Industrial internet information detection device

By designing an industrial internet information detection device with movable vision sensors and limit components, the problem of lacking built-in vision sensors is solved, enabling convenient operation and stable detection, and adapting to the visual monitoring needs of complex environments.

CN223966089UActive Publication Date: 2026-03-03SHENZHEN QIANHAI EVOC ASIA-PACIFIC ELECTRONIC EQUIP TECH CO LTD
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Patent Information

Application Number
CN202520623863.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-03
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

Existing industrial internet information detection devices lack built-in visual sensors, making it impossible to directly perform visual monitoring, identification, or analysis in industrial production environments. This necessitates the use of externally mounted split cameras, increasing the operational complexity.

Method used

Design a detection device including a housing, a vision device, and a control device. The vision sensor is movably installed in the storage slot of the housing. The extension and retraction of the sensor are realized by the vision drive unit and the angle adjustment drive unit. Combined with the limiting component and the light source component, a stable shooting position and convenient operation are provided.

Benefits of technology

The reduced complexity of wiring connections improves the ease of operation and stability of the vision sensor, making it adaptable to different working environments and enhancing the accuracy and flexibility of detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an industrial internet information detection device, which relates to the technical field of detection devices and comprises a box body, a visual device and a control device. The box body comprises a base and a cover body, a storage groove is formed in one side, in the first direction, of the base, the storage groove is used for storing a to-be-detected device, and the cover body movably covers the base so as to open or close a groove opening of the storage groove; the visual device comprises a visual sensor and a visual driving part, the visual sensor is movably arranged in the first direction so as to extend out of the storage groove or retract into the storage groove, the visual driving part is arranged in the storage groove and used for driving the visual sensor to move, and the visual sensor is used for shooting images; the control device is arranged on the box body and electrically connected with the visual sensor and the visual driving part. According to the technical scheme provided by the utility model, the operation convenience of the visual sensor is improved.
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Description

Technical Field

[0001] This utility model relates to the field of detection device technology, and in particular to an industrial internet information detection device. Background Technology

[0002] Current industrial internet information detection devices lack a camera, a crucial visual acquisition component. Due to the absence of a built-in vision sensor, tasks requiring visual monitoring, identification, or analysis in real-world industrial production environments cannot be effectively performed directly. To meet these needs, external, separate cameras must be installed. This separate setup requires additional wiring and installation in suitable locations, increasing operational complexity. Utility Model Content

[0003] The main purpose of this invention is to propose an industrial internet information detection device, which aims to improve the ease of operation of visual sensors.

[0004] To achieve the above objectives, this utility model proposes an industrial internet information detection device, comprising:

[0005] The housing includes a base and a cover. The base has a storage slot on one side in a first direction for placing the device to be tested. The cover is movably mounted on the base to open or close the opening of the storage slot.

[0006] A vision device includes a vision sensor and a vision actuator. The vision sensor is movably disposed in a first direction to extend out of or retract into a storage slot. The vision actuator is disposed within the storage slot and drives the vision sensor to move. The vision sensor is used to capture images.

[0007] The control device is located in the housing and is electrically connected to the vision sensor and the vision drive unit.

[0008] In one embodiment, the storage slot is provided with a lifting bracket, which is movably disposed in a first direction. The vision sensor is mounted on the lifting bracket, and the vision drive unit drives the lifting bracket to move.

[0009] In one embodiment, the vision device further includes an adjustment bracket, which is rotatably mounted to the lifting bracket in at least one direction, and the vision sensor is mounted on the adjustment bracket so that the angle of the vision sensor can be adjusted.

[0010] The industrial internet information detection device also includes an angle adjustment drive unit, which is disposed on the lifting bracket and is used to drive the adjustment bracket to rotate.

[0011] The control device is electrically connected to the angle adjustment drive unit.

