How does Brevis use zkTLS + Pico zkVM to achieve InfoFi without Doxxing?
The key lies in turning privacy computing into usable infrastructure.
———————————————— Web2 platforms control all user data, but can't prove authenticity on-chain.
Cross-platform reputation systems rely on centralized APIs, posing single point of failure risks.
Users who want to prove their social influence or transaction history must expose sensitive information.
DeFi protocols cannot access user behavior data from other platforms for risk assessment.
————————————————
@brevis_zk is changing the game
zkTLS enables any Web2 data to generate ZK proofs without needing platform API support.
Pico zkVM, as the world's fastest ZK virtual machine, enables real-time proof generation.
Modular coprocessor architecture supports data verification, machine learning inference, light client, and identity authentication.
ProverNet introduces a heterogeneous proving marketplace where GPU, ASIC, and FPGA can all find optimal configurations.
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How does Brevis use zkTLS + Pico zkVM to achieve InfoFi without Doxxing?
The key lies in turning privacy computing into usable infrastructure.
————————————————
Web2 platforms control all user data, but can't prove authenticity on-chain.
Cross-platform reputation systems rely on centralized APIs, posing single point of failure risks.
Users who want to prove their social influence or transaction history must expose sensitive information.
DeFi protocols cannot access user behavior data from other platforms for risk assessment.
————————————————
@brevis_zk is changing the game
zkTLS enables any Web2 data to generate ZK proofs without needing platform API support.
Pico zkVM, as the world's fastest ZK virtual machine, enables real-time proof generation.
Modular coprocessor architecture supports data verification, machine learning inference, light client, and identity authentication.
ProverNet introduces a heterogeneous proving marketplace where GPU, ASIC, and FPGA can all find optimal configurations.