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Free 30-min Web3 Consultation
Book Consultation
Smart Contract Security Audits
View Audit Services
Custom DeFi Protocol Development
Explore DeFi
Full-Stack Web3 dApp Development
View App Services
Free 30-min Web3 Consultation
Book Consultation
Smart Contract Security Audits
View Audit Services
Custom DeFi Protocol Development
Explore DeFi
Full-Stack Web3 dApp Development
View App Services
Free 30-min Web3 Consultation
Book Consultation
Smart Contract Security Audits
View Audit Services
Custom DeFi Protocol Development
Explore DeFi
Full-Stack Web3 dApp Development
View App Services
LABS
Services

Quantum-Resistant Oracle Cryptography

Build oracle systems secured against future quantum computing threats. We integrate NIST-standardized post-quantum algorithms for key generation and data verification to protect your DePIN and IoT infrastructure.
Chainscore © 2026
overview
SECURE FOUNDATIONS

Smart Contract Development

Production-ready smart contracts built for security, gas efficiency, and long-term maintainability.

We architect and deploy custom smart contracts that form the core logic of your dApp. Our focus is on security-first development, leveraging battle-tested patterns from OpenZeppelin and rigorous internal audits to mitigate risks before deployment.

  • Gas-Optimized Code: Every line is written for cost efficiency on mainnet.
  • Upgradeable Architecture: Future-proof designs using TransparentProxy or UUPS patterns.
  • Comprehensive Testing: Full coverage with Hardhat/Foundry, including fork testing and scenario simulation.

Deliver a secure, auditable, and performant contract suite in as little as 2-4 weeks for an MVP.

key-features-cards
POST-QUANTUM SECURITY

Our Quantum-Resistant Oracle Stack

A modular, cryptographically secure oracle infrastructure designed to protect your DeFi protocols and cross-chain applications from future quantum computing threats. We deliver production-ready, audited components.

03

Hybrid Cryptographic Gateways

Deploy oracles that support dual-signature schemes, enabling seamless migration from classical to post-quantum cryptography without protocol downtime.

Zero Downtime
Migration
ECDSA + Dilithium
Supported Schemes
04

ZK-Proof Attestation Layer

Use zk-SNARKs to cryptographically prove the correctness of off-chain computations and data sourcing before signing, minimizing trust assumptions in the data pipeline.

Groth16 / Plonk
Proof Systems
≤ 200k Gas
Verification Cost
05

Multi-Chain Relay Network

A decentralized network of node operators running our quantum-resistant client, delivering signed data to EVM, Cosmos, and Solana with sub-second finality.

15+ Chains
Supported
< 800 ms
Median Latency
06

Security & Audit Integration

All stack components undergo formal verification and audits by specialized cryptography firms. Includes comprehensive penetration testing and adversarial simulation.

Trail of Bits
Audit Partner
100% Coverage
Critical Functions
benefits
STRATEGIC NECESSITY

Why Future-Proof Your Oracle Now

Quantum computing poses a tangible threat to current cryptographic standards. Proactive integration of quantum-resistant oracles is a critical, non-negotiable step for any protocol with long-term viability.

01

Protect Long-Term Asset Value

Safeguard billions in DeFi TVL and user funds from future quantum attacks. Our post-quantum cryptography ensures your protocol's economic security extends beyond the next decade.

10+ Years
Security Horizon
NIST-Compliant
Algorithms
02

Maintain Uninterrupted Data Feeds

Prevent oracle manipulation or failure due to cryptographic breakage. Our hybrid classical-quantum resistant design guarantees data integrity and uptime through the transition.

99.9%
Uptime SLA
Sub-Second
Finality
03

Achieve Regulatory & Audit Readiness

Demonstrate forward-thinking security to auditors, insurers, and regulators. Our solutions are built on standardized, auditable cryptographic libraries, simplifying compliance.

