Intelligent detection device for cable on-off control
By using intelligent cameras and automatic judgment systems, the intelligent detection device solves the problem of inaccurate manual detection of cable continuity, and achieves efficient and accurate cable continuity detection.
Patent Information
- Application Number
- CN202511156224.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2025-10-28
AI Technical Summary
The current method of testing the continuity of aviation cables relies on manual visual inspection of a computer monitor, which is prone to human error, resulting in inaccurate test results, increased workload, and reduced testing efficiency.
An intelligent detection device is used to identify special markings on the surface of the cable using an intelligent camera. The edge computing module and a microcontroller control the light and sound warning devices to automatically determine the continuity of the cable and avoid human error.
It improves the accuracy and efficiency of cable continuity testing, reduces the workload of staff, and minimizes labor waste.
Smart Images

Figure CN120847679A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of continuity control and testing technology for aviation cables, specifically to an intelligent testing device for cable continuity control. Background Technology
[0002] Before leaving the factory, aviation cables need to undergo continuity testing. Failure to do so can lead to cable failure, severely impacting the main unit assembly schedule and even flight safety. Currently, cable continuity testing relies on manual visual inspection of a computer monitor. The testing process is as follows: First, the tester manually inserts the cable into the test cable socket on the testing equipment, manually judging the correspondence between the cable under test and the test cable socket. After powering on, the continuity of the cable under test is tested. If the computer monitor displays that the cable is functioning normally, it is a cable ready for shipment. If the computer monitor displays that the cable cannot be used normally after insertion, the cable has a continuity quality problem and cannot be shipped.
[0003] In the aforementioned cable continuity testing process, relying on human judgment of the continuity display on the computer screen may lead to human error. This could result in a cable with normal continuity not displaying a good continuity status when inserted into the cable socket, thus causing a cable with good continuity to be judged as having abnormal continuity. Consequently, the cable continuity test results are inaccurate, easily leading to the false detection of cables with good continuity. This not only increases the workload of the inspectors in the cable continuity testing process but also reduces the testing efficiency. Summary of the Invention
[0004] To address the aforementioned problems, this invention provides an intelligent detection device for controlling cable continuity.
[0005] The technical problem solved by this invention is achieved by the following technical solution:
[0006] In this invention, a special identification mark is set on the surface of the cable. Before the cable under test is inserted into the cable testing socket, the special mark is identified by a smart camera. The collected special mark data is transmitted to the edge computing module for calculation. The edge computing module can receive and calculate the data transmitted by the data acquisition module. After the calculation is completed, the mark data is transmitted to the microcontroller. The microcontroller transmits further instruction information to the controller. The controller reacts and controls the light alarm next to the cable socket to light up. The cable under test is inserted into the lit cable socket. After insertion, the cable continuity signal is fed back to the microcontroller by the host computer. Then, the controller controls the light alarm and the sound alarm to take action. If the light alarm is green and the sound alarm does not sound, it means that there is no quality problem with the cable continuity. If the light alarm is flashing red and the sound alarm sounds, it means that there is a quality problem with the cable continuity and further processing is required.
[0007] According to one aspect of this application, an intelligent detection device for controlling cable continuity is provided, comprising mechanical structural components and detection and control components;
[0008] The mechanical structure components consist of a clamping member 12, a connecting member 13, a connecting screw 14, a testing member 15, a test bench 16, a cable socket 17, a connector 19, a test platform 20, a washer 21, a hexagonal nut 22, and a bolt 23.
[0009] The detection and control component consists of a mouse 1, a typing device 2, a host computer 3, a light warning device 4, a sound warning device 5, a power button 6, a display screen 7, a recognizer 8, a record button 9, a detection button 10, a smart camera 11, a plug indicator light 18, a microcontroller 24, a controller 25, an edge computing module 26, and a data acquisition module 27.
[0010] The clamping member 12 is the core connecting member. It is connected to the test bench 16 by threaded fastening to determine the position of the identifier 8, and at the same time, it supports the connecting member 13 and the identifier 8.
