Rotating device for mounting lens of mobile equipment
By integrating the placement, gluing, lens bonding and glue curing processes of the mobile phone rear camera through a rotating platform and a drive motor, the installation accuracy problem caused by manual operation errors is solved, an efficient lens mounting process is achieved, and labor and site costs are reduced.
Patent Information
- Application Number
- CN202422947703.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-29
AI Technical Summary
During the mounting process of mobile phone rear cameras, manual operations are prone to errors, which affect installation accuracy and lead to a decrease in product yield. In addition, multiple operators are required to complete different processes separately, increasing labor costs.
A rotating device for mobile device lens mounting is designed. The four processes of mobile device placement, glue dispensing, lens bonding, and glue curing are integrated through a rotating platform and a drive motor. An in-position sensor is used to sense the device position and control the rotating platform to stop, integrating multiple processes into one.
It saves site space and labor costs, improves processing efficiency, and ensures installation accuracy and product yield.
Smart Images

Figure CN223411197U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mobile device processing, and in particular relates to a rotating device for mounting a lens of a mobile device. Background Art
[0002] During the production of mobile phones, the mounting process of the rear camera involves several steps. When assembling the rear camera onto the phone, manual glue application is required to align the rear camera with the mounting point of the phone and then mount it to the back of the phone. However, in the traditional manual production model, operators are prone to operational errors in several steps, affecting the installation accuracy of the rear camera and resulting in a decrease in product yield. Furthermore, the mounting of the rear camera requires multiple operators responsible for several different steps, increasing labor costs. Utility Model Content
[0003] The purpose of the present utility model is to overcome the shortcomings and deficiencies in the prior art and provide a rotating device for mounting lenses on mobile devices, which completes the four processes of placing the mobile device, dispensing glue on the mobile device, bonding the lens to the mobile device, and curing the glue during rotation, integrating the four different processes, saving site space and labor costs, and improving processing efficiency.
[0004] The utility model is realized through the following technical solutions:
[0005] A rotating device for mounting lenses on mobile devices comprises a rotating drive motor and a rotating platform, wherein the rotating drive motor is drivingly connected to the rotating platform; the rotating platform is arranged horizontally; a device carrier is provided on the rotating platform; the rotating drive motor drives the rotating platform to rotate or stop between 0 and 360 degrees around its center, and the rotating shaft of the rotating platform is arranged vertically; the rotation of the rotating platform causes the device carrier to rotate to a first angle, a second angle, a third angle, and a fourth angle in sequence, so that the rotating platform enters a placement area, a glue dispensing area corresponding to a glue dispensing mechanism, a lens mounting area corresponding to a mounting mechanism, and a curing area corresponding to a curing mechanism in sequence.
[0006] In the rotating device for mounting lenses on mobile devices provided by the utility model, the rotating platform is arranged horizontally, and the rotating drive motor drives the rotating platform to rotate or stop around its center between 0-360 degrees, so that the device mounted on the rotating platform can rotate between 0-360 degrees and can enter the placement area, glue dispensing area, lens mounting area and curing area in sequence, and complete the four processes of placement of the mobile device, glue dispensing of the mobile device, bonding of the lens and the mobile device, and glue curing during rotation, integrating the four different processes, saving site space and labor costs, and improving processing efficiency.
[0007] Furthermore, the rotary drive motor drives the rotary platform to rotate, causing the equipment carrier to rotate to a first angle, a second angle, a third angle, and a fourth angle in sequence, and to stop within the placement area, the glue dispensing area, the lens mounting area, and the curing area. The equipment carrier stops within the placement area, the glue dispensing area, the lens mounting area, and the curing area to facilitate processing.
[0008] Furthermore, the rotating device for mounting lenses on mobile devices also includes four in-position sensors, located in the placement area, glue dispensing area, lens mounting area, and curing area, respectively. The sensing areas of the in-position sensors are positioned toward the rotating platform. The in-position sensors are used to sense the position of the device carrier, and each of the four in-position sensors is electrically connected to a rotary drive motor. When the device carrier rotates into one of the placement area, glue dispensing area, lens mounting area, or curing area, the in-position sensors are electrically connected to the rotary drive motor, causing the rotary drive motor to stop, thereby stopping the rotating platform at its current angle to facilitate processing.
