A fusion terminal detection platform

CN224803151UActive Publication Date: 2026-09-25CSG SMART SCI&TECH CO LTD +1
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Patent Information

Application Number
CN202522114268.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-25
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种融合终端检测台,以解决上述检测过程中终端容易发生晃动或移位,影响检测结果的准确性的问题

Benefits of technology

本实用新型可以方便快捷的对融合终端进行固定,且可调节设置的底边固定机构和侧边固定机构可以满足不同尺寸的融合终端固定使用,侧边固定机构和底边固定机构均为可调节设置,能够根据不同型号、尺寸的融合终端进行灵活调整,在底边固定机构的顶部不受到压力时,侧边固定机构和底边固定机构可以将融合终端稳定的固定在底座的上端,实现融合终端在该检测台上的稳定固定,从而可以准确地对不同融合终端进行检测,提升了整体检测的质量和可靠性。

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Abstract

The utility model relates to electronic product test field discloses a kind of fusion terminal detection platform, including the placing rack for placing fusion terminal being obliquely arranged on mounting bracket, further include: bearing unit, setting on the placing rack is used to fix fusion terminal;The bearing unit, including the base for supporting bearing unit being arranged on the upper end of the placing rack, adjustable setting on the base is used to fix the both sides of fusion terminal Side edge fixing mechanism and adjustable setting on the base is used to fix the bottom end of the fusion terminal Bottom edge fixing mechanism, the utility model can be fixed to fusion terminal conveniently and quickly, and adjustable setting bottom edge fixing mechanism and side edge fixing mechanism can satisfy the fixed use of fusion terminal of different sizes, realize the stable fixation of fusion terminal on the detection platform, improve the quality and reliability of overall detection.
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Description

Technical Field

[0001] This utility model relates to the field of electronic product testing technology, specifically to a fusion terminal testing station. Background Technology

[0002] Converged terminals are edge devices in a smart IoT system, possessing information collection, IoT agent, and edge computing functions. They are installed on the power supply side of the distribution transformer in a distribution substation to enable online management and remote operation and maintenance of various edge IoT agents and smart terminals.

[0003] The existing equipment has the following drawbacks: the existing fusion terminal testing station has a relatively simple method of fixing the fusion terminal. It can usually only fix a specific part of the terminal and cannot be flexibly adjusted according to different models and sizes of fusion terminals. This makes the terminal prone to shaking or displacement during the testing process, affecting the accuracy of the test results.

[0004] Therefore, this application proposes a fusion terminal testing station to solve the above-mentioned problems. Utility Model Content

[0005] The purpose of this invention is to provide a fusion terminal testing station to solve the problem that the terminal is prone to shaking or displacement during the above-mentioned testing process, which affects the accuracy of the testing results.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a fusion terminal testing platform, comprising a placement frame for placing fusion terminals, which is inclinedly mounted on a mounting frame, and further comprising: A support unit is mounted on the placement frame to fix the fusion terminal. The support unit includes a base disposed on the upper end of the placement frame for supporting the support unit, a side fixing mechanism adjustablely disposed on the base for fixing the two sides of the fusion terminal, and a bottom fixing mechanism adjustablely disposed on the base for fixing the bottom of the fusion terminal.

[0007] The upper end of the base is provided with a mounting shell for supporting the side fixing mechanism and the bottom fixing mechanism.

[0008] The side fixing mechanism includes: The mounting shaft is disposed on the base and located inside the mounting housing; The first gear is fixed on the mounting shaft; The first rack is disposed at an angle to the first gear along the Y-axis direction in the mounting housing and meshes with the first gear. Side clamps, fixed to the side of the two first racks located outside the mounting housing, are used to clamp and fix the side of the fusion terminal.

[0009] The bottom edge fixing mechanism includes: The second gear is fixed on the mounting shaft and located between the first gear and the base; The movable frame is mounted on the mounting housing along the Z-axis and is located outside the second gear; The second rack is mounted on the movable frame and meshes with the second gear. A bottom clamping plate, fixed to the lower end of the movable frame and located below the mounting shell, is used to fix the lower end of the fusion terminal. An elastic element is disposed in the portion between the top of the mounting housing and the movable frame.

[0010] The side clamp has an L-shaped structure and its inner side abuts against the side of the fusion terminal.

[0011] The bottom clamp plate has an L-shaped structure and a slot is provided at the position of the corresponding wiring terminal on the fusion terminal.

