We've analyzed and compared the top 1 API providers supporting Decentralized Routing for Nigerian developers and businesses. Find the right infrastructure fit for your startup below.
Written by Editorial Staffs as at 20th June, 2026
| Feature | |
|---|---|
| Pricing | Free: 100M calls/month. Paid plans for dedicated endpoints. Decentralized network. |
| EVM Chain RPC | Yes |
| 30+ Chains | Yes |
| Load Balancing | Yes |
| WebSocket | Yes |
| Decentralized Routing | Yes |
| Failover | Yes |
| View Details |
dRPC is a decentralized RPC load balancer that aggregates multiple blockchain node providers into a single endpoint, routing requests across different providers for redundancy, load balancing, and censorship resistance. Instead of depending on a single node provider like Alchemy or Infura, dRPC routes each RPC call through its network of node providers โ automatically failing over to alternative providers if any individual provider experiences downtime or rate limiting. This multi-provider architecture makes dRPC one of the most reliable options for high-availability blockchain connectivity. For Nigerian Web3 developers, dRPC offers a very generous free tier of 100 million API calls per month โ substantially more than Alchemy (300M compute units, which translate to fewer calls for complex methods) or Infura (100K requests/day). This high free limit makes dRPC well-suited for Nigerian applications with high request volumes, particularly analytics tools or monitoring systems that query the blockchain frequently. The decentralized routing model means that no single provider failure can take down a dRPC-connected application. Requests are distributed across multiple providers including Alchemy, QuickNode, Infura, and others depending on availability and latency, with the routing logic handled by dRPC's infrastructure. For Nigerian production applications where uptime is critical, this redundancy provides a meaningful reliability advantage over single-provider connections. Support covers 30+ EVM chains including Ethereum, Polygon, Arbitrum, Optimism, Base, BNB Smart Chain, and Avalanche, with WebSocket endpoints for real-time subscriptions. The free tier provides shared endpoint access, while paid plans offer dedicated endpoints with higher throughput guarantees and the ability to prefer specific underlying providers. For Nigerian developers evaluating node providers, dRPC is particularly compelling when: (1) free tier request volume is a primary concern, (2) maximum uptime through provider redundancy is valued, or (3) decentralization and censorship resistance are architectural priorities. For developers who prioritize enhanced APIs (NFT data, wallet portfolios) over raw RPC, Moralis or Alchemy provide richer data endpoints. dRPC's distributed routing layer intelligently selects the best available node for each request based on latency, error rate, and load โ delivering higher effective reliability than single-provider endpoints by automatically failing over to alternative nodes when any individual node underperforms. This self-healing architecture is particularly valuable for production DApps where downtime directly affects user trust. The platform supports both HTTPS and WebSocket connections, with WebSocket being essential for real-time features like block subscription, event listeners, and transaction status tracking in DApp interfaces. Stable WebSocket connections prevent the reconnection overhead that degrades real-time user experience. For Nigerian Web3 startups building production applications, dRPC's combination of generous free usage, multi-chain coverage, and reliability improvements over single-provider alternatives makes it an operationally sound choice. The provider-agnostic routing means that if any single underlying node provider has issues, dRPC's routing automatically compensates, maintaining service availability for Nigerian end users accessing the DApp. API key management is straightforward through the dRPC dashboard, with separate keys for different environments (development, staging, production) enabling proper segregation of traffic and usage monitoring by environment.