Photoelectric imaging laser machine

By employing a four-axis moving structure and fixed connection design, the problem of swaying caused by vibration in existing photoelectric imaging laser machines has been solved, achieving stable and flexible screen adjustment and improving the accuracy and stability of repair operations.

CN223515255UActive Publication Date: 2025-11-04SHENZHEN DOMIBA TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522022518.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2025-11-04
Estimated Expiration
2035-09-19

AI Technical Summary

Technical Problem

The laser emitter and microscope camera of existing photoelectric imaging laser machines are large and heavy, resulting in a loose connection. They are prone to shaking under external vibration, which affects the stability of the repair operation.

Method used

It adopts a base, electrical control cabinet and photoelectric imaging laser component fixed connection, combined with a four-axis moving structure of Z-axis, X-axis, Y-axis and rotating component, and driven by sliding component and lead screw motor to realize stable adjustment and positioning of mobile phone screen.

Benefits of technology

It improves the stability and operational flexibility of the photoelectric imaging laser machine, reduces the impact of external vibrations on the device, ensures the stability of the laser emitting assembly and objective lens, and enhances the accuracy of repair operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photoelectric imaging laser machine, which relates to the technical field of photoelectric imaging laser machines and comprises a base. The electrical control cabinet is fixedly connected with the base; and the photoelectric imaging laser assembly comprises a photoelectric imaging laser assembly fixedly connected with the electrical control cabinet, an objective lens with a downward working surface, and a laser emission assembly mounted in the photoelectric imaging laser assembly. According to the utility model, the base, the electrical control cabinet and the photoelectric imaging laser assembly are fixedly connected, so that the photoelectric imaging laser assembly is not easy to shake due to the influence of an external operation table and even ground vibration. Meanwhile, the mobile phone screen is moved and adjusted through four shafts, the adjusting mode is flexible and diversified, and due to the fact that the weight of the mobile phone screen is light, when the mobile phone screen is driven to move through a lead screw and other structures, the device cannot excessively vibrate, and the stability of a laser emitting assembly and an objective lens cannot be affected during adjustment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photoelectric imaging laser machine technical field, concretely is a photoelectric imaging laser machine. BACKGROUND

[0002] If there is a damaged lamp bead on the display plane, the brightness around the lamp bead will be higher, resulting in non-uniform overall display brightness, and if there is a display plane edge, the problem of "display plane open line" will occur. Now, the photoelectric imaging laser machine is used to solve this problem. The microscopic camera is used to observe the damaged tiny lamp bead on the mobile phone display screen, and then the laser energy of the laser machine is used to hit the corresponding lamp bead, so that the surrounding instant soldering is achieved, and the abnormality of the black line and the dark bright spot of the display plane is repaired.

[0003] However, the laser emitting head and the microscopic camera of the existing photoelectric imaging laser machine are located on the movable seat block on the upper side of the equipment. As shown in the drawings, Figure 11 the mobile phone screen is fixedly placed below the lens, and the sliding structure and the lifting structure are used to adjust the distance and position between the lens and the screen. However, due to the large volume and heavy weight of the laser emitting head and the microscopic camera module, and the existence of the sliding structure and the lifting structure on the movable seat block and the machine body, the connection gap exists, and the connection cannot be completely tight and stable.

[0004] At the same time, when the table top is vibrated by human touch and the movable seat block is lifted, the vibration caused by the motor driver may cause the movable seat block to shake. Even when the ground beside the operation table vibrates due to human running or carrying objects, the movable seat block will also shake. The movable seat block on the machine body is easily affected by external factors and shakes. When shaking, the photoelectric imaging laser assembly and the microscopic camera will shake, which directly affects the positioning during repair operation and cannot be stably performed. UTILITY MODEL CONTENTS

[0005] (I) Technical problem solved

[0006] In view of the above-mentioned shortcomings of the prior art, the utility model provides a photoelectric imaging laser machine, which can effectively solve the problems of the prior art.