[0012] Compared with the prior art, the beneficial effects of this utility model are: This invention allows for convenient and quick fixation of fusion terminals. The adjustable bottom and side fixing mechanisms can accommodate fusion terminals of different sizes. Both the bottom and side fixing mechanisms are adjustable, allowing for flexible adjustments based on different models and sizes of fusion terminals. When the top of the bottom fixing mechanism is not under pressure, the side and bottom fixing mechanisms can stably fix the fusion terminal to the upper part of the base, achieving stable fixation of the fusion terminal on the testing platform. This enables accurate testing of different fusion terminals, improving the overall testing quality and reliability. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the main structure in one embodiment of the present invention; Figure 2 This is a front view of a structural schematic diagram of one embodiment of the present invention; Figure 3 This is a schematic diagram of the structure in which the carrying unit fixes the fusion terminal in one embodiment of the present invention; Figure 4 This is a schematic diagram of the bottom edge fixing mechanism fixing the fusion terminal in one embodiment of the present invention; Figure 5 This is a schematic diagram of the structure of the bearing unit in one embodiment of the present invention; Figure 6 This is a schematic diagram of the connection between the side fixing mechanism and the bottom fixing mechanism in one embodiment of the present invention; Figure 7 This is a schematic diagram of the structure of the bearing unit exploded in one embodiment of the present invention; Figure 8 This is a schematic diagram of the connection between the wedge block and the first gear in one embodiment of the present invention; Figure 9 This is a schematic diagram of the structure of the carrier unit fixing fusion terminals of different sizes in one embodiment of the present invention.

[0014] In the diagram: 1. Mounting bracket; 11. Frame; 12. Placement bracket; 13. Support leg; 2. Bearing unit; 21. Base; 211. Mounting shell; 21101. Limiting groove; 212. Mounting shaft; 2121. Wedge block; 22. Side fixing mechanism; 221. First gear; 222. First rack; 223. Side clamping plate; 23. Bottom fixing mechanism; 231. Moving frame; 232. Second rack; 233. Bottom clamping plate; 234. Second gear; 235. Elastic element; 3. Fusion terminal; 31. Wiring terminal. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0016] Please see Figure 1-9 This utility model provides a technical solution: a fusion terminal testing platform, including a placement frame 12 for placing a fusion terminal 3, which is inclinedly arranged on a mounting frame 1, and further including: a support unit 2, which is arranged on the placement frame 12 for fixing the fusion terminal 3; the support unit 2 includes a base 21 arranged on the upper end of the placement frame 12 for supporting the support unit 2, a side fixing mechanism 22 adjustablely arranged on the base 21 for fixing the two sides of the fusion terminal 3, and a bottom fixing mechanism 23 adjustablely arranged on the base 21 for fixing the bottom end of the fusion terminal 3. The mounting frame 1 includes a frame 11 and a support leg 13 fixed on the lower end of the frame 11 for supporting the frame 11.

[0017] It should be noted that during operation, the placement rack 12 is fixed at intervals on the frame 11, and the supporting unit 2 is installed on the placement rack 12 according to the number of fusion terminals 3. The base 21 is fixed on the placement rack 12, and then the bottom edge fixing mechanism 23 is pressed down. During the pressing down of the bottom edge fixing mechanism 23, the side fixing mechanisms 22 will expand to both sides. Then, the fusion terminal 3 is placed on the base 21, and then the bottom edge fixing mechanism 23 is moved up, causing the two side fixing mechanisms 22 to retract inward. Finally, the fusion terminal 3 is fixed on the base 21. By setting up this device, the fusion terminal 3 can be conveniently and quickly fixed. Furthermore, the adjustable bottom fixing mechanism 23 and side fixing mechanism 22 can meet the needs of fixing fusion terminals 3 of different sizes. Both the side fixing mechanism 22 and the bottom fixing mechanism 23 are adjustable and can be flexibly adjusted according to different models and sizes of fusion terminals 3. When the top of the bottom fixing mechanism 23 is not under pressure, the side fixing mechanism 22 and the bottom fixing mechanism 23 can stably fix the fusion terminal 3 on the upper end of the base 21, realizing the stable fixation of the fusion terminal 3 on the testing table. This allows for accurate testing of different fusion terminals 3, improving the overall testing quality and reliability.

