Illuminating lamp assembly and vehicle
By designing movable lighting components, using the driver assembly and main controller to realize the position adjustment of the lamp body assembly, the problem of single existing lighting functions is solved and the user experience is improved.
Patent Information
- Application Number
- CN202311608567.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-28
- Publication Date
- 2025-05-30
AI Technical Summary
The lighting function of existing vehicles is single, and the lighting position cannot be adjusted according to the needs of users' different activity modes, and cannot better adapt to users' multi-mode needs such as reading, homework, entertainment, and rest.
A lighting assembly is designed, including an inner housing, a lamp assembly, a drive assembly and a main controller. By moving along the inner housing by driving assembly, the lamp body assembly can be moved to a more suitable position under different mode requirements to emit light. The main controller controls the driving assembly to realize this function according to the control instructions received by the signal receiving unit.
The position adjustment of the lighting components is realized, which can better adapt to the needs of users' different activity modes and improve user experience.
Smart Images

Figure CN120062599A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of vehicles, and in particular to a lighting lamp assembly and a vehicle. Background Art
[0002] The lighting in the car is a device that provides users with basic lighting needs. However, as the proportion of passenger cars in commuting increases, the cockpit needs to not only have driving functions, but also carry more of the role of the "third space" that is becoming more and more perfect. It is often used as a place for rest, entertainment and light work.
[0003] However, the lighting lamps of existing vehicles have a single function and cannot move and adjust their own light-emitting position according to the user's different activity mode requirements, and cannot better adapt to the user's multi-mode needs such as reading, working, entertainment, and rest. Summary of the invention
[0004] The present application provides a lighting lamp assembly and a vehicle, which have the advantages of being able to adjust the position and better adapt to different needs of users.
[0005] In one embodiment of the present application, a lighting fixture is provided, the lighting fixture comprising:
[0006] An inner shell, wherein the inner shell is extended along a first direction;
[0007] A lamp body assembly, arranged in the inner shell;
[0008] a driving assembly, the driving assembly being connected to the lamp body assembly to drive the lamp body assembly to move along the first direction in the inner housing;
[0009] A main controller is provided with a signal receiving unit, and the main controller is coupled to the drive assembly to send control instructions to the drive assembly.
[0010] In some embodiments, the drive assembly includes a first driver, a first synchronous toothed belt and two first gears, the first driver is transmission-connected to one of the first gears, the two first gears are respectively arranged at the two ends of the inner shell along the first direction, the first synchronous toothed belt is sleeved on the two first gears; the first synchronous toothed belt is connected to the lamp body assembly.
[0011] In some embodiments, the driving assembly includes a second driver, a second synchronous toothed belt, and two gear sets, either of which is drivingly connected to the second driver, and the two gear sets are respectively disposed at two ends of the inner housing along the first direction, and the gear set includes a second gear and two driven gears, and both of the driven gears are meshingly connected to the second gear;
[0012] The second synchronous toothed belt is sleeved on the four driven gears, and the second synchronous toothed belt is connected to the lamp body assembly.
[0013] In some embodiments, the drive assembly includes a third driver, a rack, and two third gears. The third driver is drivingly connected to one of the third gears. The two third gears are respectively arranged at two ends of the inner housing along the first direction. The rack is drivingly connected to the two third gears; the rack is connected to the lamp body assembly.
[0014] In some embodiments, the lamp body assembly includes a lamp housing, connecting contacts, and a light source;
[0015] The connecting contacts are arranged at the bottom of the lamp housing, and the light source is located inside the lamp housing and is electrically connected to the connecting contacts;
[0016] A conductive strip extending along the first direction is arranged at the bottom of the inner housing. The conductive strip is in sliding conduction connection with the connecting contacts, and the conductive strip is electrically connected to the main controller.