[0011] The connecting member 13 is the core connecting member. One end of it is connected to the clamping member 12 by a threaded connection, and the other end is connected to the identifier 8 by a ball joint. The position of the identifier 8 can be adjusted according to actual needs through the ball joint, which plays the role of supporting, fixing and fine-tuning the position of the identifier 8.
[0012] The connecting screw 14 is the core connecting component. Most of the components are connected by the connecting screw 14. The use of the connecting screw 14 facilitates the disassembly and assembly of the connection and can effectively improve the connection efficiency.
[0013] The test component 15 is the main testing component. It is fixed to the upper surface of the test bench 16 by connecting screws 14. Various types of cable sockets 17 and plug indicator lights 18 are distributed on it. The cable to be tested can be inserted into the corresponding cable socket 17 by the guidance of the plug indicator light 18, which serves to support the cable to be tested.
[0014] The test bench 16 is the guarantee for the realization of the function. Various components are connected on it, which play a supporting and connecting role. The test bench 16 can be used to identify cable plugs and test the continuity of cables.
[0015] The cable socket 17 is one of the main working components. It can be used to insert the cable under test under the guidance of the plug indicator light 18. It is mainly used for connecting the cable under test to prevent incorrect insertion when facing various types of cables.
[0016] The connector 19 is a connecting component that is fixed to the identifier 8 by washers, nuts and bolts. It serves to support the identifier 8 and the smart camera 11, and the bolt connection is more reliable.
[0017] The test platform 20 is the unique identification part of the cable under test. It is connected to the test bench 16 using a gasket 21, a hexagonal nut 22 and a bolt 23, which has high reliability. During operation, the unique identifier of the cable under test is placed at the position of the test platform 20 and the identifier 8 to complete the identification of the unique identifier of the cable under test.
[0018] The mouse 1 is an operating component used to handle basic operations of the host computer, mainly for manually selecting the connection channels of different types of cables.
[0019] The input device 2 is an input device used for inputting and deleting information from the host computer. It is mainly used to input cable continuity parameters to adapt to different technical requirements.
[0020] The host computer 3 is a client processing component that can receive cable model data from the microcontroller 24, select the transmission channel according to the cable model data, and provide feedback on the on / off status. The feedback signal is then transmitted to the microcontroller 24 to control the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0021] The light warning device 4 is an optical warning component. When the host computer 3 transmits the feedback signal to the microcontroller 24, the light warning device 4 emits a red light flashing to warn of a quality problem with the cable's continuity. When the light warning device 4 emits a green light flashing, it indicates that the cable's continuity is intact.
[0022] The sound alarm 5 is an acoustic warning component. When the host computer 3 transmits the feedback signal to the microcontroller 24, the sound alarm 5 emits a warning sound to warn that there is a quality problem with the continuity of the cable. If the sound alarm 5 does not emit a sound, it means that the continuity of the cable is intact.
[0023] The power button 6 is a switch component, used to control the opening and closing of the host computer 3 and the display screen 7;
[0024] The display screen 7 is a display component. On one hand, it is interconnected with the identifier 8 and can display the cable type identified by the identifier 8. On the other hand, it is used for displaying the data processed by the host computer 3 and also for processing the data entered by the input device 2.
[0025] The identifier 8 is an identification component used to identify the cable model to be detected, and controls the corresponding plug indicator 18 to emit light prompts according to the cable model to prevent the operator from inserting the cable plug into the wrong socket. At the same time, the identifier 8 also transmits the identification information to the host computer 3 so that the host computer 3 can select the appropriate channel.
[0026] The recording button 9 is the core recording component, used to record the continuity of the cable. When a quality problem occurs, pressing the recording button 9 will record the data such as the model and serial number of the cable under test, and transmit it to the host computer 3 via the microcontroller 24 for future reference.
[0027] The detection button 10 is the switch button for the recognizer 8. Press the detection button 10 during detection, and press the detection button 10 again to turn off the recognizer 8 after all detections are completed.
