Glassnode Latency Monitor — Real-Time Crypto Trading Infrastructure Latency

Live network latency from probes worldwide to crypto trading infrastructure and blockchains (Solana, SUI, Hyperliquid, Arbitrum One, Robinhood Chain, Base, X Layer, Ink, OP Mainnet, ZKsync Era). Built for traders, HFT firms, market makers, and arbitrage operators choosing where to co-locate.

What we measure

Why infrastructure location matters

For trading firms racing to be first into a price move, physical distance to exchange matching engines and blockchain validators dominates total latency. A server in the wrong city can lose by tens to hundreds of milliseconds — enough to lose every arbitrage and MEV opportunity to better-located competitors. This site publishes the actual measured numbers, continuously, so operators can make data-driven hosting decisions instead of guessing.

Probe infrastructure

Probes deployed worldwide across Asia (Tokyo multi-AZ, Seoul, Hong Kong, Singapore), Europe (Amsterdam, Dublin, London, Frankfurt), the Americas (Ashburn, Ohio, Chicago, San Jose, São Paulo), and Oceania/Africa (Sydney, Johannesburg). Probes run on Fly.io and AWS bare-metal instances.

← Back to map

About ZKsync Era Latency

Real-time latency monitoring for ZKsync Era.

What is ZKsync Era Latency?

ZKsync Era is a zero-knowledge rollup built by Matter Labs — a different design from the OP Stack chains elsewhere on this site, proving its batches rather than relying on a challenge period. What matters here is the same: a single sequencer operated by Matter Labs decides ordering, and every transaction has to reach it to be included.

How To Read These Numbers

The sequencer endpoint sits behind a global load balancer, which accepts your connection close to wherever you are and carries the request onward. The round trip shown is the real journey to the sequencer and back, but connection-setup timings would only measure the distance to that load balancer, so they are not meaningful here and we do not show them.

Our measurements place the sequencer in North America: probes in Ohio reach it roughly three times faster than probes in Europe or Asia. That is the opposite of Ink and OP Mainnet, which both answer fastest from Europe — so the best place to host depends on which chain you are trading, not on rollups in general.

Why It Matters

ZKsync Era seals blocks every few seconds, and the interval varies with load. Fees compete for position inside a block, but arrival time decides which block a transaction makes at all — and once that block is built, a later transaction cannot buy its way into it. Paying for priority raises the price of speed rather than removing the need for it. That distance is what this map measures.

Methodology

Targetmainnet.era.zksync.io
MeasurementEach probe submits a fixed signed transaction via eth_sendRawTransaction.
MetricTime to first byte of the response over a warm connection — network round trip plus a few milliseconds of validation. p50 over 60-second windows.

Research Project Disclaimer

ZKsync Era Latency is a research project provided for informational and educational purposes only. The latency metrics displayed are measured from specific geographic probe locations using our distinct server environments. Actual latency may differ. Real-world network performance depends on numerous factors including ISP routing, local network congestion, and hardware. These numbers should be viewed as estimates and directional baselines. This project is not affiliated with or endorsed by ZKsync Era or Matter Labs.

Want this data programmatically?
A REST API for all latency data is in the works. Join the waitlist and we'll email you once at launch