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  2. Check digit - Wikipedia

    en.wikipedia.org/wiki/Check_digit

    To calculate the check digit, take the remainder of (53 / 10), which is also known as (53 modulo 10), and if not 0, subtract from 10. Therefore, the check digit value is 7. i.e. (53 / 10) = 5 remainder 3; 10 - 3 = 7. Another example: to calculate the check digit for the following food item "01010101010x". Add the odd number digits: 0+0+0+0+0+0 = 0.

  3. Global Location Number - Wikipedia

    en.wikipedia.org/wiki/Global_Location_Number

    GLNs use the standard GS1 Check Digit as the default for all GS1 identifiers unless another check digit method is specified. Per the official GS1 General Specification [4] the check digit is a 'modulo 10 check digit' or Luhn algorithm check digit. GS1 also provides a check digit calculator.

  4. Code 128 - Wikipedia

    en.wikipedia.org/wiki/Code_128

    There will always be 6 runs and the lengths of these 6 runs form the Widths value. For example, using the pattern 10100011000, the run lengths are 1 (digit 1), 1 (digit 0), 1 (digit 1), 3 (digit 0), 2 (digit 1), 3 (digit 0). Reporting just the lengths of each run gives 1, 1, 1, 3, 2, 3, thereby producing a widths value of 111323.

  5. International Article Number - Wikipedia

    en.wikipedia.org/wiki/International_Article_Number

    The check digit is an additional digit, used to verify that a barcode has been scanned correctly. It is computed modulo 10, where the weights in the checksum calculation alternate 3 and 1. In particular, since the weights are relatively prime to 10, the EAN-13 system will detect all single digit errors.

  6. Serial shipping container code - Wikipedia

    en.wikipedia.org/wiki/Serial_Shipping_Container_Code

    In order to automate the reading process, the SSCC is often encoded in a barcode, generally GS1-128, and can also be encoded in an RFID tag. It is used in electronic commerce transactions. The SSCC comprises an extension digit, a GS1 company prefix, a serial reference, and a check digit. It is all numeric.

  7. Code 39 - Wikipedia

    en.wikipedia.org/wiki/Code_39

    Code 39 (also known as Alpha39, Code 3 of 9, Code 3/9, Type 39, USS Code 39, or USD-3) is a variable length, discrete barcode symbology defined in ISO/IEC 16388:2007. The Code 39 specification defines 43 characters, consisting of uppercase letters (A through Z), numeric digits (0 through 9) and a number of special characters ...

  8. ISO 6346 - Wikipedia

    en.wikipedia.org/wiki/ISO_6346

    3 0 5 4 3 8 Calc. 13 30 28 32 3 0 5 4 3 8 × 1 2 4 8 16 32 64 128 256 512 13 60 112 256 48 0 320 512 768 4096 6185 [a] b) Division by 11: 562.272... c) Erase decimal digits: 562 d) Multiply by 11: 6182 a) minus d) = Check Digit: 3

  9. Luhn algorithm - Wikipedia

    en.wikipedia.org/wiki/Luhn_algorithm

    The check digit is computed as follows: Drop the check digit from the number (if it's already present). This leaves the payload. Start with the payload digits. Moving from right to left, double every second digit, starting from the last digit. If doubling a digit results in a value > 9, subtract 9 from it (or sum its digits).