RAID capacity·RAID 6 · 13disks
RAID 6 · 13disks
11disks
Capacity efficiency 84.6%

RAID 6 with 13 disks — 11 usable

13 disks in RAID 6 give you 11 disks’ worth, with 2 spent on parity or mirroring. That is 84.6% efficiency, and it always survives 2 failures.

Disks
13
Usable disks
11
Spent on parity or mirror
2
Capacity efficiency
84.6%
Failures always survived
2
Best case
2
Groups
1
Disks per group
13

RAID 6

Two disks’ worth go to parity, so two simultaneous failures are survivable — a second disk failing during a rebuild does happen.

TB on the label, TiB on the screen

  • 1 TB × 1311 TB · 10 TiB
  • 2 TB × 1322 TB · 20.01 TiB
  • 4 TB × 1344 TB · 40.02 TiB
  • 6 TB × 1366 TB · 60.03 TiB
  • 8 TB × 1388 TB · 80.04 TiB
  • 10 TB × 13110 TB · 100.04 TiB
  • 12 TB × 13132 TB · 120.05 TiB
  • 14 TB × 13154 TB · 140.06 TiB
  • 16 TB × 13176 TB · 160.07 TiB
  • 18 TB × 13198 TB · 180.08 TiB
  • 20 TB × 13220 TB · 200.09 TiB
  • 22 TB × 13242 TB · 220.1 TiB
  • 24 TB × 13264 TB · 240.11 TiB

One TB on the box is 10¹² bytes, while the operating system counts in units of 2⁴⁰ bytes. The names look alike but the units differ, so the same disk reads about 9% smaller. Nothing went missing — the ruler changed.

Same disk count, other levels

Same level, other disk counts

The rebuild is the dangerous part

When a single-parity array loses a disk, you put a new one in and every remaining disk is read end to end to rebuild it. That is precisely when the survivors work hardest and longest. The bigger and more numerous the disks, the longer the rebuild — days, sometimes — and a second failure during it ends the array. This is why RAID 6 or 10 is preferred over RAID 5 on large arrays.

How to read it

  • Usable = total − parity × groups. Every level is that one line.
  • RAID 5 spends one parity disk in a single group, so n−1; RAID 6 spends two, so n−2.
  • RAID 50 and 60 run several such groups striped together, so the parity is multiplied by the group count.
  • RAID 1 holds one copy on every disk, so one disk’s worth; RAID 10 mirrors in pairs, so half.
  • Groups must be equal in size, so the group count can only be a divisor of the disk count.
  • TB on the box and TiB on the screen are different units — about 9% apart.

RAID is not a backup

RAID protects against exactly one thing: a disk dying. A file deleted by mistake, a file overwritten, ransomware, a failed controller, fire or theft all propagate to every disk at once — a mirror deletes just as faithfully as it writes. A backup is a separate copy on separate hardware, and RAID is not doing that job.

Common questions

Q. How much do 13 disks give in RAID 6?

11 disks’ worth. 2 go to parity or mirroring, for 84.6% efficiency.

Q. How many failures does it survive?

2 always, and up to 2 if they land in the right places.

Q. How many TB with 4 TB disks?

44 TB, which the operating system shows as 40.02 TiB — different units, same bytes.

Q. What is this level?

Two disks’ worth go to parity, so two simultaneous failures are survivable — a second disk failing during a rebuild does happen.