Application hosting

Hosting Open WebUI

Open WebUI is a self-hosted interface for working with language models through connected inference backends. Its official setup paths include Docker and Kubernetes, with persistent application data and a secret key that must survive container replacement. The project does not publish a universal CPU or memory minimum.

Min vCPU
Depends on workload
Min memory
Depends on workload
Min storage
Depends on workload

Must have

Hard prerequisites

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.

Recommended

Documented guidance

No further general recommendations are published for this version.

Capacity depends on your workload

Open WebUI does not publish a general CPU, RAM, or disk minimum. Requirements depend on its bundled components, user count, retained data, and whether inference runs on the same machine. GPU capacity is not required when the inference backend is hosted separately.

We only compare what providers publish. A RAM figure alone can't confirm compatibility or production capacity.

Deploy with

Supported paths

  • Docker container with a persistent volume
  • Docker Compose
  • Kubernetes using the project Helm chart

The host must provide

Runtime

Container runtime
Docker for the quick-start container path; Kubernetes for the Helm deployment path
Inference backend
Connect a supported remote or local model service; running inference locally has separate hardware requirements
Persistent secret
Set and retain WEBUI_SECRET_KEY across container recreation

Storage

Persistent data

Persist the application data directory at /app/backend/data. It holds application data such as users, settings, and chats. Size storage for retained conversations and any model or embedding assets stored with the chosen setup; the installation guide does not specify a universal disk size.

Step by step

Plan an Open WebUI deployment

  1. Choose where inference runs

    Decide whether models will run on this host or on a separate service. The WebUI container itself is an interface; local inference adds its own CPU, memory, and possibly GPU requirements.

    Official instructions
  2. Keep data and the signing key

    Mount persistent storage for /app/backend/data and set a strong WEBUI_SECRET_KEY that remains the same when updating or recreating the container.

    Official instructions
  3. Prepare for shared use

    Before exposing the service, configure authentication, persistent storage, backups, and monitoring. Use the project deployment guidance for a Kubernetes installation.

    Official instructions

Security

Before you go public

  • Do not expose an unauthenticated instance to the public internet.
  • Store WEBUI_SECRET_KEY in server-side secrets and keep it stable across deployments.
  • Back up the persistent data volume and restrict access to administrative accounts.

Cost

Beyond the server price

  • Open WebUI software does not include the compute cost of a separately hosted inference backend.
  • Budget for persistent storage, backups, and the host. A Kubernetes multi-replica deployment can require additional shared services described by the project documentation.

Matching plans

Plans with published evidence

Akamai Linode

Akamai G8 Dedicated 16x4

4vCPU
16 GBRAM
160 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 16x8

8vCPU
16 GBRAM
160 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 32x16

16vCPU
32 GBRAM
320 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 32x8

8vCPU
32 GBRAM
320 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 4x2

2vCPU
4 GBRAM
40 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 64x16

16vCPU
64 GBRAM
640 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 64x32

32vCPU
64 GBRAM
640 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 8x2

2vCPU
8 GBRAM
80 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Akamai G8 Dedicated 8x4

4vCPU
8 GBRAM
80 GBStorage
—Transfer
  • Dedicated CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Linode 128 GB (Shared CPU)

24vCPU
128 GBRAM
2,560 GBStorage
20 TBTransfer
  • Shared CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Linode 16 GB (Shared CPU)

6vCPU
16 GBRAM
320 GBStorage
8 TBTransfer
  • Shared CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.
Akamai Linode

Linode 192 GB (Shared CPU)

32vCPU
192 GBRAM
3,840 GBStorage
20 TBTransfer
  • Shared CPU
Compatibility unclear from published plan data

Meeting documented runtime prerequisites does not prove production capacity. Traffic, workloads, software configuration, and shared host limits are not measured here.

  • For the documented container path, run Docker; the quick-start supports Linux and macOS on x86_64 or ARM64, plus Windows through Docker Desktop.This prerequisite has no comparable published plan field.

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