Illumination module

By designing a lighting module containing a bracket and the first and second lighting modules with light emitted on the same side, the problems of complex dimming structure, large size, low accuracy and high cost of the existing vehicle lighting module are solved, and the effects of compactness, high accuracy, few parts and low cost are achieved.

CN222963780UActive Publication Date: 2025-06-10HASCO VISION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421753014.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-06-10
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The dimming structure of existing vehicle lighting modules is complex, large in size, low in dimming accuracy and high in production costs.

Method used

A lighting module is designed, including a bracket and the first and second lighting modules that emit light on the same side. Only one dimming structure is provided on each module. The dimming module drives the lighting module to rotate about the axis to achieve fine adjustment and integration of the light type.

Benefits of technology

The lighting module has a compact structure, high dimming accuracy, few parts and low cost, and simplifies the dimming process and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an illumination module, and relates to the field of vehicle lamps. The lighting module comprises a support, a first lighting module and a second lighting module, the first lighting module and the second lighting module emit light on the same side of the support, the first lighting module comprises a first mounting frame, a first dimming assembly and a first lighting assembly, and the first mounting frame is rotationally connected with the first lighting assembly. The second lighting module comprises a second mounting frame, a second dimming assembly and a second lighting assembly, the second mounting frame is rotationally connected with the second lighting assembly, the first dimming assembly is in driving connection with the first lighting assembly to drive the first lighting assembly to rotate around the first axis, and the second dimming assembly is in driving connection with the second lighting assembly to drive the second lighting assembly to rotate around the second axis. And the second lighting assembly is driven to rotate around the second axis. The dimming structure of the lighting module can be simplified, and the production cost of the automobile lamp is reduced.
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Description

Technical Field

[0001] This application relates to the field of vehicle lamps, and more particularly, to an illumination module. Background Art

[0002] With the development trend of the increasingly flattened shape of vehicle lamps, it promotes the development of the appearance of optical illumination modules towards miniaturization, standardization, and modularization. Optical illumination modules in the form of distributed multi-particle combinations also emerge accordingly, and their common forms of expression are multi-module low beam, multi-module high beam, etc. To meet the low beam illumination requirements, such illumination modules need to superimpose multiple light patterns. To ensure the alignment of the light emission center points, horizontal cut-off lines, or cut-off lines with an inclination angle of each illumination module, it is necessary to finely adjust the irradiation light rays of multiple modules, so as to integrate the irradiation light rays of multiple illumination modules into a complete light pattern.

[0003] The existing fine-tuning light structure of vehicle illumination modules generally adjusts the same illumination module through an up-down dimming structure and a left-right dimming structure, which requires installing two adjustment mechanisms on one illumination module. Since the dimming accuracy depends on the length of the dimming lever arm, in the prior art, in order to ensure the dimming accuracy, the rear dimming structure is larger than the lens opening in one direction, and the dimming structure is not small and compact enough, so it is impossible to get too close in both directions in terms of the shape arrangement. Similarly, due to the limited length of the dimming lever arm, the dimming accuracy in one direction is slightly lower. In addition, since dimming is required in both directions, two sets of dimming screw nuts are needed, so the number of parts is relatively large.

[0004] Therefore, the current dimming structure of the illumination module is relatively complex, has a large volume, low dimming accuracy, and high production costs. Summary of the Utility Model

[0005] The purpose of this application is to provide an illumination module, which is small and compact in structure, has high dimming accuracy, few parts and low cost, and has fewer dimming processes and higher efficiency.

[0006] The embodiments of this application are implemented as follows:

[0007] The embodiments of this application provide an illumination module, including a bracket, a first illumination module and a second illumination module that emit light on the same side of the bracket. The first illumination module includes a first mounting frame, a first dimming component and a first illumination component. The first mounting frame and the first illumination component are rotatably connected. The second illumination module includes a second mounting frame, a second dimming component and a second illumination component. The second mounting frame and the second illumination component are rotatably connected. The first dimming component is drivingly connected to the first illumination component to drive the first illumination component to rotate around a first axis. The second dimming component is drivingly connected to the second illumination component to drive the second illumination component to rotate around a second axis.

