Assembly equipment

Through the design of the assembly equipment, the installation pressure and holding time of the lens and mounting bracket are controlled by driving components, which solves the problem of unstable assembly of the lens and mounting bracket, and achieves a stable and reliable assembly effect.

CN223062837UActive Publication Date: 2025-07-04HEFEI IFLYTEK TOYCLOUD TECH
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Patent Information

Application Number
CN202422401006.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-04
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

In the prior art, when the lens of the camera assembly is assembled with the mounting bracket, the consistency and stability of the mounting pressure cannot be ensured, resulting in unstable and unreliable assembly.

Method used

An assembly device is adopted, which includes a first member, a second member and a driving member. The first member and the second member are driven to move relative to each other through the driving member, so that the indenter head forms a consistent installation pressure with the lens and the mounting bracket, and realizes pressure holding by controlling the holding time of the installation pressure, ensuring the stability and reliability of the assembly.

Benefits of technology

The stability and reliability of the assembly of the lens and the mounting bracket are achieved, the problem of inconsistent pressure in manual assembly is avoided, and the assembly efficiency and quality are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembling device used for assembling a camera assembly, and the assembling device comprises a first component which is provided with at least one accommodation position, and the accommodation position is used for placing a mounting support of the camera assembly; the second component is provided with at least one pressure head, and the pressure head faces the accommodating position and corresponds to the accommodating position in position; and the driving part is used for driving one of the first component and the second component to be close to or far away from the other one of the first component and the second component. The assembly equipment can provide consistent installation pressure for assembly of the lens and the installation support, and the stability and reliability of assembly of the camera assembly can be guaranteed.
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Description

Technical Field

[0001] This application relates to the technical field of camera module assembly, and particularly to an assembly device for assembling camera modules. Background Art

[0002] A scanning pen is provided with a camera module for scanning information such as text or pictures. The camera module includes a camera, a mounting bracket, and a lens. During assembly, the lens needs to be pasted on the mounting bracket and pressure is applied to the lens, and then the camera is installed inside the mounting bracket. The camera module is installed in the pen housing of the scanning pen through the mounting bracket.

[0003] Currently, the camera module is assembled manually. When assembling the lens and the mounting bracket, it is impossible to ensure the consistency and stability of the mounting pressure for pressing the lens onto the mounting bracket.

[0004] For other electronic products with similar camera module structures, there are similar problems in the assembly of camera modules. Summary of the Utility Model

[0005] The purpose of this application is to provide an assembly device that can provide a consistent mounting pressure for the assembly of the lens and the mounting bracket, which is beneficial to ensuring the stability and reliability of the assembly of the camera module.

[0006] To solve the above technical problems, this application provides an assembly device for assembling camera modules, and the assembly device includes:

[0007] A first component having at least one receiving position for placing the mounting bracket of the camera module;

[0008] A second component provided with at least one pressing head, the pressing head facing the receiving position and corresponding to the position of the receiving position;

[0009] A driving component for driving one of the first component and the second component to approach or move away from the other.

[0010] With the above solution, the driving component is used to drive one of the first component and the second component to move towards the other, so that a mounting pressure is formed between the pressing head and the mounting bracket with the lens placed thereon. This mounting pressure can stick the lens tightly to the mounting bracket, and pressure holding can be achieved by controlling the holding time of this mounting pressure. The mounting pressure between the lens and the mounting bracket and the pressure holding time can be controlled by the driving component. In this way, the problem of inconsistent or unstable mounting pressure in manual assembly of the lens and the mounting bracket is avoided. This assembly device can provide a consistent mounting pressure for the assembly of the lens and the mounting bracket, which is beneficial to ensuring the stability and reliability of the assembly of the lens and the mounting bracket.

[0011] In one feasible solution, the assembly equipment includes a base, the top surface of the base is used to support the first component, the driving component is installed on the base, the driving component includes a telescopic rod that can be lifted and lowered vertically, and the second component is installed at the bottom end of the telescopic rod.

