SCANTECH / SCANOLOGY industrial 3D scanners
Select SCANTECH / SCANOLOGY industrial 3D scanners for dimensional inspection, reverse engineering and automated measurement. Specify existing system models when requesting accessories or replacement parts.
SIMSCAN-E compact scanners
A wireless handheld scanner for complex geometry and confined access. Specify whether parts are measured on a bench, in a fixture or on the production floor. For an existing instrument, identify the scanner and accessory labels when requesting a battery, charging base or connection cable.
- Accuracy up to 0.020 mm
- 81 blue laser lines
- Wireless and wired operation
- Hot-swappable batteries
SIMSCAN-S Gen2 for detailed parts
A palm-sized scanner for detailed features, slots and surfaces with restricted access. Describe the smallest component, critical geometry and inspection purpose.
Keep the full generation name in the specification, particularly when replacing accessories on an existing unit; SIMSCAN-E and SIMSCAN-S Gen2 are distinct configurations.
- Accuracy up to 0.015 mm
- Scanner weight 560 g
- Deep-hole scanning mode
- Detachable charging base
KSCAN-E multi-mode scanners
Different scanning modes cover broad surfaces, fine details and deep holes. Define part dimensions, tolerance and access to the inspection area.
An accessory request should list the existing setup, because the scale bar and photogrammetry equipment are part of the measurement configuration rather than interchangeable consumables.
- Accuracy up to 0.020 mm
- Built-in touchscreen
- Infrared large-area scanning
- Pairing with MSCAN-L15
KSCAN-X for large components
A wireless scanner with a wide field for large workpieces. Supply overall dimensions, photographs of the working space and accessible operator positions.
Use the enquiry to define a complete measuring setup for a housing, fabricated structure or major equipment component, including the intended movement around the part.
- Scanning area up to 2.6 × 1.8 m
- Depth of field 0.3–2.5 m
- Adaptive photogrammetry
- Wireless operation
NimbleTrack Gen2 optical systems
The scanner and tracker form a wireless measuring system, with optical tracking supporting scanning without markers on the workpiece. Specify the C or E version, working-zone dimensions and intended measurement method.
When replacing one device, identify both members of the existing set to define the equipment pairing.
- NimbleTrack-C Gen2 and E Gen2
- System accuracy up to 0.025 mm
- E Gen2 tracking distance up to 4.2 m
- Marker-free scanning
TrackScan Sharp for wider workspaces
An optical system for large parts measured at a distance from the tracker. Describe component dimensions and available sight lines across the workspace.
A replacement-part enquiry should include scanner, tracker and accessory identification, together with photographs showing how the current measuring station is arranged.
- Tracking distance up to 8.5 m
- High-precision measuring volume 135 m³
- 99 blue laser lines
- Wireless data transfer
TrackScan GO portable sets
A portable optical system combines a scanner and tracker for movement between workstations. The devices support multiple measuring configurations.
Specify which operations take place beside the component, where the tracker can be positioned and whether a mobile set is needed for inspection at different production locations.
- Portable optical system
- Combined and independent device use
- AirGO Pad support
- DefinSight-Inspect software
MSCAN-L15 photogrammetry
Photogrammetry supports measuring large workpieces and working alongside a scanner. Specify the primary instrument model, object size and existing scale accessories.
An enquiry for markers or adapters should include their identification and photographs, with the intended quantity and the measuring procedure used by the inspection team.
- Objects measuring 2–10 m
- Volumetric accuracy 0.012 mm/m
- HDR mode
- Gigabit LAN interface
TrackProbe contact measurements
An optical tracker follows a measuring probe for contact access to reference holes and hidden points. Describe the inspection points and approach directions when selecting a complete system.
For an accessory or replacement item, identify the probe, stylus and tracker already in service so the enquiry describes the full measuring chain.
- i-Probe measuring probe
- i-Tracker optical tracker
- i-Probe length 500 mm excluding stylus
- Geometric and dimensional inspection
AccuArm measuring arms
A portable coordinate measuring machine supports contact inspection and assembly work. Specify component access, reference locations and required reach.
For a probe or power accessory, send identification from the measuring arm and the item currently fitted, together with the planned working arrangement at the inspection station.
- Carbon-fibre structure
- Interchangeable measuring probes
- Hot-swappable batteries
- Arm and part thermal compensation
AM-DESK automated inspection
The measuring station combines a scanner, a suitable collaborative robot and automation software. Define component dimensions, weight and fixturing method, then describe the inspection sequence and number of part variants.
