Detection device
By designing a detection device for remote information collection, the problem of low efficiency in traditional remote processing methods has been solved, achieving efficient and low-cost remote information acquisition.
Patent Information
- Application Number
- CN202520007021.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Traditional remote development methods, which require developers to be physically present on-site, are inconvenient due to high time costs, expensive travel expenses, and delays in problem resolution, making it difficult to efficiently obtain complete information about the object under test remotely.
A detection device was designed, including a housing, a detection platform, a camera module, a controller, and a communication module. Information is collected through a light source, the detection platform, and the camera module, and the information is encrypted and remotely transmitted to a server using the communication module, thereby realizing remote control and information collection.
It enables efficient acquisition of complete information about the object under test from a remote location, improving R&D efficiency and reducing costs.
Smart Images

Figure CN223613372U_ABST
Abstract
Description
Technical Field
[0001] This case relates to a detection device, and more particularly to a detection device for collecting information from an object to be tested. Background Technology
[0002] With the rapid development of technology and the advancement of globalization, product development and subsequent maintenance often involve cross-regional team collaboration. In this context, when product problems arise or the actual situation needs to be confirmed, the traditional approach of relying on remote developers to go to the site faces inconveniences and shortcomings such as high time costs, expensive travel expenses, and delays in problem resolution. Utility Model Content
[0003] This invention provides a detection device suitable for communication connection to a server. The detection device includes a housing, a detection platform, a camera module, a controller, and a communication module. The housing has a light source. The detection platform is movably disposed within the housing and is used to fix the object to be tested and to rotate or move the object. The camera module is movably disposed within the housing and is used to photograph the object to be tested. The controller is electrically connected to the light source, the detection platform, and the camera module, and is used for information acquisition. The communication module is electrically connected to the controller and is used to encrypt the acquired information before remote transmission.
[0004] Based on the above, in the testing device of this case, the testing platform is used to fix the object to be tested and rotate or move the object to be tested, the camera module is used to take pictures of the object to be tested, the controller is used to control the light source, the testing platform and the camera module to collect information, and the communication module is used to encrypt the collected information and transmit it remotely to the server. In this way, complete information of the object to be tested can be collected remotely, which helps to improve R&D efficiency and reduce costs. Attached Figure Description
[0005] Figure 1 This is the circuit block diagram of the detection device in this case;
[0006] Figure 2 yes Figure 1 A three-dimensional schematic diagram of the detection device;
[0007] Figure 3 yes Figure 2 A three-dimensional schematic diagram of the detection platform of the detection device;
[0008] Figure 4 and Figure 5 yes Figure 3 A breakdown diagram of the detection platform from different perspectives;
[0009] Figure 6 yes Figure 2 A magnified schematic diagram of the detection device from different angles;
[0010] Figure 7 See Figure 2 A three-dimensional schematic diagram of the camera module, the first sliding mechanism, the second sliding mechanism, and the rotating mechanism of the detection device;
[0011] Figure 8 and Figure 9 yes Figure 7 The camera module, the first sliding mechanism, the second sliding mechanism, and the rotating mechanism are exploded from different perspectives.
[0012] Explanation of reference numerals in the attached figures
[0013] 100: Detection device;
[0014] 110: Box;
[0015] 111: Light source;
[0016] 111a: Light stripe;
[0017] 120: Testing platform;
[0018] 121: Base;
[0019] 122: First universal joint;
[0020] 123: Hydraulic cylinder;
[0021] 124: Second universal joint;
[0022] 125: Platform;
[0023] 125a: Connector;
[0024] 125b: pedestal;
[0025] 130: Camera module;
[0026] 131: The First Body;
[0027] 132: The second body;
[0028] 132a: First connecting block;
[0029] 133: The Third Body;
[0030] 133a: Second connecting block;
[0031] 134: Camera;
[0032] 140: Controller;
[0033] 150: Communication module;
[0034] 170: First sliding mechanism;
[0035] 171: First linear guide rail;
[0036] 172: First linear slider;
[0037] 173: First screw shaft;
[0038] 174: First servo motor;
[0039] 175: First screw and nut;
[0040] 180: Second sliding mechanism;
[0041] 181: Second linear guide rail;
[0042] 182: Second linear slider;
[0043] 183: Second screw shaft;
[0044] 184: Second servo motor;
[0045] 185: Second screw nut;
[0046] 190: Rotating mechanism;
[0047] 191: First pivot assembly;
[0048] 192: First turntable assembly;
[0049] 193: Second pivot assembly;
[0050] 194: Second turntable assembly;
[0051] 195: Third pivot assembly;
[0052] 196: Third turntable assembly;
[0053] 200: Server;
[0054] XYZ: Rectangular coordinates. Detailed Implementation
[0055] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 6 To facilitate understanding, reading, and detailed explanation, rectangular coordinates XYZ have been added to the accompanying drawings. The detection device 100 is designed for communication connection with the server 200. The detection device 100 includes a housing 110, a detection platform 120, a camera module 130, a controller 140, and a communication module 150.
