Outline lamp and vehicle having the same
Patent Information
- Application Number
- CN202522113380.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0002]目前,一般的车辆示廓灯为了避免灯具外观产生发乌的问题,采用雾化面罩加外侧面罩的结构,但易导致点亮后光照均匀性不足70%,难以满足高端车型的光学要求
[0007] According to the embodiments of the present invention, the marker light, by setting a lens, uniformly guides the light emitted by the light source to the light-emitting mask, improving the uniformity of light emission and ensuring good light uniformity and high brightness consistency throughout the luminous area. Simultaneously, in the unlit state, the lens can shield the internal structure, preventing direct visibility of the light source and other components from the outside, resulting in a cleaner and simpler appearance of the marker light and reducing undesirable visual effects such as dullness or gloom. By providing texture on the light-emitting surface of the lens and/or the light-incoming surface of the light-emitting mask, the uniformity of light emission is further improved. The marker light of this application embodiment incorporates a lens and provides texture on the lens and/or the light-emitting mask to ensure light output efficiency while meeting regulatory requirements within a limited space, while simultaneously improving light uniformity and reducing gloom.
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Figure CN224718608U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vehicle lighting technology, and in particular to a marker light and a vehicle having the same. Background Technology
[0002] Currently, to avoid the problem of the lamps appearing dull, general vehicle position lights use a structure of a frosted mask plus an outer side mask. However, this can easily lead to a light uniformity of less than 70% after being lit, which is difficult to meet the optical requirements of high-end models.
[0003] Therefore, improving the uniformity of vehicle headlight illumination while solving the problem of dullness is one of the research directions of this application. Utility Model Content
[0004] The present invention aims to at least solve one of the technical problems existing in the prior art. Therefore, the first aspect of the present invention aims to provide a marker light that avoids the problem of dullness and has high illumination uniformity, thereby improving the visual consistency and lighting quality of the marker light.
[0005] The second aspect of this utility model is to provide a vehicle having the aforementioned marker lights.
[0006] A marker light according to a first aspect of the present invention includes: a lamp holder, a light-emitting mask, a light source element, and a lens. The light-emitting mask is connected to the lamp holder, and a lamp chamber cavity is formed between the light-emitting mask and the lamp holder. The light source element is disposed within the lamp chamber cavity. The lens is disposed within the lamp chamber cavity and is located between the light source element and the light-emitting mask. At least one of the light-emitting surface of the lens and the light-incoming surface of the light-emitting mask is textured.
[0007] According to the embodiments of the present invention, the marker light, by setting a lens, uniformly guides the light emitted by the light source to the light-emitting mask, improving the uniformity of light emission and ensuring good light uniformity and high brightness consistency throughout the luminous area. Simultaneously, in the unlit state, the lens can shield the internal structure, preventing direct visibility of the light source and other components from the outside, resulting in a cleaner and simpler appearance of the marker light and reducing undesirable visual effects such as dullness or gloom. By providing texture on the light-emitting surface of the lens and / or the light-incoming surface of the light-emitting mask, the uniformity of light emission is further improved. The marker light of this application embodiment incorporates a lens and provides texture on the lens and / or the light-emitting mask to ensure light output efficiency while meeting regulatory requirements within a limited space, while simultaneously improving light uniformity and reducing gloom.
[0008] According to some optional embodiments of the present invention, the texture of the marker lamp includes at least one of pattern and texture.
[0009] In some other embodiments, the lens includes a lens element and a reflector cup, the lens element being disposed inside the light-emitting mask; the reflector cup being connected to the side of the lens element facing the light source.
[0010] Furthermore, the lens also includes a boss connected to the side of the lens facing the light-emitting mask, and the texture is formed on the boss.
[0011] In some alternative embodiments, the light source is fixedly connected to the lens by fasteners to form an optical module.
[0012] According to some alternative embodiments, the edge of the lens is laser-welded to the lamp holder; and / or, the edge of the light-emitting mask is laser-welded to the lamp holder.
[0013] Specifically, the light source includes: a first circuit board on which lamp beads are arranged facing the lens; and a second circuit board electrically connected to the first circuit board, wherein the second circuit board is a driver board.