[0028] The smart camera 11 is an image recognition component, mainly used to identify the unique identification code of the cable, which mainly includes information such as model and serial number. When in use, the unique identification code of the cable is placed on the test platform 20 and identified by the smart camera 11. The identification information is then transmitted to the microcontroller 24 via the edge computing module 26 and the data acquisition module 27 for further operation.
[0029] The plug indicator light 18 is a display component. When the smart camera 11 performs identification and transmits the identification information to the microcontroller 24 via the edge computing module 26 and the data acquisition module 27, the microcontroller 24 will instruct the controller 25 to issue a command to drive the plug indicator light 18 at the corresponding cable socket position to light up, indicating the position of the cable socket to be tested and preventing the operator from plugging the cable into the wrong socket.
[0030] The microcontroller 24 is an important processing component. It can process the image acquisition information of the edge computing module 26 and the data acquisition module 27, transmit the information to the host computer 3, and instruct the controller 25 to control the corresponding plug indicator light 18 to light up. It can also receive information from the host computer 3 to instruct the controller 25 to control the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0031] The controller 25 is the core control component, and the controller 29 can control the plug indicator light 18, the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0032] The edge computing module 26 is the core component for detection data processing. The edge computing module 26 can receive and process the data transmitted by the data acquisition module 27, and then transmit the processed data to the microcontroller 24 to guide the microcontroller 24 in making decisions.
[0033] The data acquisition module 27 is the core data acquisition component. It can collect data signals of unique identifiers on the cable captured by the smart camera 11. The process is as follows: the data acquisition module 27 collects data signals of unique identifiers on the cable captured by the smart camera 11, and then transmits the collected data to the edge computing module 26 for calculation. The edge computing module 26 receives and calculates the data transmitted by the data acquisition module 27. After the calculation is completed, the data is transmitted to the microcontroller 24. The microcontroller 24 instructs the controller 25 to light up the corresponding plug indicator light 18.
[0034] The advantages of this application are:
[0035] Analysis of existing cable continuity testing methods reveals that manual testing can lead to errors in cable continuity judgment, particularly influenced by the tester's condition. Furthermore, the display data can be misinterpreted, blurring the logical relationship between displayed data and pass / fail criteria. Visual inspection can also cause data misreading, resulting in inaccurate continuity test results, wasting non-destructive cables, and wasting significant labor.
[0036] To address and avoid the aforementioned problems, this invention provides an intelligent detection method and device for controlling cable continuity. This device enables intelligent detection of cable continuity, reducing errors caused by human judgment. It uses a camera to capture and identify special markings on the cable surface, and then a data acquisition module collects the data signals from these markings. The microcontroller transmits the information to a controller, which responds by illuminating the indicator light on the cable connector to prevent incorrect insertion of the cable. Furthermore, the continuity quality of the cable is determined by comparing information from the host computer and the test bench.
[0037] Using this invention to test cable continuity avoids the need for manual judgment of the continuity display on the computer screen, and prevents cables with good continuity from being judged as having continuity problems after testing. This improves the accuracy and efficiency of cable continuity testing, and also reduces the workload of workers and frees up manpower. Attached Figure Description
[0038] Figure 1 This is an isometric drawing of an intelligent detection device used for cable continuity control;
[0039] Figure 2 This is the front view of an intelligent detection device used for cable continuity control;
[0040] Figure 3 This is a control flowchart for an intelligent detection device used for cable continuity control.
[0041] The components include: 1. Mouse, 2. Input device, 3. Host computer, 4. Light warning device, 5. Sound warning device, 6. Power button, 7. Display screen, 8. Recognizer, 9. Record button, 10. Detection button, 11. Smart camera, 12. Clamping component, 13. Connecting component, 14. Connecting screw, 15. Test component, 16. Test bench, 17. Cable socket, 18. Plug indicator light, 19. Connector, 20. Test platform, 21. Washer, 22. Hex nut, 23. Bolt, 24. Microcontroller, 25. Controller, 26. Edge computing module, and 27. Data acquisition module. Detailed Implementation
[0042] The present application is described in detail below with reference to the embodiments, but the present application is not limited to these embodiments.
