Inco Lightning Launches on Base with Encrypted Smart Contracts

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Inco Network launched Inco Lightning on the Base mainnet on June 15, 2026, introducing a privacy framework for building confidential applications on Ethereum Virtual Machine-compatible networks. The platform allows developers to integrate encrypted data types and confidential computing into standard Solidity smart contracts without requiring new programming languages or separate blockchain deployments. Blockchain privacy limitations have historically restricted broader adoption of decentralized applications handling sensitive information.

Inco Lightning Introduces Encrypted Data Types and Confidential Computation on Base

Inco Lightning provides encrypted data types that allow developers to store private information on-chain while maintaining compatibility with existing Solidity structures, including mappings, contracts, and function logic. Through these encrypted data formats, applications can process sensitive information without exposing the underlying data publicly.

The platform enables confidential computation, allowing operations such as arithmetic calculations, comparisons, logical functions, and conditional execution to be performed on encrypted data without requiring decryption. Another feature is encrypted randomness, which enables developers to generate verifiable random values on-chain while maintaining privacy. The technology could support use cases such as blockchain-based gaming, private auctions, and other applications requiring secure randomization mechanisms.

Inco Lightning includes programmable access controls that allow developers to define permissions for encrypted data at the smart contract level. These capabilities are designed to support compliance requirements, role-based access systems, and selective disclosure models where information is only revealed to approved participants.

For situations where encrypted data needs to be accessed, Inco Lightning provides a decryption and re-encryption framework designed around a network of trusted execution environment-based decryption nodes. The system uses verified attestations to manage secure data access while maintaining confidentiality.

The release introduces a JavaScript SDK that connects applications with confidential smart contracts, supporting features such as input encryption, key management, EIP-712 signing, and local decryption. Additional features include encrypted lists, which allow developers to manage private collections of encrypted data, delegated viewing permissions for temporary access control, and attested computation that enables verification of encrypted data results without exposing the original information.

Inco Network Outlines Use Cases and Developer Workflow

According to Inco Network, confidential computing expands the range of possible blockchain applications by addressing privacy limitations that have restricted broader adoption. Potential use cases include private payments, confidential decentralized finance applications, private governance systems, and blockchain-based games with hidden states.

The company stated that developers can begin building with Inco Lightning using existing Solidity workflows and standard deployment processes, without requiring additional infrastructure. The launch on Base mainnet represents an effort to bring privacy-focused functionality to existing blockchain ecosystems while simplifying the development of confidential Web3 applications.

FAQ

What did Inco Network launch on June 15, 2026?

Inco Network launched Inco Lightning on the Base mainnet on June 15, 2026. The platform enables developers to build confidential applications on Ethereum Virtual Machine-compatible networks using encrypted data types and confidential computing within standard Solidity smart contracts.

How does Inco Lightning handle encrypted data access?

Inco Lightning provides a decryption and re-encryption framework designed around a network of trusted execution environment-based decryption nodes. The system uses verified attestations to manage secure data access while maintaining confidentiality.

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