Lighting device integrating pair of light functions with collimating elements associated with primary light sources and light guiding elements associated with secondary light sources
10746372 ยท 2020-08-18
Assignee
Inventors
Cpc classification
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/315
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/237
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/249
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S43/249
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/239
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a lighting device with a multiple light function, which comprises a primary light source and secondary light source (2a, 2b) associated with optical elements which are adapted to guide light to the output of the device. The primary light source (2a) is associated with collimating elements (4) and the secondary light source (2b) is associated with light guiding elements (3), whereby the collimating elements (4) and the light guiding elements (3) are arranged in a common light guiding body (A), the output of the light beams is situated behind the level (6) of the exit ends of the collimating elements (4) and on the output side of light guiding body (A) a light scattering filter (7) is arranged.
Claims
1. A lighting device with a multiple light function comprising: a plurality of primary light sources for emitting light beams; a plurality of secondary light source for emitting light beams; optical elements adapted to receive and guide the light beams from the primary light sources and the secondary light sources, the optical elements including collimating elements associated with the primary light sources and light guiding elements associated with the secondary light sources, the collimating elements and the light guiding elements being arranged in a light guiding body, an output of the light beams from the light guiding elements being situated in a direction of light propagation beyond a level of exit ends of the collimating elements; and a light scattering filter located to receive and scatter the light beams received from the optical elements.
2. The lighting device with a multiple light function according to claim 1, wherein the light guiding body is a one-piece light guiding body including the collimating elements and the light guiding elements.
3. The lighting device with a multiple light function according to claim 1, wherein the collimating elements are formed unitarily in the light guiding body, the light guiding body defining apertures between the collimating elements, the light guiding elements including separate elements located in the apertures, the light guiding elements each having an output surface configured as a circular end surface.
4. The lighting device with a multiple light function according to claim 1, wherein the light guiding body is configured as a flat light guide having a rear portion on which the light guiding elements and the collimating elements are arranged, each of the collimating elements being associated with a respective one of the primary light sources and each of the light guiding elements being associated with a respective one of the secondary light sources, the light guiding elements being arranged on the rear portion so that longitudinal axes of the light guiding elements align with a plane of the flat light guide, the collimating elements being arranged on the rear portion so that longitudinal axes of the collimating elements align with reflective surfaces of the light guiding body for reflecting the light beams from the collimating elements into the plane of the flat light guide.
5. The lighting device with a multiple light function according to claim 1, wherein the primary light sources and the secondary light sources are mounted on a common carrier.
6. The lighting device with a multiple light function according to claim 1, wherein the primary light sources and the secondary light sources are mounted on a common carrier in a common plane.
7. The lighting device with a multiple light function according to claim 1, wherein the primary light sources and the secondary light sources are mounted on separate carriers.
8. The lighting device with a multiple light function according to claim 1, wherein the light guiding elements are each configured with a cylindrical shape.
9. The lighting device with a multiple light function according to claim 1, wherein the light guiding elements are each configured with a frustoconical shape.
10. The lighting device with a multiple light function according to claim 1, wherein the collimating elements are each configured with a rotational collimating reflective surface having a center with an input surface for receiving the light beams from a respective one of the primary light sources, the input surfaces each being configured as a hollow, slightly conical surface with a concave face.
11. The lighting device with a multiple light function according to claim 1, wherein the primary light sources and the secondary light sources each include respective LED arrays arranged in a matrix.
Description
DESCRIPTION OF DRAWINGS
(1) The invention is schematically illustrated in the drawings, wherein
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DETAILED DESCRIPTION
(12) The invention will be described with reference to exemplary embodiments of a lighting device with a multiple light function, wherein for one light function high light scattering and high light homogeneity are required, and for the second light function, a small light scattering and low light homogeneity is required, but a high output light power, with the light sources of the two different light functions being located on the same, i.e., common carrier, which is, however, not a necessary condition of the invention.
