High-beam and low-beam integrated combined illumination module and vehicle lamp

By introducing fine-tuning components and main dimming components into the integrated high and low beam lighting module, fine-tuning of the optical axis of the high and low beam system and adjustment of the installation angle are achieved, which solves the problem of the lack of fine-tuning capabilities of existing modules in production and processing, reduces production costs and meets optical performance and regulatory requirements.

CN222950868UActive Publication Date: 2025-06-06MIND ELECTRONICS APPLIANCE CO LTD
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Patent Information

Application Number
CN202422178660.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-06-06
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The existing high and low beam integrated lighting module lacks fine-tuning capabilities during production and processing, resulting in extremely high requirements for parts accuracy and difficulty in meeting the expected optical performance and regulatory requirements, resulting in waste of production costs and resources.

Method used

A high and low beam integrated lighting module is designed, including the main dimming assembly, the fine dimming assembly and the lighting assembly. By fine-tuning the optical axis of the low beam system and high beam system through fine-tuning mounting brackets, fine-tuning ball head screws and bracket ball heads in the fine-tuning light assembly, the installation angle is adjusted through the main dimming assembly.

Benefits of technology

The high-beam system and low-beam system in the integrated high-beam integrated lighting module have been fine-tuned, reducing the production and processing requirements for parts, reducing production costs, and meeting the performance and regulatory requirements of the product.

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Abstract

The utility model discloses a high beam and low beam integrated combined lighting module and an automobile lamp, and relates to the technical field of automobile lighting, the high beam and low beam integrated combined lighting module comprises a main dimming assembly, a fine dimming assembly, a low beam system and a high beam system, the main dimming assembly comprises a main dimming support and a main dimming ball screw, and the main dimming ball screw is used for pushing the main dimming support to rotate; the fine-tuning light assembly comprises a fine-tuning mounting bracket, a fine-tuning ball screw and a bracket ball head, the fine-tuning mounting bracket is arranged on the main dimming bracket, the fine-tuning ball screw is arranged along a first axis and is in threaded fit with the main dimming bracket, and the fine-tuning ball screw is rotatably connected with the bracket ball head; one of the low-beam system and the high-beam system is fixedly arranged on the main dimming bracket, and the other one of the low-beam system and the high-beam system is rotatably arranged on the main dimming bracket around a second axis, is connected with the bracket ball head and can be driven to rotate by the fine adjustment ball head screw. Fine adjustment of the optical axis between the low-beam system and the high-beam system is achieved, and free matching adjustment between the high-beam light pattern and the low-beam light pattern can be guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of automobile lighting, and more specifically to a high and low beam integrated combined lighting module and a vehicle lamp. Background Art

[0002] At present, the appearance design of automobile headlights tends to be compact, resulting in a shrinking internal space. As a key optical system, the lighting components of automobile headlights require a large space. To solve this problem, more and more lighting manufacturers have begun to combine the high beam system with the low beam system to form an integrated high and low beam combined lighting module, which greatly saves the internal space of the headlight.

[0003] In the traditional high and low beam integrated combination lighting module, since the matching requirements for high and low beam light types are not high, it is easy to meet the optical performance and regulatory requirements. However, with the improvement of living standards, users have higher and higher requirements for driving experience, and adaptive lighting systems have emerged, which can provide safe and reliable lighting experience in different driving scenarios. The adaptive lighting system puts forward higher requirements on the optical design, structural design and parts processing of the high and low beam integrated combination lighting module.

[0004] In the current market, the high and low beam integrated lighting modules lack the ability to fine-tune the high and low beam systems, which leads to extremely high precision requirements for parts during the production process. During design verification and process verification, the product's molding process, assembly process and production equipment need to be constantly adjusted, which not only wastes experimental resources, labor costs and production costs, but also often makes it difficult to meet the expected optical performance and regulatory requirements.

[0005] Therefore, how to achieve fine-tuning of the high beam system and the low beam system in the high and low beam integrated combination lighting module to reduce production costs has become a technical problem that needs to be urgently solved by those skilled in the art. Utility Model Content

[0006] In view of this, an object of the present utility model is to provide a high and low beam integrated combined lighting module to achieve fine-tuning of the high beam system and the low beam system in the high and low beam integrated combined lighting module and reduce production costs.

