LED & OLEDs Collection
Technologies | Micro-LEDs | LED Modules | Systems | Automotive |
Dec 03, 2019
Hella Announces Development of High-Resolution Lighting System Digital Light SSL|HD
With the new high-resolution lighting system "Digital Light SSL|HD", the lighting and electronics expert HELLA is making a further significant contribution to greater safety and comfort in road traffic. With this lighting technology, more than 30,000 pixels can be controlled intelligently and individually, thus bringing about numerous new safety functions like optical lane markings. Furthermore, original equipment manufacturers and end customers can use SSL|HD technology to implement and experience further options allowing enhanced individualisation, such as coming and leaving home animations as well as communication functions.
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Featured | LEDs | Cree |
Dec 02, 2019
J Series 5050 New P Class Versions Deliver Industry-Leading Efficacy at 1W
J Series™ LEDs extend Cree’s industry-leading portfolio of lighting-class LEDs to a broader set of applications. The J Series 5050 LEDs combine high efficacy and excellent value in a reliable package.
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Technologies | Light Generation | Light Extraction | LEDs | Flip-Chip LED | SSL-Research |
Oct 25, 2019
Chinese Researchers Propose Method to Overcome Low Efficiency of High-Power Flip-Chip LEDs
Chinese scientists from different research centers recently published a co-authored paper on "Highly Efficient GaN-based High-Power Flip-Chip LEDs" in Optics Express Vol. 27, Issue 12, pp. A669-A692 (2019)under the terms of the OSA Open Access Publishing Agreement. High-power flip-chip light-emitting diodes (FCLEDs) suffer from low efficiencies because of poor p-type reflective ohmic contact and severe current crowding, they propose an improvement by using an Ag film.
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Technologies | Research | LEDs | Micro-LEDs | Displays |
Oct 04, 2019
Plessey - Native Blue and Native Green Emission microLEDs from the same Wafer
Plessey, an embedded technologies developer at the forefront of microLED technology for augmented and mixed reality (AR/MR) display applications has extended the capability of their proprietary GaN-on-Silicon process to enable Native Blue and Native Green emission from the same wafer.
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Technologies | Research | Flexible OLEDs | Automotive | Special Applications |
Sep 17, 2019
Fraunhofer Shows Modular OLED Light Strips
At the International Symposium on Automotive Lighting 2019 (ISAL) in Darmstadt from September 23 to 25, 2019, the Fraunhofer Institute for Organic Electronics, Electron Beam and Plasma Technology FEP, a provider of research and development services in the field of organic electronics, will present OLED light strips of any length with additional functionalities for the first time at booth no. 37.
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Technologies | Research | OLEDs | Perovskite | Light Generation | Light Sources |
Aug 06, 2019
High Performance from Extraordinarily Thick Organic Light Emitting Diodes with Perovskite Layers
By combining thin organic layers with thick layers of hybrid perovskite, researchers at Kyushu University in Japan have developed micrometer-thick organic light-emitting diodes that could improve the affordability and viewing angles of high-performance displays and televisions in the near future.
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LEDs | Solar Systems | Technologies |
Jun 04, 2019
Organic Solar Cells and Light-emitting Diodes United
In the past 25 years of research on organic semiconductors, it was thought that organic solar cells and organic light-emitting diodes (OLEDs) could not be combined in a single device. A team of physicists headed by Prof. Koen Vandewal from Technische Universität Dresden has now succeeded in manufacturing an organic solar cell that simultaneously functions as an efficient OLED. Their findings were recently published in the internationally renowned journal Nature Materials.
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Technologies | LEDs | Monolythic RGB LEDs | Color-Tuning |
May 02, 2019
Controlling Current, Duty Cycle and Pulses Allows Color Tuning in Monolithic GaN LEDs
A new technique - the result of an international collaboration of scientists from Lehigh University, West Chester University, Osaka University and the University of Amsterdam - could pave the way for monolithic integration for simple color tuning of a light bulb, according to Volkmar Dierolf, Distinguished Professor and Chair of Lehigh's Department of Physics who worked on the project.
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Technologies | Light Conversion | Phosphors | White LEDs |
Apr 24, 2019
Energy-Saving New Red LED Phosphor Developed at University of Innsbruck
The human eye is particularly sensitive to green, but less sensitive to blue and red. Chemists led by Hubert Huppertz have now developed a new red phosphor whose light is well perceived by the eye. This increases the light yield of white LEDs by around one sixth, which can significantly improve the energy efficiency of lighting systems.
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Technologies | Research | LEDs | Light Generation | Exciton |
Apr 15, 2019
TU Vienna - New Method to Generate Light from Exotic Particle States
A new type of light-emitting diode has been developed at TU Wien. Light is produced from the radiative decay of exciton complexes in layers of just a few atoms thickness.
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Technologies | Research | LEDs | Nano-Structures | Light Extraction |
Feb 21, 2019
An Old Story Re-Edited? - Firefly-Inspired Surfaces Improve LED Efficiency
A new type of light-emitting diode lightbulb could one day light homes and reduce power bills, according to Penn State researchers who suggest that LEDs made with firefly-mimicking structures could improve efficiency.
