any position, which improves the convenience and flexibility of the power node controller.

[0019] In an example of the present invention, the positioning member includes a spring member and a positioning column, one end of the spring member is connected to the positioning column, and the other end is connected to the housing; wherein the positioning column is clamped to the support rod.

[0020] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: the positioning member composed of a spring member and a positioning column effectively realizes the fixing function of the support rod. At the same time, the setting of the spring member also makes the fixing relationship between the positioning column and the support rod adjustable, thereby increasing the flexibility of the positioning member.

[0021] In one example of the present invention, the power node controller further includes a temperature sensor, which is installed in the housing and can monitor the temperature of the terminals in the circuit breaker.

[0022] Compared with the prior art, the technical effect achieved by adopting this technical solution is as follows: by setting a temperature sensor in the power node controller, the terminal temperature in the circuit breaker is effectively measured, thereby improving the safety of the power node controller.

[0023] In one example of the utility model, the circuit breaker includes a display screen and a push button, and pressing the push button can control the disconnection or connection of the power node controller; wherein the disconnection state of the power node controller and the temperature of the terminal are displayed through the display screen.

[0024] Compared with the existing technology, the technical effect achieved by adopting this technical solution is: pressing a key to control the disconnection or connection of the power node controller effectively reduces the operation complexity of the power node controller. At the same time, the setting of the display screen makes the current working status of the power node controller clearer and more intuitive. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 A schematic diagram of a structure of an AI intelligent power node controller provided in an embodiment of the utility model Figure 1 ;

[0026] Figure 2 A schematic diagram of a structure of an AI intelligent power node controller provided in an embodiment of the utility model Figure 2 ;

[0027] Figure 3 A schematic diagram of a structure of an AI intelligent power node controller provided in an embodiment of the utility model Figure 3 ;

[0028] Figure 4 A schematic diagram of a structure of an AI intelligent power node controller provided in an embodiment of the utility model Figure 4 .

[0029] Description of reference numerals:

[0030] 10-housing; 11-installation space; 12-circuit breaker; 121-display screen; 122-button; 13-locking hole; 20-cover; 30-support member; 31-support rod; 32-sliding track; 33-sliding block; 34-positioning member; 341-spring member; 342-positioning column; 40-first driving member; 50-locking device; 51-locking assembly; 511-lock tongue; 512-connecting member; 513-rack portion; 52-second driving member; 521-gear; 522-motor; 60-magnetic control device; 61-magnetic sensor; 62-magnetic strip; 70-temperature sensor. DETAILED DESCRIPTION

[0031] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and understandable, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0032] See also Figures 1 to 4 The present embodiment provides an AI intelligent power node controller, comprising: a shell 10, an installation space 11 is formed inside the shell 10, a circuit breaker 12 is arranged inside the shell 10, and the circuit breaker 12 is placed in the installation space 11; a cover 20, the cover 20 is movably connected to the shell 10, and the cover 20 can be opened or closed relative to the shell 10; a support member 30, one end of the support member 30 is connected to the shell 10, and the other end is connected to the cover 20; when the cover 20 moves relative to the shell 10, the support member 30 can support the cover 20 to remain suspended at any position; a first driving member 40, the first driving member 40 is connected to the support member 30; wherein the first driving member 40 can drive the support member 30 to close the cover 20 relative to the shell 10.

[0033] Specifically, in this embodiment, the cover 20 is partially transparent, and when the cover 20 and the housing 10 are in a closed state, the operating state of the circuit breaker can also be seen. In addition, a network module and a control module are installed in the power node controller. The power node controller of this embodiment can control the first drive member 40 to close the cover 20 relative to the housing 10 by receiving remote instructions. The first drive member 40 is a motor, and the first drive member 40 and the support member 30 are connected by a traction rope, and the rotation of the motor can pull the traction rope.

[0034] Furthermore, the power node controller also includes a locking device 50, which is placed in the cover body 20; when the cover body 20 is closed relative to the shell 10, the locking device 50 can lock the shell 10 and the cover body 20 to limit the movement of the cover body 20 relative to the shell 10.

[0035] Specifically, the locking device 50 locks the cover 20 and the housing 10 only when it is determined that the cover 20 is closed relative to the housing 10 , so that the cover 20 cannot continue to move relative to the housing 10 .

[0036] Furthermore, the power node controller also includes a magnetic control device 60, which can monitor the opening and closing status of the cover body 20 and the shell 10; wherein the magnetic control device 60 includes a magnetic sensor 61 and a magnetic strip 62, the magnetic sensor 61 is installed in the installation space 11, and the magnetic strip 62 is installed in the cover body 20.

