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Holometrica

Holometrica provides SafeRay, a portable thermo‑interferometry system that combines full‑field laser interferometry, thermal imaging, and physics‑informed AI to detect sub‑micron defects across any material. The device captures dynamic displacement fields and uses edge AI to classify defects, quantify severity, and predict failure risk years in advance, enabling proactive maintenance for cultural heritage, aerospace, and energy assets.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Critical assets in sectors such as cultural heritage, aerospace, and energy require early detection of microscopic defects, but existing non‑destructive testing (NDT) tools are bulky, limited to static imaging, and cannot predict how identified flaws will evolve under stress.

Solution

Holometrica offers SafeRay, a portable thermo‑interferometry system that combines full‑field laser interferometry, thermal imaging, and physics‑informed artificial intelligence. The device captures sub‑micron surface deformations and temperature maps while a material‑agnostic edge AI classifies defects, quantifies their severity, and models their mechanical behavior under load. By generating dynamic displacement fields, SafeRay forecasts defect propagation and failure risk years in advance, turning NDT from a reactive snapshot into a proactive maintenance tool. Its lightweight, field‑ready design brings laboratory‑grade diagnostics to on‑site inspections across diverse materials and environments.

Target Audience

Primary customers are museums and cultural‑heritage institutions, aerospace manufacturers and MRO providers, and energy‑infrastructure operators responsible for high‑value, failure‑critical assets.

Features

  • Full‑field laser interferometry detects sub‑micron deformations invisible to conventional NDT methods.
  • Integrated thermal imaging simultaneously maps material boundaries and temperature anomalies.
  • Edge AI performs real‑time defect classification, severity quantification, and physics‑based risk prediction.
  • Dynamic displacement field analysis predicts defect evolution and failure risk 2–5 years before visible damage.
  • Material‑agnostic hardware enables inspection of artworks, composites, metal structures, and turbine blades.
  • Portable, battery‑operated unit eliminates the need for fixed laboratory equipment and rope access.
  • Cloud‑connected analytics platform provides risk scores and trend visualizations for maintenance planning.
This profile is AI-generated and may contain inaccuracies.