Natural light-simulation LED health lighting device and fabrication method thereof
A lighting device and natural light technology, applied in semiconductor devices, electrical components, circuits, etc., can solve the problems of not being able to adapt to high-power lighting requirements, narrow spectral range of white light LEDs, adverse effects, etc., to reduce glare and reduce light attenuation Risk, the effect of improving efficiency
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Embodiment 1
[0047] A luminous ceramic, comprising a ceramic substrate and a luminous glaze film, the raw materials of the luminous coating include LED phosphor, glaze, grinding medium and binder; the mass ratio of the glaze to the LED phosphor is 1:5.
[0048] The ceramic substrate is transparent or translucent ceramic material; the light transmittance of the ceramic substrate is greater than 50%, and the thickness is 0.4mm; the glaze material is glass powder with a melting point lower than 800°C.
[0049] Wherein, the LED phosphor powder in this embodiment is a phosphor powder excited by ultraviolet to blue light, which is composed of green powder (BaSi 2 N 2 o 2 :Eu), green powder with an emission wavelength of 510-520 (BaAl 2 S 2 :Eu), yellow powder (YAG:Ce) with an emission wavelength of 530-540nm and red powder (CaS:Eu) with an emission wavelength of 645-650nm are mixed. Powder: 30 parts, green powder with emission wavelength of 510-520: 10 parts, yellow powder with emission wave...
Embodiment 2
[0055] With green powder BaSi in embodiment 1 2 N 2 o 2 :Eu is replaced by SrSi 2 N 2 o 2 : Eu, other things are unchanged, made LED luminescent ceramics.
Embodiment 3
[0057] With the green powder BaAl in embodiment 1 2 S 2 : Eu to Ca 8 Mg(SiO 4 ) 4 Cl:Eu, other things remain unchanged, and LED luminescent ceramics are prepared.
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