[0007] Another object of the present invention is to provide a vehicle lamp comprising the above-mentioned high and low beam integrated combined lighting module.

[0008] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0009] A high and low beam integrated combined lighting module, comprising a main dimming component, a fine dimming component and a lighting component:

[0010] The main dimming component includes a main dimming bracket and a main dimming ball screw, the main dimming bracket is rotatably arranged in the lamp housing, and the main dimming ball screw is connected to the main dimming bracket to drive the main dimming bracket to rotate;

[0011] The fine-tuning light assembly comprises a fine-tuning mounting bracket, a fine-tuning ball screw and a bracket ball head, wherein the fine-tuning mounting bracket is arranged on the main dimming bracket, the fine-tuning ball screw is arranged along the first axis and is threadedly connected to the main dimming bracket and is rotatably connected to the bracket ball head;

[0012] The lighting assembly includes a low beam system and a high beam system, one of the low beam system and the high beam system is fixedly arranged on the main dimming bracket, and the other is rotatably arranged on the main dimming bracket around a second axis and connected to the bracket ball head, and the first axis and the second axis are perpendicular and staggered.

[0013] Optionally, in the above-mentioned high and low beam integrated combined lighting module, the high beam system is fixedly arranged on the main dimming bracket, and the low beam system is rotatably arranged on the main dimming bracket around the second axis, and the low beam system includes:

[0014] A low beam radiator, wherein two ends of the low beam radiator are provided with low beam rotating shafts, the low beam rotating shafts are arranged along the second axis and are rotatably provided on the main dimming bracket, and the bracket ball head is connected to the low beam radiator;

[0015] A low beam lamp panel, arranged on the low beam radiator;

[0016] The low beam lamp cover is arranged on the low beam radiator and corresponds to the low beam lamp panel.

[0017] Optionally, in the above-mentioned integrated high and low beam combination lighting module, the low beam heat sink includes a first substrate and a first fin, the low beam lamp board is arranged on the first side of the first substrate, the first fins are arranged in parallel and at intervals on the second side of the first substrate, the low beam rotation axis is arranged on the two first fins located at the end, and the bracket ball head is connected to the second side of the first substrate.

[0018] Optionally, in the above-mentioned high and low beam integrated combined lighting module, the high beam system includes:

[0019] A high beam radiator, the high beam radiator is fixedly arranged on the main dimming bracket;

[0020] A high beam lamp panel, arranged on the high beam radiator;

[0021] The high beam lamp cover is arranged on the high beam radiator and corresponds to the high beam lamp panel.

[0022] Optionally, in the above-mentioned high and low beam integrated combined lighting module, the low beam system is fixedly arranged on the main dimming bracket, and the high beam system is rotatably arranged on the main dimming bracket around the second axis, and the high beam system includes:

[0023] A high-beam radiator, wherein both ends of the high-beam radiator are provided with high-beam rotating shafts, the high-beam rotating shafts are arranged along the second axis and rotatably provided on the main dimming bracket, and the bracket ball head is connected to the high-beam radiator;

[0024] A high beam lamp panel, arranged on the high beam radiator;

[0025] The high beam lamp cover is arranged on the high beam radiator and corresponds to the high beam lamp panel.

[0026] Optionally, in the above-mentioned integrated high and low beam combination lighting module, the high beam heat sink includes a second substrate and a second fin, the high beam lamp board is arranged on the first side of the second substrate, the second fins are arranged in parallel and at intervals on the second side of the second substrate, and the high beam rotation axis is arranged on the two second fins located at the end.

[0027] Optionally, in the above-mentioned high and low beam integrated combined lighting module, the low beam system includes:

[0028] A low beam radiator, the low beam radiator is fixedly arranged on the main dimming bracket;

[0029] A low beam lamp panel, arranged on the low beam radiator;

[0030] The low beam lamp cover is arranged on the low beam radiator and corresponds to the low beam lamp panel.

[0031] Optionally, in the above-mentioned high and low beam integrated combined lighting module, an outer lens assembly is provided on the main dimming bracket, and the outer lens assembly includes:

[0032] A lens bracket connected to the main dimming bracket;

[0033] The outer lens is arranged on the lens bracket and corresponds to the low beam system and the high beam system.