[0017] In some embodiments, the lighting lamp assembly further includes a touch control assembly. The touch control assembly includes a face mask, a touch film, and a connection conduction component. The connection conduction component is connected between the touch film and the main controller;
[0018] Both the face mask and the touch film extend along the first direction. The face mask is connected to the touch film. Along the second direction, the face mask and the touch film are stacked and the touch film is arranged close to the inner housing.
[0019] In some embodiments, the connection conduction component includes at least one connection contact piece. The connection contact piece is a sheet-like structure with elastic deformation performance and in an L shape.
[0020] In some embodiments, the lighting lamp assembly further includes an outer housing;
[0021] The outer housing includes a detachable face mask frame and a support housing. The face mask frame has an opening, and the face mask is connected to the opening;
[0022] An accommodation cavity is formed by enclosing the face mask, the face mask frame, and the support housing. The lamp body assembly, the inner housing, the drive assembly, and the main controller are all located in the accommodation cavity.
[0023] In some embodiments, the support housing has a bottom wall and a side wall. A plurality of through holes are formed in the side wall, and the plurality of through holes are spaced apart along the circumferential direction of the side wall;
[0024] A plurality of convex portions and a plurality of buckles are formed on the edge of the mask frame, and the plurality of convex portions are snap-connected to the plurality of through holes one by one;
[0025] A buckling portion for snap-connecting with the buckle is formed on the outer side wall of the inner housing, and a plurality of the buckling portions are provided. The plurality of buckling portions are arranged at intervals along the circumferential direction of the outer side wall, and the plurality of buckles are arranged corresponding to the plurality of buckling portions one by one.
[0026] In some embodiments, a clamping portion extending towards the mask is provided on the bottom wall, and the clamping portion is clamped with the main controller.
[0027] In another embodiment of the present application, a vehicle is provided, and the vehicle includes the above-mentioned lighting component.
[0028] The lighting component and the vehicle provided by the embodiments of the present application, wherein the lighting component is arranged by extending the inner housing in the first direction, and at the same time, the driving assembly is used to drive the lamp body assembly to move along the inner housing, so that the lamp body assembly can move in the first direction. The main controller transmits corresponding control instructions to the driving assembly according to the linkage control signals received by the signal receiving portion from different mode devices in the vehicle or directly receives control instructions, and finally enables the lamp body assembly to move to a more suitable position to emit light and irradiate under different mode requirements, thereby improving the user experience. Description of the Drawings
[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0030] Figure 1 It is an exploded view of the structure of the lighting lamp provided by the embodiment of the present application;
[0031] Figure 2 It is a schematic diagram of the structure of the lighting lamp provided by the embodiment of the present application Figure 1 ;
[0032] Figure 3 It is a schematic diagram of the structure of the driving assembly provided by the embodiment of the present application;
[0033] Figure 4 It is a schematic diagram of the structure of the lighting lamp provided by the embodiment of the present application Figure 2 。
[0034] Explanation of the Reference Numerals in the Drawings:
[0035] 1. Touch control component; 11. Mask; 12. Touch control membrane; 13. Connection and conduction component;
[0036] 2. Lamp body assembly; 21. Connecting contact; 22. Lamp body controller; 23. Lamp housing; 231. Tooth block;
[0037] 24. Interior cover; 25. Inner lamp cover; 26. Light guide; 27. Inner bracket;
[0038] 3. Inner housing; 31. Conductive strip; 32. Buckling part;
[0039] 4. Drive assembly; 41. Drive controller; 421. Second driver; 422. Second gear;
[0040] 423. Second synchronous toothed belt; 425. Driven gear;
[0041] 5. Main controller; 6. Mask frame; 61. Opening; 62. Convex part; 63. Buckle;
[0042] 7. Support housing; 71. Clamping part; 72. Through hole; 8. Crimping part;
[0043] X. First direction; Y. Second direction. Detailed implementation manners
[0044] In order to more clearly understand the above objects, features and advantages of the present disclosure, the solutions of the present disclosure will be further described below. It should be noted that, without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other.
