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ISO-8859-1 was (according to the standard, at least) the default encoding of documents delivered via HTTP with a MIME type beginning with text/, the default encoding of the values of certain descriptive HTTP headers, and defined the repertoire of characters allowed in HTML 3.2 documents. It is specified by many other standards.
ISO/IEC 8859-15 modifies ISO-8859-1 to fully support Estonian, Finnish and French and add the euro sign. Windows-1252 is a superset of ISO-8859-1 that includes the printable characters from ISO/IEC 8859-15 and popular punctuation such as curved quotation marks (also known as smart quotes , such as in Microsoft Word settings and similar programs).
ISO/IEC 8859 is a joint ISO and IEC series of standards for 8-bit character encodings. The series of standards consists of numbered parts, such as ISO/IEC 8859-1, ISO/IEC 8859-2, etc. There are 15 parts, excluding the abandoned ISO/IEC 8859-12. [1] The ISO working group maintaining this series of standards has been disbanded.
In the table below, the column "ISO 8859-1" shows how the file signature appears when interpreted as text in the common ISO 8859-1 encoding, with unprintable characters represented as the control code abbreviation or symbol, or codepage 1252 character where available, or a box otherwise. In some cases the space character is shown as ␠.
The Latin-1 Supplement (also called C1 Controls and Latin-1 Supplement) is the second Unicode block in the Unicode standard. It encodes the upper range of ISO 8859-1 : 80 (U+0080) - FF (U+00FF). C1 Controls (0080–009F) are not graphic.
For most barcode symbologies, the default code page (if not specified by ECI) is ISO/IEC 8859-1 (also known as Latin-1) as shown in bold below. Well-known ECI values, which are commonly used to indicate that a message segment is encoded using a specific code page or character encoding : [ 2 ] [ 3 ]
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However, it does require that the encoding be self-synchronizing, which both UTF-8 and UTF-16 are. A common misconception is that there is a need to "find the nth character" and that this requires a fixed-length encoding; however, in real use the number n is only derived from examining the n−1 characters, thus sequential access is needed anyway.