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FreeScan Trak Nova optical tracking system for large-part inspection

Technical review: SKYLAB3D Engineering Team

FreeScan Omni vs FreeScan Trak Nova for Large-Part Inspection

FreeScan Omni and FreeScan Trak Nova decision table
Decision factor FreeScan Omni FreeScan Trak Nova
System architecture Standalone handheld scanner with onboard scan-to-inspect workflow Optical tracker plus detachable wide-field handheld scanner
Best-fit inspection work Mobile shop-floor, supplier, first article, tooling, and field inspection Vehicles, large castings, fabricated assemblies, heavy equipment, and broad structures
Published accuracy 0.02 mm 0.02 mm
Published volumetric performance 0.02 + 0.03 mm/m; 0.02 + 0.015 mm/m with VPG 0.062 mm within 12 m3; 0.046 + 0.012 mm/m with VPG
Maximum published field of view Laser: 580 x 650 mm; IR: 1205 x 1104 mm Up to 2600 x 2200 mm
Published scan rate Up to 7,619,000 points/s Up to 6,140,000 points/s
Reference method Marker-based laser workflow, feature alignment in IR, and integrated VPG Marker-free dynamic optical tracking for most parts, plus integrated VPG
Included workflow software FreeScan Omni desktop software and SHINING3D Inspect; on-device inspection enabled FreeScan Trak software with data fusion, feature recognition, and inspection module
PC platform Windows 11 Pro, 64-bit for desktop software; standalone work available on the scanner Windows 11 Professional 22H2, 64-bit; NVIDIA GPU required

FreeScan Omni and FreeScan Trak Nova can both support metrology-grade inspection, but they solve different setup problems. FreeScan Omni is the more self-contained choice when an operator needs to scan, inspect, and report at the part. FreeScan Trak Nova is built around optical tracking, wide-area coverage, and repeatable positioning across larger components.

Where the systems differ in practice

The most important difference is not the published point rate. It is how each system establishes and maintains the measurement frame while an operator moves around the part.

FreeScan Omni: inspection at the point of work

FreeScan Omni combines a scanner, onboard computing, a touchscreen, and an inspection workflow in one handheld unit. Its laser modes cover reflective and dark industrial surfaces, while infrared scanning provides a wider field of view for feature-based capture. The integrated video photogrammetry function helps control volumetric error on larger workpieces.

This architecture is useful for supplier quality, first article inspection, tooling checks, and field work where moving a laptop cart between stations would slow the job. The operator can scan, mesh, compare against CAD, and prepare a report on the device. A PC workflow remains available when the project needs a larger display or more extensive review.

FreeScan Omni used for mold and tooling inspection on the shop floor
A self-contained scanner is useful when the inspection team moves between parts, cells, or supplier locations.

FreeScan Trak Nova: optical tracking for broad coverage

FreeScan Trak Nova uses a tracked scanner and a separate wide-field scanner that also serves as the optical tracker. In dynamic tracking mode, the tracker maintains the scanner's position without applying markers to most parts. The UE Nova unit can be detached for handheld capture with a field of view up to 2.6 by 2.2 m.

This layout is better suited to large castings, vehicle structures, fabricated assemblies, construction equipment, and components that would otherwise require frequent repositioning. The tracker must retain a usable line of sight, so cell layout, operator access, and surface occlusion still matter.

FreeScan Trak Nova tracker and handheld scanner configured for large-part measurement
The tracked architecture reduces target preparation on many large parts and keeps detail capture tied to the same measurement frame.

Accuracy depends on the measurement length

Both systems list single-shot accuracy of 0.02 mm. That number does not describe the complete large-part job. For a long workpiece, volumetric accuracy and the method used to establish the global reference are more useful decision points.

FreeScan Omni lists volumetric accuracy of 0.02 + 0.03 mm/m and a video-photogrammetry specification of 0.02 + 0.015 mm/m. FreeScan Trak Nova lists 0.062 mm within a 12 m3 tracking volume and 0.046 + 0.012 mm/m with video photogrammetry. These values come from controlled acceptance testing. The production result still depends on calibration status, thermal stability, surface preparation, target layout when used, scanner movement, and the inspection plan.

Do not select either system from the smallest accuracy number alone. Define the feature tolerance, maximum measurement length, allowable uncertainty, and reporting method first. If the result will support a formal acceptance decision, include measurement-system analysis and verification artifacts in the implementation plan.

Marker-free does not mean setup-free

FreeScan Trak Nova can scan most parts without markers while the tracker sees the handheld unit. Very large surfaces may still benefit from markers, especially when the tracker must be repositioned or when a long scan needs an additional global reference. FreeScan Omni uses markers in its metrology laser workflow and can use video photogrammetry to strengthen large-object consistency. Its infrared mode can use feature alignment when the surface provides enough geometry.

For either system, test the hardest real surface before purchase. A polished stamping, a black casting, and a painted assembly can produce different preparation and exposure requirements even when their overall dimensions are similar.

Software included with each system

Software is part of the equipment decision, not a separate afterthought.

