Data connecting line testing device

By designing a data connection cable testing device, which uses a servo motor to drive the conveyor belt and adjustable clamps, the problems of low efficiency and high cost of traditional testing methods are solved, and efficient and accurate data connection cable testing is achieved.

CN223703950UActive Publication Date: 2025-12-23SUZHOU YOUFENG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202422671820.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-12-23
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

Traditional data connection cable testing methods are inefficient and susceptible to human error, and large-scale automated equipment is expensive and difficult to meet the needs of small and medium-sized factories.

Method used

A data connection cable testing device was designed, including a conveying component, a mounting component, and a positioning component. It uses a servo motor to drive the conveyor belt and adjustable clamps, and can handle multiple data connection cables simultaneously. It is suitable for both standard and special interfaces, ensuring accurate plug insertion and testing.

Benefits of technology

It significantly improves testing efficiency, reduces testing costs, adapts to different types of data connection cables, and ensures the accuracy and stability of testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of testing devices, and especially relates to a data connecting line testing device comprising a conveying assembly; the mounting parts are arranged on the conveying assembly through the connecting assembly, the conveying assembly is provided with a plurality of groups of mounting parts at equal intervals, the length direction of the mounting parts is perpendicular to the conveying direction of the conveying device, mounting grooves are formed in the two ends of the mounting parts correspondingly, and moving parts are slidably arranged in the mounting grooves; springs are arranged at the adjacent ends of the two moving parts respectively, the other ends of the two springs are connected with the inner walls of the symmetrical mounting grooves, mounting shafts are arranged in the moving part fixing holes, a first clamping part and a second clamping part are arranged at the top ends of the two mounting shafts respectively, and the first clamping part and the second clamping part are used for fixing plugs at the two ends of the data line. The positioning assembly is arranged on the conveying assembly and is used for positioning the moving track of the mounting part; the test efficiency is improved, and the test cost is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of testing device, in particular to a data connection line testing device. BACKGROUND

[0002] With the wide application of electronic equipment and the increasing demand of data transmission, the quality and performance of data connection line as an important medium for data exchange between electronic equipment directly affect the stability and reliability of the whole system. In the production and use process, the quality detection of data connection line becomes particularly important.

[0003] The traditional data connection line testing method usually needs manual operation, which is not only low in efficiency, but also is easily affected by human factors, resulting in inaccurate test results. Large-scale automatic equipment is high in cost for small and medium-sized factories. SUMMARY

[0004] To solve the above technical problems, the utility model provides a data connection line testing device which improves test efficiency and reduces test cost.

[0005] The utility model relates to a data connection line testing device, which comprises:

[0006] A conveying assembly;

[0007] A mounting member and a connecting assembly, the mounting member is arranged on the conveying assembly through the connecting assembly, a plurality of groups of mounting members are arranged equidistantly on the conveying assembly, the length direction of the mounting member is perpendicular to the conveying direction of the conveying device, mounting grooves are arranged at both ends of the mounting member respectively, moving members are arranged in the mounting grooves in a sliding manner, springs are arranged at one end of the two groups of moving members respectively, the other ends of the two groups of springs are connected with the inner walls of the symmetrical mounting grooves, mounting shafts are arranged in the moving member fixing holes, first clamping members and second clamping members are arranged at the top ends of the two groups of mounting shafts respectively, and the first clamping members and the second clamping members are used for fixing the plugs at both ends of the data line.

[0008] A positioning assembly is arranged on the conveying assembly and is used for positioning the moving track of the mounting member.

[0009] Further, the conveying assembly comprises a mounting base, conveying rollers are arranged in the mounting base mounting holes in a rotating manner respectively, conveying belts are arranged on the two groups of conveying rollers in a rolling manner, the mounting member is arranged on the conveying belt through the connecting assembly, a servo motor output end is coaxially arranged on one group of conveying rollers, and the servo motor is arranged on the mounting base.

[0010] As a preferred, the connecting assembly comprises a plurality of groups of positioning pins arranged equidistantly along the conveying direction, the plurality of groups of positioning pins are parallel to the mounting direction of the mounting member, the mounting member positioning holes are respectively connected with each group of positioning pins in a plug-in and pull-out mode, bolts are arranged in the positioning pin threaded holes, and the bolts are connected with the mounting member in a matched mode.

[0011] Further, the fixing members are symmetrically arranged at both ends of the inner cavity wall of the mounting base, the auxiliary members are arranged on the fixing members, the conveying rollers are rotationally connected with the auxiliary members, the guide members are arranged at the top ends of the auxiliary members, two groups of positioning members are symmetrically arranged on each mounting member, and the positioning members are slidably connected with the guide members.

