Laser device coupling test tool

Through the combined design of the fixing plate, test mounting plate and copper sleeve, the trouble and inefficiency of manual handheld operation in laser device coupling test is solved, and simplified operation and efficient testing are achieved.

CN223166314UActive Publication Date: 2025-07-29XIAMEN BELLE INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202422418664.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-29
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

During the coupling test of existing laser devices, manual handheld fixation is troublesome, low efficiency, high labor intensity, high labor cost and unsatisfactory test results.

Method used

The combination design of fixing plates, test mounting plates made of wood, a pair of copper sleeves and fastening bolts is used to fix the device pins through the fixing plates and copper sleeves, and the fastening bolts are used to achieve electrical conduction, simplifying the operation process.

Benefits of technology

The coupling test of laser devices is achieved simple operation, high efficiency, low labor intensity, low labor cost and good testing effect, and meets the usage requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a laser device coupling test tool, which comprises a fixed plate, a bakelite test mounting plate, a pair of copper sleeves and a pair of fastening bolts, four fixing holes are arranged at the top of the fixed plate, the fixed plate is fixed on an external coupling table through the four fixing holes, the test mounting plate is fixedly arranged in the middle of the fixed plate, and the copper sleeves are fixedly arranged on the test mounting plate. A device placing counter bore is formed in the top of the test mounting plate, the pair of copper sleeves are symmetrically arranged on the two sides of the device placing counter bore and extend downwards to the bottom of the test mounting plate, pins of a to-be-tested device penetrate through the copper sleeves from top to bottom, wire penetrating holes are formed in the outer sides of the copper sleeves, and test wires are inserted into the wire penetrating holes. The outer side of each threading hole is provided with a leading-in groove, and the pair of fastening bolts are screwed in from the outside of the leading-in grooves. The device is simple and convenient to operate, high in efficiency, low in labor intensity, low in labor cost and good in test effect, and effectively meets the use requirements.
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Description

Technical Field

[0001] The utility model belongs to the field of communication, and particularly relates to a coupling test tooling for laser devices, which is easy to operate, has high test efficiency and low labor intensity. Background Art

[0002] After the production of laser devices, coupling tests need to be carried out. At present, the tests are carried out by manually holding and fixing the devices, and then connecting them through conductive wires. This manual holding and fixing method can meet certain usage requirements, but there are also large defects. Manual operation is troublesome, inefficient, has a high labor intensity, high labor costs, the test effect is not ideal, and it cannot effectively meet the usage requirements.

[0003] The technical problem to be solved by the utility model is to provide a coupling test tooling for laser devices, which is simple and convenient to operate, has high test efficiency, low labor intensity, low labor costs, good test effect, and can effectively meet the usage requirements. Content of the Utility Model

[0004] To solve the problems of the existing technology such as troublesome manual operation, low efficiency, high labor intensity, high labor costs, unsatisfactory test effect, and inability to effectively meet the usage requirements, the utility model adopts the following technical solutions:

[0005] The utility model provides a coupling test tooling for laser devices, which includes a fixing plate, a test mounting plate made of bakelite, a pair of copper sleeves and a pair of fastening bolts. Four fixing holes are provided at the top of the fixing plate, and the fixing plate is fixed on an external coupling table through the four fixing holes. The test mounting plate is fixedly arranged in the middle of the fixing plate. A device placement counterbore is opened at the top of the test mounting plate. The pair of copper sleeves are symmetrically arranged on both sides of the device placement counterbore and extend downward to the bottom of the test mounting plate. The pins of the device to be tested pass through the copper sleeves from top to bottom. Threading holes are provided on the outer sides of the copper sleeves, and test wires are inserted into the threading holes. Lead-in grooves are opened on the outer sides of the threading holes. The pair of fastening bolts are screwed in from the outside of the lead-in grooves inward.

[0006] The beneficial effect of the utility model is that the placement holes in the test plate fix the device and are provided with copper sleeves for conduction, which is simple and convenient to operate, has high efficiency, low labor intensity, low labor costs, good test effect, and can effectively meet the usage requirements. Description of the Drawings

[0007] Figure 1 It is a schematic structural diagram of an embodiment of the utility model. Detailed Embodiment

[0008] The preferred embodiments of the utility model will be described in detail below with reference to the drawings.

[0009] Please refer to Figure 1, a laser device coupling test tooling, comprising a fixing plate 1, a test mounting plate 2 made of bakelite, a pair of copper sleeves 3 and a pair of fastening bolts 4. Four fixing holes 11 are provided at the top of the fixing plate 1. The fixing plate 1 is fixed on an external coupling table through the four fixing holes 11. The test mounting plate 2 is fixedly arranged in the middle of the fixing plate 1. A device placement counterbore 21 is formed at the top of the test mounting plate 2. The pair of copper sleeves 3 are symmetrically arranged on both sides of the device placement counterbore 21 and extend downward to the bottom of the test mounting plate 2. The pins of the device to be tested pass through the copper sleeves 3 from top to bottom. Threading holes 22 are provided on the outer sides of the copper sleeves 3. Test wires are inserted into the threading holes 22. Lead-in grooves 23 are formed on the outer sides of the threading holes 22. The pair of fastening bolts 4 are screwed in from the outside of the lead-in grooves 23. During operation, the two pins of the device are inserted into the copper sleeves and the top is placed in the counterbore, so that the device is fixed. The test wires are inserted into the threading holes. At the same time, the fastening bolts are tightened inward to make the test wires fit tightly with the copper sleeves completely. In this way, electrical conduction can be achieved and the test can be completed. There is no need for manual holding, the operation is convenient and simple, the test efficiency is high and the effect is good, effectively meeting the use requirements.

[0010] The beneficial effects of the present utility model are as follows: The placement holes in the test plate fix the device and set the copper sleeves for conduction. The operation is simple, convenient and efficient, with low labor intensity, low labor cost, good test effect, and effectively meeting the use requirements.

[0011] The above embodiments and diagrams do not limit the product form and style of the present utility model. Any appropriate changes or modifications made by those of ordinary skill in the relevant technical field shall be regarded as not departing from the patent scope of the present utility model.

Claims

1. A laser device coupling test tooling, characterized in that: It includes a fixing plate (1), a bakelite test mounting plate (2), a pair of copper sleeves (3) and a pair of fastening bolts (4). Four fixing holes (11) are provided at the top of the fixing plate (1). The fixing plate (1) is fixed on an external coupling table through the four fixing holes (11). The test mounting plate (2) is fixedly arranged in the middle of the fixing plate (1). A device placement counterbore (21) is formed at the top of the test mounting plate (2). The pair of copper sleeves (3) are symmetrically arranged on both sides of the device placement counterbore (21) and extend downward to the bottom of the test mounting plate (2). The pins of the device to be tested pass through the copper sleeves (3) from top to bottom. Threading holes (22) are provided on the outer sides of the copper sleeves (3). Test wires are inserted into the threading holes (22). Lead-in grooves (23) are formed on the outer sides of the threading holes (22). The pair of fastening bolts (4) are screwed in from the outside of the lead-in grooves (23) inward.