Light Emitting Lamp Bead and Lamp
20220190210 · 2022-06-16
Inventors
- Yurong LI (Foshan, Guangdong, CN)
- Libing PAN (Foshan, Guangdong, CN)
- Fuhai LI (Foshan, Guangdong, CN)
- Zhiguo XIE (Foshan, Guangdong, CN)
Cpc classification
H01L33/504
ELECTRICITY
F21K9/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Disclosed is a light emitting lamp bead, in which a blue light missing portion is effectively filled by means of a chip excitation phosphor combination having the waveband of 400 nm-415 nm, and phosphors also has strong absorption for purple light, so that a light emitting diode (LED) device having high light emitting efficiency may be obtained. For the waveband of 420 nm-460 nm, a blue phosphor also achieves emission; however, because the phosphors have broad peak emission, the intensity is weak with respect to a blue light excitation position, so that the harm of blue light is reduced.
Claims
1. A light emitting lamp bead, comprising at least one light emitting element and phosphors excited by the at least one light emitting element, wherein a main emission peak wavelength range of each light emitting element is 400 nm-415 nm, and the phosphors comprises a blue phosphor, a green phosphor, a yellow phosphor and a red phosphor.
2. The light emitting lamp bead according to claim 1, wherein a matching ratio of the phosphors according to the mass ratio is: 10%-30% of the blue phosphor; 30%-50% of the green phosphor; 30%-50% of the yellow phosphor; and 5%-15% of the red phosphor.
3. The light emitting lamp bead according to claim 1, wherein the blue phosphor is a blue phosphor with an emission peak wavelength range of 400 nm-480 nm and a full width at half maxima in a range of 50 nm-90 nm.
4. The light emitting lamp bead according to claim 3, wherein the blue phosphor is a blue phosphor with an emission peak wavelength range of 420 nm-460 nm and a full width at half maxima in a range of 50 nm-90 nm.
5. The light emitting lamp bead according to claim 3, wherein the blue phosphor is MgSr.sub.3Si.sub.2O.sub.8:Eu.sup.2+.
6. The light emitting lamp bead according to claim 1, wherein the green phosphor is a green phosphor with an emission peak wavelength range of 480 nm-520 nm and a full width at half maxima in a range of 50 nm-90 nm.
7. The light emitting lamp bead according to claim 6, wherein the green phosphor is Sr.sub.5(PO.sub.4).sub.3Cl:Eu.sup.2+.
8. The light emitting lamp bead according to claim 1, wherein the yellow phosphor is a yellow phosphor with a peak emission wavelength range of 500 nm-560 nm and a full width at half maxima in a range of 90 nm-110 nm.
9. The light emitting lamp bead according to claim 8, wherein the yellow phosphor is Ga-YAG, LuAG or YAG.
10. The light emitting lamp bead according to claim 1, wherein the red phosphor is a red phosphor with a peak emission wavelength range of 590 nm-660 nm and a full width at half maxima in a range of 70 nm-90 nm.
11. The light emitting lamp bead according to claim 10, wherein the red phosphor is CaAlSiN.sub.3:Eu.sup.2+, or a (Sr/Ca)AlSiN.sub.3:Eu.sup.2+ co-doped red phosphor.
12. The light emitting lamp bead according to claim 1, wherein a white light emitted by the light emitting lamp bead has a color temperature of 3000K, and a maximum light emitting energy intensity of the white light in the wavelength range of 380 nm-430 nm is below 45%, a maximum light emitting energy intensity of the white light in the wavelength range of 430 nm-480 nm is above 20%, and a maximum light emitting energy intensity of the white light in the wavelength range of 630 nm-650 nm is 100%.
13. The light emitting lamp bead according to claim 1, wherein a white light emitted by the light emitting lamp bead has a color temperature of 5000K, and a maximum light emitting energy intensity of the white light in the wavelength range of 380 nm-430 nm is 100%, a maximum light emitting energy intensity of the white light in the wavelength range of 430 nm-480 nm is above 40%, a maximum light emitting energy intensity of the white light in the wavelength range of 480 nm-600 nm is above 40%, and a maximum light emitting energy intensity of the white light in the wavelength range of 600 nm-660 nm is above 40%.
14. The light emitting lamp bead according to claim 1, wherein a white light emitted by the light emitting lamp bead has a color temperature of 4000K, and a maximum light emitting energy intensity of the white light in the range of 600 nm-700 nm is 100%, a maximum light emitting energy intensity of the white light in the wavelength range of 440nm-460nm is below 60%, and a maximum light emitting energy intensity of the white light in the wavelength range of 460 nm-480 nm is above 60%.
15. A lamp, comprising a substrate, wherein: the substrate is provided with at least one light emitting lamp bead according to claim 1.
16. The light emitting lamp bead according to claim 2, wherein the blue phosphor is a blue phosphor with an emission peak wavelength range of 400 nm-480 nm and a full width at half maxima in a range of 50 nm-90 nm.
17. The light emitting lamp bead according to claim 2, wherein the green phosphor is a green phosphor with an emission peak wavelength range of 480 nm-520 nm and a full width at half maxima in a range of 50 nm-90 nm.
18. The light emitting lamp bead according to claim 2, wherein the yellow phosphor is a yellow phosphor with a peak emission wavelength range of 500 nm-560 nm and a full width at half maxima in a range of 90 nm-110 nm.
19. The light emitting lamp bead according to claim 2, wherein the red phosphor is a red phosphor with a peak emission wavelength range of 590 nm-660 nm and a full width at half maxima in a range of 70 nm-90 nm.
