Detection device for power supply intelligent control module

By introducing positioning support, universal clamping and maintenance mechanism into the power supply intelligent control module detection device, the existing devices have solved the problem of positioning and detector replacement of modules of different models and sizes, and achieved high versatility and convenient detection.

CN223065682UActive Publication Date: 2025-07-04GUANGXI JIYI TECH CO LTD
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Patent Information

Application Number
CN202421953709.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-07-04
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The existing power supply intelligent control module detection device cannot effectively position, clamp and periodically repair and replace the detectors of different models and sizes, resulting in low versatility and inconvenient use.

Method used

A detection device including a positioning support mechanism, a general clamping mechanism and an inspection and maintenance mechanism is designed. Through the positioning suction cup auxiliary support, electric push rod guide clamping and a detachable detector structure, the positioning and placement of modules of different sizes, the anti-displacement clamping and the convenient replacement of detectors is achieved.

Benefits of technology

It improves the versatility of the detection device, can adapt to control modules of different sizes, facilitates the replacement and maintenance of detectors, and improves the practicality and convenience of detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of power supply intelligent control modules, in particular to a detection device for a power supply intelligent control module, which comprises a conveying belt, overhaul and maintenance mechanisms are arranged on the surfaces of a lifting plate and a detector, and universal clamping mechanisms are arranged on the surfaces of a control module body and a detection table. And positioning support mechanisms are arranged in the detection table and on the surface of the control module body. According to the utility model, the bottom of the control module body can be supported in an auxiliary manner when the detection device is used, so that the control module bodies with different sizes can be clamped on the surface of the detection table when the detection device is used, and the control module bodies with different sizes can be detected when the detection device is used; and a user can regularly overhaul and replace the detector, so that the detection device is more practical and convenient when detecting the surface of the control module body.
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Description

Technical Field

[0001] The utility model relates to the technical field of power intelligent control modules, and particularly relates to a detection device for a power intelligent control module. Background Technique

[0002] A power control module is a device that provides current and voltage to electronic devices, also known as a power controller. It provides the control of the current required by all components in the power supply. The size of the power, and whether the current and voltage are stable are directly affected by the power control board. When detecting a power intelligent control module, a detection device for a power intelligent control module is required.

[0003] When the existing detection device detects a power intelligent control module, it can only detect a single model of power intelligent control module. If a factory processes and produces different models of power intelligent control modules, it is necessary to replace the existing detection device, which is relatively cumbersome. In addition, the existing detection device has some disadvantages to a certain extent. When the detection device is used, it is necessary to position and place the control module body. The existing detection device does not have the function of positioning and placing the control module body when in use, which makes it impossible to assist in supporting the bottom of the control module body when the detection device is in use; due to the different sizes of power intelligent control modules, the versatility of the detection device is required to be relatively high. The existing detection device is inconvenient to clamp and prevent displacement of control module bodies of different sizes when in use, which makes it inconvenient to detect control module bodies of different sizes when the detection device is in use, reducing the versatility of the detection device when in use; the detection device needs to be regularly repaired and replaced when in use. The existing detection device cannot perform regular repair and replacement of the detector when in use, which makes it inconvenient for the user to replace the detector when the detection device is in use, making the detection device less practical and convenient when detecting the surface of the control module body. Content of the Utility Model

[0004] The purpose of the utility model is to provide a detection device for a power intelligent control module, so as to solve the problems put forward in the above background technique that the detection device does not have the function of positioning and placing the control module body when in use, is inconvenient to detect control module bodies of different sizes, and cannot perform regular repair and replacement of the detector.

