Solar cell connecting wire arrangement device

By designing a solar cell wiring organization device that combines snap-fit ​​and rotating components, the problems of tangling and misalignment caused by loose wiring were solved, achieving neat and fixed wiring and improving the module yield and production efficiency.

CN224556157UActive Publication Date: 2026-07-24XINYU YU ZHOU PHOTOVOLTAIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINYU YU ZHOU PHOTOVOLTAIC TECH CO LTD
Filing Date
2025-10-25
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

After the stringing process, the wiring from the solar cells is loose and disordered, which can easily lead to tangling and misalignment, affecting the yield of the modules and production efficiency.

Method used

Design a device that includes a snap-fit ​​assembly, a rotating assembly, and a wire clamping assembly. The snap-fit ​​assembly snaps onto the through hole of the crossbar of the solar panel mounting bracket, the rotating assembly enables 360° rotation, and the C-groove and spring structure are combined to organize and fix the wiring.

Benefits of technology

Effectively organize and secure wiring to prevent tangling and misalignment, thereby improving component yield and production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224556157U_ABST
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Abstract

The utility model provides a solar cell piece wiring arrangement device, include: joint subassembly, rotating component and card line subassembly, joint subassembly is jointed on the through -hole of horizontal pole of solar installation support, is equipped with rotating component on the sliding connection of joint subassembly, is equipped with card line subassembly on rotating component rotation connection, when arranging solar cell piece wiring, joint subassembly is jointed to the through -hole of horizontal pole of solar installation support, and wiring is jointed to card line subassembly, through the setting of rotating component, make card line subassembly can carry out 360 degree rotation, make card line subassembly can carry out each direction's wiring arrangement.
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Description

Technical Field

[0001] This utility model relates to the field of solar panel processing technology, and in particular to a solar cell wiring arrangement device. Background Technology

[0002] With the rapid development of the photovoltaic industry towards high efficiency and automation, after the stringing process, multiple busbars or tinned copper strips are led out from the back of solar cells to collect current. These leads are usually loose and disordered, and are prone to microcracks, fragmentation, or even short circuits in subsequent layout and lamination processes due to entanglement, misalignment, or uneven stress, which seriously affects the module yield and production efficiency. Therefore, a solar cell wiring management device is proposed. Utility Model Content

[0003] To address at least one of the aforementioned technical shortcomings, this utility model provides a solar cell wiring arrangement device, comprising: a snap-fit ​​component, a rotating component, and a wire-clamping component. The snap-fit ​​component is snapped into the through hole of the crossbar of the solar mounting bracket. The rotating component is slidably connected to the snap-fit ​​component, and the wire-clamping component is rotatably connected to the rotating component.

[0004] Furthermore, the snap-fit ​​assembly includes two Z-shaped plates, with a spring providing a fixed connection between the two Z-shaped plates.

[0005] Furthermore, the bottom of both Z-shaped plates is fixedly connected with sliders, the sliding direction of the sliders is parallel to the compression direction of the spring, the rotating component includes a connecting rod, the top of the connecting rod is provided with a groove, the two sliders are slidably connected inside the groove, and the two ends of the groove are sealed.

[0006] Furthermore, a rotating rod is fixedly connected to the bottom end of the connecting rod, and the wire clamping assembly includes a wire clamping rod, the bottom end of which is provided with a wire clamping groove, which is a C-shaped groove with an angle greater than 210°.

[0007] Furthermore, both sides of the bottom edge of the cable slot are provided with curved surfaces.

[0008] Furthermore, a rotating hole is provided at the top of the cable clamp rod, and the rotating hole is rotatably connected to the rotating rod.

[0009] Furthermore, the cross-section of the rotating hole has a T-shaped structure. Beneficial effects

[0010] When tidying up the wiring of solar cells, attach the clip assembly to the through hole of the crossbar of the solar mounting bracket, attach the wiring clip to the wire clip assembly, and by rotating the assembly, the wire clip assembly can rotate 360°, allowing the wiring to be tidied up in all directions.

[0011] When attaching the snap-fit ​​assembly to the through hole of the crossbar of the solar mounting bracket, press the two Z-shaped plates by hand to compress the spring between the Z-shaped plates, allowing the two Z-shaped plates to be inserted into the through hole of the crossbar of the solar mounting bracket. Release the two Z-shaped plates, and under the elastic force of the spring, the two Z-shaped plates can be snapped onto the through hole of the crossbar of the solar mounting bracket.

[0012] The purpose, features, and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Attached Figure Description

[0013] Figure 1 The overall isometric view of this utility model Figure 1 .

[0014] Figure 2 The overall isometric view of this utility model Figure 2 .

[0015] Figure 3 A cross-sectional view of the entire utility model. Figure 1 .

[0016] Figure 4 A cross-sectional view of the entire utility model. Figure 2 .

[0017] exist Figures 1 to 4 The correspondence between the component names or lines and the attached drawing numbers is as follows: Snap-fit ​​assembly 1, Z-shaped plate 11, spring 12, slider 13, rotating assembly 2, connecting rod 21, slide groove 22, rotating rod 23, wire clamping assembly 3, wire clamping rod 31, wire clamping groove 32, arc surface 33, rotating hole 34. Detailed Implementation

[0018] Please refer to Figures 1 to 4 ; This embodiment provides a solar cell wiring arrangement device, including: a snap-fit ​​component 1, a rotating component 2, and a wire clamping component 3. The snap-fit ​​component 1 is snapped into the through hole of the crossbar of the solar mounting bracket. The rotating component 2 is slidably connected to the snap-fit ​​component 1, and the wire clamping component 3 is rotatably connected to the rotating component 2.