[0008] Optionally, as an implementable manner, the first lighting module and the second lighting module are main low and high beam lighting modules, and the light pattern formed by the first lighting module and the second lighting module has an inclined cut-off line.

[0009] Optionally, as an implementable manner, the first mounting bracket and the first lighting assembly are rotationally connected through a first rotating shaft. A first mounting hole is provided on the first mounting bracket, and a first connection hole is provided on the first lighting assembly. The first dimming assembly includes a first dimming bolt and a first adapter. The first adapter is fixed to the first connection hole. The first dimming bolt includes a threaded portion and a spherical head portion. The threaded portion of the first dimming bolt is connected to the first mounting hole, and the spherical head portion of the first dimming bolt is rotationally connected to the first adapter.

[0010] Optionally, as an implementable manner, the second mounting bracket and the second lighting assembly are rotationally connected through a second rotating shaft. A second mounting hole is provided on the second mounting bracket, and a second connection hole is provided on the second lighting assembly. The second dimming assembly includes a second dimming bolt and a second adapter. The second adapter is fixed to the second connection hole. The second dimming bolt includes a threaded portion and a spherical head portion. The threaded portion of the second dimming bolt is connected to the second mounting hole, and the spherical head portion of the second dimming bolt is rotationally connected to the second adapter.

[0011] Optionally, as an implementable manner, the first axis is perpendicular to the second axis.

[0012] Optionally, as an implementable manner, it further includes an auxiliary lighting module provided on the bracket. The auxiliary lighting module includes a third mounting bracket, a third dimming assembly, and an auxiliary lighting assembly. The third mounting bracket and the auxiliary lighting assembly are rotationally connected. The third dimming assembly is drivingly connected to the auxiliary lighting assembly to drive the auxiliary lighting assembly to rotate around a third axis.

[0013] Optionally, as an implementable manner, the auxiliary lighting module is an auxiliary low beam lighting module, and the light pattern formed by the auxiliary lighting module has a horizontal cut-off line.

[0014] Optionally, as an implementable manner, the number of the auxiliary lighting modules is multiple.

[0015] Optionally, as an implementable manner, a third mounting hole is provided on the third mounting bracket, a third connection hole is provided on the auxiliary lighting assembly, the third dimming assembly includes a third dimming bolt and a third adapter, the third adapter is fixed to the third connection hole, the third dimming bolt includes a threaded portion and a ball head portion, the threaded portion of the third dimming bolt is connected to the third mounting hole, and the ball head portion of the third dimming bolt is rotatably connected to the third adapter.

[0016] Optionally, as an implementable manner, the third axis is parallel to the second axis or the first axis.

[0017] The beneficial effects of the embodiments of the present application include:

[0018] The lighting module provided in the present application includes a bracket, and a first lighting module and a second lighting module that emit light on the same side of the bracket. The first lighting module includes a first mounting bracket, a first dimming assembly, and a first lighting assembly. The first mounting bracket and the first lighting assembly are rotatably connected. The second lighting module includes a second mounting bracket, a second dimming assembly, and a second lighting assembly. The second mounting bracket and the second lighting assembly are rotatably connected. The first dimming assembly is drivingly connected to the first lighting assembly to drive the first lighting assembly to rotate around a first axis. The second dimming assembly is drivingly connected to the second lighting assembly to drive the second lighting assembly to rotate around a second axis. By driving the first lighting assembly to rotate around the first axis through the first dimming assembly, and driving the second lighting assembly to rotate around the second axis through the second adjustment assembly, the lighting pattern of the first lighting assembly is made to match the lighting pattern of the second lighting assembly. Only one dimming structure is provided on each module, which simplifies the dimming structure of the lighting module, thereby reducing the production cost of the vehicle lamp while making the dimming structure small and compact with high dimming accuracy. Description of the Drawings

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0020] Figure 1 It is a schematic structural diagram of the lighting module provided in the embodiments of the present application;

[0021] Figure 2 It is a schematic structural diagram of the first lighting module in the lighting module provided in the embodiments of the present application;

[0022] Figure 3 It is a schematic structural diagram of the second lighting module in the lighting module provided in the embodiments of the present application;

[0023] Figure 4 This is a schematic structural diagram of the auxiliary lighting module in the lighting module provided by the embodiments of the present application.