[0012] In one embodiment, the adjustment bracket includes:

[0013] A rotating disk is rotatably mounted on the lifting bracket about an axis extending in a first direction; and,

[0014] A mounting plate is rotatably mounted on the rotating disk about an axis extending in a second direction, the second direction intersecting the first direction, and the mounting plate is for mounting the vision sensor;

[0015] The angle adjustment drive unit includes:

[0016] A first rotation drive unit is disposed on the lifting bracket for driving the rotating disk to rotate; and

[0017] A second rotation drive unit is disposed on the rotating disk to drive the mounting disk to rotate.

[0018] In one embodiment, the base includes a base plate and a plurality of side portions disposed around the periphery of the base plate, the plurality of side portions and the base plate together defining the storage slot;

[0019] The plurality of sides include a first side and a second side disposed opposite to each other, one end of the cover is rotatably connected to the first side, and the visual device is disposed in the storage slot adjacent to the second side.

[0020] In one embodiment, the industrial internet information detection device further includes a limiting component, which is disposed in the storage slot and is disposed on one side of the storage slot. The distance between the limiting component and the corresponding side of the storage slot is adjustable.

[0021] In one embodiment, the side of the storage slot includes a opposite side opposite to the limiting component and two adjacent sides adjacent to the opposite side;

[0022] Each of the two adjacent sides is provided with an abutment portion, which is movably connected along the length direction of the corresponding adjacent side, and the two abutment portions are provided to abut against the two ends of the limiting component.

[0023] In one embodiment, the limiting component includes a limiting body and a limiting protrusion disposed on the limiting body and adjustable along the length of the limiting body.

[0024] In one embodiment, the limiting protrusion is provided with a storage groove, and the storage groove is provided with a retractable and movable light source assembly, which is used for illumination.

[0025] In one embodiment, the light source assembly further includes a light source and an adjustable guide tube, one end of which is connected to the light source, and the other end of which is rotatably disposed within the receiving groove.

[0026] The technical solution of this utility model utilizes a housing formed by the base and the cover, which facilitates carrying and storage. The storage slot on the base holds the device to be tested, providing a testing environment. The vision sensor is movably positioned in the first direction, allowing it to extend out of the storage slot to capture images of the desired location when needed, and retract into the storage slot when not in use, thus facilitating portability. A control device can control the operation and data processing of the entire vision inspection device, as well as the adjustment of the vision sensor's position by controlling the vision drive unit. Therefore, compared to externally mounted vision sensors, this technical solution reduces complex wiring connections and provides a stable shooting position, thereby improving the ease of operation of the vision sensor. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0028] Figure 1 A schematic diagram of a structural embodiment of the industrial internet information detection device provided by this utility model;

[0029] Figure 2 for Figure 1 A schematic diagram of the closed state of the industrial internet information detection device.

[0030] Figure 3 for Figure 1 A schematic diagram of the retracted state of the central vision device;

[0031] Figure 4 for Figure 1 A schematic diagram of the extended state of the visual device;

[0032] Figure 5 for Figure 1 Schematic diagram of the structure of the adjustment bracket;

[0033] Figure 6 for Figure 1 A magnified view of the structure at point A in the middle;

[0034] Figure 7 for Figure 1 A schematic diagram of the structure of an embodiment of a vision device;

[0035] Figure 8 for Figure 1 A schematic diagram of the structure of the middle limiting protrusion.

[0036] Explanation of icon numbers:

[0037] 100. Industrial Internet Information Detection Device;

[0038] 1. Box body; 11. Base; 111. Storage slot; 112. Bottom plate; 113. Side; 1131. First side; 1132. Second side; 12. Cover; 13. Abutment part; 14. Sliding groove; 15. Sliding block;

[0039] 2. Vision device; 21. Vision sensor; 22. Vision drive unit; 23. Lifting bracket; 24. Adjustment bracket; 241. Rotary disk; 242. Mounting disk;

[0040] 3. Control device;

[0041] 4. Limiting component; 41. Limiting body; 42. Limiting protrusion; 43. Storage slot; 44. Light source component; 441. Light source; 442. Adjustable guide tube.

