Lamp for vehicle and vehicle including the same
11644169 · 2023-05-09
Assignee
Inventors
Cpc classification
F21S41/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/192
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/151
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/47
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/143
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lamp for a vehicle, the lamp including a plurality of optical modules, in which the plurality of optical modules each includes a light source configured to emit light, an inner lens disposed forward of the light source, a lens holder disposed at one side of the inner lens and provided to be in close contact with the inner lens, and a bezel disposed at the other side of the inner lens and provided to be in close contact with the inner lens, in which a through-hole is provided in at least one lateral surface of the lens holder so that the light emitted from the light source passes through the through-hole.
Claims
1. A lamp for a vehicle, the lamp comprising: a plurality of optical modules, each module comprising: a light source configured to emit light; an inner lens disposed forward of the light source; a lens holder disposed at one side of the inner lens and in contact with the inner lens; and a bezel disposed at another side of the inner lens and in contact with the inner lens, wherein a through-hole is provided in at least one lateral surface of the lens holder so that the light emitted from the light source passes through the through-hole.
2. The lamp of claim 1, wherein the bezel includes a light transmissive material.
3. The lamp of claim 1, wherein the plurality of optical modules is disposed in a leftward/rightward direction, wherein the lens holder comprises a first holder region disposed rearward of the inner lens and configured to press at least a part of a rear surface of the inner lens; and a second holder region extending rearward from one end of the first holder region based on the leftward/rightward direction, and wherein the through-hole includes a lateral through-hole provided in the second holder region.
4. The lamp of claim 3, wherein the bezel comprises: a first bezel region disposed forward of the inner lens and configured to press at least a part of a front surface of the inner lens; and a second bezel region extending rearward from one end of the first bezel region based on the leftward/rightward direction, wherein the second bezel region faces the second holder region in the leftward/rightward direction.
5. The lamp of claim 4, wherein the lens holder further comprises a third holder region extending rearward from one end of the first holder region based on an upward/downward direction, and the third holder region is made of a non-transmissive material.
6. The lamp of claim 4, wherein the first bezel region is disposed to face a peripheral region of the front surface of the inner lens, and a central region of the first bezel region is open in a forward/rearward direction.
7. The lamp of claim 4, wherein the plurality of optical modules comprises: a first optical module; and a second optical module disposed adjacent one side of the first optical module in the leftward/rightward direction, and wherein the first bezel region of the first optical module and the second bezel region of the second optical module are integrated.
8. The lamp of claim 5, wherein the lens holder further comprises a fourth holder region extending forward from one end of the first holder region based on the leftward/rightward direction and configured to surround the inner lens from outside in the leftward/rightward direction.
9. The lamp of claim 8, wherein the fourth holder region is in contact with a rear surface of the first bezel region.
10. The lamp of claim 8, wherein the lens holder further comprises a fifth holder region extending forward from one end of the first holder region based on the upward/downward direction and configured to surround the inner lens from outside in the upward/downward direction.
11. The lamp of claim 10, wherein the fifth holder region is in contact with a rear surface of the first bezel region.
12. The lamp of claim 3, wherein the lateral through-hole comprises a plurality of through-holes, and the plurality of lateral through-holes is provided in the second holder region and spaced apart from one another in an upward/downward direction.
13. The lamp of claim 4, further comprising: an optic member having light transmissivity and in contact with a front surface of the first bezel region, wherein the optic member has a shape having a length in a forward/rearward direction that increases in a downward direction.
14. The lamp of claim 13, wherein the optic member has a triangular prismatic shape.
15. The lamp of claim 13, wherein the optic member comprises a plurality of optic members, and the plurality of optic members is disposed along a peripheral region of the first bezel region.
16. The lamp of claim 1, wherein the inner lens is a micro-lens array (MLA).
17. The lamp of claim 1, further comprising: a collimator disposed between the light source and the inner lens; and a heat sink in contact with a rear portion of the light source.
18. The lamp of claim 1, wherein the plurality of optical modules is spaced apart from one another in a leftward/rightward direction, and wherein the lamp further comprises: an additional light source disposed between the two optical modules adjacent each other in the leftward/rightward direction; and an additional bezel disposed forward of the additional light source and having two opposite ends disposed in the leftward/rightward direction and in contact with the bezels respectively provided in the two optical modules.
19. The lamp of claim 18, wherein the bezel and the additional bezel have different geometric shapes.
20. A vehicle comprising: a lamp comprising a plurality of optical modules, each optical module comprising: a light source configured to emit light; an inner lens disposed forward of the light source; a lens holder disposed at one side of the inner lens and in contact with the inner lens; and a bezel disposed at another side of the inner lens and in contact with the inner lens, wherein a through-hole is provided in at least one lateral surface of the lens holder so that the light emitted from the light source passes through the through-hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION
(10) Hereinafter, a lamp for a vehicle and a vehicle according to the present disclosure will be described with reference to the drawings.
(11) Lamp for Vehicle
(12)
(13) Referring to
(14) The plurality of optical modules 100 may each include: a light source 110 configured to emit light; an inner lens 120 disposed forward of the light source 110; a lens holder 130 disposed at one side of the inner lens 120 and provided to be in close contact with the inner lens 120; and a bezel 140 disposed at the other side of the inner lens 120 and provided to be in close contact with the inner lens 120. That is, according to the present disclosure, the lens holder 130 and the bezel 140 may fix the inner lens 120 by being in close contact with the inner lens 120.