[0012] In a feasible solution, the assembly equipment includes a guide structure, and the guide structure is used to guide the lifting and lowering of the second component.

[0013] In a feasible solution, the guide structure includes a guide rod and an adapter seat, the adapter seat is fixed to the telescopic rod, the guide rod is fixedly connected to the base, and the guide rod extends vertically and passes through the adapter seat.

[0014] In a feasible solution, the assembly device includes a mounting frame, the mounting frame is fixedly connected to the top surface of the base, and the driving component is mounted on the mounting frame.

[0015] In a feasible solution, a limiting structure is provided on the top surface of the base, and the limiting structure is used to limit the relative position of the first component and the base.

[0016] In one feasible solution, the base is a box-type structure, the base has an inner cavity, the inner cavity is provided with a controller, the controller is communicatively connected with the driving component, the outer side wall of the base is provided with a control component, the control component is communicatively connected with the controller, and the control component is used to send a signal to the controller to control the action of the driving component.

[0017] In one feasible solution, the control component includes a switch component, and the switch component is used to send a signal to the controller to start or shut down the driving component;

[0018] And / or, the control component includes a delay device, and the delay device is used to send a duration signal to the controller to control the pressure holding time of the pressure head.

[0019] In a feasible solution, the pressure head is a urea pressure head or a silicone pressure head.

[0020] In a feasible solution, the assembly equipment includes a pressure regulating structure, and the pressure regulating structure is used to adjust the driving pressure of the driving component. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A schematic diagram of the structure of an assembly device in an embodiment provided in the present application;

[0022] Figure 2 for Figure 1Schematic structural diagram of the shown assembly device from another perspective;

[0023] Figure 3 For Figure 1 schematic structural diagram of the first component in

[0024] Figure 4 For Figure 1 schematic structural diagram of the second component in

[0025] Explanation of reference numerals:

[0026] Mounting bracket 1, lens 2; first component 10, accommodation cavity 11, accommodation position 111, second component 20, pressing head 21, driving component 30, telescopic rod 31, base 40, top surface 41, limiting plate 42, guiding structure 50, adapter seat 51, guiding rod 52, mounting frame 60, vertical plate 61, mounting plate 62, connecting plate 63, control component 70, start switch 71, stop switch 72, emergency stop switch 73, timer 74, power switch 75, power socket 76, voltage regulating structure 80. Detailed implementation manners

[0027] The first, second and other ordinal numbers used in this article are used to distinguish different components with the same name, and do not represent a specific order or primary and secondary relationship, etc. The multiple used in this article refers to more than two.

[0028] The orientation words such as top (upper) and bottom (lower) used in this article are defined based on the positions of the components in the drawings and the mutual positional relationships between the components. The use of orientation words is only for the clarity and convenience of expressing the technical solution. It should be understood that the orientation words used in this article should not limit the protection scope of this application.

[0029] In this implementation manner, the assembly device is used for assembling a camera module. The camera module includes a camera body, a mounting bracket and a lens, and both the camera body and the lens are mounted on the mounting bracket. The camera module can be mounted in the housing of an electronic product through the mounting bracket. The electronic product can be a scanning pen such as a translation pen, a dictionary pen, a point-reading pen, etc., and the electronic product can also be other products with a camera function, such as a tablet computer, a mobile phone, etc.

[0030] In the assembly process of the camera module, it includes the assembly of the lens and the mounting bracket and the assembly of the camera body and the mounting bracket. The assembly device provided in this implementation manner is mainly used for the assembly of the lens and the mounting bracket in the camera module. The following further details this application in conjunction with the drawings and specific implementation manners.