[0005] To achieve the above object, the utility model provides the following technical solution: A detection device for a power intelligent control module, including a conveyor belt, on the surface of which a fixing frame is installed. On the surface of the fixing frame, control buttons are installed. Inside the fixing frame, a lifting plate is arranged. On the surface of the conveyor belt, detection platforms are installed. On the surface of the detection platforms, the control module body is placed. Below the lifting plate, a detector is arranged. On the surfaces of the lifting plate and the detector, maintenance and repair mechanisms are arranged. Inside the maintenance and repair mechanisms, positioning fasteners, positioning slots and maintenance and repair parts are included. On the surfaces of the control module body and the detection platforms, universal clamping mechanisms are arranged. Inside the universal clamping mechanisms, a containing groove, a clamping plate, a groove body, a second electric push rod, a fixed cylinder and a moving column are included. Inside the detection platforms and on the surfaces of the control module body, positioning and supporting mechanisms are arranged. Inside the positioning and supporting mechanisms, positioning suction cups, grooves and positioning and supporting groups are included.

[0006] Preferably, guiding sliding grooves are formed on the inner walls of the fixing frame, and the surfaces of the guiding sliding grooves and the lifting plate are in sliding fit with each other. On the surface of the fixing frame, first electric push rods are installed. The input ends of the first electric push rods are electrically connected to the output ends of the control buttons. One end of the first electric push rod penetrates through the fixing frame and is fixed to the surface of the lifting plate. The detector is located above the control module body. On the surface at the bottom position of the detector, detection probes are installed. On the surface of the control module body, wiring ports are installed. The wiring ports and the detection probes cooperate with each other. On the surface of the detector, an alarm for alarming is installed.

[0007] Preferably, the maintenance and repair parts are arranged on the surfaces of the lifting plate and the detector. The maintenance and repair parts are composed of a frame body, a fixing groove and mounting screws. On the surface at the bottom position of the lifting plate, frame bodies are installed. On the inner walls of the frame bodies, fixing grooves are formed. The surfaces of the fixing grooves and the detector are in sliding fit with each other.

[0008] Preferably, on the surface of the detector, positioning fasteners for preventing the detector from loosening are installed. On the surface of the lifting plate, positioning slots are formed. The surfaces of the positioning slots and the positioning fasteners are in clamping fit with each other. On the surface of the detector, mounting screws are threadedly connected. One end of the mounting screw penetrates through the detector and is threadedly fastened to the surface of the frame body.

[0009] Preferably, on the surface of the detection platform, containing grooves are formed. On the surface of the detection platform, clamping plates for clamping the control module body are arranged. The clamping plates are respectively located on both sides of the control module body. The inner walls of the clamping plates are in contact with the surface of the control module body. The surfaces of the clamping plates and the containing grooves are in sliding fit with each other. On the surfaces on both sides of the detection platform, fixed cylinders are installed. One end of the fixed cylinder extends into the interior of the containing groove.

[0010] Preferably, a moving column is arranged inside the fixed cylinder. One end of the moving column extends to the outside of the fixed cylinder. Grooves are formed on the inner walls of the fixed cylinder. The grooves are slidably matched with the surface of the moving column. The surface of the moving column is fixed to the surface of the clamping plate. A second electric push rod is installed inside the fixed cylinder. The input end of the second electric push rod is electrically connected to the output end of the control button. The output end of the second electric push rod is fixed to the surface of the moving column.

[0011] Preferably, the positioning and supporting group is arranged inside the detection table and on the surface of the control module body. The positioning and supporting group is composed of a moving block, a containing cavity and a supporting spring. Grooves are formed inside the detection table. A containing cavity is formed inside the detection table. A moving block is arranged inside the containing cavity. The moving block is slidably matched with the surface of the containing cavity.

[0012] Preferably, a supporting spring is installed inside the containing cavity. One end of the supporting spring is fixed to the surface of the bottom position of the moving block. A positioning suction cup for positioning and placing the control module body is arranged inside the groove. The surface of the positioning suction cup is fixed to the surface of the moving block. The surface of the positioning suction cup is attached to the surface of the bottom position of the control module body.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: The detection device for the power intelligent control module not only enables the control module body to be positioned and placed on the surface of the detection table when in use, enables the bottom of the control module body to be supported by the detection device when in use, enables control module bodies of different sizes to be clamped on the surface of the detection table when in use, enables control module bodies of different sizes to be detected when in use, making the detection device more versatile, but also enables the user to conveniently replace the detector when in use. The user can regularly repair and replace the detector, making the detection device more practical and convenient when detecting the surface of the control module body;

