A secure profile connector mating structure

CN224744991UActive Publication Date: 2026-09-11深圳市利和兴股份有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521580411.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-25
Publication Date
2026-09-11
Estimated Expiration
2035-07-25

AI Technical Summary

Technical Problem

[0003]现有的连接器结构不标准,没有放置好等对插后直接插坏产品,使用过程中对插困难,弹性探针容易出现偏位,导致其与顶针接触不良,使用寿命差,不易维修拆卸更换,为此,需要设计一种安全的仿形连接器对插结构

Benefits of technology

[0015]其有益效果在于,本技术方案的连接器对插结构,安全可靠,拆装简单,维护方便,效率高,整体设计合理、实用性强,运用此连接器对插结构,有效防止直接插坏产品,失效后自动复原,方便快捷,提高了批量测试中的便捷性和提升了效率。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224744991U_ABST
    Figure CN224744991U_ABST
Patent Text Reader

Abstract

This utility model discloses a safe conformal connector mating structure, including a main mounting assembly, a guide assembly on the main mounting assembly, a moving assembly on the moving part of the guide assembly, a product-to-be-tested limiting assembly on the moving assembly, a middle mounting assembly on the main mounting assembly located between the two guide assemblies, a support assembly on the middle mounting assembly, an auxiliary mounting assembly on the support assembly, and a first conformal connector, a second conformal connector, and a third conformal connector on the auxiliary mounting assembly. A floating mounting assembly is located on the side of the support assembly away from the auxiliary mounting assembly. The advantages are that the connector mating structure of this technical solution is safe and reliable, simple to assemble and disassemble, convenient to maintain, and highly efficient. Its overall design is reasonable and highly practical. Using this connector mating structure effectively prevents direct insertion that could damage the product, automatically recovers after failure, and is convenient and quick, improving the convenience and efficiency of batch testing.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of vehicle-mounted product testing technology, and in particular to a safe conformal connector mating structure. Background Technology

[0002] In existing product testing environments, it is necessary to mate contour connectors or standard molded connectors into product interfaces to achieve product-to-external connection. Connectors are generally divided into plug connectors and socket connectors. Socket connectors are installed on electronic products and have several pins. Plug connectors are connected to external testing equipment via electrical signals and have several elastic probes. When the plug connector is inserted into the socket connector, the end of the pin presses against the end of the elastic probe. The elastic probe retracts after being pressed, ensuring stable contact between the pin and the elastic probe, thus achieving electrical signal connection between the plug connector and the socket connector. This facilitates functional testing of electronic products by the testing equipment.

[0003] Existing connectors have non-standard structures, which can damage products if not properly positioned before mating. During use, mating is difficult, and the elastic probes are prone to misalignment, resulting in poor contact with the ejector pins, short service life, and difficulty in repair, disassembly, and replacement. Therefore, a safe conformal connector mating structure needs to be designed. Utility Model Content

[0004] The purpose of this invention is to solve the above problems by designing a safe conformal connector mating structure.

[0005] To achieve the above objectives, the technical solution of this utility model is a safe conformal connector mating structure, comprising a main mounting component, a guide component on the main mounting component, a moving component on the moving part of the guide component, a product-to-be-tested limiting component on the moving component, a middle mounting component on the main mounting component located between the two guide components, a support component on the middle mounting component, an auxiliary mounting component on the support component, a first conformal connector, a second conformal connector, and a third conformal connector on the auxiliary mounting component, and a floating mounting component on the side of the support component away from the auxiliary mounting component.

[0006] As a further description of this technical solution, the main mounting assembly includes a main mounting base plate, and a guide assembly is provided on the main mounting base plate.

[0007] As a further description of this technical solution, the guide assembly includes a guide slider disposed on the main mounting assembly, a movable guide rail disposed on the guide slider, and a moving component disposed on the guide rail.

[0008] As a further description of this technical solution, the moving component includes a moving frame disposed on the moving part of the guide component, and a product limiting component to be tested is disposed on the moving frame.

[0009] As a further description of this technical solution, the product-to-be-tested limiting component includes a product-to-be-tested limiting seat disposed on the moving component, and the product to be tested is placed on the product-to-be-tested limiting seat.

