CN220311171U - A cleaning device for optical lens processing of camera modules - Google Patents

A cleaning device for optical lens processing of camera modules Download PDF

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Publication number
CN220311171U
CN220311171U CN202321688240.6U CN202321688240U CN220311171U CN 220311171 U CN220311171 U CN 220311171U CN 202321688240 U CN202321688240 U CN 202321688240U CN 220311171 U CN220311171 U CN 220311171U
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cleaning
block
filter plate
output shaft
water filter
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邓龙华
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Dongguan Yuehong Electronic Technology Co ltd
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Dongguan Yuehong Electronic Technology Co ltd
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Abstract

本实用新型公开一种摄像头模组用光学镜片加工的清洗装置,包括用于清洗镜片的清洗室,所述清洗室的内部设置有滤水板,且滤水板的上方设置有滤筒,并且滤筒转动安装在滤水板的上方,镜片通过滤筒可放置到滤水板的上方,滤筒的内侧固定有刷块,所述滤水板的下方设置有承托块。该摄像头模组用光学镜片加工的清洗装置设置有可旋转的滤筒和拆卸的滤水板,可将待进行清洗的镜片通过滤水板放置到清洗室内进行清洗,在清洗时通过滤筒的旋转配合刷块可对清洗液进行搅拌,增加清洗液的流动性,使其能起到更好的清洁效果,同时后续可将滤水板从清洗室内取出,方便将滤水板上的镜片进行拿取,提高其使用便捷性。

The utility model discloses a cleaning device for processing optical lenses for camera modules, which includes a cleaning chamber for cleaning the lenses. A water filter plate is provided inside the cleaning chamber, and a filter cartridge is provided above the water filter plate, and The filter cartridge is rotated and installed above the water filter plate, and the lens can be placed above the water filter plate through the filter cartridge. A brush block is fixed on the inside of the filter cartridge, and a supporting block is provided below the water filter plate. The cleaning device for processing optical lenses of the camera module is equipped with a rotatable filter cartridge and a detachable water filter plate. The lens to be cleaned can be placed in the cleaning room through the water filter plate for cleaning. During cleaning, the lens passes through the filter cartridge. The rotating brush block can stir the cleaning fluid, increase the fluidity of the cleaning fluid, and achieve a better cleaning effect. At the same time, the water filter plate can be taken out from the cleaning chamber to facilitate the cleaning of the lenses on the water filter plate. Take it and improve its convenience of use.

Description

一种摄像头模组用光学镜片加工的清洗装置A cleaning device for optical lens processing of camera modules

技术领域Technical field

本实用新型涉及光学镜片清洗技术领域,具体为一种摄像头模组用光学镜片加工的清洗装置。The utility model relates to the technical field of optical lens cleaning, specifically a cleaning device for processing optical lenses used in camera modules.

背景技术Background technique

光学镜片是摄像头模组或者镜头模组中的重要组成部分,在对摄像头模组中的光学镜片进行加工时,需要先根据使用需要将其打磨成所需要的造型,然后将处理后的镜片进行清洗,洗去其表面附着杂质,但现有的光学镜片加工清洗装置还存在一些使用上的不足:Optical lenses are an important part of the camera module or lens module. When processing the optical lenses in the camera module, you need to polish them into the required shape according to the needs of use, and then process the processed lenses. Cleaning removes impurities attached to the surface, but existing optical lens processing and cleaning devices still have some shortcomings in use:

现有的清洗装置在对光学镜片进行清洗时,一般是直接将镜片放置到清洗室内进行清理,由于清洗室内液体多为静置状,其自身流动性较差,导致对镜片的清理效果也较差,且当清洗室内的清洗液深度较大时难以对清洗后的镜片进行拿取,降低了装置的使用便捷性。When existing cleaning devices clean optical lenses, they generally place the lenses directly into the cleaning chamber for cleaning. Since most of the liquid in the cleaning chamber is in a static state, its own fluidity is poor, resulting in a poor cleaning effect on the lenses. Poor, and when the depth of the cleaning fluid in the cleaning chamber is large, it is difficult to take out the cleaned lenses, which reduces the convenience of use of the device.

