Home

Klemme groß Musiker gainn led Karu Aktivität Mus

a) Peak emission wavelengths of GaInN/GaN LED at 10... | Download  Scientific Diagram
a) Peak emission wavelengths of GaInN/GaN LED at 10... | Download Scientific Diagram

Semiconductor Today
Semiconductor Today

Plessey Achieves Native Red InGaN LEDs on Silicon for Full Color Micro LED  Displays - LEDinside
Plessey Achieves Native Red InGaN LEDs on Silicon for Full Color Micro LED Displays - LEDinside

Reduction in efficiency droop, forward voltage, ideality factor, and  wavelength shift in polarization-matched GaInN/GaInN multi-quantum-well  light-emitting diodes: Applied Physics Letters: Vol 94, No 1
Reduction in efficiency droop, forward voltage, ideality factor, and wavelength shift in polarization-matched GaInN/GaInN multi-quantum-well light-emitting diodes: Applied Physics Letters: Vol 94, No 1

Red InGaN μLEDs for Displays - LEDinside
Red InGaN μLEDs for Displays - LEDinside

Materials | Free Full-Text | Phosphor-Free InGaN White Light Emitting  Diodes Using Flip-Chip Technology | HTML
Materials | Free Full-Text | Phosphor-Free InGaN White Light Emitting Diodes Using Flip-Chip Technology | HTML

Emission spectra of a GaInN LED under pulsed injection conditions at... |  Download Scientific Diagram
Emission spectra of a GaInN LED under pulsed injection conditions at... | Download Scientific Diagram

Color online Current-voltage characteristic for a blue GaInN LED with... |  Download Scientific Diagram
Color online Current-voltage characteristic for a blue GaInN LED with... | Download Scientific Diagram

Effect of strain relaxation on performance of InGaN/GaN green LEDs grown on  4-inch sapphire substrate with sputtered AlN nucleation layer | Scientific  Reports
Effect of strain relaxation on performance of InGaN/GaN green LEDs grown on 4-inch sapphire substrate with sputtered AlN nucleation layer | Scientific Reports

Designs of InGaN Micro-LED Structure for Improving Quantum Efficiency at  Low Current Density | Nanoscale Research Letters | Full Text
Designs of InGaN Micro-LED Structure for Improving Quantum Efficiency at Low Current Density | Nanoscale Research Letters | Full Text

High-performance flat-type InGaN-based light-emitting diodes with local  breakdown conductive channel | Scientific Reports
High-performance flat-type InGaN-based light-emitting diodes with local breakdown conductive channel | Scientific Reports

Figure 1 from Internal quantum efficiency improvement of InGaN/GaN multiple  quantum well green light-emitting diodes | Semantic Scholar
Figure 1 from Internal quantum efficiency improvement of InGaN/GaN multiple quantum well green light-emitting diodes | Semantic Scholar

Efficiency droop in gallium indium nitride (GaInN)/gallium nitride (GaN)  LEDs - ScienceDirect
Efficiency droop in gallium indium nitride (GaInN)/gallium nitride (GaN) LEDs - ScienceDirect

Theoretical analysis of semi/non-polar InGaN/GaN light-emitting diodes  grown on silicon substrates
Theoretical analysis of semi/non-polar InGaN/GaN light-emitting diodes grown on silicon substrates

Analysis of thermal properties of GaInN light-emitting diodes and laser  diodes
Analysis of thermal properties of GaInN light-emitting diodes and laser diodes

Color online) (a) Measured I-V characteristics of the GaInN LED at... |  Download Scientific Diagram
Color online) (a) Measured I-V characteristics of the GaInN LED at... | Download Scientific Diagram

LED 7.62x7.62 mm L-9352SPG4C, GaInN 508nm 1900mlm 40deg, ULTRA PURE GREEN  waterclear
LED 7.62x7.62 mm L-9352SPG4C, GaInN 508nm 1900mlm 40deg, ULTRA PURE GREEN waterclear

Schematic drawing of blue InGaN/GaN LED structures. | Download Scientific  Diagram
Schematic drawing of blue InGaN/GaN LED structures. | Download Scientific Diagram

Schematic of the GRIN pillar on the top surface of a GaInN LED and... |  Download Scientific Diagram
Schematic of the GRIN pillar on the top surface of a GaInN LED and... | Download Scientific Diagram

High-performance flat-type InGaN-based light-emitting diodes with local  breakdown conductive channel | Scientific Reports
High-performance flat-type InGaN-based light-emitting diodes with local breakdown conductive channel | Scientific Reports

Indium gallium nitride - Wikipedia
Indium gallium nitride - Wikipedia

Internal quantum efficiency improvement of InGaN/GaN multiple quantum well  green light-emitting diodes
Internal quantum efficiency improvement of InGaN/GaN multiple quantum well green light-emitting diodes

633-nm InGaN-based red LEDs grown on thick underlying GaN layers with  reduced in-plane residual stress: Applied Physics Letters: Vol 116, No 16
633-nm InGaN-based red LEDs grown on thick underlying GaN layers with reduced in-plane residual stress: Applied Physics Letters: Vol 116, No 16

Investigating LED Efficiency via Multiphysics Simulation | COMSOL Blog
Investigating LED Efficiency via Multiphysics Simulation | COMSOL Blog

Performance improvement of GaN-based LEDs with step stage InGaN/GaN strain  relief layers in GaN-based blue LEDs
Performance improvement of GaN-based LEDs with step stage InGaN/GaN strain relief layers in GaN-based blue LEDs

Increased current for red InGaN μLEDs
Increased current for red InGaN μLEDs

Frontiers | Experimental and Modeling Investigations of Miniaturization in  InGaN/GaN Light-Emitting Diodes and Performance Enhancement by Micro-Wall  Architecture | Chemistry
Frontiers | Experimental and Modeling Investigations of Miniaturization in InGaN/GaN Light-Emitting Diodes and Performance Enhancement by Micro-Wall Architecture | Chemistry

A Roadmap to Efficient Green-Blue-Ultraviolet LEDs — LED professional - LED  Lighting Technology, Application Magazine
A Roadmap to Efficient Green-Blue-Ultraviolet LEDs — LED professional - LED Lighting Technology, Application Magazine

High-performance flat-type InGaN-based light-emitting diodes with local  breakdown conductive channel | Scientific Reports
High-performance flat-type InGaN-based light-emitting diodes with local breakdown conductive channel | Scientific Reports

Indium gallium nitride - Wikipedia
Indium gallium nitride - Wikipedia