Wire conduction testing device
By introducing a drive mechanism and marking components into the wire continuity testing device, automatic marking of the wire is achieved after continuity testing, solving the problems of low work efficiency and inaccurate marking in the existing technology, and improving the level of automation of testing.
Patent Information
- Application Number
- CN202422953687.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing wire continuity testing devices lack automatic marking functions, resulting in low work efficiency and the easy occurrence of forgetting or mismarking.
A wire continuity testing device was designed, comprising a base, a tester, a drive mechanism, and a marker. The drive mechanism drives the marker to automatically mark the wire after the test is passed. Automatic marking is achieved by combining a limiting structure and a continuity test seat.
It enables automatic marking during continuity detection, improving work efficiency and avoiding the tedious process of manual marking.
Smart Images

Figure CN223883738U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to test device technical field, especially a wire rod conduction test device. BACKGROUND
[0002] As electronic parts, wire rods generally have two or more than two lead wires or metal contacts, and the wire rod conduction test device is used for wire rod conduction rate test, stable operation, and tests whether the terminal in the terminal connection terminal is conductive through the probe.
[0003] At present, the existing wire rod conduction test device only has simple test passing prompt function and no marking function, and is mostly manually marked by pen or adhesive tape, which is slow in work efficiency, has many procedures and is prone to forgetting to mark or marking mistakes, which is very troublesome. SUMMARY
[0004] In order to overcome the defects of the prior art, the utility model provides a wire rod conduction test device.
[0005] The utility model solves technical scheme that its technical problem adopts:
[0006] A wire rod conduction test device, comprising:
[0007] The base is respectively provided with a fixed test seat and a conduction test seat;
[0008] The tester is arranged on one side of the base and is electrically connected with the fixed test seat and the conduction test seat respectively;
[0009] The driving mechanism is arranged on the base and located on one side of the conduction test seat;
[0010] The marking part is arranged on the output end of the driving mechanism;
[0011] Wherein, the terminal connection terminal of the wire rod to be detected is respectively connected into the fixed test seat and the conduction test seat and is tested by the tester, when the wire rod passes the test, the driving mechanism drives the marking part to move to the direction of the conduction test seat and marks the wire rod.
[0012] The wire rod conduction test device, the conduction test seat includes a chassis, a limiting structure arranged on the upper end of the chassis, and a conduction test assembly arranged on the upper end of the chassis and opposite to the limiting structure, wherein, when the terminal connection terminal of one end of the wire rod to be detected is embedded in the limiting structure, the conduction test assembly moves to the direction of the limiting structure to test the electrical contact with the terminal connection terminal.
[0013] The wire continuity testing device comprises a track arranged at the upper end of the base frame, a testing probe slidingly arranged on the track and electrically connected with the testing instrument, and a driving member hingedly arranged on the track and capable of driving the testing probe to move towards the limiting structure.
[0014] The wire continuity testing device comprises a limiting jig arranged at the upper end of the base frame, and a limiting slot arranged on the limiting jig.
[0015] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member.
[0016] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member.
[0017] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member.
[0018] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member.
[0019] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member.
[0020] The wire continuity testing device comprises a mounting frame arranged on the base, a linear driving module arranged on the mounting frame, and a clamping structure arranged at the output end of the linear driving module and used for clamping the marking member. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0022] Fig. 1 is a structural schematic view of a wire conduction test device according to an embodiment of the present application.
[0023] Fig. 2 is a structural schematic view of a conduction test seat according to an embodiment of the present application.
[0024] Fig. 3 is a structural schematic view of a driving mechanism and a marking member according to an embodiment of the present application. DETAILED DESCRIPTION
[0025] The technical solutions of the present application will be described in detail below in combination with the drawings and embodiments.
