Optical device for modifying light distribution
11255511 · 2022-02-22
Assignee
Inventors
Cpc classification
F21V5/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V7/0091
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C03B19/02
CHEMISTRY; METALLURGY
G02B19/0028
PHYSICS
F21V5/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C03B19/02
CHEMISTRY; METALLURGY
B29D11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An optical device includes a center section having a lens portion for modifying distribution of a first part of light emitted by a light source, and a peripheral section surrounding the center section and including a conical surface for modifying distribution of a second part of the light emitted by the light source. The conical surface includes ridges where total internal reflection takes place when a light beam arrives from the light source at one of side surfaces of each ridge, and surface penetration takes place when the reflected light beam arrives at the other side surface of the ridge under consideration. Thus, the conical surface acts both as a reflective surface and as a refractive surface for achieving a desired light distribution pattern.
Claims
1. An optical device for modifying light distribution, the optical device being made of transparent material, the optical device comprising: a center section comprising a lens portion configured to modify distribution of a first part of light emitted by a light source when the light source is located symmetrically with respect to a geometric optical axis of the optical device; and a peripheral section surrounding the center section, the peripheral section comprising a conical surface configured to modify distribution of a second part of the light emitted by the light source, the conical surface comprising ridges in which total internal reflection takes place when a light beam arrives, from the light source, at one of side surfaces of each of the ridges, and surface penetration takes place when the reflected light beam arrives at another one of the side surfaces of the respective ridge, the conical surface intersecting a geometric plane perpendicular to the geometric optical axis of the optical device along a closed path having a cogged shape, a cone angle of the conical surface opening in a light exit direction of the lens portion.
2. The optical device according to claim 1, wherein the center section is substantially rotationally symmetric with respect to the geometric optical axis, and tops of the ridges touch, as tangents, to a geometric conical surface substantially rotationally symmetric with respect to the geometric optical axis.
3. The optical device according to claim 2, wherein a cone angle of the geometric conical surface is in a range from 30 degrees to 90 degrees.
4. The optical device according to claim 3, wherein cross-sections of the ridges are substantially V-shaped.
5. The optical device according to claim 3, further comprising a flange section configured to mechanically support the center section and the peripheral section, the flange section being, in a direction of the geometric optical axis, between the conical surface and a light egress surface of the lens portion.
6. The optical device according to claim 3, wherein a light egress surface of the lens portion is convex.
7. The optical device according to claim 2, wherein cross-sections of the ridges are substantially V-shaped.
8. The optical device according to claim 2, further comprising a flange section configured to mechanically support the center section and the peripheral section, the flange section being, in a direction of the geometric optical axis, between the conical surface and a light egress surface of the lens portion.
9. The optical device according to claim 2, wherein a light egress surface of the lens portion is convex.
10. The optical device according to claim 1, wherein cross-sections of the ridges are substantially V-shaped.
11. The optical device according to claim 10, wherein an angle between the side surfaces of each of the ridges is in a range from 55 degrees to 70 degrees.
12. The optical device according to claim 11, further comprising a flange section configured to mechanically support the center section and the peripheral section, the flange section being, in a direction of the geometric optical axis, between the conical surface and a light egress surface of the lens portion.
13. The optical device according to claim 10, further comprising a flange section configured to mechanically support the center section and the peripheral section, the flange section being, in a direction of the geometric optical axis, between the conical surface and a light egress surface of the lens portion.
14. The optical device according to claim 10, wherein a light egress surface of the lens portion is convex.
15. The optical device according to claim 1, further comprising a flange section configured to mechanically support the center section and the peripheral section, the flange section being, in a direction of the geometric optical axis, between the conical surface and a light egress surface of the lens portion.
16. The optical device according to claim 15, wherein the light egress surface of the lens portion is convex.
17. The optical device according to claim 1, wherein a light egress surface of the lens portion is convex.
18. The optical device according to claim 1, wherein the transparent material is one of the following: acrylic plastic, polycarbonate, optical silicone, and glass.
19. An illumination device comprising: a light source; and an optical device configured to modify a distribution of light emitted by the light source, the light source being located symmetrically with respect to a geometric optical axis of the optical device, the optical device being made of transparent material, the optical device comprising a center section comprising a lens portion configured to modify distribution of a first part of the light emitted by the light source, and a peripheral section surrounding the center section, the peripheral section comprising a conical surface configured to modify distribution of a second part of the light emitted by the light source, the conical surface comprising ridges in which total internal reflection takes place when a light beam arrives, from the light source, at one of side surfaces of each of the ridges, and surface penetration takes place when the reflected light beam arrives at another one of the side surfaces of the respective ridge, the conical surface intersecting a geometric plane perpendicular to the geometric optical axis of the optical device along a closed path having a cogged shape, a cone angle of the conical surface opening in a light exit direction of the lens portion.
20. A mold having a form configured to manufacture, by mold casting, a transparent piece constituting an optical device comprising: a center section comprising a lens portion configured to modify distribution of a first part of light emitted by a light source when the light source is located symmetrically with respect to a geometric optical axis of the optical device; and a peripheral section surrounding the center section, the peripheral section comprising a conical surface configured to modify distribution of a second part of the light emitted by the light source, the conical surface comprising ridges in which total internal reflection takes place when a light beam arrives, from the light source, at one of side surfaces of each of the ridges, and surface penetration takes place when the reflected light beam arrives at another one of the side surfaces of the respective ridge, the conical surface intersecting a geometric plane perpendicular to the geometric optical axis of the optical device along a closed path having a cogged shape, a cone angle of the conical surface opening in a light exit direction of the lens portion.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The exemplifying and non-limiting embodiments of the invention and their advantages are explained in greater detail below with reference to the accompanying drawings, in which:
(2)
(3)
(4)
DESCRIPTION OF EXEMPLIFYING AND NON-LIMITING EMBODIMENTS
(5) The specific examples provided in the description given below should not be construed as limiting the scope and/or the applicability of the appended claims. Lists and groups of examples provided in the description given below are not exhaustive unless otherwise explicitly stated.
(6)
(7) The optical device 201 comprises a center section 202 that comprises a lens portion 204 for modifying the distribution of a first part of the light emitted by the light source 220. In this exemplifying case, a light egress surface of the lens portion 204 is convex and a light ingress surface of the lens portion 204 comprises a concave center part and a flat part surrounding the concave center part. The optical device 201 comprises a peripheral section 203 surrounding the center section 202 and comprising a conical surface 205 for modifying distribution of a second part of the light emitted by the light source. In
(8) As illustrated in
(9) In the exemplifying optical device 201 illustrated in
(10) In the exemplifying optical device 201 illustrated in
(11) The exemplifying optical device 201 illustrated in
(12) In an optical device according to an exemplifying and non-limiting embodiment of the invention, the light ingress surface of the lens portion 204 is a color mixing surface so that it comprises converging and diverging portions located alternately with respect each other. In a color mixing surface, light beams exhibiting different wavelengths are effectively mixed thus producing a light pattern which contains all wavelengths evenly distributed across the pattern. Thus, the color mixing surface mixes light beams representing different colors, i.e. different wavelengths, resulting from possible nonidealities of a light source.
(13) The specific examples provided in the description given above should not be construed as limiting the scope and/or the applicability of the appended claims. Lists and groups of examples provided in the description given above are not exhaustive unless otherwise explicitly stated.