ANSI ISO IEC 13403-1995 Information technology - Information interchange on 300 mm optical disk cartridges of the write once read multiple (WORM) type using the CCS method (Adopted.pdf
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1、INTERNATIONAL STANDARD ISO/IEC 13403 First edition 1995-l 2-l 5 Information technology - Information interchange on 300 mm optical disk cartridges of the write once, read multiple (WORM) type using the CCS method Technologies de /information - khange dinformation sur cartouches de disque optique de
2、300 mm de diam - the 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; - the characteristics of the embossed information on the disk; -
3、 the 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 read data from the disk. Together with the standard for Volume and File Structure, this International Standar
4、d provides for full data interchange between data processing systems. Interchange involves the ability to write and read data without introducing any error. 2 Conformance A 300 mm optical disk cartridge is in conformance with this International Standard if it meets all mandatory requirements specifi
5、ed herein. A drive claiming conformance with this International 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 any such optical disk cartridge which has been written with any drive in c
6、onformance with this International Standard. A drive shall not claim conformance if it cannot accept the full range of media conforming to this International Standard. 3 Normative references The following standards contain provisions which components critical for tests in specific clauses only are s
7、pecified in those clauses. 9.1 Optical system The basic set-up of the optical system of the Reference Drive used for measuring the write and read parameters is shown in figure 1. Different components and locations of components are permitted, provided that the performance remains the same as that of
8、 the set-up in figure 1. The optical system shall be such that the detected light reflected from the entrance surface of the disk is minimized so as not to influence the accuracy of the measurements. The output Channel 1 is the sum of the currents through photo-diodes Jl, J2, 53 and 54, and is used
9、for reading embossed marks and user-written marks. The output of Channel 2 is the difference between current of photo- diodes JI and J3 and current of photo-diodes J2 and 54, and shall be used for the axial tracking. 9.2 Optical beam The focussed optical beam used for writing and reading data shall
10、have the following properties: Wavelength (1) Wavelength (h) divided by the numerical aperture of the objective lens (NA) :780 nm :;mn :h /NA = 1,475 mm *0,035 mm Filling D/W of the aperture of the objective lens : 1,0 max. Variance of the wavefront of the optical beam near the recording layer : h2/
11、180 max. The optical power and pulse width for writing and reading shall be as specified in 25.2.2,25.3,27.2.2 and 28.2.2. Polarization : circular D is the diameter of the lens aperture and W is the beam diameter of the Gaussian beam where the intensity is l/e2 of the maximum intensity. 9.3 Read cha
12、nnel (See annex N.) A read channel shall be provided to generate signals from the marks in the recording layer. Channel 1 shall be used for reading the embossed marks and reading the user-written marks. The read amplifier after the photodetectors in Channel 1 shall have a flat response within *l dB
13、from 100 kHz to 23 MHz. 9.4 Tracking The Tracking channel of the drive provides the tracking error signals to control the servos for the radial tracking of the optical beam. The radial tracking error is generated by a split photo-diode detector in the tracking channel. The division of the diode nms
14、parallel to the image of the tracks on the diode. OISO/IEC ISO/IEC 13403:1995(E) The requirements for the accuracy with which the focus of the optical beam must follow the tracks is specified in 20.2.4. 9.5 Rotation of the disk The spindle shall position the disk as specified in 12.5. It shall rotat
15、e the disk at 25,0 +nm (at operating environment). The distance from the left hand side of the case to reference plane Y shall be Ls=3OO,Omm -g -. The distance from the right hand side of the case to reference plane Y shall be L6 = 20,0 nUtIf 0,2 mltl R1 = 5,O mmf 1,O mm. The thickness of the case s
16、hall be L7 = 17,o mm f 0,4 mm (at testing environment) = 17,o mm f 0,s mm (at operating environment). The eight long edges of the case shall be rounded with a radius R;!=O,5mmmax. OISO/IEC ISO/IEC 13403:1995(E) 10.3.2 Location hole (See figure 3.) The Location hole shall have a rounded triangular sh
17、ape. The comers shall be rounded with a radius R3 = 5,O mm f 0,l mm. The centre of the radius of the bottom comer shall be the point of the intersection of the planes X, Y and Z. The angle of this comer shall be 01=30”* lo Lg=18,Omm;$m The Location hole shall be held to a depth L9= 1,5mmmin. Below L
18、9 the Location hole shall extend to Llo=8mmmin. with an area equal to, or greater than the Location hole. The Location hole shall not extend through Side B. The lead-in edges shall be rounded with a radius RLl = 0,5 mmmax. 10.3.3 Alignment hole (See figure 3.) The Alignment hole shall have a rounded
19、 rectangular shape. The vertical centre line of the hole shall lie L11 =28O,Omm* 0,2 mm from reference plane Y. Its dimensions shall be L13 = 14,o mm f 0,5 mm. The comers shall be rounded with a radius R5 = 5,O mmf 0,5 mm. The centres of the radii for the bottom comers shall lie in plane X. The Alig
20、nment hole shall be held to a depth L9, below which the Alignment hole shall extend to Llo, with dimensions equal to, or greater than, L12 and L13, respectively. The Alignment hole shall not extend through Side B. The lead-in edges shall be rounded with a radius R4. 10.3.4 Reference surfaces (See fi
21、gure 4.) Each side of the case shall contain four reference surfaces Sl, S2, S3 and S4. Surfaces S1 and S2 shall be circular with a diameter Ill = 24,0 mmmin. The centre of S1 shall be located on the plane Y and L14 = 4,0 mm* 0,2mm above the plane X. The centre of S2 shall be centred at Lls =280,0 m
22、m* 0,3 mm from the plane Y and L16= 4,0-h 0,2 - 9 ISO/IEC 13403:1995(E) OISO/IEC above the plane X. Surfaces S3 and S4 shall be circular with a diameter LIZ= 16,Ommmin. with their centres located at L17=255,Omm*O,3 mm from the plane X and Lls= 5,0mmI;-, The disk is divided into five annular zones, w
23、hich are, from the centre to the outer edge, centre zone, clamping zone, transition zone, information zone and rim zone. The nominal value of the thickness of the disk except centre zone shall be in the range of 2,4 mm to 5,2 mm the tolerances for each nominal value of the thickness shah be within *
24、 0,2 mm. The centre of all radii in 11.3 lie on axis A. The positions of the top and bottom surfaces of the disk include changes due to the axial deflection of the disk and variations in the overall thickness of the disk, caused by e.g. the protective layer and/or adhesive labels. The dimensions of
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