[0042] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0044] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0045] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0046] Current industrial internet information detection devices lack a camera, a crucial visual acquisition component. Due to the absence of a built-in vision sensor, tasks requiring visual monitoring, identification, or analysis in real-world industrial production environments cannot be effectively performed directly. To meet these needs, external, separate cameras must be installed. This separate setup requires additional wiring and installation in suitable locations, increasing operational complexity.

[0047] To address the aforementioned technical issues, this utility model proposes an industrial internet information detection device 100, comprising a housing 1, a vision device 2, and a control device 3. The housing 1 includes a base 11 and a cover 12. A storage slot 111 is formed on one side of the base 11 in a first direction, for placing the device to be detected. The cover 12 is movably mounted on the base 11 to open or close the opening of the storage slot 111. The vision device 2 includes a vision sensor 21 and a vision drive unit 22. The vision sensor 21 is movably disposed in the first direction to extend out of or retract into the storage slot 111. The vision drive unit 22 is disposed within the storage slot 111 and is used to drive the vision sensor 21 to move. The vision sensor 21 is used to capture images. The control device 3 is disposed in the housing 1 and electrically connected to the vision sensor 21 and the vision drive unit 22.

[0048] The technical solution of this utility model uses a housing 1 formed by the base 11 and the cover 12, which is convenient to carry and store. The storage slot 111 on the base 11 is used to place the device to be tested, providing a testing environment. The vision sensor 21 is movable in the first direction, so that when it needs to work, it can extend out of the storage slot 111 to take pictures of the required location, and when it does not need to work, it can retract into the storage slot 111, thus making it easy to carry. The control device 3 can control the operation and data processing of the entire vision inspection device, as well as control the vision drive unit 22 to adjust the position of the vision sensor 21. Therefore, compared with setting the vision sensor 21 externally, this technical solution can reduce complex wiring connections and provide a stable shooting position, thereby improving the ease of operation of the vision sensor 21.

[0049] It is understood that the control device 3 can establish an electrical connection with the device under test to detect its status. This electrical connection can be wired or wireless, and no particular limitation is made here. The control device 3 can be mounted on the base 11 or on the cover 12. In one embodiment, the control device 3 includes a display screen and multiple touchscreens, which are mounted on the cover 12. This arrangement allows operators to directly perform relevant operations via the control device 3 on the cover 12 when opening the cover 12 to operate and observe the device under test in the storage slot 111, such as starting or stopping detection and adjusting the parameters of the vision device 2.

[0050] It is understood that the vision sensor 21 can be directly connected to the output end of the vision drive unit 22, which can be a cylinder, linear motor, or other linear actuator, without particular limitation. However, direct connection would reduce the movement stability of the vision drive unit 22. Therefore, in one embodiment, the storage slot 111 is provided with a lifting bracket 23, which is movably arranged in a first direction. The vision sensor 21 is mounted on the lifting bracket 23, and the vision drive unit 22 drives the lifting bracket 23 to move. With this configuration, by providing a movable lifting bracket 23 in the storage slot 111 and mounting the vision sensor 21 on it, and having the vision drive unit 22 drive the lifting bracket 23 to move, instead of directly connecting the vision sensor 21 to the output end of the vision drive unit 22, the instability caused by direct connection with the vision drive unit 22 is reduced, thereby improving the stability of the vision sensor 21 during movement.

[0051] Furthermore, to improve the movement accuracy of the lifting bracket 23, in one embodiment, a threaded rod is provided at the lower part of the lifting bracket 23, and a driven wheel is sleeved on the outer periphery of the threaded rod. The driven wheel meshes with a driving wheel, and the vision drive unit 22 includes a rotary motor, which is connected to the driving wheel in a transmission manner. With this configuration, the rotation of the rotary motor drives the driving wheel to rotate, which in turn causes the driven wheel to rotate, thereby driving the threaded rod to move in a first direction. Due to the thread characteristics of the threaded rod, the lifting bracket 23 can move smoothly and accurately in the first direction, thus effectively improving the movement accuracy of the lifting bracket 23.