[0031] Please refer to Figures 1 to 4 , Figure 1 which is the schematic structural diagram of the assembly device in an embodiment provided by this application, Figure 2 ForFigure 1 Schematic structural diagram of the shown assembly equipment from another perspective Figure 3 is Figure 1 schematic structural diagram of the first component in Figure 4 is Figure 1 schematic structural diagram of the second component in

[0032] In this implementation, the assembly equipment includes a first component 10, a second component 20, and a driving component 30; the first component 10 has at least one accommodating position 111, and this accommodating position 111 is used to place the mounting bracket 1 of the camera assembly; the second component 20 is provided with at least one pressing head 21, the pressing head faces the accommodating position 111 of the first component 10, and corresponds to the position of the accommodating position 111; the driving component 30 is used to drive one of the first component 10 and the second component 20 to move closer to or away from the other.

[0033] When the assembly equipment is in use, the lens 2 can be first placed on the mounting bracket 1, wherein the adhesive side of the lens 2 faces the mounting bracket 1, and then the mounting bracket 1 with the lens 2 placed thereon is placed in the accommodating position 111 of the first component 10. After placement, the lens 2 side faces the pressing head 21 of the second component 20. Then, the driving component 30 is used to drive the first component 10 to move in the direction of the second component 20, or drive the second component 20 to move in the direction of the first component 10, so that the pressing head 21 of the second component 20 adheres the lens 2 tightly to the mounting bracket 1.

[0034] Adopting the above scheme, the driving component 30 is used to drive one of the first component 10 and the second component 20 to move towards the other, so as to form an installation pressure between the pressing head 21 and the mounting bracket 1 with the lens 2 placed thereon. This installation pressure can adhere the lens 2 tightly to the mounting bracket 1. By controlling the holding time of this installation pressure, pressure holding can be realized. The installation pressure between the lens 2 and the mounting bracket 1 and the pressure holding time can be controlled by the driving component 30. In this way, the problem of inconsistent or unstable installation pressure existing in manual assembly of the lens 2 and the mounting bracket 1 is avoided. This assembly equipment can provide a consistent installation pressure for the assembly of the lens 2 and the mounting bracket 1, which is beneficial to ensuring the stability and reliability of the assembly of the lens 2 and the mounting bracket 1.

[0035] In this implementation, the assembly equipment further includes a base 40. The top surface of the base 40 is used to support the first component 10. The driving component 30 is installed on the base 40. The driving component 30 includes a telescopic rod 31 that can move up and down vertically. The second component 20 is installed at the bottom end of the telescopic rod 31.

[0036] After the above settings, the second component 20 is located above the first component 10. The telescopic rod 31 of the driving component 30 extends downward or retracts upward to drive the second component 20 closer to or farther from the first component 10. The first component 10 on which the lens 2 and the mounting bracket 1 are placed is in a stationary state, and the second component 20 with the pressing head 21 is a movable part, which can ensure the stability of the assembly of the lens 2 and the mounting bracket 1. The driving component 30 moves vertically. The mounting bracket 1 on which the lens 2 is placed can be placed in the accommodating position 111 of the first component 10 without being fixed to the first component 10, which can simplify the operation and facilitate the taking of the assembled lens 2 and mounting bracket 1.

[0037] In other embodiments, the second component 20 can also be a stationary part, and the driving component 30 drives the first component 10 to move vertically. At this time, the driving component 30 can be arranged below the first component 10. The second component 20 is located above the first component 10. The telescopic rod 31 of the driving component 30 can extend upward or retract downward to drive the first component 10 closer to or farther from the second component 20, so as to realize the assembly of the lens 2 and the mounting bracket 1.

[0038] In this implementation scheme, the assembly equipment further includes a mounting frame 60. The mounting frame 60 is fixed on the top surface 41 of the base 40, that is, the mounting frame 60 is fixedly connected to the top surface 41 of the base 40, and the driving component 30 is mounted on the mounting frame 60.

