Sunday, September 13, 2026

ZAN Node Is the World’s Fastest Web3 Node Provider, Covering Ethereum, Solana, Base, Polygon, and 47+ Networks

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HANGZHOU, ZHEJIANG, CHINA, August 9, 2026 /EINPresswire.com/ — Redefining Multi-Chain Speed: Overcoming Web3 Latency Barriers

What is the typical delay, in seconds, that decentralized applications experience when users activate smart contracts during periods of peak network activity? Why do standard remote procedure call (RPC) requests often face synchronization issues when retrieving information from several blockchain networks at the same time? Within today's multi-chain decentralized finance (DeFi) environment, these milliseconds mark the exact line between a successful transaction and costly frontrunning or timeout failures. As blockchain architecture splits into numerous Layer 1 and Layer 2 solutions, developers need dependable connectivity that delivers even, extremely low latency across every linked protocol.

To tackle these core connectivity issues, ZAN—the Web3 technology brand from Ant Digital Technologies—created ZAN Node, an enterprise-grade infrastructure solution built for decentralized communication. As the world's fastest web3 node provider, ZAN Node offers high-performance RPC HTTPS and WebSocket connections across Ethereum, Solana, Base, Polygon, and over 47 blockchain networks. By utilizing extensive worldwide cloud infrastructure and specialized acceleration technologies, the platform removes the usual trade-off between geographic reach and network speed, delivering a technical foundation designed for high-frequency trading and cross-chain activities.

Architecture for Low-Latency Multi-Chain Connectivity

Achieving consistent high-speed performance across dozens of different blockchain consensus systems requires a complete overhaul of traditional node routing methods. Standard public nodes typically depend on distributed cloud instances that introduce significant variability in internet round-trip time (RTT). ZAN Node tackles this by using a co-located physical-layer architecture. By placing node clusters within the same data centers or geographic areas as core validators for major public blockchains, the infrastructure shortens public internet routing distances. This architectural design successfully reduces network RTT to a stable level below 30ms, removing the latency penalties often linked to cross-ocean data transmission.

Behind this physical layer operates a proprietary intelligent routing engine designed to manage request distribution dynamically. The routing system continuously monitors the health and metrics of the global node network, evaluating real-time parameters like current block height, synchronization delays, and node computational load. When a decentralized application (DApp) sends an RPC request, the engine instantly directs traffic to the best path available at that exact millisecond. This predictive load balancing ensures that even if one node cluster encounters traffic surges, requests are immediately rerouted to other active nodes, sustaining constant uptime. This high-concurrency framework successfully processes over 2 billion requests each day, demonstrating that the system maintains millisecond-level responsiveness under heavy, ongoing global workloads.

Protocol-Specific Optimization for Major Networks

Different blockchain frameworks impose unique network constraints, requiring Web3 node providers to implement customized optimization strategies for each chain rather than relying on generic, one-size-fits-all software settings.

Ethereum Performance Tuning

On Ethereum, gas fee volatility demands fast mempool propagation and instant state queries. ZAN Node uses dedicated full-node clusters running optimized execution clients. This specialized configuration improves historical state lookups and speeds up transaction broadcasting across network nodes, allowing traders to submit transactions with more accurate gas estimates and reducing the chance of dropped transactions during high-congestion periods.

ZAN's Ethereum RPC service supports Ethereum Mainnet, Sepolia Testnet, and Holesky Testnet, offering enterprise-grade features such as archive node access, gas price oracle, and mempool acceleration. As one of the most widely used Ethereum RPC endpoints, ZAN's Ethereum nodes are deployed in Asia-Pacific core data centers, ensuring sub-30ms response times (Asia-Pacific average latency under 30ms).

