IP Library Granted Patent US 12,078,339
Granted Patent B2
US 12,078,339 · App. 18/146,202 · Granted Sep 3, 2024

Vehicle lamp with inclined micro-lens array

Inventors: Dong Hwa Kang (Yongin-si, KR); Hyun Soo Lee (Yongin-si, KR)
Assignee: HYUNDAI MOBIS CO., LTD.
F21V5/007F21V5/004F21V5/008F21V5/046
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Quick Facts
Patent No.
US 12,078,339
App. No.
18/146,202
Granted
Sep 3, 2024
Kind
B2
Abstract

A lamp for a vehicle includes a light source part, a first lens part including a plurality of first micro lenses receiving the light from the light source part, a second lens part including a plurality of second micro lenses that outputs light received from the first lens part to form a specific beam pattern, and a plurality of unit masks located between the first and second lens parts. The light from the light source part defines a first optical axis, and the light output from the second lens part defines a second optical axis inclined with respect to the first optical axis, such that it faces a road surface.

Claims (38)

1. A lamp for a vehicle comprising:

a light source part configured to generate and output light in a first direction defining a first optical axis; and

a lens array provided on a front side of the light source part, the lens array comprising:

a first lens part comprising a plurality of first micro lenses to which the light is input from the light source part;

a second lens part comprising a plurality of second micro lenses configured to output the light input from the first lens part in a second direction defining a second optical axis, and form a specific beam pattern,

wherein the second optical axis is inclined with respect to the first optical axis such that, when installed in a vehicle, the lens array faces a road surface; and

a shield part located between the first lens part and the second lens part, and configured to shield a portion of the light input from the first lens part toward the second lens part to form a specific beam pattern on the road surface;

wherein the shield part comprises a plurality of unit masks that correspond to the plurality of second micro lenses, and in which masking patterns for forming the beam pattern are formed, and the plurality of unit masks are disposed to become farther from the second micro lenses as they go to a lower side of the lens array.

2. The lamp of claim 1 , wherein the first lens part includes a first light transmitting body, in which the first micro lenses are provided on a surface that faces the light source part, and configured to transmit the light, and

the second lens part includes a second light transmitting body provided to face the first transmitting body while the shield part being interposed therebetween, in which the second micro lenses are provided on a surface that faces an opposite direction to the direction that faces the first light transmitting body, and configured to transmit the light.

3. The lamp of claim 1 , wherein the lens array is inclined with respect to a plane that is perpendicular to the first optical axis such that the second optical axis forms a specific angle with respect to the first optical axis.

4. The lamp of claim 1 , wherein radii of curvature of the plurality of second micro lenses gradually increase as they go downwards.

5. The lamp of claim 1 , wherein the light source part comprises:

a light source configured to generate light; and

a collimator configured to convert the light generated by the light source and input the light to the lens array.

6. A lamp for a vehicle comprising:

a light source part configured to generate and output light in a first direction defining a first optical axis; and

a lens array provided on a front side of the light source part, the lens array comprising:

a first lens part comprising a plurality of first micro lenses to which the light is input from the light source part;

a second lens part comprising a plurality of second micro lenses configured to output the light input from the first lens part in a second direction defining a second optical axis, and form a specific beam pattern,

wherein the second optical axis is inclined with respect to the first optical axis such that, when installed in a vehicle, the lens array faces a road surface; and

a shield part located between the first lens part and the second lens part, and configured to shield a portion of the light input from the first lens part toward the second lens part to form a specific beam pattern on the road surface;

wherein the first lens part comprises a first light transmitting body, in which the first micro lenses are on a surface that faces the light source part, and configured to transmit the light, and

the second lens part comprises a second light transmitting body that faces the first transmitting body while the shield part being interposed therebetween, in which the second micro lenses are on a surface that faces an opposite direction to the direction that faces the first light transmitting body, and configured to transmit the light;

wherein an input surface of the first light transmitting body, which faces the light source part, is perpendicular to the first optical axis, and

a surface of the second light transmitting body, which faces an opposite direction to the direction that faces the light source part, is inclined with respect to the input surface to become closer to the input surface as it goes downwards.

7. The lamp of claim 6 , wherein the shield part is configured to be parallel to the output surface.

8. The lamp of claim 6 , wherein radii of curvature of the plurality of first micro lenses gradually decrease as they go downwards.

9. A lamp for a vehicle comprising:

a light source part configured to generate and output light in a first direction defining a first optical axis; and

a lens array provided on a front side of the light source part, the lens array comprising:

a first lens part comprising a plurality of first micro lenses to which the light is input from the light source part;

a second lens part comprising a plurality of second micro lenses configured to output the light input from the first lens part in a second direction defining a second optical axis, and form a specific beam pattern,

wherein the second optical axis is inclined with respect to the first optical axis such that, when installed in a vehicle, the lens array faces a road surface; and

a shield part located between the first lens part and the second lens part, and configured to shield a portion of the light input from the first lens part toward the second lens part to form a specific beam pattern on the road surface;

wherein the shield part is closer to the first micro lenses than to the second micro lenses.

10. The lamp of claim 9 , wherein the shield part is directly attached to the first micro lenses.

11. The lamp of claim 9 , wherein radii of curvature of the plurality of first micro lenses decrease as they become farther from a central portion, through which the first optical axis passes, when the lens array is viewed from a rear side.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2022
From: KANG, DONG HWA; LEE, HYUN SOO
To: HYUNDAI MOBIS CO., LTD.
Reel/Frame 062228/0085 →
Priority Claims (1)
KR 10-2022-0055213 · May 4, 2022 · national
Continuity (1)
Related Publication 20230358388A1 · Nov 9, 2023
Cited By (1)
US 12,460,784