Alternating impedance and insulation detection equipment
By using alternating impedance and insulation testing equipment, and adopting linear modules and cylinder-driven probes for automated testing, the problem of low production efficiency caused by manual testing is solved, and the automatic separation of good and defective products is achieved, thereby improving production efficiency.
Patent Information
- Application Number
- CN202422362554.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-09-26
AI Technical Summary
In the prior art, manual detection of impedance and insulation conditions during the production of electronic products leads to low production efficiency and affects the progress of the production line.
Alternating impedance and insulation testing equipment is used, including feed rails, left and right material transfer grippers and alternating detection components. Linear modules and cylinder-driven probes are used for automated testing to separate good and defective products.
It realizes the automated detection of electronic products, improves the detection efficiency, reduces the waiting time, ensures that the production process is not affected, and automatically separates good and bad products.
Smart Images

Figure CN223461661U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of detection, especially an alternating impedance and insulation detection equipment. BACKGROUND
[0002] Electronic products need to be detected in the production process, specifically the internal resistance and insulation condition, to ensure the subsequent processing is an effective process, which usually needs manual taking down electronic products one by one in the middle position of the front and rear processing sections for detection, because the production rate is fast, the subsequent production efficiency is slow in the process of manual detection, which affects the progress of the whole production line. UTILITY MODEL CONTENT
[0003] One purpose of the utility model is to provide an alternating impedance and insulation detection equipment, which automatically detects electronic products one by one and separates good products from defective products.
[0004] To achieve this purpose, the utility model adopts the following technical scheme:
[0005] An alternating impedance and insulation detection equipment, comprising a feeding track, a left material moving clamp jaw, a right material moving clamp jaw and an alternating detection assembly, the feeding track is in front of the alternating detection assembly, the left material moving clamp jaw is located on the left side of the alternating detection assembly, the right material moving clamp jaw is located on the right side of the alternating detection assembly, the alternating detection assembly comprises a left detection linear module, a right detection linear module, a lower test horizontal moving module and an upper test support, the upper test support is fixed with an upper test air cylinder, the driving end of the upper test air cylinder is vertically connected with an upper probe downward, the lower test horizontal moving module is installed with a lower probe, the driving end of the left detection linear module is connected with a left detection jig, the driving end of the right detection linear module is connected with a right detection jig, the left detection jig and the right detection jig move back and forth horizontally between the positions of the upper probe and the lower probe.
[0006] As a preferred technical scheme, the driving end of the lower test horizontal moving module is installed with a lower test front and rear module, the driving end of the lower test front and rear module is connected with a lower test upper and lower module, the lower probe is fixed on the driving end of the lower test upper and lower module, and a lower test light source is arranged below the lower test upper and lower module.
[0007] As a preferred technical scheme, the left side material moving horizontal module is connected with a left side material moving vertical module at a driving end, and the left side material moving clamping jaw is installed at a driving end of the left side material moving vertical module.
[0008] As a preferred technical scheme, the front of the feeding track is provided with a material returning track, a material returning horizontal moving cylinder is arranged between the front end of the feeding track and the rear end of the material returning track, a material returning vertical moving cylinder is connected with the driving end of the material returning horizontal moving cylinder, and a material returning pneumatic clamping jaw is installed on the driving end of the material returning vertical moving cylinder.
[0009] As a preferred technical scheme, the front of the material returning track is provided with a defective track, a defective horizontal moving cylinder is arranged between the upper end of the defective track and the rear end of the feeding track, a defective vertical moving cylinder is connected with the driving end of the defective horizontal moving cylinder, and a defective pneumatic clamping jaw is installed on the driving end of the defective vertical moving cylinder.
[0010] As a preferred technical scheme, the front end of the feeding track is provided with a material blocking assembly, the material blocking assembly comprises a material blocking horizontal cylinder, the driving end of the material blocking horizontal cylinder is connected with a material blocking vertical cylinder, and a material blocking plate is connected downwardly at the driving end of the material blocking vertical cylinder.
