Lens Module

The lens module design addresses heat dissipation and accuracy issues by incorporating a flexible connection plate and heat dissipation features, enhancing durability and imaging quality through improved heat management and reduced moving parts.

JP7801073B2Active Publication Date: 2026-01-16CHANGZHOU RAYTECH OPTRONICS CO LTD
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Patent Information

Application Number
JP2024503510
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-09-19
Publication Date
2026-01-16
Estimated Expiration
2043-09-19

AI Technical Summary

Technical Problem

Conventional lens modules suffer from slow heat dissipation, leading to increased temperature and reduced performance, and have suspension wire-type OIS assemblies with short service life and inaccurate AF and OIS adjustments.

Method used

A lens module design featuring a support base, lens barrel, and an adjustment mechanism with an AF assembly, OIS assembly, and a flexible connection plate made of titanium-copper alloy, which includes heat dissipation holes and flexible connection structures to improve heat dissipation and stability, reducing moving parts for enhanced durability and accuracy.

Benefits of technology

The design enhances heat dissipation, improves AF and OIS control accuracy, and extends the service life of the lens module by using a flexible connection plate for better support and heat management, reducing image noise and ensuring high imaging quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a lens module. [Solution] The lens module comprises a support base, a lens barrel, and an adjustment mechanism, the lens barrel is suspended inside the support base, the adjustment mechanism comprises an AF assembly, an OIS assembly, a dome assembly, and a flexible connecting plate provided below the support base, the OIS assembly comprises an OIS circuit board provided between the support base and the flexible connecting plate, a sensor is provided in a central region of the OIS circuit board, and the flexible connecting plate has a first connecting portion connected to the sensor. The lens module of the present invention makes the overall structure of the lens module more compact, reduces the number of moving parts, and improves the service life and control accuracy of the lens module. In addition, the flexible connecting plate is provided corresponding to the sensor, thereby improving the heat dissipation effect of the sensor and increasing the strength of the overall elastic structure of the lens module, thereby improving the durability of the lens module and extending the service life of the lens module.
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Description

[Technical Field]

[0001] The present invention relates to the field of optical imaging technology, and in particular to a lens driving module. [Background technology]

[0002] With the development of imaging technology, lens modules with autofocus (AF) and optical image stabilizer (OIS) functions are widely used in electronic devices such as tablet PCs and smartphones. Lens modules generate a certain amount of heat during operation. Conventional technologies typically use metal housings to dissipate heat, but the slow heat dissipation rate results in an increase in the lens module's temperature and a decline in performance. Furthermore, conventional suspension wire-type OIS assemblies have a short service life, and multiple components attached to the moving parts directly affect the adjustment accuracy of the lens module's AF and OIS.

[0003] Therefore, it is necessary to provide a lens module that has a high heat dissipation effect, good adjustment accuracy, and a long service life. Summary of the Invention [Problem to be solved by the invention]

[0004] An object of the present invention is to provide a lens module that has a high heat dissipation effect, good AF and OIS control accuracy, and a long service life. [Means for solving the problem]

[0005] The technical solution of the present invention is as follows:

[0006] A lens module comprising a support base, a lens barrel, and an adjustment mechanism, the lens barrel being suspended inside the support base, the adjustment mechanism comprising an AF assembly, an OIS assembly, a dome assembly, and a flexible connection plate provided below the support base, the OIS assembly comprising an OIS circuit board provided between the support base and the flexible connection plate, a sensor being provided in a central region of the OIS circuit board, and the flexible connection plate comprising a first connection portion connected to the sensor.

[0007] Preferably, the first connection portion has a heat dissipation hole, a first flexible connection structure is provided within the heat dissipation hole, and the flexible connection plate further has a first bezel provided on the outer periphery of the first connection portion, and a second connection portion provided between the first bezel and the first connection portion.

[0008] Preferably, the OIS circuit board is a planar FPC, and the flexible connecting board is made of a titanium-copper alloy material.

[0009] Preferably, the AF assembly includes an AF coil, AF magnetic steel, and an AF circuit board, the OIS assembly further includes an OIS magnetic steel and an OIS coil, the support base is provided with a mounting groove, the AF magnetic steel, OIS magnetic steel, and OIS coil are provided in the mounting groove from top to bottom, the AF coil is wound around the outer periphery of the lens barrel, and the AF circuit board is provided on the support base.