[0009] Furthermore, the device carrier is provided with a first through-hole; the rotating platform is provided with a second through-hole corresponding to the position of the first through-hole, the first through-hole being connected to the second through-hole; the rotating device further comprises four mounting posts, the four mounting posts being located on a side of the rotating platform facing away from the device carrier, and being respectively located in a placement area, a glue dispensing area, a lens mounting area, and a curing area; each in-position sensor is mounted on a mounting post, and the sensing area of the in-position sensor is disposed toward the rotating platform. The sensing areas of the four in-position sensors are disposed toward the rotating platform, and are respectively located in the placement area, the glue dispensing area, the lens mounting area, and the curing area. Since the device carrier is provided with the first through-hole and the rotating platform is provided with the second through-hole, when the device carrier enters one of the placement area, the glue dispensing area, the lens mounting area, or the curing area, the in-position sensor can sense through the first through-hole and the second through-hole that the device carrier has rotated into one of the placement area, the glue dispensing area, the lens mounting area, or the curing area. The in-position sensor is electrically connected to the rotation drive motor, causing the rotation drive motor to stop, thereby stopping the rotating platform at the current angle to facilitate processing.
[0010] Furthermore, the device support platforms are four in number and are evenly spaced around the center of the rotating platform. The four device support platforms are arranged on the rotating platform, allowing for simultaneous processing of four mobile devices, including placement of the mobile device, dispensing of glue, lamination of the lens to the mobile device, and curing of the glue.
[0011] Furthermore, the device carrying platform is provided with a limiting groove, which is used to limit the position of the mobile device and prevent it from shifting during the rotation process.
[0012] Furthermore, the rotating platform is disc-shaped; the output shaft of the rotating drive motor is vertically arranged and is connected to the center drive of the rotating platform.
[0013] Furthermore, the rotary drive motor drives the rotary platform to rotate, causing the device carrier to rotate on the rotary platform to a first angle of 0°, a second angle of 90°, a third angle of 180°, and a fourth angle of 270°. The device carrier rotates on the rotary platform to a first angle of 0°, a second angle of 90°, a third angle of 180°, and a fourth angle of 270°, and can sequentially enter the placement area, the dispensing area, the lens mounting area, and the curing area, with processing performed once every 90° rotation.
[0014] In order to better understand and implement the present invention, the present invention is described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the structure of a rotating device used for lens mounting on mobile devices.
[0016] Figure 2 This is a structural diagram of the rotating device used for lens mounting on mobile devices from another angle.
[0017] Figure 3 This is a schematic diagram of a rotating device used for mounting lenses on mobile devices. DETAILED DESCRIPTION
[0018] The following is a further detailed description of the embodiments of the present invention in conjunction with the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely for the purpose of explaining the embodiments of the present invention, and are not intended to limit the embodiments of the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions of the embodiments of the present invention, rather than all structures.
[0019] Furthermore, the terms "first," "second," "third," etc., in the specification and claims are used solely for descriptive purposes to distinguish between identical technical features. They are not to be construed as indicating or implying relative importance, or as implicitly specifying the number of technical features, nor do they necessarily describe a sequential or chronological order. The terms are interchangeable where appropriate. Thus, a feature specified as "first" or "second" may explicitly or implicitly include at least one of those features.
[0020] Similarly, the terms "fixed" and "connected" used in the specification and claims should not be construed as limited to direct connections. Thus, the expression "device A is connected to device B" should not be limited to devices or systems in which device A is directly connected to device B. Rather, it means that a path exists between device A and device B, which may include other devices or tools.
