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Videos
Surfaces-to-Points command in Build!IT 3.1.1
This video shows the new "Plot Display" menu in the Build!IT 3.1.1 "Surfaces-to-Points" command, including the new "Create annotations for out-of-tolerance points" feature and the "Colored Surfaces" display.
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Inspection Without CAD
This video shows how to perform an inspection of a wheel to determine the bolt pattern circle diameter and wheel offset, using Build!IT without a CAD model
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Paraboloid Fit
New feature allows users to reverse-engineer paraboloid surfaces from measured points for analysis.
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Autosplit and Associate
New feature automatically associates points to underlying surfaces for improved time-saving.
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Inspect Target
This feature allows users to accelerate their inspection process by triggering measurements by simply scanning over targets
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Automated Inspection Solution for Airbus
A new automated inspection solution employed by Airbus has reduced inspection time more than 80%. During the GlobalSpec Aerospace Technology Online Trade Show and Event, Mathieu Dube-Dallaire of BuildIT software shows how the new solution was developed to inspect the forward section of an aircraft fuselage and how it can adapt to changes in the inspection conditions, the inspection process, or other aircraft models.
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GD&T Process in Build!IT
The following video showcases some of the GD&T features available in Build!IT including creating datums, executing a process and analysis.
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Inspect Targets in Build!IT
This new feature allows user to accelerate their inspection process by triggering measurements by simply going over targets.
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Laser Scanner Inspection in Build!IT
BuildIT software allows user to quickly and easily inspect parts with complex freeform surfaces by interfacing with laser scanner devices. In this example, following a simple part alignment, a user scans the part's surface to then run an analysis and obtain a detailed tolerance report.
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Build!IT™ 3.1
The latest version of Build!ITâ„¢ includes more than 750 improvements and new features and integrates a redesigned geometry engine that drastically increases the software's overall performance.
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Device Bundling with Build!IT™
Precision three-dimensional metrology frequently involves the measurement of common points by several 3-D measurement systems. With bundling, we fully take into account the error envelopes (uncertainty ellipsoid or sphere) for each measurement point and "bundle" these points to have a final fusion error envelope, which represents the optimal synthesis of all measurement envelopes.
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Customizable HMI Interface with Automated Process
The HMI module is a customizable, easy-to-use solution that interfaces with Build!IT™; metrology software. The tool allows users to measure points from portable CMMs and obtain real-time graphical feedback and analysis. This automated process makes inspections, reliable fast and shifts the required know-how from the metrology expert to the shop floor personnel drastically reducing inspection time.
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Latest Features Available in Version 3.0.23
Summary of the new features available in version 3.0.23 of Build!IT™ including: New Geometry Reports, Additional Automatable Commands, Transform Object Command, Simulated Measurement Devices, Improved Detection and Reconnection to Devices and 120 other fixes and improvements.
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Automate Repetitive Processes (Automate!IT)
Automate!IT allows users to flawlessly record repetitive processes by simply going through them once and then playing them back using a laser tracker.
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Simple Tool Building
A user is using a portable CMM to measuring a tooling jig. He auto-aligns the portable CMM using 3 or more points. When he moves the probe to check the potion of some details, he is able to see real-time deviations. The user then records 50 points on target areas in order to generate a metrology inspection report. While he collects the points, he can begin creating annotations and deviation plots.
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Using an Arm
Watch one of our application engineers use a portable CMM to align and inspect a jig to a CAD model in real-time.
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Simple Part Inspection
Using a portable CMM designed by FARO an AE inspects a tooling jig. By measuring 4 points he is able to align the device to the CAD. Once it is aligned the AE inspects parts on the jig, and collects information for a final inspection report.
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