[0010] Preferably, the dome assembly includes a first dome and a second dome provided on the upper and lower surfaces of the lens barrel, respectively, the first dome and the second dome are both connected to the lens barrel and the support base, and the dome assembly is connected to the AF circuit board, the OIS assembly, and the support base, respectively.

[0011] Preferably, the AF magnetic steel is arranged between the lens barrel and the support base, the AF magnetic steel is uniformly distributed along the circumferential direction of the lens barrel, the lens barrel has a first connection ring arranged in the middle region and cantilevers distributed on the outer wall of the first connection ring along the circumferential direction, the cantilevers are arranged corresponding to the four corners of the support base, and a second flexible connection structure is provided between the cantilevers and the support base.

[0012] Preferably, a retraction structure is provided in a region of the cantilever adjacent to the support base.

[0013] Preferably, the OIS magnetic steel and the OIS coil are each installed corresponding to the AF magnetic steel, an OIS bracket is installed within a planar area surrounded by the OIS coil, the OIS bracket is provided on the OIS circuit board, and the OIS bracket includes a second connection ring installed along the circumferential direction of the sensor, a first contact base connected to the second connection ring and installed corresponding to the OIS coil, and a second contact base extending from the second connection ring to an area corresponding to the bottom of the support base.

[0014] Preferably, the first dome and the second dome have the same structure and include a third connection ring connected to the first connection ring, a first connection arm connected between the first connection ring and the support base, and a second connection arm connected between the first connection ring and the cantilever.

[0015] Preferably, the lens module further includes a housing, the housing including a first housing provided outside the support base, and a second housing provided below the first housing and for accommodating the OIS circuit board and the flexible connecting plate, and a gasket is provided between the second housing and an edge region of the flexible connecting plate. [Effects of the Invention]

[0016] The beneficial effects of the present invention are as follows:

[0017] The lens module of the present invention comprises the flexible connecting plate, which is arranged below the OIS circuit board and connected to a sensor arranged on the OIS circuit board. In use, the flexible connecting plate has elasticity and provides support for the components arranged on it, as well as providing a restoring force for adjusting the lens barrel. By using the flexible connecting plate instead of suspension wire components, the structure of the entire lens module is made more compact, the installation of moving parts is reduced, and the service life and control accuracy of the lens module are improved. In addition, the flexible connecting plate is arranged corresponding to the sensor, which improves the heat dissipation effect of the sensor, increases the strength of the overall elastic structure of the lens module, improves the durability of the lens module, and extends the service life of the lens module. [Brief explanation of the drawings]

[0018] [Figure 1] 1 is a schematic diagram illustrating a configuration of a lens module according to the present invention. [Figure 2] FIG. 2 is a cross-sectional view taken along the line AA in FIG. [Figure 3] FIG. 2 is an exploded perspective view of the lens module of the present invention. [Figure 4] 10A and 10B are schematic diagrams showing the assembly of the flexible connection board. [Figure 5] FIG. 2 is a schematic diagram showing the configuration of a first dome. [Figure 6] FIG. 6 is an enlarged view of a portion A in FIG. 5. [Figure 7] FIG. 2 is a schematic diagram showing a configuration related to an OIS bracket. DETAILED DESCRIPTION OF THE INVENTION

[0019] The present invention will be further described below with reference to the drawings and embodiments.

[0020] As shown in Figures 1 to 3, the lens module of the present invention comprises a support base 1, a lens barrel 2, and an adjustment mechanism, the lens barrel 2 is suspended inside the support base 1, the adjustment mechanism comprises an AF assembly 3, an OIS assembly 4, a dome assembly 5, and a flexible connection plate 6 provided below the support base 1, the OIS assembly 4 comprises an OIS circuit board 41 provided between the support base 1 and the flexible connection plate 6, a sensor 7 is provided in the central region of the OIS circuit board 41, and the flexible connection plate 6 comprises a first connection portion 61 connected to the sensor 7.

[0021] In this embodiment, the sensor 7 is preferably a sensor with model number IMX989.