[0037] Specifically, a notch is provided on the housing 10, and a convex portion is correspondingly provided on the cover 20. When the cover 20 is closed relative to the housing 10, the convex portion is embedded in the notch. A magnetic strip 62 is provided on the convex portion, and a magnetic sensor 61 is provided inside the notch. When the cover 20 is closed relative to the housing 10, the magnetic sensor 61 can sense the magnetic strip 62, and the magnetic sensor 61 will feedback to the control module that the cover 20 and the housing 10 are in a closed state.

[0038] Furthermore, the shell 10 also includes a locking hole 13, which is disposed in the installation space 11; the locking device 50 includes a locking component 51 and a second driving component 52, wherein the second driving component 52 can drive the locking component 51 to move away from the second driving component 52, so that the locking component 51 is inserted into the locking hole 13, or drive the locking component 51 to move toward the second driving component 52, so that the locking component 51 leaves the locking hole 13.

[0039] Specifically, there are four locking holes 13, which are arranged in the installation space 11. The second driving member 52 can drive the locking assembly 51 to partially leave the cover body 20 and insert into the locking hole 13. Through the combination of the locking assembly 51 and the locking hole 13, the locking between the cover body 20 and the housing 10 is effectively achieved, so that the cover body 20 can no longer move relative to the housing 10. When the second driving member 52 drives the locking assembly 51 to leave the locking hole 13 and return to the cover body 20, the locking contact between the cover body 20 and the housing 10 is achieved, and the cover body 20 can continue to move relative to the housing 10.

[0040] Furthermore, the locking assembly 51 includes: a plurality of locking tongues 511 ; a connecting member 512 , wherein the plurality of locking tongues 511 are mounted on one end of the connecting member 512 ; and a rack portion 513 , wherein the rack portion 513 is disposed on the other end of the connecting member 512 .

[0041] Specifically, in this embodiment, the number of the locking tongues 511 corresponds to the number of the locking holes 13, so there are four locking tongues 511. Two locking tongues 511 are fixed on a connecting member 512. In this embodiment, there are two connecting members 512, which are respectively arranged on both sides of the second driving member 52. Among them, the rack portion 513 is arranged on the side of the connecting member 512 away from the locking tongue 511.

[0042] Furthermore, the second driving member 52 includes a gear 521 and a motor 522 ; wherein the gear 521 is arranged corresponding to the rack portion 513 , and the rotation of the motor 522 will drive the gear 521 to rotate, so that the rack portion 513 moves in a direction close to or away from the motor 522 .

[0043] Specifically, the motor 522 is a double-ended motor, each end of which is connected to a connecting piece 512 , and a gear 521 is provided at each end of the motor 522 , and the gear 521 is correspondingly arranged in the rack portion 513 , and when the gear 521 rotates, the rack portion 513 can be moved closer to or away from the motor 522 .

[0044] Furthermore, the support member 30 includes: a support rod 31, one end of the support rod 31 is movably connected to the cover body 20; a sliding track 32, the sliding track 32 is arranged on the shell 10; a sliding block 33, the sliding block 33 is placed in the sliding track 32, and the other end of the support rod 31 is movably connected to the sliding block 33, wherein when the sliding block 33 moves relative to the sliding track 32, it can drive the support rod 31 to move; a positioning member 34, the positioning member 34 is installed on the shell 10, the support rod 31 is in contact with the positioning member 34, and the positioning member 34 can fix the support rod 31 to make the cover body 20 hover.

[0045] Specifically, the sliding block 33 can slide relative to the sliding track 32. One end of the support rod 31 is connected to the cover body 20 through a movable shaft, and the other end is connected to the sliding block 33 through a movable shaft. When the cover body 20 moves relative to the shell 10, the cover body 20 and the shell 10 form different angles, and the sliding block 33 is also at different positions in the sliding track 32. A wave-shaped protrusion is provided at the position where the support rod 31 and the positioning member 34 are in active contact. When the positioning member 34 is against the depression, the support rod 31 can be temporarily fixed. However, when the operator moves the position of the cover body 20 with force, the positioning member 34 can leave the depression where it is positioned and enter another depression, so that the cover body 20 can be suspended at any position relative to the shell 10.

[0046] Furthermore, the positioning member 34 includes a spring member 341 and a positioning column 342 , one end of the spring member 341 is connected to the positioning column 342 , and the other end is connected to the housing 10 ; wherein the positioning column 342 is clamped to the support rod 31 .

[0047] Specifically, one end of the spring member 341 is connected to the shell 10, and the other end is connected to the positioning column 342. The positioning column 342 is clamped in the recess of the support rod 31 to fix the support rod 31. When the force of the movement of the support rod 31 is sufficient to make the positioning column 342 compress the spring member 341, the cover body 20 can continue to move relative to the shell 10.

[0048] Furthermore, the power node controller also includes a temperature sensor 70 , which is installed in the housing 10 . The temperature sensor 70 can monitor the temperature of the terminals in the circuit breaker 12 .

