Finished product testing equipment for optoelectronic device production
By designing transmission components and testing components in the finished test equipment of optoelectronic devices, ensuring that each optoelectronic device can be detected separately, solving the missed problems in existing equipment and improving the accuracy and efficiency of testing.
Patent Information
- Application Number
- CN202421713312.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-19
AI Technical Summary
During the inspection, existing finished optoelectronic device testing equipment is prone to omissions such that multiple optoelectronic devices can be detected simultaneously but can only hold one unqualified product.
A finished test equipment for the production of optoelectronic devices was designed. By setting up transmission components and test components, the transmission components transmit the optoelectronic devices from the inlet port to the discharge port. The test components detect whether the optoelectronic devices are qualified. By fixing components and adjusting components, only one optoelectronic device can be detected at a time to prevent missing.
A single test of optoelectronic devices is realized, which improves the accuracy of the test, avoids omissions, and enhances the efficiency and reliability of the detection.
Smart Images

Figure CN222901832U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of finished product testing of optoelectronic devices, and specifically relates to a finished product testing device for the production of optoelectronic devices. Background Art
[0002] Optoelectronic devices are the key and core components of optoelectronic technology, are the forefront research fields of modern optoelectronic technology and microelectronic technology, and are an important part of information technology. Optoelectronic devices are devices made according to the photoelectric effect.
[0003] For example, a finished product testing device for the production of optoelectronic devices recorded in the patent with the patent announcement number CN216420229U includes a conveying component and a detection rack. The optoelectronic devices are conveyed through the conveying component, and the passing optoelectronic devices are detected by the detection component. When unqualified products are detected, the first air cylinder extends the clamping seat so that the clamping seat approaches the unqualified product, and then the clamping plate moves in the movable groove to clamp the unqualified product. Then, the first motor drives the first air cylinder to rotate, and the unqualified product is clamped and sent to the storage box, which is convenient for sorting the unqualified products and saves labor.
[0004] However, the detection probe of this device needs to detect multiple optoelectronic devices at the same position simultaneously, while the supporting clamping component can only clamp one unqualified optoelectronic device, and it is easy to miss.
[0005] Based on this, a finished product testing device for the production of optoelectronic devices is now provided, which can eliminate the disadvantages of the existing device. Summary of the Utility Model
[0006] The purpose of the utility model is to provide a finished product testing device for the production of optoelectronic devices, which can perform single testing on optoelectronic devices, prevent omission, and improve the accuracy of testing.
[0007] To achieve the above purpose, the utility model provides the following technical solutions:
[0008] A finished product testing device for the production of optoelectronic devices, comprising:
[0009] A machine shell;
[0010] Support legs, which are arranged below the machine shell;
[0011] A first storage box, which is arranged at the discharge port position of the machine shell;
[0012] A second storage box, which is arranged at the discharge port position of the machine shell on one side close to the first storage box;
[0013] It further includes a conveying component, which comprises a conveying box arranged inside the casing. A third motor is provided at a position of the conveying box close to the discharge port. The third motor is fixedly connected to the conveying box. A first shaft column is provided at the output end of the third motor. The other end of the first shaft column is rotatably connected to the conveying box. A first cylindrical shaft is fixedly connected to the first shaft column. A second shaft column is fixedly connected to the conveying box at a position close to the feed port. A second cylindrical shaft is rotatably connected to the second shaft column. A conveyor belt is arranged between the first cylindrical shaft and the second cylindrical shaft. The conveyor belt is in transmission connection with the first cylindrical shaft and the second shaft column. An adjusting component is arranged between the conveying box and the casing.
[0014] On the basis of the above technical solution, the present utility model further provides the following optional technical solutions:
[0015] In an optional solution: the adjusting component includes a first motor fixed to one side of the casing. A first threaded rod is provided at the output end of the first motor. One end of the first threaded rod is rotatably connected to a fixing plate. The fixing plate is fixedly connected to the conveying box. A first limiting plate is rotatably connected to the first threaded rod. The first limiting plate is fixedly connected to the conveying box. A second limiting plate cooperating with the first limiting plate is threadedly connected to the first threaded rod. A first limiting rod is fixedly connected between the first limiting plate and the fixing plate close to the position of the first threaded rod. The second limiting plate is slidably connected to the first limiting rod. A limiting component is arranged at a position of the second limiting plate far from the feed port.