实用新型内容Utility model content

本实用新型的目的在于提供一种摄像头模组用光学镜片加工的清洗装置,以解决上述背景技术提出的目前市场上现有的清洗装置在对光学镜片进行清洗时,一般是直接将镜片放置到清洗室内进行清理,由于清洗室内液体多为静置状,其自身流动性较差,导致对镜片的清理效果也较差,且当清洗室内的清洗液深度较大时难以对清洗后的镜片进行拿取的问题。The purpose of this utility model is to provide a cleaning device for processing optical lenses used in camera modules to solve the above-mentioned problem in the background technology. When cleaning optical lenses, the existing cleaning devices currently on the market generally place the lenses directly on Cleaning is carried out in the cleaning room. Since most of the liquid in the cleaning room is in a static state and has poor fluidity, the cleaning effect on the lenses is also poor. Moreover, when the depth of the cleaning fluid in the cleaning room is large, it is difficult to clean the lenses after cleaning. Access problem.

为实现上述目的,本实用新型提供如下技术方案:一种摄像头模组用光学镜片加工的清洗装置,包括用于清洗镜片的清洗室,所述清洗室的内部设置有滤水板,且滤水板的上方设置有滤筒,并且滤筒转动安装在滤水板的上方,镜片通过滤筒可放置到滤水板的上方,滤筒的内侧固定有刷块,所述滤水板的下方设置有承托块,且承托块固定在清洗室的内部为滤水板提供支撑,所述滤水板的中部贯穿有活动轴,且活动轴的外侧固定有连接板,活动轴在旋转时通过连接板带动滤筒进行旋转,配合刷块对镜片进行清洗,所述活动轴的下方设置有输出轴,且活动轴通过可拆卸机构和输出轴相连接,输出轴的下端连接有电机,控制输出轴的旋转。In order to achieve the above purpose, the present utility model provides the following technical solution: a cleaning device for processing optical lenses for camera modules, including a cleaning chamber for cleaning the lenses. A water filter plate is provided inside the cleaning chamber, and the water filter is A filter cartridge is provided above the plate, and the filter cartridge is rotated and installed above the water filter plate. The lens can be placed above the water filter plate through the filter cartridge. A brush block is fixed on the inside of the filter cartridge, and is provided below the water filter plate. There is a supporting block, and the supporting block is fixed inside the cleaning chamber to provide support for the water filter plate. A movable shaft runs through the middle of the water filter plate, and a connecting plate is fixed on the outside of the movable shaft. The movable shaft passes through when rotating. The connecting plate drives the filter cartridge to rotate, and cooperates with the brush block to clean the lens. An output shaft is provided below the movable shaft, and the movable shaft is connected to the output shaft through a detachable mechanism. A motor is connected to the lower end of the output shaft to control the output. rotation of the shaft.

进一步优化本技术方案,所述清洗室的内部安装有超声波发射器,用于发射声波对镜片表面进行清理,增加装置的清洗方式。To further optimize this technical solution, an ultrasonic transmitter is installed inside the cleaning chamber, which is used to emit sound waves to clean the lens surface and increase the cleaning method of the device.

进一步优化本技术方案,所述滤水板的俯视截面呈矩形结构设计,且滤水板和清洗室之间构成上下滑动结构。To further optimize this technical solution, the water filter plate has a rectangular structure design in its top view, and an up and down sliding structure is formed between the water filter plate and the cleaning chamber.