[0024] Icons: 100 - lighting module; 110 - bracket; 120 - first lighting module; 121 - first mounting bracket; 1211 - first mounting hole; 122 - first dimming component; 1221 - first dimming bolt; 1222 - first adapter; 123 - first lighting component; 1231 - first radiator; 1232 - first circuit board; 1233 - first lens; 1234 - first connection hole; 1235 - first rotating shaft; 130 - second lighting module; 131 - second mounting bracket; 1311 - second mounting hole; 132 - second dimming component; 1321 - second dimming bolt; 1322 - second adapter; 133 - second lighting component; 1331 - second radiator; 1332 - second circuit board; 1333 - second lens; 1334 - second connection hole; 1335 - second rotating shaft; 140 - auxiliary lighting module; 141 - third mounting bracket; 1411 - third mounting hole; 142 - third dimming component; 1421 - third dimming bolt; 1422 - third adapter; 143 - auxiliary lighting component; 1431 - third radiator; 1432 - third circuit board; 1433 - third lens; 1434 - third connection hole; 1435 - third rotating shaft. Detailed implementation manners

[0025] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Apparently, the described embodiments are some, but not all, of the embodiments of the present application. Usually, the components of the embodiments of the present application described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.

[0026] Therefore, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without making creative efforts fall within the scope of protection of the present application.

[0027] It should be noted that: Similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In addition, the terms "first", "second", "third", etc. are only used for descriptive distinction and cannot be construed as indicating or implying relative importance.

[0028] In the description of the present application, it should also be noted that, unless otherwise clearly specified and limited, the terms "arranged", "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.

[0029] Please refer to Figure 1 、 Figure 2 and Figure 3 , this embodiment provides an illumination module 100, which includes a bracket 110, and a first illumination module 120 and a second illumination module 130 that emit light on the same side of the bracket 110. The first illumination module 120 includes a first mounting bracket 121, a first dimming component 122, and a first illumination component 123. The first mounting bracket 121 and the first illumination component 123 are rotatably connected. The second illumination module 130 includes a second mounting bracket 131, a second dimming component 132, and a second illumination component 133. The second mounting bracket 131 and the second illumination component 133 are rotatably connected. The first dimming component 122 is drivingly connected to the first illumination component 123 to drive the first illumination component 123 to rotate around a first axis. The second dimming component 132 is drivingly connected to the second illumination component 133 to drive the second illumination component 133 to rotate around a second axis.

[0030] Specifically, when assembling the illumination components of the present application, first assemble the first illumination module 120 and the second illumination module 130 separately, that is, rotatably connect the first mounting bracket 121 and the first illumination component 123, and then connect the first dimming component 122 to the first mounting bracket 121 and the first illumination component 123 to complete the assembly of the first illumination module 120. Then rotatably connect the second mounting bracket 131 and the second illumination component 133, and then connect the second dimming component 132 to the second mounting bracket 131 and the second illumination component 133 to complete the assembly of the second illumination component 133. Subsequently, install the first mounting bracket 121 and the second mounting bracket 131 on the bracket 110 respectively to complete the assembly of the illumination module 100.

[0031] When adjusting the illumination components of the present application, the first dimming component 122 drives the first illumination component 123 to rotate around the first axis, and the second adjustment component drives the second illumination component 133 to rotate around the second axis, so that the bright-dark cut-off line of the illumination light pattern of the first illumination component 123 coincides with the bright-dark cut-off line of the illumination light pattern of the second illumination component 133.

