Camera gap adjusting structure and camera
By incorporating clearance openings and elastic arm buffers along the edge of the connecting plate, the noise and resistance issues caused by lens module gaps were resolved, achieving stable transmission and cost reduction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-04-07
AI Technical Summary
During the focusing process, gaps caused by the precision of component manufacturing result in noise and resistance in the lens module, affecting its normal operation. Existing solutions are either costly or inefficient.
Multiple clearance openings are provided along the edge of the connecting plate to accommodate the elastic arm, and a buffer body is provided on its surface. The elastic arm abuts against the lens module to fill the gap, ensuring transmission stability, and reducing production costs through one-piece molding.
It effectively solves the noise and resistance problems caused by the gap between lens modules, improves installation efficiency and reduces production costs, and ensures stable focusing and reliability of the lens module.
Smart Images

Figure CN224097761U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to camera technology field especially relates to a camera adjustment gap structure and camera. BACKGROUND
[0002] The lens module includes a lens group, a lens barrel and a focusing motor, due to the machining precision of parts, there is a gap in the assembly structure of the lens module, and in the process of driving the lens module to focus by the motor, noise and other problems are easily generated due to the gap, which affects the normal use of the lens module.
[0003] Generally, in order to solve the gap problem, a ball, a hardware elastic adjusting interface or a plastic buckle or a ball bearing is arranged at the gap, but the installation of the ball is complex and inefficient, the cost of the hardware elastic or ball bearing adjusting structure is high, thus, the assembly efficiency or cost of the lens module is greatly affected, which is not conducive to cost reduction and efficiency increase. UTILITY MODEL CONTENT
[0004] The main purpose of the utility model is to provide a camera adjustment gap structure and camera, which aims to effectively control the gap between the matching parts and adjust the matching of the related parts to solve the gap matching problem.
[0005] To achieve the above purpose, the camera adjustment gap structure provided by the utility model comprises:
[0006] A connecting plate body is provided with a plurality of avoiding openings on the edge;
[0007] A plurality of elastic arms are arranged in each avoiding opening and extend along the direction of the edge of the connecting plate body, and the elastic arms are connected to the connecting plate body;
[0008] Among them, the elastic arm partially extends out of the avoiding opening, and the surface of the elastic arm is provided with a first buffer body.
[0009] In an embodiment, the elastic arm is bent and arranged in the opening of the avoiding opening;
[0010] Among them, the surface of the elastic arm outside the avoiding opening is provided with the first buffer body.
[0011] In an embodiment, the elastic arm comprises an arm body and a mounting surface, the arm body is connected to the side wall of the avoiding opening, the arm body is bent, the arm body extends towards the opening of the avoiding opening, and the arm body partially extends out of the avoiding opening;
[0012] Among them, the mounting surface is arranged on the arm body extending out of the avoiding opening, and the first buffer body is mounted on the mounting surface.
[0013] In an embodiment, the mounting surface is parallel to the surface of the connecting plate body.
[0014] In an embodiment, the surface of the first buffer body facing away from the elastic arm is parallel to the surface of the connecting plate body.
[0015] In an embodiment, the first buffer body extends along the arc direction of the edge of the connecting plate body.
[0016] In an embodiment, the surface of the connecting plate body edge between two adjacent elastic arms is provided with a second buffer body, and the second buffer body extends along the arc direction of the edge of the connecting plate body.
[0017] In an embodiment, a space is provided between the surface of the first buffer body facing away from the elastic arm and the surface of the second buffer body facing away from the connecting plate body.
[0018] In an embodiment, the surface of the second buffer body facing away from the connecting plate body is parallel to the surface of the connecting plate body.
[0019] The utility model also proposes a camera, including camera casing, drive part with camera adjustment gap structure;
[0020] Among them, the connecting plate body is connected to one end of the camera casing, and the first buffer body abuts against the camera casing, and the driving end of the driving part is connected to the side surface of the connecting plate body facing away from the camera casing.
