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Your search for "integrated photonic systems" returned 8 results.

2023/02/22

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.

2024/10/09

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.

2021/06/30

Unfolding New Dimensions of CMOS SWIR Imaging

Artilux, the pioneer of wide spectrum 3D sensing technology based on GeSi photonics, announced today the world’s first single-chip CMOS-based GeSi imager for a compact dual-mode (2D/3D) SWIR (Shortwave Infrared) sensing & imaging system. The high-resolution GeSi imager is fabricated at TSMC 12-inch CMOS production line, and is ready for commercialization at scale, enabling an ever-growing ecosystem to mark the beginning of SWIR sensing and imaging for consumer markets.

2019/12/10

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.

2020/07/08

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.

2026 OCP APAC Summit

2019/08/15

Artilux Announces New GeSi 3D Sensing Technology to Improve Eye Safety and Outdoor User Experiences

Artilux, an innovator in optical and electronics technology, announces its new Artilux Explore Series for wide spectrum 3D sensing. By operating at longer wavelength light than conventional solutions, the new Explore Series delivers exceptional accuracy, reduces the risk of eye damage and minimizes sunlight interference, enabling a consistent outdoor-indoor user experience. The breakthrough is based on a new GeSi technology platform developed by Artilux in cooperation with TSMC.

2022/12/19

Artilux Launches Next-gen Sensing Technology with High Gain and Low Noise Performance for Automotive Applications

Artilux, the renowned leader in CMOS SWIR optical sensing technology and GeSi (Germanium Silicon) photonics technology today announced Germanium-Silicon Avalanche Photodiode (GeSi APD) array technology, the next-gen 3D imaging and sensing technology that achieves the unique high gain and low dark current with mature CMOS-based production. When being used with Optical Phased Array (OPA) technology, an optimal Solid-State LiDAR system will be implemented to improve sensing and to truly fulfill the affordable safety in autonomous driving.

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