Web3 node map
Which IP addresses run blockchain infrastructure. We map the public peers of major decentralized networks and fold them into our IPv4 intelligence, so any IP page tells you whether that address participates in web3 — a neutral signal that never affects an IP’s reputation score.
Where the nodes are
How it works
Decentralized networks are public by design — every node gossips its peers so the network can find itself. We collect those peer lists from each project’s own feeds (and, where a project has no list, our own discovery crawler), normalize them to IP addresses, and store them as a lookup table plus a daily census so we can show change over time.
A web3 tag is a positive / neutral fact about an IP: it tells you the address runs participatory infrastructure. It is deliberately kept out of the reputation score — running a blockchain node is not abuse. Full provenance is on the data sources page.
Browse nodes by network
Decentralization report →Open any network to see every node it runs — each address linked to its full IP report, with hosting network, operator and country.
Data sources
Free, public peer feeds, refreshed daily. A transient fetch failure keeps the last good copy.
Reachable peers discovered by WorldIP's own Nebula crawler.
Peer list from the Arweave network (arweave.net/peers).
Monero remote-node list by ditatompel (xmr.ditatompel.com).
See it on an IP
Any IP that runs a node shows a web3 badge on its page, next to its reputation and exposure. Try a search, or open any IP page to see the full intelligence stack.
What is web3?
Web3 is a loose term for internet services built on decentralized, peer-to-peer infrastructure rather than a single company’s servers. Instead of one provider hosting an application and its data, the work is spread across many independent machines — called nodes — that each hold a copy of the network’s state and talk directly to one another.
The contrast is with the traditional client-server model, where your browser (the client) connects to a known server controlled by one operator. In a web3 network there is no central server to point at: any node can serve the data, and the network keeps working as nodes join and leave. Common examples include blockchains such as Bitcoin and Ethereum, and storage networks such as IPFS, Filecoin and Arweave.
Because these networks run on real machines with real public IP addresses, IP-level visibility matters: it’s how you see where a decentralized network physically lives, how concentrated it is across providers and countries, and whether a given address is taking part. That is exactly what this web3 node map shows.
What is a blockchain?
A blockchain is a distributed ledger — a shared, append-only record of transactions that is replicated across many computers at once. Records are grouped into blocks, each cryptographically linked to the one before it, so the history is tamper-evident: changing an old block would break every block that follows.
No single party holds the master copy. Instead, a network of nodes each maintains the full ledger and follows the same rules (a consensus protocol) to agree on which new blocks are valid. This is what makes a public, permissionless blockchain like Bitcoin or Ethereum decentralized: anyone can run a node, read the chain, and help verify it, without asking permission from a central authority.
Because the ledger is public and replicated, the machines maintaining it must be reachable by their peers — which is why blockchains are visible at the IP level at all.
What is a blockchain node?
A blockchain node is simply a machine running a network’s software and participating in it — storing some or all of the ledger and exchanging data with other nodes. Most public networks run on tens of thousands of nodes worldwide, though the exact count varies by network and changes constantly as machines come online and go offline.
Nodes come in several roles, depending on the network:
- Full nodes — download and independently verify the entire chain, enforcing every rule.
- Validator / consensus nodes — help produce and confirm new blocks (mining or staking).
- RPC / gateway nodes — expose an interface so wallets and apps can read the chain and submit transactions.
- Storage nodes — hold and serve data on networks like IPFS, Filecoin or Arweave.
- Relay / bootstrap nodes — help new peers find and connect to the rest of the network.
To do any of this, a node needs a reachable network address. Most have a public IP and openly advertise themselves so other peers can connect — a process called gossip. That public reachability is what lets a WorldIP.io IP page identify an address as a node in the first place.
What is a decentralized, peer-to-peer network?
A peer-to-peer (P2P) network has no central server: every participant is both a client and a server to the others. To function, peers must be able to find each other, so these networks build in their own discovery mechanisms — typically gossip (nodes share the addresses of peers they know) and distributed hash tables (DHTs) (a shared directory of who is reachable where).
A direct consequence is that node IP addresses are publicly observable by design. A node has to announce a reachable address for the network to work at all; if it stayed hidden, no peer could connect to it. So seeing a network’s nodes is not a security leak or a flaw — it is the network operating exactly as intended, and the same information any other participant can see.
WorldIP.io reads this already-public peer information, normalizes it to IP addresses, and indexes it — the same way it indexes public DNS and routing data elsewhere on the site.
Why does WorldIP map web3 nodes?
Whether an IP runs a blockchain or P2P node is a useful piece of network intelligence — it tells you something concrete about what an address does. We fold it into the same per-IP picture as geolocation, ASN, reverse DNS and routing, so it’s available wherever you look up an address.
