Automatic processing equipment for double-wire coaxial terminal

By using a rotary table to drive the wire clamping equipment for automated processing, the problem of misjudgment in coaxial terminal connection detection has been solved, and efficient automated production has been achieved.

CN224204559UActive Publication Date: 2026-05-05ADVANCED WIRELESS & ANTENNA (KUNSHAN) LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ADVANCED WIRELESS & ANTENNA (KUNSHAN) LTD
Filing Date
2025-04-17
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing technologies, the connection detection between coaxial terminals and conductive wires relies on manual labor, which is prone to misjudgment, resulting in a high rate of defective products and low production efficiency.

Method used

The system uses a rotating disc to drive the wire clamping equipment through a wire stripper, testing equipment, and wire bonding equipment in sequence, combined with electrical testing equipment for automated processing, thereby achieving automated connection and testing of conductive wires and coaxial terminals.

Benefits of technology

It improved the yield of coaxial terminal connections, reduced the false yield, and increased manufacturing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to automatic processing equipment for double-wire coaxial terminals, which mainly comprises a rotating disk, a first wire stripper, a second wire stripper, a third wire stripper, a fourth wire stripper, core wire illumination detection equipment, first coaxial terminal routing equipment, second coaxial terminal routing equipment, coaxial terminal electrical test equipment and quality management classification equipment, the rotating disc rotates to drive the wire clamping devices to move in sequence through the first wire stripper, the second wire stripper, the third wire stripper and the fourth wire stripper, wire stripping of the wires is completed, core wires are exposed, and the core wire illumination detection device detects whether wire stripping of the core wires is complete or not. Then the first coaxial terminal routing device and the second coaxial terminal routing device are used for conducting coaxial terminal combination on the electric wires respectively, the double-coaxial-terminal electrical testing device is used for conducting electrical testing on the electric wires with coaxial terminal combination completed, and the quality management classification device is used for conducting quality classification on the electric wires with coaxial terminal routing completed.
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Description

Technical Field

[0001] This utility model relates to an automatic processing equipment, and more particularly to an automatic processing equipment for dual-wire coaxial terminals. Background Technology

[0002] Coaxial single-wire cables are mainly used in fiber optic connectors for transmitting optical signals. After manufacturing, they are packaged in coils without being cut or having their insulation removed. When wire bonding is required, the single wire in the coil must be cut, the insulation removed, and the internal conductive wire exposed. The conductive wire then secures the coaxial terminal. The integrity of the connection between the conductive wire and the coaxial terminal directly affects the stability of signal transmission. Therefore, testing is necessary after the connection is complete. However, the aforementioned testing method relies on manual inspection, which is prone to errors such as operator inattention, lack of experience, or any personal factors influencing the results. This can lead to errors like misclassifying a good product as a defective one, or vice versa, directly impacting product stability after shipment. Furthermore, because this method uses coaxial single-wire cables, the overall manufacturing quantity is quite limited, hindering the improvement of coaxial terminal production efficiency.

[0003] Therefore, how to improve the solution to the above problems is a topic that relevant technical personnel need to consider and solve. Utility Model Content

[0004] This utility model provides an automatic processing equipment for dual-wire coaxial terminals, which aims to solve the above-mentioned technical problems.

[0005] This utility model provides an automatic processing device for dual-wire coaxial terminals, characterized by: a rotating disk with a plurality of wire clamping devices for clamping wires, the wire clamping devices being arranged in a ring at equal intervals, and a first wire stripper, a second wire stripper, a third wire stripper, a fourth wire stripper, and a core wire illumination detection device being sequentially arranged around the rotating disk adjacent to the wire clamping devices. The system includes a first coaxial terminal bonding device, a second coaxial terminal bonding device, and a dual coaxial terminal electrical testing device; and a quality control classification device, which is mounted on one side of the rotating disk. The rotating disk rotates, causing the wire clamping devices to move sequentially by the first wire stripper, the second wire stripper, the third wire stripper, and the fourth wire stripper to strip the wires and expose the core wires. The core wire light detection device checks whether the stripping of the core wires is complete. Then, the first coaxial terminal bonding device and the second coaxial terminal bonding device respectively attach the coaxial terminals to the wires. The dual coaxial terminal electrical testing device performs electrical testing on the wires with the coaxial terminals attached. The quality control classification device classifies the wires with the coaxial terminals attached.

[0006] Preferably, each of the wire clamping devices includes a wire clamp and a bent tube connected to the wire clamp, wherein the bent tube is bent upwards.

[0007] Preferably, it further includes a dual-wire coaxial soldering automatic processing device, which is mounted on one side of the dual-wire coaxial terminal automatic processing device.

[0008] Preferably, it further includes a double-clamping exchange device, which is installed between the automatic processing equipment for double-coaxial terminals and the automatic processing equipment for double-coaxial soldering, and moves each of the wires of the automatic processing equipment for double-coaxial soldering to the clamping device in the automatic processing equipment for double-coaxial terminals.

[0009] Due to the adoption of the above technical solution, this utility model has the following beneficial effects:

[0010] 1. Improve the yield of coaxial terminals after clamping terminal wires by using dual coaxial terminal electrical testing equipment and quality control classification equipment, and at the same time avoid the occurrence of false yield.

[0011] 2. By feeding two wires through a double-wire tray and using a rotating disk to produce double-wire coaxial terminals, the overall manufacturing quantity is increased, effectively improving the production efficiency of coaxial terminals. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the equipment configuration for the automatic processing equipment for dual-wire coaxial terminals of this utility model.

[0013] Figure 2 This is a schematic diagram of the wire transmission path of the automatic processing equipment for dual-wire coaxial terminals of this utility model.

