Understanding zkPass (ZKP): A Privacy Oracle Connecting Web2 and Web3 Data
- 核心观点:zkPass通过零知识证明技术实现隐私数据链上验证。
- 关键要素:
- 基于zkTLS技术,无需中介即可验证HTTPS网站数据。
- 本地生成证明,保护用户原始数据不被暴露。
- $ZKP代币用于结算、质押及生态治理,具通缩机制。
- 市场影响:为Web2与Web3数据互信提供关键基础设施。
- 时效性标注:长期影响
As the Web3 ecosystem continues to develop, the demand for privacy-preserving and verifiable data is growing rapidly. In various applications such as DeFi, artificial intelligence, digital identity, and decentralized governance, users and institutions need reliable ways to verify information without exposing sensitive data.
zkPass (ZKP) is a decentralized oracle protocol that transforms private internet data into on-chain verifiable proofs. Through zkTLS—a fusion of 3P-TLS and Hybrid-ZK cryptography—zkPass allows users and applications to prove facts from any HTTPS website without OAuth, API keys, or trusted intermediaries, ensuring privacy, security, and broad compatibility.
All proofs are generated locally, protecting the privacy of user data and supporting various application scenarios such as artificial intelligence, decentralized physical infrastructure networks (DePIN), digital identity (DID), DeFi lending, governance, and compliance.
The $ZKP token is now available for early participation in the ZKP pre-market trading zone on the XT exchange . Users can gain an early advantage within the zkPass verifiable data ecosystem, while simultaneously contributing to its development and application promotion.

Quick Summary
- zkPass (ZKP) transforms private internet data into verifiable proofs on the blockchain while protecting user information security.
- Based on zkTLS technology, it supports privacy protection verification in multiple fields such as identity and finance.
- The $ZKP token is used for settlement, verification, and ecosystem participation, and is designed with a deflationary mechanism.
- It lays the foundation for seamless, trustless data verification between Web2 and Web3.
What is zkPass (ZKP)?
zkPass is a decentralized oracle protocol that transforms private internet data into on-chain verifiable proofs. Based on zkTLS—a technology that combines 3P-TLS with hybrid zero-knowledge (Hybrid-ZK) cryptography innovations—zkPass allows users and applications to prove facts from any HTTPS website without OAuth, API keys, or trusted intermediaries.
With zkPass, individuals can selectively validate various data attributes, including:
- Legal identity (passport, driver's license, ID card)
- Financial records (account balance, transaction history, credit score)
- Medical information (medical records, prescriptions, genetic data)
- Social and behavioral data (social media accounts, proof of activity)
- Professional and educational background (work experience, academic qualifications, certifications)
- Digital activities and assets (gaming accounts, loyalty programs, real-world assets)
All proofs are generated locally on the user's browser or device, ensuring that original personal data is never exposed or transmitted. These verifiable proofs can be applied to a wide range of scenarios, including artificial intelligence, DePIN, digital identity (DID), DeFi lending, governance, and compliance.
🚀 New Coin Launched 🚀 #XTListing @zkPass 📢 #XT will soon be available for pre-market trading of $ZKP (zkPass). ✅ Trading begins: November 11, 2025, 16:00 (UTC+8) ✅ Settlement begins: Please refer to the trading details page for specific settlement times. Start trading here: https://t.co/1lmSn8u4kU pic.twitter.com/PoOdLtibJW — XT Chinese Channel (@XTExchangecn) November 11, 2025
How zkPass (ZKP) works: Core mechanism analysis
zkPass uses three-way TLS (3P-TLS) and hybrid zero-knowledge proofs (Hybrid ZK) for data security. The process begins with a three-way handshake between the data source (S), the user (P), and the zkPass node (V), generating a shared session key via Paillier encryption. P and V jointly compute the keys needed for encryption and verification, while V has no access to the user's private data. This process includes standard TLS steps to prepare for zero-knowledge proofs.
zkPass employs a hybrid zero-knowledge approach, combining interactive (VOLE-ZK 23) and non-interactive protocols. VOLE-ZK 23 ensures data authenticity and client-side tamper protection, is optimized by SoftSpoken for efficiency, and focuses on simplifying AND gate operations.