[0012] Preferably, the positioning assembly comprises positioning sliding rails arranged at both ends of the guide members, and the positioning sliding rails are slidably connected with the positioning grooves.

[0013] Further, the supporting members are arranged on the auxiliary members, the supporting members are arranged on the distal end faces of the two groups of auxiliary members, and the mounting shafts are slidably connected with the supporting members.

[0014] Preferably, the supporting members are chamfered.

[0015] Further, the lifting members are arranged on the two groups of auxiliary members, and the conveying belt is slidably connected with the lifting members.

[0016] Preferably, the positions at which the auxiliary members are connected with the mounting base are adjustably arranged, so as to adapt to mounting members of different sizes.

[0017] Further, the sprockets are coaxially arranged on the two groups of conveying rollers, and the chains are meshingly arranged on the two groups of sprockets.

[0018] Compared with the prior art, the beneficial effects of the utility model are as follows: a plurality of mounting members are equidistantly arranged on the conveying assembly, so that a plurality of data connection lines can be simultaneously conveyed and tested, the overall detection efficiency is significantly improved, the moving members are slidably arranged in the mounting grooves at both ends of the mounting member, and the moving members in each group are connected through springs, so that the first clamping member and the second clamping member can easily clamp the data line plug, the fixing process is simplified, the existence of the positioning assembly ensures that the mounting member 1 moves along the predetermined path accurately, so that the plug of the data line is conveniently and accurately inserted during testing, the first clamping member and the second clamping member are adjustable, the device can be applied to various types of data connection lines, whether it is a standard interface or a specially customized interface, and the device can be properly handled, the data line is positioned and supported through the first clamping member and the second clamping member, and is conveyed to the testing area along with the conveying assembly, so that the testing efficiency is improved and the testing cost is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is a front view structural schematic diagram of the utility model;

[0020] Figure 2 is an axonometric structural schematic diagram of the utility model;

[0021] Figure 3 is an internal structural schematic diagram of the utility model;

[0022] Figure 4Part structure schematic diagram of the utility model;

[0023] The marks in the drawing: 1, mounting piece; 2, moving piece; 3, spring; 4, mounting shaft; 5, first clamping piece; 6, second clamping piece; 7, mounting base; 8, conveying roller; 9, conveying belt; 10, servo motor; 11, positioning pin; 12, bolt; 13, fixing piece; 14, auxiliary piece; 15, guide piece; 16, positioning piece; 17, positioning slide rail; 18, supporting piece; 19, lifting piece; 20, chain wheel; 21, chain. DETAILED DESCRIPTION

[0024] The specific embodiment of the utility model is further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model but not to limit the scope of the utility model.

[0025] As Figures 1 to 4 Indicated, a data connection line testing device of the utility model, include:

[0026] Conveying assembly;

[0027] Mounting piece 1 and connecting assembly, mounting piece 1 is set up on conveying assembly through connecting assembly, and multiple sets of mounting piece 1 are equidistantly set up on conveying assembly, and the length direction of mounting piece 1 is vertically set with the conveying direction of conveying device, and mounting groove is set up at the both ends of mounting piece 1 respectively, and moving piece 2 is slidably set up in mounting groove, and one end of two sets of moving piece 2 is respectively provided with spring 3, and the other end of two sets of spring 3 is connected with the inner wall of symmetrical mounting groove, and mounting shaft 4 is set up in the fixed hole of moving piece 2, and the top end of two sets of mounting shaft 4 is respectively provided with first clamping piece 5 and second clamping piece 6, and first clamping piece 5 and second clamping piece 6 are used for fixing the plug at the both ends of data line;

[0028] Positioning assembly is set up on conveying assembly and is used for positioning the moving track of mounting piece 1;By equidistantly setting multiple sets of mounting piece 1 on conveying assembly 1, multiple data connection lines can be simultaneously conveyed and tested, and the overall detection efficiency is significantly improved, moving piece 2 is slidably set up in the mounting groove at the both ends of mounting piece 1, and each set of moving piece 2 is connected through spring 3, and such design makes first clamping piece 5 and second clamping piece 6 can easily install data line plug, simplifies the fixing process, and the existence of positioning assembly ensures that mounting piece 1 moves accurately along the predetermined path, so that the plug of data line is conveniently and accurately inserted during testing, and since the adjustable first clamping piece 5 and second clamping piece 6 are used, the device can be applied to various types of data connection lines, and whether it is a standard interface or a special customized interface, it can be properly handled, and the data line is positioned and supported by first clamping piece 5 and second clamping piece 6, and simultaneously conveyed to the testing area along with the conveying assembly, thereby improving the testing efficiency and reducing the testing cost.