[0034] Optionally, in the above-mentioned high and low beam integrated combined lighting module, the spacing distance between the first axis and the second axis is 1 mm to 50 mm; and / or,

[0035] The rotation angle range of the low beam system or the high beam system around the second axis is 2° to 6°.

[0036] A vehicle lamp comprises the above-mentioned high and low beam integrated combined lighting module.

[0037] The utility model provides an integrated high and low beam combined lighting module, which comprises a main dimming component, a fine dimming component and a lighting component: wherein the main dimming component comprises a main dimming bracket and a main dimming ball screw, the main dimming bracket is rotatably arranged in the lamp housing, the main dimming ball screw is connected to the main dimming bracket, and is used to push the main dimming bracket to rotate, so as to realize the overall installation angle adjustment of the lighting component; the fine dimming component comprises a fine-tuning mounting bracket, a fine-tuning ball screw and a bracket ball head, the fine-tuning mounting bracket is arranged on the main dimming bracket, the fine-tuning ball screw is arranged along a first axis and is threadedly matched with the main dimming bracket, and the fine-tuning ball screw is rotatably connected to the bracket ball head; the lighting component comprises a low beam system and a high beam system, one of the low beam system and the high beam system is fixedly arranged on the main dimming bracket, and the other is rotatably arranged on the main dimming bracket around a second axis, and is connected to the bracket ball head, and can be driven by the fine-tuning ball screw to rotate around the second axis, and the first axis and the second axis are perpendicular and staggered.

[0038] After the high and low beam integrated combination lighting module is assembled as a whole, the optical axis of the low beam system and the optical axis of the high beam system are not parallel due to the processing errors and assembly errors of each component. At this time, the low beam system or the high beam system can be pushed to rotate by screwing the fine-tuning ball screw until the optical axes of the low beam system and the high beam system are parallel; finally, the main dimming bracket is pushed to rotate by the main dimming ball screw, so that the low beam system and the high beam system rotate together, thereby achieving the joint adjustment of the installation angle of the lighting components and completing the assembly.

[0039] Compared with the prior art, the high and low beam integrated combined lighting module provided by the utility model realizes fine-tuning between the optical axis of the low beam system and the optical axis of the high beam system through the setting of the fine-tuning component, so that the high beam light type and the low beam light type can be freely matched and adjusted, thereby meeting the performance and regulatory requirements of the product, and at the same time can reduce the production and processing requirements for each component and reduce costs; the main dimming component is used to realize the joint adjustment of the installation angles of the low beam system and the high beam system.

[0040] The vehicle lamp provided by the utility model comprises the above-mentioned high and low beam integrated combined lighting module. Since it has the above-mentioned high and low beam integrated combined lighting module, it also has the above-mentioned structure and beneficial effects. Other structures refer to the prior art and will not be described in detail here. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0042] Figure 1 It is a schematic diagram of the overall structure of the high and low beam integrated combined lighting module disclosed in the embodiment of the utility model;

[0043] Figure 2 An exploded view of the high and low beam integrated combined lighting module disclosed in an embodiment of the utility model;

[0044] Figure 3 Schematic diagram of the fine-tuning structure of the high and low beam integrated combined lighting module disclosed in the embodiment of the utility model Figure 1 ;

[0045] Figure 4 Schematic diagram of the fine-tuning structure of the high and low beam integrated combined lighting module disclosed in the embodiment of the utility model Figure 2 ;

[0046] Figure 5 Schematic diagram of the fine-tuning structure of the high and low beam integrated combined lighting module disclosed in the embodiment of the utility model Figure 3 ;

[0047] Figure 6 It is a schematic diagram of the installation structure of the high beam system and the low beam system disclosed in the embodiment of the utility model on the main dimming bracket;

[0048] Figure 7 It is a structural schematic diagram of a low beam system disclosed in an embodiment of the utility model;

[0049] Figure 8 It is a structural schematic diagram of a high beam system disclosed in an embodiment of the utility model;

[0050] Fig. 9 It is a schematic diagram of the matching structure of the fine-tuning mounting bracket and the fine-tuning ball screw disclosed in the embodiment of the utility model;