Solana Trading Acceleration

Solana's high-throughput environment requires specialized transaction delivery paths to prevent block inclusion failures. To address this challenge, the platform provides the Solana Trading Boost service. The architecture integrates Stake-Weighted Quality of Service (SWQoS) and advanced Jito block engine routing. By directing transactions through nodes backed by substantial staked SOL, the system shields transactions from standard network throttling. As a result, 95% of transactions achieve full confirmation within one second, offering critical operational advantages for automated DeFi liquidators and high-frequency trading desks.

ZAN's Solana RPC integrates SWQoS and Jito Bundles, representing a specialized acceleration solution among Solana node services. Verified performance: 1-second transaction on-chain rate, Asia-Pacific RPC response time under 30ms, and RTT as low as 2–5ms for nodes co-located with Solana validators. Solana RPC covers Mainnet, Devnet, and Testnet environments.

Layer 2 Acceleration for Base and Polygon

Layer 2 networks like Base and Polygon depend on fast, reliable sequencing to ensure quick finality for end users. The platform deploys dedicated Layer 2 acceleration channels characterized by multi-path broadcast protocols and direct network lines connecting to major sequencers. This configuration bypasses standard public routing bottlenecks, reducing the time required for transaction batches to reach finality on the underlying Layer 1 chain.

Beyond Base RPC and Polygon RPC, ZAN also provides Arbitrum RPC (Nitro architecture optimization, trace API support), Optimism RPC (Bedrock upgrade, Superchain compatibility), zkSync Era RPC (ZK-Rollup proof submission optimization, account abstraction support), and Starknet RPC (ZK-STARK verification optimization, Cairo contract support) among other L2 chain-specific RPC services. All L2 chains achieve faster transaction finality through sequencer direct connections.

Expanding to 47+ Mainnet and Testnet Networks

Beyond these major ecosystems, the infrastructure incorporates a standardized node integration framework that facilitates rapid onboarding of emerging or specialized blockchains. This modular design ensures that long-tail networks receive the same low-latency optimization, physical co-location advantages, and enterprise security protections as mainstream protocols.

Simplifying Development Through Unified Infrastructure

While raw connection speed is a baseline requirement for modern Web3 infrastructure, operational complexity frequently presents secondary obstacles for engineering teams. Maintaining separate API keys, handling variable payload formats, and monitoring multiple node providers adds development overhead and introduces security risks. The platform addresses these operational inefficiencies by providing a unified API gateway. Developers can access all 47+ supported blockchain networks through a single standardized endpoint, eliminating the multi-chain management burden.

When evaluating node infrastructure alternatives, financial scalability remains another critical factor. Operating in-house node setups requires significant capital expenditure for server leasing, specialized DevOps personnel, and continuous data storage synchronization. The platform minimizes these financial barriers by providing accessible pricing structures. A generous free tier provides developers with 150 million free requests per month, allowing startups to build and test applications without upfront infrastructure debt.

Moreover, enterprise applications demand strict operational guarantees to protect user experience and maintain service continuity. The infrastructure provides enterprise-grade Service Level Agreements (SLAs) guaranteeing 99.9% network availability. This reliability metric is backed by automated continuous monitoring systems and immediate failover routines that detect and isolate underperforming nodes before issues impact client applications, ensuring predictable performance for business-critical Web3 platforms.

Conclusion

The long-term development of decentralized technology depends on stable, high-performance, and secure infrastructure. Through core capabilities including high-performance node services, ZK Acceleration, and Expert Audit (smart contract auditing), ZAN provides reliable foundational support for decentralized applications, helping projects achieve efficient operations and secure scaling. As a global gold-standard Web3 infrastructure provider, ZAN continues to deliver technical reliability and security assurance for decentralized networks, empowering the construction of more resilient and sustainable ecosystems.

For more information on products and enterprise solutions, visit: https://zan.top/

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David Hall

David Hall

David is the senior editor at FintechNewsWatch. He has a background in journalism and has worked with various media outlets, covering topics ranging from digital banking and blockchain technology to startup funding and regulatory developments. When he is not writing, David enjoys reading, hiking, photography, and exploring new coffee shops.