[0021] The technical scheme of the utility model sets a plurality of avoiding notches on the edge of the connecting plate body to accommodate the elastic arm, the elastic arm partially extends out of the avoiding notch, and the surface of the elastic arm is provided with a first buffer body, so that when the connecting plate body is connected with the lens module, the first buffer body stably abuts against the lens module under the action of the elastic arm, the gap between the connecting plate body and the lens module is filled, the restriction of the focusing action of the lens module or the abnormal sound caused by the gap when the motor outputs power is avoided, the stable focusing of the lens module is ensured, the elastic arm and the first buffer body are integrated with the connecting plate body, the production cost is greatly reduced, and when the connecting plate body and the lens module are installed, the first buffer body directly abuts against the lens module, so that the installation efficiency is improved. ACCURATE DRAWINGS
[0022] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings from the structures shown in the drawings without creating creative labor.
[0023] Figure 1 Structure schematic view of the camera adjusting gap structure of one embodiment provided by the utility model;
[0024] Figure 2 Structure schematic view of the camera adjusting gap structure of another embodiment provided by the utility model;
[0025] Figure 3 Structure schematic view of the camera adjusting gap structure of another embodiment provided by the utility model;
[0026] Figure 4 Structure schematic view of the camera of one embodiment provided by the utility model;
[0027] Figure 5 Structure schematic view of the camera of one embodiment provided by the utility model; Figure 4 Structure schematic view of the camera of one embodiment provided by the utility model; Structure schematic view of the camera of one embodiment provided by the utility model;
[0028] Structure schematic view of the camera of one embodiment provided by the utility model; Figure 6 Structure schematic view of the camera of one embodiment provided by the utility model; Structure schematic view of the camera of one embodiment provided by the utility model;
[0029] Structure schematic view of the camera of one embodiment provided by the utility model; Figure 7 Structure schematic view of the camera of one embodiment provided by the utility model; Figure 6 Structure schematic view of the camera of one embodiment provided by the utility model; Structure schematic view of the camera of one embodiment provided by the utility model;
[0030] Structure schematic view of the camera of one embodiment provided by the utility model; Figure 8 Structure schematic view of the camera of one embodiment provided by the utility model. Explanation of reference numerals:
[0031] 100, camera adjusting gap structure; 10, connecting plate body; 20, second buffer body; 30, avoiding opening; 40, elastic arm; 41, arm body; 42, mounting surface; 50, first buffer body; 60, camera shell; 70, driving part.
[0032] The implementation, functional features and advantages of the utility model will be further described with reference to the embodiments and the accompanying drawings.
[0033] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the utility model. Specific implementation
[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the utility model.
[0035] It should be noted that if the embodiment of the utility model has the direction indication (such as up, down, left, right, front, back, etc.), the direction indication is only used to explain the relative position relationship, movement condition, etc. between the components in a certain posture, if the certain posture changes, the direction indication also changes accordingly.
[0036] In addition, if the embodiment of the utility model has the description of "first", "second" and the like, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one feature. In addition, "and / or" or "and / or" appears in the whole text, which means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0037] The utility model provides a camera adjustment gap structure.
[0038] Please refer to Figure 1 In the embodiment of the utility model, the camera adjustment gap structure comprises:
[0039] The connecting plate body 10 is provided with a plurality of escape ports 30 on the edge;
[0040] A plurality of elastic arms 40 are arranged in each escape port 30 along the direction of the edge of the connecting plate body 10, and the elastic arm 40 is connected to the connecting plate body 10;
[0041] Among them, the elastic arm 40 part extends out of the escape port 30, and the surface of the elastic arm 40 is provided with a first buffer body 50.
[0042] It should be noted that the connecting plate body 10 is used to connect the lens module and the motor, the connecting plate body 10 is connected between the lens module and the connecting plate body 10, and there is a cooperation tolerance, i.e. gap, between the connecting plate body 10 and the lens module. Therefore, the motor output power makes the lens module prone to noise and / or large resistance problems during focusing, which affects the normal operation of the lens module.