[0032] Exemplarily, the light-emitting directions of the first lighting module 120 and the second lighting module 130 are directly forward. The first lighting assembly 123 is driven to swing up and down by the first dimming assembly 122, and the second lighting assembly 133 is driven to swing left and right by the second adjusting assembly. The first lighting assembly 123 swings up and down around the first axis so that the lighting pattern of the first lighting assembly 123 approaches the lighting pattern of the second lighting assembly 133, and then the second lighting assembly 133 swings left and right around the second axis so that the lighting pattern of the second lighting assembly 133 coincides with the lighting pattern of the first lighting assembly 123.

[0033] The lighting module 100 provided in the present application includes a bracket 110, and a first lighting module 120 and a second lighting module 130 that emit light on the same side of the bracket 110. The first lighting module 120 includes a first mounting frame 121, a first dimming assembly 122, and a first lighting assembly 123. The first mounting frame 121 and the first lighting assembly 123 are rotatably connected. The second lighting module 130 includes a second mounting frame 131, a second dimming assembly 132, and a second lighting assembly 133. The second mounting frame 131 and the second lighting assembly 133 are rotatably connected. The first dimming assembly 122 is drivingly connected to the first lighting assembly 123 to drive the first lighting assembly 123 to rotate around the first axis. The second dimming assembly 132 is drivingly connected to the second lighting assembly 133 to drive the second lighting assembly 133 to rotate around the second axis. The first axis is perpendicular to the second axis. The first lighting assembly 123 is driven to rotate around the first axis by the first dimming assembly 122, and the second lighting assembly 133 is driven to rotate around the second axis by the second adjusting assembly, so that the lighting pattern of the first lighting assembly 123 coincides with the lighting pattern of the second lighting assembly 133. Only one dimming structure is provided on each module, which simplifies the dimming structure of the lighting module 100, thereby reducing the production cost of the vehicle lamp while making the dimming structure small and compact and having high dimming accuracy.

[0034] In a feasible embodiment of the present application, as Figure 1 、 Figure 2 and Figure 3 shown, the first lighting module 120 and the second lighting module 130 are main low / high beam lighting modules. The light pattern formed by the first lighting module 120 and the second lighting module 130 has an inclined cut-off line. The first axis can be perpendicular to the second axis. Specifically, the inclined cut-off line refers to a cut-off line having an inclination angle with respect to the horizontal direction of the light pattern formed by the lighting module.

[0035] The first lighting assembly 123 is driven by the first dimming assembly 122 to rotate about the first axis, so that the illumination light pattern of the first lighting assembly 123 approaches the illumination light pattern of the second lighting assembly 133. The second lighting assembly 133 is driven by the second adjustment assembly to rotate about the second axis, so that the illumination light pattern of the second lighting assembly 133 approaches the illumination light pattern of the first lighting assembly 123, so that the inclined cut-off line of the first lighting assembly 123 coincides with the inclined cut-off line of the second lighting assembly 133.

[0036] In a feasible embodiment of the present application, as Figure 1 , Figure 2 and Figure 3 shown, the first mounting bracket 121 and the first lighting assembly 123 are rotationally connected through the first rotating shaft 1235. The first mounting bracket 121 is provided with a first mounting hole 1211, and the first lighting assembly 123 is provided with a first connection hole 1234. The first dimming assembly 122 includes a first dimming bolt 1221 and a first adapter 1222. The first adapter 1222 is fixed to the first connection hole 1234. The first dimming bolt 1221 includes a threaded portion and a ball head portion. The threaded portion of the first dimming bolt 1221 is connected to the first mounting hole 1211, and the ball head portion of the first dimming bolt 1221 is rotationally connected to the first adapter 1222. Specifically, the threaded portion of the first dimming bolt 1221 can be self-tapping connected or threadedly connected to the first mounting hole 1211. The first rotating shaft 1235 can be a convex column provided in the direction of the first axis of the first lighting assembly 123. The convex column can be a waist-shaped convex column. The first mounting bracket 121 is provided with a first mounting groove that cooperates with the first rotating shaft 1235, so that the convex column can rotate relative to the first mounting groove in the first mounting groove to form the first rotating shaft 1235.

