FFC grounding terminal laser windowing equipment

By designing adjustable laser components and auxiliary components, the problem of the laser position not being able to be automatically adjusted was solved, enabling efficient laser processing of FFC lines and adapting to the needs of different production lines.

CN223819849UActive Publication Date: 2026-01-23XIAMEN JUNFENG ELECTRONICS
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Patent Information

Application Number
CN202423294155.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing laser components cannot automatically adjust their position, making them unsuitable for laser position adjustments on different FFC production lines, thus affecting processing efficiency.

Method used

Design an FFC grounding terminal laser window opening device that includes a machine base, laser component, traction mechanism, feeding and receiving mechanism and controller. The laser head is accurately positioned by a slide rail and a movable connecting frame. Combined with pressing, blowing, recognition and die-cutting components, the accuracy and efficiency of laser operation are ensured.

Benefits of technology

It enables adjustable and accurate laser engraving on FFC lines, improving processing efficiency and adapting to the needs of different FFC line production lines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of flat cable production equipment, in particular to FFC grounding end laser windowing equipment which comprises a machine table, a laser assembly, a traction mechanism, a material receiving and discharging mechanism and a controller, the material receiving and discharging mechanism comprises a material discharging disc and a material receiving disc, and the machine table is provided with the material discharging disc, the laser assembly, the traction assembly and the material receiving disc. The laser assembly comprises a first mounting frame, a connecting frame, a first sliding rail, a second sliding rail and a laser head, the first sliding rail is perpendicular to an FFC conveying path, and the connecting frame is movably arranged on the first sliding rail; a second sliding rail is arranged on the connecting frame, the first mounting frame is movably arranged on the second sliding rail, and a laser head is arranged on the first mounting frame; the traction assembly drives the FFC to move along the FFC conveying path. Through cooperation of the material receiving and discharging mechanism and the traction mechanism, transmission of the FFC to be machined is achieved, through cooperation of the first sliding rail and the second sliding rail of the laser assembly, it can be ensured that laser can be adjusted and accurately conducted on the FFC, and the machining and production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a wire production equipment field especially relates to a FFC ground terminal laser windowing equipment. BACKGROUND

[0002] In the laser processing of FFC wire, a laser laser assembly needs to be arranged on the transmission path of FFC wire, and the laser head is used for laser operation on FFC wire. The existing laser laser assembly is usually adapted to a single FFC wire production line. The laser laser assembly is fixedly arranged. When the FFC wire is transmitted to the position, the laser laser assembly directly performs laser processing above it. When different FFC wire production lines are used, the laser position needs to be adjusted by overall disassembly. The laser position cannot be automatically adjusted by adjustable design. SUMMARY

[0003] The utility model wants to solve the technical problem that the laser position can be accurately adjusted, and the FFC ground terminal laser windowing equipment is adapted to different FFC wire production lines.

[0004] In order to solve the above technical problem, the utility model adopts the technical scheme that a kind of FFC ground terminal laser windowing equipment, including machine table, laser assembly, traction mechanism, pay-off and take-up mechanism and controller, the pay-off and take-up mechanism includes pay-off disc and take-up disc, the machine table is sequentially provided with pay-off disc, laser assembly, traction component and take-up disc along FFC transmission path, the laser assembly includes first mounting bracket, connecting frame, first slide rail, second slide rail and laser head, the first slide rail is perpendicular to FFC transmission path, and the connecting frame is movably arranged on the first slide rail;Second slide rail parallel to FFC transmission path is arranged on the connecting frame, and the first mounting bracket is movably arranged on the second slide rail, and laser head is arranged on the first mounting bracket;The traction component drives FFC wire to move along FFC transmission path;The laser assembly, traction mechanism and pay-off and take-up mechanism are electrically connected with the controller.

[0005] Further, the laser assembly further includes second mounting bracket, display and operating switch, the second mounting bracket is arranged above the first mounting bracket;Display and operating switch are arranged on the second mounting bracket, and the display, operating switch and laser head are electrically connected.

[0006] Further, it further includes pressing mechanism, and the pressing mechanism is arranged between pay-off disc and laser assembly, and the pressing mechanism is electrically connected with the controller;The pressing mechanism is used to press and fix FFC wire.

[0007] Further, the pressing mechanism includes pressing frame and pressing block, the pressing block is arranged above the pressing frame, and the pressing block is movable towards the pressing frame.

[0008] Further, a blowing assembly is further included, which is electrically connected with the controller, and is used for blowing the surface of the FFC flat cable.

[0009] Further, the blowing assembly includes a blowing pipe, and an opening of the blowing pipe faces the FFC conveying path corresponding to the laser head.

