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Application Note
Learn how the µPulse – TFF System offers a fast, automated, and cost-effective alternative to DEF units for VLP harvesting, with broad applications in virology and vaccine development.
Upcoming Webinar
Join Formulatrix for an exclusive webinar revealing how two cutting-edge technologies—STACK, the Intelligent Automation Platform, and Rover, the Autonomous Plate-Handling Platform—are revolutionizing laboratory automation.
Application Note
Learn how the µPulse – TFF System offers a fast, automated, and cost-effective alternative to DEF units for VLP harvesting, with broad applications in virology and vaccine development.
Software Update
The F.A.S.T. v1.46.0 software update introduces Live Logs, expanded plate support, enhanced CSV Import, and more user-driven improvements to boost lab efficiency
Event
The SLAS Europe 2025 Conference and Exhibition will take place in Hamburg, Germany, bringing together scientists, academic researchers, and industry professionals to connect, collaborate, and showcase their research, products, and services.
Webinar
Join the webinar to explore precise, fully automated liquid handling for high-throughput assay development using Formulatrix solutions—engineered for precision, scalability, and minimal reagent use across diverse life science applications.
Webinar
Join the webinar to experience fully automated, end-to-end protein crystallization with real-time AI scoring—streamlining screen design, drop setting, imaging, and hit selection to accelerate structural biology with high throughput and reproducible experiments.
Webinar
Learn how using the µPulse enables faster buffer exchange compared to equilibrium dialysis, gel filtration chromatography, and dead-end filtration—leading to increased productivity and reduced costs.
Application Note
Learn how the μPulse system achieved 97-98% particle retention, ensuring a robust and efficient workflow for EV isolation and concentration.
Poster
The µPulse® – TFF system by Formulatrix addresses this limitation with a miniaturized design by combining TFF with microfluidic pumping technology on a filter chip. This footprint reduces the hold-up volume to 0.65 mL, which is up to 100% recoverable.