[0037] When assembling the first lighting module 120, the first mounting bracket 121 and the first lighting assembly 123 are rotationally connected through the first rotating shaft 1235. Subsequently, the first adapter 1222 is fixed to the first connection hole 1234, the ball head portion of the first dimming bolt 1221 is rotationally connected to the first adapter 1222, and the threaded portion of the first dimming bolt 1221 is connected to the first mounting hole 1211 to complete the assembly of the first lighting module 120. By adjusting the relative position of the first dimming bolt 1221 and the first mounting hole 1211, the ball head portion rotates relative to the first adapter 1222 to drive the first lighting assembly 123 to rotate relative to the first mounting bracket 121 about the first rotating shaft 1235.

[0038] The second mounting bracket 131 and the second lighting assembly 133 are rotatably connected through a second rotating shaft 1335. A second mounting hole 1311 is provided on the second mounting bracket 131, and a second connection hole 1334 is provided on the second lighting assembly 133. The second dimming assembly 132 includes a second dimming bolt 1321 and a second adapter 1322. The second adapter 1322 is fixed to the second connection hole 1334. The second dimming bolt 1321 includes a threaded portion and a ball head portion. The threaded portion of the second dimming bolt 1321 is connected to the second mounting hole 1311, and the ball head portion of the second dimming bolt 1321 is connected to the second adapter 1322.

[0039] Specifically, the threaded portion of the second dimming bolt 1321 can be self-tapped or thread-connected to the second mounting hole 1311. The second rotating shaft 1335 can be a convex post provided in the direction of the second axis of the second lighting assembly 133. The convex post can be an oval convex post. A second mounting groove cooperating with the second rotating shaft 1335 is provided on the second mounting bracket 131, so that the convex post can rotate relative to the second mounting groove in the second mounting groove to form the second rotating shaft 1335.

[0040] When assembling the second lighting module 130, the second mounting bracket 131 and the second lighting assembly 133 are rotatably connected through the second rotating shaft 1335. Subsequently, the second adapter 1322 is fixed to the second connection hole 1334, the ball head portion of the second dimming bolt 1321 is rotatably connected to the second adapter 1322, and the threaded portion of the second dimming bolt 1321 is connected to the second mounting hole 1311 to complete the assembly of the second lighting module 130. By adjusting the relative position of the threaded portion of the second dimming bolt 1321 and the second mounting hole 1311, the ball head portion rotates relative to the second adapter 1322 to drive the second lighting assembly 133 to rotate relative to the second mounting bracket 131 around the second rotating shaft 1335.

[0041] In a feasible embodiment of the present application, as Figure 1 、 Figure 2 and Figure 3 shown, the first lighting assembly 123 includes a first radiator 1231, a first circuit board 1232, a first light source, and a first lens 1233 arranged in sequence. The first rotating shaft 1235 is provided on one side of the first radiator 1231 close to the first circuit board 1232, and the first connection hole 1234 is provided on one side of the first radiator 1231 away from the first circuit board 1232.

[0042] The second lighting assembly 133 includes a second radiator 1331, a second circuit board 1332, a second light source, and a second lens 1333 arranged in sequence. The second rotating shaft 1335 is provided on one side of the second radiator 1331 close to the second circuit board 1332, and the second connection hole 1334 is provided on one side of the second radiator 1331 away from the second circuit board 1332.

[0043] When adjusting the lighting assembly of the present application, rotate the first dimming bolt 1221 relative to the first mounting hole 1211 to drive the first lighting assembly 123 to rotate relative to the first mounting bracket 121 around the first rotating shaft 1235, so as to adjust the angle between the first radiator 1231 and the first mounting bracket 121. Rotate the second dimming bolt 1321 relative to the second mounting hole 1311 to drive the second lighting assembly 133 to rotate relative to the second mounting bracket 131 around the second rotating shaft 1335, so as to adjust the angle between the second radiator 1331 and the second mounting bracket 131, so that the light and dark cut-off line of the lighting light pattern of the first lighting assembly 123 coincides with the light and dark cut-off line of the lighting light pattern of the second lighting assembly 133, so as to complete the adjustment of the lighting light pattern of the lighting module 100.