[0010] As a further description of this technical solution, the central mounting assembly includes a central mounting plate disposed on the main mounting assembly between two guide assemblies, and the support assembly includes a support upright plate disposed on the central mounting plate. The support upright plate is provided with a square groove, and an auxiliary mounting assembly is disposed in the square groove.

[0011] As a further description of this technical solution, the auxiliary installation component includes an auxiliary installation plate disposed on the support component, and the auxiliary installation plate is provided with a first contour connector, a second contour connector, and a third contour connector.

[0012] As a further description of this technical solution, the first contour connector, the second contour connector, and the third contour connector all include a fixing part, a detachable guide part is provided on the fixing part, a probe is provided on the fixing part, a guide hole is provided in the guide part, the probe is disposed in the guide hole, a tolerance floating spring is provided at the contact part between the fixing part and the auxiliary mounting component, and the fixing part is connected to the auxiliary mounting component by screws.

[0013] As a further description of this technical solution, the floating mounting assembly includes a floating mounting plate disposed on the side of the support assembly away from the auxiliary mounting assembly. The support assembly is provided with a plurality of mounting bolts, which pass through holes in the floating mounting plate. Each mounting bolt is provided with a return spring, and the two ends of the return spring contact the floating mounting plate and the head of the mounting bolt, respectively.

[0014] As a further description of this technical solution, the support assembly is provided with a guide rod, the floating installation assembly is provided with a guide sleeve, the guide sleeve is movably mounted on the guide rod, the support assembly is provided with a first magnet, and the floating installation assembly is provided with a second magnet, the first magnet and the second magnet are attracted to each other.

[0015] Its beneficial effects are that the connector mating structure of this technical solution is safe and reliable, easy to disassemble and assemble, convenient to maintain, and highly efficient. The overall design is reasonable and highly practical. Using this connector mating structure can effectively prevent direct insertion from damaging the product. It can automatically recover after failure, which is convenient and quick, and improves the convenience and efficiency of batch testing. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the installation structure of the conformal connector of this utility model;

[0018] Figure 3 This is a schematic diagram of the installation structure of the guide rod and guide sleeve of this utility model;

[0019] Figure 4 This is a schematic diagram of the installation structure of the first magnet and the second magnet of this utility model.

[0020] In the diagram, 1. Main mounting assembly; 2. Guide assembly; 3. Moving assembly; 4. Product to be tested limiting assembly; 5. Middle mounting assembly; 6. Support assembly; 7. Auxiliary mounting assembly; 8. First contour connector; 9. Second contour connector; 10. Third contour connector; 11. Floating mounting assembly; 12. Main mounting base plate; 13. Guide slider; 14. Guide slide rail; 15. Moving frame; 16. Product to be tested limiting seat; 17. Middle mounting plate; 18. Support upright plate; 19. Auxiliary mounting plate; 20. Fixing part; 21. Guide part; 22. Screw; 23. Floating mounting plate; 24. Mounting bolt; 25. Return spring; 26. Guide rod; 27. Guide sleeve; 28. First magnet; 29. ​​Second magnet. Detailed Implementation

[0021] First, let me explain the design intention of this utility model. Existing connector structures are not standardized. If they are not properly positioned before mating, they can damage the product. During use, mating is difficult, and the elastic probe is prone to misalignment, resulting in poor contact between the probe and the ejector pin. This leads to a short service life and makes it difficult to repair, disassemble, or replace. Therefore, this utility model designs a safe conformal connector mating structure.

[0022] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figures 1-4 As shown, a safe conformal connector mating structure includes a main mounting component 1. The main mounting component 1 will be described in detail below. The main mounting component 1 includes a main mounting base plate 12, on which a guide component 2 is provided.

[0023] A guide component 2 is provided on the main mounting component 1. The guide component 2 will be described in detail below. The guide component 2 includes a guide slider 13 provided on the main mounting component 1. A movable guide rail 14 is provided on the guide slider 13. A moving component 3 is provided on the guide rail 14.

[0024] A moving component 3 is provided at the moving part of the guide component 2. The moving component 3 will be described in detail below. The moving component 3 includes a moving frame 15 provided at the moving part of the guide component 2. A product limit component 4 is provided on the moving frame 15.

