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  2. Nested RAID levels - Wikipedia

    en.wikipedia.org/wiki/Nested_RAID_levels

    A typical RAID 100 configuration. RAID 100, sometimes also called RAID 10+0, is a stripe of RAID 10s. This is logically equivalent to a wider RAID 10 array, but is generally implemented using software RAID 0 over hardware RAID 10. Being "striped two ways", RAID 100 is described as a "plaid RAID". [15]

  3. Standard RAID levels - Wikipedia

    en.wikipedia.org/wiki/Standard_RAID_levels

    Once the stripe size is defined during the creation of a RAID 0 array, it needs to be maintained at all times. ... RAID 1+0 or RAID 10, RAID 5+0 or RAID 50, RAID 6+0 ...

  4. Non-standard RAID levels - Wikipedia

    en.wikipedia.org/wiki/Non-standard_RAID_levels

    As such, a Matrix RAID array can improve both performance and data integrity. A practical instance of this would use a small RAID 0 (stripe) volume for the operating system, program, and paging files; second larger RAID 1 (mirror) volume would store critical data. Linux MD RAID is also capable of this. [7] [8] [9]

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  6. RAID - Wikipedia

    en.wikipedia.org/wiki/RAID

    When the top array is RAID 0 (such as in RAID 1+0 and RAID 5+0), most vendors omit the "+" (yielding RAID 10 and RAID 50, respectively). RAID 0+1: creates two stripes and mirrors them. If a single drive failure occurs then one of the mirrors has failed, at this point it is running effectively as RAID 0 with no redundancy.

  7. Data striping - Wikipedia

    en.wikipedia.org/wiki/Data_striping

    The amount of data in one stride multiplied by the number of data disks in the array (i.e., stripe depth times stripe width, which in the geometrical analogy would yield an area) is sometimes called the stripe size or stripe width. [5] Wide striping occurs when chunks of data are spread across multiple arrays, possibly all the drives in the system.

  8. RAID 0 - Wikipedia

    en.wikipedia.org/?title=RAID_0&redirect=no

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  9. Non-RAID drive architectures - Wikipedia

    en.wikipedia.org/wiki/Non-RAID_drive_architectures

    In the adjacent diagram, data are concatenated from the end of disk 0 (block A63) to the beginning of disk 1 (block A64); end of disk 1 (block A91) to the beginning of disk 2 (block A92). If RAID 0 were used, then disk 0 and disk 2 would be truncated to 28 blocks, the size of the smallest disk in the array (disk 1) for a total size of 84 blocks.