[0039] In a specific implementation, the mounting frame 60 includes vertical plates 61 and a mounting plate 62. There are two vertical plates 61. The mounting plate 62 is fixedly connected between the two vertical plates 61, and the mounting plate 62 is located at the top of the vertical plates 61. The driving component 30 is mounted on the mounting plate 62. The telescopic rod 31 of the driving component 30 can extend toward the top surface 41 of the base 40 or retract away from the top surface 41 of the base 40.

[0040] The vertical plates 61 and the base 40 can be fixedly connected by fasteners such as bolts or screws, or can be fixedly connected by other methods such as welding, riveting or bonding.

[0041] The mounting plate 62 and the vertical plates 61 can be fixedly connected by fasteners such as bolts or screws, or can be fixedly connected by other methods such as welding or riveting.

[0042] In other implementation manners, the number of the vertical plates 61 can be unrestricted. The vertical plate 61 can be provided with only one, or can be provided with more than three, as long as it can ensure the reliability of the installation of the driving component 30 and the stability of operation.

[0043] Exemplarily, a reinforcing structure such as a diagonal brace can be provided between the vertical plate 61 and the top surface 41 of the base 40 to improve the stability and reliability of the operation of the driving component 30.

[0044] In this embodiment, a limiting structure is provided on the top surface 41 of the base 40, and this limiting structure is used to limit the relative position between the first member 10 and the base 40. In this way, the relative positions of the first member 10 and the second member 20 mounted on the driving component 30 can be ensured through the limiting structure, so that when the driving component 30 drives the second member 20 to descend, the pressing head 21 of the second member 20 can apply an installation pressure to the lens 2.

[0045] It can be understood that the mounting bracket 60 is fixed to the base 40, and their relative positions are determined. After the driving component 30 is mounted on the mounting bracket 60, the relative position between the driving component 30 and the base 40 is also determined. After the bottom end of the telescopic rod 31 of the driving component 30 is mounted with the second member 20, the relative position between the second member 20 and the base 40 is also determined. In application, the driving component 30 can be first mounted on the base 40, and then the position of the limiting structure on the top surface 41 of the base 40 can be determined according to the position of the driving component 30. Or the position of the limiting structure on the top surface 41 of the base 40 can be first determined, and then the driving component 30 can be mounted.

[0046] In a specific implementation, the first member 10 is a plate-like structure, and the limiting structure includes a limiting plate 42. The limiting plate 42 has a limiting groove, and at least a part of the first member 10 can be clamped in the limiting groove of the limiting plate 42.

[0047] In the illustrated example, the limiting groove of the limiting plate 42 is generally U-shaped, that is, the limiting groove is an open groove, which is convenient for taking and placing the first member 10.

[0048] In other implementation manners, the limiting structure can also be in other forms. For example, the limiting structure can include several stoppers. Each stopper corresponds to a side of the first member 10. Taking the first member 10 as a whole in a square shape as an example, the limiting structure can be provided with four stoppers corresponding to the four sides of the first member 10. The first member 10 is placed between the four stoppers, and each stopper restricts a side of the first member 10, so that the position of the first member 10 can be limited.

[0049] In a specific implementation, the second member 20 is also a plate-like structure, and a pressing head 21 extending in the direction of the first member 10 is provided on the surface facing the first member 10.

[0050] In this embodiment, the first member 10 can be provided with a plurality of receiving positions 111, and the second member 20 can be provided with a plurality of pressing heads 21, and the pressing heads 21 and the receiving positions 111 are arranged in one-to-one correspondence. In this way, multiple groups of lenses 2 and mounting brackets 1 can be press-fitted at one time, which can improve the assembly efficiency. It can be understood that although the first member 10 is provided with a plurality of receiving positions 111, in actual application, only some of the receiving positions 111 can be used.

[0051] In a specific implementation, the first component 10 may have at least one receiving cavity 11, and at least one accommodating position 111 is provided in the receiving cavity 11. The setting of the accommodating position 111 can limit the position of the mounting bracket 1 placed therein. Specifically, it can be achieved by matching the shape of the accommodating position 111 with that of the mounting bracket 1, or by providing positioning structures such as positioning grooves in the accommodating position 111.