[0016] In an optional solution: the limiting component includes a third limiting plate fixedly connected to the casing. A second motor is provided on one side of the third limiting plate close to the casing. The second motor is fixedly connected to the casing. A second threaded rod is provided at the output end of the second motor. The second threaded rod is rotatably connected to the third limiting plate. A fourth limiting plate cooperating with the third limiting plate is provided on one side close to the third limiting plate. The upper end of the fourth limiting plate is threadedly connected to the second threaded rod. Second limiting rods are slidably connected to both sides of the upper end of the fourth limiting plate close to the second threaded rod. One end of each second limiting rod is fixedly connected to the third limiting plate. A pushing component is arranged in the vacancy between the first limiting plate, the second limiting plate, the third limiting plate and the fourth limiting plate.
[0017] In an optional solution: the pushing component includes a fixing block fixed to the upper end of one side of the conveying box. A telescopic motor is provided on one side of the fixing block. A push plate is provided at the output end of the telescopic motor. A testing component is arranged above the push plate.
[0018] In an optional solution: the testing component includes a fixing column fixedly connected to the casing. A testing head is provided at the lower end of the fixing column.
[0019] In an alternative embodiment: Limiting pieces are provided at one ends of the second threaded rod and the second limiting rod away from the third limiting plate.
[0020] In an alternative embodiment: The telescopic motor is electrically connected to the test head.
[0021] In an alternative embodiment: One ends of the third limiting plate and the fourth limiting plate at the discharge port are in a horn shape.
[0022] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0023] By providing a conveying assembly, the optoelectronic device can be conveyed from the feed port to the discharge port, and a testing assembly is provided to detect whether the optoelectronic device is qualified. The provided fixing assembly and adjusting assembly enable the test head to detect only one optoelectronic device each time, preventing omission. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is a schematic structural view of the present utility model.
[0025] Figure 2 is a schematic structural view of the adjusting assembly, fixing assembly, and testing assembly in an embodiment of the present utility model.
[0026] Figure 3 is a schematic structural view of the conveying assembly in an embodiment of the present utility model.
[0027] Annotation of reference numerals: 1, housing; 2, leg; 3, first storage box; 4, second storage box; 5, conveying box; 6, fixing plate; 7, first limiting plate; 8, second limiting plate; 9, first motor; 10, first threaded rod; 11, first limiting rod; 12, fixing block; 13, telescopic motor; 14, push plate; 15, test head; 16, fixing column; 17, second motor; 18, second threaded rod; 19, third limiting plate; 20, fourth limiting plate; 21, second limiting rod; 22, conveyor belt; 23, first shaft column; 24, first barrel shaft; 25, second shaft column; 26, second barrel shaft; 27, third motor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] In order to make the objectives, technical solutions, and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.
[0029] Embodiment 1
[0030] In an embodiment, as Figures 1 - 3As shown, a finished product testing device for optoelectronic device production includes a machine case 1, support legs 2, a first storage box 3, and a second storage box 4. The support legs 2 are provided below the machine case 1; the first storage box 3 is provided at the discharge port position of the machine case 1; the second storage box 4 is provided at the discharge port position of the machine case 1 near one side of the first storage box 3; and it further includes a conveying assembly. The conveying assembly includes a conveying box 5. The conveying box 5 is provided inside the machine case 1. A third motor 27 is provided at a position of the conveying box 5 near the discharge port. The third motor 27 is fixedly connected to the conveying box 5. A first shaft column 23 is provided at the output end of the third motor 27. The other end of the first shaft column 23 is rotatably connected to the conveying box 5. A first cylindrical shaft 24 is fixedly connected to the first shaft column 23. A second shaft column 25 is fixedly connected to the conveying box 5 near the feed port. A second cylindrical shaft 26 is rotatably connected to the second shaft column 25. A conveyor belt 22 is provided between the first cylindrical shaft 24 and the second cylindrical shaft 26. The conveyor belt 22 is in transmission connection with the first cylindrical shaft 24 and the second shaft column 25. An adjusting assembly is provided between the conveying box 5 and the machine case 1.
[0031] In this embodiment, the third motor 27 drives the first shaft column 23 to rotate, driving the push plate 14 fixedly connected to the first shaft column 23 to rotate, thereby driving the conveyor belt 22 to convey. The conveyor belt 22 conveys the optoelectronic device from the feed port to the discharge port.