[0022] The lens module of the present invention includes the flexible connecting plate 6, which is disposed below the OIS circuit board 41 and connected to the sensor 7 disposed on the OIS circuit board 41. During use, the flexible connecting plate 6 is elastic and provides support for the components disposed thereon and also provides restoring force for adjustment of the lens barrel 2. Using the flexible connecting plate 6 instead of suspension wire components makes the overall structure of the lens module more compact, reduces the number of moving parts, and improves the service life and control accuracy of the lens module. Furthermore, the flexible connecting plate 6 is disposed corresponding to the sensor 7, which improves the heat dissipation effect of the sensor 7, increases the strength of the overall elastic structure of the lens module, and improves the durability and service life of the lens module. The improved heat dissipation effect reduces interference with shooting effects caused by temperature rise of the lens module, reduces image noise, improves image clarity, and ensures imaging quality.

[0023] As shown in Figure 4, the first connection portion 61 has a heat dissipation hole 611, and a first flexible connection structure is provided within the heat dissipation hole 611.The flexible connection plate 6 further has a first bezel 62 provided on the outer periphery of the first connection portion 61, and a second connection portion 63 provided between the first bezel 62 and the first connection portion 61.

[0024] The first bezel 62 is provided corresponding to an edge region of the OIS circuit board 41. In another embodiment, the flexible connecting plate 6 further includes a reinforcing frame provided between the first bezel 62 and the first connecting portion 61 and a third connecting portion for connecting the reinforcing frames, and the reinforcing frame is provided to surround the first connecting portion 61 in the circumferential direction. The provision of the reinforcing frame improves the support performance of the flexible connecting plate 6 and improves the overall stability of the lens module.

[0025] Specifically, the OIS circuit board 41 is provided with a first mounting hole for mounting the sensor 7, and the first connection part 61 is provided corresponding to the first mounting hole, i.e., the sensor 7 is projected onto the first connection part 61. Preferably, the first flexible connection structure is formed by a heat dissipation gel filled in the heat dissipation hole 611, and the first flexible connection structure not only performs a heat dissipation function but also has a damping effect, thereby further improving the stability and control accuracy of the lens module.

[0026] Preferably, in this embodiment, the OIS circuit board 41 is a planar FPC (Flexible Printed Circuit board) to reduce the thickness of the OIS circuit board 41. Preferably, the flexible connecting plate 6 is made of a titanium-copper alloy material, which has high strength, high elasticity, heat resistance, excellent fatigue resistance, and good bending performance, which improves the strength, recovery performance, and fatigue resistance of the entire lens module, and further ensures the stability of the automatic adjustment function of the lens module.

[0027] 2 and 3, the AF assembly 3 includes an AF coil 31, an AF magnetic steel piece 32, and an AF circuit board 33, and the OIS assembly 4 further includes an OIS magnetic steel piece 42 and an OIS coil 43. The support base 1 is provided with a mounting groove that opens inward, the AF magnetic steel piece 32, the OIS magnetic steel piece 42, and the OIS coil 43 are installed in the mounting groove from top to bottom, the AF coil 31 is wound around the outer periphery of the lens barrel 2, and the AF circuit board 33 is installed on the support base 1. This installation makes full use of the space in the support base, resulting in a compact overall layout, improving the integrity between the components of the lens module, and reducing the overall volume of the lens module.

[0028] As shown in Figures 3 and 5, the dome assembly 5 comprises a first dome and a second dome respectively provided on the upper and lower surfaces of the lens barrel 2, and the first dome and the second dome are both connected to the lens barrel 2 and the support base 1, and the dome assembly 5 is connected to the AF circuit board 33, the OIS assembly 4 and the support base 1, respectively, to realize closed-loop control of AF.

[0029] A second mounting hole is formed in the central region of the support base 1, and the second mounting hole is coaxial with the first mounting hole, and the lens barrel 2 is suspended within the second mounting hole. Note that the upward direction refers to the direction away from the base, and the downward direction refers to the direction closer to the base.