[0056] The box 110 has light sources 111 arranged in a stacked manner in the X-Y plane. A detection platform 120 is movably arranged in the box 110 and is used to fix and rotate or move an object to be detected, which can be a notebook computer, a keyboard, a mouse, a motherboard, or other consumer electronic products, without any particular limitation. A camera module 130 is movably arranged in the box 110 and is used to take pictures of the object to be detected. A controller 140 is electrically connected to the light sources 111, the detection platform 120, and the camera module 130 and is used to control the light sources 111, the detection platform 120, and the camera module 130 to collect information. A communication module 150 is electrically connected to the controller 140 and is used to remotely transmit the collected information after encryption. A server 200 is communicatively connected to the communication module 150 and is used to receive the encrypted information, analyze the information, and provide feedback information to the controller 140, so that the complete information of the object to be detected can be collected remotely, which helps to improve the research and development efficiency and reduce the cost.
[0057] In actual use, the on-site personnel can place the object to be detected on the detection platform 120. The remote personnel can send instructions through the server 200, input the instructions to the controller 140 through the communication module 150, and remotely control the light sources 111, the detection platform 120, and the camera module 130. The remote personnel can completely open the light sources 111 in part, locally, or entirely according to the needs, control the detection platform 120 to adjust the object to be detected to a position and an angle at which the target part can be photographed, and control the camera module 130 to a good shooting position and angle to take pictures of the object to be detected to collect information. In this way, the remote personnel can collect the complete information of the object to be detected, which helps to improve the research and development efficiency and reduce the cost.
[0058] In an embodiment, the light sources 111 include a plurality of light strips 111a arranged side by side in the box 110. The light strips 111a can be controlled to be partially, locally, or entirely illuminated according to the actual illumination needs.
[0059] Please refer to Figure 2 , Figure 3 , Figure 4 and Figure 5In an embodiment, the detection platform 120 comprises a base 121, a plurality of first universal joints 122, a plurality of hydraulic cylinders 123, a plurality of second universal joints 124, and a holding platform 125. The base 121 is fixed to the bottom of the box 110, the first universal joints 122 are connected to the base 121, one end of each of the hydraulic cylinders 123 is connected to the first universal joints 122, the second universal joints 124 are respectively connected to the other end of each of the hydraulic cylinders 123, and the holding platform 125 is connected to the second universal joints 124, so that the holding platform 125 has a high degree of freedom and can rotate and move freely in the orthogonal coordinates X-Y-Z.
[0060] In an embodiment, the holding platform 125 comprises a connecting seat 125a and a platform seat 125b, and the platform seat 125b is rotatably arranged in the connecting seat 125a.
[0061] Please refer to Figure 2 、 Figure 6 、 Figure 7 、 Figure 8 and Figure 9 In an embodiment, the camera module 130 comprises a first seat 131, a second seat 132, a third seat 133, and a camera 134. The first seat 131 is fixed to the top of the box 110, and is located on the opposite side of the base 121. The second seat 132 is slidably arranged in the first seat 131 along the X-axis direction. The third seat 133 is slidably arranged in the second seat 132 along the Y-axis direction. The camera 134 is rotatably arranged in the third seat 133 along the X-axis direction, the Y-axis direction, and the Z-axis direction. The specific mechanism for achieving the sliding and rotation of the above components is not particularly limited.
[0062] In an embodiment, the detection device 100 further comprises a first sliding mechanism 170 and a second sliding mechanism 180. The second seat 132 is slidably arranged in the first seat 131 along the X-axis direction through the first sliding mechanism 170. The third seat 133 is slidably arranged in the second seat 132 along the Y-axis direction through the second sliding mechanism 180.
[0063] In an embodiment, the first sliding mechanism 170 comprises a first linear slide rail 171, a first linear slide block 172, a first screw shaft 173, a first servo motor 174, and a first screw nut 175. The first linear slide rail 171 is connected to the first seat 131. The first linear slide block 172 is connected to the second seat 132 and is slidably arranged in the first linear slide rail 171 along the X-axis direction. The first screw shaft 173 is connected to the first seat 131. The first servo motor 174 is connected to the first seat 131 and the first screw shaft 173. The first screw nut 175 is connected to the second seat 132 and is slidably arranged in the first screw shaft 173 along the X-axis direction.
[0064] In an embodiment, the second sliding mechanism 180 comprises a second linear slide rail 181, a second linear slide block 182, a second screw shaft 183, a second servo motor 184, and a second screw nut 185. The second linear slide rail 181 is connected to the second seat body 132, the second linear slide block 182 is connected to the third seat body 133, the second linear slide block 182 is slidably arranged along the Y-axis direction on the second linear slide rail 181, the second screw shaft 183 is connected to the second seat body 132, the second servo motor 184 is connected to the second seat body 132 and the second screw shaft 183, the second screw nut 185 is connected to the third seat body 133, and the second screw nut 185 is slidably arranged along the Y-axis direction on the second screw shaft 183.