[0021] Example 1
[0022] This embodiment provides a rotating device for mounting a lens on a mobile device. Figure 1 This is a schematic diagram of the structure of a rotating device for mounting lenses on mobile devices. Figure 2 This is a structural diagram of another angle of the rotating device used for lens mounting on mobile devices. Figure 3 This is a schematic diagram of the rotation device used for mounting the lens on a mobile device. Figure 1-3 The rotating device for mounting lenses on mobile devices includes a rotating drive motor 1 and a rotating platform 2, the rotating drive motor 1 is driven and connected to the rotating platform 2; the rotating platform 2 is horizontally arranged; an equipment carrier 3 is arranged on the rotating platform 2; the rotating drive motor 1 drives the rotating platform 2 to rotate or stop between 0-360 degrees around its center, and the rotating axis of the rotating platform 2 is vertically arranged; the rotating platform 2 rotates to rotate the equipment carrier 3 to a first angle, a second angle, a third angle and a fourth angle in sequence, so that the rotating platform 2 enters the placement area 6, the dispensing area 7 for the dispensing mechanism, the lens mounting area 8 corresponding to the mounting mechanism and the curing area 9 corresponding to the curing mechanism in sequence.
[0023] In the rotating device for mounting lenses on mobile devices provided in this embodiment, the rotating platform 2 is arranged horizontally, and the rotating drive motor 1 drives the rotating platform 2 to rotate or stop around its center between 0-360 degrees, so that the device mounted on the rotating platform 2 can rotate between 0-360 degrees and can enter the placement area 6, the glue dispensing area 7, the lens mounting area 8 and the curing area 9 in sequence, and complete the four processes of placing the mobile device, glue dispensing the mobile device, bonding the lens to the mobile device, and glue curing during rotation. The four different processes are integrated, saving site space and labor costs, and improving processing efficiency.
[0024] In this embodiment, the rotary drive motor 1 drives the rotary platform 2 to rotate, causing the equipment carrier 3 to rotate to the first angle, the second angle, the third angle, and the fourth angle in sequence, and to stop within the placement area 6, the glue dispensing area 7, the lens mounting area 8, and the curing area 9. The equipment carrier 3 stops after rotating into the placement area 6, the glue dispensing area 7, the lens mounting area 8, and the curing area 9 to facilitate processing.
[0025] See also Figure 1 In this embodiment, the rotating platform 2 is disc-shaped; the output shaft of the rotary drive motor 1 is vertically arranged and connected to the center drive of the rotating platform 2. In another embodiment, the rotating platform 2 is an endless chain, and 1-4 equipment supporting platforms 3 are arranged on the endless chain.
[0026] See also Figure 1-2In this embodiment, the rotating device for mounting lenses on mobile devices further includes four in-position sensors 4, which are located in the placement area 6, the glue dispensing area 7, the lens mounting area 8, and the curing area 9, respectively. The sensing areas of the in-position sensors 4 are disposed toward the rotating platform 2. The in-position sensors 4 are used to sense the device carrier 3. Each of the four in-position sensors 4 is electrically connected to the rotary drive motor 1. When the device carrier 3 rotates into one of the placement area 6, the glue dispensing area 7, the lens mounting area 8, or the curing area 9, the in-position sensors 4 are electrically connected to the rotary drive motor 1, causing the rotary drive motor 1 to stop, thereby stopping the rotating platform 2 at the current angle to facilitate processing.
[0027] See also Figure 1-2 In this embodiment, a first through hole 31 is formed through the device carrier 3; a second through hole 21 corresponding to the position of the first through hole 31 is formed through the rotating platform 2, and the first through hole 31 is connected to the second through hole 21; the rotating device also includes four mounting columns 10, which are located on the side of the rotating platform 2 away from the device carrier 3, and are respectively located in the placement area 6, the glue dispensing area 7, the lens mounting area 8 and the curing area 9; each in-position sensor 4 is respectively installed on a mounting column 10, and the sensing area of the in-position sensor 4 is set toward the rotating platform 2. The sensing areas of the four in-position sensors 4 are set toward the rotating platform 2 and are respectively located in the placement area 6, the glue dispensing area 7, the lens mounting area 8, and the curing area 9. Since the equipment carrier 3 is provided with a first through hole 31 and the rotating platform 2 is provided with a second through hole 21, when the equipment carrier 3 enters one of the placement area 6, the glue dispensing area 7, the lens mounting area 8, or the curing area 9, the in-position sensor 4 can sense through the first through hole 31 and the second through hole 21 that the equipment carrier 3 rotates into one of the placement area 6, the glue dispensing area 7, the lens mounting area 8, or the curing area 9. The in-position sensor 4 is electrically connected to the rotary drive motor 1, causing the rotary drive motor 1 to stop moving and the rotating platform 2 to stop at the current angle for easy processing. In one embodiment, the first through hole 31 and the second through hole 21 are vertically arranged, and the first through hole 31 and the second through hole 21 are coaxial.