[0030] The AF magnetic steel pieces 32 are disposed between the lens barrel 2 and the support base 1 and are uniformly distributed around the lens barrel 2. There is at least one AF magnetic steel piece 32, preferably four in this embodiment, with the four AF magnetic steel pieces 32 arranged two by two facing each other around the outer periphery of the lens barrel 2. The lens barrel 2 includes a first connecting ring 21 disposed in the middle region for attaching a lens, and cantilevers 22 distributed around the outer wall of the first connecting ring 21. The cantilevers 22 are disposed at the four corners of the support base 1, and a second flexible connection structure is provided between the cantilevers 22 and the support base 1. Preferably, the second flexible connection structure includes a flexible adhesive structure formed by filling a damping adhesive.

[0031] 6, a retraction structure 221 is provided in an area of ​​the cantilever 22 adjacent to the support base 1. In use, the retraction structure 221 provides a retraction space for the movement of the cantilever 22 relative to the support base 1 when the lens barrel 2 moves up and down along the optical axis, thereby avoiding collision between the cantilever 22 and the support base 1 and ensuring the adjustment stability of the lens module.

[0032] In this embodiment, the retraction structure 221 is a retraction step, and the retraction step is provided on the upper surface of the end of the cantilever 22 that is close to the support base 1.

[0033] 2 and 7 , the OIS magnetic steel 42 and the OIS coil 43 are respectively installed corresponding to the AF magnetic steel 32, an OIS bracket 44 is installed within a planar area surrounded by the OIS coil 43, and the OIS bracket 44 is installed on the OIS circuit board 41. The OIS bracket 44 includes a second connection ring 441 installed along the circumferential direction of the sensor 7, a first contact table 442 connected to the second connection ring 441 and installed corresponding to the OIS coil 43, and a second contact table 443 extending from the second connection ring 441 to an area corresponding to the bottom of the support base 1. The first contact table 442 abuts against the inside of the OIS coil 43 and is used to prevent the lens barrel 2 from rotating on a plane perpendicular to the optical axis, and the second contact table 443 is used to abut against the bottom of the support base 1.

[0034] As shown in Figure 5, the first dome and the second dome have the same structure and include a third connection ring 51 connected to the first connection ring 21, a first connection arm 52 connected between the first connection ring 21 and the support base 1, and a second connection arm 53 connected between the first connection ring 21 and the cantilever 22.

[0035] In some embodiments, the number of the first connecting arms 52 is at least two. In this embodiment, the number of the first connecting arms 52 is four. The plurality of first connecting arms 52 are uniformly distributed around the outer periphery of the third connecting ring 51, improving the vibration isolation effect and recovery stability of the lens module. The number of the second connecting arms 53 is at least one. The first connecting arm 52 is a flexible connecting arm. Preferably, in this embodiment, the first connecting arm 52 has a bent serpentine winding structure, which can improve the deformation performance, vibration isolation recovery, and response effect of the first connecting arm 52.

[0036] As shown in Figures 1 to 3, the lens module further includes a housing 8, which includes a first housing 81 provided outside the support base 1 and a second housing 82 provided below the first housing 81 and for accommodating the OIS circuit board 41 and the flexible connecting plate 6, and a gasket 9 is provided between the second housing 82 and the edge region of the flexible connecting plate 6.

[0037] The lens assembly further includes a lens provided in a first connecting ring 21 of the lens barrel 2 .

[0038] The above is merely an embodiment of the present invention, and those skilled in the art may make modifications without departing from the spirit of the present invention, all of which are within the scope of protection of the present invention. [Explanation of symbols]

[0039] 1 Support stand 2 Telescope tube 21 First connecting ring 22 Cantilever 221 Evacuation Structure 3 AF Assembly 31 AF coil 32 AF magnetic steel 33 AF circuit board 4. OIS Assembly 41 OIS circuit board 42 OIS magnetic steel 43 OIS coil 44 OIS bracket 441 Second connecting ring 442 1st contact table 443 2nd contact table 5 Dome Assembly 51 Third connecting ring 52 First connecting arm 53 Second connecting arm 6 Flexible connection board 61 First connection part 611 Heat radiation hole 62 First bezel 63 Second connection part 7 Sensors 8. Housing 81 First Housing 82 Second Housing 9 Gasket

Claims

1. A lens module, The apparatus includes a support base, a lens barrel, and an adjustment mechanism; the lens barrel is suspended inside the support base, the adjustment mechanism includes an AF assembly, an OIS assembly, a dome assembly, and a flexible connection plate provided below the support base; the OIS assembly includes an OIS circuit board disposed between the support base and the flexible connection plate; a sensor is provided in a central region of the OIS circuit board, and the flexible connection board has a first connection portion connected to the sensor; The first connection portion is provided with a heat dissipation hole, and a first flexible connection structure is provided in the heat dissipation hole; A lens module characterized in that the flexible connecting plate further includes a first bezel provided on the outer periphery of the first connecting portion, and a second connecting portion provided between the first bezel and the first connecting portion.