[0026] Please refer to Figs. 1 to 3 The present application provides a wire conduction test device, characterized in that it comprises:
[0027] a base 1, on which a fixed test seat 2 and a conduction test seat 3 are respectively arranged;
[0028] a tester 4, arranged on one side of the base 1 and electrically connected with the fixed test seat 2 and the conduction test seat 3 respectively;
[0029] a driving mechanism 5, arranged on the base 1 and located on one side of the conduction test seat 3;
[0030] a marking member 6, arranged at the output end of the driving mechanism 5;
[0031] In the present application, the connecting terminals at both ends of the wire to be detected are respectively connected to the fixed test seat 2 and the conduction test seat 3, and the conduction test is performed by the tester 4. When the wire passes the test, the driving mechanism 5 drives the marking member 6 to move towards the conduction test seat 3 to mark the wire.
[0032] Through the cooperation of the driving mechanism 5 and the marking member 6, the connecting terminals at both ends of the wire to be detected are respectively connected to the fixed test seat 2 and the conduction test seat 3, and the conduction test is performed by the tester 4. When the wire passes the test, the driving mechanism 5 drives the marking member 6 to move towards the conduction test seat 3 to mark the wire. The detection and marking are completed at the same time, and manual marking is not required, which is practical and convenient.
[0033] In the present embodiment, the conduction test working principle of the tester 4 is a common prior art in the field, and will not be described in detail.
[0034] In the present embodiment, the electrical connections between the components, mechanisms and elements are connected by wires, and the wire part is omitted in the drawings to make the drawings more concise and clear.
[0035] Further, the continuity test seat 3 comprises a base frame 31, a limiting structure 32 arranged on the upper end of the base frame 31, and a continuity test assembly 33 arranged on the upper end of the base frame 31 and opposite to the limiting structure 32, wherein when the wiring terminal of one end of the wire to be detected is embedded in the limiting structure 32, the continuity test assembly 33 moves towards the limiting structure 32 to make electrical contact with the wiring terminal for testing.
[0036] Specifically, the continuity test assembly 33 comprises a track 331 arranged on the upper end of the base frame 31, a test probe 332 slidingly arranged on the track 331 and electrically connected to the tester 4, and a driving member 333 hingedly arranged on the track 331 and capable of moving the test probe 332 towards the limiting structure 32.
[0037] The limiting structure 32 comprises a limiting jig 321 arranged on the upper end of the base frame 31, and a limiting groove 322 arranged on the limiting jig 321, and the limiting jig 321 is further provided with a first missing slot 323 on the side opposite to the test probe 332, and the limiting jig 321 is further provided with a second missing slot 324 on the side opposite to the marking member 6.
[0038] The upper end of the fixed test seat 2 is further provided with a slot 20, and a plurality of connection contacts 200 electrically connected to the tester 4 are arranged in the slot 20.
[0039] During detection, the wiring terminal of one end of the wire to be detected is embedded in the slot 20 and contacts the connection contacts 200, and the wiring terminal of the other end is embedded in the limiting groove 322, then the driving member 333 is pulled to move the test probe 332 towards the limiting jig 321, and the test probe on the test probe 332 passes through the first missing slot 323 and contacts the wiring terminal in the limiting groove 322, so that the wiring terminals of both ends of the wire are in continuity with the tester 4, thereby starting the continuity test, which is practical and convenient. When the wire detection is passed, the driving mechanism 5 drives the marking member 6 to move towards the continuity test seat 3 to mark the wire, which can be marked synchronously while completing the detection, without the need for manual marking, which is practical and convenient.
[0040] Further, the driving mechanism 5 comprises a mounting frame 51 arranged on the base 1, a linear driving module 52 arranged on the mounting frame 51, and a clamping structure 53 arranged on the output end of the linear driving module 52 for clamping the marking member 6.
[0041] Specifically, the clamping structure 53 comprises a moving rod 531 arranged on the output end of the linear drive module 52, a clamping seat 532 arranged on the outer end of the moving rod 531, and a locking screw 533 screwed on the clamping seat 532.
[0042] When assembled, the marker 6 is inserted into the clamping seat 532, and the locking screw 533 is tightened to press the bottom against the marker 6, thereby completing the locking, which is convenient to use.
[0043] When the wire detection is passed, the linear drive module 52 is started to drive the clamping seat 532 to move towards the continuity test seat 3, thereby driving the marker 6 to move towards the continuity test seat 3 until the marker 6 passes through the second notch 324 and touches the terminal in the limiting groove 322, thereby marking the wire, which is convenient to use.