[0014] 1. By providing a positioning and supporting mechanism, the moving block is driven to move under the elastic force of the supporting spring inside the containing cavity, so that the moving block slides inside the containing cavity. At this time, the moving block drives the positioning suction cup to move inside the groove, so that the positioning suction cup inside the groove moves to contact the surface of the control module body. Under the action of the positioning suction cup, the control module body is supported, and the control module body is positioned and placed on the surface of the detection table, realizing the function of positioning and placing the control module body by the detection device. Thus, the control module body can be positioned and placed on the surface of the detection table when the detection device is in use, and the bottom of the control module body can be supported by the detection device when in use;

[0015] 2. By providing a universal clamping mechanism, the second electric push rod inside the fixed cylinder is controlled to work. Under the action of the second electric push rod, the moving column slides inside the groove body. Under the action of the groove body, the moving column is guided, so that the moving column drives the clamping plate to slide inside the placing groove. Under the action of the placing groove, the clamping plate is guided. At this time, the second electric push rod drives the clamping plate to move until it contacts the surface of the control module body. Under the action of the clamping plate, control module bodies of different sizes are clamped on the surface of the detection table, preventing the control module body from shifting on the surface of the detection table and causing inconvenience in detection. The function of the detection device to clamp and prevent displacement of control module bodies of different sizes is realized. Thus, when the detection device is in use, control module bodies of different sizes can be clamped on the surface of the detection table, enabling the detection device to detect control module bodies of different sizes when in use, making the detection device more versatile when in use;

[0016] 3. By providing an overhaul and maintenance mechanism, the user loosens the installation screws on the surface of the detector and then pulls the detector downward, causing the detector to slide inside the fixed groove. Under the action of the fixed groove, the detector is guided. At this time, the detector drives the positioning card away from the inside of the positioning card slot, thereby removing the detector from the surface of the lifting plate for overhaul and maintenance. The function of the detection device to overhaul and replace the detector is realized. Thus, when the detection device is in use, it is convenient for the user to replace the detector. The user can regularly overhaul and replace the detector, making it more practical and convenient for the detection device to detect the surface of the control module body. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0018] Figure 2 is a front sectional structural schematic diagram of the present utility model;

[0019] Figure 3 is of the present utility model Figure 2 amplified structural schematic diagram of the overhaul and maintenance mechanism therein;

[0020] Figure 4 is of the present utility model Figure 2 amplified structural schematic diagram of the universal clamping mechanism therein;

[0021] Figure 5 is an amplified structural schematic diagram of the positioning and supporting mechanism of the present utility model.

[0022] In the figure: 1. Conveyor belt; 101. Fixed frame; 102. First electric push rod; 103. Control button; 104. Lifting plate; 105. Guide chute; 106. Detector; 107. Detection probe; 108. Alarm; 109. Wiring port; 110. Control module body; 111. Detection table; 2. Maintenance mechanism; 201. Positioning clip; 202. Positioning slot; 203. Maintenance department; 2031. Frame; 2032. Fixed slot; 2033. Installation screw; 3. Universal clamping mechanism; 301. Holding groove; 302. Clamping plate; 303. Tank body; 304. Second electric push rod; 305. Fixed cylinder; 306. Moving column; 4. Positioning support mechanism; 401. Positioning suction cup; 402. Groove; 403. Positioning support group; 4031. Moving block; 4032. Holding cavity; 4033. Support spring. Detailed implementation mode

