Wymagania sprzętowe Hook0: pamięć RAM, procesor, pamięć masowa i dostarczanie webhooków

Zaplanuj sprzęt Hook0 pod kątem pamięci RAM, procesora CPU, PostgreSQL, przepustowości webhooków, współbieżności workerów oraz praktycznych zaleceń dotyczących wdrażania ZimaOS do celów deweloperskich.

Wymagania sprzętowe Hook0: pamięć RAM, procesor, pamięć masowa i dostarczanie webhooków

Hook0 hardware requirements at a glance

Size Hook0 from verified upstream requirements first, then add headroom for workload and persistent data.

RAM
No numerical official minimum published
CPU
No numerical official minimum published
Storage
PostgreSQL volume + Mailpit development data + logs/backups
Database
PostgreSQL
Ports
8001 frontend, 8081 API, 8025 Mailpit UI, 1025 SMTP, 5432 PostgreSQL in dev Compose
Best Zima starting point
ZimaBoard 2 832 for development/testing only

From official requirements to the right setup

Start with current upstream facts for Hook0, then size the real workload rather than copying generic container or app-store labels.

  1. Official requirements

  2. Confirm your needs

  3. Leave room to grow

  4. Run it on ZimaOS

Check every playback client

  • Webhook events/sec
  • Output-worker concurrency
  • PostgreSQL size
  • Retry/retention policy
  • Development vs production
  • Observability
  • Email verification
  • Backup retention

Official minimum requirements

Hook0's public Docker Compose guide does not publish numerical whole-host CPU/RAM requirements and explicitly labels the Compose topology development/testing only.

Hook0 Docker Compose self-hosting documentation

For production, the official guide says the Compose setup does not address scalability, resilience, high availability, observability, or 24/7 operations and directs users to Hook0 Cloud.

RequirementOfficial minimumWhat this supports
No numerical minimum publishedWebhook/worker throughput dependent.
No numerical minimum publishedMulti-service stack.
PostgreSQL 18Persistent postgres-data volume.
Postgres, Mailpit, API, frontend, output-workerCurrent local stack.
8001 / 8081Local testing endpoints.
Compose guide is development/testing onlyNot production-ready.
Not requiredNo GPU workload.

When to upgrade your hardware

Webhook throughput growth

Retention/database growth

Production requirement

Plan hardware growth with confidence

SSD PostgreSQL

Keep webhook state on SSD/NVMe.

SSD/NVMe

More RAM

Useful for higher concurrency in a lab/staging deployment.

ZimaBoard 2 1664

Stronger CPU

Useful for more worker concurrency.

ZimaCube 2 Pro

Production architecture

Add external DB, observability, HA, and resilient workers as required.

Dedicated infrastructure

Can it run on ZimaOS?

Do not label this topology production-ready

The vendor explicitly excludes scalability, resilience, HA, observability, and 24/7 concerns from this setup.

Open Hook0 production warning ↗

Zima hardware for Hook0

Hook0 can run in a modest development environment, but production webhook delivery is an architecture/reliability problem, not just a hardware-sizing problem.

Choose by workload

Development/testing

ZimaBoard 2 832 is a practical local-stack starting point.

Production webhook platform

Use a production-grade architecture instead of treating the dev Compose file as sufficient.

Zima recommendations here apply only to development/testing unless a separate production architecture is designed.

Zima hardware Best for Example workload Core configuration Recommended boundary Next step
ZimaBoard 2 832 Light self-hosted services and small databases Single-app or small multi-app deployments
CPU
Intel N150, 4 cores, up to 3.6 GHz
Memory
8 GB LPDDR5
Storage
32 GB eMMC plus 2x SATA 3.0 and PCIe 3.0 expansion
Network
Dual 2.5GbE
Acceleration
PCIe expansion; no discrete GPU
8 GB RAM can limit larger Java/database/collaboration stacks Get Now
ZimaBoard 2 1664 Memory-heavier services and larger small-team apps Moderate multi-container and database workloads
CPU
Intel N150, 4 cores, up to 3.6 GHz
Memory
16 GB LPDDR5
Storage
64 GB eMMC plus 2x SATA 3.0 and PCIe 3.0 expansion
Network
Dual 2.5GbE
Acceleration
PCIe expansion; no discrete GPU
CPU remains the 4-core N150, so heavier Java/indexing workloads can still be CPU-limited Get Now
ZimaCube 2 Pro CPU-heavy, database-heavy, and higher-concurrency services Jira, larger helpdesk/collaboration stacks, and heavier indexing
CPU
Intel Core i5-1235U, 10 cores / 12 threads
Memory
16 GB RAM
Storage
256 GB system storage, 6 HDD bays, up to 4 SSD slots
Network
10GbE + 2.5GbE
Acceleration
Higher CPU throughput plus PCIe/SSD expansion
16 GB RAM can still be low for large enterprise Jira deployments Get Now

What the Press Says

Highlights from trusted reviewers worldwide.

La Razón
“ZimaCube 2: Not just another NAS, tested with 25TB storage, local AI agents, 4K transcoding, and real homelab workflows.”
Read full review
GameRevolution
“The ZimaBoard 2 is a compact x86 server board that can be turned into a mini NAS, home server, media box, or self-hosting hub.”
Read full review
TechRadar Pro
“ZimaCube 2: A modern, high-performance NAS with plenty of room to grow—built for users who want more than basic storage.”
Read full review
FOX 8
“Coverage focused on ZimaCube 2's open hardware foundation, no monthly fee, and self-hosting flexibility.”
Read full review

Loved by the Community

Stories and reviews from people who build with Zima every day.

ZimaBlade single-board server
★★★★★

Zima Blade Little yet Powerful

Maybe I am not digital natives but I live with PCs since 12 years old in 1984 when IBM PC clone come to my home. Many years have passed and many operating system I've tried. For me Zima blade and CasaOS was a quantum leap for home PC enthusiast and server lab machine to make me stay curious and relevant for this era.

ZimaCube Pro personal cloud
★★★★★

Very good!!

I use ZimaCube Pro as 5th Proxmox cluster node. It runs several VMs and containers, including a VM with GPU passthrough to run a self-hosted LLM. A specific LXC container runs a Samba server for NAS capabilities using four of six RAID 6 SATA HDDs with ZFS.

ZimaBlade single-board server
★★★★★

Great innovation for mini server!

It is very useful and makes a powerful mini server for many purposes, including university and college students in engineering and electronics. Thank you so much for making this server.

ZimaBoard 2 single-board server
★★★★★

Avaliação ZimaBoard 2

Construí um servidor de uso pessoal. O desempenho está muito bom e funciona perfeitamente onde quer que eu esteja. A surpresa é não dependermos de grandes estruturas para termos nosso próprio servidor de dados. Como iniciante, estou gostando bastante do ZimaOS, pois ele é simples e eficiente.

Frequently asked questions

Does Hook0 publish a RAM minimum?

No numerical whole-host RAM minimum is published.

Which database does the development Compose stack use?

PostgreSQL 18.

Which services are included?

PostgreSQL, Mailpit, API, frontend, and output-worker.

Is the official Docker Compose setup production-ready?

No. Hook0 explicitly labels it development/testing only.

What ports are used in the development stack?

Frontend 8001, API 8081, Mailpit 8025/1025, and PostgreSQL 5432.

Can ZimaBoard 2 832 run Hook0?

Yes for development/testing.

Does Hook0 need a GPU?

No.

What changes for production?

You need a design for scalability, resilience, HA, observability, and operations.

What sources informed this guide?

This page uses Hook0's official self-hosting Docker Compose documentation and current Zima hardware specifications.