[0043] To this end, a plurality of elastic arms 40 are arranged at intervals on the edge of the connecting plate body 10, and when the connecting plate body 10 is connected to the lens module, the first buffer body 50 directly abuts on the lens module, so that when the motor outputs power, the first buffer body 50 provides a basis for the transmission between the connecting plate body 10 and the lens module, ensuring stable transmission.
[0044] As shown in Figure 1 The avoiding opening 30 is a notch formed on the edge of the connecting plate body 10, and the elastic arm 40 is connected in the notch.
[0045] It can be understood that by arranging the avoiding opening 30 on the edge of the connecting plate body 10 to accommodate the elastic arm 40, space is provided for the elastic arm 40 to deform when the motor outputs power, and the excessive exposed elastic arm 40 does not affect the connection between the connecting plate body 10 and the lens module.
[0046] In order to facilitate the elastic arm 40 to abut on the lens module through the first buffer body 50 to eliminate the gap between the connecting plate body 10 and the lens module, the elastic arm 40 partially protrudes from the avoiding opening 30 to facilitate abutting on the side surface of the edge of the lens module.
[0047] It should be noted that the elastic arm 40 is connected to the side wall of the avoiding opening towards the edge of the connecting plate body 10.
[0048] It can be understood that the elastic arm 40 is a cantilever structure to facilitate the elastic arm 40 to abut on the first buffer body 50 by being compressed and deformed.
[0049] It should be noted that the first buffer body 50, the elastic arm 40 and the connecting plate body 10 are integrally formed, thereby reducing the production cost of the connecting plate body 10.
[0050] The utility model discloses a technical scheme through setting multiple avoidance notches on the connecting plate body 10 edge, to accommodate the elastic arm 40, the elastic arm 40 part extends the avoidance mouth 30, and the surface of the elastic arm 40 sets up the first buffer 50, and when the connecting plate body 10 is connected with the lens module, is affected by the elastic arm 40, makes the first buffer 50 and lens module stable abut, fills the gap between the connecting plate body 10 and the lens module, avoids the existence of the gap when the motor output power, the focusing action of the lens module appears restriction or appears abnormal sound, guarantees the stable movement of lens module focusing, and the elastic arm 40 and the first buffer 50 and the connecting plate body 10 are integrated, greatly reduce the production cost, and when the connecting plate body 10 is installed with the lens module, the first buffer directly abuts the lens module, and this improves its installation efficiency.
[0051] In an embodiment, the elastic arm 40 is bent, and is arranged in the opening of the avoidance mouth 30.
[0052] The surface of the elastic arm 40 outside the avoidance mouth 30 is provided with the first buffer 50.
[0053] As shown in the drawings, the elastic arm 40 connected with the side wall of the avoidance mouth is partially bent, and the vertical section of the part of the elastic arm 40 is smaller than the part of the elastic arm 40 connected with the first buffer 50. Figure 2 Figure 4 As shown in the drawings, the elastic arm 40 connected with the side wall of the avoidance mouth is partially bent, and the vertical section of the part of the elastic arm 40 is smaller than the part of the elastic arm 40 connected with the first buffer 50.
[0054] It can be understood that the cross-sectional area of the elastic arm 40 gradually increases in the direction away from the connecting plate body 10, so that when the connecting plate body 10 is connected with the lens module, the elastic arm 40 is stressed and the first buffer 50 is abutted on the lens module, so that when the motor outputs power, the elastic arm 40 can be deformed under stress, auxiliary force transmission, avoid abnormal sound and ensure the stable focusing of the lens module.
[0055] In an embodiment, the elastic arm 40 includes an arm body 41 and a mounting surface 42, the arm body 41 is connected to the side wall of the avoidance mouth 30, the arm body 41 is bent, the arm body 41 extends towards the opening of the avoidance mouth 30, and the arm body 41 part extends the avoidance mouth 30.
