Stay up to date with the latest developments in LiDAR technology and products. From new releases and performance breakthroughs to industry trends and applications, here you'll find the most relevant LiDAR news and insights.

Explore innovations shaping the future of mapping, automation, and 3D sensing.

7 November 2025

How Our SpeckleGuard™ Technology Minimizes Noise

Speckle noise has long limited the accuracy of coherent laser vibrometry, especially on rough or composite surfaces. Ommatidia LiDAR’s SpeckleGuard™ technology tackles this challenge using compound aperture diversity and real-time fusion to stabilize velocity measurements across multiple beams. The result is cleaner data, higher measurement coherence, and reliable vibration analysis without surface preparation—even in demanding industrial or research environments.
23 July 2025

Field-Ready Innovation at EVACES 2025: Q2 Laser RADAR for Structural Health Monitoring

At EVACES 2025 in Porto, Ommatidia LiDAR showcased the Q2 Laser RADAR, a groundbreaking tool for real-time, non-contact structural health monitoring. During our session on innovative sensor technologies, we presented how Q2 captured sub-millimeter vibrations across 128 channels simultaneously—without scanning or targets. This marks a significant step forward in large-scale, high-resolution SHM for bridges and civil structures.
30 April 2025

Ommatidia LiDAR at IOMAC 2025

Join Ommatidia LiDAR at IOMAC 2025 from May 20–23 at Booth 1, Center at Rennes University, to explore the future of non-contact structural dynamics. We'll be showcasing the Q2 Laser RADAR, a massively parallel FMCW LiDAR system delivering real-time, full-field vibration analysis across 65 simultaneous channels. Designed for operational modal analysis (OMA) in automotive, aerospace, civil engineering, and machinery diagnostics, the Q2 offers micro-scanning precision, autofocus adaptability, and seamless integration with leading modal analysis platforms. Experience live demos and discover how Ommatidia is redefining high-precision vibrometry and SHM with scalable laser technologies.