[0043] Example 1
[0044] An intelligent detection device for controlling cable continuity comprises mechanical structural components and detection and control components;
[0045] The mechanical structure components consist of a clamping member 12, a connecting member 13, a connecting screw 14, a testing member 15, a test bench 16, a cable socket 17, a connector 19, a test platform 20, a washer 21, a hexagonal nut 22, and a bolt 23.
[0046] The detection and control component consists of a mouse 1, a typing device 2, a host computer 3, a light warning device 4, a sound warning device 5, a power button 6, a display screen 7, a recognizer 8, a record button 9, a detection button 10, a smart camera 11, a plug indicator light 18, a microcontroller 24, a controller 25, an edge computing module 26, and a data acquisition module 27.
[0047] The clamping member 12 is the core connecting member. It is connected to the test bench 16 by threaded fastening to determine the position of the identifier 8, and at the same time, it supports the connecting member 13 and the identifier 8.
[0048] The connecting member 13 is the core connecting member. One end of it is connected to the clamping member 12 by a threaded connection, and the other end is connected to the identifier 8 by a ball joint. The position of the identifier 8 can be adjusted according to actual needs through the ball joint, which plays the role of supporting, fixing and fine-tuning the position of the identifier 8.
[0049] The connecting screw 14 is the core connecting component. Most of the components are connected by the connecting screw 14. The use of the connecting screw 14 facilitates the disassembly and assembly of the connection and can effectively improve the connection efficiency.
[0050] The test component 15 is the main testing component. It is fixed to the upper surface of the test bench 16 by connecting screws 14. Various types of cable sockets 17 and plug indicator lights 18 are distributed on it. The cable to be tested can be inserted into the corresponding cable socket 17 by the guidance of the plug indicator light 18, which serves to support the cable to be tested.
[0051] The test bench 16 is the guarantee for the realization of the function. Various components are connected on it, which play a supporting and connecting role. The test bench 16 can be used to identify cable plugs and test the continuity of cables.
[0052] The cable socket 17 is one of the main working components. It can be used to insert the cable under test under the guidance of the plug indicator light 18. It is mainly used for connecting the cable under test to prevent incorrect insertion when facing various types of cables.
[0053] The connector 19 is a connecting component that is fixed to the identifier 8 by washers, nuts and bolts. It serves to support the identifier 8 and the smart camera 11, and the bolt connection is more reliable.
[0054] The test platform 20 is the unique identification part of the cable under test. It is connected to the test bench 16 using a gasket 21, a hexagonal nut 22 and a bolt 23, which has high reliability. During operation, the unique identifier of the cable under test is placed at the position of the test platform 20 and the identifier 8 to complete the identification of the unique identifier of the cable under test.
[0055] The mouse 1 is an operating component used to handle basic operations of the host computer, mainly for manually selecting the connection channels of different types of cables.
[0056] The input device 2 is an input device used for inputting and deleting information from the host computer. It is mainly used to input cable continuity parameters to adapt to different technical requirements.
[0057] The host computer 3 is a client processing component that can receive cable model data from the microcontroller 24, select the transmission channel according to the cable model data, and provide feedback on the on / off status. The feedback signal is then transmitted to the microcontroller 24 to control the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0058] The light warning device 4 is an optical warning component. When the host computer 3 transmits the feedback signal to the microcontroller 24, the light warning device 4 emits a red light flashing to warn of a quality problem with the cable's continuity. When the light warning device 4 emits a green light flashing, it indicates that the cable's continuity is intact.
[0059] The sound alarm 5 is an acoustic warning component. When the host computer 3 transmits the feedback signal to the microcontroller 24, the sound alarm 5 emits a warning sound to warn that there is a quality problem with the continuity of the cable. If the sound alarm 5 does not emit a sound, it means that the continuity of the cable is intact.
[0060] The power button 6 is a switch component, used to control the opening and closing of the host computer 3 and the display screen 7;
[0061] The display screen 7 is a display component. On one hand, it is interconnected with the identifier 8 and can display the cable type identified by the identifier 8. On the other hand, it is used for displaying the data processed by the host computer 3 and also for processing the data entered by the input device 2.