[0056] The arm body 41 extending out of the avoidance mouth 30 is provided with a mounting surface 42, and the first buffer 50 is mounted on the mounting surface 42.
[0057] It can be understood that the arm body 41 is used for carrying the first buffer 50.
[0058] It can be understood that the mounting surface 42 is located on the surface of the arm body 41, and provides a mounting position for the mounting of the first buffer body 50, so that when the connecting plate body 10 is mounted on the lens module, the first buffer body 50 can directly abut against the lens module, thereby avoiding the influence of the gap between the connecting plate body 10 and the lens module on the stability of focusing the lens module.
[0059] In an embodiment, the mounting surface 42 is parallel to the surface of the connecting plate body 10.
[0060] Preferably, the mounting surface 42 is parallel to the surface of the connecting plate body 10, so that the first buffer body 50 is parallel to the surface of the connecting plate body 10.
[0061] It can be understood that, due to the parallel mounting surface 42 to the surface of the connecting plate body 10, the surface of the first buffer body 50 away from the connecting plate body 10 can tightly abut against the lens module, and the surface of the first buffer body 50 can be attached to the surface of the lens module at the same time, thereby ensuring the shock absorption effect.
[0062] In an embodiment, the surface of the first buffer body 50 away from the elastic arm 40 is parallel to the surface of the connecting plate body 10.
[0063] Preferably, in order to ensure that the first buffer body 50 can accurately fit the surface of the lens module, and the first buffer body 50 can be uniformly stressed against the lens module, the surface of the first buffer body 50 can be parallel to the surface of the connecting plate body 10.
[0064] It should be noted that the first buffer body 50 is a resilient member, thereby assisting in reducing resistance and improving the efficiency and stability of installation.
[0065] In an embodiment, the first buffer body 50 extends along the arc direction of the edge of the connecting plate body 10.
[0066] As shown in Figure 1 the first buffer body 50 is in a strip shape, and the strip-shaped first buffer body 50 is curved along the edge of the connecting plate body 10.
[0067] It can be understood that the connecting plate body 10 is adaptively mounted with the lens module, so that the strip-shaped first buffer body 50 can also adapt to the lens module, thereby ensuring that the first buffer body 50 can stably abut against the lens module and ensuring the reliability of the adaptation.
[0068] In an embodiment, the edge surface of the connecting plate body 10 between two adjacent elastic arms 40 is provided with a second buffer body 20, and the second buffer body 20 extends along the arc direction of the edge of the connecting plate body 10.
[0069] It should be noted that due to the multiple power output of the motor, the multiple transmission between the connecting plate body 10 and the lens module, the first buffer body 50 is prone to wear and tear, and after a long period of use, the gap between the connecting plate body 10 and the lens module will affect the operation of the lens module again after the first buffer body 50 is worn out.
[0070] To this end, as shown in Figure 1 With Figure 2 As shown, the second buffer body 20 is arranged between the two adjacent elastic arms 40, and the second buffer body 20 extends along the arc direction of the edge of the connecting plate body 10.
[0071] It can be understood that when the first buffer body 50 is worn out, the second buffer body 20 replaces the first buffer body 50 to abut against the lens module when the connecting plate body 10 cooperates with the lens module, thereby prolonging the service life of the connecting plate body 10, and avoiding the replacement of the connecting plate body 10, thereby reducing the cost.
[0072] In an embodiment, a gap is provided between the surface of the first buffer body 50 away from the elastic arm 40 and the surface of the second buffer body 20 away from the connecting plate body 10.
[0073] In order to avoid the second buffer body 20 from not contacting the lens module when the first buffer body 50 abuts against the lens module, thereby avoiding the wear and tear of the second buffer body 20, the second buffer body 20 has a height difference with the first buffer body 50.
[0074] In an embodiment, the surface of the second buffer body 20 away from the connecting plate body 10 is parallel to the surface of the connecting plate body 10.