[0045] Many specific details are set forth in the following description in order to fully understand the present disclosure, but the present disclosure may be implemented in other ways different from those described herein; obviously, the embodiments in the specification are only a part of the embodiments of the present disclosure, rather than all the embodiments.
[0046] As Figures 1 to 4 shown, an embodiment of the present application provides a lighting lamp assembly, including an inner housing 3, a lamp body assembly 2 provided in the inner housing 3, a drive assembly 4 and a main controller 5. The inner housing 3 extends along a first direction X. Exemplarily, the inner housing 3 extends along a linear trajectory in the first direction X. The drive assembly 4 is connected to the lamp body assembly 2 to drive the lamp body assembly 2 to move along the first direction X in the inner housing 3. The main controller 5 is coupled to the drive assembly 4 to control the drive assembly 4 to drive the lamp body assembly 2 to move along the first direction X in the inner housing 3. The main controller 5 is provided with a signal receiving portion, and the signal receiving portion is used for receiving vehicle interaction signals or user instructions.
[0047] The first direction X is determined by the arrangement of scene equipment in the vehicle. For example, from the front seat to the rear seat in the vehicle, the lamp body assembly 2 moves along the first direction X, that is, along the length direction from the front seat to the rear seat, thereby changing the real-time light brightness of the front seat and the rear seat and other light environment scenes. Or if there are functional equipment such as table boards in the vehicle, the first direction X can be set according to the specific arrangement of the equipment in the vehicle. Of course, there are also seat lying modes, large bed modes, etc. The lamp body assembly 2 can be moved to the target position according to user needs.
[0048] The lighting lamp assembly provided in the embodiment of the present application is configured to extend the inner shell along the first direction, and at the same time use the driving assembly to drive the lamp body assembly to move along the inner shell, so that the lamp body assembly can move along the first direction. The main controller receives the linkage control signal of the different mode devices in the car or directly receives the control instruction according to the signal receiving unit, and transmits the corresponding control instruction to the driving assembly, so that the lamp body assembly can finally move to a more suitable position for illumination under different mode requirements, thereby improving the user experience. The linkage control signal of the different mode devices in the car can be functional devices such as the seat lying flat and the table folding / unfolding. The lamp body assembly 2 moves along the first direction X in the shell and can move to the target position according to the activity of the user in the car at the corresponding device position, that is, it can be adaptively adjusted to meet the needs of the user in different activity states.
[0049] In some feasible embodiments, the driving assembly 4 includes a first driver, a first synchronous toothed belt and two first gears. The first driver is connected to a first gear in a transmission manner. The two first gears are respectively arranged at two ends of the inner housing 3 along the first direction X, and the first synchronous toothed belt is sleeved on the two first gears. The first synchronous toothed belt is connected to the lamp body assembly 2. The first driver can be an electric driver such as a motor. The first driver drives the first gear to rotate, thereby driving the first synchronous toothed belt to circulate. The first synchronous toothed belt is sleeved on the two first gears, and the transmission connection is stable. The first gear can also disperse the force to reduce the load on the lamp body assembly 2. The overall structure is simple and the cost is low.
[0050] In some possible embodiments, Figure 2 and Figure 3As shown, the drive assembly 4 includes a second driver 421, a second synchronous toothed belt 423, and two gear sets. The two gear sets are respectively arranged at both ends of the inner housing 3 along the first direction X. Each gear set includes a second gear 422 and two driven gears 425. The two driven gears 425 are both meshed and drivingly connected to the second gear 422. One of the second gears 422 in either of the two gear sets is drivingly connected to the second driver 421. The second synchronous toothed belt 423 is sleeved on the four driven gears 425, and the second synchronous toothed belt 423 is connected to the lamp body assembly 2. The gear set includes a second gear 422 and two driven gears 425. Such a setting makes the distance between the opposite sides of the second synchronous toothed belt 423 decrease while meeting the width matching of the inner housing 3, and the radius of the second gear 422 is reduced, avoiding its occupation of a large space. At the same time, the second synchronous toothed belt 423 is sleeved on the four driven gears 425, and the four driven gears 425 can effectively disperse the acting force and reduce the load on the drive assembly 4 due to the lamp body assembly 2.
