XTOP 3D scanners and optical measurement systems

Select XTOP equipment for geometry inspection, strain measurement and tube control, with the instrument, software workstation and accessories matched to your application.

XTOM MATRIX SR / QC scanners

XTOM uses blue structured light to capture surface geometry for industrial inspection. The published range includes MATRIX SR and QC. Identify the complete scanner designation and measuring field when requesting a measurement head, accessories or a complete system.

  • Surface, edge and hole inspection
  • Comparison with a reference CAD model
  • Head selection by its identification label
  • Provide object dimensions and tolerances

XTOM TransForm ROT / ROB

The XTOM TransForm range includes ROT and ROB designations. XTOM supports integration with rotary tables and robotic equipment. An expansion enquiry should describe the scanner, fixtures, controls and the surfaces that must remain accessible throughout the inspection sequence.

  • Specify the full ROT or ROB designation
  • Part placement and available working space
  • Identify table or robotic cell components
  • Attach the existing connection diagram

XTDIC CONST full-field strain

XTDIC uses digital image correlation, DIC, for non-contact displacement and strain measurement during material and structural testing.

Replacement cameras, optics or a controller must be assessed as components of the complete measurement configuration, including its acquisition and analysis software.

  • Full-field displacement and strain data
  • Static and dynamic test applications
  • Identify the XTDIC CONST configuration
  • List cameras, optics and controller

XTDIC Micro and FLC

XTDIC Micro addresses micro-scale strain measurement, while XTDIC FLC addresses forming-limit measurement for sheet material. Define the sample, observed region and test result required before selecting the measuring arrangement, optical components and supporting equipment.

  • Micro-scale observation with Micro
  • Sheet forming-limit testing with FLC
  • Describe sample geometry and preparation
  • Specify optics and mounting arrangement

XTDIC STROBE dynamic measurement

The manufacturer identifies XTDIC STROBE as a dynamic measurement system. Describe object motion, observation conditions and synchronisation with the test installation.

An example recording helps define the required acquisition arrangement and assess an enquiry for equipment or supporting accessories.

  • Describe the motion being measured
  • State required time-domain detail
  • Explain illumination and optical access
  • Connect measurement data to the test

XTDIC VG video extensometers

The XTDIC VG family includes VG-60, VG-120 and VG-240. Video extensometry measures specimen deformation without contact, with different observation and test-machine communication arrangements. Select the instrument and mounting accessories for the actual configuration and test environment.

  • VG-60, VG-120 and VG-240 models
  • Point, point-pair and full-field analysis
  • Longitudinal and transverse strain
  • Describe the test-machine installation

Tube Qualify tube measurement

Tube Qualify is an optical solution for tube, pipe, wire and hose measurement. Published models include D8, X10 and X16. Provide the part drawing, material, external dimensions and bend geometry when selecting a complete measurement system or associated fixtures.

  • Tube Qualify D8 / X10 / X16
  • Tube shape and parameter inspection
  • Reverse engineering of tube geometry
  • Data supporting bending-process setup

XTDP optical photogrammetry

XTDP reconstructs spatial point coordinates from photographs. The published range includes XTDP II and XTDP DEF, with XTDP and XTOM integration also documented. Identify the camera, kit designation and measured object when requesting a system or replacement accessories.

  • Coordinates, displacement and deformation
  • Large parts and complex structures
  • XTDP II / XTDP DEF designations
  • Coordinate requirements with existing XTOM

Automated optical inspection

XTOP describes line-side automated inspection, robotic scanning and visual defect inspection solutions. A complete equipment package or component replacement enquiry should define the operating sequence, available workspace and existing control system, including how parts are loaded and positioned.

  • Line-side production inspection
  • Robot, gripper and measurement head
  • Fixtures and operating sequence
  • Production-control integration requirements

Cables, mounts and accessories

Request measurement-system accessories by the installed item label or equipment documentation. Include both connector ends and length for a cable, dimensions and mounting location for a fixture, or the system label for a measurement head.

Separate replacement items from a complete instrument package.

  • Complete installed-component designation
  • Photographs of both connector ends
  • Mounting dimensions and location
  • Quantity and associated equipment list

Calibration accessories

For a lost or damaged calibration item, identify the system, kit and designation from its documentation. The accessory belongs to a specific measurement configuration. Treat replacement of a physical item and verification of instrument performance as separate requirements in the enquiry.