[0051] Fig.10 It is a structural schematic diagram of the fine-tuning mounting bracket disclosed in an embodiment of the utility model;

[0052] Fig.11 It is a schematic diagram of the structure of the fine-adjusting ball head screw disclosed in the embodiment of the utility model;

[0053] Fig.12 It is a structural schematic diagram of the bracket ball head disclosed in the embodiment of the utility model;

[0054] Fig.13 This is a schematic diagram of the structure of the main dimming bracket disclosed in the embodiment of the utility model;

[0055] Fig.14 A schematic diagram of the installation structure of the main dimming bracket and the fine dimming assembly disclosed in the embodiment of the utility model;

[0056] Fig.15 It is a schematic structural diagram of the outer lens assembly disclosed in an embodiment of the utility model.

[0057] Among them, 100 are main dimming brackets;

[0058] 200 is a fine-tuning light assembly, 201 is a first axis, 210 is a fine-tuning mounting bracket, 220 is a fine-tuning ball screw, 230 is a bracket ball head, and 240 is a fixing component;

[0059] 300 is a low beam system, 301 is a second axis, 310 is a low beam radiator, 311 is a low beam rotating shaft, 320 is a low beam lamp plate, and 330 is a low beam lamp cover;

[0060] 400 is a high beam system, 410 is a high beam radiator, 420 is a high beam lamp panel, and 430 is a high beam lamp cover;

[0061] 500 is an outer lens assembly, 510 is a lens holder, and 520 is an outer lens. DETAILED DESCRIPTION

[0062] The core of the utility model is to disclose a high and low beam integrated combined lighting module to achieve fine adjustment of the high beam system and the low beam system in the high and low beam integrated combined lighting module, thereby reducing production costs.

[0063] Another core of the utility model is to disclose a vehicle lamp including the above-mentioned high and low beam integrated combined lighting module.

[0064] The following is an explanation of the embodiments with reference to the accompanying drawings. In addition, the embodiments shown below do not limit the contents of the utility model described in the claims. In addition, the entire contents of the structures represented by the following embodiments are not limited to those necessary as solutions of the utility model described in the claims. It should be noted that, for ease of description, only the parts related to the utility model are shown in the accompanying drawings. In the absence of conflict, the embodiments in the utility model and the features in the embodiments can be combined with each other.

[0065] Combination Figure 1-Figure 15The utility model discloses a high and low beam integrated combined lighting module, which includes a main dimming component, a fine dimming component 200 and a lighting component: wherein the main dimming component includes a main dimming bracket 100 and a main dimming ball screw, the main dimming bracket 100 is used to be rotatably arranged in the lamp housing, the main dimming ball screw is connected to the main dimming bracket 100, and is used to push the main dimming bracket 100 to rotate, so as to achieve the overall installation angle adjustment of the lighting component, the main dimming ball screw can be manually adjusted and rotated, or driven to rotate by a motor; the fine dimming component 200 includes a fine-tuning mounting bracket 210, a fine-tuning ball screw 220 and a bracket ball head 230, the fine-tuning mounting bracket 2 10 is arranged on the main dimming bracket 100, the fine-tuning ball screw 220 is arranged along the first axis 201 and is threadedly matched with the main dimming bracket 100, and the fine-tuning ball screw 220 is rotatably connected to the bracket ball head 230; the lighting assembly includes a low beam system 300 and a high beam system 400, one of the low beam system 300 and the high beam system 400 is fixedly arranged on the main dimming bracket 100, and the other is rotatably arranged on the main dimming bracket 100 around the second axis 301, and is connected to the bracket ball head 230, and can be driven by the fine-tuning ball screw 220 to rotate around the second axis 301, and the first axis 201 and the second axis 301 are vertically and staggered.

[0066] After the high and low beam integrated combination lighting module is assembled as a whole, due to the processing errors and assembly errors of each component, the optical axis of the low beam system 300 and the optical axis of the high beam system 400 are not parallel. At this time, the low beam system 300 or the high beam system 400 can be pushed to rotate by screwing the fine-tuning ball screw 220 until the optical axes of the low beam system 300 and the high beam system 400 are parallel; finally, the main dimming bracket 100 is pushed to rotate by the main dimming ball screw, so that the low beam system 300 and the high beam system 400 rotate together, thereby realizing the joint adjustment of the installation angles of the lighting components and completing the assembly.