[0062] The identifier 8 is an identification component used to identify the cable model to be detected, and controls the corresponding plug indicator 18 to emit light prompts according to the cable model to prevent the operator from inserting the cable plug into the wrong socket. At the same time, the identifier 8 also transmits the identification information to the host computer 3 so that the host computer 3 can select the appropriate channel.
[0063] The recording button 9 is the core recording component, used to record the continuity of the cable. When a quality problem occurs, pressing the recording button 9 will record the data such as the model and serial number of the cable under test, and transmit it to the host computer 3 via the microcontroller 24 for future reference.
[0064] The detection button 10 is the switch button for the recognizer 8. Press the detection button 10 during detection, and press the detection button 10 again to turn off the recognizer 8 after all detections are completed.
[0065] The smart camera 11 is an image recognition component, mainly used to identify the unique identification code of the cable, which mainly includes information such as model and serial number. When in use, the unique identification code of the cable is placed on the test platform 20 and identified by the smart camera 11. The identification information is then transmitted to the microcontroller 24 via the edge computing module 26 and the data acquisition module 27 for further operation.
[0066] The plug indicator light 18 is a display component. When the smart camera 11 performs identification and transmits the identification information to the microcontroller 24 via the edge computing module 26 and the data acquisition module 27, the microcontroller 24 will instruct the controller 25 to issue a command to drive the plug indicator light 18 at the corresponding cable socket position to light up, indicating the position of the cable socket to be tested and preventing the operator from plugging the cable into the wrong socket.
[0067] The microcontroller 24 is an important processing component. It can process the image acquisition information of the edge computing module 26 and the data acquisition module 27, transmit the information to the host computer 3, and instruct the controller 25 to control the corresponding plug indicator light 18 to light up. It can also receive information from the host computer 3 to instruct the controller 25 to control the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0068] The controller 25 is the core control component, and the controller 29 can control the plug indicator light 18, the light warning device 4 and the sound warning device 5 to perform corresponding actions.
[0069] The edge computing module 26 is the core component for detection data processing. The edge computing module 26 can receive and process the data transmitted by the data acquisition module 27, and then transmit the processed data to the microcontroller 24 to guide the microcontroller 24 in making decisions.
[0070] The data acquisition module 27 is the core data acquisition component. It can collect data signals of unique identifiers on the cable captured by the smart camera 11. The process is as follows: the data acquisition module 27 collects data signals of unique identifiers on the cable captured by the smart camera 11, and then transmits the collected data to the edge computing module 26 for calculation. The edge computing module 26 receives and calculates the data transmitted by the data acquisition module 27. After the calculation is completed, the data is transmitted to the microcontroller 24. The microcontroller 24 instructs the controller 25 to light up the corresponding plug indicator light 18.
[0071] The specific work process is as follows:
[0072] Step 1: Before use, perform a visual inspection of the testing device, check whether the device label is complete and whether the appearance is intact. If it is complete and intact, proceed to the next step.
[0073] Step 2: Use clamping component 12 to fix the identifier 8 onto the test bench 16, ensuring that it is pressed firmly without any shaking;
[0074] Step 3: Press the power button 6 to turn on the host computer 3, check the continuity of the host computer 3 circuit, and ensure that the detection device is functioning properly;
[0075] Step 4: Press the detection button 10 to turn on the identifier 8, and adjust the relative position of the identifier 8 and the connecting component 13 so that the identifier 8 can clearly observe the upper surface of the test platform 20.
[0076] Step 5: Use mouse 1 and typing device 2 to input the model of the cable to be tested to ensure that the host computer 3 meets the working requirements;
[0077] Step 6: Place the cable to be tested on the upper surface of the test platform 20, use the identifier 8 to identify the cable according to its unique identification code, and light up the plug indicator light 18 on the test platform 20. Then insert the plug of the cable to be tested.
