Lighting device having a remote wavelength converting layer
US-2015146407-A1 · May 28, 2015 · US
US9612002B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9612002-B2 |
| Application number | US-201314056328-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 17, 2013 |
| Priority date | Oct 18, 2012 |
| Publication date | Apr 4, 2017 |
| Grant date | Apr 4, 2017 |
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LED based lamps are disclosed. In an embodiment, an LED based lamp includes a concave optical diffuser, a concave neodymium-doped glass bulb, a reflector, a printed circuit board that includes a plurality of light-emitting diodes (LEDs) configured to emit light, and a heat sink body. The concave optical diffuser has a first interior volume, and the concave neodymium-doped glass bulb is positioned within the first interior volume. The neodymium-doped glass bulb defines a second interior volume, and both the reflector and the printed circuit board are positioned within the second interior volume. The reflector includes a sloped annular wall with an inner reflective surface and an outer reflective surface, and a bottom portion of the reflector is connected to the printed circuit board. The heat sink is thermally connected to the printed circuit board and to the reflector.
Opening claim text (preview).
What is claimed is: 1. A LED based lamp, comprising: a concave optical diffuser having a first interior volume and comprising a circular diffuser lip; a concave neodymium-doped glass bulb positioned within the first interior volume and being separate from the concave optical diffuser, the glass bulb having a second interior volume and comprising a circular glass bulb lip; a reflector positioned within the second interior volume; a printed circuit board comprising a plurality of light-emitting diodes (LEDs) configured to emit light, the printed circuit board attached to a bottom portion of the reflector within the second interior volume such that the concave neodymium-doped glass bulb absorbs light when the LEDs are illuminated to induce a depression in a yellow portion of the visible light spectrum; and a heat sink thermally connected to the printed circuit board and to the reflector, wherein the heat sink comprises an annular groove formed in an upper portion that is sized and shaped to seat the entirety of both the circular diffuser lip and the circular glass bulb lip. 2. The LED based lamp of claim 1 , further comprising a capper connected to the heat sink and housing driver circuitry. 3. The LED based lamp of claim 2 , further comprising a base connected to the capper. 4. The LED based lamp of claim 1 , wherein the reflector comprises a sloped annular wall with an inner reflective surface and an outer reflective surface, the sloped annular wall defining a central aperture, and wherein the plurality of LEDs comprises a central LED array positioned about a central portion of a surface of the printed circuit board and an annular LED array positioned about an outside portion of the surface of the printed circuit board, wherein the central LED array emits light through the central aperture of the reflector and the annular LED array emits light that reflects from the outer reflective surface of the sloped annular wall to distribute light in a radial direction. 5. The LED based lamp of claim 1 , wherein the reflector and the printed circuit board are affixed to the heat sink body by screws. 6. The LED based lamp of claim 1 , wherein the optical diffuser has at least one of an ovoid shape, a hemispheroidal shape, or a spheroidal shape. 7. The LED based lamp of claim 1 , wherein the neodymium-doped glass bulb has a wall thickness of from about 0.1 mm to about 1. 8. The LED based lamp of claim 1 , wherein the depression in the yellow portion of the visible light spectrum of is in the region between about 565 nanometers (nm) to about 620 nm. 9. The LED based lamp of claim 1 , wherein the depression in the yellow portion of the visible light spectrum is in the region between about 565 nm to about 595 nm. 10. The LED based lamp of claim 1 , wherein the plurality of LEDs has a correlated color temperature of from about 2500 Kelvin (K) to about 4000 K. 11. The LED based lamp of claim 1 , wherein the plurality of LEDs has a CRI value of about 70 to about 97.
with fins or blades · CPC title
the material being glass · CPC title
the material comprising photoluminescent substances · CPC title
using wavelength conversion means distinct or spaced from the light-generating element, e.g. a remote phosphor layer · CPC title
on the outer surface of cylindrical surfaces, e.g. rod-shaped supports having a circular or a polygonal cross section · CPC title
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