[0014] Optionally, the first circuit board and the second circuit board are arranged at intervals along the thickness direction of the first circuit board, and the first circuit board and the second circuit board are fixedly connected by fasteners; a plurality of lamp beads are arranged at intervals on the first circuit board.
[0015] Further optionally, the lamp holder is provided with a vent hole, and the marker light also includes a waterproof and breathable cap that fits onto the vent hole.
[0016] A vehicle according to a second aspect of the present invention includes a marker light as described in a first aspect of the present invention.
[0017] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0018] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which: Figure 1 This is a schematic diagram of the structure of the outline lamp in some embodiments of this utility model; Figure 2 The following are exterior views of the outline lamps in some embodiments of this utility model; Figure 3 This is a schematic diagram of the optical module structure in some embodiments of the present invention; Figure 4This is a schematic diagram showing the position of the optical module in the lamp holder in some embodiments of this utility model; Figure 5 This is a schematic diagram of the assembly of the lamp holder and the optical module in some embodiments of this utility model; Figure 6 This is a schematic diagram of the lamp holder structure in some embodiments of this utility model.
[0019] Figure label: 100 marker light, 101 lamp chamber Lamp holder 10, ventilation hole 11 Light-emitting mask 20 Optical module 30 Light source component 31, connecting hole 301, positioning hole 302, first circuit board 311, LED bead 3111, second circuit board 312 Lens 32, Lens 321, Reflector 322, Boss 323, Connecting Post 324, Positioning Post 325 Waterproof and breathable cap 40. Detailed Implementation
[0020] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0021] In the description of this utility model, it should be understood that the terms "thickness," "upper," "lower," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, features defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0022] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0023] The following is for reference. Figures 1-6 The structure of the marker light 100 according to a first aspect embodiment of the present invention is described.
[0024] like Figure 1 and Figure 2 As shown, the marker light 100 includes: a lamp holder 10, a light-emitting mask 20, a light source 31, and a lens 32.
[0025] Optionally, the lamp holder 10 can be made of composite engineering plastic. In some specific embodiments, the lamp holder 10 is a composite engineering plastic formed by blending and modifying polycarbonate (PC) and acrylonitrile-butadiene-styrene copolymer (ABS). The PC content is 70%. This material ensures sufficient strength and heat resistance, while also possessing good processability and weldability, facilitating the connection of other components to the lamp holder 10 through welding or other methods, thus ensuring the stability of the overall structure.
[0026] The light-emitting mask 20 is connected to the lamp holder 10, forming a lamp chamber 101 between the light-emitting mask 20 and the lamp holder 10. The lamp chamber 101 is used to install internal components, such as the light source 31 and the lens 32, improving installation stability. In addition, the lamp chamber 101 also has the functions of dustproofing, waterproofing, and preventing impurities from entering, thus extending the service life of the marker light 100.
[0027] Optionally, the light source 31 uses an LED light source. Specifically, the number of LED light sources can be flexibly configured according to the requirements of light emission length and brightness. When there are multiple LED light sources, arranging them evenly in a single or multiple rows can effectively disperse the light emission points and avoid concentrated light intensity. This arrangement helps to form a continuous and uniform light band on the light-emitting mask 20, reducing alternation of light and dark or graininess, and improving the uniformity of light emission.
[0028] The light source 31 is located inside the lamp chamber 101.
[0029] This configuration ensures a stable position for the light source 31, facilitating precise alignment with the lens 32 and the light-emitting mask 20, thus guaranteeing optimal light output. Simultaneously, the lamp chamber 101 protects the light source 31, effectively reducing the impact of external collisions, moisture, and impurities, thereby enhancing the reliability and lifespan of the marker light 100.
[0030] Lens 32 is disposed inside lamp chamber 101 and located between light source 31 and light-emitting mask 20. Lens 32 is used to refract, converge or diffuse the light emitted by light source 31, guide the light to be uniformly projected onto light-emitting mask 20, and improve the uniformity and brightness distribution of light emission.
[0031] It should be noted that the light emitted by the light source 31 is usually relatively concentrated. Especially when the light source 31 includes multiple LED beads 3111, obvious bright and dark areas are easily formed when the lamp is lit, resulting in uneven light output.