进一步优化本技术方案,所述可拆卸机构包括连接头、限位块、限位槽、第二弹簧、牵引绳和控制块;To further optimize this technical solution, the detachable mechanism includes a connecting head, a limit block, a limit groove, a second spring, a traction rope and a control block;

连接头,固定在活动轴的下端,且连接头的俯视截面呈矩形结构设计,且连接头和输出轴的上端构成凹凸配合结构;The connector is fixed on the lower end of the movable shaft, and the top view cross-section of the connector is designed as a rectangular structure, and the connector and the upper end of the output shaft form a concave and convex matching structure;

限位块,设置在连接头的内部,和连接头相互垂直设置;The limit block is arranged inside the connector and is arranged perpendicularly to the connector;

限位槽,开设输出轴的内部,且限位槽和限位块之间构成卡合结构;The limit groove is opened inside the output shaft, and an engaging structure is formed between the limit groove and the limit block;

第二弹簧,设置在限位块的内端为限位块提供推力;The second spring is arranged at the inner end of the limit block to provide thrust for the limit block;

牵引绳,固定在限位块的内端控制限位块的移动;The traction rope is fixed on the inner end of the limit block to control the movement of the limit block;

控制块,设置在活动轴的上端,且控制块通过牵引绳和限位块相连接,后续可拉动控制块移动,对限位块和限位槽的连接进行控制。The control block is arranged at the upper end of the movable shaft, and the control block is connected to the limit block through a traction rope. The control block can be pulled to move subsequently to control the connection between the limit block and the limit groove.

进一步优化本技术方案,所述滤水板的下方设置有顶杆,且顶杆的下端位于清洗室的内部和清洗室之间构成上下滑动结构,并且顶杆的下方设置有往复推送机构,控制顶杆的移动。To further optimize this technical solution, a push rod is provided below the water filter plate, and the lower end of the push rod is located between the interior of the cleaning chamber and the cleaning chamber to form an up and down sliding structure, and a reciprocating push mechanism is provided below the push rod to control Movement of the ram.

进一步优化本技术方案,所述往复推送机构包括第一弹簧、顶块和活动盘;To further optimize this technical solution, the reciprocating pushing mechanism includes a first spring, a top block and a movable disk;

第一弹簧,设置在顶杆的下方为顶杆提供复位下推力;The first spring is arranged below the ejector rod to provide reset and downward thrust for the ejector rod;

顶块,设置在顶杆的下方,且顶块的侧视截面呈倾斜状结构设计;The top block is arranged below the top rod, and the side cross-section of the top block is an inclined structure design;

活动盘,固定在顶块的下方,且活动盘固定在输出轴的外侧随输出轴的旋转而旋转,通过活动盘的旋转可带动顶块进行移动,从而间歇的推动顶杆向上移动。The movable plate is fixed below the top block, and the movable plate is fixed on the outside of the output shaft and rotates with the rotation of the output shaft. The rotation of the movable plate can drive the top block to move, thereby intermittently pushing the top rod to move upward.

与现有技术相比,本实用新型的有益效果是:Compared with the existing technology, the beneficial effects of this utility model are:

(1)该摄像头模组用光学镜片加工的清洗装置设置有可旋转的滤筒和拆卸的滤水板,可将待进行清洗的镜片通过滤水板放置到清洗室内进行清洗,在清洗时通过滤筒的旋转配合刷块可对清洗液进行搅拌,增加清洗液的流动性,使其能起到更好的清洁效果,同时后续可将滤水板从清洗室内取出,方便将滤水板上的镜片进行拿取,提高其使用便捷性;(1) The cleaning device for optical lens processing of the camera module is equipped with a rotatable filter cartridge and a detachable water filter plate. The lens to be cleaned can be placed in the cleaning room through the water filter plate for cleaning. During cleaning, pass The rotation of the filter cartridge and the brush block can stir the cleaning liquid and increase the fluidity of the cleaning liquid, so that it can achieve better cleaning effect. At the same time, the water filter plate can be taken out from the cleaning chamber to facilitate the removal of the water filter plate. The lens can be picked up to improve its convenience of use;

(2)该摄像头模组用光学镜片加工的清洗装置设置有顶杆,在清洗时通过顶杆的上下移动可将镜片顶起,使其能在清洗室内进行一定的翻转,从而使镜片表面能得到均匀充分的清洗,提高装置的清洗效果。(2) The cleaning device for processing optical lenses of the camera module is equipped with a ejector rod. During cleaning, the lens can be lifted up by moving the ejector rod up and down, so that it can be turned over in the cleaning room to a certain extent, so that the surface of the lens can Get even and sufficient cleaning and improve the cleaning effect of the device.