[0049] Specifically, the temperature sensor 70 corresponds to the terminal setting in the circuit breaker 12, and can detect the temperature of the terminal in real time, and it is displayed on the power node controller or transmitted to the operator through the network module. When the terminal temperature is abnormal, the power node controller will alarm. When the terminal temperature abnormality reaches a preset threshold, the power node controller will automatically cut off the power.

[0050] Furthermore, the circuit breaker 12 includes a display screen 121 and a push button 122 , and pressing the push button 122 can control the disconnection or connection of the power node controller; wherein the disconnection state of the power node controller and the temperature of the terminal are displayed through the display screen 121 .

Claims

1. A controller for AI intelligent power node, characterized in that: include: A housing (10), wherein an installation space (11) is formed inside the housing (10), a circuit breaker (12) is provided inside the housing (10), and the circuit breaker (12) is placed in the installation space (11); a cover body (20), the cover body (20) being movably connected to the shell (10), and the cover body (20) being able to be opened or closed relative to the shell (10); a support member (30), one end of the support member (30) being connected to the shell (10) and the other end being connected to the cover body (20); when the cover body (20) moves relative to the shell (10), the support member (30) can support the cover body (20) to remain suspended at any position; A first driving member (40), the first driving member (40) being connected to the supporting member (30); The first driving member (40) can drive the supporting member (30) to close the cover (20) relative to the housing (10).

2. The AI ​​intelligent power node controller according to claim 1, characterized in that: The power node controller also includes a locking device (50), which is placed in the cover body (20); when the cover body (20) is closed relative to the shell (10), the locking device (50) can lock the shell (10) and the cover body (20) to limit the movement of the cover body (20) relative to the shell (10).

3. The AI ​​intelligent power node controller according to claim 2, characterized in that: The power node controller further comprises a magnetic control device (60), wherein the magnetic control device (60) is capable of monitoring the opening and closing status of the cover (20) and the housing (10); The magnetic control device (60) comprises a magnetic sensor (61) and a magnetic strip (62); the magnetic sensor (61) is installed in the installation space (11); and the magnetic strip (62) is installed in the cover body (20).

4. The AI ​​intelligent power node controller according to claim 2, characterized in that: The housing (10) further comprises a locking hole (13), wherein the locking hole (13) is disposed in the installation space (11); The locking device (50) comprises a locking assembly (51) and a second driving member (52), wherein the second driving member (52) can drive the locking assembly (51) to move in a direction away from the second driving member (52) so that the locking assembly (51) is inserted into the locking hole (13) or drive the locking assembly (51) to move in a direction close to the second driving member (52) so that the locking assembly (51) leaves the locking hole (13).

5. The AI ​​intelligent power node controller according to claim 4, characterized in that: The locking assembly (51) comprises: a plurality of locking bolts (511); A connecting member (512), wherein a plurality of locking tongues (511) are mounted on one end of the connecting member (512); A rack portion (513), wherein the rack portion (513) is disposed at the other end of the connecting member (512).

6. The AI ​​intelligent power node controller according to claim 5, characterized in that: The second driving member (52) comprises a gear (521) and a motor (522); The gear (521) is arranged corresponding to the rack portion (513), and the rotation of the motor (522) will drive the gear (521) to rotate, so that the rack portion (513) moves in a direction close to or away from the motor (522).

7. The AI ​​intelligent power node controller according to claim 1, characterized in that: The support member (30) comprises: A support rod (31), one end of which is movably connected to the cover body (20); A sliding track (32), wherein the sliding track (32) is arranged on the housing (10); A sliding block (33), the sliding block (33) is placed in the sliding track (32), and the other end of the support rod (31) is movably connected to the sliding block (33), wherein when the sliding block (33) moves relative to the sliding track (32), it can drive the support rod (31) to move; A positioning member (34) is installed on the shell (10), the support rod (31) is in contact with the positioning member (34), and the positioning member (34) can fix the support rod (31) to make the cover body (20) suspend.

8. The AI ​​intelligent power node controller according to claim 7, characterized in that: The positioning member (34) comprises a spring member (341) and a positioning column (342); one end of the spring member (341) is connected to the positioning column (342), and the other end is connected to the housing (10); wherein the positioning column (342) is clamped to the support rod (31).

9. The AI ​​intelligent power node controller according to any one of claims 1 to 8, characterized in that: The power node controller further comprises a temperature sensor (70), which is installed in the housing (10) and can monitor the temperature of the terminals in the circuit breaker (12).

10. The AI ​​intelligent power node controller according to claim 9, characterized in that: The circuit breaker (12) includes a display screen (121) and a push button (122), and pressing the push button (122) can control the disconnection or connection of the power node controller; wherein the disconnection state of the power node controller and the temperature of the terminal are displayed through the display screen (121).