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. In addition, the terms "first", "second", "third", "upper, lower, left, right", etc. are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. At the same time, in the description of the present invention, unless otherwise clearly specified and limited, the terms "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0024] The structure of a detection device for a power intelligent control module provided by the present invention is as Figure 1 and Figure 2As shown in the figure, it includes a conveyor belt 1. A fixing frame 101 is installed on the surface of the conveyor belt 1. A control button 103 is installed on the surface of the fixing frame 101. The model of the control button 103 can be selected from the LA series. A lifting plate 104 is arranged inside the fixing frame 101. Guide sliding grooves 105 are formed on the inner walls of the fixing frame 101. The guide sliding grooves 105 are slidably engaged with the surface of the lifting plate 104. First electric push rods 102 are installed on the surface of the fixing frame 101. The model of the first electric push rod 102 can be selected from the DG series. The input end of the first electric push rod 102 is electrically connected to the output end of the control button 103. One end of the first electric push rod 102 penetrates through the fixing frame 101 and is fixed to the surface of the lifting plate 104. Inspection platforms 111 are installed on the surface of the conveyor belt 1. A control module body 110 is placed on the surface of the inspection platform 111. A detector 106 is arranged below the lifting plate 104. The detector 106 is located above the control module body 110. Detection probes 107 are installed on the surface at the bottom position of the detector 106. Wiring ports 109 are installed on the surface of the control module body 110. The wiring ports 109 cooperate with the detection probes 107. An alarm 108 for alarming is installed on the surface of the detector 106.

[0025] Further, as Figure 2 and Figure 3 shown, maintenance and repair mechanisms 2 are arranged on the surfaces of the lifting plate 104 and the detector 106. The maintenance and repair mechanism 2 includes a positioning clip 201, a positioning slot 202 and a maintenance and repair part 203. The maintenance and repair part 203 is arranged on the surfaces of the lifting plate 104 and the detector 106. The maintenance and repair part 203 is composed of a frame body 2031, a fixing slot 2032 and mounting screws 2033. Frame bodies 2031 are installed on the surfaces at the bottom position of the lifting plate 104. Fixing slots 2032 are formed on the inner walls of the frame bodies 2031. The fixing slots 2032 are slidably engaged with the surface of the detector 106. Positioning clips 201 for preventing the detector 106 from loosening are installed on the surface of the detector 106. Positioning slots 202 are formed on the surface of the lifting plate 104. The positioning slots 202 are snap-fitted with the surfaces of the positioning clips 201. Mounting screws 2033 are threadedly connected to the surface of the detector 106. One end of the mounting screw 2033 penetrates through the detector 106 and is threadedly fastened to the surface of the frame body 2031.

[0026] During implementation, the user loosens the mounting screw 2033 on the surface of the detector 106, and then pulls the detector 106 downward, causing the detector 106 to slide inside the fixing groove 2032. Under the action of the fixing groove 2032, the detector 106 is guided. At this time, the detector 106 drives the positioning clip 201 away from the inside of the positioning card slot 202, so as to remove the detector 106 from the surface of the lifting plate 104, and perform maintenance and repair on the detector 106, so as to realize the function of the detection device for overhauling and replacing the detector 106.

[0027] Further, as Figure 2 and Figure 4 shown, universal clamping mechanisms 3 are provided on the surfaces of both the control module body 110 and the test bench 111. The inside of the universal clamping mechanism 3 includes a holding groove 301, a clamping plate 302, a groove body 303, a second electric push rod 304, a fixed cylinder 305 and a moving column 306. Holding grooves 301 are formed on the surfaces of both the test benches 111. Clamping plates 302 for clamping the control module body 110 are provided on the surfaces of both the test benches 111. The clamping plates 302 are respectively located on both sides of the control module body 110. The inner wall of the clamping plate 302 is in contact with the surface of the control module body 110. The clamping plate 302 and the surface of the holding groove 301 are slidably matched with each other. Fixed cylinders 305 are installed on the surfaces of both sides of the test bench 111. One end of the fixed cylinder 305 extends into the inside of the holding groove 301. A moving column 306 is arranged inside the fixed cylinder 305. One end of the moving column 306 extends outside the fixed cylinder 305. Groove bodies 303 are formed on the inner walls of the fixed cylinders 305. The groove bodies 303 and the surface of the moving column 306 are slidably matched with each other. The surface of the moving column 306 is fixed to the surface of the clamping plate 302. A second electric push rod 304 is installed inside the fixed cylinder 305. The model of the second electric push rod 304 can be selected from the DG series. The input end of the second electric push rod 304 is electrically connected to the output end of the control button 103. The output end of the second electric push rod 304 is fixed to the surface of the moving column 306.