附图说明Description of the drawings

图1为本实用新型主剖结构示意图;Figure 1 is a schematic diagram of the main cross-sectional structure of the utility model;

图2为本实用新型滤筒俯视结构示意图;Figure 2 is a schematic structural diagram of the filter cartridge of the utility model from above;

图3为本实用新型顶块俯视结构示意图;Figure 3 is a schematic structural diagram of the top block of the present utility model;

图4为本实用新型顶块侧视结构示意图;Figure 4 is a schematic side structural diagram of the top block of the present utility model;

图5为本实用新型图1中a处放大结构示意图;Figure 5 is an enlarged structural schematic diagram of position a in Figure 1 of the present utility model;

图6为本实用新型连接头俯剖结构示意图。Figure 6 is a schematic cross-sectional view of the connector of the present utility model.

图中:1、清洗室;2、滤水板;3、滤筒;4、刷块;5、承托块;6、超声波发射器;7、活动轴;8、连接板;9、输出轴;10、电机;11、顶杆;12、第一弹簧;13、顶块;14、活动盘;15、连接头;16、限位块;17、限位槽;18、第二弹簧;19、牵引绳;20、控制块。In the picture: 1. Cleaning room; 2. Water filter plate; 3. Filter cartridge; 4. Brush block; 5. Supporting block; 6. Ultrasonic transmitter; 7. Movable shaft; 8. Connecting plate; 9. Output shaft ; 10. Motor; 11. Push rod; 12. First spring; 13. Push block; 14. Movable plate; 15. Connector; 16. Limit block; 17. Limit slot; 18. Second spring; 19 , traction rope; 20. control block.

具体实施方式Detailed ways

下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only part of the embodiments of the present utility model, not all implementations. example. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present utility model.

请参阅图1-6,本实用新型提供一种技术方案:一种摄像头模组用光学镜片加工的清洗装置,包括用于清洗镜片的清洗室1,清洗室1的内部设置有滤水板2,且滤水板2的上方设置有滤筒3,并且滤筒3转动安装在滤水板2的上方,镜片通过滤筒3可放置到滤水板2的上方,滤筒3的内侧固定有刷块4,滤水板2的下方设置有承托块5,且承托块5固定在清洗室1的内部为滤水板2提供支撑,滤水板2的中部贯穿有活动轴7,且活动轴7的外侧固定有连接板8,活动轴7在旋转时通过连接板8带动滤筒3进行旋转,配合刷块4对镜片进行清洗,活动轴7的下方设置有输出轴9,且活动轴7通过可拆卸机构和输出轴9相连接,输出轴9的下端连接有电机10,控制输出轴9的旋转,清洗室1的内部安装有超声波发射器6,用于发射声波对镜片表面进行清理,增加装置的清洗方式,滤水板2的俯视截面呈矩形结构设计,且滤水板2和清洗室1之间构成上下滑动结构;Please refer to Figures 1-6. The present utility model provides a technical solution: a cleaning device for processing optical lenses for camera modules, including a cleaning chamber 1 for cleaning the lenses. A water filter plate 2 is provided inside the cleaning chamber 1. , and a filter cartridge 3 is provided above the water filter plate 2, and the filter cartridge 3 is rotated and installed above the water filter plate 2. The lens can be placed above the water filter plate 2 through the filter cartridge 3, and the inside of the filter cartridge 3 is fixed with The brush block 4 and the supporting block 5 are provided below the water filter plate 2, and the supporting block 5 is fixed inside the cleaning chamber 1 to provide support for the water filter plate 2. A movable shaft 7 runs through the middle of the water filter plate 2, and A connecting plate 8 is fixed on the outside of the movable shaft 7. When the movable shaft 7 rotates, it drives the filter cartridge 3 to rotate through the connecting plate 8, and cooperates with the brush block 4 to clean the lens. An output shaft 9 is provided below the movable shaft 7, and the movable shaft 7 is movable. The shaft 7 is connected to the output shaft 9 through a detachable mechanism. The lower end of the output shaft 9 is connected to a motor 10 to control the rotation of the output shaft 9. An ultrasonic transmitter 6 is installed inside the cleaning chamber 1 for emitting sound waves to clean the lens surface. Cleaning, increasing the cleaning method of the device, the water filter plate 2 has a rectangular structure design in its top view, and an up and down sliding structure is formed between the water filter plate 2 and the cleaning chamber 1;

