ANSI ISO IEC 10090-1992 Information technology - 90 mm optical disk cartridges rewritable and read only for data interchange (Adopted by INCITS)《信息技术.INCITS采纳的数据交换用90 mm可重写和只读盒式光盘》.pdf
《ANSI ISO IEC 10090-1992 Information technology - 90 mm optical disk cartridges rewritable and read only for data interchange (Adopted by INCITS)《信息技术.INCITS采纳的数据交换用90 mm可重写和只读盒式光盘》.pdf》由会员分享,可在线阅读,更多相关《ANSI ISO IEC 10090-1992 Information technology - 90 mm optical disk cartridges rewritable and read only for data interchange (Adopted by INCITS)《信息技术.INCITS采纳的数据交换用90 mm可重写和只读盒式光盘》.pdf(105页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL STANDARD lSO/IEC 10090 First edition 1992-l O-l 5 Information technology - 90 mm optical disk cartridges, rewritable and read only, for data interchange Technologies de Iinformation - Car-touches pour disques optiques de diametre 90 mm, r - the mechanical and physical characteristics o
2、f the cartridge, so as to provide mechanical interchangeability between data processing systems; - the format of the information on the disk, both embossed and user-written; - the characteristics of the embossed information on the disk; - the magneto-optical characteristics of the disk, enabling pro
3、cessing systems to write data onto the disk; - the minimum quality of user-written data on the disk, enabling data processing systems to read data from the disk. 2 Conformance A 90 mm optical disk cartridge is in conformance with this International Standard if it meets all mandatory requirements spe
4、cified herein. Annex R specifies the zones of the disk in which the requirements for the signal characteristics given in the body of this International Standard shall be met, and the zones in which a relaxation of these requirements is permitted. A drive claiming conformance with this International
5、Standard shall be able, in the operating environment, to write on any optical disk cartridge which is in conformance with this International Standard, and to read from any optical disk cartridge which is in conformance with this International Standard. A drive shall not claim conformance if it canno
6、t accept the full range of media conforming to this International Standard but only a specific sub-set of it. 3 Normative reference The following standard contains provisions which, through reference in this text, constitute provisions of this International Standard. At the time of publication, the
7、edition indicated was valid. All standards are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent edition of the standard listed below. Members of EC and IS0 maintain registers of currently val
8、id International Standards. IEC 950: 1991, Safety of information technology equipment, including electrical business equipment. 4 Definitions For the purpose of this International Standard the following definitions apply. 4.1 case: The housing for an optical disk, that protects the disk and facilita
9、tes disk interchange. 1 ISO/IEC 10090:1992 (E) 4.2 cyclic redundancy check (CRC): A method for detecting errors in data. 4.3 embossed mark: A mark so formed as to be unalterable by magneto-optical means. 4.4 entrance surface: The surface of the disk on to which the optical beam first impinges. 4.5 e
10、rror correction code (ECC): An error-detecting code designed to correct certain kinds of errors in data. 4.6 field: A subdivision of a sector. 4.7 format: The arrangement or layout of information on the disk. 4.8 groove: See 4.11. 4.9 interleaving: The process of allocating the physical sequence of
11、units of data so as to render the data more immune to burst errors 4.10 Kerr rotation: The rotation of the plane of polarization of an optical beam upon reflection from the recording layer, as caused by the magneto-optical effect. 4.11 land and groove: A trench-like feature of the disk, applied befo
12、re the recording of any information, and used to define the track location. The groove is located nearer to the entrance surface than the land with which it is paired to form a track. 4.12 mark: A feature of the recording layer which may take the form of a magnetic domain, a pit, or any other type o
13、r form that can be sensed by the optical system. The pattern of marks represents the data on the disk. Note 1 - Subdivisions of a sector which are named mark are not marks in the sense of this definition. 4.13 optical disk: A disk that will accept and retain information in the form of marks in a rec
14、ording layer, that can be read with an optical beam. 4.14 optical disk cartridge (ODC): A device consisting of a case containing an optical disk. 4.15 polarization: The direction of polarization of an optical beam is the direction of the electric vector of the beam. Note 2 - The plane of polarizatio
15、n is the plane containing the electric vector and the direction of propagation of the beam. The polarization is right-handed when to an observer looking in the direction of propagation of the beam, the end-point of the electric vector would appear to describe an ellipse in the clockwise sense. 4.16
16、recording layer: A layer of the disk on, or in, which data is written during manufacture and/or use. 4.17 Reed-Solomon code: An error detection and/or correction code which is particularly suited to the correction of errors which occur in bursts or are strongly correlated. 4.18 rewritable optical di
17、sk: An optical disk in which data in specified areas can be written, erased and rewritten by an optical beam. 4.19 sector: The smallest addressable part of a track in the Information Zone of a disk that can be accessed independently of other addressable parts of the zone. 4.20 substrate: A transpare
18、nt layer of the disk, provided for mechanical support of the recording layer, through which the optical beam accesses the recording layer. 4.21 track: The path which is to be followed by the focus of the optical beam during one revolution of the disk. 4.22 zone: An annular area of the disk. 2 ISO/IE
19、C 10090:1992 (E) 5 Conventions and notations 5.1 Representation of numbers - A measured value is rounded off to the least significant digit of the corresponding specified value. It implies that a specified value of 1.26 with a positive tolerance of + O,Ol, and a negative tolerance of -0,02 allows a
20、range of measured values from 1,235 to 1,275. - Letters and digits in parentheses represent numbers in hexadecimal notation. - The setting of a bit is denoted by ZERO or ONE. - Numbers in binary notation and bit combinations are represented by strings of ZEROS and ONES. - Numbers in binary notation
21、and bit combinations are shown with the most significant bit to the left. - Negative values of numbers in binary notation are given in TWOs complement. - In each field the data is recorded so that the most significant byte (byte 0) is recorded first. Within each byte the least significant bit is num
22、bered 0 and is recorded last, the most significant bit (numbered 7 in an 8-bit byte) is recorded first. This order of recording applies also to the data input of the Error Detection and Correction circuits and to their output. 5.2 Names The names of entities, e.g. specific tracks, fields, etc., are
23、given with a capital initial. 6 List of acronyms AM ccs CRC DDS DMA ECC FAl FA2 ID LSB MSB ODC ODF PA PDL RWZ7) SDL SM Address Mark Continuous Composite Servo (tracking method) Cyclic Redundancy Check Disk Definition Sector Defect Management Area Error Correction Code Functional Area 1 Functional Ar
24、ea 2 Identifier Least Significant Byte Most Significant Byte Optical Disk Cartridge Offset Detection Field Postamble Primary Defect List Run Length Limited (code) Secondary Defect List Sector Mark Variable Frequency Oscillator 7 General description of the optical disk cartridge The optical disk cart
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