[0010] Further, a first identification assembly is further included, which is electrically connected with the controller; the first identification assembly includes a first identification head, which is arranged on the FFC conveying path and located between the laser assembly and the feeding and discharging disc.

[0011] Further, a die-cutting assembly is further included, which is arranged between the laser assembly and the traction assembly, and is electrically connected with the controller; the die-cutting assembly includes a die-cutting seat and a die-cutting block, the die-cutting block is arranged above the die-cutting seat, and the die-cutting block is movable towards the die-cutting seat.

[0012] Further, a second identification assembly is further included, which is electrically connected with the controller; the second identification assembly includes a second identification head, which is arranged between the laser assembly and the traction assembly.

[0013] Further, the second identification assembly includes two second identification heads and a support frame, and one second identification head is arranged on the support frame corresponding to the upper side and the lower side of the FFC flat cable.

[0014] The FFC flat cable laser window opening equipment has the advantages that: through the cooperation of the feeding and discharging mechanism and the traction mechanism, the transmission of the FFC flat cable to be processed is realized; through the cooperation of the first sliding rail and the second sliding rail of the laser assembly, the laser can be accurately adjusted on the FFC flat cable for laser operation, and the processing production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structure schematic view of the FFC ground terminal laser window opening equipment according to the embodiment of the present application;

[0016] Figure 2 It is a structure schematic view of the laser assembly of the FFC ground terminal laser window opening equipment according to the embodiment of the present application;

[0017] Figure 3 It is a structure schematic view of the pressing mechanism of the FFC ground terminal laser window opening equipment according to the embodiment of the present application;

[0018] Figure 4 It is a structure schematic view of the die-cutting assembly of the FFC ground terminal laser window opening equipment according to the embodiment of the present application;

[0019] Figure 5The second identification head of the FFC grounding end laser windowing equipment is shown in the structure diagram of the embodiment of the utility model.

[0020] Label explanation:

[0021] 1, machine table; 2, laser assembly; 21, first mounting frame; 22, connecting frame; 23, first slide rail; 24, second slide rail; 25, laser head; 26, second mounting frame; 27, display; 3, traction mechanism; 4, material feeding and collecting mechanism; 41, material feeding disc; 42, material collecting disc; 5, material pressing mechanism; 51, material pressing frame; 52, material pressing block; 6, air blowing pipe; 7, first identification head; 8, die cutting assembly; 81, die cutting seat; 82, die cutting block; 9, second identification head. Specific embodiment

[0022] In order to explain the technical content, the purpose and the effect of the utility model in detail, the following will be explained in combination with the embodiment and the drawings.

[0023] Please refer to Figures 1 to 5 A kind of FFC grounding end laser windowing equipment, including machine table 1, laser assembly 2, traction mechanism 3, material feeding and collecting mechanism 4 and controller, the material feeding and collecting mechanism 4 includes material feeding disc 41 and material collecting disc 42, the machine table 1 is sequentially provided with material feeding disc 41, laser assembly 2, traction component and material collecting disc 42 along FFC conveying path, the laser assembly 2 includes first mounting frame 21, connecting frame 22, first slide rail 23, second slide rail 24 and laser head 25, the first slide rail 23 is perpendicular to FFC conveying path, the connecting frame 22 is movably arranged on first slide rail 23;Second slide rail 24 parallel to FFC conveying path is arranged on the connecting frame 22, and the first mounting frame 21 is movably arranged on second slide rail 24, and the laser head 25 is arranged on the first mounting frame 21;The traction component drives FFC flat cable to move along FFC conveying path;The laser assembly 2, traction mechanism 3 and material feeding and collecting mechanism 4 are electrically connected with the controller.

[0024] From the above description, the utility model has the beneficial effects that: through the cooperation of material feeding and collecting mechanism 4 and traction mechanism 3, the transmission of the FFC flat cable to be processed is realized, and through the cooperation of the first slide rail 23 and the second slide rail 24 of the laser assembly 2, it can be ensured that the laser can be accurately adjusted on the FFC flat cable for laser operation, thereby improving the processing production efficiency.

[0025] Further, the laser assembly 2 further includes second mounting frame 26, display 27 and operating switch, the second mounting frame 26 is arranged above the first mounting frame 21;Display 27 and operating switch are arranged on the second mounting frame 26, and the display 27, operating switch and laser head 25 are electrically connected.

[0026] As described above, the laser assembly 2 is adjusted and controlled via the display 27 and operation switches on the second mounting bracket 26.

