The future of computing is encrypted
Belfort processes sensitive data without ever decrypting it. At speed. At scale. Without compromise.
Belfort makes encrypted compute real by accelerating it to practical performance
Performance without compromise
What once took hours now takes minutes. Belfort brings encrypted compute within reach.
Seamless adoption
Purpose-built hardware integrates effortlessly, unlocking instant gains in speed and scalability.
Security as a foundation
Data remains protected throughout every operation; confidentiality is inherent, not optional.
Encrypted compute across high-stakes domains
From defense to genomics, Belfort makes encrypted data usable at scale — without ever compromising privacy or trust.
National security & Government
Exposed intelligence or citizen data undermines trust and safety. Belfort ensures confidentiality and integrity across missions and state systems.
Finance
Institutions can detect fraud, assess credit, manage risk, and ensure compliance in real time while client data stays encrypted.
Healthcare
Keeping patient and genomic data encrypted allows hospitals, pharma, and researchers to collaborate, run diagnostics, and analyze outcomes without exposing sensitive information.
Crypto & Blockchain
With Belfort’s acceleration, fully confidential smart contracts, payments, and DeFi protocols finally become practical at scale, unlocking the next wave of crypto adoption.
Inside the architecture
With Belfort’s dedicated hardware and algorithmic improvements, encrypted workloads preserve end-to-end protection while achieving the performance required for production.
The Visionaries Driving Secure Computing Forward
Belfort’s team of leading cryptographers, engineers, and mathematicians has turned encrypted computation from theory into systems, delivering secure, high-performance computing at scale.

Jean-Philippe
Bossuat
Jean-Philippe Bossuat wrote the world's most used open-source FHE library. At Belfort, he makes Cyclops, our accelerator library, production-grade. He is the original author and lead developer of Lattigo, and previously held cryptography roles at EPFL and Tune Insight.

Can
Elgezen
Can Elgezen is one of a handful of engineers worldwide writing the fastest cryptographic GPU code in production. He builds the CUDA kernels behind Belfort's Encrypted Computing offering. He spent four years at Supranational authoring some of the fastest open-source NTT kernels.

Robin
Geelen
Robin Geelen is one of the world's foremost experts on FHE bootstrapping and the creator of the GBFV scheme. At Belfort, he works on bringing cutting-edge research into production. He co-authored the BASALISC accelerator and created GBFV during his PhD at KU Leuven COSIC.
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David
De Troch
David has significant experience in cryptography and decentralized systems. Before joining Belfort, he was a software engineer at IOTA and one of its ecosystem spin-out projects, contributing to core infrastructure and tooling. At Belfort, he focuses on software integration and system development for encrypted computation.
TRUST IS ALL YOU NEED
Process data securely.
