IP Library Granted Patent US 7,573,190
Granted Patent B2
US 7,573,190 · App. 10/588,007 · Granted Aug 11, 2009

Light emitting element and lighting instrument

Assignee: National Institute for Materials Science
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Quick Facts
Patent No.
US 7,573,190
App. No.
10/588,007
Granted
Aug 11, 2009
Kind
B2
Abstract

The present invention provides a white light emitting diode for emitting white light with warmness at a higher luminance, and an intermediate color light emitting diode satisfying light emission with diversified color tones at a higher luminance. A fluorescent material which emits yellowish red or red light and has a CaAlSiN 3 crystal phase including, dissolved therein in a solid state, one or more element(s) selected from Mn, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu. The fluorescent material is mixed with another fluorescent material emitting green, yellowish green, or yellow light, and the mixed phosphor is combined with a semiconductor light emitting element for emitting bluish purple or blue light, to fabricate a white light emitting diode which efficiently emits a warm white light with a high efficiency.

Claims (26)

1. A visible light emitting device, comprising at least:

a semiconductor light emitting element configured to emit bluish purple or blue light;

a support member formed with a depression for placing said semiconductor light emitting element therein, said depression constituted as a visible wavelength light reflective surface;

terminals configured to supply electric power to said semiconductor light emitting element; and

a phosphor configured to absorb a part or the whole of light emitted from said light emitting element, and to emit fluorescence at a wavelength different from that of the absorbed light, the phosphor including X % of a first fluorescent material configured to emit green, yellowish green, or yellow light, and Y % of a second fluorescent material configured to emit yellowish red or red light, at a mixing ratio meeting a condition of 0≦X<100, 0<Y≦100, and 0<X+Y≦100,

wherein said second fluorescent material comprises a CaAlSiN 3 crystal phase including, dissolved therein in a solid state, one or more element(s) selected from Mn, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu.

2. The light emitting device of claim 1 , wherein said second fluorescent material contains at least Eu.

3. The light emitting device to emit arbitrary colors of claim 1 , wherein said semiconductor light emitting element is a blue light emitting diode having a main emission wavelength of 380 nm to 485 nm.

4. A lighting apparatus, comprising three or more light source units, each light source unit including at least one light emitting device,

said light emitting device including at least:

a semiconductor light emitting element configured to emit bluish purple or blue light;

a support member formed with a depression for placing said semiconductor light emitting element therein, said depression constituted as a visible wavelength light reflective surface;

terminals configured to supply electric power to said semiconductor light emitting element; and

a phosphor configured to absorb a part or the whole of light emitted from said light emitting element, and to emit fluorescence at a wavelength different from that of the absorbed light, the phosphor including at least one of a first fluorescent material configured to emit green, yellowish green, or yellow light, and a second fluorescent material mainly including CaAlSiN 3 crystal phase and configured to emit yellowish red or red light,

wherein each of said light source units or each of said light emitting device has a mixing ratio of said first fluorescent material to said second fluorescent material, which mixing ratio is different from those of the other light source units or other light emitting devices, in a manner that different light emission colors are visible, site by site of said lighting apparatus.

5. The lighting apparatus of claim 4 , wherein the phosphor includes X % of said first fluorescent material, and Y % of said second fluorescent material, at a mixing ratio meeting a condition of 0≦X<100, 0<Y≦100, and 0<X+Y≦100, and

wherein said second fluorescent material comprises said CaAlSiN 3 crystal phase including, dissolved therein in a solid state, one or more kinds of element(s) selected from Mn, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu.

6. The lighting apparatus of claim 5 , wherein each light source unit is optically connected with a light guiding member including a scattering element.

7. The lighting apparatus of claim 6 , wherein said scattering element comprises air bubbles, and said light guiding member is a rod-like member made of transparent resin.

8. The light emitting device to emit arbitrary colors of claim 1 , wherein said semiconductor light emitting element is a light emitting semiconductor diode element made of InGaN.

9. The light emitting device to emit arbitrary colors of claim 1 , wherein said semiconductor light emitting element is a light emitting semiconductor diode element comprising a substrate made of sapphire.

10. The light emitting device to emit arbitrary colors of claim 1 , wherein said first fluorescent material is a phosphor having a main emission wavelength of 495 nm to 585 nm.

11. The light emitting device to emit arbitrary colors of claim 10 , wherein said first fluorescent material is a yttrium/aluminum/garnet based phosphor.

12. The light emitting device to emit arbitrary colors of claim 1 , wherein said second fluorescent material is a phosphor having a main emission wavelength in a range of “red” by a general chromaticity classification, according to system color names of JIS Z8110.

13. The light emitting device to emit arbitrary colors of claim 1 , wherein said phosphors are dispersed in a transparent material.

14. The light emitting device to emit arbitrary colors of claim 13 , wherein said transparent material is an epoxy resin, a silicone resin, or a glass.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2006
From: HIROSAKI, NAOTO; SAKUMA, KEN; UEDA, KYOTA; YAMAMOTO, HAJIME
To: NATIONAL INSTITUTE FOR MATERIALS SCIENCE
Reel/Frame 018206/0270 →
Priority Claims (1)
JP 2004-041502 · Feb 18, 2004 · national
Continuity (1)
Related Publication 20070159091A1 · Jul 12, 2007