2. A lens module, The apparatus includes a support base, a lens barrel, and an adjustment mechanism; the lens barrel is suspended inside the support base, the adjustment mechanism includes an AF assembly, an OIS assembly, a dome assembly, and a flexible connection plate provided below the support base; the OIS assembly includes an OIS circuit board disposed between the support base and the flexible connection plate; a sensor is provided in a central region of the OIS circuit board, and the flexible connection board has a first connection portion connected to the sensor; The lens module, wherein the OIS circuit board is a planar FPC, and the flexible connecting plate is made of a titanium-copper alloy material.

3. A lens module, The apparatus includes a support base, a lens barrel, and an adjustment mechanism; the lens barrel is suspended inside the support base, the adjustment mechanism includes an AF assembly, an OIS assembly, a dome assembly, and a flexible connection plate provided below the support base; the OIS assembly includes an OIS circuit board disposed between the support base and the flexible connection plate; a sensor is provided in a central region of the OIS circuit board, and the flexible connection board has a first connection portion connected to the sensor; the AF assembly includes an AF coil, an AF magnetic steel, and an AF circuit board; the OIS assembly further comprising an OIS magnetic steel and an OIS coil; a mounting groove is provided in the support base, and the AF magnetic steel, the OIS magnetic steel, and the OIS coil are provided in the mounting groove from above to below; The lens module, wherein the AF coil is wound around the outer periphery of the lens barrel, and the AF circuit board is provided on the support base.

4. the dome assembly includes a first dome and a second dome provided on an upper surface and a lower surface of the lens barrel, respectively, the first dome and the second dome being connected to the lens barrel and the support base; The lens module according to claim 3 , wherein the dome assembly is connected to the AF circuit board, the OIS assembly, and the support base, respectively.

5. the AF magnetic steel is provided between the lens barrel and the support base, and the AF magnetic steel is uniformly distributed along the circumferential direction of the lens barrel; the lens barrel includes a first connection ring provided in an intermediate region and cantilevers distributed on an outer wall of the first connection ring along a circumferential direction; 5. The lens module according to claim 4, wherein the cantilevers are provided corresponding to four corners of the support base, and a second flexible connection structure is provided between the cantilevers and the support base.

6. The lens module according to claim 5 , wherein a retraction structure is provided in an area of ​​the cantilever close to the support base.

7. the OIS magnetic steel and the OIS coil are respectively installed corresponding to the AF magnetic steel, an OIS bracket is installed within a planar area surrounded by the OIS coil, and the OIS bracket is provided on the OIS circuit board; 6. The lens module of claim 5, wherein the OIS bracket comprises a second connection ring installed along the circumferential direction of the sensor, a first contact pad connected to the second connection ring and installed corresponding to the OIS coil, and a second contact pad extending from the second connection ring to an area corresponding to the bottom of the support pad.

8. 6. The lens module of claim 5, wherein the first dome and the second dome have the same structure and include a third connection ring connected to the first connection ring, a first connection arm connected between the first connection ring and the support base, and a second connection arm connected between the first connection ring and the cantilever.

9. A lens module, The apparatus includes a support base, a lens barrel, and an adjustment mechanism; the lens barrel is suspended inside the support base, the adjustment mechanism includes an AF assembly, an OIS assembly, a dome assembly, and a flexible connection plate provided below the support base; the OIS assembly includes an OIS circuit board disposed between the support base and the flexible connection plate; a sensor is provided in a central region of the OIS circuit board, and the flexible connection board has a first connection portion connected to the sensor; the lens module further includes a housing, the housing including a first housing provided outside the support base, and a second housing provided below the first housing and configured to accommodate the OIS circuit board and the flexible connection plate; A lens module, comprising: a gasket provided between the second housing and an edge region of the flexible connecting plate.

Citation Information

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