In non-interactive zero-knowledge (NIZK), zkPass uses the SNARK framework. The verified result is signed and added to the Merkle tree of the SBT (Soul Bound Token) contract, ensuring that verification is efficient, secure, and private.
ZKP Token Economics: Uses, Rewards, and Value
$ZKP Token Economics
The internet has always been built on information, not verifiable truth. For decades, online data has been viewable but difficult to verify. Screenshots can be forged, credentials can be faked, and trust relies on assumptions rather than proof.
zkPass and its zkTLS protocol redefine this foundation. For the first time, it transforms Web2 private data—such as financial records, identity verification, educational records, or travel histories—into verifiable, privacy-preserving cryptographic proofs that can circulate across networks. In this verifiable data economy, $ZKP serves as the native functional token, supporting settlement, verification, and coordinated operations within the zkPass ecosystem.
Token Overview
- Name: $ZKP
- Token Standard: ERC-20
- Total supply: 1 billion
- Supply type: Fixed, no inflation
- Deflationary model: Some settlement fees are burned to maintain deflation.
- Buyback Mechanism: Led by the DAO, the mechanism uses protocol revenue for periodic buybacks.
Token Uses
- The settlement medium $ZKP is the native functional unit required for proof settlement and validator operations within the zkPass protocol.
- Validator Staking: Validators must stake $ZKP as operational collateral to ensure the network's correctness, uptime, and reliability.
- The network credit $ZKP is an on-chain credit used to record and account for network contributions, including verifiable computations and system integrations.
- Enterprises and developers can use $ZKP to access zk's native authentication API and privacy-preserving data infrastructure.
- Cross-system verifiability and governance : ZKP supports decentralized coordination, serving as a trust layer between verifiable systems while maintaining auditing and other non-profit maintenance activities.
Token Allocation and Unlocking Plan

- Community - 48.5% (12.5% unlocked at TGE, 6% linearly unlocked in the first 3 months, and 30% linearly unlocked monthly from TGE onwards for 5 years) Used for ecosystem development, including verifiable airdrops, network incentives, community sales, exchange-related marketing, and strategic partnerships.
- Early Investors - 22.5% (12-month lock-up period, followed by 18-month linear unlocking) is allocated to strategic and institutional partners who supported the early development of the protocol.
- Core Contributors - 14% (locked for 24 months, then unlocked linearly over 24 months) Reserved for founding members, engineers, researchers, and key operational contributors who drive the zkPass network.
- The DAO Treasury - 10% (5-year linear unlocking) is used for the network's long-term sustainability, governance, ecosystem funding, and emergency reserves.
- Liquidity - 5% (100% unlocked at TGE) is used for market liquidity provision and network launch.
At launch, the circulating supply is limited to community participation and liquidity, with a 0% unlocking ratio for teams or investors.

The Credibility Flywheel
→ The convergence of Web2 and Web3 unlocks a vast data universe. → Data flows with privacy-protected verification. → Verified interactions create real value and new applications. → Value drives adoption by users and businesses across ecosystems. → Adoption fuels validator engagement and network incentives. → Growing value accelerates integration and data access. → Every new data source restarts the cycle, making it faster, stronger, and broader.
Each cycle adds up utility, liquidity, and reputation, transforming trust into energy, and then energy into trust.
zkPass Application Scenarios and Ecosystem
zkPass expands the verifiability of the digital world by transforming sensitive Web2 data into portable, privacy-preserving, and universally verifiable cryptographic proofs. Based on the zkTLS protocol, zkPass builds a trust layer that allows information to self-verify without being exposed, bridging the gap between Web2 institutions and Web3 applications.
zkPass's application scenarios can be divided into ten areas, each addressing key challenges related to authenticity, privacy, and interoperability:
- Identity and compliance: Privacy-preserving KYC, AML, and eligibility verification in financial and regulated services.
- Financial and governance assets, transactions, and unique identity verification enable compliant DeFi, fair governance, and automated insurance claims.
- Reputation and achievements transform Web2 accomplishments, professional track records, and experience into verifiable credentials that can be used across ecosystems.