[0029] AsFigures 1 to 4 As shown, as a preferred solution, the conveying assembly comprises a mounting base 7, two ends of which are provided with conveying rollers 8 rotatingly arranged in mounting holes respectively, a conveying belt 9 is arranged rolling on the two groups of conveying rollers 8, the mounting member 1 is arranged on the conveying belt 9 through the connecting assembly, a servo motor 10 output end is coaxially arranged on one group of conveying rollers 8, the servo motor 10 is arranged on the mounting base 7, chain wheels 20 are coaxially arranged on the two groups of conveying rollers 8, and a chain 21 is arranged meshing on the two groups of chain wheels 20; the mounting base 7 provides a stable basic structure to ensure the stability of the entire conveying system, by arranging multiple groups of mounting members 1 equidistantly on the conveying belt 9, multiple data connection lines can be conveyed and tested at the same time, which significantly improves the overall detection efficiency, the design of the conveying roller 8 and the conveying belt 9 ensures a smooth and continuous conveying process, so that each data line can be uniformly sent to the test area, the servo motor 10 provides precise power control, allowing speed and position to be adjusted as needed, thereby realizing efficient and accurate data line transmission, the cooperation of the chain wheel 20 and the chain 21 ensures the synchronous rotation of the two groups of conveying rollers 8, maintains the consistency and stability of the movement of the conveying belt 9, avoids slipping or deviation, and the positioning assembly ensures that the mounting member 1 moves along the predetermined track, which helps the accurate insertion of the data line plug during testing.

[0030] As shown in Figures 1 to 4 As a preferred solution, the connecting assembly comprises multiple groups of positioning pins 11 arranged equidistantly along the conveying direction, the multiple groups of positioning pins 11 are parallel to the mounting direction of the mounting member 1, the mounting member 1 positioning holes are respectively connected with each group of positioning pins 11, the positioning pins 11 are provided with bolts 12 in the threaded holes, and the bolts 12 are connected with the mounting member 1; by connecting the positioning holes of the mounting member 1 with the multiple groups of positioning pins 11, and further fixed by the bolts 12, this design allows the operator to quickly and conveniently install or replace the mounting member 1, thereby reducing the preparation time and improving the work efficiency, since the positioning pins 11 are arranged equidistantly along the conveying direction, this ensures that each mounting member 1 can be accurately placed at the predetermined position, ensuring that the servo motor 10 accurately conveys one group of mounting member 1 between positions each time it is started.

[0031] As shown in Figures 1 to 4As shown, as a preferred solution, the inner cavity wall of the mounting base 7 is symmetrically provided with a fixing member 13 at both ends, the fixing member 13 is provided with an auxiliary member 14, the conveying roller 8 is rotatably connected with the auxiliary member 14, the top end of the auxiliary member 14 is provided with a guide member 15, two groups of positioning members 16 are symmetrically arranged on each group of mounting members 1, the inner groove of the positioning member 16 is slidably connected with the guide member 15, the connection position of the auxiliary member 14 and the mounting base 7 is adjustably mounted to adapt to mounting members 1 of different sizes, the two groups of auxiliary members 14 are provided with lifting members 19, and the conveying belt 9 is slidably connected with the lifting members 19; the design of the fixing member 13 and the auxiliary member 14 provides an additional support point for the conveying roller 8, increases the rigidity of the structure, reduces vibration, and thus improves the stability of the entire system, the sliding connection between the lifting member 19 and the conveying belt 9 ensures smooth operation during conveying, further enhances the reliability of the system, and the adjustable connection between the auxiliary member 14 and the mounting base 7 allows the position to be adjusted to adapt to mounting members 1 of different sizes or types, this flexible design enables the same equipment to handle diversified data connection lines, increases the application range of the equipment, and the sliding connection between the two groups of positioning members 16 symmetrically arranged on each group of mounting members 1 and the guide member 15 not only helps to maintain the straightness of the mounting member 1 during movement, avoiding deviation from the track.

[0032] As shown in Figures 1 to 4 As a preferred solution, the positioning assembly includes positioning rails 17 arranged at both ends of the guide member 15, and the positioning rails 17 are slidably connected with the positioning grooves of the positioning members 16; the sliding connection design between the positioning rails 17 and the positioning grooves of the positioning members 16 ensures that the mounting member 1 maintains straight-line movement during movement, and this precise guiding mechanism reduces errors caused by deviation or vibration, thereby improving the position accuracy of the plug during data line plug testing.

[0033] As shown in Figures 1 to 4 As a preferred solution, the auxiliary member 14 is provided with a support member 18, the support member 18 is arranged on the distal end faces of the two groups of auxiliary members 14, the mounting shaft 4 is slidably connected with the support member 18, and the support member 18 is provided with a chamfer; the support member 18 supports the data line when the mounting member 1 conveys the data line, and at the same time ensures the fixation of the position during plug insertion testing, preventing displacement of the plug during insertion.

