Integrated chip and manufacturing method therefor, and full-color integrated chip and display panel
US-12183868-B2 · Dec 31, 2024 · US
US9564559B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9564559-B2 |
| Application number | US-201514699362-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 29, 2015 |
| Priority date | Apr 20, 2007 |
| Publication date | Feb 7, 2017 |
| Grant date | Feb 7, 2017 |
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The invention relates to a white emitting light source with an improved luminescent material of the formula (AEN2/3)*b(MN)*c(SiN4/3)*d1CeO3/2*d2EuO*xSiO2*yAlO3/2 wherein AE is an alkaline earth metal chosen of the group of Ca, Mg, Sr and Ba or mixtures thereof and M is a trivalent element chosen of the group of Al, B, Ga, Sc with d1>10*d2. In combination with a UV to blue light generating device this material leads to an improved light quality and stability, especially an improved temperature stability for a wide range of applications.
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The invention claimed is: 1. A luminescent material comprising: (AEN 2/3 )*b(MN)*c(SiN 4/3 )*d 1 CeO 3/2 *d 2 EuO*xSiO 2 *yAlO 3/2 wherein AE is an alkaline earth metal chosen from a group consisting of Ca, Mg, Sr and Ba or mixtures thereof and M is a trivalent element chosen from a group consisting of Al, B, Ga, Sc or mixtures thereof, wherein 0.95≦2*( a+d 1 +d 2 )/( b+c+x+y )≦1.2 a+d 1 +d 2 ≧c+x, ( b+y ):( c+x )≧1, ( b+y )≦1+10* d 1 , b≧ 5* y, c≧ 10* x, 0.0001≦ d 1 ≦0.2 and d 1 ≧10* d 2 ; wherein the surface roughness of at least one surface of the luminescent material, measured as the geometric mean of the difference between highest and deepest surface features is ≧0.001 μm and ≦1 μm. 2. The luminescent material of claim 1 wherein the luminescent material is a ceramic. 3. The luminescent material of claim 1 wherein the luminescent material is ≧95% (AEN 2/3 )*b(MN)*c(SiN 4/3 )*d 1 CeO 3/2 *d 2 EuO*xSiO 2 *yAlO 3/2 . 4. The luminescent material of claim 1 further comprising at least one flux. 5. The luminescent material of claim 4 wherein the at least one flux comprises an alkaline material. 6. The luminescent material of claim 4 wherein the at least one flux comprises one of a metal oxide and a fluoride. 7. The luminescent material of claim 4 wherein the at least one flux comprises one of SiON, SiAlON, and SiO 2 . 8. The luminescent material of claim 1 wherein (b+y):(c+x) is ≧1.01 and ≦1.20. 9. The luminescent material of claim 1 wherein (b+y) is ≦1+10*d 1 . 10. The luminescent material of claim 1 wherein b≧5*y and c≧10*x. 11. A device comprising: a blue LED; and a ceramic plate attached to the blue LED, the ceramic plate comprising a luminescent material, the luminescent material comprising (AEN 2/3 )*b(MN)*c(SiN 4/3 )*d 1 CeO 3/2 *d 2 EuO*xSiO 2 *yAlO 3/2 wherein AE is an alkaline earth metal chosen from a group consisting of Ca, Mg, Sr and Ba or mixtures thereof and M is a trivalent element chosen from a group consisting of Al, B, Ga, Sc or mixtures thereof, wherein 0.9≦2*( a+d 1 +d 2 )/( b+c+x+y )≦1.2 a+d 1 +d 2 ≧c+x, ( b+y ):( c+x )≧1, ( b+y )≦1+10* d 1 , b≧ 5* y, c≧ 10* x, 0.0001≦ d 1 ≦0.2 and d 1 ≧10* d 2 wherein the light output of the device has a Δuv≦0.025, 72≦Ra≦89 and 273≦LE≦337. 12. The device of claim 11 wherein the n-GaN layer is optically coupled to the ceramic plate by a transparent glue. 13. The device of claim 12 wherein the transparent glue is silicone. 14. The device of claim 12 wherein the transparent glue has an index of 1.5. 15. The device of claim 11 wherein a surface of the blue LED facing the ceramic plate is roughened. 16. The device of claim 15 wherein the ceramic plate forms a rigid mechanical protection for the blue LED. 17. The device of claim 15 wherein the surface roughness of at least one surface of the ceramic plate, measured as the geometric mean of the difference between highest and deepest surface features is ≧0.001 μm and ≦1 μm. 18. The device of claim 11 wherein a full width half maximum of an emission spectrum of the luminescent material is ≧120 nm. 19. The device of claim 11 wherein the emission spectrum of the luminescent material comprises: an emission maximum in a wavelength range between 500 and 600 nm having a full width half maximum of ≧80 nm; and an emission maximum in a wavelength range between 600 and 650 nm having a full width half maximum of ≧30 and ≦140 nm. 20. The device of claim 11 wherein combined light comprising light emitted by the blue LED and light emitted by the luminescent material has a correlated color temperature between 3000 and 4000 K.
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