[0032] Lens 32 can refract, reflect, or diffuse light, dispersing concentrated light to a wider area, making the light intensity distribution more balanced, avoiding local over-brightness or under-brightness, and making the marker lamp 100 visually uniform and coherent, so that the marker lamp 100 has high light uniformity.
[0033] In the off-state, the lens 32, positioned between the light source and the light-emitting mask 20, also shields the internal structure, preventing direct visibility of the internal parts and structure of the lamp chamber 101 from the outside. This makes the marker light 100 appear cleaner and reduces the visual effect of a dull or grayish appearance. In the on-state, the lens 32 guides the light evenly to the light-emitting mask 20, resulting in high uniformity and consistent brightness across the entire light-emitting area, reducing any dullness or graying.
[0034] Here, placing the lens 32 inside the lamp chamber 101 helps improve the overall structural compactness of the marker light 100. At the same time, it facilitates precise alignment between the lens 32 and the light source 31 and the light-emitting mask 20, ensuring accurate light transmission.
[0035] The light-emitting surface of the lens 32 is arranged facing the light-incoming surface of the light-emitting mask 20, and at least one of them has a texture.
[0036] In some embodiments, combined with Figure 1 , Figure 3 and Figure 4 The light-emitting surface of lens 32 has a texture. This allows light to diffuse as it leaves lens 32, further diffusing the concentrated light generated by light source 31, improving the uniformity of light emission and reducing bright spots.
[0037] Alternatively, in some other embodiments, combined with Figure 1 The light-emitting mask 20 has a textured surface. This disperses the concentrated light generated by the light source 31 when the light enters the light-emitting mask 20, further mixing the light and making the emitted light more uniform and continuous. At the same time, when the light source 31 is not lit, the texture can also cover the internal parts and structure, making the appearance of the marker light 100 cleaner, reducing the dull or grayish appearance, and improving the consistency of the appearance of the marker light 100.
[0038] Alternatively, to further improve the light uniformity, both the light-emitting surface of lens 32 and the light-incoming surface of light-emitting mask 20 are textured. During propagation, light passes through the textures twice: first, the texture on the light-emitting surface of lens 32 disperses the light spot, and then the texture on the light-incoming surface of light-emitting mask 20 further homogenizes the light, achieving dual light uniformity. This better eliminates bright spots, dark areas, and graininess, resulting in more uniform light emission. Simultaneously, the two textures better conceal internal components and structures, effectively reducing dullness and graying, and improving the consistency and aesthetics of the overall light-emitting area.
[0039] Therefore, the marker light 100 of this application embodiment is provided with a lens 32, and a texture is provided on the lens 32 and / or the light-emitting mask 20, so as to ensure the light output rate while meeting the requirements of regulations within a limited space, and at the same time improve the uniformity of light, thereby reducing dullness.
[0040] In some specific embodiments, the light-emitting mask 20 is a smoky gray mask. The smoky gray mask can reduce the visibility of the internal structure when the lamp is not lit, while making the light emission effect more uniform and softer when lit.
[0041] Alternatively, the light-emitting mask 20 can be made of PC or PMMA components. This allows for a light transmittance of up to 60%, ensuring high light transmittance of the marker light 100.
[0042] According to some optional embodiments of the present invention, the marker light 100 has a texture including at least one of pattern and texture.
[0043] In this application, "pattern" refers to a geometric pattern directly formed by a mold. Optionally, the pattern includes, but is not limited to, grids, concentric circles, stripes, etc. When the texture includes a pattern, it helps to improve the uniform distribution of light, thereby enhancing the uniformity of light emission.
[0044] The "sun-etched texture" in this application refers to the irregular, fine, uneven texture formed on the surface of the mold through chemical etching or sandblasting, resulting in a smooth surface with no obvious directionality. When the texture includes sun-etched texture, it also has a uniform light-emitting effect, thereby improving the uniformity of light emission from the light-emitting surface.
[0045] Furthermore, when the texture includes both pattern and embossed texture, a multi-layered uniform light effect can be achieved, further enhancing the mixing effect of light and improving the uniformity of light output.
[0046] In addition, textures, including patterns and patinas, can help conceal internal structures, improve dullness, and make the appearance look more consistent.