[0052] In the illustrated example, the first component 10 is provided with two receiving cavities 11, and each receiving cavity 11 has three accommodating positions 111. Each accommodating position 111 is relatively independent and does not interfere with each other. The second component 20 is correspondingly provided with six pressing heads 21.

[0053] In a specific implementation, the pressing head 21 is made of a urethane rubber pressing head or a silicone rubber pressing head. Among them, the urethane rubber is a polyurethane PU elastomer, which has good strength and small compression deformation, and also has elasticity. The silicone rubber is similar. In this way, the installation pressure can be effectively transmitted to the lens 2 without damaging the lens 2.

[0054] In this implementation scheme, the assembly equipment further includes a guiding structure 50, which is used to guide the lifting of the second component 20. In this way, it can be avoided that the position of the second component 20 is deflected during the lifting process, resulting in the pressing head 21 of the second component 20 being unable to align with the mounting bracket 1 with the lens 2 placed on the first component 10, so as to ensure that the pressing head 21 can accurately press on the lens 2, and further ensure the reliability of the press-fitting of the lens 2 and the mounting bracket 1.

[0055] In a specific implementation, the guiding structure 50 includes an adapter seat 51 and a guiding rod 52. The adapter seat 51 is fixed to the telescopic rod 31 of the driving component 30, and the guiding rod 52 is fixedly connected to the base 40. The guiding rod 52 extends vertically and passes through the adapter seat 51.

[0056] In this way, when the telescopic rod 31 drives the second component 20 to lift vertically, the adapter seat 51 moves vertically relative to the guiding rod 52. With the cooperation of the adapter seat 51 and the guiding rod 52, the telescopic direction of the telescopic rod 31 can be restricted.

[0057] In the illustrated example, the adapter seat 51 is fixedly connected to the bottom end of the telescopic rod 31, and the second component 20 is specifically installed on the adapter seat 51.

[0058] When specifically setting, a connecting plate 63 is further fixedly connected between the two vertical plates 61 of the mounting frame 60. The position of the connecting plate 63 corresponds to that of the guiding rod 52. The bottom end of the guiding rod 52 is fixed to the base 40, and the top end of the guiding rod 52 is fixed to the connecting plate 63. In this way, the connection stability of the guiding rod 52 can be ensured, and the reliability of the guiding can be ensured.

[0059] In the illustrated example, two guide rods 52 are provided to ensure the reliability of the guidance. In other implementations, one guide rod 52 may be provided, or three or more guide rods may be provided.

[0060] In addition to the illustrated scheme, the guide structure can also be in other structural forms, such as a slide rail and a slider combination, wherein the slide rail can be fixed on the base 40 and extend vertically, the slider is fixed to the telescopic rod 31, and a transition structure can be set between the two according to the layout requirements, and the slider and the slide rail are slidably matched.

[0061] In this embodiment, the base 40 is a box-type structure, and the base 40 has an inner cavity. The inner cavity of the base 40 is provided with a controller (not shown in the figure), and the controller is connected to the driving component 30 for communication. The outer wall of the base 40 may also be provided with a control component, and the control component is connected to the controller for communication, and the control component is used to send a signal to the controller to control the action of the driving component 30. In this way, the assembly equipment can be highly integrated and occupy less space.

[0062] In a specific implementation, the control component may include a switch component, and the switch component is used to send a signal to the controller to start or shut down the driving component 30.

[0063] like Figure 1 As shown, the switch assembly may include a start switch 71, a stop switch 72, and an emergency stop switch 73. The start switch 71 and the stop switch 72 are respectively used to control the start and stop of the drive component 30. The emergency stop switch 73 may be used to control the emergency stop of the drive component 30 when an emergency or accident occurs.

