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TrueNAS 8x 12TB RAID-Z1 NAS Calculator

Estimate usable TB, parity, and fault tolerance for TrueNAS NAS users using 8x 12TB in RAID-Z1.

Capacity Snapshot

Raw Capacity

96.00 TB

Usable Capacity

75.60 TB

Fault Tolerance

1 drive

Efficiency

87.5%

ZFS single-parity equivalent of RAID 5; common for smaller homelab pools. This scenario applies a 10% filesystem reserve.

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Alternative Mode Comparison

Mode Usable Tolerance Efficiency
RAID 5 75.60 TB 1 drive 87.5%
RAID 6 64.80 TB 2 drives 75.0%
RAID 10 43.20 TB 1 drive per mirror pair* 50.0%
RAID-Z1 75.60 TB 1 drive 87.5%
RAID-Z2 64.80 TB 2 drives 75.0%

TrueNAS / ZFS Planning Notes

TrueNAS and ZFS planners usually care about parity width, scrub cadence, and healthy operating headroom. Capacity is only one part of pool durability.

Brand / Region Glossary

vdev

A virtual device group in ZFS; multiple vdevs form a storage pool.

Scrub

Background integrity scan that verifies checksums and repairs parity mismatches.

RAID-Z Expansion

ZFS feature set and planning topic for growing parity groups safely.

NAS Cluster Guides

Related Long-Tail Calculators

Sequential Long-Tail Navigation

FAQ

Should I optimize this 8-drive plan for capacity or resiliency first?

For long-lived NAS pools, resiliency first is usually safer. Capacity can be expanded later, while a risky parity choice can force migration sooner.

Is RAID-Z1 still viable with 12TB drives?

It can be practical, but larger drives increase rebuild windows. Validate parity choice and backup policy before committing to the final layout.

Why include a 10% reserve when planning NAS available space?

Keeping free space improves filesystem behavior for snapshots, metadata, and write performance. Full arrays often perform worse and rebuild more slowly.

How much effective storage does 8x 12TB RAID-Z1 provide?

For TrueNAS users, this NAS planning scenario estimates 75.60 TB usable after a 10% reserve from 96.00 TB raw.