LED light with light filter device
11313520 · 2022-04-26
Assignee
Inventors
Cpc classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/69
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C03C4/08
CHEMISTRY; METALLURGY
International classification
F21K9/69
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C03C4/08
CHEMISTRY; METALLURGY
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention provides a lamp comprising: an LED light source; a lens comprising an incident surface and an emergent surface, the incident surface defining a first cavity, and the emergent surface comprising an annular protuberance thereon; and a light filter device accommodated within a space defined by the annular protuberance of the lens, wherein, the LED light source is situated within or proximate to the first cavity, to enable light emitted from the LED light source entering the lens from the incident surface and exiting the lens from the emergent surface to be at least partially transmitted through the light filter device.
Claims
1. A LED lamp, comprising: a LED light source; a lens comprising a body having an incident surface and an emergent surface, the incident surface defining a first cavity being substantially in a bottom portion of the lens body, and the emergent surface (i) defining a top surface of the lens body and (ii) comprising an annular protuberance protruding from the emergent surface; and a light filter device accommodated within a space defined by the annular protuberance; wherein, the LED light source is situated within or proximate to the first cavity, to enable light emitted from the LED light source entering the lens from the incident surface and exiting the lens from the emergent surface to be at least partially transmitted through the light filter device.
2. The LED lamp according to claim 1, wherein the light filter device comprises a substrate and a light filter material distributed in the substrate, and the substrate is one of a transparent glass substrate and a transparent resin substrate.
3. The LED lamp according to claim 2, wherein the light filter material comprises a compound containing neodymium, and the light filter device comprises 2-5 weight percent of said compound containing neodymium.
4. The LED lamp according to claim 3, wherein the light filter material comprises neodymium oxide.
5. The LED lamp according to claim 1, wherein the lens is made of a material selected from glass, resin and combinations thereof.
6. The LED lamp according to claim 1, wherein the light filter device is a circular light filter plate, and a radius of the circle light filter plate is between about 60 to 90% of a radius of the emergent surface.
7. The LED lamp according to claim 1, wherein the light filter device comprises a spherical cap structure having a radius less than and equal to 84 millimeters.
8. The LED lamp according to claim 1, wherein the light filter device is fixed to the space by a transparent adhesive, the transparent adhesive is selected from silica gel adhesives, epoxy resin adhesives, polyurethane adhesives, phenolic resin adhesives and combinations thereof.
9. The LED lamp according to claim 1, wherein the light filter device is fixed to the space by at least one of a clasp connection, a thread connection, a screw connection and interference connection.
10. The LED lamp according to claim 1, further comprising: a shell configured to fix the lens and form a second cavity with the lens, the shell comprising a base configured to be coupled to an external power supply; a printed circuit board situated in the second cavity, and configured to mount the LED light source; and a driving module coupled to the LED light source and the printed circuit board, the driving module situated in the second cavity and configured to adjust a current supplied to the LED light source.
11. An LED device, comprising: a LED light source; a lens comprising (i) a body having an incident surface defining a first cavity and (ii) an emergent surface; and a light filter device accommodated within a space defined by an annular protuberance of the emergent surface; wherein, the LED light source is situated within or proximate to the first cavity, to enable light emitted from the LED light source entering the lens from the incident surface and exiting the lens from the emergent surface to be at least partially transmitted through the light filter device.
12. The LED device according to claim 11, wherein the light filter device comprises a substrate and a light filter material distributed in the substrate, and the substrate is one of a transparent glass substrate and a transparent resin substrate.
13. The LED device according to claim 12, wherein the light filter material is selected from materials capable of absorbing light having a wavelength in the region of 575 nm to 600 nm.
14. The LED device according to claim 13, wherein light filter material is a compound consisting of a lanthanum element.
15. The LED device according to claim 14, wherein the lanthanum element is antimony trioxide.
16. The LED device according to claim 12, wherein the light filter device is a transparent glass plate whose substrate is glass and the light filter material is Nd.sub.2O.sub.3.
