The Zama Confidential Blockchain Protocol enables confidential smart contracts on top of any L1 or L2 using FHE.
Blockchain transparency is a bug, not a feature
Why? Because validators need to see the data to verify the state
But confidentiality and public verifiability is possible
Powered by Fully Homomorphic Encryption (FHE).
Zama uses FHE to keep onchain data encrypted at all times, even during processing. Not familiar with FHE? Learn more about it here.
Scalable, secure and affordable.
Zama uses coprocessors to offload the FHE computation from the base chain. This keeps gas fees low while enabling horizontal scalability and public verifiability.
Opening a myriad of new use cases for DeFi
DeFi
Confidential token swaps, lending, and yield farming.
Payments
Confidential stablecoin transactions with encrypted amounts
Banking
Onchain self-custodial banking with full confidentiality.
Tokens
Confidential token launches, vesting, airdrops, and governance.
RWA Tokenization
Confidential and compliant RWA to boost institutional adoption.
Sealed-bid auctions
Confidential and fair onchain auctions preventing front-running.
Summary of throat dimensions, power requirements (BHP), and total L/G needed.
d0=585Vtσρl+597(μlσ⋅ρl)0.45(1000LG)1.5d sub 0 equals the fraction with numerator 585 and denominator cap V sub t end-fraction the square root of the fraction with numerator sigma and denominator rho sub l end-fraction end-root plus 597 open paren the fraction with numerator mu sub l and denominator the square root of sigma center dot rho sub l end-root end-fraction close paren to the 0.45 power open paren 1000 the fraction with numerator cap L and denominator cap G end-fraction close paren to the 1.5 power
) : Typically optimized between 70–90 m/s for maximum particulate capture. Liquid-to-Gas Ratio (
Making FHE practical for most use cases
Zama is already faster than Ethereum
Zama can already process 20 tps / chain, enough to run all of Ethereum with FHE, and will reach 1,000 tps next year.
FHE ASICs will enable 10,000+ tps
We're partnering with multiple hardware companies to create dedicated ASICs for FHE, which will enable thousands of tps.
Summary of throat dimensions, power requirements (BHP), and total L/G needed.
d0=585Vtσρl+597(μlσ⋅ρl)0.45(1000LG)1.5d sub 0 equals the fraction with numerator 585 and denominator cap V sub t end-fraction the square root of the fraction with numerator sigma and denominator rho sub l end-fraction end-root plus 597 open paren the fraction with numerator mu sub l and denominator the square root of sigma center dot rho sub l end-root end-fraction close paren to the 0.45 power open paren 1000 the fraction with numerator cap L and denominator cap G end-fraction close paren to the 1.5 power venturi scrubber design calculation xls upd
) : Typically optimized between 70–90 m/s for maximum particulate capture. Liquid-to-Gas Ratio ( Summary of throat dimensions, power requirements (BHP), and
Zama Protocol Roadmap

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