[0019] In practice, when tidying up the wiring of the solar cells, the snap-fit ​​component 1 is snapped onto the through hole of the crossbar of the solar mounting bracket, and the wiring is snapped onto the wire clamping component 3. By rotating the component 2, the wire clamping component 3 can rotate 360°, allowing the wiring to be tidied up in all directions.

[0020] Furthermore, the snap-fit ​​assembly 1 includes two Z-shaped plates 11, and a spring 12 is fixedly connected between the two Z-shaped plates 11.

[0021] In practice, when the snap-fit ​​component 1 is snapped onto the through hole of the crossbar of the solar mounting bracket, the two Z-shaped plates 11 are pressed by hand, which compresses the spring 12 between the Z-shaped plates 11, allowing the two Z-shaped plates 11 to be inserted into the through hole of the crossbar of the solar mounting bracket. When the two Z-shaped plates 11 are released, the two Z-shaped plates 11 can be snapped onto the through hole of the crossbar of the solar mounting bracket under the elastic force of the spring 12.

[0022] Furthermore, the bottom of each of the two Z-shaped plates 11 is fixedly connected with a slider 13. The sliding direction of the slider 13 is parallel to the compression direction of the spring 12. The rotating assembly 2 includes a connecting rod 21. The top of the connecting rod 21 is provided with a groove 22. The two sliders 13 are slidably connected inside the groove 22. The two ends of the groove 22 are sealed.

[0023] In practice, when the two Z-shaped plates 11 are pressed by hand, the two sliders 13 slide inside the slide groove 22. The two ends of the slide groove 22 are sealed so that the two sliders 13 will not detach from the two ends of the slide groove 22.

[0024] Furthermore, a rotating rod 23 is fixedly connected to the bottom end of the connecting rod 21, and the wire clamping assembly 3 includes a wire clamping rod 31. A wire clamping groove 32 is opened at the bottom end of the wire clamping rod 31. The wire clamping groove 32 is a C-shaped groove with an angle greater than 210°.

[0025] In practice, when the connector is connected to the slot 32, the connector is pressed down firmly so that the outer sheath of the connector is squeezed into the slot 32 to complete the connection. After the connector is squeezed in, because the slot 32 is a C-shaped groove with an angle greater than 210°, the connector can return to its original shape inside the slot 32 without being squeezed after being squeezed into the opening of the slot 32.

[0026] Furthermore, both sides of the bottom edge of the wire slot 32 are provided with arc surfaces 33.

[0027] In practical implementation, the wiring is made easy to squeeze in along the arc surface 33.

[0028] Furthermore, a rotating hole 34 is provided at the top of the wire clamping rod 31, and the rotating hole 34 is rotatably connected to the rotating rod 23.

[0029] In practice, when the wire clamping assembly 3 rotates, the rotating hole 34 rotates on the rotating rod 23.

[0030] Furthermore, the cross-section of the rotating hole 34 has a T-shaped structure.

[0031] In practical implementation, the rotating hole 34 and the rotating rod 23 can form a rotating structure that is not easily detached.

Claims

1. A solar cell wiring management device, comprising: The snap-fit ​​assembly (1), the rotating assembly (2) and the wire-clamping assembly (3) are characterized in that: the snap-fit ​​assembly (1) is snapped into the through hole of the crossbar of the solar mounting bracket, the rotating assembly (2) is slidably connected to the snap-fit ​​assembly (1), and the wire-clamping assembly (3) is rotatably connected to the rotating assembly (2).

2. The solar cell wiring arrangement device according to claim 1, characterized in that: The snap-fit ​​assembly (1) includes two Z-shaped plates (11), and a spring (12) is fixedly connected between the two Z-shaped plates (11).

3. A solar cell wiring arrangement device according to claim 1 or 2, characterized in that: The bottom of each of the two Z-shaped plates (11) is fixedly connected to a slider (13). The sliding direction of the slider (13) is parallel to the compression direction of the spring (12). The rotating assembly (2) includes a connecting rod (21). The top of the connecting rod (21) is provided with a groove (22). The two sliders (13) are slidably connected inside the groove (22). The two ends of the groove (22) are sealed.

4. The solar cell wiring arrangement device according to claim 3, characterized in that: The bottom end of the connecting rod (21) is fixedly connected to a rotating rod (23). The wire clamping assembly (3) includes a wire clamping rod (31). The bottom end of the wire clamping rod (31) is provided with a wire clamping groove (32), which is a C-shaped groove with an angle greater than 210°.

5. A solar cell wiring arrangement device according to claim 4, characterized in that: The bottom edge of the wire slot (32) is provided with an arc surface (33).

6. A solar cell wiring arrangement device according to claim 5, characterized in that: The top of the wire clamping rod (31) is provided with a rotating hole (34), which is rotatably connected to the rotating rod (23).

7. A solar cell wiring arrangement device according to claim 6, characterized in that: The cross-section of the rotating hole (34) has a T-shaped structure.