The modern white mid-power LEDs usually contain phosphor particles encapsulated in silicone dome material. The particles convert the blue light emitted from the epitaxial layer and play significant role in thermal processes of LED packages. In this paper the influence of the phosphor particles concentration and effect of sedimentation on thermal resistance and junction temperature of mid-power LEDs are investigated. Thermal transient measurements, thermal imaging and finite element simulations are used. It is shown that the sedimentation of phosphor particles has an impact on both thermal resistance and junction temperature of mid- power LEDs. General trends for phosphor particles concentration effect on thermal properties of a mid-power LE...
The performance and lighting characteristics of the LED depend on cooling condition because the powe...
The reliability of LEDs decreases in moist environments. One potential gateway of moisture ingress, ...
The effect of correlated color temperature (CCT) on the thermal performance of light emitting diode ...
The modern white mid-power LEDs usually contain phosphor particles encapsulated in silicone dome mat...
The phosphor and die bonding configuration affect the optical efficiency and thermal performance in ...
In modern phosphor-converted white LEDs, electrical, optical, and thermal performances are inter-twi...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
The phosphor layer in phosphor-converted white light-emitting diodes (pcLEDs) affects their optical ...
With their many advantages, such as small size, energy efficiency, and long lifetime, light emitting...
The aim of this work is to investigate the thermal stability of remote phosphor plates to be used in...
Abstract Increasing phosphor layer thickness and concentration can enhance the lumen flux of white L...
Light emitting diodes (LEDs) are highly efficient light sources with a long lifetime. LEDs are widel...
In this work, we report on the characterization and reliability/stability study of phosphorescent ma...
Frequency Resolved Phosphor Thermometry Under High Excitation Density Conditions Laser diodes (LDs) ...
The performance and lighting characteristics of the LED depend on cooling condition because the powe...
The reliability of LEDs decreases in moist environments. One potential gateway of moisture ingress, ...
The effect of correlated color temperature (CCT) on the thermal performance of light emitting diode ...
The modern white mid-power LEDs usually contain phosphor particles encapsulated in silicone dome mat...
The phosphor and die bonding configuration affect the optical efficiency and thermal performance in ...
In modern phosphor-converted white LEDs, electrical, optical, and thermal performances are inter-twi...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
The phosphor layer in phosphor-converted white light-emitting diodes (pcLEDs) affects their optical ...
With their many advantages, such as small size, energy efficiency, and long lifetime, light emitting...
The aim of this work is to investigate the thermal stability of remote phosphor plates to be used in...
Abstract Increasing phosphor layer thickness and concentration can enhance the lumen flux of white L...
Light emitting diodes (LEDs) are highly efficient light sources with a long lifetime. LEDs are widel...
In this work, we report on the characterization and reliability/stability study of phosphorescent ma...
Frequency Resolved Phosphor Thermometry Under High Excitation Density Conditions Laser diodes (LDs) ...
The performance and lighting characteristics of the LED depend on cooling condition because the powe...
The reliability of LEDs decreases in moist environments. One potential gateway of moisture ingress, ...
The effect of correlated color temperature (CCT) on the thermal performance of light emitting diode ...