[0025] To facilitate the limiting of the product to be tested, a product limiting component 4 is provided on the moving component 3. The product limiting component 4 will be described in detail below. The product limiting component 4 includes a product limiting seat 16 provided on the moving component 3, on which the product to be tested is placed.

[0026] To facilitate the installation of the support component 6, a central mounting component 5 is provided on the main mounting component 1 between the two guide components 2. The central mounting component 5 will be described in detail below. The central mounting component 5 includes a central mounting plate 17 disposed on the main mounting component 1 between the two guide components 2.

[0027] To facilitate the installation of the auxiliary installation component 7, a support component 6 is provided on the central installation component 5. The support component 6 will be described in detail below. The support component 6 includes a support plate 18 provided on the central installation plate 17. The support plate 18 is provided with a square groove, and the auxiliary installation component 7 is provided in the square groove.

[0028] To facilitate the installation of the contour connector, an auxiliary installation component 7 is provided on the support component 6, and the auxiliary installation component 7 is provided with a first contour connector 8, a second contour connector 9, and a third contour connector 10.

[0029] The auxiliary installation component 7 will be described in detail below. The auxiliary installation component 7 includes an auxiliary installation plate 19 disposed on the support component 6. The auxiliary installation plate 19 is provided with a first contour connector 8, a second contour connector 9, and a third contour connector 10.

[0030] The following will describe the contour connector in detail. The first contour connector 8, the second contour connector 9, and the third contour connector 10 all include a fixing part 20. The fixing part 20 is provided with a detachable guide part 21. During the test, the inner wall of the guide part 21 needs to be constantly tethered to the plug, so it wears out the fastest. By making the guide part 21 and the fixing part 20 detachable, after the guide hole wears out, only the guide part 21 can be replaced, without replacing the entire contour connector, thereby saving costs.

[0031] The guide part 21 is made of at least one of polyetheretherketone (PEEK) and polyoxymethylene (POM). PEEK and POM have high strength and hardness, and both have high wear resistance and antistatic properties. When made into the guide part 21, the life of the guide part 21 can be significantly improved, and it will not hinder the current from passing through the probe during the test.

[0032] A probe is provided on the fixing part 20, a guide hole is provided in the guide part 21, the probe is placed in the guide hole, a tolerance floating spring is provided at the contact part between the fixing part 20 and the auxiliary installation component 7, and the fixing part 20 is connected to the auxiliary installation component 7 by screws 22.

[0033] A floating mounting component 11 is provided on the side of the support component 6 away from the auxiliary mounting component 7. The floating mounting component 11 will be described in detail below. The floating mounting component 11 includes a floating mounting plate 23 provided on the side of the support component 6 away from the auxiliary mounting component 7. A plurality of mounting bolts 24 are provided on the support component 6. The mounting bolts 24 pass through holes in the floating mounting plate 23. A return spring 25 is provided on the mounting bolt 24. The two ends of the return spring 25 contact the floating mounting plate 23 and the head of the mounting bolt 24, respectively.

[0034] The support component 6 is provided with a guide rod 26, the floating mounting component 11 is provided with a guide sleeve 27, the guide sleeve 27 is movably mounted on the guide rod 26, the support component 6 is provided with a first magnet 28, and the floating mounting component 11 is provided with a second magnet 29, the first magnet 28 and the second magnet 29 are attracted to each other.

[0035] The specific structure of this utility model has been described in detail above. The working principle of this utility model will be explained below: The electronic product to be tested is placed on the product-to-test limiting component 4. By pushing the moving component 3, the electronic product to be tested moves towards the first contour connector 8, the second contour connector 9, and the third contour connector 10. The plug on the electronic product to be tested connects with the first contour connector 8, the second contour connector 9, and the third contour connector 10, thereby enabling the testing of the electronic product.

[0036] When the plug on the electronic product under test is not standard, or is not properly positioned, the force applied after insertion is abnormally increased, exceeding the attraction force between the first magnet 28 and the second magnet 29. This causes the first contour connector 8, the second contour connector 9, and the third contour connector 10 on the auxiliary mounting plate 19 to retract as a whole, thus disengaging from the product and preventing direct damage. After the product is removed, the first contour connector 8, the second contour connector 9, and the third contour connector 10 on the auxiliary mounting plate 19 will automatically return to their correct position due to the action of the return spring 25, preventing inconvenience in restoring the device within limited space after failure.

