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Your search for "CMOS" returned 14 results.
Artilux and VisEra Presenting Next-gen Si-based Metalens Technology
Artilux, the leader of GeSi (germanium-silicon) photonics technology and pioneer of CMOS (complementary metal-oxide-semiconductor) based SWIR (short-wavelength infrared) optical sensing, imaging and communication, today announced its collaboration with VisEra Technologies (TWSE: 6789) on the latest Metalens technology. The newly unveiled Metalens technology differs from traditional curved lens designs by directly fabricating, on a 12” silicon substrate, fully-planar and high-precision nanostructures for precise control of light waves. By synergizing Artilux’s core GeSi technology with VisEra’s advanced processing capabilities, the demonstrated mass-production-ready Metalens technology significantly enhances optical system performance, production efficiency and yield. This cutting-edge technology is versatile and can be broadly applied in areas such as optical sensing, optical imaging, optical communication, and AI-driven commercial applications.
New Single Photon Detector on Silicon Photonics Platform Charts Path for Highly Integrated Room Temperature Quantum Computer
Artilux, the leader of GeSi (germanium-silicon) photonics technology and pioneer of CMOS (complementary metal-oxide-semiconductor) based SWIR (short-wavelength infrared) single photon detection, announces its collaboration with Dr. Richard A. Soref, a renowned expert widely known as the "father of silicon photonics", to jointly investigate the field of quantum information processing based on the integrated silicon photonics platform. The first result from this collaboration, recently published in APL Quantum titled "Room-temperature photonic quantum computing in integrated silicon photonics with germanium–silicon single-photon avalanche diodes", charts a new path for "cryogenics-free" quantum information processing applications.
Artilux Unveils World's First GeSi Wide Spectrum 3D Sensor at CES
At CES 2020, Artilux, an innovator in photonics and electronics technology, will be unveiling its Explore Series, the world's first wide spectrum 3D ToF (time-of-flight) sensor based on GeSi (germanium-on-silicon) photonic innovation. Operating at longer NIR (near infrared) wavelengths, the sensor can be used in the area of the spectrum that is more than 10 times safer than the currently-used 940nm wavelength, as well as improving sensing accuracy and performance under sunlight.
OmniVision and Artilux Announce Collaboration on NIR 3D Imaging and More
OmniVision, an industry leading developer of high performance CMOS image sensor solutions, and Artilux, the pioneer of wide spectrum 3D sensing technology based on GeSi photonics, jointly announced their execution of a formal letter of intent to collaborate in the field of CMOS image sensors and GeSi based 3D sensors, after a series of evaluation and analysis.
Dr. Tianyue Yu, Quanergy Systems Co-Founder And Former CTO, Joins Artilux As Strategic Advisor
Artilux, the world leader of GeSi photonic technology for CMOS based SWIR sensing and imaging, announced today that Dr. Tianyue Yu, Quanergy Systems co-founder and former CTO, is joining as its strategic advisor. Dr. Yu's 25+ years of experience and profound industry knowledge in the field of solid-state scanning LiDAR for automotive and IoT will aid in bolstering Artilux’s next growth phase in providing a scalable 3D sensing and imaging technology platform for various market segments.
USB4-Over-Fiber IC Solution, a New Era of Lighter, Longer, and Affordable Data Transfer Medium for Consumer Markets
Artilux, the renowned leader of GeSi (Germanium Silicon) photonic technology as well as CMOS-based SWIR sensing, imaging and optical communication technology, announced today the launch of the mass-production-ready USB4 active-optical-cable IC solution. Along with Artilux’s existing IC solutions for all-optical and hybrid optical/electrical HDMI™ and DisplayPort™ applications, today’s announcement on the USB4 active-optical-cable IC solution further positions Artilux’s Connect Series product line as the most comprehensive offering in high-speed optical communications solutions for mainstream consumer markets.
Artilux Announces Groundbreaking GeSi SPAD Research Published in Nature Journal
Artilux, the renowned leader of GeSi (germanium-silicon) photonics technology for CMOS (complementary metal-oxide-semiconductor) based SWIR (short-wavelength infrared) sensing and imaging, announced today that the research team at Artilux has made a breakthrough in advancing SWIR GeSi SPAD (single-photon avalanche diode) technology, which has been recognized and published by Nature, one of the world’s most prestigious scientific journals.
Artilux Presenting CMOS SWIR Technology for Brighter Tomorrow at COMPUTEX 2022
Artilux, the renowned leader in CMOS SWIR optical sensing technology and GeSi (Germanium Silicon) technology, showcased in COMPUTEX 2022 a full range of products at Booth #N0605a of Taipei Nangang Exhibition Center, Hall 1 from May 24th to 27th. With diverse scenario demonstrations, Artilux gave visitors a glimpse into the vast opportunities in using CMOS SWIR technology to seamlessly integrate optical communication, sensing, and imaging into product solutions to transform users’ day-to-day interactions with people and machines. As a highlight, Artilux launched two new products, including a multi-spectrum all-in-one bio-sensor for TWS earbuds and other wearables to enable digital health, and a dual-band 3D camera with optimal depth-sensing capability in NIR and SWIR spectra that is poised to enhance user experience in FinTech security, smart agriculture and food inspection, metaverse, and many more applications.
Artilux Unveils Artilux Connect HDMI 2.1 All Optical Solution
Artilux, an innovator in photonics and electronics technology, is unveiling its Connect Series, the world's first fully compliant all optical HDMI 2.1 IC solutions based on CMOS technology. The data transfer speed, handshakes and protocols are compliant from 1.4 all the way to 2.1. with HDP, DDC, HDCP, CEC, and ARC/eARC all enabled in the speed of light.