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Technologies | Research | Solid State Lighting | Light Generation | Perovskite |
Jan 25, 2019
The Possible Future of Lighting - Paint-On Semiconductors from Ornate Quantum Physics
LED lights and monitors, and quality solar panels were born of a revolution in semiconductors that efficiently convert energy to light or vice versa. Now, next-generation semiconducting materials are on the horizon, and in a new study, researchers have uncovered eccentric physics behind their potential to transform lighting technology and photovoltaics yet again.
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Technologies | Research | LEDs | Light Conversion | IR-LEDs | Quantum Dots |
Dec 13, 2018
Colloidal Quantum Dots Make LEDs Shine Bright in the Infrared
ICFO researchers report on the development of a colloidal quantum-dot light emitting diode with unprecedented quantum and power conversion efficiencies in the infrared range. The ideal optoelectronic semiconductor material should be a strong light emitter i.e. should emit light very efficiently upon optical excitation as well as be an efficient charge conductor to allow for electrical injection in devices. These two conditions when met can lead to highly efficient light emitting diodes as well as to solar cells with the possibility to approach the Shockley-Queisser limit. Until now the materials that have come close to meeting these conditions have been based on epitaxially-grown costly III-V semiconductors that cannot be monolithically integrated to CMOS electronics.
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Technologies | Research | LEDs | Perovskite | Light Generation |
Nov 22, 2018
Researchers Push Perovskite LEDs' Efficiency To Rivaling Best OLEDs
Compared to OLEDs, which are widely used in high-end consumer electronics, the perovskite-based LEDs, developed by researchers at the University of Cambridge, can be made at much lower costs, and can be tuned to emit light across the visible and near-infrared spectra with high colour purity. Now, researchers have set a new efficiency record for LEDs based on perovskite semiconductors, rivalling that of the best Organic LEDs (OLEDs).
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Technologies | Research | LEDs | Light Conversion | Machine Learning |
Oct 23, 2018
New Algorithm Can More Quickly Predict Phosphor Materials for LEDs
Jakoah Brgoch, assistant professor of chemistry at the University of Houston, and members of his lab published a paper on Oct. 22 in Nature Communications describing how machine learning speeds discovery of new materials. By scanning a huge number of compounds for their key attributes they were looking for a new light conversion material that could be used in white LEDs.
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Technologies | Research | LEDs | Light Generation | Light Conversion |
Oct 11, 2018
Spanish Researchers Develop Sand that Produces White Sun-Like LEDs
The team led by the chemist-technologist Rubén Costa of IMDEA Materials (Madrid) and the chemists Jesús Berenguer of the University of La Rioja and Javier García of the University of Alicante has overcome one of the biggest obstacles in the progress towards new sources of healthier artificial lighting.
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Technologies | LEDs | RGB LEDs | Controls | Driver IC |
Oct 09, 2018
Dynamic In-Car Lighting Scenarios - Osram's Osire E4633i Prototype with Inova's Serial Control Driver
The more autonomous a car becomes, the more the way in which it is used will change. As developments continue toward autonomous driving, more and more attention is being focused on the passenger cell. Light will become an integral part of the passenger cell, taking on functional and design-specific tasks. Previously static light, which could only be switched on and off, has now been given a dynamic dimension with the prototype of the Osire E4633i – with countless design options for car manufacturer.
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Technologies | Light Generation | OLEDs | Special Applications | Displays |
Aug 07, 2018
Electron Beam Patterning for Full-Color HR OLED Displays
OLED microdisplays are increasingly establishing themselves in consumer-ready wearables and data glasses. In order to meet the requirements for higher efficiency, higher contrast, and higher resolutions in these applications, Fraunhofer FEP scientists have developed a new micropatterning approach for OLEDs on silicon substrates. This might eliminate the use of color filters and shadow masks in the future and allow full-color displays to be developed by means of a new process. An increase in efficiency and considerably broader color gamut have already been demonstrated in first experiments.
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Technologies | Research | LEDs | Quantum Dots | Light Conversion |
Jul 19, 2018
Liquid-Suspended White QD LEDs Achieve Luminous Efficacy Record
Quantum dot (QD) white LEDs that show a luminous efficacy of 105 lm/W have been developed. The QDs are liquid-based and, according to researchers, could help the LEDs achieve an efficacy double that of LEDs that incorporate quantum dots in solid films. With further development, researchers say the new LEDs could reach an efficacy over 200 lm/W.
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Technologies | Research Reports | LEDs | Manufacturing |
Jul 12, 2018
InteGreat Project Successfully Researched New Approaches to LED Production
In the InteGreat research project, Osram Opto Semiconductors coordinated a consortium comprising seven partners from science and industry. Between December 2014 and February 2018 the project partners investigated time-honored manufacturing approaches and know-how along the entire LED production process with the aim of identifying potential areas for optimization. The new insights allow for LED products to be given additional superior properties that would have been difficult or even impossible to achieve with the technologies previously used to produce LEDs.