[0027] Furthermore, it also includes a pressing mechanism 5, which is located between the feeding tray 41 and the laser component 2, and is electrically connected to the controller; the pressing mechanism 5 is used to press and fix the FFC cable.

[0028] As described above, the pressing frame 51 and pressing block 52 of the pressing mechanism 5 work together to achieve the leveling and straightening of the FFC cable when it is conveyed to the working area of ​​the laser component 2, ensuring that the laser surface of the FFC cable is flat.

[0029] Furthermore, the pressing mechanism 5 includes a pressing frame 51 and a pressing block 52, the pressing block 52 being disposed above the pressing frame 51 and movable toward the pressing frame 51.

[0030] As described above, specifically, the FFC cable is pressed and fixed by the pressure block 52 against the pressure frame 51 to ensure its flatness.

[0031] Furthermore, it also includes an air blowing assembly, which is electrically connected to the controller and is used to blow air onto the surface of the FFC cable.

[0032] As described above, an air blowing assembly is used to blow away foreign objects on the FFC cable to prevent them from interfering with the laser operation.

[0033] Furthermore, the air blowing assembly includes an air blowing pipe 6, the opening of which faces the FFC transmission path corresponding to the laser head 25.

[0034] As described above, specifically, the FFC cable at the laser head 25 is cleaned by blowing air through the air pipe 6.

[0035] Furthermore, it also includes a first identification component, which is electrically connected to the controller; the first identification component includes a first identification head 7, which is located on the FFC conveying path and between the laser component 2 and the feeding tray 41.

[0036] As described above, the design of the first identification component enables the determination of the length of the FFC cable by identifying specific parts of the FFC cable, thereby determining the laser area.

[0037] Furthermore, it also includes a die-cutting assembly 8, which is disposed between the laser assembly 2 and the traction assembly, and is electrically connected to the controller; the die-cutting assembly 8 includes a die-cutting base 81 and a die-cutting block 82, the die-cutting block 82 is disposed above the die-cutting base 81, and the die-cutting block 82 is movable toward the die-cutting base 81.

[0038] As described above, the die-cutting component 8, in conjunction with the first identification component, detects any identification anomalies, indicating that the FFC cable was incorrectly manufactured in a previous process. In this case, the die-cutting block 82 cuts the FFC cable to mark it as defective, and the laser component 2 stops laser processing the defective product.

[0039] Furthermore, it also includes a second identification component, which is electrically connected to the controller; the second identification component includes a second identification head 9, which is disposed between the laser component 2 and the traction component.

[0040] As described above, the second identification component is used to check and determine the position of the FFC cable after laser processing.

[0041] Furthermore, the second identification component includes two second identification heads 9 and a support frame, wherein a second identification head 9 is respectively provided on the upper and lower sides of the support frame corresponding to the FFC cable.

[0042] As can be seen from the above description, the design of multiple second identification heads 9 can ensure more accurate processing detection.

[0043] Please refer to Figures 1 to 5 Embodiment 1 of this utility model is as follows:

[0044] A laser window opening device for the grounding terminal of an FFC cable includes a machine base 1, a laser component 2, a traction mechanism 3, a feeding and receiving mechanism 4, and a controller. The feeding and receiving mechanism 4 includes a feeding tray 41 and a receiving tray 42. The feeding tray 41, the laser component 2, the traction component, and the receiving tray 42 are sequentially arranged along the FFC conveying path on the machine base 1. The laser component 2 includes a first mounting frame 21, a connecting frame 22, a first slide rail 23, a second slide rail 24, and a laser head 25. The first slide rail 23 is perpendicular to the FFC conveying path, and the connecting frame 22 is movably mounted on the first slide rail 23. The connecting frame 22 is provided with a second slide rail 24 parallel to the FFC conveying path, and the first mounting frame 21 is movably mounted on the second slide rail 24. The laser head 25 is provided on the first mounting frame 21. The traction component drives the FFC cable to move along the FFC conveying path. The laser component 2, the traction mechanism 3, and the feeding and receiving mechanism 4 are all electrically connected to the controller.

[0045] The laser assembly 2 also includes a second mounting bracket 26, a display 27, and an operation switch. The second mounting bracket 26 is located above the first mounting bracket 21. The second mounting bracket 26 is equipped with a display 27 and an operation switch, and the display 27 and the operation switch are electrically connected to the laser head 25.

[0046] It also includes a pressing mechanism 5, which is located between the feeding tray 41 and the laser component 2, and is electrically connected to the controller; the pressing mechanism 5 is used to press and fix the FFC cable. The pressing mechanism 5 includes a pressing frame 51 and a pressing block 52, the pressing block 52 is located above the pressing frame 51, and the pressing block 52 is movable toward the pressing frame 51.