[0018] In one embodiment, the upper end of the base 21 is provided with a mounting shell 211 for supporting the side fixing mechanism 22 and the bottom fixing mechanism 23.

[0019] This design is for reference. Figure 5 The mounting housing 211 provides a stable mounting platform for the side fixing mechanism 22 and the bottom fixing mechanism 23, integrating the various dispersed components and ensuring that the connections between the components are firm and reliable, and not easily loosened. This not only guarantees the stability of the fixing mechanism during normal use, but also reduces the detection error caused by loose components, and improves the accuracy of the detection results. In one embodiment, the side fixing mechanism 22 includes: a mounting shaft 212, which is disposed on the base 21 and located inside the mounting shell 211; a first gear 221, which is fixed on the mounting shaft 212; a first rack 222, which is disposed at an equal angle on the mounting shell 211 along the Y-axis and meshes with the first gear 221; and a side clamping plate 223, which is fixed on the side of the two first racks 222 located outside the mounting shell 211, for clamping and fixing the side of the fusion terminal 3, and the mounting shell 211 is provided with a limiting groove 21101 for the first rack 222 to move.

[0020] This design is for reference. Figure 5-9The first gear 221 and the first rack 222 are meshed together to achieve precise mechanical transmission. When the first gear 221 rotates, it meshes with the first rack 222, which can drive the two racks 222 to move closer or further apart at the same time. This causes the control side clamp 223 to open and close. The control side clamp 223 clamps the side of the fusion terminal 3 to ensure that the fusion terminal 3 is stably fixed during the detection process and will not affect the accuracy of the detection results due to shaking or displacement. In addition, the limiting groove 21101 can restrict the movement direction of the first rack 222, so that the first rack 222 can move in the specified direction and avoid the first rack 222 from tilting during the movement, thereby further improving the stability of the side clamp 223 in fixing the fusion terminal 3.

[0021] In one embodiment, the bottom edge fixing mechanism 23 includes: a second gear 234, fixed on the mounting shaft 212 and located between the first gear 221 and the base 21; a movable frame 231, passing through the mounting shell 211 along the Z-axis and located outside the second gear 234; a second rack 232, disposed on the movable frame 231 and meshing with the second gear 234; a bottom clamping plate 233, fixed at the lower end of the movable frame 231 and located below the mounting shell 211, used to fix the lower end of the fusion terminal 3; and an elastic element 235, disposed between the top of the mounting shell 211 and the movable frame 231, the elastic element 235 being made of a damped spring or an elastic pad, a wedge block 2121 fixed on the mounting shaft 212, the second gear 234 and the first gear 221 being fixed on the wedge block 2121, so that when the second gear 234 drives the mounting shaft 212 to rotate, the first gear 221 also rotates accordingly.

[0022] This design is for reference. Figure 3-9When the fusion terminal 3 needs to be installed, the movable frame 231 is pressed down. At this time, the second rack 232 moves downward inside the mounting shell 211, thereby causing the bottom clamping plate 233 to move down, making it easier to place the fusion terminal 3 on the mounting shell 211. During the downward movement of the movable frame 231, the elastic element 235 is squeezed. During the downward movement of the second rack 232, it meshes with the second gear 234, thereby driving the second gear 234 to rotate on the mounting shaft 212. When the mounting shaft 212 rotates, the second gear 234 fixed on the mounting shaft 212 rotates. The second gear 234 meshes with the second rack 232, allowing the second rack 232 to move outward along the limiting groove 21101 on the mounting shell 211, thereby driving the two side clamping plates 223 to move outward. When the fusion terminal 3 is placed on the mounting shell 211, due to the placement frame 1 Since 2 is tilted, the bottom of the fusion terminal 3 will abut against the bottom clamp 233. Then, stop pressing the moving frame 231. At this time, the elastic element 235 drives the moving frame 231 to move upward, which in turn causes the bottom clamp 233 to move upward. As the moving frame 231 moves upward, it will drive the second gear 234 to rotate in reverse, which in turn causes the first gear 221 to drive the two first racks 222 to move closer to each other. When the two side clamps 223 are clamped and fixed to the sides of the fusion terminal 3, the bottom clamp 233 stops moving upward. Thus, the bottom clamp 233 and the two side clamps 223 fix the sides and bottom of the fusion terminal 3, effectively reducing the shaking and displacement of the terminal during the detection process and improving the accuracy of the detection results. When it is necessary to disassemble the fusion terminal 3, pressing the moving frame 231 downward will separate the side clamps 223 from the fusion terminal 3.