[0034] As shown in Figures 1 to 4 As a preferred solution, the working process is as follows:

[0035] The operator prepares the data line to be tested, checks whether the plugs at both ends of the data line are intact, adjusts the position between the auxiliary part 14 and the mounting base 7 according to the type and size of the data line, so as to adapt to different sizes of the mounting part 1, places the data line on the mounting part 1, so that the two ends of the data line are aligned with the first clamping part 5 and the second clamping part 6 respectively, and through the elastic force of the spring 3, the first clamping part 5 and the second clamping part 6 are pressed on the data line plug, so that the plug is firmly fixed, the servo motor 10 is started, a group of conveying rollers 8 are driven to rotate, another group of conveying rollers 8 are driven to rotate synchronously through the chain wheel 20 and the chain 21, the conveying belt 9 starts to run, the mounting part 1 moves along the predetermined path with the conveying belt 9, the mounting shaft 4 is slidingly connected with the supporting part 18, when the mounting part 1 moves to the test area, the servo motor 10 stops rotating, the plug is stably inserted into the test equipment when the test device moves, after the test is completed, the mounting part 1 continues to move with the conveying belt 9 to the unloading area.

[0036] The data connection line testing device of the utility model is of common mechanical installation mode, connection mode or setting mode, and can be implemented as long as the beneficial effects can be achieved.

[0037] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled personnel in the technical field, several improvements and modifications can be made without departing from the technical principles of the utility model, and these improvements and modifications should also be regarded as the protection range of the utility model.

Claims

1. A data connection cable testing device, characterized in that, include: Conveying components; The mounting component and connecting assembly are provided. The mounting component is mounted on the conveying assembly via the connecting assembly. Multiple sets of mounting components are equidistantly arranged on the conveying assembly. The length direction of the mounting component is perpendicular to the conveying direction of the conveying device. Each mounting component has a mounting groove at both ends. A movable component is slidably disposed in the mounting groove. A spring is provided at one adjacent end of each of the two sets of movable components. The other ends of the two sets of springs are connected to the inner walls of the symmetrical mounting grooves. A mounting shaft is provided in the fixing hole of the movable component. A first clip and a second clip are provided at the top of each of the two sets of mounting shafts. The first clip and the second clip are used to fix the plugs at both ends of the data cable. A positioning component, mounted on the conveying component, is used to position the moving trajectory of the installation component.

2. The data connection cable testing device as described in claim 1, characterized in that, The conveying assembly includes a mounting base, with conveying rollers rotatably mounted in mounting holes at both ends of the mounting base. A conveyor belt is rolled on the two sets of conveying rollers. The mounting component is mounted on the conveyor belt via a connecting assembly. A servo motor output is coaxially mounted on one set of the conveying rollers. The servo motor is mounted on the mounting base.

3. The data connection cable testing device as described in claim 2, characterized in that, The connecting assembly includes multiple sets of positioning pins equidistantly arranged along the conveying direction. The multiple sets of positioning pins are parallel to the installation direction of the mounting component. The positioning holes of the mounting component are respectively plugged into and pulled into each set of positioning pins. Bolts are provided in the threaded holes of the positioning pins, and the bolts are connected to the mounting component.

4. The data connection cable testing device as described in claim 2, characterized in that, The mounting base has symmetrically arranged fixing members at both ends of its inner cavity wall. The fixing members are provided with auxiliary members. The conveying rollers are rotatably connected to the auxiliary members. The top of the auxiliary members is provided with guide members. Each set of mounting members has two sets of positioning members symmetrically arranged. The inner groove of the positioning member is slidably connected to the guide member.

5. The data connection cable testing device as described in claim 4, characterized in that, The positioning component includes positioning slide rails disposed at both ends of the guide member, and the positioning slide rails are slidably connected to the positioning groove of the positioning member.

6. The data connection cable testing device as described in claim 4, characterized in that, The auxiliary component is provided with a support component, which is disposed on the far end face of the two sets of auxiliary components, and the mounting shaft is slidably connected to the support component.

7. The data connection cable testing device as described in claim 6, characterized in that, The support member has a chamfer.

8. The data connection cable testing device as described in claim 4, characterized in that, The two sets of auxiliary components are equipped with lifting components, and the conveyor belt is slidably connected to the lifting components.

9. The data connection cable testing device as described in claim 4, characterized in that, The auxiliary component is adjustable in its connection position with the mounting base to accommodate mounting components of different sizes.

10. A data connection cable testing device as described in claim 2, characterized in that, Both sets of conveyor rollers are coaxially equipped with sprockets, and chains are meshed on the two sets of sprockets.