[0028] During implementation, the second electric push rod 304 inside the fixed cylinder 305 is controlled to work. Under the action of the second electric push rod 304, the moving column 306 is driven to slide inside the groove body 303. Under the action of the groove body 303, the moving column 306 is guided, so that the moving column 306 drives the clamping plate 302 to slide inside the placing groove 301. Under the action of the placing groove 301, the clamping plate 302 is guided. At this time, the second electric push rod 304 drives the clamping plate 302 to move to contact the surface of the control module body 110. Under the action of the clamping plate 302, the control module body 110 of different sizes is clamped on the surface of the detection table 111, avoiding the phenomenon that the control module body 110 is displaced on the surface of the detection table 111 and causing inconvenience for detection, so as to realize the function of the detection device to clamp and prevent displacement of the control module body 110 of different sizes.

[0029] Further, as Figure 2 and Figure 5 shown, positioning and supporting mechanisms 4 are arranged inside the detection table 111 and on the surface of the control module body 110. The positioning and supporting mechanism 4 includes a positioning suction cup 401, a groove 402 and a positioning and supporting group 403. The positioning and supporting group 403 is arranged inside the detection table 111 and on the surface of the control module body 110. The positioning and supporting group 403 is composed of a moving block 4031, a placing cavity 4032 and a supporting spring 4033. Grooves 402 are formed inside the detection table 111, and placing cavities 4032 are formed inside the detection table 111. The moving block 4031 is arranged inside the placing cavity 4032, and the moving block 4031 is slidably matched with the surface of the placing cavity 4032. A supporting spring 4033 is installed inside the placing cavity 4032. One end of the supporting spring 4033 is fixed to the surface at the bottom of the moving block 4031. A positioning suction cup 401 for positioning and placing the control module body 110 is arranged inside the groove 402. The surface of the positioning suction cup 401 is fixed to the surface of the moving block 4031, and the surface of the positioning suction cup 401 is attached to the surface at the bottom of the control module body 110.

[0030] During implementation, under the elastic force of the supporting spring 4033 inside the placing cavity 4032, the moving block 4031 is driven to move, so that the moving block 4031 slides inside the placing cavity 4032. At this time, the moving block 4031 drives the positioning suction cup 401 to move inside the groove 402, so that the positioning suction cup 401 inside the groove 402 moves to contact the surface of the control module body 110. Under the action of the positioning suction cup 401, the control module body 110 is supported assistingly, and the control module body 110 is positioned and placed on the surface of the detection table 111, so as to realize the function of the detection device to position and place the control module body 110.

[0031] Working principle: When in use, first place the conveyor belt 1 at the designated position. The user places the control module body 110 on the surface of the detection table 111 respectively. Under the elastic force of the support spring 4033 in the storage cavity 4032, the moving block 4031 is driven to move, so that the moving block 4031 slides inside the storage cavity 4032. At this time, the moving block 4031 drives the positioning suction cup 401 to move inside the groove 402, so that the positioning suction cup 401 inside the groove 402 moves to contact the surface of the control module body 110. Under the action of the positioning suction cup 401, the control module body 110 is supported assistingly, and the control module body 110 is positioned and placed on the surface of the detection table 111, so as to realize the function of the detection device to position and place the control module body 110, so that the detection device can position and place the control module body 110 on the surface of the detection table 111 when in use, and the detection device can support the bottom of the control module body 110 assistingly when in use.