[0007] (II) Technical scheme

[0008] In order to achieve the above-mentioned purposes, the utility model is implemented by the following technical scheme,

[0009] The utility model discloses a photoelectric imaging laser machine, which comprises:

[0010] A base;

[0011] An electrical control cabinet is fixedly connected with the base;

[0012] A photoelectric imaging laser assembly is fixedly connected with the electrical control cabinet, and is provided with an objective lens with a downward working surface at one side of the bottom of the photoelectric imaging laser assembly and a laser emission assembly installed in the photoelectric imaging laser assembly;

[0013] A display plane moving assembly comprises a display plane clamping plate arranged below the objective lens, a Z-axis moving assembly arranged on the base, an X-axis moving assembly connected with the movable seat of the Z-axis moving assembly, a Y-axis moving assembly connected with the connecting frame of the X-axis moving assembly, a rotating seat connected with the Y-axis moving assembly and a rotating assembly arranged on the rotating seat;

[0014] The display plane clamping plate comprises a storage bottom bracket and a storage top bracket, the storage bottom bracket is arranged on the rotating assembly, and the storage top bracket is arranged on the upper side of the storage bottom bracket.

[0015] Further, the Z-axis moving assembly comprises a first optical rod, the first optical rod is rotatably arranged between the base and the electrical control cabinet, the front end of the first optical rod is arranged outside the front end of the base and is fixedly connected with a first crank handle, a first toothless nut is arranged on the first optical rod, the first toothless nut is fixedly arranged at the lower end of the movable seat, and a first sliding assembly is arranged at the lower side of the movable seat.

[0016] Further, the first sliding assembly comprises first sliding rails, two groups of first sliding rails are fixedly arranged at the upper end of the base, the two groups of first sliding rails are arranged in parallel, a first sliding block is slidably connected to each of the two groups of first sliding rails, and the two groups of first sliding blocks are fixedly arranged at the lower end of the movable seat.

[0017] Further, the X-axis moving assembly comprises a fixed cross frame, the fixed cross frame is fixedly arranged at the upper end of the front side of the movable seat, a second optical rod is rotatably arranged in the fixed cross frame, one end of the second optical rod is arranged outside the fixed cross frame and is fixedly connected with a second crank handle, a second toothless nut is arranged on the second optical rod, the second toothless nut is fixedly connected with the connecting frame, and a second sliding assembly is arranged at the rear side of the connecting frame.

[0018] Further, the second sliding assembly comprises a second sliding block, the second sliding block is fixedly arranged at the lower end of the rear side of the connecting frame, a second sliding rail is fixedly arranged at the rear side of the upper end of the movable seat, the second sliding block is slidably arranged on the second sliding rail, a guide block is fixedly arranged at the upper end of the rear side of the connecting frame, a guide groove frame is fixedly arranged at the rear side of the movable seat, and the guide block is slidably arranged in the guide groove frame.

[0019] Further, the Y-axis moving assembly comprises a fixed stand, the upper end of the connecting frame is fixedly provided with the fixed stand, the lower end of the fixed stand is fixedly provided with a screw rod motor, a third light rod is vertically rotatably arranged in the fixed stand, the lower end of the third light rod is fixedly connected with the output end of the screw rod motor, a third toothless nut is slidably arranged in the fixed stand and is arranged on the third light rod, the third toothless nut is fixedly connected with the rotating seat, and the front end of the base is provided with a control knob for controlling the screw rod motor.

[0020] Further, the fixed stand is vertically arranged with the connecting frame, and the movable seat, the connecting frame and the rotating seat are arranged in parallel.

[0021] Further, the rotating assembly comprises a worm, the rotating seat is rotatably provided with the worm, the front end of the worm is arranged outside the rotating seat and is provided with a knob, the right end of the rotating seat is transversely rotatably provided with a connecting rod, the left end of the connecting rod is arranged in the rotating seat and is fixedly connected with a worm wheel, the worm wheel and the worm are engaged, and the storage base is fixedly arranged on the right upper end of the connecting rod.

[0022] Further, the part of the connecting rod arranged on the lower side of the storage base exceeds the radius of the storage base, and the connecting rod is arranged at the central position of the lower end of the storage base.

[0023] Further, the storage base and the storage top frame are arranged in parallel, and the upper end of the storage base is provided with a protective edge on the front side.

