Meet the Grape network

Built to grow.
Together.

A new approach to distributed infrastructure. Parallel by nature. Connected by design.

Capacity through participation

More nodes.
More potential.

Grape is designed for up to 2,000 TPS of network capacity per user node. Move the slider to explore the relationship between participation and potential.

A scalable foundation for high-volume applications, from digital economies to intelligent connected services.

Participation × possibilityIllustrative model
100,000 TPS
Modeled capacity at up to 2,000 TPS per user node
1 node500 nodes

A simple node × capacity illustration, not a benchmark or live network measurement. Real-world scaling includes coordination and network constraints.

The VINE architecture

An entirely different
way to connect.

Transactions form a graph of connected sites. Alongside it, commits coordinate account balances and smart-contract state.

01 / PARALLELISM

Many paths forward.

Network participants can process and include sites in parallel, instead of making every transaction wait for one sequential path.

02 / CONSISTENCY

A shared view.

Commit transactions synchronize local ledger views and provide coordinated state for accounts and contracts.

03 / PARTICIPATION

Room to grow.

The architecture connects growing demand with contributed network resources, subject to real-world hardware and coordination limits.

EVM meets DAG

Build on what
you already know.

Grape brings EVM compatibility to DAG-based infrastructure, connecting the Ethereum development model with a network built for parallel activity.

FAMILIAR DEVELOPMENT MODEL
SoliditySmart contractsEVM tooling
Grape / VINEDAG-based network
Parallel transactionsCoordinated state
The people behind the network

Different roles.
A common foundation.

Light clients

Create and sign transactions. Connect to the ledger without taking on the full work of storing and verifying the graph.

Full nodes

Verify transactions, assemble sites, select vertices and share updates with peers. Maintain a local view of ledger integrity.

Coordination roles

Support the commit and state-coordination mechanisms described in VINE. Operational participation rules belong to the network specification.

Roles are summarized from the VINE technical paper. Current hardware requirements, validator enrollment and operator instructions require the published network configuration.

Beyond transactions

A network
of resources.

Grape’s architecture also explores distributed computing and storage: connecting contributed resources with applications, digital assets and intelligence.

01

Distributed storage

DART’s design segments and encrypts data across user nodes.

02

Contributed compute

PoAI describes a model linking contributed resources with AI participation.

These are architecture concepts from the Grape presentation; deployment availability is separate from the design.

daxly / workspace
Build my idea. Then help me run it.
✳From the first line of code
to everything that comes next.
Plan, create and developTest, refine and publishKeep working around the clock
Autonomous by design

Build for a world
that keeps moving.

Explore Grape