[0044] In a feasible embodiment of the present application, as Figure 1 and Figure 4 shown, it further includes an auxiliary lighting module 140 arranged on the bracket 110. The auxiliary lighting module 140 includes a third mounting bracket 141, a third dimming component 142 and an auxiliary lighting component 143. The first mounting bracket 121 and the auxiliary lighting component 143 are rotationally connected through a third rotating shaft 1435. The third rotating shaft 1435 can be parallel to the first rotating shaft 1235 or the second rotating shaft 1335, and the third axis is parallel to the second axis or the first axis.

[0045] Specifically, the auxiliary lighting module can be an auxiliary low beam lighting module, and the light pattern formed by the auxiliary lighting module has a horizontal cut-off line. The first lighting module 120 and the second lighting module 130 are the main lighting module 100. Drive the third lighting component to rotate around the third rotating shaft 1435 through the third dimming component 142. The cut-off line of the lighting light pattern of the auxiliary lighting module 140 is parallel to one side of the cut-off line of the lighting light pattern of the main lighting module 100, so as to complete the adjustment of the auxiliary lighting component 143.

[0046] For example, the light emitting directions of the first lighting module 120 and the second lighting module 130 are directly in front. Drive the first lighting component 123 to swing up and down through the first dimming component 122, drive the second lighting component 133 to swing left and right through the second adjustment component. The first lighting component 123 swings up and down around the first axis so that the lighting light pattern of the first lighting component 123 approaches the lighting light pattern of the second lighting component 133, and then swing the second lighting component 133 left and right around the second axis so that the lighting light pattern of the second lighting component 133 coincides with the lighting light pattern of the first lighting component 123; drive the auxiliary lighting module 140 to swing up and down through the third dimming component 142 to align the horizontal cut-off line in the up and down direction.

[0047] When adjusting the lighting component of the present application, the first lighting component 123 is driven by the first dimming component 122 to rotate around the first axis, and the second lighting component 133 is driven by the second adjusting component to rotate around the second axis, so that the inclined cut-off line of the first lighting component 123 coincides with the inclined cut-off line of the second lighting component 133. Subsequently, the third lighting component is driven by the third dimming component 142 to rotate around the third rotating shaft 1435, and the cut-off line of the illumination light pattern of the auxiliary lighting module 140 is aligned with the cut-off line of the illumination light pattern of the first lighting module 120 and the second lighting module 130, so as to complete the adjustment of the auxiliary lighting component 143.

[0048] Furthermore, the number of the auxiliary lighting modules 140 can be set to multiple to enhance the illumination intensity of the lighting module 100.

[0049] In a feasible embodiment of the present application, as Figure 1 and Figure 4 shown, a third mounting hole 1411 is provided on the third mounting bracket 141, a third connection hole 1434 is provided on the auxiliary lighting component 143, the third dimming component 142 includes a third dimming bolt 1421 and a third adapter 1422, the third adapter 1422 is fixed to the third connection hole 1434, the third dimming bolt 1421 includes a threaded portion and a ball head portion, and the threaded portion of the third dimming bolt 1421 is connected to the third mounting hole 1411. Specifically, the threaded portion of the third dimming bolt 1421 can be self-tapped or thread-connected to the third mounting hole 1411. The third rotating shaft 1435 can be a convex column provided in the direction of the third axis of the auxiliary lighting component 143. The convex column can be a waist-shaped convex column, and a third mounting groove matching with the third rotating shaft 1435 is provided on the third mounting bracket 141, so that the convex column can rotate relative to the third mounting groove in the third mounting groove to form the third rotating shaft 1435.

[0050] Furthermore, the auxiliary lighting component 143 includes a third radiator 1431, a third circuit board 1432, a third light source, and a third lens 1433 arranged in sequence. The third rotating shaft 1435 is provided on the side of the third radiator 1431 close to the third circuit board 1432, and the third connection hole 1434 is provided on the side of the third radiator 1431 away from the third circuit board 1432.