[0032] In one embodiment, as Figure 2 shown, the adjusting assembly includes a first motor 9. The first motor 9 is fixed to one side of the machine case 1. A first threaded rod 10 is provided at the output end of the first motor 9. One end of the first threaded rod 10 is rotatably connected to a fixing plate 6. The fixing plate 6 is fixedly connected to the conveying box 5. A first limiting plate 7 is rotatably connected to the first threaded rod 10. The first limiting plate 7 is fixedly connected to the conveying box 5. A second limiting plate 8 that cooperates with the first limiting plate 7 is threadedly connected to the first threaded rod 10. A first limiting rod 11 is fixedly connected between the first limiting plate 7 and the fixing plate 6 near the first threaded rod 10. The second limiting plate 8 is slidably connected to the first limiting rod 11. A limiting assembly is provided near a position of the second limiting plate 8 away from the feed port. The first motor 9 drives the first threaded rod 10 to rotate, thereby driving the second limiting plate 8 threadedly connected to the first threaded rod 10 to move.
[0033] In one embodiment, as Figure 2As shown in the figure, the limiting component includes a third limiting plate 19, which is fixedly connected to the casing 1. A second motor 17 is provided on one side of the third limiting plate 19 close to the casing 1, and the second motor 17 is fixedly connected to the casing 1. A second threaded rod 18 is provided at the output end of the second motor 17, and the second threaded rod 18 is rotatably connected to the third limiting plate 19. A fourth limiting plate 20 that cooperates with the third limiting plate 19 is provided on one side close to the third limiting plate 19. The upper end of the fourth limiting plate 20 is threadedly connected to the second threaded rod 18. Second limiting rods 21 are slidably connected to both sides of the upper end of the fourth limiting plate 20 close to the second threaded rod 18. One end of each second limiting rod 21 is fixedly connected to the third limiting plate 19. A pushing component is provided in the gap between the first limiting plate 7, the second limiting plate 8, the third limiting plate 19, and the fourth limiting plate 20. The second motor 17 drives the second threaded rod 18 to rotate, driving the fourth limiting plate 20 threadedly connected to the second threaded rod 18 to move.
[0034] In one embodiment, as Figure 2 shown, the pushing component includes a fixed block 12, which is fixed to the upper end of one side of the transfer box 5. A telescopic motor 13 is provided on one side of the fixed block 12, and a push plate 14 is provided at the output end of the telescopic motor 13. A testing component is provided above the push plate 14. The output end of the telescopic motor 13 drives the push plate 14 to expand and contract, which can push the unqualified optoelectronic devices away and prevent the unqualified optoelectronic devices from entering the space between the third limiting plate 19 and the fourth limiting plate 20.
[0035] In one embodiment, as Figure 2 shown, the testing component includes a fixed column 16, which is fixedly connected to the casing 1. A testing head 15 is provided at the lower end of the fixed column 16. The testing head 15 is used to test whether the optoelectronic devices passing below it are qualified.
[0036] In one embodiment, as Figure 2 shown, limiting pieces are provided at the ends of the second threaded rod 18 and the second limiting rods 21 far from the third limiting plate 19; the setting of the limiting pieces prevents the fourth limiting plate 20 from falling off the second threaded rod 18 and the second limiting rods 21.
[0037] In one embodiment, as Figure 2 shown, the telescopic motor 13 is electrically connected to the testing head 15. After the testing head 15 detects an unqualified optoelectronic device, it sends an electrical signal to the telescopic motor 13, and the telescopic motor 13 drives the push plate 14 to push the unqualified optoelectronic device away.
[0038] Embodiment 2
[0039] In one embodiment, as Figure 2As shown, one end of the discharge port of the third limiting plate 19 and the fourth limiting plate 20 is trumpet-shaped. It is not easy to block and accumulate optoelectronic devices at the outlet.
[0040] The above embodiment discloses a finished product testing device for optoelectronic device production. When in use, a worker places the optoelectronic device to be tested between the first limiting plate 7 and the second limiting plate 8 from the feed port, adjusts the distances between the first limiting plate 7, the second limiting plate 8, the third limiting plate 19 and the fourth limiting plate 20 to be such that only one optoelectronic device can pass through, and then the worker starts the third motor 27, places the optoelectronic device to be tested on the conveyor belt 22 between the first limiting plate 7 and the second limiting plate 8. The test head 15 tests the passing optoelectronic devices. When an unqualified optoelectronic device is encountered, the test head 15 sends an electrical signal to the telescopic motor 13, and the telescopic motor 13 pushes the unqualified optoelectronic device away to the other half of the conveyor belt 22 far from the fourth limiting plate 20. The qualified optoelectronic devices will be conveyed into the first storage box 3 through the restrictions of the third limiting plate 19 and the conveyor belt 22, and the unqualified optoelectronic devices will be conveyed into the second storage box 4 by the conveyor belt 22.