[0067] Compared with the prior art, the high and low beam integrated combined lighting module disclosed in the utility model realizes fine-tuning between the optical axis of the low beam system 300 and the optical axis of the high beam system 400 through the setting of the fine-tuning component 200, so that the high beam light type and the low beam light type can be freely matched and adjusted, thereby meeting the performance and regulatory requirements of the product, and at the same time can reduce the production and processing requirements for each component and reduce costs; the main dimming component is used to realize the common adjustment of the installation angles of the low beam system 300 and the high beam system 400.

[0068] Those skilled in the art can understand that the specific structures and adjustment mechanisms of the main dimming bracket 100 and the main dimming ball screw are prior arts and will not be described in detail here.

[0069] Combination Figure 2-Figure 5In a specific embodiment disclosed in the present utility model, the high beam system 400 is fixedly arranged on the main dimming bracket 100, and the low beam system 300 is rotatably arranged on the main dimming bracket 100 around the second axis 301. Figure 7 The low beam system 300 includes a low beam radiator 310, a low beam lamp board 320 and a low beam lamp cover 330. Low beam rotating shafts 311 are arranged at both ends of the low beam radiator 310. The low beam rotating shaft 311 is arranged along the second axis 301 and is rotatably arranged on the main dimming bracket 100. The bracket ball head 230 is connected to the low beam radiator 310; the low beam lamp board 320 is arranged on the low beam radiator 310 to achieve heat dissipation, and the low beam lamp beads are arranged on the low beam lamp board 320; the low beam lamp cover 330 is arranged on the low beam radiator 310 and corresponds to the low beam lamp board 320 so that the low beam lamp beads can emit light. The high beam system 400 includes a high beam radiator 410, a high beam lamp board 420 and a high beam lamp cover 430. The high beam radiator 410 is fixedly mounted on the main dimming bracket 100; the high beam lamp board 420 is mounted on the high beam radiator 410 to achieve heat dissipation, and the high beam lamp beads are mounted on the high beam lamp board 420; the high beam lamp cover 430 is mounted on the high beam radiator 410 and corresponds to the high beam lamp board 420 so that the high beam lamp beads can emit light.

[0070] The low beam lamp panel 320 and the low beam lamp cover 330 can be fixed to the low beam radiator 310 by screws, and the high beam lamp panel 420 and the high beam lamp cover 430 can be fixed to the high beam radiator 410 by screws, so that disassembly and assembly are convenient. Figure 5 and Figure 6 The low beam rotation axis 311 is rotatably disposed on the main dimming bracket 100 through a fixing component 240, and the fixing component 240 and the main dimming bracket 100 are connected by screws.

[0071] Specifically, combined Figure 7 In one embodiment, the low beam heat sink 310 includes a first substrate and a first fin, the low beam lamp plate 320 is arranged on the first side of the first substrate, the first fins are arranged parallel and spaced on the second side of the first substrate, and the two first fins at the end are provided with a low beam rotation axis 311. The bracket ball head 230 is connected to the second side of the first substrate, and the first fin is arranged to avoid the bracket ball head 230.

[0072] In another specific embodiment disclosed in the present utility model, the low beam system 300 is fixedly arranged on the main dimming bracket 100, and the high beam system 400 is rotatably arranged on the main dimming bracket 100 around the second axis 301. The low beam system 300 includes a low beam radiator 310, a low beam lamp board 320 and a low beam lamp cover 330. The low beam radiator 310 is fixedly arranged on the main dimming bracket 100; the low beam lamp board 320 is arranged on the low beam radiator 310 to achieve heat dissipation, and the low beam lamp beads are arranged on the low beam lamp board 320; the low beam lamp cover 330 is arranged on the low beam radiator 310 and corresponds to the low beam lamp board 320 so that the low beam lamp beads can emit light. The high beam system 400 includes a high beam radiator 410, a high beam lamp panel 420 and a high beam lamp cover 430. High beam rotating shafts are arranged at both ends of the high beam radiator 410. The high beam rotating shafts are arranged along the second axis 301 and are rotatably arranged on the main dimming bracket 100. The bracket ball head 230 is connected to the high beam radiator 410. The high beam lamp panel 420 is arranged on the high beam radiator 410 to achieve heat dissipation, and the high beam lamp beads are arranged on the high beam lamp panel 420. The high beam lamp cover 430 is arranged on the high beam radiator 410 and corresponds to the high beam lamp panel 420 so that the high beam lamp beads can emit light.