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Technologies | LEDs | Micro-LEDs | Light Generation | Special Applications | Displays |
Jun 19, 2018
KAIST Team Develops Flexible Blue Vertical Micro LEDs
In CES 2018, micro LED TV was spotlighted as a strong candidate for replacing the active-matrix organic light-emitting diode (AMOLED) display. Micro LED is a sub-100 um light source for red, green and blue light, which has advantages of outstanding optical output, ultra-low power consumption, fast response speed, and excellent flexibility. Professor Keon Jae Lee from the Department of Materials Science and Engineering and his team have developed a low cost production technology for thin-film blue flexible vertical micro LEDs (f-VLEDs).
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Technologies | OLEDs | Displays | Manufacturing | Special Applications |
Apr 16, 2018
Smart Printing: Fraunhofer IAP Develops Power Generating Films and Luminescent Glass
New inks for inkjet printers make it possible to print organic displays or solar cells on film and glass for the use in architecture, the textile industry and many other industries.
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Technologies | Light Generation | LEDs | Color LEDs |
Mar 29, 2018
Scientists Reveal the Fundamental Limitation of In Concentration in InGaN Solid-State Devices
For the first time an international research group has revealed the core mechanism that limits the indium (In) content in indium gallium nitride ((In, Ga)N) thin films - the key material for blue light emitting diodes (LED). Increasing the In content in InGaN quantum wells is the common approach to shift the emission of III-Nitride based LEDs towards the green and, in particular, red part of the optical spectrum, necessary for the modern RGB devices. The new findings answer the long-standing research question: why does this classical approach fail, when we try to obtain efficient InGaN-based green and red LEDs?
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Technologies | Light Conversion | LEDs | Quantum Dots |
Feb 26, 2018
Realizing Highly Efficient QD LEDs with Metallic Nanostructures at Low Cost
The Korea Advanced Institute of Science and Technology (KAIST) announced that a team of their researchers have discovered a technology that enhances the efficiency of Quantum Dot LEDs. Professor Yong-Hoon Cho from the Department of Physics and his team succeeded in improving the efficiency of Quantum Dot (QD) Light-Emitting Diodes (LEDs) by designing metallic nanostructure substrates.
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Technologies | Light Generation | Phosphors |
Feb 22, 2018
Supercomputers Aid Discovery of New, Inexpensive Material to Make LEDs with Excellent Color Quality
A team led by engineers at the University of California San Diego has used data mining and computational tools to discover a new phosphor material for white LEDs that is inexpensive and easy to make. Researchers built prototype white LED light bulbs using the new phosphor. The prototypes exhibited better color quality than many commercial LEDs currently on the market.
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Technologies | LEDs | Light Generation |
Dec 13, 2017
Atomistic Calculations Predict that Boron Incorporation Increases the Efficiency of LEDs
High-power white LEDs face the same problem that Michigan Stadium faces on game day -- too many people in too small of a space. Of course, there are no people inside of an LED. But there are many electrons that need to avoid each other and minimize their collisions to keep the LED efficiency high. Using predictive atomistic calculations and high-performance supercomputers at the NERSC computing facility, researchers Logan Williams and Emmanouil Kioupakis at the University of Michigan found that incorporating the element boron into the widely used InGaN (indium-gallium nitride) material can keep electrons from becoming too crowded in LEDs, making the material more efficient at producing light.
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Technologies | LEDs | Light Generation | Automotive |
Oct 02, 2017
Eviyos LED Prototype Revolutionizes Smart Headlights
The Eviyos prototype developed by Osram Opto Semiconductors is the world’s first hybrid LED and represents major progress toward the first market-ready smart controllable high-resolution LED. As soon as oncoming traffic is detected the appropriate pixels are automatically switched off so drivers of oncoming vehicles are not dazzled. The prototype, integrated in a demonstrator from Osram Specialty Lighting, were on show for the first time at ISAL from September 25 through 27, 2017 in Darmstadt.
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Technologies | OLEDs | Flexible OLEDs |
Sep 21, 2017
OLEDs Applied to Paper-Thin Stainless Steel
Fraunhofer Institute for Organic Electronics, Electron Beam and Plasma Technology FEP, a provider of R&D in the field of organic electronics, will be presenting OLEDs on gauzy stainless steel foil during aimcal 2017 in Tampa/USA, from October 15-18, 2017. The novel application on display in Booth 22 was developed in cooperation with the Nippon Steel & Sumikin Materials Co., Ltd. (NSMAT) and Nippon Steel & Sumitomo Metal Corporation (NSSMC).
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Technologies | LEDs | Light Generation |
Sep 15, 2017
Tracing the Light Inside an LED
The performance of white LEDs can be improved, based on better knowledge of the absorption and scattering of light inside the LED. A new method, developed by the University of Twente in The Netherlands and Philips Lighting, can lead to efficiency improvement and powerful design tools.
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Technologies | LEDs | Light Generation |
Sep 15, 2017
Nanoparticles Could Spur Better LEDs, Invisibility Cloaks
In an advance that could boost the efficiency of LED lighting by 50 percent and even pave the way for invisibility cloaking devices, a team of University of Michigan researchers has developed a new technique that peppers metallic nanoparticles into semiconductors.
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