[0044] In the embodiment, the driving principle of the linear drive module 52 is a common prior art in the art, which will not be described in detail.
[0045] Further, the fixed test seat 2 and the continuity test seat 3 are detachably connected with the base 1. According to different wires, the corresponding fixed test seat 2 and continuity test seat 3 can be freely replaced, which is convenient to use and has strong applicability.
[0046] In the embodiment, the marker 6 is a marker pen.
[0047] In summary, the embodiment of the application is provided by the cooperation of the driving mechanism 5 and the marker 6. When the terminals of the wire to be detected are connected to the fixed test seat 2 and the continuity test seat 3 respectively and continuity detection is performed by the tester 4, the driving mechanism 5 drives the marker 6 to move towards the continuity test seat 3 to mark the wire after the wire detection is passed. The marker can be synchronized with the detection, and manual marking is not required, which is convenient to use.
[0048] The above is only an embodiment of the application, and does not limit the patent range of the application. Any equivalent structure or direct or indirect application in other related technical fields based on the content of the application and the drawings is also included in the patent protection range of the application.
Claims
1. A wire continuity testing device, characterized by, The utility model relates to a kind of wire testing device, including: Base (1), which is respectively provided with fixed test seat (2) and conduction test seat (3) on it; Tester (4) is arranged on one side of the base (1) and is respectively electrically connected with the fixed test seat (2) and the conduction test seat (3); Driving mechanism (5) is arranged on the base (1) and is located on one side of the conduction test seat (3); Marking member (6) is arranged on the output end of the driving mechanism (5); Wherein, the connecting terminal of the wire to be detected is respectively connected into the fixed test seat (2) and the conduction test seat (3) and is tested by the tester (4), when the wire is detected, the driving mechanism (5) drives the marking member (6) to move to the conduction test seat (3) direction and marks the wire.
2. The wire continuity testing device of claim 1, wherein: The conduction test seat (3) includes a chassis (31), a limiting structure (32) arranged on the upper end of the chassis (31), and a conduction test assembly (33) arranged on the upper end of the chassis (31) and opposite to the limiting structure (32), wherein, when the connecting terminal of one end of the wire to be detected is embedded in the limiting structure (32), the conduction test assembly (33) moves to the limiting structure (32) direction to test the electrical contact with the connecting terminal.
3. The wire continuity testing device of claim 2, wherein: The conduction test assembly (33) includes a track (331) arranged on the upper end of the chassis (31), a test probe (332) slidably arranged on the track (331) and electrically connected with the tester (4), and a driving member (333) hingedly arranged on the track (331) and capable of driving the test probe (332) to move to the limiting structure (32) direction.
4. The wire continuity test device of claim 3, wherein: The limiting structure (32) includes a limiting jig (321) arranged on the upper end of the chassis (31), and a limiting groove (322) opened on the limiting jig (321), the limiting jig (321) is also provided with a first slot (323) on the side opposite to the test probe (332), which can pass through the test probe (332), and the limiting jig (321) is also provided with a second slot (324) on the side opposite to the marking member (6), which can pass through the marking member (6).
5. The wire continuity testing device of claim 1, wherein: The driving mechanism (5) includes a mounting frame (51) arranged on the base (1), a linear drive module (52) arranged on the mounting frame (51), and a clamping structure (53) arranged on the output end of the linear drive module (52) for clamping the marking member (6).
6. The wire continuity test device of claim 5, wherein: The clamping structure (53) includes a moving rod (531) arranged on the output end of the linear drive module (52), a clamping seat (532) arranged on the outer end of the moving rod (531), and a locking screw (533) screwed on the clamping seat (532).
7. The wire continuity testing device of claim 1, wherein: The upper end of the fixed test seat (2) is also provided with a slot (20), and a plurality of connecting contacts (200) electrically connected with the tester (4) are arranged in the slot (20).
8. The wire continuity testing device of claim 1, wherein: The fixed test seat (2) and the conduction test seat (3) are detachably connected with the base (1).
9. The wire continuity testing device of claim 1, wherein: The marking member (6) is a marker.