[0051] Specifically, the lamp body assembly 2 includes a lamp housing 23, and the lamp housing 23 has a connecting portion. The connecting portion can be a tooth block 231. The second synchronous toothed belt includes an integrally formed first part toothed belt L1 and a second part toothed belt L2. The first part toothed belt L1 is located inside the inner housing 3 and is clamped with the tooth block 231, and the second part toothed belt L2 is drivingly connected to the driven gear 425. Of course, the first part toothed belt L1 can also be fixedly connected or adhered to the connecting portion on the lamp body assembly 2, etc. The lamp housing 23 and the connecting portion are an integrally formed structure, and the lamp housing 23 and the connecting portion can be integrally injection-molded or inlaid injection-molded.
[0052] Of course, in some other realizable embodiments, the drive assembly 4 includes a third driver, a rack, and two third gears. The third driver is drivingly connected to one of the third gears. The two third gears are respectively arranged at both ends of the inner housing 3 along the first direction X. The rack includes an integrally formed first part rack and a second part rack. The first part rack is drivingly connected to the third gear, and the second part rack is connected to the lamp body assembly 2. The installation and cooperation of the rack and the two third gears are simple.
[0053] Of course, the drive assembly 4 further includes a drive controller 41. The drive controller 41 is electrically connected to the main controller 5. The above-mentioned first driver and the above-mentioned second driver 421 are connected to the drive controller 41. The main controller 5 sends a control instruction to the drive controller 41, and the drive controller 41 directly controls the opening and closing of the first driver and the second driver 421, reducing the task burden of the main controller 5.
[0054] In this embodiment, the lamp body assembly 2 includes a lamp housing 23, connection contacts 21, and a light source. Exemplarily, the light source includes an LED lamp. The LED lamp uses semiconductor materials to emit light. Compared with traditional incandescent lamps and fluorescent lamps, the LED lamp has a higher energy conversion efficiency, and the photoelectric conversion efficiency can reach more than 80%. The LED lamp has a long service life and generates less heat. The bottom of the lamp housing 23 is provided with connection contacts 21. Exemplarily, the connection contacts 21 are metal contacts, and the connection contacts 21 and the lamp housing 23 are integrally formed by insert molding. The light source is located inside the lamp housing 23 and is electrically connected to the connection contacts 21. The bottom of the inner housing 3 is provided with a conductive strip 31 extending in the first direction X. The conductive strip 31 is slidably and conductively connected to the connection contacts 21, and the conductive strip 31 is electrically connected to the main controller 5. So that the lamp body assembly 2 can still maintain a conductive connection with the main controller 5 through the conductive strip 31 while moving in the first direction X, and the conductive strip 31 is slidably connected to the lamp body assembly 2 to guide the lamp body assembly 2 to move along the extension direction of the conductive strip 31 (i.e., the first direction X). The main controller 5 is electrically connected to the conductive strip 31 at the bottom of the inner housing 3 to be connected to the connection contacts 21 provided on the lamp body assembly 2, thereby controlling the on / off of the light source or the illumination brightness, color temperature, etc. of the light source. Exemplarily, the conductive strip 31 and the inner housing 3 are integrally formed by insert molding. The power supply can also supply power to the moving lamp body assembly 2 through the conductive strip 31.
