KRNL Labs provides a decentralized infrastructure protocol that enables developers to create modular smart contracts using community-built functions called kernels, facilitating seamless integration across multiple blockchains. This approach addresses the fragmentation in the Web3 ecosystem by enhancing interoperability and reducing deployment time for decentralized applications.
Funding
$1.7M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Developing interoperable decentralized applications (dApps) across multiple blockchains is challenging due to the fragmented nature of the Web3 ecosystem. This fragmentation leads to increased development time and complexity, hindering the seamless integration of functionalities across different networks.
Solution
KRNL Labs offers a decentralized infrastructure protocol that enables developers to create modular smart contracts using community-built functions called kernels. These kernels can be seamlessly integrated into smart contracts, facilitating interoperability across multiple blockchains. The KRNL Protocol allows kernels to move fluidly across networks without compatibility issues, enhancing modularity, optimizing resources, ensuring stability, and speeding up deployment. This approach provides a customizable and adaptable interface, allowing kernels to be built on any network, and fosters a two-sided marketplace connecting kernel creators with dApp developers.
Target Audience
The primary target audience includes Web3 developers and dApp developers seeking scalable and interoperable smart contract solutions across multiple blockchains.
Features
- Modular execution protocol enabling seamless integration of community-built functions (kernels) into smart contracts.
- Cross-chain compatibility allowing kernels to move fluidly across different blockchain networks.
- Decentralized and permissionless architecture serving as an execution abstraction and orchestration engine for kernels.
- Two-sided marketplace connecting kernel creators with dApp developers.
- Security kernels to safeguard against vulnerabilities and attacks.
- Universal Decentralized Identifier (DID) solution built on a single, optimized network that can seamlessly integrate into any network's transaction lifecycle.