The brighter first cue marks a newly observed round.
The softer second cue follows after that round's measured finality interval.
When the two sounds nearly collapse into one, your ear is hearing just how small the finality delay is.
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See — and hear — Supernova finality.
mvxPulse turns live MultiversX Supernova telemetry into a visual and audible network pulse.
The sound is part of the experience: a brighter first tone marks a newly observed round. A softer second tone follows after that round's measured finality interval.
When Supernova is finalizing in roughly 80–100 ms, those two sounds nearly collapse into one. Your ear is hearing how little time separates the events.
Your observation window
The headline AVG and rolling statistics are calculated from the finality rounds you observe in mvxPulse.
Stored observations never leave this browser. They are not an authoritative historical network dataset.
Why I built this
I wanted a way to make Supernova's speed feel tangible, not just describe it with numbers.
This visualization takes live public MultiversX Devnet telemetry and turns it into something you can watch — and, with sound enabled, something you can almost physically sense. The first tone marks the round; the softer second tone arrives after the measured finality interval.
The sphere itself is interpretive rather than geographic, but the telemetry underneath it is real wherever the interface says it is live.
This is an independent experiment made to help people explore, understand and share what Supernova is doing as it develops.
About this visualization
What is real: live MultiversX Devnet node inventory when reachable, shard membership, round / epoch context, the public heartbeat-derived layer of eligible validators, and the block viewport fed from public shard-block queries when available.
What is interpretive: the sphere layout, spacing, arcs, and pulse choreography. This is a protocol visualization, not a physical map of where machines live on Earth.
Why multiple regions pulse: MultiversX execution shards and the metachain all operate in parallel. This visualization shows that parallelism continuously instead of implying that only one shard is alive.
What is still approximate: without running one observer per shard, the per-shard pulse choreography outside the directly queried telemetry shard is an architecture-grounded representation rather than a direct stream from four separate observer feeds.
Hear the speed: when sound is enabled, the first cue marks a newly observed round. A softer second cue is delayed by that round's measured finality interval. The audible spacing is derived from live telemetry; playback begins when the browser receives the sample, so it is a sonification of measured latency rather than a literal replay of the original network timestamps.
View controls: use the shard buttons to isolate a region. Your choice is saved locally and restored after refresh.