High-power (HP) UV-LEDs can replace UV lamps for real-time fluoro-sensing applications by allowing portable and autonomous systems. However, HP UV-LEDs are not a mature technology, and there are still open issues regarding their performance evolution over time. This paper presents a reliability study of 3W UV-LEDs, with special focus on LED degradation for two working conditions: continuous and cycled (30 s ON and 30 s OFF). Accelerated life tests are developed to evaluate the influence of temperature and electrical working conditions in high-power LEDs degradation, being the predominant failure mechanism the degradation of the package. An analysis that includes dynamic thermal and optical HP UV-LED measurements has been performed. Static...
This paper describes an analysis of the reliability of AlGaN-based deep-UV Light-Emitting Diodes (LE...
This paper reports on the degradation mechanisms that limit the reliability of high-power light-emit...
With the development in Visible Light Communication (VLC), and LED is a key component in that system...
High-power (HP) UV-LEDs can replace UV lamps for real-time fluoro-sensing applications by allowing p...
The market for UV LEDs is experiencing a rapid growth, also driven by the need for effective and eff...
This paper reports the results of a reliability investigation performed on four different groups of ...
This work analyzes the long-term functionality of HP (High-power) UV-LEDs (Ultraviolet Light Emittin...
In the last year the market of ultraviolet (UV) light-emitting diodes (LEDs) had a huge increase due...
Specific tests to assess reliability of high luminosity AlInGaP LED for outdoor applications are nee...
Applications of LEDs have increased significantly, and increasing outdoor applications are observed....
Light emitting diode (LED) offers high efficiency and energy saving alternative to current light so...
Short-term accelerated life test activity on high brightness light emitting diodes is reported. Two ...
With this paper we present an analysis of the degradation of state-of-the-art high power LEDs. Three...
Short-term accelerated life test activity on high brightness light emitting diodes is reported. Two ...
It took just ten years for LEDs to become the most successful lighting technology by market share. T...
This paper describes an analysis of the reliability of AlGaN-based deep-UV Light-Emitting Diodes (LE...
This paper reports on the degradation mechanisms that limit the reliability of high-power light-emit...
With the development in Visible Light Communication (VLC), and LED is a key component in that system...
High-power (HP) UV-LEDs can replace UV lamps for real-time fluoro-sensing applications by allowing p...
The market for UV LEDs is experiencing a rapid growth, also driven by the need for effective and eff...
This paper reports the results of a reliability investigation performed on four different groups of ...
This work analyzes the long-term functionality of HP (High-power) UV-LEDs (Ultraviolet Light Emittin...
In the last year the market of ultraviolet (UV) light-emitting diodes (LEDs) had a huge increase due...
Specific tests to assess reliability of high luminosity AlInGaP LED for outdoor applications are nee...
Applications of LEDs have increased significantly, and increasing outdoor applications are observed....
Light emitting diode (LED) offers high efficiency and energy saving alternative to current light so...
Short-term accelerated life test activity on high brightness light emitting diodes is reported. Two ...
With this paper we present an analysis of the degradation of state-of-the-art high power LEDs. Three...
Short-term accelerated life test activity on high brightness light emitting diodes is reported. Two ...
It took just ten years for LEDs to become the most successful lighting technology by market share. T...
This paper describes an analysis of the reliability of AlGaN-based deep-UV Light-Emitting Diodes (LE...
This paper reports on the degradation mechanisms that limit the reliability of high-power light-emit...
With the development in Visible Light Communication (VLC), and LED is a key component in that system...