Unirbh DA

High-performance data storage and verification network

EB+ capacity across a million-node mesh delivers low-latency, programmable data access for AI workloads — datasets, checkpoints, embeddings, and protocol payloads. ZK proofs on Ethereum, BSC, Base, and other EVM chains · 32–81 GB/s · honest-one fraud proofs.

Get started

Go SDK. Upload and verify. RS encoding across decentralized nodes.

Quick start

export CHAIN_TYPE=opbnb-testnet
go run upload.go --path=./file --sk=<secret_key>

Clone the SDK: github.com/unirbhio/unirbh-da-sdk

Why Unirbh DA

General-purpose DA layers optimize for chain blobs. Unirbh DA is the AI-native data plane — programmable I/O, sub-100ms latency, and continuous on-chain verification across a planned multi-EVM deployment (Ethereum, BSC, Base). Membase and other protocols build on this foundation; mainnet contracts under audit.

FeatureEthereumCelestiaEigenDAUnirbh DA
Throughput0.08 MB/s1.5–10 MB/s10 MB/s32–81 GB/s
Security modelHonest majorityHonest majorityHonest majorityHonest one
DeploymentEthereumCelestiaEthereumPlanned: Ethereum, BSC, Base (in audit)
Continuous on-chain proofNoNoYes

Use cases

AI training & inference

Checkpoints, datasets, and embedding stores — high-throughput blob access for training and serving.

Protocol data plane

Verifiable storage underneath Membase, AIP payloads, and agent runtimes. The layer protocols read from, not the memory API itself.

Social & gaming

UGC, game state, and media at EB+ scale with on-chain availability proofs.

Key features

Programmable data access

SDK-driven upload, verify, and retrieve. Low-latency I/O for training pipelines, inference caches, and protocol payloads.

32–81 GB/s throughput

Sub-100ms latency across a million-node mesh. Built for AI-scale concurrency, not ledger-sized blobs alone.

Honest-one fraud proofs

One honest validator suffices. Continuous ZK on-chain verification — no honest-majority assumption.

EB+ capacity, million-node scale

Exabyte storage without central bottlenecks. Horizontal scale for datasets, embeddings, and verifiable protocol state.

Architecture

RS encoding → Encode Proof (storage) → Duality Proof (availability). ZK on-chain verification with optimistic fraud proofs. Unirbh DA is the verifiable data plane; Membase is the memory protocol built on top. AIP agents read and write through both layers.

Supported networks

Testnets live. Mainnet (Ethereum, BSC, Base) — ZK verification contracts under audit.