Company intelligence
Phase3D
Advancing in-situ measurement for additive manufacturing
About Phase3D
Phase3D exists to make additive manufacturing measurable. As metal additive manufacturing moves from R&D into production, manufacturers need more than machine monitoring. They need trusted, quantitative measurement that explains what is happening inside every build. Phase3D has developed calibrated, structured-light inspection technology that measures every layer as it is produced, creating objective heightmaps with micron-level accuracy. Our technology gives engineers the confidence to detect anomalies earlier, understand process behavior and reduce unnecessary scrap, rework and qualification effort. Whether you're qualifying a new process, validating production, investigating a build anomaly or improving machine performance, Phase3D provides the measurement foundation needed to make better engineering decisions. But technology is only part of the story. The expertise behind Phase3D extends far beyond our products. This page brings together perspectives from our engineers, researchers and commercial team alongside customer stories, technical articles, validation studies, webinars and industry commentary. By sharing what we're learning at the leading edge of in-situ inspection, we hope to contribute to a more measurable, repeatable and trusted future for additive manufacturing. If you're interested in the future of in-situ metrology and production-scale additive manufacturing, you're in the right place.
Verified activity
Signals from Phase3D
7 published signals
Presence & Recognition
Phase3D is hosting a drink, food, and catch-up event at the IMTS conference in Chicago for additive manufacturing attendees.
Reported by Niall O'Dowd, PhD
People
Phase3D team members Niall O'Dowd, PhD, Andrew Holliday, Michael Brennen, Kristopher Pullins, MBA, Scott Monaghan, Jacob Hogan, Cesar R., Zane Denmon, Leo Manola, Carol Lin, John Dailey, Mark Hanninen, Libby Raymond, and the wider Phase3D team are present
Reported by Phase3D
Research & Knowledge
Phase3D published a case study by Andrew Holliday analyzing a short-feed event captured during an LPBF build using quantitative layer data to determine its initiation, measure its growth, and locate the affected region in relation to part geometry.
Reported by Phase3D
Research & Knowledge
Phase3D published a study showing that the first measurable indication of a short feed appeared at layer 652 with an affected area of 57.5 mm² and a maximum depth of 80 µm.
Reported by Andrew Holliday
Presence & Recognition
Phase3D showcased technical demonstrations at JDammit including robotic pancake stations, casting and forging, and drone obstacle courses.
Reported by Michael Brennen
Presence & Recognition
Phase3D announced a partnership with Phillips Federal to bring fringe inspection to all sectors of the federal government.
Reported by Michael Brennen
Operations & Supply
Phase3D built in Chicago and is growing around the world.
Reported by Phase3D