[0047] In some other embodiments, such as Figure 1 and Figure 3As shown, lens 32 includes a lens 321 and a reflector 322. The lens 321 is disposed inside the light-emitting mask 20. Its shape matches the light-emitting mask 20 and can completely cover the entire light-emitting path, ensuring that light enters the light-emitting mask 20 uniformly.
[0048] The reflector 322 is connected to the side of the lens 321 facing the light source 31. Specifically, the reflector 322 is fitted around the outer periphery of each LED bead 3111, and like a cover, it effectively gathers and guides the light emitted by each LED bead 3111 to the direction of the lens 321, thereby concentrating the light path, reducing light leakage, and improving light efficiency.
[0049] Combination Figure 1 The lens 321 and the reflector 322 are arranged along the light emission direction. This arrangement can also increase the light mixing distance, thereby forming a longer optical path channel to further improve the uniformity of light emission.
[0050] Furthermore, lens 32 also includes a boss 323. The boss 323 is attached to the side of lens 321 facing the light-emitting mask 20, and a texture is formed on the boss 323.
[0051] The protrusion 323 brings the light-emitting surface of the lens 32 closer to the light-emitting mask 20, thereby reducing the gap between them, improving the light propagation efficiency, and enhancing the uniformity of the brightness distribution of the light-emitting surface.
[0052] Here, the shape and size of the boss 323 are adapted to the shape and size of the light-emitting mask 20, ensuring that the two fit tightly after assembly, which is conducive to the uniformity of light throughout the light-emitting area and further improves the uniformity of light emission.
[0053] Furthermore, the boss 323, lens 321, and reflector 322 are integrally molded components. This integral molding avoids the fitting errors and light leakage problems associated with assembling multiple parts. It makes the overall structure more compact, increases the light mixing distance, forms a longer optical path, and better improves light uniformity. At the same time, it enhances the overall strength of the lens 32 to ensure stable optical performance, simplifies assembly processes, and improves production efficiency and product reliability.
[0054] In some alternative embodiments, combined with Figure 1 , Figure 3 and Figure 5 The light source 31 is fixedly connected to the lens 32 by fasteners to form an optical module 30. This optical module 30 structure facilitates modular production and improves assembly efficiency; at the same time, it reduces independent brackets, lowers the overall size, and makes the whole unit more compact and lightweight. In addition, the optical module 30 design facilitates overall installation and positioning, ensures optical path alignment accuracy, improves optical performance consistency, and achieves miniaturization, high reliability, and efficient assembly.
[0055] Optionally, see Figure 5 The lens 32 also includes a connecting post 324. The light source 31 has a connecting hole 301. The connecting post 324 is connected to the connecting hole 301 by fasteners. As a protruding structure on the lens 32, the connecting post 324 can guide it to quickly align with the connecting hole 301 on the light source 31 during assembly, reducing assembly difficulty.
[0056] Alternatively, the lens 32 may also include a positioning post 325. The light source 31 has a positioning hole 302 that mates with the positioning post 325. This helps to further improve the assembly efficiency of the optical module 30.
[0057] According to some alternative embodiments, the edge of lens 32 is laser-welded to lamp holder 10. And / or, the edge of light-emitting mask 20 is laser-welded to lamp holder 10.
[0058] Specifically, the outer edge of the lamp holder 10 is locally thinned to facilitate laser penetration into this area, allowing it to act on the mating surface between the lens 32 and the lamp holder 10, achieving a secure laser weld. Especially when the position light 100 is used in vehicles, this excellent connection effectively resists severe vibrations during driving, preventing the lens 32 from loosening or detaching. This connection method enhances the structural stability of the position light 100, avoids the problems of aging and yellowing associated with traditional adhesive bonding, helps extend the lifespan of the lamp, and maintains a consistent appearance.
[0059] Similarly, the outer edge of the light-emitting mask 20 is locally thinned to facilitate laser penetration and laser welding with the edge of the lamp holder 10, ensuring assembly accuracy, improving the durability of the marker lamp 100, and further maintaining the uniform light effect of the marker.
[0060] In some specific embodiments, the edge of the lens 32 is laser-welded to the lamp holder 10. Alternatively, the edge of the light-emitting mask 20 is laser-welded to the lamp holder 10.