[0051] When adjusting the lighting component of the present application, the third dimming bolt 1421 is rotated relative to the third mounting hole 1411 to drive the auxiliary lighting component 143 to rotate relative to the third mounting bracket 141 around the third rotating shaft 1435, so as to adjust the included angle between the third radiator 1431 and the third mounting bracket 141, so that the cut-off line of the illumination light pattern of the auxiliary lighting module 140 is parallel to one side of the cut-off line of the illumination light pattern of the main lighting module 100, so as to complete the adjustment of the auxiliary lighting component 143.

[0052] The above are only the preferred embodiments of the present application and are not intended to limit the present application. For those skilled in the art, various modifications and changes can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.

Claims

1. A lighting module, characterized in that: It includes a bracket and a first lighting module and a second lighting module that emit light on the same side of the bracket, the first lighting module includes a first mounting frame, a first dimming component and a first lighting component, the first mounting frame and the first lighting component are rotatably connected, the second lighting module includes a second mounting frame, a second dimming component and a second lighting component, the second mounting frame and the second lighting component are rotatably connected, the first dimming component is drivingly connected to the first lighting component to drive the first lighting component to rotate around a first axis, and the second dimming component is drivingly connected to the second lighting component to drive the second lighting component to rotate around a second axis.

2. The lighting module according to claim 1, characterized in that: The first lighting module and the second lighting module are main low-beam lighting modules, and the light shape formed by the first lighting module and the second lighting module has an inclined cut-off line.

3. The lighting module according to claim 1, characterized in that: The first mounting frame and the first lighting assembly are rotatably connected via a first rotating shaft, a first mounting frame is provided with a first mounting hole, a first connecting hole is provided on the first lighting assembly, the first dimming assembly includes a first dimming bolt and a first adapter, the first adapter is fixed to the first connecting hole, the first dimming bolt includes a threaded portion and a ball head portion, the threaded portion of the first dimming bolt is connected to the first mounting hole, and the ball head portion of the first dimming bolt is rotatably connected to the first adapter portion.

4. The lighting module according to claim 1, characterized in that: The second mounting frame and the second lighting assembly are rotatably connected via a second rotating shaft, a second mounting frame is provided with a second mounting hole, a second lighting assembly is provided with a second connecting hole, the second dimming assembly includes a second dimming bolt and a second adapter, the second adapter is fixed to the second connecting hole, the second dimming bolt includes a threaded portion and a ball head portion, the threaded portion of the second dimming bolt is connected to the second mounting hole, and the ball head portion of the second dimming bolt is rotatably connected to the second adapter portion.

5. The lighting module according to any one of claims 1 to 4, characterized in that: The first axis is perpendicular to the second axis.

6. The lighting module according to claim 1, characterized in that: It also includes an auxiliary lighting module arranged on the bracket, the auxiliary lighting module includes a third mounting frame, a third dimming component and an auxiliary lighting component, the third mounting frame and the auxiliary lighting component are rotatably connected, and the third dimming component is drivingly connected to the auxiliary lighting component to drive the auxiliary lighting component to rotate around a third axis.

7. The lighting module according to claim 6, characterized in that: The auxiliary lighting module is an auxiliary low-beam lighting module, and the light shape formed by the auxiliary lighting module has a horizontal cutoff line.

8. The lighting module according to claim 6, characterized in that: The number of the auxiliary lighting modules is multiple.

9. The lighting module according to claim 6, characterized in that: A third mounting hole is provided on the third mounting frame, a third connecting hole is provided on the auxiliary lighting assembly, the third dimming assembly includes a third dimming bolt and a third adapter, the third adapter is fixed to the third connecting hole, the third dimming bolt includes a threaded portion and a ball head portion, the threaded portion of the third dimming bolt is connected to the third mounting hole, and the ball head portion of the third dimming bolt is rotatably connected to the third adapter portion.

10. The lighting module according to any one of claims 6 to 9, characterized in that: The third axis is parallel to the second axis or the first axis.