[0073] Specifically, the high beam heat sink 410 includes a second substrate and a second fin, the high beam lamp plate 420 is arranged on the first side of the second substrate, the second fins are arranged parallel and spaced on the second side of the second substrate, and a high beam rotating shaft is arranged on each of the two second fins at the end. The bracket ball head 230 is connected to the second side of the second substrate, and the second fin is arranged to avoid the bracket ball head 230.

[0074] Among them, the low beam lamp board 320 and the low beam lamp cover 330 can be fixed to the low beam radiator 310 by screws, and the high beam lamp board 420 and the high beam lamp cover 430 can be fixed to the high beam radiator 410 by screws, which is convenient for disassembly and assembly.

[0075] Combination Figure 2 and Fig.15 An outer lens assembly 500 is arranged on the main dimming bracket 100, and the outer lens assembly 500 includes a lens bracket 510 and an outer lens 520. The lens bracket 510 is connected to the main dimming bracket 100; the outer lens 520 is arranged on the lens bracket 510 and corresponds to the low beam system 300 and the high beam system 400 to provide light for the low beam system 300 and the high beam system 400.

[0076] Usually, the distance between the first axis 201 and the second axis 301 is 1 mm to 50 mm. The low beam system 300 or the high beam system 400 can rotate around the second axis 301 at an angle of 2° to 6°, that is, the low beam system 300 or the high beam system 400 can rotate 1° to 3° forward and 1° to 3° reverse around the second axis 301 from the initial position.

[0077] Combination Figure 2 , Fig. 9 and Fig.10 The fine-tuning mounting bracket 210 is fixed to the main dimming bracket 100 by screws. The first end of the bracket ball head 230 is fixed to the low beam system 300 or the high beam system 400 by screws, and the second end can be used for the ball head end of the fine-tuning ball head screw 220 to be clamped and rotated.

[0078] A handle may be provided at one end of the fine-tuning ball screw 220 away from the bracket ball head 230 to facilitate manual rotation.

[0079] Combination Fig.13 and Fig.14 The main dimming bracket 100 is usually a frame-like structure to reduce the structural mass and facilitate the rotation of the low beam system 300 or the high beam system 400.

[0080] The vehicle lamp disclosed in the utility model includes the above-mentioned high and low beam integrated combined lighting module. Since it has the above-mentioned high and low beam integrated combined lighting module, it also has the above-mentioned structure and beneficial effects. Other structures refer to the prior art and will not be described in detail here.

[0081] The above description of the disclosed embodiments enables professionals and technicians in the field to implement or use the utility model. Various modifications to these embodiments will be obvious to professionals and technicians in the field, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the utility model. The specific technical means in some embodiments can be combined in part or in whole into another embodiment without being explicitly excluded by another embodiment. Therefore, the utility model will not be limited to the embodiments shown in this article, but will conform to the widest range consistent with the principles and novel features disclosed herein.

Claims

1. A high and low beam integrated combined lighting module, characterized in that: The invention comprises a main dimming component, a fine dimming component (200) and a lighting component: The main dimming component comprises a main dimming bracket (100) and a main dimming ball screw, the main dimming bracket (100) being rotatably arranged in the lamp housing, and the main dimming ball screw being connected to the main dimming bracket (100) and being used to push the main dimming bracket (100) to rotate; The fine-tuning light component (200) comprises a fine-tuning mounting bracket (210), a fine-tuning ball screw (220) and a bracket ball head (230); the fine-tuning mounting bracket (210) is arranged on the main dimming bracket (100); the fine-tuning ball screw (220) is arranged along a first axis (201) and is threadedly connected to the main dimming bracket (100), and is rotatably connected to the bracket ball head (230); The lighting assembly comprises a low beam system (300) and a high beam system (400), one of the low beam system (300) and the high beam system (400) being fixedly arranged on the main dimming bracket (100), and the other being rotatably arranged on the main dimming bracket (100) around a second axis (301) and connected to the bracket ball head (230), the first axis (201) and the second axis (301) being perpendicular and staggered.