[0065] In an embodiment, the detection device 100 further comprises a rotating mechanism 190, wherein the camera 134 is rotatably arranged on the third seat body 133 through the rotating mechanism 190.
[0066] In an embodiment, the rotating mechanism 190 comprises a first rotating shaft assembly 191, a first rotating disc assembly 192, a second rotating shaft assembly 193, a second rotating disc assembly 194, a third rotating shaft assembly 195, and a third rotating disc assembly 196. The first rotating shaft assembly 191 is arranged on the third seat body 133, one end of the first rotating disc assembly 192 is rotatably arranged along the Z-axis direction on the first rotating shaft assembly 191, the second rotating shaft assembly 193 is connected to the other end of the first rotating disc assembly 192, one end of the second rotating disc assembly 194 is rotatably arranged along the Y-axis direction on the second rotating shaft assembly 193, the third rotating shaft assembly 195 is connected to the other end of the second rotating disc assembly 194, the third rotating disc assembly 196 is rotatably arranged along the X-axis direction on the third rotating shaft assembly 195, and the camera 134 is connected to the third rotating disc assembly 196.
[0067] In an embodiment, the second seat body 132 further comprises a first connecting block 132a, and the third seat body 133 further comprises a second connecting block 133a, wherein the first connecting block 132a is fixedly connected to the first screw nut 175, and the second connecting block 133a is fixedly connected to the second screw nut 185.
[0068] In summary, in the detection device of the present case, the detection platform is used to fix and rotate or move the object to be detected, the camera module is used to take pictures of the object to be detected, the controller is used to control the light source, the detection platform, and the camera module to collect information, the communication module is used to encrypt and remotely transmit the collected information, and the server is used to receive the encrypted information for analysis and provide feedback information to the controller. Thus, the complete information of the object to be detected can be collected remotely, which helps to improve the research and development efficiency and reduce the cost.
Claims
1. A detection device, suitable for communication connection to a server, characterized in that, The application relates to a detection device, which comprises a box body with a light source, a detection platform movably arranged in the box body and used for fixing and rotating or moving an object to be detected, a camera module movably arranged in the box body and used for shooting the object to be detected, a controller electrically connected with the light source, the detection platform and the camera module and used for controlling the light source, the detection platform and the camera module to collect information, and a communication module electrically connected with the controller and used for transmitting the collected information to a server after encryption. The light source comprises a plurality of light strips arranged side by side in the box body. The detection platform comprises a base fixed in the box body, a plurality of first universal joints connected with the base, a plurality of hydraulic cylinders with one end connected with the plurality of first universal joints respectively, a plurality of second universal joints connected with the other end of the plurality of hydraulic cylinders respectively, and a supporting table connected with the plurality of second universal joints. The supporting table comprises a connecting seat and a pedestal rotatably arranged in the connecting seat. The camera module comprises a first seat fixed in the box body, a second seat slidably arranged in the first seat, a third seat slidably arranged in the second seat, and a camera rotatably arranged in the third seat. The application further comprises a first sliding mechanism by which the second seat is slidably arranged in the first seat, and a second sliding mechanism by which the third seat is slidably arranged in the second seat. The first sliding mechanism comprises a first linear sliding rail connected with the first seat, a first linear sliding block connected with the second seat and slidably arranged in the first linear sliding rail, a first screw shaft connected with the first seat, a first servo motor connected with the first seat and the first screw shaft, and a first screw nut connected with the second seat and slidably arranged in the first screw shaft.
2. The detection device of claim 1, wherein, The second sliding mechanism comprises a second linear sliding rail connected with the second seat, a second linear sliding block connected with the third seat and slidably arranged in the second linear sliding rail, a second screw shaft connected with the second seat, a second servo motor connected with the second seat and the second screw shaft, and a second screw nut connected with the third seat and slidably arranged in the second screw shaft.
3. The detection device of claim 1, wherein, The application further comprises a rotating mechanism by which the camera is rotatably arranged in the third seat. The rotating mechanism comprises a first rotating shaft assembly arranged in the third seat, a first rotating disc assembly with one end rotatably arranged in the first rotating shaft assembly, a second rotating shaft assembly connected with the other end of the first rotating disc assembly, a second rotating disc assembly with one end rotatably arranged in the second rotating shaft assembly, a third rotating shaft assembly connected with the other end of the second rotating disc assembly, and a third rotating disc assembly rotatably arranged in the third rotating shaft assembly, wherein the camera is connected with the third rotating disc assembly. 4. The detection device of claim 3, wherein, 5. The detection device of claim 1, wherein, 6. The detection device of claim 5, wherein, 7. The detection device of claim 6, wherein, 8. The detection device of claim 6, wherein, 9. The detection device of claim 5, wherein, 10. The detection device of claim 9, wherein,