[0052] Because the vision sensor 21 needs to perform dynamic range imaging in different working environments, in one embodiment, the vision device 2 further includes an adjustment bracket 24, which is rotatably mounted on the lifting bracket 23 in at least one direction. The vision sensor 21 is mounted on the adjustment bracket 24 so that the angle of the vision sensor 21 can be adjusted. The industrial internet information detection device 100 also includes an angle adjustment drive unit, which is disposed on the lifting bracket 23 and used to drive the adjustment bracket 24 to rotate. The control device 3 is electrically connected to the angle adjustment drive unit. With this configuration, the adjustment bracket 24 can be rotatably mounted on the lifting bracket 23 in at least one direction. The vision sensor 21 is mounted on the adjustment bracket 24, and the angle adjustment drive unit drives the adjustment bracket 24 to rotate, thereby achieving an adjustable angle for the vision sensor 21. In this way, the control device 3 is electrically connected to the angle adjustment drive unit, which allows the operator to control the angle adjustment drive unit through the control device 3 to accurately adjust the angle of the vision sensor 21, so that it can adapt to the objects to be detected at various angles and distances, obtain more comprehensive and accurate information, and improve the adaptability and detection capability of the industrial Internet information detection device 100 in different working environments.

[0053] Specifically, in one embodiment, the adjusting bracket 24 includes a rotating disk 241 and a mounting disk 242. The rotating disk 241 is rotatably mounted on the lifting bracket 23 about an axis extending in a first direction; the mounting disk 242 is rotatably mounted on the rotating disk 241 about an axis extending in a second direction, which intersects with the first direction, and the mounting disk 242 is used for mounting the vision sensor 21; the angle adjustment drive unit includes a first rotation drive unit and a second rotation drive unit: the first rotation drive unit is disposed on the lifting bracket 23 to drive the rotating disk 241 to rotate; the second rotation drive unit is disposed on the rotating disk 241 to drive the mounting disk 242 to rotate. This configuration divides the adjusting bracket 24 into two parts: the rotating disk 241 and the mounting disk 242. The rotating disk 241 is rotatably mounted on the lifting bracket 23 about an axis extending in the first direction, and the mounting disk 242 is rotatably mounted on the rotating disk 241 about an axis extending in a second direction intersecting with the first direction. This dual-axis rotation design allows the vision sensor 21 to make precise angle adjustments in two different directions, greatly expanding its observation range and angular flexibility. Furthermore, the first rotation drive unit, mounted on the lifting bracket 23, drives the rotating disk 241, while the second rotation drive unit, mounted on the rotating disk 241, drives the mounting disk 242. This clearly defined driving method not only makes angle adjustment more precise and stable but also improves the efficiency of angle adjustment through simultaneous independent operation. Notably, the first rotation drive unit can control the vision sensor 21 to make a wide range of angle adjustments within a plane, while the second rotation drive unit, based on the former's rotation, can further fine-tune the vision sensor 21 within a plane perpendicular to the first direction. The combination of these two units enables precise control of the vision sensor 21's angle, meeting the needs of dynamic range imaging of targets at different angles in various complex working environments.