[0061] In some specific embodiments, to further ensure the structural stability of the marker light 100, the edges of the lens 32 and the light-emitting mask 20 are laser-welded to the lamp holder 10. This further improves the overall rigidity and ensures the stability and reliability of the marker light 100 during long-term use.
[0062] Optionally, the outer edge of the lamp holder 10 can be locally thinned to 2mm. This facilitates laser penetration and results in better welding.
[0063] Alternatively, the edge of the light-emitting mask 20 may be locally thinned to 2mm. This improves the penetration and connection reliability of laser welding.
[0064] Specifically, such as Figure 3 and Figure 5As shown, the light source 31 includes a first circuit board 311 and a second circuit board 312. The first circuit board 311 has lamp beads 3111 disposed facing the lens 32. The second circuit board 312 is electrically connected to the first circuit board 311, and the second circuit board 312 is a driver board.
[0065] The first circuit board 311 and the second circuit board 312 are arranged in a stacked structure, which is compact and helps to save space in the lamp chamber 101 and facilitates the miniaturization of the lamp.
[0066] The first circuit board 311 houses the LED beads 3111, ensuring a short and precise optical path for uniform light output. The second circuit board 312 is a driver board that manages and controls the electrical output of the LED beads 3111.
[0067] The separate design facilitates independent maintenance and replacement. Meanwhile, the stacked structure improves heat dissipation, ensuring stable operation of the 3111 LEDs and extending their lifespan.
[0068] Alternatively, the second circuit board 312 can also house other components, such as resistors, capacitors, connectors, or connection terminals.
[0069] Optionally, the first circuit board 311 and the second circuit board 312 are arranged at intervals along the thickness direction of the first circuit board 311, and the first circuit board 311 and the second circuit board 312 are fixedly connected by fasteners. This arrangement can make full use of the longitudinal space, making the overall layout more compact, which is conducive to reducing the size of the lamp body and adapting to narrow installation spaces. The fastener connection makes the structure sturdy and highly shock-resistant, preventing the light source component 31 from loosening due to vehicle vibration.
[0070] Alternatively, the fastener may be a self-tapping screw.
[0071] The first circuit board 311 has a plurality of LED beads 3111 arranged at intervals. By arranging the LED beads 3111 at intervals, the light-emitting points can be dispersed, avoiding the light from concentrating in a local area, which is conducive to forming a continuous and uniform light band on the light-emitting mask 20, and further improving the light uniformity effect.
[0072] Specifically, there are 12 LED beads (3111). These 12 LED beads are arranged in two rows, ensuring a uniform and reasonable distribution of light-emitting points along the width, effectively expanding the illumination coverage and preventing edge darkening. The even spacing of the LED beads in each row ensures consistent distribution of light-emitting points along the length, thereby improving the overall uniformity of light emission.
[0073] Further optional, combined Figures 1-4 and Figure 6The lamp holder 10 is provided with a vent 11, and the marker light 100 also includes a waterproof and breathable cap 40 that fits onto the vent 11. When a pressure difference occurs inside and outside the lamp, the waterproof and breathable cap 40 can achieve pressure balance and prevent sealing failure due to air pressure changes. The breathable membrane inside the waterproof and breathable cap 40 allows air to pass through but blocks water molecules from entering, effectively reducing or eliminating the condensation of water vapor inside the marker light 100.
[0074] A vehicle according to a second aspect of the present invention includes a marker light 100 according to a first aspect of the present invention.
[0075] It is worth noting that the type of vehicle in this application is not limited. Specifically, the vehicle can be a gasoline-powered vehicle, a natural gas-powered vehicle, or a new energy vehicle. New energy vehicles can be pure electric vehicles, hybrid electric vehicles, or range-extended electric vehicles, etc.
[0076] The vehicle using the improved marker lights 100 in this embodiment of the utility model can effectively improve the uniformity of light and further reduce the dullness of the appearance.
[0077] The following is for reference. Figure 1 - Figure 6 The marker light 100 according to an embodiment of the present invention will be described in detail with reference to a specific example. It is to be understood that the following description is merely illustrative and not intended to limit the scope of the invention.
[0078] Reference Figure 1 and Figure 2 The marker light 100 includes: a lamp holder 10, a light-emitting cover 20, a light source 31, and a lens 32.