[0055] A lamp body controller 22 may also be provided inside the lamp housing 23. The light source and the lamp body controller 22 are integrated on the lamp body circuit board and the light source is electrically connected to the lamp body controller 22. The lamp body circuit board is electrically connected to the connection contacts 21, that is, the lamp body controller 22 is electrically connected to the connection contacts 21. The conductive strip 31 is slidably and conductively connected to the connection contacts 21 to electrically connect the lamp body circuit board to the main controller 5. Reducing the signal processing burden of the main controller 5. The lamp body assembly 2 further includes an interior cover 24, an inner lamp cover 25, a light guide member 26, and an inner bracket 27. The lamp housing 23 has a relative first surface and a second surface in the second direction Y. The first surface has an opening 61, and the second surface is provided with connection contacts 21. The interior cover 24 is connected to the opening 61. Along the second direction Y, the interior cover 24, the inner lamp cover 25, the light guide member 26, and the lamp body circuit board are arranged in sequence. The inner bracket 27 is sleeved inside the lamp housing 23 and is located outside the light guide member 26 to support and limit the light conductor.
[0056] In some embodiments, the lighting component further includes a touch control component 1. The touch control component 1 includes a face mask 11, a touch diaphragm 12, and a connection and conduction component 13. The connection and conduction component 13 is connected between the touch diaphragm 12 and the main controller 5. Both the face mask 11 and the touch diaphragm 12 extend along the first direction X. The face mask 11 is connected to the touch diaphragm 12 to form a touch panel. Along the second direction Y, the face mask 11 and the touch diaphragm 12 are stacked, and the touch diaphragm 12 is disposed close to the inner housing 3. The first direction X intersects with the second direction Y. Exemplarily, the face mask 11 and the touch diaphragm 12 are an integrally formed structure. Exemplarily, the first direction X is perpendicularly intersecting with the second direction Y. The touch diaphragm 12 has a touch area. After receiving a touch operation, the touch diaphragm 12 generates an electrical signal and transmits it to the main controller 5 through the connection and conduction component 13. The main controller 5 generates a control instruction according to the electrical signal, and the main controller 5 controls the light source based on the control instruction. For example, the main controller 5 controls the on / off of the light source or the illumination brightness, color temperature, etc. of the light source. Touch control adjustment of the light source through the touch control component 1 can bring a better experience to the user.
[0057] The connection and conduction component 13 includes any one of a conductive rubber strip and a connection contact piece. A plurality of connection and conduction components 13 may be provided, and the plurality of connection and conduction components 13 are spaced along the first direction X. When the connection and conduction component 13 is a conductive rubber strip, the conductive rubber strip may be a conductive zebra strip, which has the advantages of flexible wiring, high safety performance, not easily aging, not limited by space, saving space resources, convenient replacement and maintenance, and can effectively reduce costs. When the connection and conduction component 13 is a connection contact piece, the connection contact piece is a sheet-like structure with elastic deformation performance and in an L shape, so that the installation and cooperation of the touch control component 1 and the main controller 5 are simple and the connection is stable. Further, the main controller 5 is integrated on the circuit board. Along the second direction Y, the face mask 11, the touch diaphragm 12, the inner housing 3, and the circuit board are sequentially disposed. A crimping portion 8 is further provided at the connection between the connection and conduction component 13 and the circuit board to make the connection between the connection and conduction component 13 and the circuit board firm.
[0058] In some embodiments, the lighting assembly further includes an outer housing. The outer housing includes a detachable mask frame 6 and a support housing 7. The mask frame 6 has an opening 61, and the mask 11 is connected to the opening 61. The mask 11, the mask frame 6, and the support housing 7 enclose a receiving cavity, and the lamp body assembly 2, the inner housing 3, the drive assembly 4, and the main controller 5 (circuit board) are all located in the receiving cavity. The mask 11, the lamp body assembly 2, and the inner housing 3 are arranged in sequence along the second direction Y. The outer housing protects the mask 11, the lamp body assembly 2, the inner housing 3, the drive assembly 4, and the main controller 5 (circuit board), and can support the mask 11. The mask 11 and the mask frame 6 can be connected by means of snap connection, welding, fastener connection, bonding, etc. The welding can specifically be ultrasonic welding. A space for accommodating the drive assembly 4 is provided between the outer housing and the inner housing 3, and the overall structure is compact and the connection is stable.