[0054] It can be understood that the cover 12 can be movably mounted on the base 11 in various ways. For example, it can be connected by a hinge, allowing the cover 12 to rotate and open around a certain edge of the base 11; or it can use a slide rail structure, with the cover 12 sliding along the slide rail on the base 11 to achieve opening and closing; or it can utilize a pneumatic or hydraulic device to raise and lower the cover 12 on the base 11 to achieve the purpose of opening or closing. These different movable settings can be selected according to specific usage needs and scenarios to meet the requirements for convenience and flexibility in operating the cover 12 under different circumstances. Specifically, in one embodiment, the base 11 includes a base plate 112 and a plurality of side portions 113 disposed around the periphery of the base plate 112. The plurality of side portions 113 and the base plate 112 together define the storage slot 111. The plurality of side portions 113 include a first side portion 1131 and a second side portion 1132 disposed opposite to each other. One end of the cover 12 is rotatably connected to the first side portion 1131. The vision device 2 is disposed within the storage slot 111 adjacent to the second side portion 1132. This configuration, by designing the base 11 as a base plate 112 and a plurality of side portions 113 around its periphery, with the plurality of side portions 113 and the base plate 112 jointly defining the storage slot 111, provides a relatively enclosed area with a certain amount of space for placing the device under test, thereby maintaining the stability of the device's placement and reducing interference from external factors in the device testing process. By rotatably connecting one end of the cover 12 to the first side portion 1131, the opening and closing action of the cover 12 is more flexible, allowing for convenient opening and closing of the storage slot 111. Positioning the vision device 2 within the storage slot 111 adjacent to the second side portion 1132 reduces obstruction and interference from the cover 12, ensuring that the vision sensor 21 is not restricted by the cover 12 during movement. This prevents situations where certain areas cannot be detected due to obstruction, guaranteeing its normal detection range.

[0055] Because the device under test placed in the storage slot 111 is subject to disturbances from the external environment, the accuracy of the test is reduced. Therefore, in one embodiment, the industrial internet information detection device 100 further includes a limiting component 4. The limiting component 4 is disposed within the storage slot 111 and corresponds to one side portion 113 of the storage slot 111. The distance between the limiting component 4 and the corresponding side portion 113 of the storage slot 111 is adjustable. With this configuration, by adjusting the distance between the corresponding side portion 113 of the storage slot 111 and the limiting component 4, the limiting component 4 can limit the position of the device under test placed in the storage slot 111. Specifically, the limiting component 4 can effectively block disturbances from the external environment to the device under test placed in the storage slot 111, reducing device position shifts or unnecessary influences caused by external environmental factors, thereby improving the stability of the device under test during the detection process. Furthermore, it is worth mentioning that the distance between the side portion 113 corresponding to the storage slot 111 and the limiting component 4 can be flexibly adjusted according to different sizes and types of devices to be tested, further ensuring the accuracy and reliability of the test and reducing the test error caused by improper placement of the device to be tested.

[0056] It is understood that the limiting component 4 can be implemented in various ways. For example, it can employ an elastic clamp structure, using the elastic deformation of the clamp to clamp the device under test and prevent it from moving within the storage slot 111. The elastic clamp can be adjusted according to the size of the device under test to adapt to different needs. This method is simple in structure, easy to operate, and can effectively limit the movement of the device under test. Alternatively, it can utilize a combination of sliding guide rails and sliders. Sliding guide rails are set on both sides of the storage slot 111, and sliders are installed on both sides of the device under test. Limiting is achieved by the slider sliding on the sliding guide rails. The sliding guide rails and sliders have high matching precision, ensuring the positional accuracy of the device under test, and are also easy to adjust and maintain. Another option is to use a magnetic limiting component 4, with magnetic components set on the inner wall of the storage slot 111 or on the device under test, using magnetic attraction to limit the movement of the device under test. The magnetic limiting component 4 is easy to install and disassemble, will not damage the device under test, and can also provide a strong limiting force. Furthermore, in one embodiment, the side portion 113 of the storage slot 111 includes a opposing side portion 113 opposite to the limiting component 4 and two adjacent side portions 113 adjacent to the opposing side portion 113; each of the two adjacent side portions 113 is provided with an abutment portion 13, which is movably connected along the length direction of the corresponding adjacent side portion 113, and the two abutment portions 13 are respectively abutting against the two ends of the limiting component 4. This configuration, with the abutment portions 13 movably connected to the adjacent side portions 113, allows for flexible adjustment according to different sizes of the devices to be tested or testing requirements, enabling the limiting component 4 to effectively limit the device to be tested within the storage slot 111, thereby more precisely restricting the movement of the device to be tested and preventing it from deviating from its predetermined position due to external disturbances during testing, further improving the accuracy and stability of the testing. It can also adapt to devices of different specifications and shapes, improving the versatility and practicality of the device. Specifically, in one embodiment, a sliding groove 14 is provided on the adjacent side portion 113, and a sliding block 15 is provided in the sliding groove 14. The sliding block 15 has a threaded hole, and the abutment portion 13 includes a bolt. The bolt is screwed into the threaded hole and can abut against the end of the limiting component 4. With this configuration, by rotating the bolt to allow it to move back and forth within the threaded hole, the bolt can abut against the end of the limiting component 4 to fix the limiting component 4, or the bolt can be separated from the limiting component 4, thereby adjusting the position of the limiting component 4 to accommodate devices of different sizes and specifications.