FIPS 203
Standard Adherence
Formal Verification
Available
04

Gain a First-Mover Advantage

Differentiate your protocol with a "Quantum-Secure" trust mark. Attract security-conscious institutional capital and users ahead of mainstream adoption.

Months
Lead Time
Zero Downtime
Migration Path
Strategic Comparison

Build vs. Buy: Quantum-Resistant Oracle Development

A detailed analysis of the time, cost, and risk trade-offs between developing a quantum-secure oracle in-house versus leveraging Chainscore's managed service.

Critical FactorBuild In-HouseChainscore Managed Service

Time to Production

9-18 months

8-12 weeks

Initial Development Cost

$300K - $750K+

$75K - $200K

Post-Quantum Cryptography Expertise

Must hire/acquire

Included (NIST finalists)

Smart Contract & Protocol Audits

Your responsibility ($50K-$150K)

Included (3rd-party + internal)

Ongoing R&D & Algorithm Updates

Continuous internal cost

Included in service

Uptime & Reliability SLA

Your team's burden

99.95% SLA with penalties

Integration Support

Your engineering team

Dedicated solutions architect

Total 3-Year Cost of Ownership

$1.2M - $3M+

$200K - $450K

how-we-deliver
CORE SERVICE

Smart Contract Development

Secure, production-ready smart contracts built for scale and compliance.

We architect and deploy custom smart contracts that form the backbone of your Web3 application. Our development process ensures security-first design, gas optimization, and compliance with standards like ERC-20, ERC-721, and ERC-1155.

  • Full Lifecycle Development: From ideation and architecture to deployment and maintenance on EVM chains (Ethereum, Polygon, Arbitrum).
  • Security Audits: All contracts undergo rigorous internal review and can be prepared for third-party audits by firms like OpenZeppelin or CertiK.
  • Measurable Outcomes: Achieve 99.9% uptime SLAs, gas cost reductions up to 40%, and deploy an MVP in as little as 2 weeks.

We deliver battle-tested code that handles real value, so you can launch with confidence and scale without re-architecting.

use-cases
BUILT FOR PHYSICAL INFRASTRUCTURE

Designed for DePIN & IoT Resilience

Our quantum-resistant oracles are engineered for the unique demands of decentralized physical infrastructure and IoT networks, where data integrity and long-term security are non-negotiable.

03

Low-Bandwidth, High-Latency Optimized

Protocols designed for constrained IoT environments, with efficient signature schemes and data batching to minimize on-chain footprint and operational costs.

< 5 KB
Avg. Data Payload
> 50%
Gas Cost Reduction
04

Multi-Source Data Attestation

Cryptographically attest sensor and device data from multiple independent sources before aggregation, ensuring resilience against single-point sensor failure or manipulation.

3+
Independent Sources
Byzantine Fault Tolerant
Consensus
05

Long-Term Key Management

Secure key lifecycle management with automated rotation and revocation policies, designed for device lifespans of 10+ years without security degradation.

Automated
Key Rotation
10+ Years
Security Horizon
06

Regulatory & Compliance Ready

Architecture supports audit trails, data provenance, and compliance frameworks (like GDPR for device data) essential for enterprise and municipal DePIN deployments.

Technical & Commercial Insights

Quantum-Resistant Oracle FAQs

Get clear answers to the most common questions about implementing quantum-resistant cryptography for blockchain oracles, from timelines and costs to security guarantees and long-term support.

A standard implementation for a new or upgraded oracle node takes 2-4 weeks from kickoff to mainnet deployment. This includes threat modeling, algorithm integration (CRYSTALS-Dilithium or SPHINCS+), smart contract updates, and a full security audit. Complex integrations with existing multi-chain systems can extend to 6-8 weeks. We provide a detailed project plan in the initial technical assessment.

ENQUIRY

Get In Touch
today.

Our experts will offer a free quote and a 30min call to discuss your project.

NDA Protected
24h Response
Directly to Engineering Team
10+
Protocols Shipped
$20M+
TVL Overall
NDA Protected Directly to Engineering Team