[0024] (Three) beneficial effects

[0025] Compared with the prior art, the technical scheme has the following beneficial effects:

[0026] In the device, the base, the electrical control cabinet and the photoelectric imaging laser assembly are fixedly connected, so that the photoelectric imaging laser assembly is not easily shaken by external operating tables or even ground vibration, so that the laser emitted by the objective lens and the laser emitting assembly is not easily affected by vibration. At the same time, the device moves and adjusts the mobile phone screen through four shafts, which is flexible and various in adjustment mode, and because the mobile phone screen itself is light in weight, when the displacement is driven by the screw rod structure, the device will not be excessively vibrated, and the stability of the laser emitting assembly and the objective lens will not be affected during adjustment. In addition, compared with the existing technology which directly adjusts the height of the lens and the laser head, the integrated body is smaller, the movement is more stable, the burden of the Y-axis is smaller when only moving the screen, and the operation is more stable. BRIEF DESCRIPTION OF DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0028] Figure 1 It is a structure front view schematic diagram of the present application;

[0029] Figure 2 It is a structure bottom view schematic diagram of the present application;

[0030] Figure 3 It is a structure rear view schematic diagram of the partial structure of the present application;

[0031] Figure 4 It is a structure schematic diagram of the Z-axis moving assembly in the present application;

[0032] Figure 5 It is a structure side view schematic diagram of the X-axis moving assembly in the present application;

[0033] Figure 6 It is a structure bottom view schematic diagram of the X-axis moving assembly in the present application;

[0034] Figure 7 It is a structure side view schematic diagram of the partial structure of the present application;

[0035] Figure 8 It is a structure top view schematic diagram of the partial structure of the present application;

[0036] Figure 9 It is a structure bottom view schematic diagram of the rotating assembly in the present application;

[0037] Figure 10 It is a structure rear view schematic diagram of the Y-axis moving assembly in the present application;

[0038] Figure 11 It is a structure bottom view schematic diagram of the connecting frame, the second toothless nut and the fixed stand in the present application;

[0039] Figure 12 It is a structure split schematic diagram of the connecting frame, the second toothless nut and the fixed stand in the present application;

[0040] Figure 13 It is a structure schematic diagram of the photoelectric imaging laser machine in the prior art.

[0041] The labels in the diagram represent: 1. Base; 2. Electrical control cabinet; 3. Photoelectric imaging laser assembly; 4. Laser emitting assembly; 5. Objective lens; 6. Movable seat; 7. First optical rod; 8. First crank; 9. First toothless nut; 10. First slide rail; 11. First slider; 12. Connecting frame; 13. Fixed crossbar; 14. Second optical rod; 15. Second crank; 16. Second toothless nut; 17. Second slider; 18. Second slide rail; 19. Guide block; 20. Guide groove frame; 21. Fixed stand; 22. Rotary seat; 23. Lead screw motor; 24. Third optical rod; 25. Third toothless nut; 26. Control button; 27. Worm gear; 28. Knob; 29. ​​Worm wheel; 30. Connecting rod; 31. Storage base; 32. Storage top. Detailed Implementation

[0042] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0043] Please see Figures 1-12 One embodiment of this utility model is a photoelectric imaging laser machine, comprising:

[0044] Base 1;

[0045] Electrical control cabinet 2 is fixedly connected to base 1;

[0046] The photoelectric imaging laser assembly includes a photoelectric imaging laser assembly 3 fixedly connected to the electrical control cabinet 2, with an objective lens 5 facing downwards on one side of its bottom and a laser emitting assembly 4 installed inside the photoelectric imaging laser assembly 3.

[0047] Among them, the objective lens 5 has a focal length adjustment function, and when in use, you can switch between three magnifications: 10X, 20X, and 30X.

[0048] The display plane moving assembly includes a display plane clamping plate disposed below the objective lens 5, a Z-axis moving assembly disposed on the base 1, an X-axis moving assembly connected via a movable seat 6 on the Z-axis moving assembly, a Y-axis moving assembly connected via a connecting frame 12 on the X-axis moving assembly, a rotating base 22 connected via the Y-axis moving assembly, and a rotating assembly disposed on the rotating base 22.

[0049] The display flat clamping plate includes a storage base 31 and a storage top 32. The storage base 31 is mounted on the rotating assembly, and the storage top 32 is located above the storage base 31.

