The GOM TRITOP system measures coordinates of 3D objects quickly and accurately by taking photographs, and is used within Photogrammetry. Our ARAMIS platform implements 3D Digital Image Correlation (DIC) provides full field strain and displacements measurements. Contact us today to learn more. Find out all of the information about the GOM product: portable coordinate measuring machine / optical TRITOP. Contact a supplier or the parent company .
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GOM TRITOP – Optical 3D Coordinate Measuring Machine
The TRITOP measurement system and the matching software can be used to measure and inspect not only small components but also larger parts such as are used in the construction of trains, ships and wind power units. A user-friendly graphical interface enables operators to process and evaluate the measurement data.
The TRITOP software supports work in quality control and component testing in the field of modern development and manufacturing processes.
The basic software functions include capturing measurement points and processing them to model 3D point clouds as well as monitoring image quality.
Shifting the reference points makes it possible to determine the movements and deformation of all components in a particular object. Parametric inspection is a tried and proven software concept in which each individual element retains its path of creation. All evaluation steps can be traced and therefore easily modified and adjusted.
A one-button solution updates all dependent elements automatically after changes have been made.
TRITOP Professional System Basic Training
Parametric inspection is also used on numerous data records for trend and deformation analysis. This makes it easy to analyze several components or stress phases within a single project. Evaluation features trito; available for the deformation analysis of points. They define and analyze motions and deformations on the basis of a component concept.
To make this possible, inspection points are divided into goj groups. Transformations or corrections to rigid body movements can then be calculated for these components. The local coordinate system in the software makes it possible to perform local or drawing-based evaluations.
The local coordinate systems also form the basis for 6DoF analysis. A timeline integrated in the graphical interface supports the management of multi-stage projects, for example in statistical process control SPC and deformation analysis. Tom WLAN assistant handles image transmission and provides direct feedback on image quality.
Users are given immediate feedback on whether an image is too bright, too dark or out of focus. Dual-coded points are detected tritol. An online search for multiple identified coded points can be easily implemented.
In addition, image mapping also allows fast and easy project navigation during analysis. Individual color-coded CAD deviations and vector displacements can be visualized easily within the color images.
So that operators can work with a specific image during all work phases, an trotop from one stage can be displayed through several stages in TRITOP multiphase projects. Image mapping is therefore one supporting element in the presentation of results.
This concept from GOM supports all phases of evaluation without scripting, previous planning or user intervention. Teaching by doing means there is no longer any need to allow for programming time. Workflows used to evaluate single or multiple components can therefore be standardized in order to save time and money.
TRITOP Professional | GOM
I-Inspect stands for intelligent inspection and guides operators through the inspection process. Additional freely configurable inspection principles are available via I-Inspect.
The software can be operated via a goj button and therefore helps simplify the entire process, so that inspection tasks can be performed at speed. Adjustable report templates are used to tailor measurement reports precisely to individual measuring tasks.
Spreadsheets in VDA format, for example, are available for doing so. Operators can also generate attractive video sequences from the deformation evaluations.
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