  • FreeScan Omni: the SKYLAB3D package includes FreeScan Omni desktop software and SHINING3D Inspect. The scanner also supports on-device inspection and reporting.
  • FreeScan Trak Nova: FreeScan Trak software handles wide-range scanning, tracked detail capture, data fusion, feature recognition, and the inspection module.
  • Downstream options: both workflows can exchange data with inspection and reverse-engineering platforms such as PolyWorks, Geomagic Control X, EXModel Pro, and Geomagic Design X. Confirm licenses and required deliverables during configuration.

A mesh-to-CAD deliverable may require additional reverse-engineering software. Inspection against an existing nominal CAD model follows a different software path. SKYLAB3D can quote the scanner, required software, workstation, training, and applicable protection options as one configured package.

FreeScan Omni on-device scan-to-inspect workflow
FreeScan Omni places the scan-to-inspect workflow on the scanner; FreeScan Trak Nova centers the workflow on tracked large-area capture and desktop processing.

Workstation and platform requirements

Do not plan a macOS workstation for either PC software path. Current official requirements list Windows, and no current macOS support is published for FreeScan Omni PC software or FreeScan Trak Nova software.

Current official workstation guidance
Component FreeScan Omni PC workflow FreeScan Trak Nova
Operating system Windows 11 Pro, 64-bit Windows 11 Professional 22H2, 64-bit
Processor Intel Core i7-13650HX class or higher, with AVX support 13th Gen Intel Core i7-13700H or higher, with AVX support
Memory 64 GB DDR5 recommended 64 GB DDR5 dual-channel or more
Graphics NVIDIA RTX 4060 or higher; 12 GB video memory recommended NVIDIA RTX 4060 Laptop GPU or higher; 8 GB video memory or more
Practical baseline Use the official recommendation for new procurement. Smaller projects may run below it, but capacity should be validated with representative data. Use the official recommendation for new procurement. Large fused datasets and inspection projects benefit from additional RAM and fast SSD storage.

FreeScan Omni can complete many scan-to-inspect tasks on the scanner, which reduces field dependence on a workstation. A suitable Windows PC is still needed for desktop software, data management, and workflows that move into third-party applications.

Which system fits which inspection job?

  • Choose FreeScan Omni when: a single operator needs a portable scan-to-report workflow, the work moves between cells or supplier sites, and the part can be covered effectively from a handheld position.
  • Choose FreeScan Trak Nova when: large-area coverage, marker-free optical tracking, and a stable global frame are central to the job, especially for vehicles, large fabrication, castings, or heavy equipment.
  • Run an application test when: the tolerance is tight relative to the overall part length, the surface is highly reflective or dark, hidden features matter, or the inspection result will support formal acceptance.

Plan the implementation, not only the purchase

A reliable deployment should include a representative-part acceptance test, operator workflow, calibration and verification procedure, file-management policy, inspection template, and ownership for software updates. Training should cover the actual part family and reporting standard. On-site training is available plus travel expenses.

Before the demo, prepare the nominal CAD model, tolerance callouts, expected reporting format, part dimensions, surface description, and the longest measurement span. Those details expose the real fit much faster than a general product demonstration.

Sources and further reading

Compare the live FreeScan Omni standalone inspection scanner and FreeScan Trak Nova optical tracking system, review SKYLAB3D's industrial 3D inspection workflow guidance, or browse the industrial 3D scanner collection. For a closely related large-part workflow, see the FreeScan Trak Nova heavy-equipment refurbishment guide.

Ask SKYLAB3D to review the inspection application

Scanners discussed in this guide

Frequently asked questions

Which is better for large-part inspection, FreeScan Omni or FreeScan Trak Nova?

FreeScan Trak Nova is generally the stronger fit when optical tracking, wide-area coverage, and a stable global frame are central to the job. FreeScan Omni is often the better operational fit when a single operator needs a portable, self-contained scan-to-inspect workflow.

Does FreeScan Trak Nova require markers?

It can scan most parts without markers while the optical tracker sees the handheld scanner. Shining 3D notes that markers may still be recommended for very large surfaces or workflows that need additional global reference control.

Can FreeScan Omni or FreeScan Trak Nova run on macOS?

Current official PC software requirements list Windows. Do not plan a macOS workstation for either system unless SKYLAB3D verifies a later manufacturer release for the exact software version.

What software is included with each system?

The SKYLAB3D FreeScan Omni package includes FreeScan Omni desktop software and SHINING3D Inspect, with on-device inspection enabled. FreeScan Trak Nova uses FreeScan Trak software for scanning, data fusion, feature recognition, and inspection; additional reverse-engineering or third-party inspection licenses may be required for some deliverables.

Are both systems suitable for traceable dimensional inspection?

Both systems publish acceptance testing aligned with VDI/VDE 2634 Part 3 and ISO 10360 in an ISO/IEC 17025 accredited lab. The actual calibration certificate, verification procedure, measurement uncertainty, and application method determine whether a specific quality requirement is satisfied.

Filed in: 3D Inspection, Comparison, FreeScan Omni, FreeScan Trak Nova, Large Part Scanning, Metrology, Shining 3D

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