[0041] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed in the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A finished product testing device for producing optoelectronic devices, comprising: Housing (1); A supporting leg (2), wherein the supporting leg (2) is arranged below the casing (1); A first storage box (3), the first storage box (3) being arranged at the discharge port of the casing (1); A second storage box (4), the second storage box (4) being arranged at a material outlet position of the casing (1) on one side close to the first storage box (3); The invention is characterized in that it also includes a conveying component, which includes a conveying box (5), the conveying box (5) is arranged inside the casing (1), the conveying box (5) is provided with a third motor (27) near the discharge port, the third motor (27) is fixedly connected to the conveying box (5), the output end of the third motor (27) is provided with a first shaft column (23), the other end of the first shaft column (23) is rotatably connected to the conveying box (5), and the first shaft column (23) is fixedly connected to a first barrel shaft (24); the conveying box (5) is fixedly connected with a second shaft column (25) near the feed port, the second shaft column (25) is rotatably connected to a second barrel shaft (26), a conveyor belt (22) is provided between the first barrel shaft (24) and the second barrel shaft (26), the conveyor belt (22) is transmission-connected to the first barrel shaft (24) and the second shaft column (25), and an adjustment component is provided between the conveying box (5) and the casing (1).
2. The finished product testing equipment for optoelectronic device production according to claim 1, characterized in that: The adjusting component comprises a first motor (9), the first motor (9) is fixed to one side of the casing (1), a first threaded rod (10) is provided at the output end of the first motor (9), one end of the first threaded rod (10) is rotatably connected to a fixing plate (6), the fixing plate (6) is fixedly connected to a conveying box (5), a first limiting plate (7) is rotatably connected to the first threaded rod (10), the first limiting plate (7) is fixedly connected to the conveying box (5), a second limiting plate (8) matched with the first limiting plate (7) is threadedly connected to the first threaded rod (10), a first limiting rod (11) is fixedly connected at a position between the first limiting plate (7) and the fixing plate (6) close to the first threaded rod (10), the second limiting plate (8) is slidably connected to the first limiting rod (11), and a limiting component is provided at a position close to the second limiting plate (8) away from the feed port.
3. The finished product testing equipment for producing optoelectronic devices according to claim 2, characterized in that: The limiting assembly comprises a third limiting plate (19), the third limiting plate (19) being fixedly connected to the housing (1), a second motor (17) being provided on a side of the third limiting plate (19) close to the housing (1), the second motor (17) being fixedly connected to the housing (1), a second threaded rod (18) being provided at an output end of the second motor (17), the second threaded rod (18) being rotatably connected to the third limiting plate (19), and a second threaded rod (18) being provided on a side close to the third limiting plate (19) and being connected to the third limiting plate (19). The fourth limiting plate (20) is matched with the second threaded rod (19), the upper end of the fourth limiting plate (20) is threadedly connected to the second threaded rod (18), the upper end of the fourth limiting plate (20) is slidably connected to the second limiting rod (21) on both sides of the second threaded rod (18), one end of the second limiting rod (21) is fixedly connected to the third limiting plate (19), and a pushing component is provided in the gap between the first limiting plate (7), the second limiting plate (8) and the third limiting plate (19) and the fourth limiting plate (20).
4. The finished product testing equipment for producing optoelectronic devices according to claim 3, characterized in that: The pushing assembly comprises a fixed block (12), the fixed block (12) being fixed to the upper end of one side of the conveying box (5), a telescopic motor (13) being provided on one side of the fixed block (12), a push plate (14) being provided at the output end of the telescopic motor (13), and a test assembly being provided above the push plate (14).
5. The finished product testing equipment for producing optoelectronic devices according to claim 4, characterized in that: The test assembly comprises a fixed column (16), the fixed column (16) is fixedly connected to the housing (1), and a test head (15) is provided at the lower end of the fixed column (16).
6. The finished product testing equipment for optoelectronic device production according to claim 3, characterized in that: The second threaded rod (18) and the second limiting rod (21) are both provided with limiting plates at one end away from the third limiting plate (19).
7. The finished product testing equipment for producing optoelectronic devices according to claim 4, characterized in that: The telescopic motor (13) is electrically connected to the test head (15).
8. The finished product testing equipment for producing optoelectronic devices according to claim 3, characterized in that: One end of the discharge port of the third limiting plate (19) and the fourth limiting plate (20) is in a trumpet shape.
Citation Information
Patent Citations
Photoelectronic device test equipment
CN216420229U