[0011] As a preferred technical scheme, the front end of the feeding track is provided with a material returning track, a material returning horizontal moving cylinder is arranged between the front end of the feeding track and the rear end of the material returning track, a material returning vertical moving cylinder is connected with the driving end of the material returning horizontal moving cylinder, and a material returning pneumatic clamping jaw is installed on the driving end of the material returning vertical moving cylinder.
[0012] As a preferred technical scheme, the rear of the alternating detection assembly is provided with a discharging track, a docking rack is arranged above both ends of the discharging track, a slide rail and a pushing cylinder are transversely installed on the docking rack, a pushing plate is connected with the driving end of the pushing cylinder, the pushing plate slides on the slide rail, and a docking track is arranged below the docking rack and connected with the discharging track.
[0013] The alternating impedance and insulation detection equipment is used for internal resistance and insulation detection of electronic products, and can automatically perform the detection process without manual participation, so that good products and defective products are distinguished, the production before and after is not affected, and time is saved. BRIEF DESCRIPTION OF DRAWINGS
[0014] The utility model will be further explained in detail below according to the drawings and embodiments.
[0015] Figure 1An overall structure schematic view of an alternating impedance and insulation detection device according to the embodiment;
[0016] Figure 2 A structure schematic view of an alternating detection assembly according to the embodiment;
[0017] Figure 3 A structure schematic view of a left detection linear module and a right detection linear module according to the embodiment;
[0018] Figure 4 A structure schematic view of an upper test portion according to the embodiment;
[0019] Figure 5 A structure schematic view of a lower test portion according to the embodiment;
[0020] Figure 6 A structure schematic view of a feeding track according to the embodiment;
[0021] Figure 7 A structure schematic view of an ejection track according to the embodiment.
[0022] Figures 1 to 7 In the figure:
[0023] 1, feeding track; 2, left material moving clamp jaw; 3, right material moving clamp jaw; 4, alternating detection assembly; 5, left detection linear module; 6, right detection linear module; 7, lower test horizontal moving module; 8, upper test support; 9, upper test cylinder; 10, upper probe; 11, lower probe; 12, left detection jig; 13, right detection jig; 14, lower test front and back module; 15, lower test up and down module; 16, lower test light source; 17, left material moving horizontal module; 18, right material moving horizontal module; 19, left material moving vertical module; 20, right material moving vertical module; 21, material returning track; 22, material returning horizontal moving cylinder; 23, material returning vertical moving cylinder; 24, material returning pneumatic clamp jaw; 25, defective track; 26, defective horizontal moving cylinder; 27, defective vertical moving cylinder; 28, defective pneumatic clamp jaw; 29, material blocking assembly; 30, material blocking horizontal cylinder; 31, material blocking vertical cylinder; 32, material blocking plate; 33, incoming material sensor; 34, ejection track; 35, docking frame; 36, slide rail; 37, pushing cylinder; 38, pushing plate; 39, docking track. DETAILED DESCRIPTION
[0024] The technical scheme of the present application will be further illustrated below in combination with the drawings and through specific embodiments.
[0025] As Figures 1 to 7As shown, in the embodiment, an alternating impedance and insulation detection device includes a feeding track 1, a left material moving clamp 2, a right material moving clamp 3 and an alternating detection assembly 4. The feeding track 1 is in front of the alternating detection assembly 4. The left material moving clamp 2 is on the left side of the alternating detection assembly 4. The right material moving clamp 3 is on the right side of the alternating detection assembly 4. The alternating detection assembly 4 includes a left detection linear module 5, a right detection linear module 6, a lower test horizontal moving module 7 and an upper test support 8. The upper test support 8 is fixed with an upper test cylinder 9. The driving end of the upper test cylinder 9 is vertically connected with an upper probe 10 downward. The lower test horizontal moving module 7 is installed with a lower probe 11. The driving end of the left detection linear module 5 is connected with a left detection fixture 12. The driving end of the right detection linear module 6 is connected with a right detection fixture 13. The left detection fixture 12 and the right detection fixture 13 move back and forth horizontally between the positions of the upper probe 10 and the lower probe 11.