It is treated as a neutral, informational signal — not a threat or reputation factor. Running a node is legitimate participatory infrastructure, so a web3 tag is deliberately kept out of an IP’s reputation score; it never raises or lowers an address’s trust score.
The data is useful for researchers studying decentralization, for node operators checking how their network is distributed, and for anyone interested in the geographic and ASN distribution of web3 infrastructure — how many nodes there are and where they are located. You can see it two ways: as the map and per-network stats on this page, and as a web3 badge on any individual IP page that runs a node. Full provenance is on the data sources page.
Web3 & blockchain — frequently asked questions
Frequently Asked Questions
¿Qué es web3?
Web3 es un término general para los servicios de internet construidos sobre una infraestructura descentralizada y peer-to-peer en lugar de los servidores de una sola empresa. El trabajo y los datos se distribuyen entre muchas máquinas independientes, llamadas nodos, que cada una mantiene el estado de la red y se comunican directamente entre sí. Blockchains como Bitcoin y Ethereum, y redes de almacenamiento como IPFS y Filecoin, son ejemplos comunes.
¿Qué es una blockchain?
Una blockchain es un libro mayor distribuido: un registro compartido, de solo añadir, que se replica en muchos ordenadores a la vez. Las transacciones se agrupan en bloques, cada uno criptográficamente vinculado al anterior, por lo que el historial es a prueba de manipulaciones. Ninguna parte individual posee la copia maestra; una red de nodos mantiene el libro mayor completo y sigue un conjunto común de reglas para acordar qué nuevos bloques son válidos.
¿Qué es un nodo de blockchain?
Un nodo de blockchain es una máquina que ejecuta el software de una red y participa en ella, almacenando parte o la totalidad del libro mayor e intercambiando datos con otros nodos. Los roles varían según la red e incluyen nodos completos que verifican toda la cadena, validadores que producen bloques, nodos RPC o de puerta de enlace que sirven aplicaciones, nodos de almacenamiento y nodos de retransmisión que ayudan a los pares a conectarse.
¿Las direcciones IP de los nodos de blockchain son públicas o privadas?
La mayoría son públicos por diseño. Un nodo debe anunciar una dirección accesible para que otros pares puedan conectarse a él, utilizando gossip y tablas hash distribuidas para encontrarse, por lo que su IP es abiertamente observable para cualquier participante. Esto es la red funcionando según lo previsto, no una fuga o una mala configuración. WorldIP.io solo lee esta información de pares ya pública.
¿Puedo ejecutar un nodo de blockchain?
Sí. Las redes públicas sin permisos como Bitcoin y Ethereum están abiertas a cualquiera, y ejecutar un nodo generalmente no requiere permiso de una autoridad central. Los requisitos varían según la red, desde un ordenador modesto siempre encendido para un nodo completo básico hasta un almacenamiento, ancho de banda o staking más sustancial para algunos roles de validador y almacenamiento.
¿Cuántos nodos de blockchain hay?
Varía según la red y cambia constantemente a medida que las máquinas se conectan y desconectan. Las grandes redes públicas suelen ser mantenidas por decenas de miles de nodos accesibles en todo el mundo, pero no hay un número fijo único. WorldIP.io muestra un recuento en vivo por red en el mapa de nodos web3, basado en los datos de pares públicos de cada red.
¿Dónde se encuentran los nodos de blockchain?
Los nodos se ejecutan en máquinas reales en centros de datos y hogares de todo el mundo, por lo que sus ubicaciones siguen la geografía del alojamiento de internet, concentrándose en regiones y proveedores de la nube o de alojamiento con conectividad barata y fiable. Debido a que cada nodo tiene una dirección IP pública, su país y red (ASN) se pueden buscar de la misma manera que cualquier otra IP, que es lo que visualiza el mapa web3.
¿Afecta la ejecución de un nodo de blockchain a mi reputación IP o puntuación de confianza?
No. Una etiqueta de nodo web3 es una señal neutral e informativa y no disminuye la reputación o la puntuación de confianza de una IP. Ejecutar un nodo es una infraestructura participativa legítima, no un abuso, por lo que la etiqueta se mantiene deliberadamente fuera del cálculo de reputación por completo; nunca aumenta ni disminuye la puntuación.
¿Qué redes web3 rastrea WorldIP.io?
WorldIP.io mapea nodos de varias redes descentralizadas importantes, incluyendo Bitcoin, Ethereum, Solana, Monero y Arweave, con otras añadidas con el tiempo. Las listas de nodos provienen de las propias fuentes de pares públicos de cada proyecto, complementadas por un rastreador de descubrimiento propio donde no existe una lista publicada. Las fuentes completas por red y la atribución se encuentran en la página de fuentes de datos.