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N413 bảng dữ liệu(PDF) 7 Page - List of Unclassifed Manufacturers |
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N413 bảng dữ liệu(HTML) 7 Page - List of Unclassifed Manufacturers |
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7 / 15 page ![]() ISO/IEC 8859-4:1997 (E) © ISO/IEC ISO/IEC 2022:1994, Information technology – Character code structure and extension techniques. ISO/IEC 4873:1991, Information technology – ISO 8-bit code for information interchange – Structure and rules for implementation. ISO/IEC 8824-1:1995, Information technology – Abstract Syntax Notation One (ASN.1): Specifica- tion of basic notation. 4 Definitions For the purposes of this part of ISO/IEC 8859 the following definitions apply: 4.1 bit combination: An ordered set of bits used for the representation of characters. 4.2 byte: A bit string that is operated upon as a unit. 4.3 character: A member of a set of elements used for the organization, control, or representation of data. 4.4 code table: A table showing the characters allocated to each bit combination in a code. 4.5 coded character set; code: A set of unambiguous rules that establishes a character set and the one-to-one relationship between the characters of the set and their bit combinations. 4.6 coded-character-data-element (CC-data- element): An element of interchanged information that is specified to consist of a sequence of coded representations of characters, in accordance with one or more identified standards for coded character sets. 4.7 graphic character: A character, other than a control function, that has a visual representation normally handwritten, printed or displayed, and that has a coded representation consisting of one or more bit combinations. NOTE – In ISO/IEC 8859 a single bit combination is used to represent each character. 4.8 graphic symbol: A visual representation of a graphic character or of a control function. 4.9 position: That part of a code table identified by its column and row coordinates. 5 Notation, code table, and names 5.1 Notation The bits of the bit combinations of the 8-bit code are identified by b 8,b7,b6,b5,b4,b3,b2, and b1, where b 8 is the highest-order, or most-significant bit and b1 is the lowest-order, or least-significant bit. The bit combinations may be interpreted to represent numbers in binary notation by attributing the following weights to the individual bits: Using these weights, the bit combinations are Bit b 8 b 7 b 6 b 5 b 4 b 3 b 2 b 1 Weight 128 64 32 16 8 4 2 1 identified by notations of the form xx/yy, where xx and yy are numbers in the range 00 to 15. The correspondence between the notations of the form xx/yy and the bit combinations consisting of the bits b 8 to b1 is as follows: – xx is the number represented by b 8,b7,b6 and b5 where these bits are given the weights 8, 4, 2, and 1 respectively. – yy is the number represented by b 4,b3,b2 and b1 where these bits are given the weights 8, 4, 2, and 1 respectively. The bit combinations are also identified by notations of the form hk, where h and k are numbers in the range 0 to F in hexadecimal notation. The number h is the same as the number xx described above, and the number k the same as the number yy described above. 5.2 Layout of the code table An 8-bit code table consists of 256 positions arranged in 16 columns and 16 rows. The columns and the rows are numbered 00 to 15. In hexa- decimal notation the columns and the rows are numbered 0 to F. The code table positions are identified by notations of the form xx/yy, where xx is the column number and yy is the row number. The column and row numbers are shown at the top and left edges of the table respectively. The code table positions are also identified by notations of the form hk, where h is the column number and k is the row number in hexadecimal notation. The column and row numbers are shown at the bottom and right edges of the table respectively. The positions of the code table are in one-to-one correspondence with the bit combinations of the code. The notation of a code table position, of the form xx/yy, or of the form hk, is the same as that of the corresponding bit combination. 5.3 Names and meanings This part of ISO/IEC 8859 assigns a unique name and a unique identifier to each graphic character. These names and identifiers have been taken from 2 |
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