Industrial hub

Industrial Metrology and Process Control

Remote industrial metrology for complex surfaces, large structures, moving targets, and difficult-access inspection points where conventional measurement chains create too much setup and too little usable data.
Built for denser stand-off 3D metrology, stronger surface coverage, geometry linked to dynamic behavior, and engineering outputs that go beyond a basic point cloud.
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Industrial point-cloud output and reconstruction views support process-control interpretation alongside stand-off metrology.

One engineering path

Keep geometry and dynamic behavior in the same measurement route.

Higher spatial density

Designed for complex surfaces, deeper reconstruction, and measurement tasks that need more than sparse remote data.

Engineering-ready outputs

Move from point clouds to spectra, vectors, mode maps, and strain-ready fields.

Process control source content

High-accuracy 3D profiles during production

Whether in large or specialized additive manufacturing setups or in laser or mechanical machining operations, Ommatidia devices offer high-accuracy 3D profiles of large parts during production.
This precision helps ensure that the manufacturing process meets stringent quality standards and requirements. Data can be made available in the correct format and through the right interfaces for real-time requirements, improving efficiency and productivity.

Precision and speed for digital manufacturing

As industries embrace digital transformation, fast, accurate, and reliable 3D data becomes critical. The Ommatidia Q1 Laser RADAR sets a benchmark in dimensional metrology, delivering precision and efficiency for quality control in advanced manufacturing.
Trust Ommatidia to deliver precision metrology solutions that help manufacturing processes meet high standards with real-time accuracy and efficiency.
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Precision metrology solutions for process-control environments.

Advantages

Unparalleled accuracy

High-precision 3D measurement for demanding production and inspection requirements.

Flexible integration

Standard connectors and API support integration into existing process-control environments.

Low-latency control

Low-latency data supports event detection, continuous monitoring, and closed-loop control.

Fast point cloud acquisition

Massively parallel measurement shortens the path from capture to usable inspection data.

Lower installation burden

Reduce installation cost and occupied space by removing the need for a robotic arm in suitable workflows.

Integration support

A partner network supports adaptation to specific integration and deployment needs.

Higher-density workflows

Where denser stand-off metrology adds value

These applications benefit from higher spatial density, stronger surface fidelity, and measurement outputs that support engineering decisions directly.

Dense stand-off 3D metrology

Large parts, difficult-access zones, and complex surfaces often need more coverage and reconstruction depth than sparse remote data can provide.

Fewer handoffs between tools

Replace scanner, tracker, and follow-up analysis steps with one cleaner measurement path and fewer alignment losses.

Process-control measurement

Bring 3D measurement into production checks, quality loops, and tolerance-control decisions.

Practical deployment

Fit inspection work across plant, lab, and field conditions without marker-heavy preparation.

Inspection and validation

Large-part inspection, dimensional validation, aerospace structures on jigs, and moving-line geometry checks.

Harsh industrial environments

Steel and aluminium lines, conveyors, glass processes, mining sites, and other difficult-access situations.

Geometry plus dynamics

Keep geometry and motion linked when vibration behavior matters alongside dimensional accuracy.

Why the Q1 Laser RADAR stands out

The Q1 Laser RADAR combines user-friendly software with advanced technology to make high-precision metrology accessible for process and quality control teams.
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Sample CAD comparison output from Ommatidia Laser RADAR metrology workflows.

Metrology-grade precision

Achieve measurements down to a few tens of micrometers, even on intricate geometries.

128 parallel laser beams

Accelerate measurement cycles and boost productivity through rapid data acquisition.

Non-contact measurements

Inspect surfaces without markers or physical alterations, preserving material integrity.

Extended range

Measure over long distances beyond conventional optical metrology limits.

Durable and portable

An IP54-rated design supports reliable work in diverse field and plant environments.

Easy integration

A lightweight system fits existing workflows and supports smoother adoption.

Application fit

Versatility across industries

The Q1 Laser RADAR supports quality-control applications for small components and large assemblies, including aerospace, automotive, railway, tooling, casting, forging, and heavy-machinery verification.

Aerospace

Inspect turbine blades, fuselage sections, and critical parts for compliance and safety.

Automotive

Streamline quality control for body-in-white structures, chassis, and powertrain components.

Railway

Assess large components such as wheelsets and axles to improve reliability and reduce downtime.

Mold and tooling inspections

Check tooling and molds where geometry quality drives downstream production quality.

Casting and forging quality assurance

Validate cast and forged parts where inspection access and surface coverage matter.

Heavy-machinery assembly verification

Support assembly verification on large structures and difficult-to-access components.

Empowering real-time process control

The Q1 Laser RADAR integrates into in-line quality-control systems, providing real-time 3D data to support continuous monitoring and optimization.

Rapid deviation correction

Identify and correct deviations earlier in the process.

Automated tolerance adjustments

Support automated adjustments that help maintain strict tolerances.

Less waste and downtime

Reduce waste, downtime, and inefficiencies in production.

Why choose Ommatidia

Ommatidia delivers solutions backed by extensive industry expertise. Q1 Laser RADAR technology helps industries achieve process and quality-control goals in the era of digital manufacturing.
Discover the future of quality control.
See point-cloud output, reconstruction, and process-control evidence in the same measurement story. Bring your target geometry, cycle-time needs, and inspection constraints into a technical demo.
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Common industrial questions

Choose Q1 when the priority is remote industrial metrology and vibration review on large targets or field-like environments where stand-off deployment matters more than maximum density.
Choose Q2 when denser 3D metrology, complex surfaces, multi-view workflows, or advanced motion and strain-ready outputs matter more than a simpler remote-inspection path.
Relevant examples include aerospace structures, automotive body-in-white and chassis checks, railway parts, molds and tooling, castings, forgings, and heavy-machinery verification.
The value is not only after-the-fact measurement. Earlier deviation detection, real-time 3D data, automated tolerance adjustments, and tighter control can improve process decisions before quality drift becomes more expensive.
Q1 can provide process-control data through standard connectors and APIs, with partner-network support for adapting the measurement workflow to specific real-time and interface requirements.

Related technical resources

Q1 vs Q2 selection

Compare range, density, and deployment fit across the Q-series.

Q1 Laser RADAR

Review the field-ready route for stand-off industrial metrology and process-control integration.

Q2 Laser RADAR

Review the denser metrology route for complex surfaces, advanced geometry, and geometry-plus-dynamics workflows.

Application briefs

Browse adjacent examples in metrology, vibrometry, and industrial inspection.