使用时可在清洗室1内加入适量的清洗液,将待进行清洗的光学镜片放通过滤水板2放置到清洗室1内,清洗时可通过电机10带动输出轴9旋转,使输出轴9能带动活动轴7进行旋转,活动轴7通过连接板8带动滤筒3进行转动,配合刷块4带动清洗液进行流动,同时可对滤水板2上的镜片进行一定的拨动,方便对其进行清洗,同时可通过超声波发射器6在清洗室1内发射超声波,对镜片表面进行清理,增加装置对镜片的清理方式。During use, an appropriate amount of cleaning fluid can be added into the cleaning chamber 1, and the optical lens to be cleaned is placed through the water filter plate 2 and placed into the cleaning chamber 1. During cleaning, the output shaft 9 can be driven by the motor 10 to rotate, so that the output shaft 9 It can drive the movable shaft 7 to rotate. The movable shaft 7 drives the filter cartridge 3 to rotate through the connecting plate 8, and cooperates with the brush block 4 to drive the cleaning liquid to flow. At the same time, the lens on the water filter plate 2 can be moved to a certain extent to facilitate the cleaning. It performs cleaning, and at the same time, ultrasonic waves can be emitted in the cleaning chamber 1 through the ultrasonic transmitter 6 to clean the lens surface, thereby increasing the device's cleaning methods for the lenses.

可拆卸机构包括连接头15、限位块16、限位槽17、第二弹簧18、牵引绳19和控制块20,连接头15,固定在活动轴7的下端,且连接头15的俯视截面呈矩形结构设计,且连接头15和输出轴9的上端构成凹凸配合结构,限位块16,设置在连接头15的内部,和连接头15相互垂直设置,限位槽17,开设输出轴9的内部,且限位槽17和限位块16之间构成卡合结构,第二弹簧18,设置在限位块16的内端为限位块16提供推力,牵引绳19,固定在限位块16的内端控制限位块16的移动,控制块20,设置在活动轴7的上端,且控制块20通过牵引绳19和限位块16相连接,后续可拉动控制块20移动,对限位块16和限位槽17的连接进行控制;The detachable mechanism includes a connecting head 15, a limiting block 16, a limiting groove 17, a second spring 18, a traction rope 19 and a control block 20. The connecting head 15 is fixed on the lower end of the movable shaft 7, and the top view section of the connecting head 15 It is designed with a rectangular structure, and the upper end of the connector 15 and the output shaft 9 forms a concave-convex matching structure. The limiting block 16 is arranged inside the connector 15 and is arranged perpendicularly to the connector 15. The limiting groove 17 opens the output shaft 9 inside, and an engaging structure is formed between the limit groove 17 and the limit block 16. The second spring 18 is provided at the inner end of the limit block 16 to provide thrust for the limit block 16. The traction rope 19 is fixed on the limit block 16. The inner end of the block 16 controls the movement of the limit block 16. The control block 20 is arranged on the upper end of the movable shaft 7, and the control block 20 is connected to the limit block 16 through the traction rope 19. The control block 20 can be pulled to move subsequently. The connection between the limit block 16 and the limit slot 17 is controlled;

