FPC integrated automatic test equipment
By designing an integrated automatic testing device for FPCs, which employs a flipping roller and a gripping adsorption structure to achieve automatic flipping and double-sided inspection of FPCs, the device solves the problems of existing equipment being unable to guarantee quality and the high cost of robotic arms, achieving efficient and low-cost testing results.
Patent Information
- Application Number
- CN202520264209.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Existing FPC inspection equipment cannot guarantee production quality during the inspection process, and requires a robotic arm for flipping inspection, resulting in high costs and potential damage to FPC surface parts.
Design an integrated automatic testing device for FPC, comprising a conveyor belt support, a transport belt, an FPC carrier plate, a front testing structure, a flipping structure, and a back testing structure. The device utilizes a flipping roller and an FPC gripping and adsorption structure to achieve automatic flipping and double-sided testing of the FPC.
It enables automated double-sided inspection of FPCs, reduces equipment costs, avoids damage to FPC surface parts by robotic arms, and improves inspection efficiency and quality assurance.
Smart Images

Figure CN223742671U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of FPC, and in particular to an integrated automatic testing device for FPC. Background Technology
[0002] FPCs are widely used in modern electronic devices, and their quality directly affects the performance and stability of these devices. The inspection process is crucial in FPC production, but existing FPC inspection equipment has many problems. If only the front side is inspected, the production quality of the FPC cannot be guaranteed. When inspecting FPCs by flipping them over, a robotic arm is needed, but robotic arms are expensive and may damage the surface parts of the FPC during the gripping process. Therefore, an integrated automatic testing device for FPCs is designed. Utility Model Content
[0003] The purpose of this utility model is to provide an integrated automatic testing device for FPCs to solve the above-mentioned technical problems. To achieve the above purpose, this utility model adopts the following technical solution:
[0004] An integrated automatic testing device for FPC includes a conveyor belt support, a transport belt, an FPC carrier plate, a front testing structure, a flipping structure, and a back testing structure. The transport belt is connected to the conveyor belt support. Several groups of FPC carrier plates are arranged at equal intervals on the transport belt. The front testing structure is fixed to the conveyor belt support and positioned above the FPC carrier plate. The flipping structure is fixed to the conveyor belt support and positioned above the FPC carrier plate. The back testing structure is fixed to the top of the flipping structure.
[0005] Based on the above technical solution, the flipping structure consists of opposing supports and a flipping roller. The opposing supports are arranged opposite to each other, and the flipping roller is arranged between the two sets of opposing supports. The flipping roller can rotate between the two sets of opposing supports. The opposing supports are fixed on the conveyor belt supports on both sides, and the flipping roller is arranged above the FPC carrier plate.
[0006] Based on the above technical solution, the inner side of the opposing support is provided with a roller connecting groove. A rotating motor assembly is fixed on one side of the opposing support. A rotating gear is connected to the inner end of the rotating motor assembly. Connecting grooved wheels are provided on both sides of the flip roller. A connecting internal tooth groove is provided on one side of the flip roller. Multiple sets of FPC gripping and adsorption structures are provided on the outer side of the flip roller. The multiple sets of FPC gripping and adsorption structures are arranged at equal circumferential angles on the outer surface of the flip roller. The connecting grooved wheels on both sides of the flip roller are respectively connected to the roller connecting grooves on the inner side of the opposing supports on both sides. The rotating gear is connected to the connecting internal tooth groove. The FPC gripping and adsorption structure can move above the FPC carrier plate. The terminal is integrated on the back side of the reading transparent plate and also integrated on the back side of the sliding card slot.
[0007] Compared with the prior art, the present invention has the following advantages: The present invention optimizes the setting of the FPC detection structure, changes the traditional FPC detection method, designs a detection device with a flipping function, and the flipping structure is simple, easy to maintain and use, and is suitable for widespread use. Attached Figure Description
[0008] Figure 1 This is a general appearance diagram of the present utility model.
[0009] Figure 2 This is a schematic diagram of the flipping structure of this utility model.
[0010] Figure 3 This is a detailed schematic diagram showing the disassembly of the flip structure of this utility model.
[0011] In the diagram: 1. Conveyor belt support; 2. Carrying conveyor belt; 3. FPC carrying plate; 4. Front test structure; 5. Flip structure; 6. Back test structure; 7. Opposing support; 8. Flip roller; 9. Roller connecting groove; 10. Rotating motor assembly; 11. Rotating gear; 12. Connecting groove wheel; 13. Connecting internal tooth groove; 14. FPC gripping and adsorption structure. Detailed Implementation
[0012] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0013] An integrated automatic testing device for FPC includes a conveyor belt support 1, a transport belt 2, an FPC carrier plate 3, a front testing structure 4, a flipping structure 5, and a back testing structure 6. The transport belt 2 is connected inside the conveyor belt support 1. Several groups of FPC carrier plates 3 are arranged at equal intervals on the transport belt 2. The front testing structure 4 is fixed to the transport belt support 1 and is positioned above the FPC carrier plate 3. The flipping structure 5 is fixed to the transport belt support 1 and is positioned above the FPC carrier plate 3. The back testing structure 6 is fixed to the top of the flipping structure 5.