[0078] Step 7: The detection device will, according to the attached... Figure 3 The process involves conducting a continuity test. If the light alarm 4 emits a green light and the sound alarm 5 does not respond, the cable has good continuity. If the light alarm 4 flashes a red light and the sound alarm 5 emits a "beep beep beep" warning sound, the cable's continuity does not meet the requirements. At this time, the record button 9 should be pressed to record the non-compliance. Then, steps six and seven are repeated until all cable continuity measurements are completed.
[0079] Step 8: After testing all the cables to be tested in sequence, press the test button 10 and the power button 6 to power off the entire test device and return it to its original position.
[0080] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any modifications or substitutions made by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. An intelligent detection device for controlling the continuity of cables, characterized in that, It consists of mechanical structural components and detection and control components; The mechanical structure components consist of a clamping member (12), a connecting member (13), a connecting screw (14), a testing member (15), a test bench (16), a cable socket (17), a connector (19), a test platform (20), a washer (21), a hexagonal nut (22), and a bolt (23); The detection and control component consists of a mouse (1), a typing device (2), a host computer (3), a light warning device (4), a sound warning device (5), a power button (6), a display screen (7), a recognition device (8), a recording button (9), a detection button (10), a smart camera (11), a plug indicator light (18), a microcontroller (24), a controller (25), an edge computing module (26), and a data acquisition module (27).
2. The intelligent detection device for cable continuity control according to claim 1, characterized in that, The clamping member (12) is the core connecting member. The clamping member (12) is connected to the test bench (16) by thread fastening, thereby determining the position of the identifier (8) and supporting the connecting member (13) and the identifier (8). The connecting member (13) is the core connecting member. One end is connected to the clamping member (12) by a threaded connection, and the other end is connected to the identifier (8) by a ball joint. The position of the identifier (8) can be adjusted according to actual needs through the ball joint, which plays the role of supporting, fixing and fine-tuning the position of the identifier (8). The connecting screw (14) is the core connecting component. Most of the components are connected by the connecting screw (14). The use of the connecting screw (14) facilitates the disassembly of the connection and can effectively improve the connection efficiency.
3. The intelligent detection device for cable continuity control according to claim 2, characterized in that, The test component (15) is the main testing component. It is fixed to the upper surface of the test bench (16) by connecting screws (14). Various types of cable sockets (17) and plug indicator lights (18) are distributed on it. The cable to be tested can be inserted into the corresponding cable socket (17) through the guidance of the plug indicator light (18), which plays the role of carrying the cable to be tested. The test bench (16) is the guarantee for the realization of the function. Various components are connected on it, which play a supporting and connecting role. The test bench (16) can be used to identify the cable plug and test the continuity of the cable.
4. The intelligent detection device for cable continuity control according to claim 3, characterized in that, The cable socket (17) is one of the main working components. It can be used to insert the cable under test under the guidance of the plug indicator light (18). It is mainly used for connecting the cable under test to prevent incorrect insertion when facing various types of cables. The connector (19) is a connecting component that is fixed to the identifier (8) by means of washers, nuts and bolts. It serves to support the identifier (8) and the smart camera (11), and the bolt connection is more reliable. The test platform (20) is the identification part of the unique identifier of the cable under test. It is connected to the test bench (16) by using a gasket (21), a hexagonal nut (22) and a bolt (23). It has high reliability. When working, the unique identifier of the cable under test is placed in the position of the test platform (20) and the identifier (8) to complete the identification of the unique identifier of the cable under test.
5. The intelligent detection device for cable continuity control according to claim 4, characterized in that, The mouse (1) is an operating component used to handle basic operations of the host computer, mainly used to manually select the connection channel of different types of cables; The input device (2) is an input device used for inputting and deleting information from the host computer. It is mainly used to input cable continuity parameters to adapt to different technical requirements.