[0050] As a preferred embodiment of this example, Figure 3 and Figure 4 As shown, the Z-axis moving assembly includes a first guide rod 7, which is rotatably mounted between the base 1 and the electrical control cabinet 2. The front end of the first guide rod 7 passes through the front end of the base 1 and is positioned on the outside and is fixedly connected to a first crank 8. A first toothless nut 9 is mounted on the first guide rod 7 and is fixedly mounted on the lower end of the movable seat 6. A first sliding assembly is provided on the lower side of the movable seat 6.

[0051] The first sliding component includes a first slide rail 10. Two sets of first slide rails 10 are fixedly installed on the upper end of the base 1, and the two sets of first slide rails 10 are arranged in parallel. A first slider 11 is slidably connected to each of the two sets of first slide rails 10, and the two sets of first sliders 11 are fixedly installed on the lower end of the movable seat 6.

[0052] In this structure, the movable seat 6 is moved back and forth by the cooperation of the first light rod 7 and the first toothless nut 9. The movable seat 6 will drive the upper X-axis moving component to move back and forth as a whole, causing the uppermost fixed stand 21 to move back and forth. The two sets of first sliders 11 and first slide rails 10 can play a good guiding and supporting role, and are relatively stable, ensuring smooth and stable movement.

[0053] As a preferred embodiment of this example, Figure 5 , Figure 6 and Figure 7 As shown, the X-axis moving assembly includes a fixed crossbeam 13. The fixed crossbeam 13 is fixedly installed on the upper front side of the movable seat 6. A second guide rod 14 is rotatably installed inside the fixed crossbeam 13. One end of the second guide rod 14 passes through the fixed crossbeam 13 and is placed on the outside and fixedly connected to a second crank 15. A second toothless nut 16 is installed on the second guide rod 14. The second toothless nut 16 is fixedly connected to the connecting frame 12. A second sliding assembly is provided on the rear side of the connecting frame 12.

[0054] The second sliding assembly includes a second slider 17. The second slider 17 is fixedly installed on the lower rear side of the connecting frame 12. The second slide rail 18 is fixedly installed on the upper rear side of the movable seat 6. The second slider 17 is slidably installed on the second slide rail 18. The guide block 19 is fixedly installed on the upper rear side of the connecting frame 12. The guide groove frame 20 is fixedly installed on the rear side of the movable seat 6. The guide block 19 is slidably installed in the guide groove frame 20.

[0055] In this structure, the lateral movement of the connecting frame 12 can be achieved through the structural cooperation of the second light rod 14 and the second toothless nut 16. When the connecting frame 12 moves, it will drive the fixed upright 21 to move laterally. At the same time, the second slider 17 and the second toothless nut 16 support and limit the connecting frame 12 and the above components. The sliding cooperation between the second slider 17 and the guide block 19 and the second slide rail 18 and the guide groove frame 20 achieves a smooth movement guidance effect, so as to ensure the stability and smoothness of the movement.

[0056] As a preferred embodiment of this example, Figure 7 and Figure 8 As shown, the Y-axis moving assembly includes a fixed frame 21. The fixed frame 21 is fixedly mounted on the upper end of the connecting frame 12, and a lead screw motor 23 is fixedly mounted on the lower end of the fixed frame 21. A third guide rod 24 is vertically rotatably mounted inside the fixed frame 21, and the lower end of the third guide rod 24 is fixedly connected to the output end of the lead screw motor 23. A third toothless nut 25 is slidably connected inside the fixed frame 21 and is mounted on the third guide rod 24. The third toothless nut 25 is fixedly connected to the rotating base 22. A control button 26 for controlling the lead screw motor 23 is installed at the front end of the base 1. In this structure, the control button 26 is the controller of the lead screw motor 23. Its specific connection method and structural principle are mature existing technologies, so they will not be described in detail here. The lead screw motor 23 drives the third guide rod 24 to rotate, so that the third toothless nut 25 moves up and down in cooperation with the third guide rod 24, thereby changing the height of the storage base 31.

[0057] As a preferred embodiment of this example, Figure 1 , Figure 5 and Figure 7 As shown, the fixed support 21 and the connecting frame 12 are arranged perpendicularly, while the movable seat 6, the connecting frame 12, and the rotating seat 22 are all arranged parallel to each other. This structure ensures structural stability and smooth movement, improving operational fluency.