[0059] In some embodiments, the support housing 7 has a bottom wall and side walls. The side walls are provided with a plurality of through holes 72, and the plurality of through holes 72 are spaced apart along the circumferential direction of the side walls. A plurality of protrusions 62 and a plurality of buckles 63 are formed on the edge of the mask frame 6. The plurality of protrusions 62 are respectively and correspondingly snapped with the plurality of through holes 72. A buckling portion 32 for snapping with the buckle 63 is formed on the outer side wall of the inner housing 3. There are a plurality of buckling portions 32, and the plurality of buckling portions 32 are spaced apart along the circumferential direction of the outer side wall. The plurality of buckles 63 and the plurality of buckling portions 32 are arranged in one-to-one correspondence. Such an arrangement makes the detachable connection between the mask frame 6, the inner housing 3, and the support housing 7 stable during connection and convenient during disassembly.
[0060] In some embodiments, the bottom wall is provided with a clamping portion 71 extending towards the mask 11, and the clamping portion 71 is clamped with the main controller 5 (circuit board) so that the wire harness of the main controller 5 (circuit board) is not easily damaged or disconnected due to the misalignment of the main controller 5 (circuit board) caused by shaking.
[0061] In some embodiments, the support housing 7 is further provided with a component for clamping and fixing a part of the drive assembly 4. For example, the first gear is connected to the support housing 7 through a connecting shaft, and the drive circuit board (drive controller 41) is limited by a limiting portion provided on the support housing 7 so that the wire connecting the drive circuit board and the second driver 421 is not easily damaged or disconnected due to misalignment.
[0062] In another embodiment of the present application, a vehicle is provided. The vehicle includes the above lighting assembly and a roof. The lighting assembly is detachably connected to the inner wall of the roof.
[0063] The lighting component can perform function linkage following the user's behavior. Specifically, multiple IR cameras in the DMS system capture the user's behaviors at different positions, such as activities like working, watching movies, searching for things, reading, etc. The signal receiving part provided in the main controller 5 receives the control instruction from the central controller (BCM). The main controller 5 is connected to the drive assembly 4 and controls the drive assembly 4 to drive the lamp body assembly 2 to move along the first direction X within the inner housing 3 according to the control instruction.
[0064] Or when other electric devices in the vehicle cockpit are started (such as the small table board is opened, the seat lies flat, the large bed mode, etc.), there is a sensing device in the vehicle for detecting the start of the electric device. The sensing device transmits the collected signal to the central controller (BCM). The signal receiving part provided in the main controller 5 receives the control instruction from the central controller (BCM). The main controller 5 is connected to the drive assembly 4 and controls the drive assembly 4 to drive the lamp body assembly 2 to move along the first direction X within the inner housing 3 according to the control instruction.
[0065] The movement of the lamp body assembly 2 along the first direction X within the housing can be adaptively adjusted according to the activities of the user in the corresponding position inside the vehicle, so as to provide a more comfortable light environment space and functional services for the user, and improve the comfort experience of the user using the vehicle.
[0066] For the vehicle provided in the embodiment of the present application, the lamp body assembly 2 moves along the first direction X within the housing, and can perform function linkage following the user's behaviors at different positions (such as working, watching movies, searching for things, reading) or the start of other electric devices in the cockpit (such as the small table board is opened, the seat lies flat, the large bed mode, etc.), that is, the lamp body assembly 2 can be adaptively adjusted according to the activities of the user in the corresponding position inside the vehicle, so as to provide a more comfortable light environment space and functional services for the user, improve the comfort experience of the user using the vehicle, and promote the vehicle to become a more important and more comfortable "third space".
[0067] It should be noted that in this article, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not expressly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising a..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.