[0028] In another embodiment, four in-position sensors 4 are respectively installed in the placement area 6, the glue dispensing area 7, the lens mounting area 8 or the curing area 9, and the sensing area of the in-position sensor 4 faces the side of the rotating platform 2 where the equipment carrier 3 is provided, that is, the in-position sensor 4 is located above the rotating platform 2.
[0029] See also Figure 1-2In this embodiment, there are four device carriers 3, evenly spaced around the center of the rotating platform 2. The four device carriers 3 are arranged on the rotating platform 2, allowing four mobile devices to be processed simultaneously, continuously performing the four steps of placing the mobile device, dispensing glue on the mobile device, laminating the lens to the mobile device, and curing the glue.
[0030] See also Figure 1-2 In this embodiment, the device carrier 3 is provided with a limiting groove 5. The limiting groove 5 is used to limit the mobile device and prevent it from shifting during rotation. In one embodiment, the shape of the limiting groove 5 is adapted to the shape of the mobile device to limit the mobile device; the device carrier 3 is provided with a hand grip groove. The limiting groove 5 is detachably mounted on the device carrier 3 for easy replacement and maintenance. Device carriers 3 of different sizes can be replaced to accommodate mobile devices of different sizes.
[0031] In this embodiment, the rotary drive motor 1 drives the rotating platform 2, causing the device carrier 3 to rotate on the rotating platform 2 to a first angle of 0°, a second angle of 90°, a third angle of 180°, and a fourth angle of 270°. The device carrier 3 rotates on the rotating platform 2 to a first angle of 0°, a second angle of 90°, a third angle of 180°, and a fourth angle of 270°, sequentially entering the placement area 6, the glue dispensing area 7, the lens mounting area 8, and the curing area 9. Processing is performed every 90°. Four device carriers 3 are arranged around the center of the disc-shaped rotating platform 2, with each two device carriers 3 separated by 90°.
[0032] See also Figure 1-3, select the 0° position on the rotating platform 2, and determine the 90°, 180° and 270° positions in turn, and set the equipment carrier 3 at these four positions. Taking one of the equipment carriers 3 as an example, when the rotating platform 2 rotates to the first angle of 0°, the equipment carrier 3 enters the placement area 6, the in-position sensor 4 senses that the equipment carrier 3 enters the placement area 6, and transmits the sensing signal to the rotating motor 1. The rotating motor 1 controls the rotating platform 2 to stop, and the operator can place the mobile device on the equipment carrier 3; the rotating platform 2 continues to rotate to the second angle of 90°, the equipment carrier 3 enters the dispensing area 7, the in-position sensor 4 senses that the equipment carrier 3 enters the placement area 6, and transmits the sensing signal to the rotating motor 1. The rotating motor 1 controls the rotating platform 2 to stop and perform the dispensing operation; the rotating platform 2 continues to rotate to the third angle of 180°, the equipment carrier 3 enters the lens mounting area 8, and the in-position sensor 4 senses that the equipment carrier 3 enters the lens mounting area In zone 8, the sensing signal is transmitted to rotating motor 1, which controls rotating platform 2 to stop and perform the lens mounting operation. Rotating platform 2 continues to rotate to the fourth angle of 270°, and the device carrier 3 enters curing zone 9. In-position sensor 4 senses that the device carrier 3 has entered curing zone 9 and transmits the sensing signal to rotating motor 1, which controls rotating platform 2 to stop and perform the glue curing operation. Rotating platform 2 rotates again to the first angle of 0°, and the device carrier 3 enters placement zone 6. In-position sensor 4 senses that the device carrier 3 has entered placement zone 6 and transmits the sensing signal to rotating motor 1, which controls rotating platform 2 to stop. The operator can remove the mounted mobile device and place another mobile device to be mounted on device carrier 3, thus continuing the cycle. The rotating device for mobile device lens mounting completes the four processes of mobile device placement, mobile device glue dispensing, lens and mobile device bonding, and glue curing during rotation. This integration of four different processes saves site space and labor costs and improves processing efficiency. Among them, the dispensing area 7, the lens mounting area 8 and the curing area 9 are respectively provided with a dispensing mechanism, a mounting mechanism and a curing mechanism for processing. The residence time in the placement area 6, the dispensing area 7, the lens mounting area 8 and the curing area 9 can be adjusted according to the actual processing conditions.