[0058] As a preferred embodiment of this example, Figure 9 and Figure 10 As shown, the rotating assembly includes a worm gear 27, which is rotatably mounted inside a rotating base 22. The front end of the worm gear 27 is located outside the rotating base 22 and is provided with a knob 28. A connecting rod 30 is rotatably mounted laterally on the right end of the rotating base 22, and the left end of the connecting rod 30 is located inside the rotating base 22 and is fixedly connected to a worm wheel 29. The worm wheel 29 and the worm gear 27 mesh with each other. The storage base 31 is fixedly mounted on the upper right side of the connecting rod 30.

[0059] The portion of the connecting rod 30 located below the storage base 31 extends beyond the radius of the storage base 31, and the connecting rod 30 is positioned at the center of the lower end of the storage base 31.

[0060] In this structure, the surface of the knob 28 has an anti-slip texture. In addition, the connecting rod 30 is placed at the lower end of the storage base 31 with a length greater than the radius of the storage base 31, and is fixedly connected by screws to ensure the stability of the connection and support.

[0061] As a preferred embodiment of this example, Figure 10 As shown, the base shelf 31 and the top shelf 32 are arranged in parallel, and a protective edge is provided on the upper front side of the base shelf 31. In this structure, the base shelf 31 has a hollowed-out section to reduce weight and ensure that there is enough space for heat dissipation when the phone is placed. At the same time, the protective edge ensures that the phone will not slip when the base shelf 31 is rotated forward to observe the screen.

[0062] Working principle: In use, simply disassemble the phone screen, then place the phone on the base shelf 31 and the screen on the top shelf 32. Figure 1 The indicated state is sufficient. During adjustment, the first crank 8 can be rotated, causing the first optical rod 7 to rotate. This causes the first toothless nut 9 to drive the movable seat 6 to move back and forth along the first slide rail 10 via the first slider 11 through the threaded engagement with the first optical rod 7. This causes the X-axis and Y-axis moving components on the upper side of the movable seat 6 to move together, thereby causing the storage base 31 to move the mobile phone screen back and forth relative to the laser emitting component 4 and the objective lens 5. When the second crank 15 is rotated, the second optical rod 14 will rotate, and the second toothless nut 16 will drive the connecting frame 12 to move laterally along the second slide rail 18 via the threaded engagement. At the same time, the guide block 19 will move laterally along the guide groove frame 20, thereby causing the fixed stand 21, which is fixedly connected to the connecting frame 12, to move laterally as well. The storage base 31 on the upper side of the fixed stand 21 can then drive the mobile phone screen to move laterally relative to the laser emitting component 4 and the objective lens 5. Controlling the lead screw motor 23 via the control button 26 causes the lead screw motor 23 to drive the third optical rod 24 to rotate. This causes the third toothless nut 25 to slide longitudinally within the third optical rod 24 through the thread action, thereby changing the height of the rotating base 22. This causes the storage base 31 on its right side to move the mobile phone screen longitudinally relative to the laser emitting assembly 4 and the objective lens 5. If it is necessary to rotate the screen for easier viewing, the knob 28 can be turned, causing the knob 28 to drive the worm gear 27 to rotate. The worm gear 27 will drive the worm wheel 29 to rotate, causing the connecting rod 30 to drive the storage base 31 and the storage top bracket 32 ​​on the storage base 31 to tilt and rotate, thereby changing the angle of the mobile phone screen.

[0063] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

[0064] In the description of this application, it should be understood that the terms "front", "rear", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0065] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A photoelectric imaging laser machine, characterized in that, include: Base (1); An electrical control cabinet (2) is fixedly connected to the base (1); The photoelectric imaging laser assembly includes a photoelectric imaging laser assembly (3) fixedly connected to the electrical control cabinet (2), with an objective lens (5) facing downwards on one side of its bottom, and a laser emitting assembly (4) installed inside the photoelectric imaging laser assembly (3). The display plane moving assembly includes a display plane clamping plate disposed below the objective lens (5), a Z-axis moving assembly disposed on the base (1), an X-axis moving assembly connected via a movable seat (6) on the Z-axis moving assembly, a Y-axis moving assembly connected via a connecting frame (12) on the X-axis moving assembly, a rotating base (22) connected via the Y-axis moving assembly, and a rotating assembly disposed on the rotating base (22). The display flat clamping plate includes a storage base (31) and a storage top (32), the storage base (31) being mounted on the rotating assembly, and the storage top (32) being located above the storage base (31).