[0047] It also includes an air blowing assembly, which is electrically connected to the controller and is used to blow air onto the surface of the FFC cable; the air blowing assembly includes an air blowing pipe 6, the opening of which faces the FFC transmission path corresponding to the laser head 25.

[0048] It also includes a first identification component, which is electrically connected to the controller; the first identification component includes a first identification head 7, which is located on the FFC conveying path and between the laser component 2 and the feeding tray 41.

[0049] It also includes a die-cutting assembly 8, which is disposed between the laser assembly 2 and the traction assembly, and is electrically connected to the controller; the die-cutting assembly 8 includes a die-cutting base 81 and a die-cutting block 82, the die-cutting block 82 is disposed above the die-cutting base 81, and the die-cutting block 82 is movable toward the die-cutting base 81.

[0050] It also includes a second identification component, which is electrically connected to the controller; the second identification component includes a second identification head 9, which is disposed between the laser component 2 and the traction component.

[0051] The second identification component includes two second identification heads 9 and a support frame, wherein a second identification head 9 is provided on the upper and lower sides of the support frame corresponding to the FFC cable.

[0052] In summary, the FFC grounding terminal laser window opening device provided by this utility model realizes the transmission of the FFC cable to be processed through the cooperation of the feeding and receiving mechanism and the traction mechanism. Through the cooperation of the first slide rail and the second slide rail of the laser component, it can ensure that the laser can be adjusted and accurately performed on the FFC cable, thereby improving the processing and production efficiency.

[0053] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A laser window opening device for an FFC grounding terminal, characterized in that, The system includes a machine base, a laser component, a traction mechanism, a feeding / receiving mechanism, and a controller. The feeding / receiving mechanism includes a feeding tray and a receiving tray. The feeding tray, laser component, traction component, and receiving tray are sequentially arranged along the FFC conveying path on the machine base. The laser component includes a first mounting frame, a connecting frame, a first slide rail, a second slide rail, and a laser head. The first slide rail is perpendicular to the FFC conveying path, and the connecting frame is movably mounted on the first slide rail. The connecting frame has a second slide rail parallel to the FFC conveying path, and the first mounting frame is movably mounted on the second slide rail. The laser head is mounted on the first mounting frame. The traction component drives the FFC cable to move along the FFC conveying path. The laser component, traction mechanism, and feeding / receiving mechanism are all electrically connected to the controller.

2. The FFC grounding terminal laser window opening device according to claim 1, characterized in that, The laser assembly also includes a second mounting bracket, a display, and an operating switch. The second mounting bracket is positioned above the first mounting bracket. The second mounting bracket is equipped with a display and an operating switch, which are electrically connected to the laser head.

3. The FFC grounding terminal laser window opening device according to claim 1, characterized in that, It also includes a pressing mechanism, which is located between the feeding tray and the laser component and is electrically connected to the controller; the pressing mechanism is used to press and fix the FFC cable.

4. The FFC grounding terminal laser window opening device according to claim 3, characterized in that, The pressing mechanism includes a pressing frame and a pressing block. The pressing block is located above the pressing frame and is movable toward the pressing frame.

5. The FFC grounding terminal laser window opening device according to claim 1, characterized in that, It also includes an air blowing assembly, which is electrically connected to the controller and is used to blow air onto the surface of the FFC cable.

6. The FFC grounding terminal laser window opening device according to claim 5, characterized in that, The air blowing assembly includes an air blowing tube, the opening of which faces the FFC transmission path corresponding to the laser head.

7. The FFC grounding terminal laser window opening device according to claim 1, characterized in that, It also includes a first identification component, which is electrically connected to the controller; the first identification component includes a first identification head, which is located on the FFC conveying path and between the laser component and the feeding tray.

8. The FFC grounding terminal laser window opening device according to claim 7, characterized in that, It also includes a die-cutting assembly, which is disposed between the laser assembly and the traction assembly, and is electrically connected to the controller; the die-cutting assembly includes a die-cutting base and a die-cutting block, the die-cutting block is disposed above the die-cutting base, and the die-cutting block is movable toward the die-cutting base.

9. The FFC grounding terminal laser window opening device according to claim 1, characterized in that, It also includes a second identification component, which is electrically connected to the controller; the second identification component includes a second identification head, which is disposed between the laser component and the traction component.

10. The FFC grounding terminal laser window opening device according to claim 9, characterized in that, The second identification component includes two second identification heads and a support frame, with a second identification head respectively located on the upper and lower sides of the support frame corresponding to the FFC cable.