Identify whether a positioning unit is needed and how the station fits within the planned production workspace.
- Automated 3D measurement station
- Collaborative-robot integration
- DefinSight-Automation software
- AM-DESK Lite has a separate configuration
DefinSight software environment
The platform brings scanning, processing and analysis into one environment. Specify the scanner, current software version and required inspection output.
If moving a workstation, describe the computer and licence arrangement without including private activation keys, and identify which steps the operator expects to perform within the measuring workflow.
- Scanning and processing in one interface
- Measurement-data analysis
- Industrial-scanner integration
- Measuring workflow configuration
Start with the measuring task
Describe the component before choosing the scanner: overall size, material, weight and critical features. Include photographs of the part in its usual fixture.
State whether the output should support dimensional inspection, comparison with a CAD model, reverse engineering or assembly adjustment. A useful specification connects the measuring system with a defined production operation.
List the tolerances and the features that determine acceptance. A broad outer surface, narrow groove and hidden reference hole require different approaches. Identify the smallest feature and the largest overall dimension, then describe how the operator can move around the part.
This information helps distinguish a compact handheld setup from a tracking system or an automated measuring station.
Accuracy, workspace and access
A scanner accuracy figure and the volumetric accuracy of a complete system describe different aspects of measurement. Compare the selected configuration with the component dimensions and the intended inspection procedure.
Where a tracker is involved, include its available positions, sight lines and obstacles within the working area.
Choose a representative acceptance component, reference drawing, datum arrangement and report format. The inspection team can then assess the configuration through its normal measuring procedure.
Identify models and generations
Use the complete model designation from each device rather than only the family name. Record the scanner, tracker and probe separately, including their generation suffixes.
Photographs of labels and connectors help define an existing setup when a single device or accessory needs replacement.
For an additional workstation, list existing and new devices separately. Attach the previous specification and define the measuring operation being added, keeping a separate purchasing line for each device.
Power, connections and measuring accessories
Specify batteries, charging bases and cables by the equipment model and the label on the accessory currently fitted. Include connector photographs, working length and the way the cable is routed.
State whether the operator works at a fixed bench, moves around a large part or transports the equipment between production areas.
For markers, scale accessories and probe adapters, include identification, photographs and quantities. Explain where each item is used within the measurement procedure.
A spare accessory, an additional measuring set and a consumable supply are different purchasing needs; a clear itemised list helps keep the complete equipment configuration consistent across workstations.
Software and computer configuration
Identify the scanner, current software version and workstation arrangement. Describe the steps the operator performs: capturing geometry, processing a mesh, comparing data or producing an inspection report.
Include the computer specification, available interfaces and the required exchange with the engineering department.
When moving or expanding a software workstation, list the installed modules and the equipment expected to work together. An anonymised example of the desired report can clarify the output requirement. Keep private activation keys outside the public enquiry.
Define a representative measuring task so the proposed workstation can be assessed through the resulting inspection data.
Automated measuring stations
An automation enquiry should define the part range, dimensions, weight and fixturing method. Describe the inspection sequence, changeover frequency and expected report.
Treat the scanner, collaborative robot, positioning equipment and software as parts of one measuring operation with a clear loading and unloading process.
Provide a layout showing operator access, available utilities and the intended equipment positions. For an existing production area, list the components that will remain in use and the additions required.
Define the acceptance part and the handover procedure, including how the operator will check component positioning and select the appropriate measurement programme.
Replacement parts and service enquiries
For an existing instrument, describe the symptom and the step at which it appears: startup, connection, calibration, scanning or saving results. Supply model labels and an error screenshot. Record recent changes to the computer, software or connections in the order they occurred.
Separate the required outcome into inspection of the instrument, replacement of an accessory or renewal of a device. Photographs of a damaged item should show both the detail and its position within the complete system.
After service, plan verification on a reference component using the measuring procedure followed by your inspection department.
Build an itemised purchasing specification
Send the destination, equipment models, required quantities and the intended measuring operation. Attach a table when the order includes several devices or accessories.
Keep equipment, software, probes, power accessories and documents on separate lines so the resulting configuration can be checked against the requirements of the inspection station.
After technical clarification, agree the equipment composition and supply terms. On receipt, compare labels and accessories with the list, then assess the system using the selected inspection part and report format.
Availability, price, delivery time, configuration, documentation and compatibility are confirmed in an individual proposal. This page does not establish dealer or authorised service status. Metrology requirements and equipment acceptance are agreed for the purchaser’s inspection task.