[0057] Since the limiting component 4 can limit the device under test from one direction, in order to further improve the limiting effect, in one embodiment, the limiting component 4 includes a limiting body 41 and a limiting protrusion 42 disposed on the limiting body 41 and adjustable along the length of the limiting body 41. With this configuration, when encountering devices of various specifications under test, by adjusting the position of the limiting protrusion 42 along the length of the limiting body 41, it can accurately fit other parts of the device under test, providing more precise limiting of the device under test from multiple angles. This effectively reduces the shaking, offset, or tilting of the device during the testing process, thereby greatly improving the limiting effect, ensuring the stability and accuracy of the testing process, and providing a more reliable foundation for subsequent testing work.

[0058] It is worth noting that the limiting body 41 can extend along its length until it abuts against the two adjacent sides 113. This further increases the limiting range and stability of the device to be tested in the storage slot 111, reduces the random shaking or displacement of the item in the storage slot 111, and better ensures the fixed position of the device to be tested during the testing process, thus improving the overall stability. The limiting body 41 can extend along its length and be spaced apart from the two adjacent sides 113. This allows the position of the limiting body 41 in the storage slot 111 to be moved quickly, and the angle between the limiting body 41 and the two adjacent sides 113 can be adjusted within a certain range to adapt to different types of devices to be tested, improving the flexibility of the testing.

[0059] Because the operation of the device is more difficult during the testing process, especially in low-light environments, the limiting protrusion 42 is provided with a storage groove 43. The storage groove 43 is equipped with a retractable lamp source assembly 44 for illumination. This arrangement allows the lamp source assembly 44 to be hidden when not in use, without interfering with the normal limiting function of the limiting protrusion 42, maintaining the simplicity and neatness of the limiting structure. When illumination is needed, the retractable lamp source assembly 44 can be flexibly extended to a suitable position to provide illumination for the device under test or to provide ambient lighting.

[0060] Furthermore, in one embodiment, the lamp source assembly 44 further includes a lamp source 441 and an adjustable guide tube 442. One end of the adjustable guide tube 442 is connected to the lamp source 441, and the other end of the adjustable guide tube 442 is rotatably disposed within the storage slot 43. This arrangement allows the operator to flexibly adjust the illumination direction of the lamp source 441 by rotating the adjustable guide tube 442 according to the specific location of the device under test and the testing requirements. When not in use, the lamp source 441 can be stored in the storage slot 43 without occupying additional space, making the entire limiting assembly 4 more compact and concise. When illumination is needed, it can be quickly deployed and its direction adjusted to meet the needs of different testing scenarios, improving the versatility and convenience of the equipment. The adjustable guide tube 442 includes a serpentine tube. The serpentine tube design gives it strong bending and torsional capabilities. This means that the lamp source 441 can be flexibly turned within the storage slot 43 via the serpentine tube, easily adapting to various testing angles and positional requirements.