[0079] The light-emitting mask 20 is connected to the lamp holder 10, and a lamp chamber cavity 101 is formed between the light-emitting mask 20 and the lamp holder 10.
[0080] The light source 31 is located inside the lamp chamber cavity 101.
[0081] The lens 32 is disposed inside the lamp chamber cavity 101 and is located between the light source 31 and the light-emitting mask 20. The light source 31 is fixedly connected to the lens 32 by fasteners to form an optical module 30.
[0082] Reference Figure 1 , Figure 3 and Figure 4 The light-emitting surface of the lens 32 and the light-incoming surface of the light-emitting mask 20 are both textured.
[0083] Textures include patterns and sunburst patterns.
[0084] Reference Figure 1 and Figure 3 Lens 32 includes: lens 321, reflector 322 and protrusion 323.
[0085] Lens 321 is disposed on the inner side of light-emitting mask 20. Reflector 322 is connected to the side of lens 321 facing the light source 31. Boss 323 is connected to the side of lens 321 facing the light-emitting mask 20, and texture is formed on boss 323.
[0086] The edge of lens 32 is laser-welded to lamp holder 10. The edge of light-emitting mask 20 is laser-welded to lamp holder 10.
[0087] Reference Figure 1 and Figure 5 The light source 31 includes a first circuit board 311 and a second circuit board 312. The first circuit board 311 has LED beads 3111 facing the lens 32, and multiple LED beads 3111 are arranged at intervals. The second circuit board 312 is electrically connected to the first circuit board 311, and the second circuit board 312 is a driver board.
[0088] The first circuit board 311 and the second circuit board 312 are arranged at intervals along the thickness direction of the first circuit board 311, and the first circuit board 311 and the second circuit board 312 are fixedly connected by fasteners.
[0089] Reference Figures 1-4 and Figure 6 The lamp holder 10 is provided with a vent hole 11, and the marker light 100 also includes a waterproof and breathable cap 40 that fits onto the vent hole 11.
[0090] Other components of the marker light 100 according to the present invention, such as the light source 31 and the light-emitting mask 20, as well as its operation, are known to those skilled in the art and will not be described in detail here.
[0091] In this specification, the terms "embodiment," "example," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0092] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A marker light, characterized in that, include: Lamp holder; A light-emitting mask is connected to the lamp holder, and a lamp chamber is formed between the light-emitting mask and the lamp holder; A light source element, wherein the light source element is disposed within the lamp chamber cavity; A lens is disposed within the lamp chamber cavity and located between the light source and the light-emitting mask; The light-emitting surface of the lens is arranged facing the light-incoming surface of the light-emitting mask, and at least one of them has a texture.
2. The marker light according to claim 1, characterized in that, The texture includes at least one of pattern and sun-dried texture.
3. The marker light according to claim 1, characterized in that, The lens includes: A lens, wherein the lens is disposed on the inner side of the light-emitting mask; A reflector cup is attached to the side of the lens facing the light source.
4. The marker light according to claim 3, characterized in that, The lens also includes: A boss is attached to the side of the lens facing the light-emitting mask, and the texture is formed on the boss.
5. The marker light according to claim 1, characterized in that, The light source is fixedly connected to the lens by fasteners to form an optical module.
6. The marker light according to claim 1, characterized in that, The edge of the lens is laser-welded to the lamp holder; and / or, the edge of the light-emitting mask is laser-welded to the lamp holder.
7. The marker light according to any one of claims 1-6, characterized in that, The light source includes: A first circuit board, wherein LED beads are arranged facing the lens; The second circuit board is electrically connected to the first circuit board, and the second circuit board is a driver board.
8. The marker light according to claim 7, characterized in that, The first circuit board and the second circuit board are arranged at intervals along the thickness direction of the first circuit board, and the first circuit board and the second circuit board are fixedly connected by fasteners; The first circuit board has a plurality of LED beads arranged at intervals.
9. The marker light according to any one of claims 1-6, characterized in that, The lamp holder is provided with a vent hole, and the marker light also includes a waterproof and breathable cap that fits into the vent hole.
10. A vehicle, characterized in that, Includes the marker light according to any one of claims 1-9.