TELKOMNIKA Telecommunication Computing Electronics and Control
Using phosphor ZnB2O4:Mn2+ for enhancing the illuminating beam and hue standard in white light-emitting diodes
Dublin Core
Title
TELKOMNIKA Telecommunication Computing Electronics and Control
Using phosphor ZnB2O4:Mn2+ for enhancing the illuminating beam and hue standard in white light-emitting diodes
Using phosphor ZnB2O4:Mn2+ for enhancing the illuminating beam and hue standard in white light-emitting diodes
Subject
Color rendering index
Luminous efficacy
Mie-scattering theory
Phosphor geometries
ZnB2O4:Mn2+ green phosphor
Luminous efficacy
Mie-scattering theory
Phosphor geometries
ZnB2O4:Mn2+ green phosphor
Description
The enhancement in hue uniformity and luminous production of multiple-chip
white LED lamps (MCW-LEDs) using dual-layer remote phosphor packaging
designs are the emphases of this paper. We blended Mn2+ activated
strontium–barium silicate (ZnB2O4:Mn2+) with the phosphor mixture and
manage to record significant impacts of this new phosphor mixture on the
LED lights’ lighting performance. There is evidence that the growing
concentration of yellow-green-emitting ZnB2O4:Mn2+ phosphor encourages the
enhancement of hue uniformity and illumination effectiveness in MCW-LEDs
with mean correlated hue heats (CCTs) of roughly 8500 K, though the color
quality scale is gradually deteriorating. It is possible to successfully achieve
such amazing MCW-LED performance if we choose the right concentration
and size of ZnB2O4:Mn2+
white LED lamps (MCW-LEDs) using dual-layer remote phosphor packaging
designs are the emphases of this paper. We blended Mn2+ activated
strontium–barium silicate (ZnB2O4:Mn2+) with the phosphor mixture and
manage to record significant impacts of this new phosphor mixture on the
LED lights’ lighting performance. There is evidence that the growing
concentration of yellow-green-emitting ZnB2O4:Mn2+ phosphor encourages the
enhancement of hue uniformity and illumination effectiveness in MCW-LEDs
with mean correlated hue heats (CCTs) of roughly 8500 K, though the color
quality scale is gradually deteriorating. It is possible to successfully achieve
such amazing MCW-LED performance if we choose the right concentration
and size of ZnB2O4:Mn2+
Creator
Ha Thanh Tung, Huu Phuc Dang
Source
http://telkomnika.uad.ac.id
Date
Jan 10, 2023
Contributor
peri irawan
Format
pdf
Language
english
Type
text
Files
Collection
Citation
Ha Thanh Tung, Huu Phuc Dang, “TELKOMNIKA Telecommunication Computing Electronics and Control
Using phosphor ZnB2O4:Mn2+ for enhancing the illuminating beam and hue standard in white light-emitting diodes,” Repository Horizon University Indonesia, accessed March 13, 2025, https://repository.horizon.ac.id/items/show/4555.
Using phosphor ZnB2O4:Mn2+ for enhancing the illuminating beam and hue standard in white light-emitting diodes,” Repository Horizon University Indonesia, accessed March 13, 2025, https://repository.horizon.ac.id/items/show/4555.