Neurac machine
protocol

Neurac network interface · connect, build, settle, expand

$NEURAC official contract
ca explorer


    
01Connect

Enter the Neurac network through a fast, low-friction machine interface.

02Build

Compose secure applications and contracts for onchain users.

03Settle

Move value with a clear, verifiable network record at every step.

04Expand

Scale from the first interaction to the broader Neurac ecosystem.

Live from Neurac
Livenetwork
activity
settled
builders

Neurac network flow

Recent activity

All activity

Network activity is presented as a focused interface: clear status, direct records, and a consistent reading path across the Neurac Machine Protocol experience.

ActivityAssetTypeSettledAccountReferenceStatus
reading Neurac Machine Protocol…

Live on Neurac

All networks

A live blue-line view of the Neurac ecosystem, designed for calm navigation through assets, activity, and the protocol layer.

NetworkAssetFlowVolumeAccountStatus
Neiro NEIROUSDC68%$29.8K0x59D0…B6AB43m ago
TRIBUTARY TRIBUSDC68%$29.4K0x73af…7Cf93m ago
musebook MUSEBOOKUSDC62%$25.6K0xCF1D…333B1h ago
Relay Rewards RELAYUSDC28%$11.9K0x4e7a…Ec922h ago
Gigaverse Online GIGAVERSEUSDC25%$10.4K0x0408…966C3m ago
Synesis SYNSUSDC15%$7.8K0x19Cd…4A514m ago

Neurac protocol core

NAND

Universal combinational logic. Every function in a machine is a tree of two-input NANDs, and every NAND costs one transistor. The compiler shares inverters and picks the smaller cover of each neuron's truth table.

LATCH

One tick of persistent state. Each output of a machine holds its last value in a LATCH, four transistors each. State is the only thing that costs more than logic.

Neural

Binary weights and activations. A neuron is popcount(xnor(x, w)) against a threshold, which is a threshold function, which is a truth table, which is NAND. The whole net is exact logic with no float anywhere.

CONNECT → BUILD → SETTLE → EXPAND blue network access · Neurac-native primitives · clear settlement · one machine surface

Foundry economics

Read the paper

Every interaction on the Argus curve pays a 1% fee. Argus keeps 30% at the protocol level. The remaining 70% accrues to the network creator fee recipient in the Argus fee escrow.

Curve fee
1% of every buy and sell, fixed by Argus
Creator tax
0 to 10%, set by the network at launch, on top of the curve fee
Launch fee
0.0005 USDC, paid to Argus
Material cost
1 unit per network operation, settled onchain
Supply
1 000 000 000 per network, sealed at launch, never reissued

Quickstart

Record layout
Browser, any wallet

Connect a wallet on Neurac Machine Protocol. Build, then settle. Two clicks, one signature.

machine.html → build → settle
bill = NAND + 4 × LATCH
The tapeout transaction

One transfer to the burn address. The record rides behind the two ABI words, where Solidity never looks.

to:    transistor token
data:  transfer(0x…dEaD, bill)
       ++ 4e545031            marker
       ++ keccak(netlist)     32 bytes
       ++ nand, latch         4 + 4
       ++ in, out, name
Machine address

Derived, never chosen. The same netlist by the same author on the same token is the same machine.

machine = keccak(
  token, netlistHash, author
)[12:]

Questions

What is an Argus asset here

A fungible network material issued through Argus. Each onchain operation has a clear, verifiable cost and is presented through the Neurac interface.

What does the fab actually compute

A binary neural network: weights and activations in {-1, +1}, so every neuron is a popcount of XNORs against a threshold. Training is seeded hill-climbing on the task's full truth table, in your browser.

Why is the tapeout a plain transfer

Because it has to work with any token and no permission. Solidity's ABI decoder reads the two words that transfer(address,uint256) declares and ignores everything after them.

What does it cost

Argus activity follows the selected network fee and the required onchain gas.

Which machine

Neurac Machine Protocol is presented through the Argus protocol layer and a blue network interface.