[0032] Subsequently, the user operates the control button 103, so that the control button 103 controls the second electric push rod 304 inside the fixed cylinder 305 to work. Under the action of the second electric push rod 304, the moving column 306 is driven to slide inside the groove body 303. Under the action of the groove body 303, the moving column 306 is guided, so that the moving column 306 drives the clamping plate 302 to slide inside the storage groove 301. Under the action of the storage groove 301, the clamping plate 302 is guided. At this time, the second electric push rod 304 drives the clamping plate 302 to move to contact the surface of the control module body 110. Under the action of the clamping plate 302, the control module bodies 110 of different sizes are clamped on the surface of the detection table 111, avoiding the phenomenon that the control module body 110 is displaced on the surface of the detection table 111, which causes inconvenience in detection, so as to realize the function of the detection device to clamp and prevent displacement of the control module bodies 110 of different sizes, so that the detection device can clamp the control module bodies 110 of different sizes on the surface of the detection table 111 when in use, so that the detection device can detect the control module bodies 110 of different sizes when in use, and the versatility of the detection device when in use is higher.

[0033] Subsequently, the user operates the control button 103, causing the control button 103 to control the operation of the first electric push rod 102 on the surface of the fixing frame 101. Under the action of the first electric push rod 102, the lifting plate 104 is driven to slide inside the guiding chute 105. Under the action of the guiding chute 105, the lifting plate 104 is guided. At this time, the lifting plate 104 drives the detector 106 to move downward, and the detector 106 drives the detection probe 107 to move downward until it contacts the surface of the connection port 109 on the surface of the control module body 110. At this time, one end of the detection probe 107 moves into the connection port 109. Under the combined action of the detection probe 107 and the connection port 109, the surface of the control module body 110 is subjected to wiring detection. At this time, when the control module body 110 can be powered on and operate, the alarm 108 on the surface of the detector 106 will not sound an alarm. When the control module body 110 cannot be normally powered on and operate, the alarm 108 on the surface of the detector 106 sounds an alarm, prompting the operator that the control module body 110 is unqualified.

[0034] Subsequently, when the user needs to repair and maintain the detector 106, the user loosens the mounting screw 2033 on the surface of the detector 106 and then pulls the detector 106 downward, causing the detector 106 to slide inside the fixing groove 2032. Under the action of the fixing groove 2032, the detector 106 is guided. At this time, the detector 106 drives the positioning card 201 away from the inside of the positioning card slot 202, thereby removing the detector 106 from the surface of the lifting plate 104 and performing repair and maintenance on the detector 106 to achieve the function of the detection device for repairing and replacing the detector 106. Thus, when the detection device is in use, it is convenient for the user to replace the detector 106. The user can regularly repair and replace the detector 106, making the detection device more practical and convenient when detecting the surface of the control module body 110, and finally completing the use of the detection device.

[0035] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A detection device for a power intelligent control module, comprising a conveyor belt (1), characterized in that: A fixing frame (101) is mounted on the surface of the conveyor belt (1). A control button (103) is mounted on the surface of the fixing frame (101). A lifting plate (104) is arranged inside the fixing frame (101). Detection platforms (111) are mounted on the surface of the conveyor belt (1). A control module body (110) is placed on the surface of the detection platform (111). A detector (106) is arranged below the lifting plate (104). Maintenance and repair mechanisms (2) are arranged on the surfaces of the lifting plate (104) and the detector (106). The maintenance and repair mechanism (2) includes a positioning clip (201), a positioning slot (202) and a maintenance and repair part (203). Universal clamping mechanisms (3) are arranged on the surfaces of the control module body (110) and the detection platform (111). The universal clamping mechanism (3) includes a containing groove (301), a clamping plate (302), a groove body (303), a second electric push rod (304), a fixing cylinder (305) and a moving column (306). Positioning and supporting mechanisms (4) are arranged inside the detection platform (111) and on the surface of the control module body (110). The positioning and supporting mechanism (4) includes a positioning suction cup (401), a groove (402) and a positioning and supporting group (403).

