VIA Wallet

Radically simple payments. Defense-grade security.

Send stablecoins anywhere on Earth, even when offline.

VIA Wallet

Radically simple

User-centric design requires no training or previous crypto experience.

Defense-grade security

More than two years of field testing with the U.S. Department of War to deliver military-grade security, including quantum-resistance.

Anywhere on earth

Unique ability to support transactions, even in remote and temporarily offline environments.

Resilient aid. Global impact.

From humanitarian relief across the Global South to KYC financial infrastructure, VIA provides future-proof quantum security and traceability to move value where it matters most regardless of the challenge.

Delivering safe cashless aid to Haiti from VIA on Vimeo

Watch on Vimeo

The expansion provides secure digital stipend payments for food-insecure families, staff members, and community workers, building on its ongoing program that delivers nutritional support to hundreds of families.

The partnership will leverage VIA's Zero Trust technology to secure cross-border payments and reduce fraud for financial aid and personal transfers to Haiti.

VIA and the Stellar Development Foundation have collaborated with Hope for Haiti to deliver aid to mothers in Haiti using VIA’s military-grade, offline-capable smartphone app.

Under the security hood of VIA Wallet

Ultra-secure and ultra-simple

Passwordless: Decentralized authentication using W3C 2.0 credentials

Single swipe: Multi-key credential and blockchain verifications in one

Modern IAM: Integrates with existing biometric, SSO, and social logins

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.