BOLTS Launches Quantum-Resilience Pilot On Canton Network To Future-Proof $6T Real-World Assets

TheNewsCryptoPubblicato 2025-12-10Pubblicato ultima volta 2025-12-10

Introduzione

BOLTS Technologies has launched a pilot program to integrate its quantum-resilient software, QFlex, into the Canton Network, a blockchain for institutional finance. The initiative aims to protect over $6 trillion in real-world assets from future quantum computing threats, specifically addressing risks posed by cryptographically relevant quantum computers (CRQC) and Shor’s algorithm. QFlex enables cryptographic agility at the transaction level, allowing asset owners to adopt quantum-resistant measures without code changes. The pilot supports regulatory readiness for standards like PQS 2030 and DLT 2030. BOLTS’ technology, backed by grants from NIST, the U.S. Air Force, and Navy, offers a proactive solution to safeguard institutional digital assets against quantum vulnerabilities.

Glencoe, Illinois, USA, December 10th, 2025, Chainwire

Today, BOLTS Technologies (BOLTS), a cybersecurity company pioneering crypto-agile and cipher-neutral security infrastructure, announced the launch of a pilot program to explore bringing quantum-resilience on the Canton Network, the public, permissionless blockchain purpose-built for institutional finance.

The pilot will explore how BOLTS’ quantum-resilient software product, QFlex, could potentially bring quantum-resistant transaction assurance to Canton Network. QFlex addresses the multi-faceted complexities around fortifying blockchain networks against Q-Day. This refers to the day when a cryptographically relevant quantum computer (CRQC) arrives, and undermines the foundations of current Internet security using Shor’s algorithm.

Following the EU’s introduction of PQS 2030, flexible support for post-quantum cryptography (PQS) will become an increasing focus for Canton Network, which has an extensive roster of institutional ecosystem participants, processing over $4T in repos monthly.

Bernhard Elsner, Chief Product Officer of Digital Asset, said, “We’re excited to explore QFlex’s promise of allowing sub-networks to enable flexible, user-controlled use of a wide range of cutting-edge cryptographic algorithms without code-changes. This would further strengthen the Canton Network’s cryptographic agility and position it well to seamlessly support stakeholders adopting rules like DLT 2030 and beyond.”

Yoon Auh, CEO of BOLTS affirms, “We are proud that our proven expertise and technology are in this pilot test with Canton Network. This collaboration represents a meaningful step in our mission to deliver durable, future-ready security infrastructure solutions for institutions operating on distributed ledger platforms.

QFlex gives assurance to the industry that Q-Day fears can be overcome efficiently today, with a clear path to becoming quantum-ready. The industry can no longer delay this, given the trillions of dollars in institutional digital assets at stake. With Canton Network supporting over $6 trillion in on-chain real-world assets, this pilot will have a significant impact on the industry.”

Built on the Structured Data Folding with Transmutations (SDFT) protocol, QFlex delivers cryptographic agility at the transaction level. As such, it empowers each asset owner to respond to new threats in real time on their next transaction unlike existing static or hybrid-algo solutions.

About BOLTS Technologies

BOLTS Technologies provides advanced, validated quantum-resilient solutions for Web3 systems. Its flagship technology, QFlex, enables crypto-agile protection of blockchain transactions controlled by the owner/wallet. QFlex saves blockchains from future cryptography transitions. QFlex has its roots in secure data centric technologies providing scalable privacy solutions originally developed by its sister company, NUTS Technologies. QFlex (SDFT) has won numerous grants from The National Institute of Standards and Technology, The United States Air Force, and The United States Navy for advanced cryptographic technologies. SDFT/NUTS advanced applied cryptographic technologies are backed by more than 30 international patents. More: https://boltstechnologies.xyz/

Contact

Media Contact
Candice Teo
[email protected]

Letture associate

Interop Roadmap Accelerates: After Fusaka Upgrade, Ethereum Interoperability May Take a Key Leap

Recent Ethereum Fusaka upgrade, while primarily focused on Blob capacity expansion, introduced the underappreciated EIP-7825, a critical enabler for Ethereum's zero-knowledge (ZK) and interoperability roadmap. This proposal sets a hard per-transaction gas limit (~16.78 million gas), preventing "mega-transactions" from monopolizing a block. This change transforms block proof generation from a sequential logic problem into a parallelizable computational task, making real-time ZK proofs an engineering feasibility rather than a theoretical impossibility. This foundational shift is pivotal for the L1 zkEVM vision, where Ethereum itself generates verifiable proofs for its state transitions. L1 zkEVM acts as a universal "trust anchor," allowing Layer 2s (L2s) to instantly and trustlessly verify the mainnet's state without waiting for challenge periods. This eliminates the speed-trust decentralization trade-off, enabling near-instant, decentralized cross-chain interoperability. Concurrently, ZK technology is evolving from EVM-compatible zkEVMs to more efficient, ZK-optimized zkVMs. EIP-7825's parallelizable environment allows these zkVMs to operate at peak efficiency, drastically reducing proof generation cost and time. The convergence of EIP-7825, L1 zkEVM, and advanced zkVMs paves the way for the final stage of interoperability (Interop)—abstracting away chain boundaries to deliver a single-chain user experience where cross-chain actions are seamless, secure, and instantaneous.

marsbit16 min fa

Interop Roadmap Accelerates: After Fusaka Upgrade, Ethereum Interoperability May Take a Key Leap

marsbit16 min fa

Trading

Spot
Futures
活动图片