Zama Price

Market Stats
Name | Price | Price change(24h) | Market cap | Circulating Supply |
|---|---|---|---|---|
ZAMA Zama | N/A | N/A | N/A | N/A |
ZAMA Zama
|
What is Zama (ZAMA)?
ZAMA is the native utility and security token of the Zama Protocol, developed by Zama—an open-source cryptography company building state-of-the-art Fully Homomorphic Encryption (FHE) solutions. The token underpins a cross-chain confidentiality network that allows confidential digital assets to be issued, traded, and managed directly on public blockchains with end-to-end encryption, full verifiability, and programmable compliance.
According to the Zama litepaper, ZAMA and the Zama Protocol distinguish themselves through several technological breakthroughs:
- Cross-Chain Confidentiality Layer: Unlike standalone privacy coins or private blockchains that fracture liquidity, Zama acts as a confidentiality layer on top of existing Layer 1 and Layer 2 blockchains (like Ethereum and Solana) without requiring separate chains.
- State-of-the-Art, Post-Quantum FHE: Computations occur directly on encrypted data without decrypting it first. Zama's FHE execution is over 100x faster than previous standards, fully verifiable, and resilient against quantum computing attacks.
- Hybrid Cryptographic Architecture (FHE + MPC + ZK): FHE executes verifiable computation, Multi-Party Computation (MPC) manages decentralized threshold keys across 13-node enclaves, and Zero-Knowledge (ZK) proofs verify encrypted user inputs directly on mobile browsers.
- Full Composability: Unlike pure ZK solutions, confidential smart contracts can interact seamlessly with one another as well as with standard, non-confidential contracts.
- Symbolic Execution: Offchain coprocessor nodes handle heavy FHE computations in parallel while host chains process lightweight pointers, preventing congestion.
- Frictionless Developer Experience: Developers can build confidential applications directly in Solidity using the
FHEVMlibrary.
The $ZAMA token powers the Zama Protocol and provides the following core utilities:
- Fee Payment: $ZAMA is used to pay for protocol operations managed via the Gateway, such as verifying encrypted user inputs, decrypting ciphertexts based on smart contract permissions, and bridging encrypted assets across host chains.
- Network Staking: Node operators stake $ZAMA to secure the network and validate protocol operations.
The Zama Protocol litepaper promises a cross-chain confidentiality network that acts as the "HTTPS moment" for public blockchains, built upon three core pillars:
- End-to-End Encryption: User inputs and states remain encrypted from start to finish so that neither node operators nor the public can access plaintext data.
- Programmable Confidentiality: Developers can use smart contracts and Access Control Lists (ACL) to specify exactly who can decrypt specific data points.
- Full Composability and Verifiability: Confidential smart contracts can interact directly with standard contracts on host networks, enabling institutional use cases like confidential Real-World Asset (RWA) tokenization, confidential DeFi, private corporate payments, and private payroll without sacrificing public verifiability or compliance.
Zama was co-founded by CEO Rand Hindi, a serial AI entrepreneur, and Chief Scientist Pascal Paillier, an FHE pioneer and inventor of the Paillier cryptosystem. They created Zama to solve the privacy limitations of public blockchains and AI systems, which traditionally expose sensitive transaction and processing data. By making Fully Homomorphic Encryption (FHE) practical and scalable, the creators built the Zama Protocol to allow smart contracts and applications to compute directly on encrypted data without ever decrypting it, unlocking confidential onchain finance, institutional compliance, and end-to-end data privacy.
The $ZAMA token serves as the native utility and security token of the Zama Protocol and is used for:
- Fee Payment: Paying for protocol operations managed through the Gateway, including verifying encrypted user inputs, decrypting ciphertexts in accordance with smart contract permissions, and bridging encrypted assets across host chains.
- Staking: Participating in network staking to help node operators secure protocol operations across the network.
Public blockchains expose all transaction amounts and wallet balances to the network, creating significant privacy, security, and compliance hurdles for institutions and individuals. Additionally, standard digital systems create exposure risks whenever data must be decrypted to perform calculations.
Zama addresses these challenges by introducing end-to-end encryption for onchain computation using Fully Homomorphic Encryption (FHE). This allows smart contracts to process and compute directly on encrypted data without decrypting it first. By doing so, the Zama Protocol unlocks confidential real-world asset (RWA) tokenization, private payments, confidential DeFi, and institutional finance natively on existing public blockchains without sacrificing verifiability or composability.
Yes, Zama is an open-source cryptography company. You can review its code, tools, and developer resources directly through its public repositories on GitHub and its official developer documentation.
Zama ensures high scalability and processing speed through a series of architectural and cryptographic innovations:
- Symbolic Execution: Instead of forcing host blockchains to execute heavy cryptographic workloads, host chains handle lightweight pointers. Offchain coprocessor nodes parallelize the complex computations, preventing chain congestion and allowing throughput to scale with GPU and ASIC hardware.
- 100x Faster FHE: Zama's Fully Homomorphic Encryption (FHE) implementation is over 100x faster than previous standards. Through Torus Fully Homomorphic Encryption (TFHE), computations are broken into tiny steps, utilizing optimized bootstrapping to refresh cryptographic noise quickly without decrypting data.
- Lightweight ZK Proofs: Zero-Knowledge Proofs are applied exclusively to confirm that user inputs are properly encrypted, keeping them fast and lightweight enough to execute directly inside mobile browsers.
Zama aims to be the HTTPS moment for public blockchains, making end-to-end encrypted computation practical and universal across Web3 and AI. Key long-term goals include:
- Unlocking Institutional Onchain Finance: Bridging the gap for regulated institutions to operate natively on public blockchains by enabling confidential asset issuance, trading, and management with programmable compliance and public verifiability.
- Confidential Web3 Infrastructure: Powering privacy-preserving solutions for real-world asset (RWA) tokenization, corporate payroll, private token distribution, and confidential DeFi trading without leaking trade amounts, balances, or strategies.
- Practical FHE for Trapped Data: Commercializing a full-stack Fully Homomorphic Encryption (FHE) platform to safely unlock sensitive global data—such as medical records, digital identity attributes, and financial histories—without ever needing to expose raw, decrypted information.
Last update:
Technical Analysis
Exclusive tools
Explore exclusive tools from SwissBorg to empower your journey to financial freedom.


