Secure your state: quantum-resistant identity, data access, and GenAI
Traditional security can’t keep up with sophisticated threats. VIA provides a new, decentralized, zero trust approach to protect your most critical assets.
Trusted by your peers
VIA is trusted by multiple U.S. states and the Pentagon. While we can’t disclose specific projects, our proven track record with these elite organizations speaks to the unparalleled security we provide.
Why VIA is a new standard
Rapid data integration
We securely integrate disparate data sources, from license plate recognition to phone records, giving you a single, unified, view of mission-critical information.
Secure GenAI interface
VIA provides a secure generative AI interface, one of the first two in use by the Pentagon. This enables your team to analyze vast data with unprecedented speed and security.
Quantum-resistant
Our technology is engineered to withstand the next generation of attacks, ensuring your data is safe for decades to come.
Decentralized access
Our credentials put control directly in the hands of your agency, eliminating single points of failure.
Seamless interoperability
Our platform integrates easily with legacy systems, ensuring a smooth and rapid upgrade.
Protect what matters most
Contact us to learn how VIA can help your agency secure its most sensitive data.
Joe Babiec Chief Commercial Officer
Joe leads commercialization of VIA’s Defense and Intelligence applications.
VIA registrations
CAGE Code – 7QQK3
DUNS – 080412481
Navy DADMS – 148537
UEI – S931XTB4ZFK9
John Muddle, Ph.D.
Vice President, Software Engineering
John is focused on implementing best practices for software development at VIA. He co-invented VIA’s core platform and currently develops, integrates, and quality assurance tests the platform for VIA’s applications.
Before VIA, John was a freelance consultant at the Numerical Algorithms Group (NAG), where he focused on updating their Python Library. Prior to this position, he was a technical sales support engineer at NAG in Oxford, where he developed technical marketing material and provided pre-sales assistance. John was awarded the best thesis in gravitation physics in 2016 by the Institute of Physics (IOP). His research focused on developing new numerical methods that capture the physical behavior of fluid interfaces permeated by high magnetic fields while taking into account relativistic effects.
John earned his master’s degree in physics and his Ph.D. in applied mathematics from the University of Southampton.