[0014] Symbol Explanation

[0015] 1. Rotary disc; 2. First wire stripper; 3. Second wire stripper; 4. Third wire stripper; 5. Fourth wire stripper; 6. Core wire illumination inspection equipment; 7. First coaxial terminal bonding equipment; 8. Second coaxial terminal bonding equipment; 9. Coaxial terminal electrical testing equipment; 10. Quality control classification equipment; 11. Wire clamping equipment; 110. Wire clamp; 112. Bending tube; 12. Automatic processing equipment for double-wire coaxial soldering; 13. Double-clamped wire exchange equipment. Detailed Implementation

[0016] Please refer to Figure 1 and Figure 2 The diagram shown is a schematic diagram of the equipment configuration and the wire transmission path of the automatic processing equipment for dual-wire coaxial terminals according to this utility model.

[0017] This utility model is an automatic processing equipment for double-wire coaxial terminals, mainly including: a rotary disk 1, a first wire stripper 2, a second wire stripper 3, a third wire stripper 4, a fourth wire stripper 5, a core wire light illumination detection device 6, a first coaxial terminal bonding device 7, a second coaxial terminal bonding device 8, a coaxial terminal electrical testing device 9, and a quality control classification device 10.

[0018] The rotating disk 1 is equipped with a plurality of wire clamping devices 11 for clamping wires. The wire clamping devices 11 are arranged in a ring at equal intervals. Adjacent to the wire clamping devices 11 around the rotating disk 1 (the arrows indicate the direction of rotation and the direction of movement of each wire), a first wire stripper 2, a second wire stripper 3, a third wire stripper 4, a fourth wire stripper 5, and a core wire light illumination detection device 6 are arranged in sequence. The system comprises a first coaxial terminal bonding device 7, a second coaxial terminal bonding device 8, a coaxial terminal electrical testing device 9, and a quality control classification device 10. The quality control classification device 10 is mounted on one side of a rotating disk 1. The rotating disk 1 rotates, causing the wire clamping devices 11 to move sequentially, with the first wire stripper 2, the second wire stripper 3, the third wire stripper 4, and the fourth wire stripper 5 moving to strip the wires and expose the core wires. The core wire light detection device 6 checks whether the stripping is complete. Then, the first coaxial terminal bonding device 7 and the second coaxial terminal bonding device 8 respectively bond coaxial terminals to the wires. The dual coaxial terminal electrical testing device 9 performs electrical tests on the wires with the coaxial terminals bonded. The quality control classification device 10 classifies the wires with the coaxial terminals bonded.

[0019] Each of the aforementioned wire clamping devices 11 includes a wire clamp 110 and a bent tube 112 connected to the wire clamp 110. The bent tube 112 is bent upwards. When the wire clamp 110 receives the wire, the wire can be set along the bending direction of the bent tube 112 through the bent tube 112, which effectively achieves the effect of saving space.

[0020] A dual-wire coaxial terminal automatic processing equipment is installed on one side of a dual-wire coaxial soldering automatic processing equipment 12. A dual-wire clamping exchange device 13 is installed between the dual-wire coaxial terminal automatic processing equipment and the dual-wire coaxial soldering automatic processing equipment 12, and moves each wire of the dual-wire coaxial soldering automatic processing equipment 12 to the clamping device 11 in the dual-wire coaxial terminal automatic processing equipment.

[0021] As can be seen from the foregoing, this utility model has the following beneficial effects: 1. By using a dual coaxial terminal electrical testing device and a quality control classification device, the yield of coaxial terminals after clamping terminal wires is improved, while avoiding false yields. 2. By using a dual-wire reel to transport dual wires and a rotary disc to produce dual-wire coaxial terminals in a rotating manner, the overall manufacturing quantity is increased, effectively improving the production efficiency of coaxial terminals.

Claims

1. An automatic processing equipment for dual-wire coaxial terminals, characterized in that... : A rotating disk is provided with a plurality of wire clamping devices for clamping wires, the wire clamping devices being arranged circumferentially at equal intervals. Adjacent to the wire clamping devices around the rotating disk, a first wire stripper, a second wire stripper, a third wire stripper, a fourth wire stripper, a core wire illumination detection device, a first coaxial terminal bonding device, a second coaxial terminal bonding device, and a dual coaxial terminal electrical testing device are sequentially arranged. A quality control and sorting device is mounted on one side of the rotating disk. The rotating disk rotates and drives the wire stripping devices in sequence, namely the first wire stripper, the second wire stripper, the third wire stripper, and the fourth wire stripper, to strip the wires and expose the core wires. The core wire light detection device detects whether the stripping of the core wires is complete. Then, the first coaxial terminal bonding device and the second coaxial terminal bonding device respectively bond the wires to the coaxial terminals. The dual coaxial terminal electrical testing device performs electrical testing on the wires that have completed the coaxial terminal bonding. The quality control and sorting device sorts the wires that have completed the coaxial terminal bonding according to their quality.

2. The automatic processing equipment for dual-wire coaxial terminals according to claim 1, characterized in that... Each of the wire clamping devices includes a wire clamp and a bent tube connected to the wire clamp, the bent tube being bent upwards.

3. The automatic processing equipment for dual-wire coaxial terminals according to claim 1, characterized in that... It also includes a dual-wire coaxial soldering automatic processing equipment, which is mounted on one side of the dual-wire coaxial terminal automatic processing equipment.

4. The automatic processing equipment for dual-wire coaxial terminals according to claim 3, characterized in that... It further includes a double-clamping exchange device, which is installed between the automatic processing equipment for double-coaxial terminals and the automatic processing equipment for double-coaxial soldering, and moves each of the wires of the automatic processing equipment for double-coaxial soldering to the clamping device in the automatic processing equipment for double-coaxial terminals.