[0026] The left material moving clamp 2 and the right material moving clamp 3 are responsible for clamping the electronic products on the feeding track 1 to the alternating detection assembly 4 for detection. The left detection linear module 5 and the right detection linear module 6 are alternately moved to the position of the upper test support 8. The upper test cylinder 9 controls the downward movement of the upper probe 10. The lower probe 11 driven by the lower test horizontal moving module 7 tests the internal resistance and insulation of the electronic products. The left-right alternating test process greatly reduces the waiting time in the process of moving and transferring the electronic products, improves the detection efficiency, and does not affect the production process when connected between the production equipment. After the detection is completed, the left material moving clamp 2 and the right material moving clamp 3 discharge the electronic products.
[0027] The driving end of the lower test horizontal moving module 7 is installed with a lower test front-back module 14. The driving end of the lower test front-back module 14 is connected with a lower test up-down module 15. The lower probe 11 is fixed on the driving end of the lower test up-down module 15. The lower test up-down module 15 is provided below with a lower test light source 16. On the lower test structure, the front-back position is controlled by the lower test front-back module 14. The left-right position is controlled by the lower test horizontal moving module 7. The up-down position is controlled by the lower test up-down module 15. The lower probe 11 can be accurately connected to the electronic products and has the light provided by the lower test light source 16.
[0028] The left side material moving horizontal module 17 is connected with a left side material moving vertical module 19 at the driving end, and the left side material moving clamp jaw 2 is installed at the driving end of the left side material moving vertical module 19. The right side material moving horizontal module 18 is connected with a right side material moving vertical module 20 at the driving end, and the right side material moving clamp jaw 3 is installed at the driving end of the right side material moving vertical module 20. The feeding and discharging of the electronic products is horizontally conveyed by the left side material moving horizontal module 17 and the right side material moving horizontal module 18, and vertically conveyed by the left side material moving vertical module 19 and the right side material moving vertical module 20.
[0029] The front of the feeding track 1 is provided with a material returning track 21, and the front end of the feeding track 1 and the rear end of the material returning track 21 are provided with a material returning horizontal moving cylinder 22. The driving end of the material returning horizontal moving cylinder 22 is connected with a material returning vertical moving cylinder 23, and the driving end of the material returning vertical moving cylinder 23 is installed with a material returning pneumatic clamp jaw 24. The front of the material returning track 21 is provided with a defective track 25, and the upper end of the defective track 25 and the rear end of the feeding track 1 are provided with a defective horizontal moving cylinder 26. The driving end of the defective horizontal moving cylinder 26 is connected with a defective vertical moving cylinder 27, and the driving end of the defective vertical moving cylinder 27 is installed with a defective pneumatic clamp jaw 28. The electronic products can return to the front end of the feeding track 1 from the material returning track 21 for detection again, and the defective materials can be clamped by the defective pneumatic clamp jaw 28 to the defective track 25 for discharging under the joint action of the defective horizontal moving cylinder 26 and the defective vertical moving cylinder 27.
[0030] The front end of the feeding track 1 is provided with a material blocking assembly 29, which includes a material blocking horizontal cylinder 30, and the driving end of the material blocking horizontal cylinder 30 is connected with a material blocking vertical cylinder 31. The driving end of the material blocking vertical cylinder 31 is connected downward with a material blocking plate 32. The front end of the feeding track 1 is provided with a material incoming sensor 33. In the process of conveying the electronic products, when the material incoming sensor 33 senses the electronic products, the material blocking assembly 29 can be used to position and block the subsequent incoming materials, so that the electronic products can be effectively clamped for detection.
