Connector plugging test tool
The connection tester apparatus improves connector insertion efficiency and protects the connector's appearance by using guided mechanisms and gas cylinders for precise alignment.
Patent Information
- Application Number
- CN202422256337.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-14
AI Technical Summary
Existing connector plug-in tests are inefficient and prone to damage the socket appearance.
A connector plug-in testing tool is adopted, and the recessed cylinder and transverse cylinder are used to drive the concave plate and plug joint for positioning and plugging operations. The precise docking of the plug and socket is achieved through the card and the positioning column to avoid damage to the appearance of the socket.
Improves the reliability of connector plug-in operation, avoids damage to the socket, and improves testing efficiency.
Smart Images

Figure CN223108040U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of connector testing, in particular to a connector plugging test tooling. Background Art
[0002] After the connector is processed, its plugging performance and electrical connection ability need to be tested. Currently, for the connector shown in Figure 4 As shown, it includes a socket 1. A groove is opened at the rear end of the socket 1, and a mounting hole 11 is opened at the bottom of the groove. A plurality of socket sleeves 10 are arranged at the front end of the socket 1. It also includes a plug. A ring plate 12 is arranged on the plug, and a plug pin 13 is arranged on the plug. The plug pin 13 is inserted into the socket sleeve 10. An outer wall of the plug is provided with a ring plate 14. The test plug connector 2 is provided with a plurality of socket cylinders. The rear end of the plug pin 13 passes through the socket cylinder. At the same time, the plug connector 2 is also provided with a plugging block 20. When testing, the plugging block 20 needs to be inserted into the ring plate 14. Currently, during testing, first fix the socket 1, then insert the plug connector 2 onto the plug, then push the plug connector 2 and the plug thereon closer to the socket 1, then plug the plug into the socket 1, and then perform the test operation. This plugging test method has low efficiency and is likely to affect the appearance of the socket 1. Summary of the Utility Model
[0003] The utility model provides a connector plugging test tooling to solve the above-mentioned deficiencies of the prior art, solve the problems of low efficiency of the connector plugging operation and easy impact on the appearance, and has strong practicability.
[0004] In order to achieve the purpose of the utility model, the following technologies are proposed:
[0005] A connector plugging test tooling includes a base. A lifting cylinder is installed at one end of the base. The upper end of the lifting cylinder is connected with a concave plate. A pair of inserting rods are arranged on the concave plate. Insert the inserting rods into the mounting holes to position the socket through the inserting rods. When positioning, drive the concave plate to move through the lifting cylinder, so as to avoid damaging the appearance of the socket.
[0006] On both sides of the base, side plates are respectively installed. A pair of transverse guide holes are opened on the side plates. An active cross bar is inserted through the transverse guide holes. A clamping member is provided at the inner end of the active cross bar, and a limit nut is provided at the outer end of the active cross bar. A spring is sleeved on the active cross bar. The spring is located inside the limit nut. An outer plate is provided at the inner end of the spring. A positioning post is provided on the outer plate. The positioning post passes through the side plate. The outer plate is sleeved on the active cross bar. A pair of convex plates are provided on the outer plate. An outer support rod is provided at the outer end of the convex plate. At the other end of the base, a transverse cylinder is installed. A socket joint is installed at the inner end of the transverse cylinder. Concave members are respectively installed at both ends of the socket joint. An outer push plate is installed on the outer side of the concave member. The outer push plate is located between the convex plates. The outer wall of the outer push plate is tangent to the outer circumference of the outer support rod. A groove is opened on the outer wall of the outer push plate. An inclined surface is provided at one end of the groove. The provided clamping member is clamped on the outer circumference of the ring plate, so as to facilitate the plugging operation of the plug, the socket joint and the socket. At the same time, during plugging, the socket joint moves towards the plug driven by the transverse cylinder, and the rear end of the pin is inserted into the socket tube. Then, driven by the transverse cylinder, the positioning post is pulled out from the side plate, and then the plug is driven to move towards the socket, and finally the plug is plugged into the socket, and then the plugging test is carried out. During this process, the presence of the clamping member plays a role in guiding and limiting the movement of the plug and the socket joint.