[0014] The flipping structure 5 consists of opposing supports 7 and flipping rollers 8. The opposing supports 7 are arranged opposite each other, and the flipping rollers 8 are arranged between the two sets of opposing supports 7. The flipping rollers 8 can rotate between the two sets of opposing supports 7. The opposing supports 7 are fixed on the conveyor belt supports 1 on both sides, and the flipping rollers 8 are arranged above the FPC carrier plate 3.
[0015] The inner side of the opposing support 7 is provided with a roller connecting groove 9. A rotating motor assembly 10 is fixed on one side of the opposing support 7. The inner end of the rotating motor assembly 10 is connected to a rotating gear 11. The two side edges of the flip roller 8 are provided with connecting grooved wheels 12. One side of the flip roller 8 is provided with a connecting inner tooth groove 13. Multiple sets of FPC gripping and adsorption structures 14 are provided on the outer side of the flip roller 8. The multiple sets of FPC gripping and adsorption structures 14 are arranged at equal circumferential angles on the outer surface of the flip roller 8. The connecting grooved wheels 12 on both sides of the flip roller 8 are respectively connected to the roller connecting groove 9 on the inner side of the opposing support 7 on both sides. The rotating gear 11 is connected to the connecting inner tooth groove 13. The FPC gripping and adsorption structure 14 can move above the FPC carrier plate 3.
[0016] The working principle of this utility model is as follows: The FPC to be tested is placed on the FPC carrier plate 3. During operation, the FPC carrier plate 3 is transported by the conveyor belt 2 and first passes through the front test structure 4. If any unqualified test occurs after the front test structure 4 is tested, the information will be uploaded. If the test is qualified, the FPC continues to be transported on the FPC carrier plate 3. When it passes the bottom of the flip structure 5, the FPC gripping and adsorption structure 14 will grab the FPC and rotate it on the flip roller 8. When it rotates to the top of the flip roller 8, it will reach the bottom of the reverse test structure 6. At this time, the FPC will be tested by the reverse test structure 6 to determine whether it is qualified or not. Finally, the qualified and unqualified FPC products are placed on the FPC carrier plate 3 behind the flip structure 5, and the qualified and unqualified products are selected manually or by machine.
[0017] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.
Claims
1. An FPC integrated automatic test equipment, characterized by, The utility model provides a kind of FPC test device, including transmission belt support (1), object transmission belt (2), FPC object plate (3), front test structure (4), turnover structure (5), reverse test structure (6), the object transmission belt (2) is connected in transmission belt support (1), the FPC object plate (3) is provided with several groups, several groups FPC object plate (3) equidistant arrangement is set on object transmission belt (2), the front test structure (4) is fixed on transmission belt support (1), and front test structure (4) is set above FPC object plate (3), the turnover structure (5) is fixed on transmission belt support (1), and turnover structure (5) is set above FPC object plate (3), the reverse test structure (6) is fixed on the top of turnover structure (5).
2. The FPC integrated automatic test equipment according to claim 1, wherein, The turnover structure (5) is composed of opposite supports (7) and turnover rollers (8), the opposite supports (7) are oppositely arranged, the turnover rollers (8) are arranged between the two groups of opposite supports (7), and the turnover rollers (8) can rotate between the two groups of opposite supports (7), the opposite supports (7) are fixed on the transmission belt supports (1) on both sides, and the turnover rollers (8) are arranged above the FPC object plate (3).
3. The FPC integrated automatic test equipment according to claim 2, wherein, The inside of the opposite support (7) is provided with a roller connecting circular groove (9), a rotating motor group (10) is fixed on one side of the opposite support (7), the inner end of the rotating motor group (10) is connected with a rotating gear (11), the both ends of the turnover roller (8) are provided with connecting grooved wheels (12), one side of the turnover roller (8) is provided with a connecting internal tooth groove (13), the outside of the turnover roller (8) is provided with a plurality of FPC grabbing and adsorbing structures (14), and the plurality of FPC grabbing and adsorbing structures (14) are arranged on the outer side of the turnover roller (8) at equal circumferential angles, the connecting grooved wheels (12) on both sides of the turnover roller (8) are connected in the roller connecting circular grooves (9) on the inside of the opposite supports (7) on both sides, the rotating gear (11) is connected with the connecting internal tooth groove (13), and the FPC grabbing and adsorbing structures (14) can move above the FPC object plate (3).