[0064] In a specific implementation, the control component may further include a delay device 74 , which is used to send a duration signal to the controller to control the pressure holding time of the pressing head 21 , that is, to control the duration after the pressing head 21 presses the lens 2 .

[0065] In a specific implementation, the control component may further include an input control, through which a signal may be sent to the controller to adjust the size of the installation pressure provided by the driving component 30 when driving the second member 20 to press the lens 2. The input control may be an external device or a touch screen integrated on the base 40.

[0066] In a specific implementation, the assembly device further includes a pressure regulating structure 80, which can be installed on the mounting frame 60. The figure shows an example of the pressure regulating structure 80 being installed on the vertical plate 61. The figure is only a schematic example. In actual applications, the matching mode of the pressure regulating structure 80 and the driving component 30, the mode of adjusting the pressure by the pressure regulating structure 80, etc. can all be realized based on traditional technologies, which will not be described in detail here.

[0067] Exemplarily, the driving component 30 may be a cylinder, and the pressure regulating structure 80 may be a pressure regulating valve or the like.

[0068] The control component may further include a power switch 75, and a power socket 76 electrically connected to the controller may be provided on the side wall of the base 40 to facilitate external power connection.

[0069] In the illustrated example, the power switch 75 and the power socket 76 are provided on one side wall of the base 40, and the start switch 71, the stop switch 72, the emergency stop switch 73 and the timer 74 are provided on the other side wall of the base 40. In actual application, the specific installation positions of the foregoing structures may be determined according to needs.

[0070] Specific examples are used in this article to elaborate on the principles and implementation manners of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the protection scope of the claims of the present application.

Claims

1. An assembly device for assembling a camera component, characterized in that The assembly equipment comprises: A first component having at least one accommodation position, wherein the accommodation position is used to place a mounting bracket of the camera assembly; A second component is provided with at least one pressing head, the pressing head faces the accommodating position and corresponds to the position of the accommodating position; A driving component is used to drive one of the first member and the second member to move closer to or away from the other member.

2. The assembly equipment according to claim 1, characterized in that, The assembly device comprises a base, the top surface of the base is used to support the first component, the driving component is installed on the base, the driving component comprises a telescopic rod that can be lifted and lowered vertically, and the second component is installed on the bottom end of the telescopic rod.

3. The assembly device according to claim 2, characterized in that, The assembly equipment comprises a guide structure, and the guide structure is used to guide the lifting and lowering of the second component.

4. The assembly equipment according to claim 3, characterized in that, The guide structure comprises a guide rod and an adapter seat, the adapter seat is fixed to the telescopic rod, the guide rod is fixedly connected to the base, and the guide rod extends vertically and passes through the adapter seat.

5. The assembly equipment according to claim 2, characterized in that, The assembly equipment comprises a mounting frame, the mounting frame is fixedly connected to the top surface of the base, and the driving component is mounted on the mounting frame.

6. The assembly equipment according to claim 2, characterized in that, A limiting structure is disposed on the top surface of the base, and the limiting structure is used to limit the relative position of the first component and the base.

7. The assembly equipment according to claim 2, characterized in that The base is a box-type structure, and the base has an inner cavity. The inner cavity is provided with a controller, and the controller is communicatively connected with the driving component. The outer side wall of the base is provided with a control component, and the control component is communicatively connected with the controller. The control component is used to send a signal to the controller to control the action of the driving component.

8. The assembly equipment according to claim 7, characterized in that, The control component includes a switch component, and the switch component is used to send a signal to the controller to start or shut down the driving component; And / or, the control component includes a delay device, and the delay device is used to send a duration signal to the controller to control the pressure holding time of the pressure head.

9. The assembly equipment according to any one of claims 1-8, characterized in that, The pressure head is a PU pressure head or a silicone pressure head.

10. The assembly device according to any one of claims 1-8, characterized in that, The assembly equipment comprises a pressure regulating structure, and the pressure regulating structure is used to adjust the driving pressure of the driving component.