20. The light emitting lamp bead according to claim 2, wherein a white light emitted by the light emitting lamp bead has a color temperature of 3000K, and a maximum light emitting energy intensity of the white light in the wavelength range of 380 nm-430 nm is below 45%, a maximum light emitting energy intensity of the white light in the wavelength range of 430 nm-480 nm is above 20%, and a maximum light emitting energy intensity of the white light in the wavelength range of 630 nm-650 nm is 100%.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Drawings constituting a part of the present application are used to provide further understanding of the present disclosure. Exemplary embodiments of the present disclosure and descriptions thereof are used to explain the present disclosure, and do not constitute improper limitation to the present disclosure. In the drawings:
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The present disclosure is further described in detail below through specific embodiments in combination with the drawings. However, those skilled in the art may understand that the following embodiments are only used to illustrate the present disclosure, and should not be regarded as limiting a scope of the present disclosure. If a specific technology or condition is not indicated in the embodiment, it shall be performed according to the technology or condition described in documents in the field or according to a product specification. Reagents or instruments used without indicating a manufacturer are all conventional products that may be purchased commercially.
Embodiment 1
[0023] A light emitting lamp bead, including at least one light emitting element and phosphors excited by the at least one light emitting element, wherein a main emission peak of each light emitting element is 400 nm-415 nm, and the phosphors include a blue phosphor with an emission peak wavelength range of 400 nm-480 nm and a FWHM (full width at half maxima) of 50 nm-90 nm, a green phosphor with an emission peak wavelength range of 480 nm-520 nm and a FWHM (full width at half maxima) of 50 nm-90 nm, a yellow phosphor with an emission peak wavelength range of 500 nm-560 nm and a FWHM (full width at half maxima) of 90 nm-110 nm and a red phosphor with an emission peak wavelength range of 590 nm-660 nm and a FWHM (full width at half maxima) of 70 nm-90 nm. Specifically, the phosphors include MgSr3Si2O8:Eu2+, Sr5(PO4)3Cl:Eu2+, Ga-YAG, and CaAlSiN.sub.3:Eu.sup.2+. Phosphor mass ratio: MgSr.sub.3Si.sub.2O.sub.8:Eu.sup.2+ accounts for 10%-30% of the total phosphor ratio; Sr.sub.5(PO.sub.4).sub.3Cl:Eu.sup.2+ accounts for 30%-50% of the total phosphor ratio; Ga-YAG accounts for 30%-50% of the total phosphor ratio; and CaAlSiN.sub.3:Eu.sup.2+ accounts for 5%-15% of the total phosphor ratio. The light emitting element is installed in an LED bracket, and after the phosphors are mixed, they fill the LED bracket together with packaging glue.
[0024] In some embodiments, the red phosphor is CaAlSiN.sub.3:Eu.sup.2+, or a (Sr/Ca)AlSiN.sub.3:Eu.sup.2+ co-doped red phosphor.
COMPARATIVE EXAMPLE 1
[0025] The lamp bead uses traditional phosphors excited by blue light, the phosphors include Ga-YAG powder with an emission peak of 500 nm-560 nm, nitride red powder with a peak wavelength of 640 nm-660 nm, and silicate blue-green powder with an emission peak of 480 nm-520 nm, as to make a high color rendering scheme. The formula has strong blue light emission at 440 nm-460 nm, and a spectrum is discontinuous after 460 nm.
COMPARATIVE EXAMPLE 2
[0026] The main emission peak of the light emitting element used in the lamp bead is 400 nm-415 nm, and the phosphor scheme is a high color rendering scheme made by a scheme of halophosphate with an emission peak of 440 nm-520 nm, Ga-YAG with an emission peak of 520 nm-560 nm, and nitride red powder with an emission peak of 600 nm-660 nm. In this scheme, the blue light emission intensity is relatively low at 460 nm-480 nm, and the relative energy intensity is only about 40%.
[0027] According to the matching range of Embodiment 1, it is modulated to obtain a light emitting lamp bead with a color temperature of 4000K, and a spectrum thereof is measured and compared with the spectrum of a product in Comparative Example 1. As shown in
[0028] According to the matching range of Embodiment 1, it is modulated to obtain the light emitting lamp bead with a color temperature of 2700K, a spectrum thereof is measured and compared with the spectrum of a product of Comparative Example 2. As shown in
[0029] Both comparisons show that the lamp bead provided in Embodiment 1 emits a spectrum with a small fluctuation amplitude and excellent continuity in the wavelength range of 420 nm-660 nm, it is closer to sunlight and provides a good illumination effect for the users.
[0030] According to the matching range of Embodiment 1, it is modulated to obtain the light emitting lamp bead with a color temperature of 3000K, and a spectrum thereof is measured as shown in
[0031] According to the matching range of Embodiment 1, it is modulated to obtain the light emitting lamp bead with a color temperature of 5000K, and a spectrum thereof is measured as shown in
[0032] The present disclosure further provides a lamp, including a substrate, wherein the substrate is provided with at least one light emitting lamp bead as described in Embodiment 1, and light emitted by the lamp is closer to the sunlight, and provides the good illumination effect for the users.
[0033] The above are only preferred embodiments of the present disclosure, and are not intended to limit the present disclosure. For those skilled in the art, the present disclosure has various modifications and changes. Any modifications, equivalent replacements, improvements and the like made within the spirit and principle of the present disclosure should be included in a scope of protection of the present disclosure.