  • Accessory and kit identification labels
  • Photographs of existing accessories
  • Complete measurement configuration
  • Required procedure and document

Measurement and analysis software

XTOP software controls acquisition and analyses geometry or deformation according to the instrument family. For an existing workstation, identify the installed version, application modules, licence media and connected equipment.

Define whether the enquiry concerns restoration, an additional workstation or a new equipment package.

  • XTOM geometry and CAD comparison
  • XTDIC material-test data analysis
  • Tube Qualify bending-process information
  • Software version and workstation components

Choose by the measurement result

Start with the result your team needs: a surface model, dimensional inspection against a drawing, a strain field during a test or the geometry of a bent tube. These tasks lead to different XTOP instrument families.

Attach a representative part or specimen and explain the decision the measurement will support.

Discuss XTOM for surface geometry, XTDIC or a video extensometer for test deformation, XTDP for point coordinates and Tube Qualify for tube inspection. Then define the measuring field, optical access and equipment package.

Accuracy, measuring field and acceptance

Object dimensions, measuring-field size, surface resolution and measurement accuracy describe different requirements. Provide tolerances for the features being inspected, together with their location and accessibility.

Compare the selected instrument configuration against this task, including its optics and mounting arrangement.

For acceptance, define the sample, reference data, coordinate system and report. A written inspection task connects the proposed instrument and software to a result that your team can check on the actual part.

Reverse engineering and dimensional inspection

Scanning captures surface data. Mesh processing and creation of editable CAD geometry may follow, depending on the intended use. State the required output format, destination software and which features need to remain editable. This defines the acquisition and software workflow together.

For quality inspection, provide the reference model or drawing, tolerances and report structure. XTOM documents comparison between measured data and a theoretical model. An example part and inspection plan make the required use of this function clear.

Material and structural testing with DIC

Describe the material, specimen geometry and loading process, such as tension, compression or bending. Define the observed area, duration of the event and illumination conditions. For an installed XTDIC system, include the test-machine designation and existing synchronisation arrangement.

Specify whether the result should contain full-field strain, selected-point displacement or data for comparison with a simulation.

A representative recording and specimen photographs help connect acquisition requirements to the actual experiment and support enquiries for cameras, optics or controllers.

Video extensometry and machine interfaces

An XTDIC VG enquiry should identify the instrument model, test machine, specimen access and mounting arrangement. State which measured quantities must reach the machine control system and how communication is currently established.

A photograph around the specimen is useful when working space is restricted.

For a new package, provide specimen materials and geometry, required test modes and observation conditions. List the software workstation and mounting accessories separately. For a replacement, show the original camera, illumination and fixture positions.

Tube inspection and bending workflows

For Tube Qualify, provide the drawing or a representative tube with material, outside dimensions, length and bend geometry. Explain whether the system should inspect a finished part, reconstruct its shape or supply measurement information for setting up the bending process.

Include the holding arrangement.

Existing installations need the full D8, X10 or X16 designation and their fixture list. For automated inspection, describe loading, unloading, working space and connection to the bending equipment. These details define the measurement and handling package together.

Photogrammetry and large structures

For XTDP, describe the structure dimensions and the points whose coordinates are required. Explain access around the object and photography conditions. If XTDP supports an XTOM installation, identify both parts of the kit and the coordinate requirements for their combined use.

For accessories, attach kit markings and photographs of the camera and existing components. Define the task as point-coordinate measurement, displacement observation or static-deformation analysis. A diagram showing the required points makes the enquiry more useful than object size alone.

Automation, software and maintenance

For an automated installation, provide the cell layout, operating sequence and part range. Explain positioning, loading and how results reach production control.

Identify the scanner, robot, fixtures and existing software so that a complete solution or a replacement component can be assessed in its operating context.

For workstation or maintenance enquiries, include software versions, application modules, connected hardware and licence media. Describe the symptoms and expected result. Separate physical replacements, workstation restoration and measurement verification into clearly identified requirements.

Equipment package and delivery requirements

List the instrument, controllers, optics, workstation, software and accessories individually, with quantities and required documents. Mark equipment already available at your site when expanding an installation.

The specification should associate every item with its measurement system and intended task.

State the destination and receiving arrangements. Before ordering, check the model designations and agreed package contents. Define the acceptance sample and report alongside the delivery specification, including packaging requirements for separate measurement heads, controllers and accessory kits.

Availability, price, delivery time, compatibility, licences and required documents are confirmed for the selected configuration. This page does not establish authorised-dealer or certified-service-centre status.

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