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Deputy Administrator (Contract)
Our General Operations team creates inspiring spaces and supportive services that make our company a great place to work. We manage and maintain all the details that keep our workspace operating seamlessly, from professional reception and daily workplace operations to organizing employee engagement activities.
This role offers excellent cross-functional exposure, helping every department thrive while maintaining high standards in general administration and ESG/HSE compliance. If you are a proactive, service-oriented who is dedicated to solving problems and keep admin operations seamlessly and friendly, we look forward to welcoming you to our team.
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.
Ultra-high Speed Interface Technology Development Forum
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.
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.
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.
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.