Collaboration

Partnerships for research, development, and technology transfer – from collaborative projects to tailored innovation solutions.

About SAL

Insights into SAL’s mission, values, research activities, and contribution to Europe’s innovation ecosystem.

CoRaLi-DAR

As part of the EU-funded CoRaLi-DAR project, a cost-effective, energy-efficient, and reliable advanced sensor and ranging system is being developed as a platform for the automotive market and beyond. The goal of the project is to combine both radio-based and light-based sensor technology in a single module, thereby leveraging the high-resolution capabilities of LiDAR and the high reliability of RADAR under adverse weather conditions.

Grafik mit Autos und Verbindungen

Project goals

  • Development of an advanced sensor and distance measurement system that combines both radio-based and light-based sensor technology in a single module
  • Integration of the LiDAR and RADAR chips on the same printed circuit board (PCB)
  • Development of an architecture that reduces manufacturing costs, package size, and power consumption during operation compared to the current state of the art

Project
facts

Title: CoRaLi-DAR (Colla­bo­ra­tive Radio-Light Detec­tion and Ranging)
Project Manager: Dr. Tommaso Cassese
Program: International Funding Project. The CoRaLi-DAR project is funded by the European Union under the Horizon Europe program (Grant Agreement Project 101092834).
Project duration: January 2023 – June 2027
Projekt­koordinator: Silicon Austria Labs GmbH

CoRaLi-DAR

Advanced Detection and Distance Measurement System for the Automotive Industry

Similar Projects

Discover more projects with similar focuses and technologies.

METAQUANT

The project focused on developing a new platform for generating a special type of light – so-called quantum light – using very thin structures, known as metasurfaces, which can produce entangled photon pairs with high efficiency….

KERMIT

KERMIT is developing a wearable, sweat-sensitive skin patch for the early detection and remote monitoring of kidney disease. The project integrates printed electrochemical sensors, sweat stimulation, microfluidics, low-power electronics, and wireless communication in a soft, integrated patch platform….

Opal

OPAL focused on the development of SAL's first integrated optical phased array system for LIDAR applications. Special attention was paid to the selection of the optical photonics platform to achieve low-loss operation with high bandwidth….

Contact

Business Development
Lisa Kainz MA
Business Development Microsystems
Graz
Project Manager
Dr. Tommaso Cassese
Staff Scientist, Integrated Photonics Technologies
Villach

Newsletter

Our Science & Stories newsletter provides the latest news, bietet aktuelle Neuigkeiten, Forschungshighlights und spannende Einblicke
von Silicon Austria Labs – direkt ins Postfach.