| Time Period | Price Change (USD) | Price Change (%) |
|---|---|---|
| Today | $ -0.0030 | -3.18% |
| 30 Days | $ -0.032 | -25.95% |
| 60 Days | $ -0.061 | -40.34% |
| 90 Days | $ -0.019 | -17.18% |
ZEROBASE (ZBT) is the utility token associated with the ZEROBASE Prover Network, a cryptographic computing network focused on verifiable off-chain computation. The ZEROBASE Prover Network combines zero-knowledge proofs and trusted execution environments to help applications generate proofs without exposing sensitive inputs. Public project materials describe ZEROBASE products such as zkStaking, zkLogin, zkDarkPool and ProofYield, which connect privacy-preserving computation with DeFi, authentication, trading privacy and real-world asset strategy verification. For users viewing the ZEROBASE price on KCEX, the key idea is that ZBT is not presented as an ownership claim or revenue right; it is designed for access, coordination and incentives inside the ZEROBASE Prover Network. This makes the token most relevant to people researching ZK proof generation, confidential computing, node participation and application demand around privacy-focused verification.
The ZEROBASE Prover Network uses a hub-and-prover structure to coordinate proof requests. A ZEROBASE Hub registers tasks, dispatches Prover Nodes, tracks active nodes through heartbeats and handles payment-related order workflows. Prover Nodes perform the circuit computation needed to generate ZK-SNARK proofs and return proofs through the ZEROBASE API. The network architecture assigns nodes to hubs, uses consistent hashing and can add hubs or reassign nodes to manage load and support availability.
ZBT is used as the utility backbone of the ZEROBASE Prover Network. Project disclosures describe ZBT as a token for paying protocol-level services such as proof generation and bandwidth, incentivizing node operators and contributors, and supporting protocol-level governance signaling. ZEROBASE also emphasizes TEE-based privacy controls, including secure sandbox environments for prover nodes, so circuit programs can run in isolated settings. In this model, demand for ZBT is connected less to generic transaction activity and more to whether developers, applications and node operators need ZEROBASE proof-generation capacity, privacy-preserving workflows and coordinated computation services.
ZEROBASE (ZBT) use cases center on the ZEROBASE Prover Network and its privacy-oriented products. Users searching for ZEROBASE zkStaking may be looking for stablecoin-based strategies with zero-knowledge attestations. Searches for ZEROBASE zkLogin relate to private authentication flows that can verify credentials without exposing user details. Developers may also search for ZEROBASE proof generation API, ZBT prover node rewards, ZEROBASE TEE prover network or ZEROBASE zkDarkPool when evaluating confidential computation, private trading logic or application-specific ZK circuits.
Within the ZEROBASE ecosystem, ZBT supports access to proving services, bandwidth usage, node incentives and governance signaling. Its practical relevance depends on whether real applications continue to route proof requests through the network, whether developers integrate supported circuits, and whether node operators provide reliable compute resources for verifiable off-chain tasks.
ZEROBASE (ZBT) value is influenced by adoption of the ZEROBASE Prover Network, utility demand, ecosystem growth, liquidity conditions and broader market interest in privacy-preserving computation. For an Infrastructure asset like ZBT, the most important drivers are whether developers and applications use the network for real proof workloads and whether token utility remains connected to measurable network activity.
Developer Demand matters because ZEROBASE depends on builders integrating its proving network, APIs and supported circuit frameworks. If more teams build with the ZEROBASE Prover Network for zkLogin, zkDarkPool, staking attestations or custom ZK circuits, ZBT utility can become more relevant. Weak developer interest would reduce the number of real workloads that need proving services, bandwidth or node coordination.
Infrastructure Usage tracks whether the ZEROBASE Prover Network is actually used for proof requests rather than only discussed as a concept. Higher usage can create more demand for proof generation, node scheduling, bandwidth and payment workflows. For ZBT, sustained usage is important because the token’s role is tied to protocol-level services and network participation, not to passive ownership claims.
Protocol Integrations influence adoption by expanding where ZEROBASE proof services can be used. Integrations with wallets, DeFi applications, privacy modules or cross-chain verification tools can turn the ZEROBASE Prover Network into a component inside other products. More credible integrations may improve utility and visibility, while limited integrations can make ZBT demand more dependent on a narrow set of internal applications.
Ecosystem Growth reflects the development of products, partners, contributors and node participants around ZEROBASE. A broader ZEROBASE ecosystem may support more proof workloads, more use of zkStaking or zkLogin, and stronger incentives for Prover Nodes and Hub Nodes. If ecosystem activity slows, token demand may become more speculative and less connected to real service consumption.
Network Adoption measures whether users, developers and institutions choose the ZEROBASE Prover Network for privacy-preserving computation. Adoption can affect ZBT by increasing the need for proof generation, staking participation, bandwidth and governance signaling. The important question is not only how many users hold ZBT, but whether the network becomes a recurring tool for verifiable off-chain computation.
ZBT has a project-disclosed fixed maximum supply of one billion tokens and is described as an ERC-20 compatible utility token. Its value drivers therefore include how token unlocks, circulating supply, service payments and node incentives interact over time. A fixed supply can help define scarcity, but utility depends on actual demand for ZEROBASE services and the pace of ecosystem participation.
ZEROBASE has named products and use cases such as zkStaking, zkLogin, zkDarkPool and ProofYield. Adoption of these specific products can create a more distinct demand profile for ZBT than general compute narratives. If these tools attract recurring users or developers, they can strengthen the connection between the token and privacy-preserving verification. If product traction remains limited, ZBT demand may be less durable.
ZEROBASE (ZBT) is currently trading at $0.090 USD on KCEX. This reflects a -5.32% change over the past 24 hours.
ZEROBASE has a market capitalization of $22.18M USD, ranking #734 among all cryptocurrencies. Market cap is calculated by multiplying the current price by the circulating supply.
The current circulating supply of ZBT is 244.99M out of a maximum supply of 1.00B. This means approximately 24.49% of all ZBT that will ever exist is already in circulation.
ZEROBASE reached its all-time high of $1.025 USD on 2025-10-17. The current price is approximately 91.16% below that peak.
ZEROBASE hit its all-time low of $0.058269 USD on 2026-02-05. Since then, ZBT has gained over 55.43% from that level.
You can buy ZBT on KCEX by creating a free account, completing verification, and depositing funds via crypto transfer. ZBT/USDT is available for both spot trading and futures trading on KCEX.
ZEROBASE is currently priced at $0.090 USD with a 24h change of -5.32% and a 7-day change of -24.15%. Investment decisions depend on your own research and risk tolerance - always do your own due diligence before trading.
KCEX offers zero maker fees on ZBT/USDT spot trading. Taker fees are among the lowest in the industry, making KCEX a cost-effective platform for trading ZEROBASE. For a full breakdown of trading fees, visit the KCEX Fee Schedule.