[0007] Further, a concave rotating seat is installed at the upper end of the lifting cylinder. A pull rod is provided at the upper end of the concave rotating seat. An L-shaped plate is sleeved on the pull rod. A transverse hole is opened on the transverse section of the L-shaped plate. The pull rod passes through the transverse hole. The L-shaped plate is provided on the concave plate. An outer extension arm is provided on the concave plate. A vertical plate is provided at the outer end of the outer extension arm. A vertical groove is opened on the vertical plate. A concave seat is installed on the base. An end rod is provided at the upper end of the concave seat. The end rod passes through the vertical groove. A pair of limiting plates are provided on the vertical plate. The limiting plates are located on the inner and outer sides of the concave seat. Through the provided pull rod, when the inner end of the outer extension arm moves downward, it can act on the transverse hole so as to make the concave plate rotate downward, and finally the socket is positioned by the concave plate and the plug rod thereon. At the same time, in order to ensure the reliability during positioning, limiting plates are also provided to make the vertical plate in a vertical state.
[0008] Further, the clamping member has a concave structure to improve the limiting effect on the ring plate.
[0009] The advantages of the above technical solutions are as follows:
[0010] The utility model can improve the reliability during the plugging operation of the connector and avoid damaging the socket. Description of the Drawings
[0011] In order to make the purpose, technical solutions and advantages of the utility model clearer, the utility model will be further described in detail below with reference to the drawings.
[0012] Figure 1Shows the three-dimensional structure of one of the embodiments Figure 1 .
[0013] Figure 2 Shows an enlarged view at location A.
[0014] Figure 3 Shows an enlarged view at location B.
[0015] Figure 4 Shows the three-dimensional structure diagram of the connector. Detailed implementation manners
[0016] As Figures 1 to 4 shown, a connector plugging test tooling includes a base 3. One end of the base 3 is installed with a lifting air cylinder 38. The upper end of the lifting air cylinder 38 is connected with a concave plate 35. A pair of inserting rods 39 are arranged on the concave plate 35. The upper end of the lifting air cylinder 38 is installed with a concave rotating seat 37. The upper end of the concave rotating seat 37 is provided with a pull rod 370. An L-shaped plate 36 is sleeved on the pull rod 370. A transverse hole is opened on the transverse section of the L-shaped plate 36. The pull rod 370 passes through the transverse hole. The L-shaped plate 36 is arranged on the concave plate 35. The concave plate 35 is provided with an outer extending arm 33. The outer side end of the outer extending arm 33 is provided with a vertical plate 32. A vertical groove is opened on the vertical plate 32. The base 3 is installed with a concave seat 30. The upper end of the concave seat 30 is provided with an end rod 31. The end rod 31 passes through the vertical groove. A pair of limiting plates 34 are arranged on the vertical plate 32. The limiting plates 34 are located on the inner and outer sides of the concave seat 30.
[0017] Side plates 4 are respectively installed on both sides of the base 3. A pair of transverse guide holes 40 are opened on the side plates 4. A movable cross bar 41 passes through the transverse guide holes 40. The inner side end of the movable cross bar 41 is provided with a clamping part 45. The clamping part 45 is of a concave structure. The outer side end of the movable cross bar 41 is provided with a limiting nut 42. A spring 43 is sleeved on the movable cross bar 41. The spring 43 is located inside the limiting nut 42. The inner side end of the spring 43 is provided with an outer plate 44. A positioning column is arranged on the outer plate 44. The positioning column passes through the side plate 4. The outer plate 44 is sleeved on the movable cross bar 41. A pair of convex plates 46 are arranged on the outer plate 44. The outer side end of the convex plate 46 is provided with an outer supporting rod 47. The other end of the base 3 is installed with a transverse air cylinder 50. The inner side end of the transverse air cylinder 50 is installed with a plug connector 2. Concave parts 51 are respectively installed at both ends of the plug connector 2. An outer pushing plate 52 is installed on the outer side of the concave part 51. The outer pushing plate 52 is located between the convex plates 46. The outer wall of the outer pushing plate 52 is tangent to the outer periphery of the outer supporting rod 47. A groove 53 is opened on the outer wall of the outer pushing plate 52. One end of the groove 53 is provided with an inclined surface 54.