2. The high and low beam integrated combined lighting module according to claim 1, characterized in that: The high beam system (400) is fixedly arranged on the main dimming bracket (100), and the low beam system (300) is rotatably arranged on the main dimming bracket (100) around the second axis (301), and the low beam system (300) comprises: A low-beam radiator (310), wherein two ends of the low-beam radiator (310) are provided with low-beam rotation shafts (311), the low-beam rotation shafts (311) are arranged along the second axis (301) and are rotatably arranged on the main dimming bracket (100), and the bracket ball head (230) is connected to the low-beam radiator (310); A low-beam lamp panel (320) is arranged on the low-beam heat sink (310); A low-beam lamp cover (330) is arranged on the low-beam heat sink (310) and corresponds to the low-beam lamp panel (320).

3. The high and low beam integrated combined lighting module according to claim 2, characterized in that: The low-beam heat sink (310) comprises a first substrate and a first fin, the low-beam lamp panel (320) is arranged on a first side of the first substrate, the first fins are arranged in parallel and at intervals on a second side of the first substrate, the low-beam rotating shaft (311) is arranged on two first fins at the end, and the bracket ball head (230) is connected to the second side of the first substrate.

4. The high and low beam integrated combined lighting module according to claim 2, characterized in that: The high beam system (400) comprises: A high-beam radiator (410), the high-beam radiator (410) being fixedly disposed on the main dimming bracket (100); A high-beam lamp panel (420) is arranged on the high-beam heat sink (410); A high-beam lampshade (430) is arranged on the high-beam heat sink (410) and corresponds to the high-beam lamp panel (420).

5. The high and low beam integrated combined lighting module according to claim 1, characterized in that: The low beam system (300) is fixedly arranged on the main dimming bracket (100), and the high beam system (400) is rotatably arranged on the main dimming bracket (100) around the second axis (301), and the high beam system (400) comprises: A high-beam radiator (410), wherein high-beam rotating shafts are provided at both ends of the high-beam radiator (410), the high-beam rotating shafts are arranged along the second axis (301) and are rotatably provided on the main dimming bracket (100), and the bracket ball head (230) is connected to the high-beam radiator (410); A high-beam lamp panel (420) is arranged on the high-beam heat sink (410); A high-beam lampshade (430) is arranged on the high-beam heat sink (410) and corresponds to the high-beam lamp panel (420).

6. The high and low beam integrated combined lighting module according to claim 5, characterized in that: The high-beam heat sink (410) comprises a second substrate and second fins, the high-beam lamp panel (420) is arranged on a first side of the second substrate, the second fins are arranged in parallel and at intervals on a second side of the second substrate, and the high-beam rotating shaft is arranged on two second fins located at the ends.

7. The high and low beam integrated combined lighting module according to claim 5, characterized in that: The low beam system (300) comprises: A low-beam radiator (310), the low-beam radiator (310) being fixedly arranged on the main dimming bracket (100); A low-beam lamp panel (320) is arranged on the low-beam heat sink (310); A low-beam lamp cover (330) is arranged on the low-beam heat sink (310) and corresponds to the low-beam lamp panel (320).

8. The high and low beam integrated combined lighting module according to claim 6, characterized in that: An outer lens assembly (500) is arranged on the main dimming bracket (100), and the outer lens assembly (500) comprises: A lens bracket (510) connected to the main dimming bracket (100); An outer lens (520) is arranged on the lens bracket (510) and corresponds to the low beam system (300) and the high beam system (400).

9. The high and low beam integrated combined lighting module according to claim 1, characterized in that: The distance between the first axis (201) and the second axis (301) is 1 mm to 50 mm; and / or, The rotation angle range of the low beam system (300) or the high beam system (400) around the second axis (301) is 2° to 6°.

10. A vehicle lamp, characterized in that: It comprises the high and low beam integrated combined lighting module as described in any one of claims 1 to 9.