2. The photoelectric imaging laser machine according to claim 1, characterized in that: The Z-axis moving assembly includes a first optical rod (7), which is rotatably mounted between the base (1) and the electrical control cabinet (2). The front end of the first optical rod (7) passes through the front end of the base (1) and is placed on the outside and is fixedly connected to a first crank (8). A first toothless nut (9) is installed on the first optical rod (7), and the first toothless nut (9) is fixedly installed at the lower end of the movable seat (6). A first sliding assembly is provided on the lower side of the movable seat (6).

3. The photoelectric imaging laser machine according to claim 2, characterized in that: The first sliding component includes a first slide rail (10). Two sets of first slide rails (10) are fixedly installed on the upper end of the base (1), and the two sets of first slide rails (10) are arranged in parallel. A first slider (11) is slidably connected on each of the two sets of first slide rails (10), and the two sets of first sliders (11) are fixedly installed on the lower end of the movable seat (6).

4. The photoelectric imaging laser machine according to claim 1, characterized in that: The X-axis moving assembly includes a fixed crossbeam (13). The fixed crossbeam (13) is fixedly installed on the upper front side of the movable seat (6). A second light rod (14) is rotatably installed inside the fixed crossbeam (13). One end of the second light rod (14) passes through the fixed crossbeam (13) and is placed on the outside and fixedly connected to a second crank (15). A second toothless nut (16) is installed on the second light rod (14). The second toothless nut (16) is fixedly connected to the connecting frame (12). A second sliding assembly is provided on the rear side of the connecting frame (12).

5. The photoelectric imaging laser machine according to claim 4, characterized in that: The second sliding assembly includes a second slider (17), the lower rear end of the connecting frame (12) is fixedly installed with the second slider (17), the upper rear end of the movable seat (6) is fixedly installed with the second slide rail (18), the second slider (17) is slidably installed on the second slide rail (18), the upper rear end of the connecting frame (12) is fixedly installed with the guide block (19), the rear side of the movable seat (6) is fixedly installed with the guide groove frame (20), and the guide block (19) is slidably installed in the guide groove frame (20).

6. The photoelectric imaging laser machine according to claim 1, characterized in that: The Y-axis moving assembly includes a fixed stand (21), the upper end of the connecting frame (12) is fixedly mounted with the fixed stand (21), the lower end of the fixed stand (21) is fixedly mounted with a lead screw motor (23), a third guide rod (24) is vertically rotatably mounted inside the fixed stand (21), and the lower end of the third guide rod (24) is fixedly connected to the output end of the lead screw motor (23). A third toothless nut (25) is slidably connected inside the fixed stand (21), and the third toothless nut (25) is mounted on the third guide rod (24). The third toothless nut (25) is fixedly connected to the rotating seat (22). The front end of the base (1) is equipped with a control button (26) for controlling the lead screw motor (23).

7. A photoelectric imaging laser machine according to claim 6, characterized in that: The fixed stand (21) and the connecting frame (12) are arranged perpendicularly, and the movable seat (6), the connecting frame (12) and the rotating seat (22) are all arranged in parallel.

8. The photoelectric imaging laser machine according to claim 1, characterized in that: The rotating assembly includes a worm (27), which is rotatably mounted inside the rotating seat (22). The front end of the worm (27) is placed outside the rotating seat (22) and is provided with a knob (28). A connecting rod (30) is rotatably mounted laterally on the right end of the rotating seat (22), and the left end of the connecting rod (30) is placed inside the rotating seat (22) and is fixedly connected to a worm wheel (29). The worm wheel (29) and the worm (27) mesh with each other. The storage base (31) is fixedly mounted on the upper right side of the connecting rod (30).

9. A photoelectric imaging laser machine according to claim 8, characterized in that: The portion of the connecting rod (30) located below the storage base (31) exceeds the radius of the storage base (31), and the connecting rod (30) is located at the center of the lower end of the storage base (31).

10. A photoelectric imaging laser machine according to claim 1, characterized in that: The storage base (31) and the storage top (32) are arranged in parallel, and the upper front side of the storage base (31) is provided with a protective edge.