2. The detection device for a power intelligent control module according to claim 1, characterized in that: Guide sliding grooves (105) are formed in the inner walls of the fixing frame (101). The guide sliding grooves (105) are in sliding fit with the surface of the lifting plate (104). First electric push rods (102) are mounted on the surface of the fixing frame (101). The input end of the first electric push rod (102) is electrically connected to the output end of the control button (103). One end of the first electric push rod (102) penetrates through the fixing frame (101) and is fixed to the surface of the lifting plate (104). The detector (106) is located above the control module body (110). Detection probes (107) are mounted on the surfaces at the bottom positions of the detector (106). Wiring ports (109) are mounted on the surface of the control module body (110). The wiring ports (109) cooperate with the detection probes (107). An alarm (108) for alarming is mounted on the surface of the detector (106).

3. The detection device for a power intelligent control module according to claim 1, characterized in that: The maintenance and repair part (203) is arranged on the surfaces of the lifting plate (104) and the detector (106). The maintenance and repair part (203) consists of a frame body (2031), a fixing groove (2032) and mounting screws (2033). Frame bodies (2031) are mounted on the surfaces at the bottom positions of the lifting plate (104). Fixing grooves (2032) are formed in the inner walls of the frame bodies (2031). The fixing grooves (2032) are in sliding fit with the surface of the detector (106).

4. The detection device for a power intelligent control module according to claim 1, wherein: Positioning clips (201) for preventing the detector (106) from loosening are installed on the surfaces of the detector (106). Positioning slots (202) are formed on the surfaces of the lifting plate (104). The surfaces of the positioning slots (202) and the positioning clips (201) are engaged with each other. Mounting screws (2033) are threadedly connected to the surfaces of the detector (106). One end of the mounting screw (2033) penetrates through the detector (106) and is threadedly fastened to the surface of the frame body (2031).

5. The detection device for a power intelligent control module according to claim 1, characterized in that: Receiving grooves (301) are formed on the surfaces of the inspection table (111). Clamping plates (302) for clamping the control module body (110) are provided on the surfaces of the inspection table (111). The clamping plates (302) are located on both sides of the control module body (110). The inner walls of the clamping plates (302) are in contact with the surface of the control module body (110). The clamping plates (302) are slidably engaged with the surfaces of the receiving grooves (301). Fixed cylinders (305) are installed on the surfaces of both sides of the inspection table (111). One end of the fixed cylinder (305) extends into the interior of the receiving groove (301).

6. The detection device for a power intelligent control module according to claim 5, characterized in that: A moving column (306) is arranged inside the fixed cylinder (305). One end of the moving column (306) extends to the outside of the fixed cylinder (305). Grooves (303) are formed on the inner walls of the fixed cylinder (305). The surfaces of the grooves (303) and the moving column (306) are slidably engaged with each other. The surface of the moving column (306) is fixed to the surface of the clamping plate (302). A second electric push rod (304) is installed inside the fixed cylinder (305). The input end of the second electric push rod (304) is electrically connected to the output end of the control button (103). The output end of the second electric push rod (304) is fixed to the surface of the moving column (306).

7. The detection device for a power intelligent control module according to claim 1, characterized in that: The positioning and supporting group (403) is arranged inside the inspection table (111) and on the surface of the control module body (110). The positioning and supporting group (403) is composed of a moving block (4031), a receiving cavity (4032) and a supporting spring (4033). Grooves (402) are formed inside the inspection table (111). Receiving cavities (4032) are formed inside the inspection table (111). A moving block (4031) is arranged inside the receiving cavity (4032). The moving block (4031) is slidably engaged with the surface of the receiving cavity (4032).

8. The detection device for a power intelligent control module according to claim 7, characterized in that: A supporting spring (4033) is installed inside the receiving cavity (4032). One end of the supporting spring (4033) is fixed to the surface of the bottom position of the moving block (4031). A positioning suction cup (401) for positioning and placing the control module body (110) is arranged inside the groove (402). The surface of the positioning suction cup (401) is fixed to the surface of the moving block (4031). The surface of the positioning suction cup (401) is attached to the surface of the bottom position of the control module body (110).