[0037] The connector mating structure of this technical solution is safe and reliable, easy to assemble and disassemble, convenient to maintain, and highly efficient. The overall design is reasonable and highly practical. Using this connector mating structure effectively prevents direct insertion from damaging the product, and automatically restores itself after failure, which is convenient and quick, improving the convenience and efficiency of batch testing.

[0038] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.

Claims

1. A safe conformal connector mating structure, characterized in that, The system includes a main mounting component (1), a guide component (2) on the main mounting component (1), a moving component (3) on the moving part of the guide component (2), a product limit component (4) on the moving component (3), a middle mounting component (5) on the main mounting component (1) located between the two guide components (2), a support component (6) on the middle mounting component (5), an auxiliary mounting component (7) on the support component (6), a first contour connector (8), a second contour connector (9), and a third contour connector (10) on the auxiliary mounting component (7), and a floating mounting component (11) on the side of the support component (6) away from the auxiliary mounting component (7).

2. The safety profiled connector mating structure according to claim 1, wherein The main mounting assembly (1) includes a main mounting base plate (12), on which a guide assembly (2) is provided.

3. The safe profile connector mating structure according to claim 1, wherein The guide assembly (2) includes a guide slider (13) disposed on the main mounting assembly (1), a movable guide rail (14) disposed on the guide slider (13), and a moving assembly (3) disposed on the guide rail (14).

4. The secure conformal connector mating structure according to claim 1, characterized in that, The moving component (3) includes a moving frame (15) disposed on the moving part of the guide component (2), and a product limiting component (4) to be tested is disposed on the moving frame (15).

5. The safety profiled connector mating structure according to claim 1, wherein The product-to-be-tested limiting component (4) includes a product-to-be-tested limiting seat (16) disposed on the moving component (3), on which the product to be-tested is placed.

6. The safety profiled connector mating structure according to claim 1, wherein The central mounting assembly (5) includes a central mounting plate (17) disposed on the main mounting assembly (1) between two guide assemblies (2), and the support assembly (6) includes a support upright plate (18) disposed on the central mounting plate (17), the support upright plate (18) being provided with a square groove, and an auxiliary mounting assembly (7) being disposed in the square groove.

7. The safety profiled connector mating structure according to claim 1, wherein The auxiliary mounting assembly (7) includes an auxiliary mounting plate (19) disposed on the support assembly (6), and the auxiliary mounting plate (19) is provided with a first contour connector (8), a second contour connector (9), and a third contour connector (10).

8. The safety profiled connector mating structure according to claim 1, wherein The first contour connector (8), the second contour connector (9), and the third contour connector (10) all include a fixing part (20). The fixing part (20) is provided with a detachable guide part (21). The fixing part (20) is provided with a probe. The guide part (21) is provided with a guide hole. The probe is provided in the guide hole. The contact part between the fixing part (20) and the auxiliary installation component (7) is provided with a tolerance floating spring. The fixing part (20) is connected to the auxiliary installation component (7) by a screw (22).

9. The safety profiled connector mating structure according to claim 1, wherein The floating mounting assembly (11) includes a floating mounting plate (23) disposed on the side of the support assembly (6) away from the auxiliary mounting assembly (7). The support assembly (6) is provided with a plurality of mounting bolts (24). The mounting bolts (24) pass through holes in the floating mounting plate (23). The mounting bolts (24) are provided with return springs (25). The two ends of the return springs (25) are in contact with the heads of the floating mounting plate (23) and the mounting bolts (24), respectively.

10. The safety profiled connector mating structure according to claim 1, wherein The support assembly (6) is provided with a guide rod (26), the floating mounting assembly (11) is provided with a guide sleeve (27), the guide sleeve (27) is movably disposed on the guide rod (26), the support assembly (6) is provided with a first magnet (28), the floating mounting assembly (11) is provided with a second magnet (29), and the first magnet (28) and the second magnet (29) are attracted to each other.