[0075] It can be understood that the surface of the second buffer body 20 is parallel to the surface of the connecting plate body 10, and the surface of the second buffer body 20 is parallel to the surface of the first buffer body 50, so that when the second buffer body 20 replaces the first buffer body 50 to abut against the lens module, the second buffer body 20 can be stably attached to the lens module, thereby ensuring the reliability of the second buffer body 20 abutting against the connecting plate body 10 and the lens module.
[0076] The utility model discloses still propose a kind of camera, the camera includes camera shell 60, drive part 70 with the camera adjustment gap structure 100, the specific structure of the camera adjustment gap structure 100 refers to above-mentioned embodiment, since the camera of the present application adopts all technical solutions of above-mentioned all embodiments, at least have all beneficial effects brought by the technical scheme of above-mentioned embodiment, here no longer one by one elaboration. Among them, the connecting plate body 10 is connected to one end of the camera shell 60, and the first buffer body 50 is abutted on the camera shell 60, and the driving end of the drive part 70 is connected to the side of the connecting plate body 10 away from the camera shell 60.
[0077] As Figure 3 With Figure 5 As shown, the connecting plate body 10 is connected between the camera shell 60 and the drive part 70, and the driving end of the drive part 70 is connected to the side of the connecting plate body 10 away from the camera shell 60. Figure 4 With Figure 6 As can be seen, the first buffer body 50 and the second buffer body 20 are arranged between the camera shell 60 and the connecting plate body 10, and therefore, the first buffer body 50 is abutted on the camera shell 60, and there is a gap between the second buffer body 20 and the camera shell 60.
[0078] The above is only an exemplary embodiment of the utility model, and does not limit the patent scope of the utility model, and any equivalent structural transformation made by using the utility model specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the utility model.
Claims
1. A camera adjustment gap structure, characterized in that, The application relates to a connecting plate body provided with a plurality of avoiding openings. A plurality of elastic arms are arranged in each avoiding opening and extend along the direction of the connecting plate body edge, and the elastic arms are connected to the connecting plate body. The elastic arms partially extend out of the avoiding openings, and the surfaces of the elastic arms are provided with first buffer bodies. The elastic arms are bent and pass through the openings of the avoiding openings.
2. The camera-adjusting gap structure of claim 1, wherein, The surfaces of the elastic arms outside the avoiding openings are provided with the first buffer bodies. The elastic arms comprise arm bodies and mounting surfaces, the arm bodies are connected to the side walls of the avoiding openings, the arm bodies are bent, the arm bodies extend towards the openings of the avoiding openings, and the arm bodies partially extend out of the avoiding openings.
3. The camera adjustment gap structure of claim 2, wherein, The mounting surfaces are arranged on the arm bodies extending out of the avoiding openings, and the first buffer bodies are mounted on the mounting surfaces. The mounting surfaces are parallel to the surface of the connecting plate body.
4. The camera adjustment gap structure of claim 3, wherein, The surfaces of the first buffer bodies away from the elastic arms are parallel to the surface of the connecting plate body.
5. The camera adjustment gap structure of claim 2, wherein, The first buffer bodies extend along the arc direction of the edge of the connecting plate body.
6. The camera adjustment gap structure of claim 2, wherein, The surface of the connecting plate body edge between two adjacent elastic arms is provided with a second buffer body, and the second buffer body extends along the arc direction of the edge of the connecting plate body.
7. The camera-adjusting gap structure according to any one of claims 1 to 6, wherein An interval is arranged between the surface of the first buffer body away from the elastic arm and the surface of the second buffer body away from the connecting plate body.
8. The camera adjustment gap structure of claim 7, wherein, The surface of the second buffer body away from the connecting plate body is parallel to the surface of the connecting plate body.
9. The camera adjustment gap structure of claim 7, wherein, The application relates to a camera adjusting gap structure, a camera shell, a driving part and the camera adjusting gap structure.
10. A camera, characterized by The connecting plate body is connected to one end of the camera shell, the first buffer body abuts against the camera shell, and the driving end of the driving part is connected to the side surface of the connecting plate body away from the camera shell.