[0018] During the operation of this embodiment, the operator first places the socket 1 on the base 3.
[0019] Next, start the lifting cylinder 38. Drive the concave turntable 37 to move downward through the lifting cylinder 38. When the concave turntable 37 moves downward, it will act on the transverse hole through the pull rod 370, so that the inner end of the concave plate 35 rotates downward first, and the vertical plate 32 is in a vertical state, and the limiting plate 34 is located on the inner and outer sides of the concave seat 30. Then, make the concave plate 35 move downward, and finally insert the insertion rod 39 into the mounting hole 11, and finally complete the positioning operation of the socket 1.
[0020] Then the operator inserts the ring plate 12 on the plug into the clamping member 45.
[0021] Next, start the transverse cylinder 50. Driven by the transverse cylinder 50, the plug connector 2 will move toward the plug first, and finally the rear end of the insertion pin 13 will pass through the insertion cylinder. During the insertion process, the outer wall of the groove 53 acts on the outer support rod 47. When the insertion is completed, the inclined surface 54 will act on the outer support rod 47, so that the outer plate 44 moves outward, and then the positioning post is pulled out from the outer plate 44. Then, driven by the transverse cylinder 50, the plug and the plug connector 2 move along the transverse guide hole 40 toward the socket 1, and finally the plug is inserted into the socket 1, and then the electrical connection test of the socket 1 and the plug is carried out.
[0022] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention also intends to include these changes and modifications.
Claims
1. A connector plugging test tooling, characterized in that, It includes a base (3). One end of the base (3) is equipped with a lifting cylinder (38). The upper end of the lifting cylinder (38) is connected to a concave plate (35). A pair of insertion rods (39) are provided on the concave plate (35). On both sides of the base (3), side plates (4) are respectively installed. A pair of horizontal guide holes (40) are opened on the side plates (4). A movable cross bar (41) is inserted through the horizontal guide holes (40). A clamping member (45) is provided at the inner end of the movable cross bar (41). A limit nut (42) is provided at the outer end of the movable cross bar (41). A spring (43) is sleeved on the movable cross bar (41). The spring (43) is located inside the limit nut (42). An outer plate (44) is provided at the inner end of the spring (43). A positioning post is provided on the outer plate (44). The positioning post passes through the side plate (4). The outer plate (44) is sleeved on the movable cross bar (41). A pair of convex plates (46) are provided on the outer plate (44). An outer support rod (47) is provided at the outer end of the convex plate (46). On the other end of the base (3), a horizontal cylinder (50) is installed. An insertion joint (2) is installed at the inner end of the horizontal cylinder (50). Concave members (51) are respectively installed at both ends of the insertion joint (2). An outer push plate (52) is installed on the outside of the concave member (51). The outer push plate (52) is located between the convex plates (46). The outer wall of the outer push plate (52) is tangent to the outer circumference of the outer support rod (47). A groove (53) is opened on the outer wall of the outer push plate (52). An inclined surface (54) is provided at one end of the groove (53).
2. The connector insertion and extraction test tooling according to claim 1, characterized in that, The upper end of the lifting cylinder (38) is installed with a concave rotating seat (37). A pull rod (370) is provided at the upper end of the concave rotating seat (37). An L-shaped plate (36) is sleeved on the pull rod (370). A horizontal hole is opened on the horizontal section of the L-shaped plate (36). The pull rod (370) passes through the horizontal hole. The L-shaped plate (36) is arranged on the concave plate (35). An outer extension arm (33) is provided on the concave plate (35). A vertical plate (32) is provided at the outer end of the outer extension arm (33). A vertical groove is opened on the vertical plate (32). A concave seat (30) is installed on the base (3). An end rod (31) is provided at the upper end of the concave seat (30). The end rod (31) passes through the vertical groove. A pair of limit plates (34) are provided on the vertical plate (32). The limit plates (34) are located on the inner and outer sides of the concave seat (30).
3. The connector plugging test tooling according to claim 1, wherein The clamping member (45) has a concave structure.