在清理完成后,可拉动控制块20,使控制块20通过牵引绳19拉动限位块16进行移动,解除限位块16和限位槽17的连接,然后即可拉动活动轴7,将连接头15从输出轴9上取出,同时带动滤水板2进行移动,将其从清洗室1内拉出,使镜片漏出,方便对其进行拿取。After the cleaning is completed, the control block 20 can be pulled, so that the control block 20 pulls the limit block 16 to move through the traction rope 19, and the connection between the limit block 16 and the limit groove 17 is released, and then the movable shaft 7 can be pulled to connect the The head 15 is taken out from the output shaft 9, and at the same time drives the water filter plate 2 to move, and pulls it out from the cleaning chamber 1, so that the lens leaks out, making it easier to take it.

滤水板2的下方设置有顶杆11,且顶杆11的下端位于清洗室1的内部和清洗室1之间构成上下滑动结构,并且顶杆11的下方设置有往复推送机构,控制顶杆11的移动,往复推送机构包括第一弹簧12、顶块13和活动盘14,第一弹簧12,设置在顶杆11的下方为顶杆11提供复位下推力,顶块13,设置在顶杆11的下方,且顶块13的侧视截面呈倾斜状结构设计,活动盘14,固定在顶块13的下方,且活动盘14固定在输出轴9的外侧随输出轴9的旋转而旋转,通过活动盘14的旋转可带动顶块13进行移动,从而间歇的推动顶杆11向上移动;A push rod 11 is provided below the water filter plate 2, and the lower end of the push rod 11 is located between the interior of the cleaning chamber 1 and the cleaning chamber 1 to form an up and down sliding structure, and a reciprocating push mechanism is provided below the push rod 11 to control the push rod. 11 moves, the reciprocating pushing mechanism includes a first spring 12, a push block 13 and a movable disk 14. The first spring 12 is arranged below the push rod 11 to provide a reset downward thrust for the push rod 11. The push block 13 is arranged on the push rod 11. 11, and the side cross-section of the top block 13 is designed with an inclined structure. The movable disk 14 is fixed below the top block 13, and the movable disk 14 is fixed on the outside of the output shaft 9 and rotates with the rotation of the output shaft 9. The rotation of the movable plate 14 can drive the top block 13 to move, thereby intermittently pushing the top rod 11 to move upward;

在进行清洗时,输出轴9的旋转可同步带动活动盘14进行旋转,活动盘14将带动顶块13进行移动,当顶块13移动到顶杆11的下方时将推动顶杆11向上移动,顶杆11和清洗室1的连接处可设置密封轴套进行密封,顶块13从顶杆11下方移开后顶杆11在第一弹簧12的作用下向下移动,通过活动盘14的连续旋转使顶杆11能进行往复的上下移动,可将镜片顶起将其进行翻转,使其表面能得到充分均匀的清洗。When cleaning, the rotation of the output shaft 9 can synchronously drive the movable plate 14 to rotate. The movable plate 14 will drive the top block 13 to move. When the top block 13 moves below the ejector rod 11, it will push the ejector rod 11 to move upward. The connection between the rod 11 and the cleaning chamber 1 can be provided with a sealing bushing for sealing. After the ejector block 13 is removed from the bottom of the ejector rod 11, the ejector rod 11 moves downward under the action of the first spring 12. Through the continuous rotation of the movable plate 14 The push rod 11 is allowed to move up and down reciprocally, and the lens can be lifted up and turned over so that its surface can be fully and evenly cleaned.

本说明书中未作详细描述的内容属于本领域专业技术人员公知的现有技术。Contents not described in detail in this specification belong to the prior art known to those skilled in the art.

尽管参照前述实施例对本实用新型进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions for some of the technical features. Within the spirit and principles of the present utility model, any modifications, equivalent substitutions, improvements, etc. shall be included in the protection scope of the present utility model.

