post-quantum layer-1 · NIST PQC ready

the chain that
outlives the quantum.

Lattice is a settlement layer built on NIST post-quantum cryptography. a layer-1 that stays secure after the first quantum computer ships.

2,400transactions / sec
2.0sfinality
1,024validators
12.8Mblocks sealed
lattice · consensuslive
epoch482
block height12,847,302
signatureML-DSA-87 ✓
kexML-KEM-1024
#12,847,3021,204 txs
#12,847,301987 txs
#12,847,3001,512 txs
#12,847,302 sealed · ML-DSA-87 ✓finality 2.0s1,024 validators onlinezk-STARK proving liveML-KEM-1024 handshake · 14mszero quantum exploits since genesisNIST FIPS 203/204/205stake $LAT · earn 8.2% APY#12,847,302 sealed · ML-DSA-87 ✓finality 2.0s1,024 validators onlinezk-STARK proving liveML-KEM-1024 handshake · 14mszero quantum exploits since genesisNIST FIPS 203/204/205stake $LAT · earn 8.2% APY

the lattice, live

every block is sealed with a post-quantum signature, verified on-chain, forever.

blockvalidatortxspq-signatureage
#12,847,302val-7f2a1,204ML-DSA-87 ✓2s
#12,847,301val-c41e987ML-DSA-87 ✓4s
#12,847,300val-9b0d1,512ML-DSA-87 ✓6s
#12,847,299val-3e77876ML-DSA-87 ✓8s
#12,847,298val-a2c11,033ML-DSA-87 ✓10s
— view every block, proof and signature in the explorer —open the explorer

post-quantum by default

a classical chain trusts elliptic curves. a quantum computer breaks those with Shor's algorithm. lattice doesn't use them.

NIST FIPS 203

ML-KEM-1024

key encapsulation

lattice-based key exchange. the basis of every encrypted handshake on ${esc(SITE.name)} — no known quantum shortcut, ever.

NIST FIPS 204

ML-DSA-87

digital signatures

every transaction and block is signed with a lattice signature that no quantum machine can forge.

NIST FIPS 205

SLH-DSA-128s

hash-based fallback

stateless hash-based signatures for the most sensitive keys. the conservative second layer.

the quantum clock is already ticking.

harvest-now-decrypt-later means an attacker can record encrypted traffic today and crack it once a quantum machine exists. Lattice was designed so that, when it does, nothing you signed or sent needs to change.

the security model

a lattice has no
quantum shortcut.

your keys live on a high-dimensional lattice whose shortest-vector problem still takes a classical computer longer than the age of the universe — and quantum helps no more than it helps factoring.

see the math

the stack

one chain, post-quantum from the root of trust down.

consensusproof-of-stake2.0s finality
signaturesML-DSA-87every block
keysML-KEM-1024handshakes
proofszk-STARKprivate settle
uptime99.99%since genesis
latencysub-secondglobal

move to a chain that stays secure

three steps. your contracts, your keys, your finality — upgraded in an afternoon.

01

migrate

move your assets. an EVM-compatible runtime means your contracts just work.

02

sign

every transaction signs with ${esc(SITE.sig)}. no quantum forger, ever.

03

settle

2.0s finality, post-quantum verified. the block closes and the proof is permanent.

from the desk of

mara voss

co-founder · Lattice Labs

every layer-1 on earth is one headline away from a five-alarm migration. "quantum computer breaks RSA" isn't science fiction anymore — it's a budget line in three countries' defense programs.

we started Lattice because the alternative was waiting for that headline and then racing to patch a live network. harvest-now-decrypt-later means the attack is happening today, quietly, on traffic that will matter in ten years.

so we built the chain we wanted to send our own money through. lattice-based, from the signature on the genesis block to the key in your wallet.

— mara voss · 19 september 2026

the roadmap

where the settlement layer is going.

now

genesis + PQ consensus

the chain is live. every block signed with ${esc(SITE.sig)}.

q1 2027

zk-STARK settlement

private, verifiable settlement without revealing amounts.

q2 2027

post-quantum bridge

move assets from classical chains without re-exposing them.

q3 2027

hardware roots of trust

signing keys sealed in lattice-friendly secure enclaves.