6. The intelligent detection device for cable continuity control according to claim 5, characterized in that, The host computer (3) is a client processing component that can receive cable model data from the microcontroller (24), select the transmission channel according to the cable model data, and provide feedback on the on / off status. It then transmits the feedback signal to the microcontroller (24) to control the light warning device (4) and the sound warning device (5) to perform corresponding actions. The light warning device (4) is an optical warning component. When the host computer (3) sends a feedback signal to the microcontroller (24), the light warning device (4) emits a red light flashing to warn that there is a quality problem with the continuity of the cable. When the light warning device (4) emits a green light flashing, it indicates that the continuity of the cable is good. The sound alarm (5) is an acoustic warning component. When the host computer (3) sends a feedback signal to the microcontroller (24), the sound alarm (5) emits a warning sound to warn that there is a quality problem with the continuity of the cable. If the sound alarm (5) does not emit a sound, it means that the continuity of the cable is good.
7. The intelligent detection device for cable continuity control according to claim 6, characterized in that, The power button (6) is a switch component, and the power button (6) is used to control the opening and closing of the host computer (3) and the display screen (7); The display screen (7) is a display component. On the one hand, it is interconnected with the identifier (8) and can display the cable type identified by the identifier (8). On the other hand, it is used for the display of the host computer (3) to display the processing data of the host computer, and also for processing the data entered by the input device (2).
8. The intelligent detection device for cable continuity control according to claim 7, characterized in that, The identifier (8) is an identification component used to identify the cable model to be detected, and to control the corresponding plug indicator (18) to emit light prompts according to the cable model, so as to prevent the operator from inserting the cable plug into the wrong socket. At the same time, the identifier (8) will also transmit the identification information to the host computer (3) so that the host computer (3) can select the appropriate channel. The recording button (9) is the core recording component, used to record the continuity of the cable. When a quality problem occurs, pressing the recording button (9) will record the data such as the model and number of the cable under test, and transmit it to the host computer (3) through the microcontroller (24) for future reference. The detection button (10) is the switch button of the identifier (8). Press the detection button (10) during detection. After all detections are completed, press the detection button (10) again to turn off the identifier (8). The intelligent camera (11) is an image recognition component, mainly used to identify the unique identification code of the cable, which mainly includes information such as model and number. When in use, the unique identification code of the cable is placed on the test platform (20) and identified by the intelligent camera (11). The identification information is then transmitted to the microcontroller (24) through the edge computing module (26) and the data acquisition module (27) for further operation. The plug indicator light (18) is a display component. When the smart camera (11) performs identification and transmits the identification information to the microcontroller (24) via the edge computing module (26) and the data acquisition module (27), the microcontroller (24) will instruct the controller (25) to issue a command to drive the plug indicator light (18) at the corresponding cable socket position to light up, indicating the position of the cable socket to be tested, and preventing the operator from plugging the cable into the wrong socket.
9. The intelligent detection device for cable continuity control according to claim 8, characterized in that, The microcontroller (24) is an important processing component. The microcontroller (24) can process the image acquisition information of the edge computing module (26) and the data acquisition module (27), and transmit the information to the host computer (3). It also instructs the controller (25) to control the corresponding plug indicator (18) to light up. It also receives information from the host computer (3) to instruct the controller (25) to control the light warning device (4) and the sound warning device (5) to perform corresponding actions.
10. The intelligent detection device for cable continuity control according to claim 9, characterized in that, The controller (25) is the core control component. The controller 29 can control the plug indicator (18), the light warning device (4) and the sound warning device (5) to perform corresponding actions. The edge computing module (26) is the core component for detection data processing. The edge computing module (26) can receive and calculate the data transmitted by the data acquisition module (27). After the calculation is completed, the data is transmitted to the microcontroller (24) to guide the microcontroller (24) to make decisions. The data acquisition module (27) is the core data acquisition component, which can collect the data signal of the unique identifier on the cable captured by the smart camera (11). The process is as follows: the data acquisition module (27) collects the data signal of the unique identifier on the cable captured by the smart camera (11), and then transmits the collected data to the edge computing module (26) for calculation. The edge computing module (26) receives and calculates the data transmitted by the data acquisition module (27). After the calculation is completed, the data is transmitted to the microcontroller (24), and the microcontroller (24) instructs the controller (25) to light up the corresponding plug indicator light (18).
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