Claims (6)

1. The cleaning device for processing the optical lens for the camera module comprises a cleaning chamber (1) for cleaning the lens;
the method is characterized in that: the inside of cleaning chamber (1) is provided with drainage board (2), and the top of drainage board (2) is provided with and strains a section of thick bamboo (3) to strain a section of thick bamboo (3) rotation and install the top at drainage board (2), the lens can be placed the top of drainage board (2) through straining a section of thick bamboo (3), the inboard of straining a section of thick bamboo (3) is fixed with brush piece (4), the below of drainage board (2) is provided with supporting shoe (5), and supporting shoe (5) are fixed in the inside of cleaning chamber (1) and provide support for drainage board (2), the middle part of drainage board (2) is run through and is had loose axle (7), and the outside of loose axle (7) is fixed with connecting plate (8), and loose axle (7) drive through connecting plate (8) and strain a section of thick bamboo (3) and rotate when rotatory, the cooperation brush piece (4) washs the lens, the below of loose axle (7) is provided with output shaft (9), and loose axle (7) are connected with through detachable mechanism and output shaft (9), and the lower extreme (10) of output shaft (9) motor are connected.
2. The cleaning device for optical lens processing for a camera module according to claim 1, wherein: an ultrasonic emitter (6) is arranged in the cleaning chamber (1) and is used for emitting sound waves to clean the surface of the lens.
3. The cleaning device for optical lens processing for a camera module according to claim 1, wherein: the overlook cross section of drainage board (2) is rectangular structural design, and constitutes the upper and lower sliding structure between drainage board (2) and cleaning chamber (1).
4. A cleaning device for optical lens processing for camera modules according to claim 1 or 3, characterized in that: the detachable mechanism comprises a connector (15), a limiting block (16), a limiting groove (17), a second spring (18), a traction rope (19) and a control block (20);
the connector (15) is fixed at the lower end of the movable shaft (7), the overlook section of the connector (15) is of a rectangular structure design, and the connector (15) and the upper end of the output shaft (9) form a concave-convex matching structure;
the limiting block (16) is arranged in the connector (15) and is perpendicular to the connector (15);
the limiting groove (17) is formed in the output shaft (9), and a clamping structure is formed between the limiting groove (17) and the limiting block (16);
a second spring (18) arranged at the inner end of the limiting block (16) and used for providing thrust for the limiting block (16);
the traction rope (19) is fixed at the inner end of the limiting block (16) to control the movement of the limiting block (16);
the control block (20) is arranged at the upper end of the movable shaft (7), and the control block (20) is connected with the limiting block (16) through the traction rope (19).
5. A cleaning device for optical lens processing for camera modules according to claim 1 or 3, characterized in that: the lower part of the water filtering plate (2) is provided with a push rod (11), the lower end of the push rod (11) is positioned in the cleaning chamber (1) and forms an up-down sliding structure with the cleaning chamber (1), and a reciprocating pushing mechanism is arranged below the push rod (11) to control the movement of the push rod (11).
6. The cleaning device for optical lens processing of a camera module according to claim 5, wherein: the reciprocating pushing mechanism comprises a first spring (12), a top block (13) and a movable disc (14);
the first spring (12) is arranged below the ejector rod (11) and provides reset downward thrust for the ejector rod (11);
the ejector block (13) is arranged below the ejector rod (11), and the side view cross section of the ejector block (13) is of an inclined structure design;
the movable disc (14) is fixed below the top block (13), and the movable disc (14) is fixed on the outer side of the output shaft (9) and rotates along with the rotation of the output shaft (9).
CN202321688240.6U 2023-06-30 2023-06-30 A cleaning device for optical lens processing of camera modules Expired - Fee Related CN220311171U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321688240.6U CN220311171U (en) 2023-06-30 2023-06-30 A cleaning device for optical lens processing of camera modules

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321688240.6U CN220311171U (en) 2023-06-30 2023-06-30 A cleaning device for optical lens processing of camera modules

Publications (1)

Publication Number Publication Date
CN220311171U true CN220311171U (en) 2024-01-09

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321688240.6U Expired - Fee Related CN220311171U (en) 2023-06-30 2023-06-30 A cleaning device for optical lens processing of camera modules

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Country Link
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