[0023] In one embodiment, the side clamp 223 is designed in an L-shape and its inner side abuts against the side of the fusion terminal 3.

[0024] This design is for reference. Figure 3-9 The L-shaped side clamp 223 has two mutually perpendicular clamping surfaces. When its inner side abuts against the side of the fusion terminal 3, it can constrain the fusion terminal 3 from two directions at the same time. In the Y-axis direction, it can prevent the fusion terminal 3 from swaying left and right; in the X-axis direction, it can prevent the fusion terminal 3 from moving back and forth. Through the double fixing method, the displacement of the fusion terminal 3 caused by vibration or external force during the detection process is reduced, ensuring the accuracy of the detection results.

[0025] In one embodiment, the bottom clamp 233 is designed in an L-shape and a slot is provided at the position of the wiring terminal 31 on the corresponding fusion terminal 3.

[0026] This design is for reference. Figure 4The L-shaped base clamp 233 has two mutually perpendicular clamping surfaces, which can constrain the fusion terminal 3 from two different directions. In the X-axis direction, it can prevent the fusion terminal 3 from moving back and forth; in the Z-axis direction, it can prevent the fusion terminal 3 from swaying up and down. This bidirectional fixing method is more stable and reliable than single-direction fixing, ensuring that the fusion terminal 3 maintains a fixed position during the testing process, reducing displacement caused by vibration or external force, thereby ensuring the accuracy of the test results. On the fusion terminal 3, the wiring terminal 31 is a key part for electrical connection, which requires frequent insertion and removal of cables. The base clamp 233 has slots in the corresponding positions, providing sufficient operating space for the wiring terminal 31, so that the testing personnel can easily insert and remove cables without being obstructed by the base clamp 233, improving the efficiency and accuracy of wiring, and reducing operational errors and time waste caused by wiring difficulties.

[0027] Furthermore, if the embodiments involve descriptions such as "first," "second," etc., these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relation to the specification. The significance or implied number of the indicated technical features is not specified. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features.

Claims

1. A fusion terminal testing station, comprising a placement rack (12) for placing a fusion terminal (3) and inclinedly mounted on a mounting frame (1), characterized in that, Also includes: The support unit (2) is mounted on the placement frame (12) for fixing the fusion terminal (3); The support unit (2) includes a base (21) provided on the upper end of the placement frame (12) for supporting the support unit (2), a side fixing mechanism (22) adjustablely provided on the base (21) for fixing the two sides of the fusion terminal (3), and a bottom fixing mechanism (23) adjustablely provided on the base (21) for fixing the bottom end of the fusion terminal (3).

2. The fusion terminal detection station according to claim 1, characterized in that: The upper end of the base (21) is provided with a mounting shell (211) for supporting the side fixing mechanism (22) and the bottom fixing mechanism (23).

3. The fusion terminal detection station according to claim 2, characterized in that: The side fixing mechanism (22) includes: Mounting shaft (212) is disposed on the base (21) and located inside the mounting housing (211); The first gear (221) is fixed on the mounting shaft (212); The first rack (222) is disposed at an angle to the first gear (221) along the Y-axis direction in the mounting housing (211) and meshes with the first gear (221); Side clamps (223) are fixed on the side of the two first racks (222) located outside the mounting shell (211) for clamping and fixing the side of the fusion terminal (3).

4. The fusion terminal testing station according to claim 3, characterized in that: The bottom edge fixing mechanism (23) includes: The second gear (234) is fixed on the mounting shaft (212) and located between the first gear (221) and the base (21); The movable frame (231) passes through the mounting housing (211) along the Z-axis and is located outside the second gear (234); The second rack (232) is mounted on the movable frame (231) and meshes with the second gear (234); The bottom clamp (233) is fixed to the lower end of the movable frame (231) and located below the mounting shell (211) for fixing the lower end of the fusion terminal (3); An elastic element (235) is disposed between the top of the mounting housing (211) and the movable frame (231).

5. A fusion terminal testing station according to claim 3, characterized in that: The side clamp (223) has an L-shaped structure and its inner side abuts against the side of the fusion terminal (3).

6. The fusion terminal detection station according to claim 4, characterized in that: The bottom clamp (233) has an L-shaped structure and a slot is provided at the position of the corresponding wiring terminal (31) on the fusion terminal (3).