What is a Hemi full node?
A Hemi full node syncs an execution client (and, where applicable, the L1/L2 stack behind it), verifies blocks, and serves standard Ethereum JSON-RPC: eth_blockNumber, eth_getBalance, eth_call, eth_getLogs, and eth_sendRawTransaction.
RpcNode offers managed Hemi Full Node RPC over HTTPS so applications can read ETH balances, simulate contracts, and submit signed transactions without self-hosting Erigon/Geth and companion services.
Why Hemi full nodes matter
Every wallet balance, payment confirmation, and contract read ultimately depends on nodes that agree on Hemi state. Public endpoints rate-limit and flake; your product’s reliability tracks the quality of the full nodes behind your RPC URL.
Hemi in the RpcNode catalog: Hemi.
- Native asset: ETH
- Environments: Mainnet, Testnet
- API family: EVM JSON-RPC
- Listed in the RpcNode network catalog
When to run your own Hemi node
Self-hosting a Hemi full node makes sense when you need custom indexing, ultra-low latency next to your app, or compliance constraints that forbid third-party RPC. For most product teams, managed Full Node RPC is faster to ship and cheaper to operate.
- Building wallets, payments, or address watchers that need reliable Hemi reads and writes
- Avoiding multi-terabyte disks, peer tuning, and 24/7 pager duty for chain upgrades
- Preferring HTTPS JSON-RPC with allowlists, keys, and usage metering
- Evaluating Hemi before dedicating hardware — start on RpcNode, or self-host with Toolkit in a few clicks
Hemi full node server requirements
Hemi full node server requirements usually look like other EVM L2 / rollup stacks: an execution client plus a derivation/sequencer companion, often with an L1 RPC dependency.
Publish hardware requirements as full (non-archive) unless you truly need historical state. Exact minimum specs vary by client — always confirm against the network’s official node docs before buying disks.
Looking up "Hemi server requirements", "Hemi hardware requirements", or "Hemi minimum specs"? Use the checklist below as the planning baseline for a self-hosted full node.
Hemi is in the RpcNode catalog. Until you need custom indexing or on-prem constraints, prefer managed Full Node RPC when available rather than buying this class of server “just in case”.
- CPU: 4–8+ cores depending on throughput
- RAM: 16–32 GB+ typical for full RPC
- Disk: NVMe; start at 500 GB–1 TB and watch growth (archive is multi-TB)
- Bandwidth: 1 Gbps recommended
- OS: Ubuntu 22.04/24.04 LTS
- Full vs archive: full serves tip RPC; archive keeps deep historical state
Self-host Hemi with RpcNode Toolkit
RpcNode Toolkit is a free self-hosted panel: install a Linux host agent, add the server, then add a node in a few clicks (network → environment → server). The node page walks install, sync, logs, and RPC.
Hemi may already be in the Add node catalog, or you can use managed Full Node RPC on RpcNode while you wait. Hardware requirements in this guide still apply — Toolkit automates the install, not the disks.
- Install the host agent on Linux, then Add server in the panel.
- Add node: pick the network, environment, and server.
- Open the node page for ports, install, sync, and the fullnode RPC endpoint.
How to run a Hemi full node
How to run a Hemi full node (EVM family): install the chain’s supported execution client (Geth/Reth/Erigon or a fork / L2 stack), configure a non-archive full profile, and expose JSON-RPC only through an allowlisted proxy.
Many Hemi-class networks also need an L1 RPC for derivation — budget that dependency before go-live.
Hemi is in the RpcNode catalog. Until you need custom indexing or on-prem constraints, prefer managed Full Node RPC when available rather than buying this class of server “just in case”.
- Provision Ubuntu 24.04 LTS (or the OS your client documents) on bare metal or a dedicated VM. Create a system user such as `nodeop` — do not run the node as root.
- Attach NVMe sized for full (non-archive) growth. Mount it away from the root filesystem and give ownership to the operator user.
- Apply OS hygiene: unattended-upgrades or a patch cadence, fail2ban/SSH keys, and raise file-descriptor limits if the client docs require it.
- Install the official or widely supported Hemi client(s) from upstream releases — pin versions and read release notes before upgrades.
- Configure full-node sync/pruning defaults suitable for tip RPC. Do not enable archive unless you need deep historical state.
- Bind HTTP JSON-RPC to localhost (commonly `8545`); keep Engine/auth APIs local.
- Create systemd services with automatic restart and log rotation.
- Open only the documented P2P ports publicly; whitelist RPC.
- Verify with `eth_syncing` / `eth_blockNumber` (or the chain’s equivalent) against a public explorer tip.
- Target: full node RPC, not validator keys (unless you intentionally stake)
- Confirm exact flags in official docs — chain forks differ
Using Hemi RPC without self-hosting
RpcNode exposes managed EVM JSON-RPC for Hemi. Create an endpoint in the cabinet, restrict IPs if needed, and call the same methods your stack already uses.
Catalog environments for Hemi: Mainnet, Testnet. Create an endpoint in the RpcNode cabinet for the environment you need, or use this guide to plan a self-hosted deployment.
Typical methods teams start with: eth_blockNumber, eth_getBalance, eth_call, eth_getLogs, eth_sendRawTransaction.
Self-hosting vs managed Full Node RPC
Self-hosting gives maximum control and can reduce per-request cost at huge scale, but you own upgrades, peers, disk growth, and incident response. RpcNode Toolkit cuts the install to a few clicks (agent → Add server → Add node → node page) while you still run the hardware.
Managed RpcNode Full Node RPC trades that ops burden for a stable HTTPS endpoint, usage visibility, and the same method surface your SDK already speaks. If you are comparing providers, also see RpcNode’s comparison page.
Hemi integration checklist
Use this short checklist when wiring Hemi into production.
- Pick the correct environment (Mainnet, Testnet) — never mix testnet keys with mainnet funds
- Store RPC URLs and keys in secrets management; rotate on staff changes
- Add IP allowlisting for server-side backends
- Alert on tip lag / getHealth (or equivalent) failures
- Load-test eth_getLogs / getProgramAccounts-style heavy calls before launch
- Decide full vs archive needs early — RpcNode is Full Node oriented
- Confirm Hemi server requirements (CPU/RAM/disk) before self-hosting
- Or install with RpcNode Toolkit in a few clicks — free self-hosted panel
Hemi full node FAQ
Can I install a Hemi full node in a few clicks?
RpcNode Toolkit is a free self-hosted panel: add a server, add a node in a few clicks, then administer install and sync from the node page. Open rpcnode.dev/toolkit. If you only need HTTPS RPC, use managed Full Node RPC instead.
What is a Hemi full node?
A Hemi full node verifies and stores blockchain data for Hemi, then serves queries about blocks, accounts, and transactions. RpcNode runs Full Node RPC so apps can use that data over HTTPS.
Is RpcNode Hemi RPC available now?
Hemi is listed in the RpcNode network catalog. Check the product for current managed RPC availability for your account, or use this guide to plan self-hosting meanwhile.
Full node vs archive node for Hemi?
A full node serves recent state and standard JSON-RPC. An archive node keeps historical state so old eth_call / eth_getLogs ranges remain answerable. RpcNode positions as Full Node RPC, not archive.
Can I accept ETH payments on Hemi?
RpcNode also ships crypto payment infrastructure and address watching on supported networks. When Hemi RPC is active for your account, you can combine payments with the same Full Node-backed data plane.
What are the Hemi full node server requirements?
See the “Hemi full node server requirements” section for CPU, RAM, disk, bandwidth, and OS minimum specs. If you only need HTTPS RPC, managed RpcNode Full Node endpoints avoid buying that hardware.