Ommatidia Q2 reconstructs full-field 3D velocity vectors from multiple views using one parallel-scanning Laser RADAR.
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Explore innovations shaping the future of mapping, automation, and 3D sensing.
Learn how a Q-series Laser Doppler Vibrometer can measure dense bridge displacement profiles remotely and convert bending-dominated response into curvature and surface strain using Euler-Bernoulli beam theory.
Massively Parallel Laser RADAR Mobile Bridge Vibration Monitoring with the Ommatidia Q2 Two field demonstrations show how Q2 delivers 65 simultaneous non-contact velocity signals for rapid, […]
This application note shows the capability of Ommatidia Q2 Laser Doppler vibrometer to measure the vibrations of a concrete slab under the impact of a hammer, with a high density of points in simultaneous frames of 65 points.
Patras, Greece | May 6, 2025 — Ommatidia LiDAR led a hands-on workshop at the University of Patras, showcasing the Q2 Laser RADAR: the world’s first massively parallel FMCW LiDAR for contactless vibrometry and 3D metrology. Discover how this breakthrough technology is reshaping research and industry applications across aerospace, wind energy, railways, and more.
Join Ommatidia along with hundreds of experts in acoustics and vibrometry at DAS / DAGA 2025—the joint annual meeting of the German and Danish Acoustical Societies—taking place at Copenhagen’s Bella Centre from March 17-20, 2025.
This marks the first time, Ommatidia is presenting its groundbreaking Massively Parallel Laser Radar technology and its transformative applications in acoustics, 3D vibrometry, and metrology to a wider audience in Scandinavia.






