HomeNewsIndia NewsCMOS Process for high-performance MicroLEDs to overcome display-size obstacles

    CMOS Process for high-performance MicroLEDs to overcome display-size obstacles

    New Concept Creates All-in-One RGB MicroLEDs, Eliminates Several Transfer Steps to Receiving Substrate & Boosts Performance

    Leti, a research institute of CEA Tech, announced a new technology for fabricating GaN microLED displays for applications ranging from smart watches to TVs with no size limit.

    The approach fabricates elementary units of all-in-one red, green, blue (RGB) microLEDs on a CMOS driving circuit, and transfers the devices to a simple receiving substrate. The units are fabricated with a full semiconductor, wafer-scale approach.

    “This new process, in the proof-of-concept stage, paves the way to commercial, high-performance microLED displays,” said François Templier, CEA-Leti’s strategic marketing manager for photonic devices. “The CMOS-based approach provides higher brightness and higher resolution microLEDs and is a game changer for very large TVs.”

    While they promise exceptional image quality and better energy efficiency than existing liquid crystal display (LCD) and organic light-emitting diode (OLED) technologies, microLED displays currently face significant barriers on the road to commercialization.

    One of the biggest challenges is improving the performance of the driving electronics, which require more power to deliver brighter images and more speed to support continuously increasing demands for high display resolution. Faster electronics are required to power millions of pixels in a fixed-frame time in microLED displays, but existing driving display technology, known as a thin-film transistor (TFT) active matrix, cannot provide the necessary current and speed.

    CEA-Leti’s new approach fabricates CMOS-driven, high-performance GaN microLED displays with a simplified transfer process that eliminates the use of the TFT backplane. RGB microLEDs are stacked directly onto a micro-CMOS circuit, and each unit is transferred onto a simple receiving substrate. Then, the RGB microLEDs and the backplane are fabricated on a single semiconductor line.

    In addition to increasing power and driving speed – and improving display performance – this process avoids several costly steps needed with current technology to make electrical and mechanical contacts between micro-LEDs and the receiving substrates.

    CEA-Leti presented a paper on the breakthrough titled “A New Approach for Fabricating High-Performance MicroLED Displays” on May 14, during Display Week 2019 in San Jose, Calif.

    For more information, visit:  www.leti-cea.com 

    ELE Times Research Desk
    ELE Times Research Deskhttps://www.eletimes.ai
    ELE Times provides a comprehensive global coverage of Electronics, Technology and the Market. In addition to providing in depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build awareness, drive traffic, communicate your offerings to right audience, generate leads and sell your products better.

    LEAVE A REPLY

    Please enter your comment!
    Please enter your name here

    Related News

    Must Read

    Renesas Expands Sensing Portfolio with 3 Magnet-Free IPS ICs & Web-Based Design Tool

    New Simulation & Optimization Platform Enables Custom Coil Designs...

    IEEE IEDM, 2025 Showcases Latest Technologies in Microelectronics, Themed “100 Years of FETs”

    The IEEE International Electron Devices Meeting (IEDM) is considered...

    OMNIVISION Introduces Next-Generation 8-MP Image Sensor For Exterior Automotive Cameras

    OMNIVISION announced its latest-generation automotive image sensor: the OX08D20, 8-megapixel (MP) CMOS...

    Vishay Intertechnology Expands Inductor Portfolio with 2000+ New SKUs and Increased Capacity

    Vishay Intertechnology, Inc. announced that it has successfully delivered...

    Keysight to Demonstrate AI-enabled 6G and Wireless Technologies at India Mobile Congress 2025

    Keysight Technologies will demonstrate 20 advanced AI-enabled 6G and...

    Ashwini Vaishnaw Approves NaMo Semiconductor Lab at IIT Bhubaneswar

    As part of a big push towards the development...

    Electric Mobility Drives India’s Power Electronics Expansion

    India is on the verge of an electric revolution....

    India Targets 40% Local Value Addition in Electronics with New Component Scheme

    India's electronics manufacturing landscape is set for a major...