Gom Inspect 2019 Guide

Using the alignment toolbar, you bring the scan into the CAD coordinate system. For repeatable results, most users employ a "Best-Fit" alignment followed by an "RPS" alignment if specific datum targets exist on the drawing.

The software included a template-based report generator. Users could automate the creation of PDF reports containing color maps, tables of deviations, and annotated snapshots. The "Excel Export" function allowed raw deviation data to be exported for statistical process control (SPC).

The software includes a "Report" add-on (free in the Basic version in 2019, though later restricted). You can create printable PDF reports with embedded 3D PDFs (U3D/PRC format), allowing stakeholders to rotate the model in Adobe Reader.

For engineers, the shift in GOM Inspect 2019 toward a CAD-centric GDT workflow was a game-changer.

Alignment is the most critical step in inspection. Gom Inspect 2019 offered multiple alignment methods:

| Problem | Solution | | :--- | :--- | | Scan is "inside out" or upside down | The Pre-alignment failed. Try manually moving the scan close to the CAD position using the "Move" tools before running the Best Fit. | | Color map is noisy | Your scan data might be noisy. Use Edit > Filter to smooth the point cloud, or check if you are measuring against the wrong mesh. | | "No intersection" error | The software cannot calculate a path between the two objects. Check that your alignment is correct and the objects are not miles apart. | Gom Inspect 2019


Note on Version Differences: GOM Inspect is now owned by Zeiss. While newer versions exist (GOM Inspect 2022/2023), the 2019 interface and workflow described above remain the industry standard for that specific release.

GOM Inspect 2019, developed by GOM GmbH (now ZEISS), serves as a critical, research-validated tool for 3D inspection, mesh processing, and surface analysis across manufacturing and medical fields. Detailed studies frequently utilize its capabilities in best-fit alignment and polygonization to evaluate complex components and 3D printed parts. For official technical documentation and release notes, visit ZEISS Metrology Portal.

Profiling the Outer Rotor of a Conical Helical Compressor via ... - MDPI

To "make paper" in GOM Inspect 2019 (now known as ZEISS INSPECT Report Pages that document your 3D measurement and inspection results

. These pages can then be exported as a professional PDF report. Steps to Create a Report Page Capture the View Using the alignment toolbar, you bring the scan

: Once you have your scan data aligned and your deviations or labels set up, click the Create Report Page icon in the main toolbar (usually a camera or page icon). Choose a Template

: Select a report template from the dialog. GOM Inspect 2019 provides several default layouts (e.g., "Perspective" or "Table") that determine how the image and data are arranged. Adjust the Content

: Double-click the image in the report editor to re-position or zoom the 3D model. : Ensure deviation labels are visible and not overlapping.

: Set project keywords (like Part Name or Date) to automatically fill in the title blocks across all pages. Add Tables

: To include numerical data, drag and drop the desired inspection elements (like diameters or distances) into a report page template that supports tables. Export the Report to save your collected pages as a Key Features for Quality Reports Deviation Maps Surface Comparison Note on Version Differences: GOM Inspect is now

tool to create color-coded maps showing how your part differs from the CAD model. Table of Contents

: For long reports, you can drag a Table of Contents template into your project; it will automatically update as you add more pages. Video Reports : GOM Inspect also allows you to record Screen Presentations

where you can interact with the 3D model during a live review. For more detailed workflows, you can view the official GOM Inspect Reporting Tutorials on the HandsOnMetrology site. align your scan data before creating the report?


This creates the "heat map" showing where the part is too thick (positive deviation) or too thin (negative deviation).

  • Click OK.
  • You will now see a color map on the part.
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