[0031] The rear of the alternating detection assembly 4 is provided with a discharging track 34, and the upper ends of the two ends of the discharging track 34 are provided with a docking frame 35. The docking frame 35 is transversely installed with a sliding rail 36 and a pushing cylinder 37. The driving end of the pushing cylinder 37 is connected with a push plate 38, and the push plate 38 slides on the sliding rail 36. The lower side of the docking frame 35 is provided with a docking track 39, which is connected with the discharging track 34. The qualified products after detection can be discharged from the rear discharging track 34 for processing.
[0032] It should be noted that the above specific embodiments are only the preferred embodiments of the utility model and the applied technical principles, and any changes or replacements easily thought by any person skilled in the art in the technical range disclosed by the utility model should be covered in the protection range of the utility model.
Claims
1. An alternating impedance and insulation detection device, characterized in that, The device comprises a feeding track, a left material moving clamp, a right material moving clamp and an alternating detection assembly, the feeding track is in front of the alternating detection assembly, the left material moving clamp is on the left side of the alternating detection assembly, the right material moving clamp is on the right side of the alternating detection assembly, the alternating detection assembly comprises a left detection linear module, a right detection linear module, a lower test horizontal moving module and an upper test support, the upper test support is fixed with an upper test cylinder, the driving end of the upper test cylinder is vertically connected with an upper probe, the lower test horizontal moving module is installed with a lower probe, the driving end of the left detection linear module is connected with a left detection fixture, the driving end of the right detection linear module is connected with a right detection fixture, the left detection fixture and the right detection fixture move back and forth horizontally between the positions of the upper probe and the lower probe.
2. The alternating impedance and insulation detection device of claim 1, wherein, The driving end of the lower test horizontal moving module is installed with a lower test front and back module, the driving end of the lower test front and back module is connected with a lower test up and down module, the lower probe is fixed on the driving end of the lower test up and down module, and the lower test up and down module is provided below with a lower test light source.
3. The alternating impedance and insulation detection device of claim 1, wherein, The two sides of the alternating detection assembly are respectively provided with a left material moving horizontal module and a right material moving horizontal module, the driving end of the left material moving horizontal module is connected with a left material moving vertical module, the left material moving clamp is installed on the driving end of the left material moving vertical module, the driving end of the right material moving horizontal module is connected with a right material moving vertical module, and the right material moving clamp is installed on the driving end of the right material moving vertical module.
4. The alternating impedance and insulation detection device of claim 1, wherein, The front of the feeding track is provided with a material returning track, a material returning horizontal moving cylinder is arranged between the front end of the feeding track and the rear end of the material returning track, the driving end of the material returning horizontal moving cylinder is connected with a material returning vertical moving cylinder, and the driving end of the material returning vertical moving cylinder is installed with a material returning pneumatic clamp.
5. The alternating impedance and insulation detection device of claim 4, wherein, The front of the material returning track is provided with a defective track, a defective horizontal moving cylinder is arranged between the upper end of the defective track and the rear end of the feeding track, the driving end of the defective horizontal moving cylinder is connected with a defective vertical moving cylinder, and the driving end of the defective vertical moving cylinder is installed with a defective pneumatic clamp.
6. The alternating impedance and insulation detection device of claim 1, wherein, The front end of the feeding track is provided with a material blocking assembly, the material blocking assembly comprises a material blocking horizontal cylinder, the driving end of the material blocking horizontal cylinder is connected with a material blocking vertical cylinder, and the driving end of the material blocking vertical cylinder is connected downward with a material blocking plate.
7. The alternating impedance and insulation detection device of claim 1, wherein, One side of the front end of the feeding track is provided with a material feeding sensor.
8. The alternating impedance and insulation detection device of claim 1, wherein, The rear of the alternating detection assembly is provided with an ejection track, both ends of the ejection track are provided above with a docking rack, the docking rack is installed laterally with a slide rail and a pushing cylinder, the driving end of the pushing cylinder is connected with a push plate, the push plate slides on the slide rail, and the docking rack is provided below with a docking track connected with the ejection track.