This paper presents a dynamic photoelectrothermal theory for light-emitting diode (LED) systems. In addition to photometric, electrical, and thermal aspects, this theory incorporates the time domain into the generalized equations. A dynamic model for a general LED system is developed for system analysis. This theory highlights the fact that the luminous output of an LED system will decrease with time from the initial operation to the steady state due to the rising temperature of the heat sink and the LED devices. The essential thermal time constants involved in the LED systems are explained. The time factor is critical in understanding how much the luminous output will decrease with time and is essential to the optimal designs of the LED sy...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
It is always desirable to operate LEDs within its designed maximum temperature for maximized life. F...
A thermodynamic model for light-emitting diodes (LEDs) is developed by considering energy and entrop...
This paper presents a dynamic photo-electro-thermal theory for LED systems. In addition to photometr...
The photometric, electrical and thermal features of LED systems are highly dependent on one another....
This paper presents a dynamic thermal model of a LED system and a control strategy for optimal power...
With the use of wall-plug efficiency, estimation techniques for the optical power and heat-dissipati...
In lighting systems consisting light-emitting diodes (LEDs), excessive temperature is a main cause o...
In lighting systems consisting light-emitting diodes (LEDs), excessive temperature is a main cause o...
The paper examines the high power Light Emitted diode (LED) and the hear distribution of the heat si...
Light-emitting diode (LED) arrays have attracted increased attention in the area of high power intel...
Light-emitting diode (LED) arrays have attracted increased attention in the area of high power intel...
The application of LED technology to fields such as alphanumerical displays and traffic control is c...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
LEDs are widely used light sources. Their main advantages are low power consumption, mechanical stre...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
It is always desirable to operate LEDs within its designed maximum temperature for maximized life. F...
A thermodynamic model for light-emitting diodes (LEDs) is developed by considering energy and entrop...
This paper presents a dynamic photo-electro-thermal theory for LED systems. In addition to photometr...
The photometric, electrical and thermal features of LED systems are highly dependent on one another....
This paper presents a dynamic thermal model of a LED system and a control strategy for optimal power...
With the use of wall-plug efficiency, estimation techniques for the optical power and heat-dissipati...
In lighting systems consisting light-emitting diodes (LEDs), excessive temperature is a main cause o...
In lighting systems consisting light-emitting diodes (LEDs), excessive temperature is a main cause o...
The paper examines the high power Light Emitted diode (LED) and the hear distribution of the heat si...
Light-emitting diode (LED) arrays have attracted increased attention in the area of high power intel...
Light-emitting diode (LED) arrays have attracted increased attention in the area of high power intel...
The application of LED technology to fields such as alphanumerical displays and traffic control is c...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
LEDs are widely used light sources. Their main advantages are low power consumption, mechanical stre...
The drive of increased electrical currents to achieve high luminous output for phosphor-converted wh...
It is always desirable to operate LEDs within its designed maximum temperature for maximized life. F...
A thermodynamic model for light-emitting diodes (LEDs) is developed by considering energy and entrop...