(15) In this case, as illustrated in
(16) As illustrated in
(17) However, as described above, according to the present disclosure, because the through-hole S is formed in the lens holder 130, at least some of the light beams, which are emitted from the light source 110 and reach the lens holder 130, may propagate to the outside through the through-hole S. Therefore, according to the present disclosure, a relatively large unit beam pattern may be formed in one direction by the optical module 100 in comparison with a case in which no through-hole S is formed.
(18) More specifically, as illustrated in
(19) Meanwhile, it should be interpreted that the configuration in which the plurality of optical modules 100 is disposed in the leftward/rightward direction W may include a case in which the optical modules 100 are disposed so that the distance from the rear side to the optical module increases in one direction of the leftward/rightward direction W, as illustrated in
(20) Meanwhile, similar to the lens holder 130, the bezel 140 may also be divided into a plurality of regions. For example, the bezel 140 may include: a first bezel region 141 disposed forward of the inner lens 120 and configured to press at least a part of a front surface of the inner lens 120; and a second bezel region 142 extending rearward from one end of the first bezel region 141 based on the leftward/rightward direction W. In this case, as illustrated in
(21) Meanwhile, referring to
(22) In this case, according to the present disclosure, the third holder region 133 may be made of a non-transmissive material, and the third holder region 133 may have no through-hole S. Therefore, according to the present disclosure, the light emitted from the light source 110 of the optical module 100 may not propagate to the outside through the upper and lower surfaces of the lens holder 130. Therefore, according to the present disclosure, the unit beam pattern formed by the optical module 100 may be expanded in the leftward/rightward direction without being expanded in the upward/downward direction. Therefore, the beam pattern (e.g., the low beam light distribution pattern) may meet the prescribed regulations.
(23) Meanwhile, the first bezel region 141 may be disposed to face a peripheral region of the front surface of the inner lens 120. A central region of the first bezel region 141 may be opened in the forward/rearward direction. Therefore, the first bezel region 141 may press the peripheral region of the inner lens 120.
(24) Meanwhile, as illustrated in
(25) The above-mentioned contents may be equally applied to the two optical modules 100 disposed adjacent to each other in the leftward/rightward direction W in the lamp 10 according to the present disclosure. In this case, the plurality of bezels 140 constituting the plurality of optical modules 100 provided in the lamp 10 according to the present disclosure may be integrated. However, the bezels 140 provided in the respective optical modules 100 may be separately provided.
(26) Referring to
(27) In addition, as illustrated in
(28)
(29) The contents described above with reference to
(30) That is, referring to
(31) The optic member 150 provided in the lamp 10 according to another embodiment of the present disclosure may be configured to refract downward the light exiting the first bezel region 141 and allow the light to propagate to the outside. Therefore, according to another embodiment of the present disclosure, the optic member 150 may more effectively form the beam pattern (e.g., the low beam light distribution pattern) that meets the prescribed regulations. Further, the optic member 150 may prevent the internal components in the optical module 100 from being visible from the outside.
(32) To this end, the optic member 150 may have a shape having a length in the forward/rearward direction that increases in the downward direction. For example, as illustrated in
(33)
(34) The contents described above with reference to
(35) That is, as illustrated in
(36) The additional light source 210 and the additional bezel 220 according to still another embodiment of the present disclosure may be configured to allow the beam pattern formed by the lamp 10 according to the present disclosure to have more continuous brightness. Therefore, the components such as the inner lens may not be provided between the additional light source 210 and the additional bezel 220 because the additional beam pattern only needs to be formed by the additional light source 210 and the additional bezel 220 in the region between the two unit beam patterns respectively formed by the two adjacent optical modules 100. Furthermore, the additional bezel 220 only needs to fill the space between the two bezels 140 respectively provided in the two adjacent optical modules 100. Therefore, the bezel 140 and the additional bezel 220 may have different geometric shapes.
(37) Meanwhile, the inner lens 120 provided in the lamp 10 according to the present disclosure may be a micro-lens array (MLA). However, the type of inner lens 120 is not limited thereto.
(38) In addition, the lamp 10 according to the present disclosure may further include a collimator 160 disposed between the light source 110 and the inner lens 120, and a heat sink 170 provided to be in contact with a rear portion of the light source 110.
(39) Vehicle
(40) A vehicle according to the present disclosure may include the lamp 10 for a vehicle including the plurality of optical modules 100. The lamp 10 may be a headlamp, for example, a low beam headlamp.
(41) The plurality of optical modules 100 may each include: the light source 110 configured to emit light; the inner lens 120 disposed forward of the light source 110; the lens holder 130 disposed at one side of the inner lens 120 and provided to be in close contact with the inner lens 120; and the bezel 140 disposed at the other side of the inner lens 120 and provided to be in close contact with the inner lens 120.
(42) In this case, according to the present disclosure, the through-hole S may be provided in at least one lateral surface of the lens holder 130 and allow the light emitted from the light source 110 to pass through the through-hole S.
(43) Meanwhile, the above-mentioned contents related to the lamp according to the present disclosure may be equally applied to the vehicle according to the present disclosure, and vice versa.
(44) The present disclosure has been described with reference to the limited embodiments and the drawings, but the present disclosure is not limited thereto. The present disclosure may be carried out in various forms by those skilled in the art, to which the present disclosure pertains, within the technical spirit of the present disclosure and the scope equivalent to the appended claims.