Phosphor converted light emitting diode, a lamp and a luminaire
View Patent ↗A phosphor converted Light Emitting Diode (LED), a lamp and a luminaire are provided. The phosphor converted LED 106 comprises a LED 102 , a first luminescent material 166 , a second luminescent material 164 and a third luminescent material 162 . The LED 102 emits a first spectral distribution having a first peak wavelength in the blue spectral range. The first luminescent material 166 absorbs a portion of the light of the first spectral distribution and converts at least a portion of the absorbed light towards light of a second spectral distribution. The second spectral distribution has a second peak wavelength in the green spectral range. The second luminescent material 164 absorbs absorbing a portion of the light of the first spectral distribution and/or a portion of the second spectral distribution. The second luminescent material 164 converts at least a portion of the absorbed light towards lights of a third spectral distribution. The third spectral distribution has a third spectral width and has a third peak wavelength. The third luminescent material 162 absorbs a portion of the light of at least one of the first spectral distribution, second spectral distribution, and the third spectral distribution. The third luminescent material 162 converts at least a portion of the absorbed light towards light of a fourth spectral distribution. The fourth spectral distribution has a fourth spectral width and has a fourth peak wavelength. The third peak wavelength and the fourth peak wavelength are in the orange/red spectral range. The third peak wavelength is smaller than the fourth peak wavelength and the third spectral width is larger than the fourth spectral width.
1. A phosphor converted Light Emitting Diode comprising:
a Light Emitting Diode emitting a first spectral distribution having a first peak wavelength in the blue spectral range between 445 nanometers and 495 nanometers,
a first luminescent material configured for absorbing a portion of the light of the first spectral distribution and for converting at least a portion of the absorbed light into light of a second spectral distribution, the second spectral distribution having a second peak wavelength in the green spectral range,
a second luminescent material configured for absorbing a portion of the light of the first spectral distribution and/or a portion of the second spectral distribution and for converting at least a portion of the absorbed light into light of a third spectral distribution, the third spectral distribution having a third spectral width and having a third peak wavelength,
a third luminescent material configured for absorbing a portion of the light of at least one of the first spectral distribution, second spectral distribution, and the third spectral distribution and for converting at least a portion of the absorbed light into light of a fourth spectral distribution, the fourth spectral distribution having a fourth spectral width and having a fourth peak wavelength,
wherein the third peak wavelength and the fourth peak wavelength are in the orange/red spectral range, the third peak wavelength being smaller than the fourth peak wavelength, and the third spectral width being larger than the fourth spectral width; and
wherein the second and/or third luminescent material comprises a red emitting Eu2+ phosphor.
2. A phosphor converted Light Emitting Diode according to claim 1 , wherein the second luminescent material comprises the material M2SisNs:Eu2+M2Si5N8:Eu2 1 in which M is an alkaline earth metal.
3. A phosphor converted Light Emitting Diode according to claim 1 , wherein the second luminescent material comprises the material (Ca,Sr)A1SiN3.
4. A phosphor converted Light Emitting Diode according to claim 1 , wherein the third luminescent material comprising at least one of:
particles showing quantum confinement and having at least in one dimension a size in the nanometer range,
a narrow band red emitting phosphor which is hexafluorosilicates activated with Mn 4+ ions, and
a red emitting phosphor CaS:Eu.
5. A phosphor converted Light Emitting Diode according to claim 1 , wherein the third peak wavelength is within the range from 575 nanometers to 615 nanometers.
6. A phosphor converted Light Emitting Diode according to claim 1 , wherein the third spectral width is larger than 80 nanometers expressed as a Full Width Half Maximum value.
7. A phosphor converted Light Emitting Diode according to claim 1 , wherein a wavelength difference between the third peak wavelength and the fourth peak wavelength is at least larger than 10 nanometers.
8. A phosphor converted Light Emitting Diode according to claim 1 , wherein the fourth peak wavelength is larger than 610 nanometers.
9. A phosphor converted Light Emitting Diode according to claim 1 , wherein the fourth spectral width is smaller than 60 nanometers expressed as a Full Width Half Maximum Value.
10. A phosphor converted Light Emitting Diode according to claim 1 , wherein the power of the light emitted by the third luminescent material is less than 20% of the power of all light emitted by the phosphor converted Light Emitting Diode.
11. A phosphor converted Light Emitting Diode according to claim 1 , wherein the first luminescent material comprises a green emitting phosphor which is one of garnet Y 3 Al 5 O 12 :Ce 3+ , a SiAlON phosphor or (Lu 0.5 ,Y 0.5 ) 3 Al 5 O 12 :Ce 3+ , or Y substituted with Gd or Al substituted with Ga, or a mixture of garnets.
12. A lamp comprising a phosphor converted Light Emitting Diode according to claim 1 .
13. A luminaire comprising a phosphor converted Light Emitting Diode according to claim 1 .
14. A luminaire comprising a lamp according to claim 12 .