Claims
1. An illuminating lamp assembly, characterized in that, the illuminating lamp assembly includes: an inner housing, which is arranged to extend along a first direction; a lamp body assembly, which is arranged in the inner housing; a driving assembly, the driving assembly is connected to the lamp body assembly to drive the lamp body assembly to move along the first direction in the inner housing; a main controller, the main controller is provided with a signal receiving part, and the main controller is coupled to the driving assembly to send a control instruction to the driving assembly.
2. The illuminating lamp assembly according to claim 1, characterized in that, the driving assembly includes a first driver, a first synchronous toothed belt and two first gears, the first driver is drivingly connected to one of the first gears, the two first gears are respectively arranged at both ends of the inner housing along the first direction, and the first synchronous toothed belt is sleeved on the two first gears; the first synchronous toothed belt is connected to the lamp body assembly.
3. The illuminating lamp assembly according to claim 1, characterized in that, the driving assembly includes a second driver, a second synchronous toothed belt and two gear sets, any one of the two gear sets is drivingly connected to the second driver, and the two gear sets are respectively arranged at both ends of the inner housing along the first direction; the gear set includes a second gear and two driven gears, and the two driven gears are both meshed and drivingly connected to the second gear; the second synchronous toothed belt is sleeved on the four driven gears, and the second synchronous toothed belt is connected to the lamp body assembly.
4. The illuminating lamp assembly according to claim 1, characterized in that, the driving assembly includes a third driver, a rack and two third gears, the third driver is drivingly connected to one of the third gears, the two third gears are respectively arranged at both ends of the inner housing along the first direction, and the rack is drivingly connected to the two third gears; the rack is connected to the lamp body assembly.
5. The illuminating lamp assembly according to any one of claims 1 to 4, characterized in that, the lamp body assembly includes a lamp housing, a connection contact and a light source; the connection contact is provided at the bottom of the lamp housing, and the light source is located in the lamp housing and is electrically connected to the connection contact; a conductive strip extending along the first direction is provided at the bottom of the inner housing, and the conductive strip is in sliding conduction connection with the connection contact, and the conductive strip is electrically connected to the main controller.
6. The illuminating lamp assembly according to claim 5, characterized in that, the illuminating lamp assembly further includes a touch control assembly, the touch control assembly includes a face mask, a touch film and a connection conduction component, and the connection conduction component is connected between the touch film and the main controller; both the face mask and the touch film are arranged to extend along the first direction, the face mask is connected to the touch film, and the face mask and the touch film are stacked along a second direction and the touch film is arranged close to the inner housing, and the second direction intersects with the first direction.
7. The illuminating lamp assembly according to claim 6, characterized in that, The connecting and conducting component includes at least one connecting contact piece, and the connecting contact piece is a sheet-like structure with an L shape and elastic deformation performance.
8. The lighting lamp assembly according to claim 6, wherein, the lighting lamp assembly further includes an outer housing; the outer housing includes a detachable mask frame and a support housing, the mask frame has an opening, and the mask is connected to the opening; a receiving cavity is formed by enclosing the mask, the mask frame and the support housing, and the lamp body assembly, the inner housing, the driving assembly and the main controller are all located in the receiving cavity.
9. The lighting lamp assembly according to claim 8, wherein, the support housing has a bottom wall and a side wall, and a plurality of through holes are formed in the side wall, and the plurality of through holes are spaced apart along the circumferential direction of the side wall; a plurality of protrusions and a plurality of buckles are formed on the edge of the mask frame, and the plurality of protrusions are respectively and correspondingly clamped with the plurality of through holes; a buckling portion clamped with the buckle is formed on the outer side wall of the inner housing, and a plurality of the buckling portions are provided, and the plurality of buckling portions are spaced apart along the circumferential direction of the outer side wall, and the plurality of buckles and the plurality of buckling portions are respectively and correspondingly arranged.
10. The lighting lamp assembly according to claim 9, wherein, a clamping portion extending towards the mask is provided on the bottom wall, and the clamping portion is clamped with the main controller.
11. A vehicle, wherein, the vehicle includes: the lighting lamp assembly according to any one of claims 1 to 10.