- Industry and society provide security certifications for healthcare, education, social interaction, and gaming, ensuring authenticity without exposing data.
- AI and the data economy provide AI models and agents with authentic and privacy-protected data inputs, supporting trusted and regulated AI systems.
- DePIN, along with verifiable machine-to-machine interactions and device usage proofs, underpins the decentralized infrastructure economy.
- Encrypted verification of supply chain and enterprise data , including supply chain documents, compliance attributes, and enterprise records.
- Efficient government and public services , privacy-first welfare distribution, tax compliance, and digital identity verification.
- Content authenticity: Verification of the source and author of media, creative works, and AI-generated content ensures digital trust.
- Expand ecosystem integration and cross-industry interoperability; a proof generated once can be reused in financial, enterprise, AI, and Web3 protocols.
How to Purchase $ZKP | Participation Guide
The ZKP token is now available for pre-market trading in the ZKP zone on the XT exchange , allowing early participants to acquire the asset before public trading. Users can simply log in to XT and access the ZKP pre-market trading zone to purchase directly through the platform.
For users wishing to participate in the early stages of a project, the pre-sale offers a direct and flexible entry point. Whether it's to explore the long-term value of the ecosystem or to secure an early position, XT pre-market trading makes participation easy and convenient.

In addition to purchasing, users interested in the long-term development of the project can also choose to follow its ongoing progress and keep an eye out for new opportunities emerging in the ecosystem. As the network expands, new features, partnerships, and community-driven initiatives may provide even more avenues for participation.
The competitive advantage of the $ZKP token
zkPass's competitive advantage: zkPass introduces a completely new verification paradigm that addresses the limitations of existing identity and data solutions.
- Privacy-preserving sensitive user data always remains on the local device. Proof only displays the attributes required for verification.
- Verifiable Integrity (zkTLS) extends the standard TLS protocol to a three-party model, ensuring the origin and authenticity of private data.
- Universal Compatibility works with any HTTPS website without requiring an OAuth API, commercial license, or custom integration.
- Anti-Cheating uses template-based validation to ensure that client requests and server responses cannot be tampered with, preventing users from forging achievements or credentials.
- Efficient Proof Generation relies on the VOLE-in-the-Head (VOLEitH) algorithm, enabling zkPass to generate proofs in milliseconds on local devices while maintaining the public verifiability of the proofs.
- Trustless Attestations are decentralized MPC nodes that verify data integrity before a proof is accepted, ensuring that zkSBT and the proof cannot be forged.
Key Risks and Challenges of the ZKP Token
While zkPass and $ZKP are built on a solid foundation, some challenges remain. Widespread adoption depends on enterprise integration and user confidence in cryptographic proofs, and the transition from Web2 data silos to decentralized verification may take time. As complex systems, continuous security audits and robust node maintenance will help ensure reliability and maintain trust in proof generation.
The dynamics of $ZKP also involve some uncertainty. Its fixed supply, burning mechanism, and DAO-led buybacks are most effective when proof generation, staking, and validator participation remain active. If ecosystem growth falls short of expectations or other privacy-preserving verification schemes gain market attention, the token price may fluctuate. Continued success will depend on stable technological development, integration progress, and active community governance.
ZKP Outlook: Growth and Ecosystem Expansion
With the roadmap progressing to Q4 2025, the launch of the ZKP token marks a significant inflection point in network maturity. TGE will activate staking, proof incentives, governance rights, and reputation rewards, transforming $ZKP from a mere utility asset into a core driver of ecosystem participation. The complete token functional framework will further support node operation staking, proof verification, schema access, and fair reward distribution, laying the foundation for a self-sustaining economic environment.
Looking ahead to 2026, the project is expected to enter a phase of accelerated expansion. Governance participation is expected to deepen, with broader DAO involvement, more flexible fund management, and diversified incentive models attracting a large number of developers, data contributors, and validators.
As network throughput and validator coverage continue to grow, the infrastructure is expected to reach consumer and enterprise-level capabilities, opening the door to real-world applications, new integration layers, and a more robust market around privacy-preserving computing.
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