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  2. Longitudinal redundancy check - Wikipedia

    en.wikipedia.org/wiki/Longitudinal_redundancy_check

    Many protocols use an XOR-based longitudinal redundancy check byte (often called block check character or BCC), including the serial line interface protocol (SLIP, not to be confused with the later and well-known Serial Line Internet Protocol), [8] the IEC 62056-21 standard for electrical-meter reading, smart cards as defined in ISO/IEC 7816, and the ACCESS.bus protocol.

  3. Checksum - Wikipedia

    en.wikipedia.org/wiki/Checksum

    The simplest checksum algorithm is the so-called longitudinal parity check, which breaks the data into "words" with a fixed number n of bits, and then computes the bitwise exclusive or (XOR) of all those words. The result is appended to the message as an extra word.

  4. Error detection and correction - Wikipedia

    en.wikipedia.org/wiki/Error_detection_and_correction

    Checksum schemes include parity bits, check digits, and longitudinal redundancy checks. Some checksum schemes, such as the Damm algorithm, the Luhn algorithm, and the Verhoeff algorithm, are specifically designed to detect errors commonly introduced by humans in writing down or remembering identification numbers.

  5. Talk:Longitudinal redundancy check - Wikipedia

    en.wikipedia.org/wiki/Talk:Longitudinal...

    This is sometimes referred as Longitudinal Redundancy Check (LRC) XOR of all bytes: The people who form a 2D grid of bits, and do both transverse redundancy check and longitudinal redundancy check, so they can *correct* single-bit errors (and some 2-bit errors). (At least, I understand how this works with XOR -- I don't understand how it is ...

  6. Block check character - Wikipedia

    en.wikipedia.org/wiki/Block_check_character

    In longitudinal redundancy checking and cyclic redundancy checking, block check characters are computed for, and added to, ...

  7. Parity bit - Wikipedia

    en.wikipedia.org/wiki/Parity_bit

    Parity in this form, applied across multiple parallel signals, is known as a transverse redundancy check. This can be combined with parity computed over multiple bits sent on a single signal, a longitudinal redundancy check. In a parallel bus, there is one longitudinal redundancy check bit per parallel signal.

  8. Error correction code - Wikipedia

    en.wikipedia.org/wiki/Error_correction_code

    Low-density parity-check (LDPC) codes are a class of highly efficient linear block codes made from many single parity check (SPC) codes. They can provide performance very close to the channel capacity (the theoretical maximum) using an iterated soft-decision decoding approach, at linear time complexity in terms of their block length.

  9. Check digit - Wikipedia

    en.wikipedia.org/wiki/Check_digit

    If the remainder is equal to 0 then use 0 as the check digit, and if not 0 subtract the remainder from 10 to derive the check digit. A GS1 check digit calculator and detailed documentation is online at GS1's website. [5] Another official calculator page shows that the mechanism for GTIN-13 is the same for Global Location Number/GLN. [6]