Skip to content
Request a Demo

The Architecture Behind the Tokenised Economy

SUPERBLOCK is built from a library of plug-and-play modules, verified by AI for compatibility and security, running on a five-layer architecture from legal structure to application. The same modules that power our products will let any institution build their own.

A tokenised asset is only real when the legal claim, the chain, the token standard, the data, and the interface all hold together. That is what this architecture is for.

  • 5 layers
  • 36 modules
  • 11 groups
  • 6 networks
  • 11 contract standards
  • ISO 27001

One Stack, Five Layers

The architecture is best understood as five layers, each building on the one below.

  1. 01

    Legal & Structural

    SPVs, fund structures, and jurisdiction-aware compliance wrappers that connect an on-chain token to an enforceable, legally recognised claim on the off-chain asset.

  2. 02

    Blockchain

    Chain-agnostic settlement substrate: EVM networks (Ethereum, Polygon, Base), the XRP Ledger, and permissioned enterprise networks such as Hyperledger and Canton.

  3. 03

    Smart Contracts & Standards

    The right contract standard for each job: ERC-3643 security tokens, ERC-4337 smart accounts with ERC-7579 modules, ERC-5192 soulbound credentials, and ERC-1155 and ERC-20 tokens. Rules are enforced by the contracts themselves, and contracts are independently audited.

  4. 04

    Data & Verification

    Data oracles and price feeds, real-time Proof of Reserve, and AI analytics, so on-chain representations can be checked against off-chain reality.

  5. 05

    Application

    The products, portals, and interfaces through which verified participants actually interact with tokenised assets.

1/5 · Legal. The asset is placed in an SPV or fund structure, so the token will map to an enforceable legal claim.

The Right Standard for Each Product

There is no single token standard that fits every product. Security tokens, self-custody money accounts, identity credentials and fractional assets each need contracts built for that job, so each SUPERBLOCK product uses the standards that fit.

Standards for products in development show the planned design and may change before launch.

The AI Layer

AI runs across the whole stack, from assembling platforms to briefing governance. It checks, tests, screens, routes and advises. It is designed never to hold a key or sign a transaction: contracts and people make the decisions.

  • Verifies composition

    Checks that selected modules are compatible and connect correctly before a platform deploys, and manages upgrades so every dependent product stays on the right version.

    Module Composer
  • Stress-tests and hardens

    Probes components under load and adverse conditions and works to keep the platform free of vulnerabilities, alongside independent audits.

    Security & Audit Layer
  • Screens compliance and risk

    Screens payees and activity for sanctions and risk, and re-screens verified identities as lists and rules change.

    Address Intelligence
  • Routes payments

    Compares networks, stablecoins, fees, FX and liquidity to propose the best allowed route for each payment.

    AI Liquidity Routing
  • Surfaces insight

    Monitors assets, markets and platform activity to flag risks and valuation changes early.

    AI Analytics & Insights
  • Advises governance

    Summarises proposals, models their likely effects and checks alignment, so token holders vote with better information.

    AI-Powered DAO Governance

1/5 · Compose. Before a platform deploys, the AI checks that the selected modules are compatible and connect correctly.

No keys, no signatures

The AI proposes. Smart accounts, policies and signers approve.

People and contracts decide

Votes, approvals and execution stay with humans and code.

Fails closed

If a check cannot run, value does not move.

Explained, not opaque

Results come with a plain-language reason that people can check.

The Module Library

Each product is composed from these interoperable, AI-verified modules, including the modules planned for the products in development.

How modules compose

Privacy and Compliance, Together

Zero-knowledge proofs are a cross-cutting cryptographic primitive in the architecture, using zk-SNARK and zk-STARK proof systems. They let one party prove a statement is true without revealing anything beyond its truth, which reconciles two needs institutions usually have to trade off: rigorous compliance and genuine confidentiality.

  • Automated compliance & KYC/AML

    Verify that an investor is eligible or has passed AML checks without storing unencrypted passports or tax documents on-chain.

  • Proof of ownership & reserves

    Prove a holding without revealing total balance, transaction history, or identity.

  • Privacy-preserving transactions

    Validate transfers while keeping addresses and amounts confidential, enabling two institutions to settle without revealing their holdings.

  • Institutional security

    Demonstrate that tokenised funds meet regulatory parameters without exposing proprietary investor lists to the market.

1/3 · Private data. An investor's passport and tax documents stay with the investor. Nothing personal is written on-chain.

Verifiable Backing, Institutional Custody

Two controls institutions ask about first: can you prove the asset is really there, and who can move it?

1/3 · Reserves. The assets backing a token are held off-chain, with a custodian or qualified custodian.

Proof of Reserve

Continuous, cryptographic verification that tokenised or wrapped assets are backed. Minting can be gated on sufficient verified reserves, so a token cannot be issued without demonstrable backing.

1/3 · Key shares. A signing key is generated as separate shares held by independent parties. The whole key never exists anywhere.

MPC custody

Multi-party computation for key management, the institutional standard in which no single party ever holds a complete signing key. Qualified custodians are integrated where a regulatory regime requires it.

Built to Run Across the Networks Institutions Use

SUPERBLOCK is EVM-native (Ethereum, Polygon, Base) and adaptable to XRP Ledger and permissioned networks such as Hyperledger and Canton. We connect the institutional and public lanes of the market.

Public / DeFi
EthereumPolygonBase
Purpose-built RWA
XRP Ledger
Institutional / permissioned
HyperledgerCanton Network

1/4 · Issue. An asset is issued on a permissioned network such as Canton, with its identity and compliance rules attached.

Standards and Security

Security is treated as a foundation present at every layer, not a feature added at the end: independently audited smart contracts, continuously verified and hardened by the AI layer, real-time Proof of Reserve, and zero-knowledge privacy across identity and settlement, all on ISO 27001 certified information-security management.

ISO 27001 certified

Standards per product

ERC-3643, ERC-4337, ERC-7579, ERC-5192, ERC-1155 and ERC-20, each used where it fits the job.

Audited contracts

Smart contracts are independently audited before they are deployed.

Proof of Reserve

On-chain supply is continuously checked against verified off-chain backing.

Zero-knowledge privacy

Identity and settlement are proven without exposing the data behind them.

AI-hardened security

The AI layer stress-tests components continuously, not once a year.

Build on Institutional-Grade Infrastructure