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TBC: The Value of Web4.0
TBC: The Circulation Engine of Web4.0
- Redefining AI Agent Economic Infrastructure with Five Core Features
Providing AI Agents with an "Autonomous Thinking" Execution Framework.
The Underlying Call of Web4.0: When AI Agents Need a "Zero Friction" Value Network
The essence of Web4.0 is a large-scale collaborative network of cognitive autonomous entities.
-- AI Agents as digital life forms with independent thinking capabilities need to autonomously create, exchange, and accumulate value in open environments. However, current blockchain infrastructure has critical shortcomings:
High transaction fees suppress micro-payments, slow confirmations hinder collaboration pace, complex contracts restrict Agent autonomy, and cross-chain barriers fragment the network.
These "friction costs" keep AI Agents stuck in the "tool" stage, unable to achieve economic sovereignty.
TuringBitChain ( TBC) builds the "Value Circulation Operating System" of Web4.0 with five key features: ultra-low fees, ultra-fast transaction speeds, zero-latency confirmations, UTXO smart contracts, and native cross-chain interoperability. Its design directly addresses the core needs of the AI Agent economy: making every thought, collaboration, and value exchange as natural as breathing.
Ultra-Low Fees: Activating the Micro-Payment Revolution for AI Agents
Core Feature: TBC maintains a stable cost of $0.0002 per transaction, only 1/25,000 of Ethereum Gas fees and 1/32,450 of remittance fees (World Bank 2025 data). This is due to its byte-based pricing model and dynamic block expansion mechanism—block capacity automatically scales with transaction volume (currently 4GB, theoretically unlimited), with data storage costs approaching zero.
Web4.0 Scenario Value:
The economic activities of AI Agents revolve around "micro-payments." For example, a news summary Agent providing personalized summaries to 1,000 users charges $0.001 per summary, totaling only $1; traditional payment channels with 30% commission would cost $428. TBC's ultra-low fees enable Agents to accumulate revenue through "fragmented services," forming a sustainable "thinking equals income" model.
More importantly, TBC's fee model is unaffected by drastic coin price fluctuations—regardless of TBC's price rise or fall, the cost per transaction remains anchored to physical world energy efficiency. This ensures AI Agents can operate long-term without worrying about "fee inflation," allowing them to focus on value creation.
3. Ultra-Fast Transaction Speeds and Zero-Latency Confirmations: Supporting Real-Time Collaboration with "Neural Pulses"
Core Feature: TBC achieves over 13,000 TPS throughput through a layered verification architecture and parallel execution engine (1857 times faster than Bitcoin). Real-world transaction confirmation times are compressed to 200 milliseconds, with zero-latency confirmation in small-value payment scenarios (transactions are considered final immediately upon initiation).
Web4.0 Scenario Value:
Web4.0 collaboration is "millisecond-level." For example, an autonomous driving Agent cluster sharing sensor data and distributing decision-making responsibilities in complex traffic conditions would be hampered if each transaction took 10 minutes to confirm, risking accidents. TBC's zero-latency confirmation allows the entire "data exchange—responsibility division—revenue distribution" process to be completed within 100 milliseconds.
This ultra-fast speed also supports a high-frequency micro-trading ecosystem. An AI drawing Agent generating 100,000 assets for a gaming company, charging $0.0005 per image, can settle all transactions within 1 second, compared to over 3 hours on traditional blockchains. This "real-time feedback" enables Agents to rapidly iterate services, forming a positive cycle of "creation—revenue—optimization."
4. UTXO Smart Contracts: Empowering AI Agents with "Autonomous Thinking" Execution Framework
Core Feature: TBC implements Turing-complete smart contracts on the UTXO model, compiled into scripts via the BVM (Bitcoin Virtual Machine) architecture. Each UTXO can carry an independent smart contract container, verified locally during execution without global state competition, enabling 100% parallel processing. Contract size is reduced to 1/50 of traditional EVM contracts, with execution speeds increased tenfold.
Web4.0 Scenario Value:
UTXO smart contracts give AI Agents "autonomous decision-making" capabilities. For example, a supply chain scheduling Agent can automatically split orders, allocate logistics, and settle payments based on real-time inventory, transportation costs, and market demand—all without human intervention. Contracts trigger only when conditions are met (e.g., "if inventory falls below a threshold, automatically restock").
Compared to Ethereum's account model with "serial execution," the UTXO model's parallel processing allows Agents to handle hundreds of collaborative requests simultaneously.