[0033] The present invention is not limited to the above-mentioned embodiments. If various changes or modifications to the present invention do not depart from the spirit and scope of the present invention, and if these changes and modifications fall within the scope of the claims and equivalent technologies of the present invention, the present invention is also intended to include these changes and modifications.
Claims
1. A rotating device for mounting a lens on a mobile device, characterized by: It includes a rotary drive motor and a rotary platform, wherein the rotary drive motor is drivingly connected to the rotary platform; the rotary platform is horizontally arranged; The rotating platform is provided with an equipment carrying platform; The rotary drive motor drives the rotary platform to rotate between 0 and 360 degrees around its center or to stop, and the rotary axis of the rotary platform is vertically arranged; The rotation of the rotating platform causes the equipment carrier to rotate to the first angle, the second angle, the third angle and the fourth angle in sequence, so that the rotating platform enters the placement area, the dispensing area corresponding to the dispensing mechanism, the lens mounting area corresponding to the mounting mechanism and the curing area corresponding to the curing mechanism in sequence.
2. The rotating device for mounting a lens on a mobile device according to claim 1, characterized in that: The rotary drive motor drives the rotary platform to rotate, so that the equipment carrier rotates to the first angle, the second angle, the third angle and the fourth angle in sequence, and stops in the placement area, the dispensing area, the lens mounting area and the curing area.
3. The rotating device for mounting a lens on a mobile device according to claim 2, wherein: It also includes 4 in-position sensors, which are respectively located in the placement area, glue dispensing area, lens mounting area and curing area, and the sensing areas of the in-position sensors are set toward the rotating platform; the in-position sensors are used to sense the equipment carrier platform, and the 4 in-position sensors are all electrically connected to the rotating drive motor.
4. The rotating device for mounting a lens on a mobile device according to claim 3, wherein: A first through hole is formed through the equipment carrying platform; a second through hole is formed through the rotating platform corresponding to the position of the first through hole, and the first through hole is connected to the second through hole; The rotating device further comprises four mounting posts, which are located on a side of the rotating platform facing away from the equipment carrier, and are respectively located in the placement area, the dispensing area, the lens mounting area and the curing area; Each on-position sensor is respectively installed on a mounting post, and the sensing area of the on-position sensor is arranged toward the rotating platform.
5. The rotating device for mounting a lens on a mobile device according to any one of claims 1 to 4, characterized in that: The number of the equipment carrying platforms is 4, and the 4 equipment carrying platforms are evenly spaced around the center of the rotating platform.
6. The rotating device for mounting a lens on a mobile device according to claim 5, characterized in that: The equipment carrying platform is provided with a limiting groove.
7. The rotating device for mounting a lens on a mobile device according to claim 6, characterized in that: The rotating platform is disc-shaped; the output shaft of the rotating drive motor is vertically arranged and is connected to the center drive of the rotating platform.
8. The rotating device for mounting a lens on a mobile device according to claim 5, wherein: The rotary drive motor drives the rotary platform to rotate, so that the equipment carrier platform rotates on the rotary platform to a first angle of 0°, a second angle of 90°, a third angle of 180° and a fourth angle of 270° in sequence.