(13) The lighting device comprises a carrier 1 of primary light sources 2a and secondary light sources 2b. In an embodiment shown, the carrier 1 consists of a common PCB 1 (printed circuit board), on which, preferably as a pair of matrices in a mutually interleaved configuration, are mounted primary light sources 2a and secondary light sources 2b, which are connected via PCB 1 to an unillustrated power source and an unillustrated control device. In another exemplary embodiment, e.g. in
(14) Opposite the primary light sources 2a, collimating elements 4 of a light guiding body A are arranged and opposite the secondary light sources 2b, light guiding elements 3 of the light guiding body A are arranged. The primary light sources 2a are part of the optical system to meet the light output characteristic of the first light function, see
(15) In the exemplary embodiments shown, the light guiding elements 3 are formed by cylindrical light guiding elements, which guide light from the secondary light sources 2b through reflections from the circumferential wall of the light guide into the output of the lighting device according to the device. In an unillustrated embodiment, the light guiding elements 3 consist of truncated cones with a slight inclination of the conical surface with respect to the longitudinal axis of the cone of the light guiding element 3, i.e., to the height, which is advantageous, e.g., to facilitate the removal of an optical component from a production mold.
(16) The collimating elements 4 have a known shape of rotational collimating reflective surface 40 in whose center is arranged an input surface 41 of light from the associated primary light source 2a, the input surface 41 of the light of the collimating element 4 being formed by a hollow, slightly conical surface with a concave face 42.
(17) The plane matrix distribution of the collimating elements 4 and of the light guiding elements 3 corresponds to the plane matrix arrangement of the primary light sources 2a and the secondary light sources 2b. In the exemplary embodiments shown, the primary light sources 2a and secondary light sources 2b are arranged in mutually interleaved square matrices (patterns). In an unillustrated embodiment, the primary light sources 2a and secondary light sources 2b are arranged in other mutually corresponding planar patterns to provide different light functions at the output of the lighting device according to the invention.
(18) In an embodiment of
(19) In an embodiment in
(20) By the cylindrical or slightly conical design of the light guiding elements 3 it is achieved that the output characteristic of the light beams which come out from the light guiding elements 3 above the level 6 of the output ends of the collimating elements 4 is substantially identical to the output characteristic of the light beams coming out directly from the secondary light sources 2b, i.e., as if the secondary light sources 2b were located immediately above the level 6 of the output ends of the collimating elements 4.
(21) In the exemplary embodiments shown, the primary and the secondary light sources 2a and 2b are arranged in a common plane, which allows, with advantage, their installation on a common PCB 1, constituting their carrier, whereby the collimating elements 4 and the light guiding elements 3 have a mutually corresponding or identical length. In an unillustrated embodiment, the collimating elements 4 and the light guiding elements 3 have mutually different lengths and, consequently, the primary and secondary light sources 2a and 2b are arranged in mutually different height positions corresponding to the different lengths of the collimating elements 4 and of the light guiding elements 3. Apparently, the length variability of the system of the collimating elements 4 and light guiding elements 3 and the relative height position of the primary and secondary light sources 2a and 2b is possible and allows spatial arrangement of the entire system within the required volume and area according to the current requirements.
(22) To achieve the desired homogeneity of the output light beam, a light scattering filter 7 for improving the lateral scattering of the light beams from the light sources 2a and the secondary light sources 2b is located beyond the light guiding body A in the direction of the light beam path from light guiding body A, or from the collimating elements 4 and the light guiding elements 3. For improved lateral scattering of these light beams, the common output surface A of the light guiding body A or the upper surface A01 and/or the circular upper surface 8 of the light guiding elements 3 in the form of separate optical elements is suitably shaped, e.g., by a convex rounding, etc. The light scattering filter 7 is either clear, or has a milky white color, or, optionally, it is provided on its output side with optical elements 70 or with the so-called graining, or by leading-out optics, etc. In the embodiment in
(23) In an embodiment in
(24) In an embodiment of