VZT Tokenomics

1 billion total supply; 80% allocated to DePIN hashrate, building a sustainable incentive ecosystem

VZT
Total supply:1,000,000,000
VeZoom Token
80% DePIN hashrate 800 million VZT

Rewards for node contributions, distributed by hashrate

10% VeZoom Foundation 100 million VZT

Ecosystem growth, marketing, and R&D

10% organizational reserve 100 million VZT

Team incentives, partners, and strategic reserve

Token information

Detailed VZT information and on-chain data

VeZoom Token (VZT)

Symbol: VZT

Total supply
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Circulating supply
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Locked supply
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Released supply
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Token contract

Contract address
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Market data

Current price
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24h volume
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Market cap
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Based on circulating supply
Number of holders
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Liquidity pool (LP)

Total liquidity
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VZT/USDT pool
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VZT/ETH pool
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24h LP change
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Holder distribution

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Allocation details

Detailed allocation and release schedule

⛏️

DePIN hashrate allocation (80%)

800 million VZT
Hashrate per miner 5 VZT / day
Daily cap 50,000 VZT
Release period 10-year linear release
Distribution method By node contribution
🏛️

VeZoom Foundation (10%)

100 million VZT
Ecosystem development 30% (30 million)
Marketing 40% (40 million)
R&D 30% (30 million)
Release period 5-year linear release
👥

Organizational reserve (10%)

100 million VZT
Team incentives 50% (50 million)
Partners 30% (30 million)
Strategic reserve 20% (20 million)
Release period 4-year linear release

Contribution assessment rules

Transparent, fair contribution assessment to ensure fair reward distribution

📊

Bandwidth contribution

Upload bandwidth Actual upload traffic (GB)
Download bandwidth Actual download traffic (GB)
Network quality Latency, packet loss, stability
Uptime Node online time (hours)
💾

Storage contribution

Storage space Storage capacity provided (GB)
Storage duration Data retention (days)
Data integrity Availability and redundancy
Access speed Data read response time
🔄

Relay contribution

Forwarded traffic Relayed data volume (GB)
Connections Successful connections
NAT traversal Successful traversals
Connection quality Stability and latency
🌍

Edge computing

Compute resources CPU and memory usage
Tasks processed Completed tasks
Response time Average task response time
Geography Geographic advantage of the node

Peer verification

Nodes verify each other's contributions for accuracy

  • Node A verifies Node B's bandwidth
  • Node B verifies Node A's storage
  • Verification results on-chain
  • Malicious verification is penalized

Random audits

Random audits prevent cheating

  • Audit 10% of nodes daily
  • Audits cover bandwidth, storage, relay, etc.
  • Compare audit results with reported data
  • >20% variance triggers detailed review

Reputation system

Reputation score from historical behavior

  • Initial score: 100
  • Verification passed: +1 point
  • Verification failed: −5 points
  • Score < 60: lower reward multiplier
  • Score < 30: suspend rewards

Penalties

Penalties for malicious or cheating behavior

  • Minor: warning, lower score
  • Moderate violation: rewards suspended for 7 days
  • Severe: partial stake slashed
  • Critical: full stake slashed, node removed

Reward schedule

Daily 00:00 UTC

Contribution data collection

Collect previous day's contribution data

Daily 02:00 UTC

Data validation

Peer verification and random audits

Daily 04:00 UTC

Contribution scoring

Compute each node's score and rewards

Daily 06:00 UTC

On-chain record

Batch submit contributions to the Zelay Network Chain

Daily 08:00 UTC

Reward payout

Zelay on-chain rules distribute rewards to node wallets automatically

Hybrid off-chain / on-chain architecture

Off-chain performance with on-chain transparency

Off-chain system

High-performance compute
📊

Contribution data collection

Client collects bandwidth, storage, relay data every 5 minutes

Validation service

Peer verification, audits, reputation scoring

💾

Database storage

Contribution data in decentralized DB for fast queries

🧮

Contribution scoring

Complex formulas for real-time and historical stats

Merkle root batching
Daily batch submission to save gas

On-chain system

Transparent and auditable
⛓️

Zelay on-chain modules

Registration, staking, contributions, rewards

🔐

Data attestation

Merkle root on-chain for tamper evidence

💰

Reward payout

Zelay on-chain rules compute and distribute rewards automatically, transparent and auditable

📜

On-chain record

Critical operations recorded permanently on-chain

Performance

Off-chain compute avoids high gas and improves throughput

🔒

Security

Merkle roots enable verification anytime

💰

Cost efficiency

Batching reduces gas per operation

👁️

Transparency

Rewards and key actions are auditable on-chain

Data flow

1

Contribution collection

Client collects bandwidth, storage, relay data

Off-chain
2

Validation and calculation

Peer verification, audits, score calculation

Off-chain
3

Build Merkle root

Build Merkle tree from contributions

Off-chain
4

Batch on-chain attestation

Daily 06:00 UTC batch submit Merkle Root to the Zelay Network Chain

On-chain
5

Reward calculation and payout

Zelay on-chain rules calculate rewards by contribution and send to node wallets automatically

On-chain

Off-chain architecture

Data collection layer

  • Node client SDK
  • Real-time sampling every 5 minutes
  • Standardized data format
  • Local caching

Validation layer

  • Peer verification
  • Random audits (10% of nodes)
  • Reputation scoring
  • Anomaly detection and alerts

Compute layer

  • Contribution score formula
  • Live rankings
  • Historical queries
  • Analytics and reports

Storage layer

  • Zelay Network distributed storage
  • Sharding and redundancy
  • Fast indexing and queries
  • Backup strategy

On-chain architecture

Node registry contract

  • Register and unregister
  • Stake management
  • Node type management
  • Reputation updates

Contribution tracker contract

  • Merkle root storage
  • Contribution verification
  • Contribution queries
  • History queries

Reward distributor contract

  • Reward logic
  • Batch payouts
  • Reward pool management
  • Reward history

Token contract

  • Token issuance and management
  • Transfer and approve
  • Mint and burn
  • Balance queries

Security mechanisms

Data integrity

Merkle tree ensures integrity; any change alters the root

Verifiability

Anyone can verify inclusion with Merkle proofs

Tamper resistance

On-chain roots cannot be altered

Audit transparency

Third-party auditability

Staking requirements

Minimum stake by node type

🔄

Relay node

Minimum stake

Reward multiplier: 1.5×

NAT traversal and low-latency relay

🌍

Edge node

Minimum stake

Reward multiplier: 2.0×

Deployed near users for edge service

💾

Storage node

Minimum stake

Reward multiplier: 2.5×

High-capacity storage and backup

Super node

Minimum stake

Reward multiplier: 3.0×

Full-featured node with highest performance