[0061] In one embodiment, the outer side of the box 1 is provided with a handle to facilitate carrying by the operator.

[0062] In one embodiment, the housing 1 is provided with a snap-fit ​​structure, which makes the closed connection between the base 11 and the cover 12 more stable and facilitates the quick opening of the base 11 and the cover 12.

[0063] In one embodiment, the control device 3 is disposed on the cover 12, and the cover 12 is provided with heat dissipation holes. In this way, the heat generated by the control device 3 during operation can be dissipated through the heat dissipation holes, which is beneficial to the normal operation of the control device 3.

[0064] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. An industrial internet information detection device, characterized in that, include: The housing includes a base and a cover. The base has a storage slot on one side in a first direction for placing the device to be tested. The cover is movably mounted on the base to open or close the opening of the storage slot. A vision device includes a vision sensor and a vision actuator. The vision sensor is movably disposed in a first direction to extend out of or retract into a storage slot. The vision actuator is disposed within the storage slot and drives the vision sensor to move. The vision sensor is used to capture images. The control device is located in the housing and is electrically connected to the vision sensor and the vision drive unit.

2. The industrial internet information detection device as described in claim 1, characterized in that, The storage compartment is equipped with a lifting bracket, which is movable in a first direction. The vision sensor is installed on the lifting bracket, and the vision drive unit drives the lifting bracket to move.

3. The industrial internet information detection device as described in claim 2, characterized in that, The vision device further includes an adjustment bracket, which is rotatably mounted on the lifting bracket in at least one direction, and the vision sensor is mounted on the adjustment bracket so that the angle of the vision sensor can be adjusted. The industrial internet information detection device also includes an angle adjustment drive unit, which is disposed on the lifting bracket and is used to drive the adjustment bracket to rotate. The control device is electrically connected to the angle adjustment drive unit.

4. The industrial internet information detection device as described in claim 3, characterized in that, The adjustment bracket includes: A rotating disk is rotatably mounted on the lifting bracket about an axis extending in a first direction; and, A mounting plate is rotatably mounted on the rotating disk about an axis extending in a second direction, the second direction intersecting the first direction, and the mounting plate is for mounting the vision sensor; The angle adjustment drive unit includes: A first rotation drive unit is disposed on the lifting bracket for driving the rotating disk to rotate; and A second rotation drive unit is disposed on the rotating disk to drive the mounting disk to rotate.

5. The industrial internet information detection device as described in claim 1, characterized in that, The base includes a base plate and a plurality of side portions disposed on the periphery of the base plate, the plurality of side portions and the base plate together defining the storage slot; The plurality of sides include a first side and a second side disposed opposite to each other, one end of the cover is rotatably connected to the first side, and the visual device is disposed in the storage slot adjacent to the second side.

6. The industrial internet information detection device as described in claim 5, characterized in that, The industrial internet information detection device also includes a limiting component, which is disposed in the storage slot and is disposed on one side of the storage slot. The distance between the limiting component and the corresponding side of the storage slot is adjustable.

7. The industrial internet information detection device as described in claim 6, characterized in that, The side of the storage slot includes a opposite side opposite to the limiting component and two adjacent sides adjacent to the opposite side; Each of the two adjacent sides is provided with an abutment portion, which is movably connected along the length direction of the corresponding adjacent side, and the two abutment portions are provided to abut against the two ends of the limiting component.

8. The industrial internet information detection device as described in claim 7, characterized in that, The limiting component includes a limiting body and a limiting protrusion disposed on the limiting body and adjustable along the length of the limiting body.

9. The industrial internet information detection device as described in claim 8, characterized in that, The limiting protrusion is provided with a storage groove, and the storage groove is provided with a retractable and movable light source assembly, which is used for lighting.

10. The industrial internet information detection device as described in claim 9, characterized in that, The light source assembly also includes a light source and an adjustable guide tube, one end of which is connected to the light source and the other end of which is rotatably disposed within the storage slot.