ANSI INCITS ISO IEC 15041-1997 Information technology - Data interchange on 90 mm optical disk cartridges - Capacity 640 Mbytes per cartridge (Adopted by INCITS).pdf
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1、INTERNATIONAL STANDARD ISO/IEC 15041 First edition 1997-04-I 5 Information technology - Data interchange on 90 mm optical disk cartridges - Capacity: 640 Mbytes per cartridge Technologies de /information - ichange de don - the environments in which the cartridges are to be operated and stored; - the
2、 mechanical and physical characteristics of 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; including the physical disposition of the tracks and sectors, the error correction c
3、odes, and the modulation method used; - the characteristics of the embossed information on the disk; - the magneto-optical characteristics of the disk, enabling processing systems to write data onto the disk; - the minimum quality of user-written data on the disk, enabling data processing systems to
4、 read data from the disk. This International Standard provides for interchange between optical disk drives. Together with a standard for volume and file structure, it provides for full data interchange between data processing systems. 1 ISO/IEC 15041: 1997 (E) OISO/IEC 2 Conformance 2.1 Optical disk
5、 cartridge (ODC): A claim of conformance with this International Standard shall specify the Type of the ODC. It shall be in conformance if it meets all mandatory requirements specified herein for that Type. 2.2 Generating system: A claim of conformance with this International Standard shall specify
6、which Type(s) is (are) supported. A system generating an ODC for interchange shall be in conformance with this International Standard if it meets the mandatory requirements of this International Standard for the Type(s) specified. 2.3 Receiving system: A claim of conformance with this International
7、Standard shall specify which Type(s) is (are) supported. A system receiving an ODC for interchange shall be in conformance with this International Standard if it is able to process any recording made on the cartridge in accordance with 2.1 on the Type(s) specified. 2.4 Compatibility statement: A cla
8、im of conformance with this International Standard shall include a statement listing any other International Standard supported by the system for which conformance is claimed. This statement shall specify the number of the Standard(s), the ODC type(s) supported (where appropriate) and whether suppor
9、t includes reading or both reading and writing. 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 edition indicated was valid. All standards are subject to revi
10、sion, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent edition of the standard indicated below. Members of IEC and IS0 maintain registers of currently valid International Standards. IEC 950: 199 I, Safety of info
11、rmation technology equipment, including electrical business equipment. 4 Definitions For the purposes of this International Standard, the following definitions apply. 4.1 band: Part of the Data Zone comprising a fixed number of consecutive physical tracks. 4.2 case: The housing for an optical disk,
12、that protects the disk and facilitates disk interchange. 4.3 Channel bit: The smallest element for the representation of data on a disk. It is recorded as either a space or a mark. Twelve channel bits are used to represent eight input bits. 4.4 clamping zone: The annular part of the disk within whic
13、h the clamping force is applied by the clamping device. 4.5 control track: A track containing the information on media parameters and format necessary for writing, reading and erasing the remaining tracks on the optical disk. 4.6 Cyclic Redundancy Check (CRC): A method for detecting errors in data.
14、4.7 defect management: A method for handling the defective areas on the disk. 4.8 DOW disk: A Magneto-Optical disk in which the new data can be written directly over old data by modulating the laser-intensity without reversing the magnetic field direction. 4.9 disk reference plane: A plane defined b
15、y the perfectly flat annular surface of an ideal spindle onto which the clamping zone of the disk is clamped, and which is normal to the axis of rotation. 4.10 embossed mark: A mark so formed as to be unalterable by magneto-optical means. 4.11 entrance surface: The surface of the disk on to which th
16、e optical beam first impinges. 4.12 Error Correction Code (ECC): An error-detecting code designed to correct certain kinds of errors in data. 4.13 field: A subdivision of a sector. 4.14 format: The arrangement or layout of information on the disk. 2 OISO/IEC ISO/IEC 15041:1997 (E) 4.15 fully embosse
17、d disk: An optical disk in which all data fields in the Data Zone are embossed. 4.16 fully rewritable disk: An optical disk in which the data in specified areas can be rewritten by an optical beam. 4.17 groove: See 4.21. 4.18 hub: The central feature on the disk which interacts with the spindle of t
18、he disk drive to provide radial centring and the clamping force. 4.19 interleaving: The process of allocating the physical sequence of units of data so as to render the data more immune to burst errors. 4.20 Kerr rotation: The rotation of the plane of polarization of an optical beam upon reflection
19、from the recording layer, as caused by the magneto-optical effect. 4.21 land and groove: A trench-like feature of the disk, applied before 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 pair
20、ed to form a track. 4.22 logical track: Either 25 consecutive sectors for disks with 512-byte sectors or 17 consecutive sectors for disks with 2 04%byte sectors in one or more physical tracks. The first sector of each logical track is assigned sector number 0. 4.23 logical ZCAV: A disk format requir
21、ing Zoned Constant Angular Velocity operation and with tracks n in the Data Zone all being logical tracks. 4.24 mark: A feature of the recording layer which may take the form of a magnetic domain, a pit, or any other type or form that can be sensed by the optical system. The pattern of marks represe
22、nts the data on the disk. Note 1 - Subdivisions of a sector which arc named mark are not marks in the sense of this definition. 4.25 optical disk: A disk that will accept and retain information in the form of marks in a recording layer, that can be read with an optical beam. 4.26 optical disk cartri
23、dge (ODC): A device consisting of a case containing an optical disk. 4.27 partially embossed disk: An optical disk which contains both rewritable and embossed data fields in the Data Zone. 4.28 physical track: The path which is followed by the focus of the optical beam during one revolution of the d
24、isk. 4.29 physical track group: A fixed number of consecutive physical tracks in the Data Zone. 4.30 pitch: The distance between adjacent physical track centrelines, measured in a radial direction 4.31 polarization: The direction of polarization of an optical beam is the direction of the electric ve
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