RAID Storage Capacity Estimate Calculator

Ready to test out your ideal RAID configuration? Use our RAID Capacity Estimate Calculator to select your RAID storage solutions, drive quantity, and drive capacity size to see how much available space you’ll have based on your requirements.

Build your estimate

Enter your setup details below. The estimator will calculate the total storage capacity needed for your RAID environment.

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Benefits of using the Calculator

  • Get instant capacity estimates instead of working the math out by hand
  • Compare RAID levels side by side before you buy
  • Plan storage for a NAS, a server, or a personal setup
  • Avoid buying too few drives, or paying for capacity you cannot use

Your Array setup

 

How does the RAID Capacity Estimate Calculator work?

The calculator takes your RAID level, number of drives, and drive capacity, and applies that RAID level's redundancy rule to show how much space is usable for data and how much is reserved for protection. RAID 0 stripes across all drives with no redundancy, so all capacity is usable. RAID 1 mirrors, so usable capacity equals one drive. RAID 5 reserves one drive's worth of capacity for parity, RAID 6 reserves two, and RAID 10 mirrors striped pairs, so half the total is usable. Results are estimates: actual formatted capacity depends on your operating system and file system.

Estimated capacity

 

 

 

Complete the fields and calculate to see your estimate.

Recommended drive family

Building a NAS array? WD Red Plus and WD Red Pro are designed for 24/7 RAID operation. For enterprise and data center arrays, WD Gold and Ultrastar deliver high capacities with the endurance RAID rebuilds demand. All are CMR drives, the recording technology recommended for dependable RAID rebuilds.

Why Western Digital for RAID

Western Digital drives are built for RAID. WD Red Plus and Red Pro are rated for continuous operation in NAS arrays, and WD Gold and Ultrastar carry the capacity and endurance that enterprise and data center arrays demand. All are CMR drives, the recording technology recommended for dependable rebuilds when a drive fails.

RAID levels at a glance

RAID LevelMinimum DrivesFault ToleranceUsable Capacity
RAID 02NoneAll drives — maximum speed with no redundancy
RAID 121 driveOne drive — mirroring for reliability
RAID 531 driveTotal minus one drive — balance of efficiency and fault tolerance
RAID 642 drivesTotal minus two drives — double parity, survives two failures
RAID 1041 drive per mirrored pairHalf the total — speed plus redundancy, needs four or more drives
RAID 5061 drive per RAID 5 setTotal minus one drive per set — striped RAID 5 arrays
RAID 6082 drives per RAID 6 setTotal minus two drives per set — striped RAID 6 arrays for large systems
JBOD / JBOF2NoneAll drives — combined without redundancy, capacity simply adds up

Frequently Asked Questions

It depends on the RAID level you choose. RAID 0 stripes data across every drive, so usable capacity is the number of drives multiplied by the drive size. RAID 1 mirrors the same data onto two drives, so usable capacity equals one drive. RAID 5 reserves the equivalent of one drive for parity, so usable capacity is the total minus one drive. RAID 6 reserves two. RAID 10 mirrors pairs and then stripes them, so half the total is usable. For example, eight 4 TB drives give you 32 TB in RAID 0, 28 TB in RAID 5, 24 TB in RAID 6, and 16 TB in RAID 10.

Disclaimer

  1. This RAID Capacity Calculator is provided for illustrative purposes only. Capacity is calculated based on parameters selected in the tool. Please refer to individual device specifications to confirm RAID support, drive quantity allowed, and capacity support. 1GB = 1 billion bytes and 1TB = 1 trillion bytes. Actual user capacity may be less depending on operating environment.
  2. To achieve optimal RAID capacity and performance, we advise using disks with the same capacity in your array. Using different-sized drives will result in wasted, unused space for the larger capacity drives. This does not apply for JBOD/JBOF setups since the drives function independently of each other.
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