We architect and deploy custom smart contracts for DeFi, NFTs, and enterprise applications. Our development process ensures security-first code, gas optimization, and full audit readiness.
Interoperable Prediction Market Standard
Smart Contract Development
Secure, production-ready smart contracts built by Web3-native engineers.
- Security & Audits: Built with
OpenZeppelinstandards and formal verification. All code is prepared for third-party audits from firms like CertiK or Quantstamp. - Protocol Expertise: Native development for
ERC-20,ERC-721,ERC-1155, and custom standards likeERC-4626for vaults. - Deployment & Management: Full lifecycle support from testnet (
Goerli,Sepolia) to mainnet deployment with verified source code and upgradeability patterns.
Deliver a secure, auditable, and maintainable codebase in 2-4 weeks for an MVP, with a 99.9% uptime SLA for live contracts.
Core Components of the Standard
Our Interoperable Prediction Market Standard is built on a modular, secure, and scalable foundation. Each component is engineered to reduce your development time, ensure regulatory compliance, and create seamless cross-chain experiences for your users.
Business Outcomes of a Shared Standard
Adopting a unified, interoperable standard for prediction markets isn't just a technical upgrade—it's a strategic business decision. Here's how it translates into measurable outcomes for your platform.
Accelerated Market Liquidity
Shared liquidity pools across platforms reduce fragmentation, enabling deeper order books from day one. This attracts professional market makers and improves price discovery for all participants.
Reduced Development & Integration Costs
Build once, integrate everywhere. A common standard eliminates the need for custom bridges and bespoke integrations with each new data provider, oracle, or wallet, slashing engineering overhead.
Enhanced User Experience & Retention
Users can seamlessly move positions and liquidity between compliant platforms using the same wallet and token standards. This removes friction, builds user loyalty, and increases lifetime value.
Future-Proof Protocol Design
Built on audited, upgradeable smart contract foundations (e.g., OpenZeppelin) with clear governance pathways. Your platform evolves with the standard, not against it, protecting your technical investment.
Competitive Differentiation
While leveraging shared infrastructure, you maintain full control over front-end design, market curation, fee models, and unique features. Compete on experience, not on rebuilding core plumbing.
Attract Institutional Participation
Standardization provides the clarity, security, and interoperability required by funds and trading desks. It demonstrates maturity and reduces their operational and compliance risk.
Standard Development & Implementation Tiers
Compare our structured service packages for implementing the interoperable prediction market standard, from initial audit to full-scale production deployment with enterprise support.
| Feature / Specification | Starter | Professional | Enterprise |
|---|---|---|---|
Standard-Compliant Smart Contract Audit | |||
Gas-Optimized Reference Implementation | |||
Multi-Chain Deployment Support (EVM) | 1 Network | Up to 3 Networks | Unlimited Networks |
Integration & Testing Support | Documentation Review | 2-Week Sprint | Dedicated Engineer |
Production Monitoring & Alerting | Basic Dashboard | Custom Alerts & Dashboards | 24/7 SRE Team + PagerDuty |
Incident Response SLA | Best Effort | < 12 Business Hours | < 4 Hours, 24/7 |
Protocol Upgrade Management | Advisory | Handled for 1 Year | Fully Managed Lifecycle |
Custom Oracle & Data Feed Integration | 1 Custom Feed | Multi-Source, Custom Logic | |
Estimated Time to Live Deployment | 3-4 Weeks | 6-8 Weeks | 8-12 Weeks (Custom Scope) |
Typical Engagement Cost | $25K - $50K | $75K - $150K | Custom Quote ($200K+) |
Our Development & Governance Process
We deliver a production-ready, interoperable prediction market standard through a rigorous, multi-phase process designed for security, scalability, and seamless integration.
Architecture & Protocol Design
We design the core protocol architecture, defining the data structures, oracle interfaces, and settlement logic for cross-chain compatibility. This ensures your market can operate across EVM and non-EVM chains from day one.
Smart Contract Development
Our team writes, tests, and optimizes the core smart contracts in Solidity/Vyper. We implement battle-tested patterns from OpenZeppelin and focus on gas efficiency to minimize user transaction costs.
Security Audits & Formal Verification
Every contract undergoes rigorous internal review followed by external audits from leading security firms. We employ formal verification methods for critical state transitions to eliminate logic vulnerabilities.
Testnet Deployment & Simulation
We deploy the complete standard on testnets (e.g., Sepolia, Arbitrum Sepolia) and run extensive simulations of market creation, trading, and resolution under high-load conditions to ensure stability.
Mainnet Launch & Monitoring
We manage the secure mainnet deployment, configure initial governance parameters, and implement 24/7 monitoring with alerting for contract activity, oracle feeds, and liquidity health.
Ongoing Governance & Upgrades
We establish and document the upgrade governance process, including timelock controllers and multi-sig safeguards, and provide support for future protocol improvements and parameter tuning.
Interoperable Prediction Market Standard FAQ
Get clear answers on our process, security, and delivery for building a custom prediction market protocol.
A standard interoperable prediction market deployment takes 4-6 weeks from kickoff to mainnet launch. This includes 2 weeks for core contract development (Solidity 0.8.x), 1 week for frontend integration, 1 week for internal security review, and 2 weeks for client testing and deployment. Complex features like cross-chain oracles or advanced governance can extend the timeline, which we scope and quote for upfront.
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Our experts will offer a free quote and a 30min call to discuss your project.