17. The LED device according to claim 16, wherein the light filter device is prepared by adding particles containing Nd.sub.2O.sub.3 during the preparation of the glass plate.
18. The LED device according to claim 11, wherein the light filter device is embedded into a groove formed on the emergent surface.
19. The LED device according to claim 11, wherein the space is a circular groove.
20. The LED device according to claim 11, wherein the light filter device and the lens are integrally formed separately, and are positioned by the annular protuberance, and then assembled together using an adhesive or a mechanical structure.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) Embodiments of the present application are described with reference to the accompanying drawings, so that the present invention can be better understood. In the accompanying drawings:
(2)
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DETAILED DESCRIPTION OF EMBODIMENTS
(8) The embodiments of the present invention will be described below in detail with reference to the accompanying drawings in order to facilitate those skilled in the art to exactly understand the subject matter claimed by the present invention. In the following detailed description of these specific embodiments, the present specification does not describe in detail any of the known functions or configurations, to avoid unnecessary details that may affect the disclosure of the present invention.
(9) Unless otherwise defined, the technical and scientific terms used in the claims and the specification are as they are usually understood by those skilled in the art to which the present invention pertains. “First”, “second” and similar words used in the specification and the claims do not denote any order, quantity or importance, but are merely intended to distinguish between different constituents. The terms “one”, “a” and similar words are not meant to be limiting, but rather denote the presence of at least one. “Comprising”, “consisting of” and similar words mean that the elements or articles appearing before “comprising” or “consisting of” include the elements or articles and their equivalent elements appearing behind “comprising” or “consisting of”, not excluding any other elements or articles. “Connected”, “coupled” and similar words are not restricted to physical or mechanical connections, but may also include electrical connections, whether direct or indirect. In addition, terms indicating a specific position, such as “top”, “bottom”, “upper”, “lower”, “front”, and “back”, etc., are merely descriptions made with reference to the specific drawings. Each embodiment disclosed herein may be placed in different ways as illustrated in the drawings of the present invention. Therefore, the positional terms used herein should not be limited to the positions shown in the specific embodiments.
(10)
(11) As shown in
(12) As shown in
(13) With continued reference to
(14) In the embodiment shown in
(15) In some embodiments, as shown in
(16) As shown in
(17) In the embodiment shown in
(18) In some embodiments, the light filter device comprises a substrate and a light filter material, the light filter material being doped in the substrate. Wherein, the substrate is a transparent glass substrate or a transparent resin substrate, and the light filter material is selected from materials capable of absorbing light having a wavelength in the region of 575 nm to 600 nm, including but not limited to rare earth oxides. In some embodiments, the light filter material is a compound consisting a lanthanum element, such as antimony trioxide (Nd.sub.2O.sub.3), for increasing the radiant intensity of red light in the spectral band of the output light, and improving the color rendering of the LED. In some embodiments, the color of the light filter device varies depending on the amount of the cerium-containing compound added, which is a transparent blue color when the content is low, and a transparent purple color when the content is high.
(19) In some embodiments, the light filter device is a transparent glass plate whose substrate is glass and the light filter material is Nd.sub.2O.sub.3. The light filter device is prepared by adding particles containing Nd.sub.2O.sub.3 during the preparation of a conventional glass plate.
(20)
(21) As can be seen from
(22) As can be seen from the above embodiments, the present application combines a light filter device comprising a light filter material with a lens to increase the radiant intensity of red light in the spectral band of the LED output light and improve the color rendering of the LED. Moreover, the light filter device is embedded into the groove formed on the emergent surface of the lens, the installation is simple and quick, thereby improving work efficiency.
(23) While the present invention has been described in connection with the specific embodiments, it will be understood by those skilled in the art that many modifications and variations can be made in the present application. It is, therefore, to be understood that the appended claims are intended to cover all such modifications and variations insofar as they are within the concept and scope of the invention.