ANSI INCITS ISO IEC 9171-2-1990 Information technology - 130 mm optical disk cartridge write once for information interchange - Part 2 Recording format (Adopted by INCITS).pdf
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1、INTERNATIONAL STANDARD ISO/IEC 9171-2 First edition 1990-12-15 Information technology - 130 mm optical disk cartridge, write once, for information interchange - Part 2: Recording format Technologies de linformation - Cartouche de disque optique de 130 mm, non-kinscrip tible, pour r - the environment
2、 in which the characteristics are to be tested; - the environment in which the cartridge is to be operated and stored; - the mechanical, physical and dimensional characteristics of the case and of the optical disk; - the optical characteristics and the recording characteristics for recording the inf
3、ormation once and for reading it many times, so as to provide physical interchangeability between data processing systems. ISO/IEC 9171-1 and ISO/IEC 9171-2, together with a standard for volume and file structure, provide for full data interchange between data processing systems. INTERNATIONAL STAND
4、ARD ISO/IEC 9171-2:1990 (E) Information technology - 130 mm optical disk cartridge, write once, for information interchange - Part 2: Recording format 1 *ape This part of ISO/IEC 9171 specifies two formats for the physical disposition of the tracks and sec- tors, the error correction codes, the modu
5、lation methods used for recording and the quality of the recorded signals. 2 Conformance An optical disk is in conformance with Part 2 of this International Standard if it meets all manda- tory requirements of clause 4 and either those of clause 5 or those of clause 6. A prerequisite for conformance
6、 with this part of ISO/IEC 9171 is conformance with ISO/IEC 9171-l. 3 Conventions and notations The following conventions and notations apply in this part of ISO/IEC 9171. 4 In each field the information is recorded so that the most significant byte (byte 0) is recorded first. Within each byte the l
7、east significant bit is numbered bit 0, the most significant bit (i.e. bit 7 in an JO specify, at constant pulse width, the write power P, in milliwatts indicated by the manufacturer of the disk. P, is expressed as a number n between 0 and 255 such that n=5P, In these bytes T stands for the constant
8、 pulse width, T for the time length of one Channel bit and r for the radius considered. Byte 22 This byte shall specify P, for: T = T x 1 ,OO r = 30mm Byte 23 This byte shall specify P, for: T = TX I,00 r = 45mm Byte 24 This byte shall specify P, for: T = T x 1,OO I = 60mm Byte 25 This byte shall sp
9、ecify P, for: T = T x 0,50 r = 30mm Byte 26 This byte shall specify P, for: T = TX 0,50 r = 45mm Byte 27 This byte shall specify P, for: 7- = T x 0,50 r = 60mm Byte 28 This byte shall specify P, for: T = T x 0,25 r = 30mm Byte 29 This byte shall specify P, for: T = T x 0,25 r = 45mm 10 ISO/IEC 9171-
10、2:1990 (E) Byte 30 This byte shall specify P, for: T = T x 0,25 r = 60mm Byte 31 This byte shall specify a constant write power P, in milliwatts as a number n between 0 and 255 such that Byte 32 n= 5P, This byte shall specify the write pulse width Tp in nanoseconds expressed by a number n between 0
11、and 255 such that n = Tp for the constant write power specified by byte 31 and at a radius r = 30 mm. Byte 33 This byte shall specify the write pulse width Tp in nanoseconds expressed by a number n between 0 and 255 such that n = Tp for the constant write power specified by byte 31 and at a radius r
12、 = 45 mm. Byte 34 This byte shall specify the write pulse width Tp in nanoseconds expressed by a number n between 0 and 255 such that n = Tp for the constant write power specified by byte 31 and at a radius r = 60 mm. Bytes 35 to 47 These bytes shall be set to (FF). (See also Annex A). Byte 48 This
13、byte shall specify, at wavelength L1, the rotational frequency N2 in hertz as a number n between 0 and 255 such that Byte 49 n = N2 This byte shall specify the maximum read power P2 in milliwatts for the User Zone as a number n between 0 and 255 such that Bytes 50 to 62 n = 2OP2 For the values speci
14、fied in bytes 18, 19, 48 and 49, bytes 50 to 62 shall specify the parameters indicated in bytes 22 to 34. ISO/lEC 9171-2:1990 (E) Bytes 63 to 75 These bytes shall be set to (FF). Byte 76 This byte shall specify, at wavelength L1, rotational frequency N3 in hertz expressed as a number n between 0 and
15、 255 such that Byte 77 n = N3 This byte shall specify the maximum read power P3 in milliwatts for the user zone, as a number n between 0 and 255 such that Bytes 78 to 90 n = 20 P3 For the values specified in bytes 18, 19, 76 and 77, bytes 78 to 90 shall specify the parameters indicated in bytes 22 t
16、o 34. Bytes 91 to 103 These bytes shall be set to (FF). Byte 104 This byte shall specify, at wavelength L 1, rotational frequency N4 in hertz as a number n between 0 and 255 such that Byte 105 n = N4 This byte shall specify the maximum read power PJ in milliwatts for the user zone as a number n betw
17、een 0 and 255 such that Bytes 106 to 118 n = 2OP4 For the values specified in bytes 18, 19, 104 and 105, bytes 106 to 118 shall specify the para- meters indicated in bytes 22 to 34. Bytes 119 to 131 These bytes shall be set to (FF). Byte 132 This byte shall specify wavelength L2 in nanometres as a n
18、umber n between 0 and 255 such that n = 115 L2 Byte 133 This byte shall specify the baseline reflectance R2 at wavelength L2 as a number n between 0 and 100 such that n = lOOR 12 ISO/-lEC 9171-2:1990 (E) Bytes 134 to 245 The allocation of information to, or the setting of, these bytes shall correspo
19、nd to those of bytes 20 to 131. The values specified shall be for L2 (byte 132) and R2 (byte 133). Byte 246 This byte shall specify wa.velength L3 in nanometres as a number n between 0 and 255 such that Byte 247 n = l/5 L3 This byte shall specify the baseline reflectance R3 at wavelength L3 as a num
20、ber n between 0 and 100 such that Bytes 248 to 359 n = 100 R3 The allocation of information to, or the setting of, these bytes shall correspond to those of bytes 20 to 131. The values specified shall be for L3 (byte 246) and R3 (byte 247). Bytes 360 to 383 These bytes shall be set to (FF). (See also
21、 Annex A). 13 ISO/IEC 9171-2:1990 (E) Table 2 - Summary of media information in the SFP Zone . - Mandatory / P / RI (19) Ll (18) %) Construe N2 P, - (50) to (62) (48) (49) ;6) ;!77) - (78) to (90) - (106) to (118) (104) (105) Set to (FF) I (35 to 47) (63) to (75) (91) to (103) (119) to (131) Nl P, -
22、 (136) to (148) (149) to (161) (134) (135) L2 - R2 P, - (164) to (176) (177) to (189) (132) N2 (133) (162) (163) N3 P, - (192) to (204) (205) to (217) (190) (191) ) %4 P; - (220) to (232) (233) to (245 (21f3) (219) L3-R (246) ($47 1 Q Nl (248) N2 (276) N (304) N4 (332) 4.5.3 System Information P, (2
23、49) pr (277) P, (305) P, (333) - (250) to (262) (263) to (275) - (278) to (290) (291) to (303) - (306) to (318) (319) to (331) _ (334) to (346) (347) to (383) Bytes 384 and 385 specify in binary notation the track number N of the last track in the User Zone. The total number of tracks in this zone i
24、s (N + 1). Byte 384 This byte shall specify the most significant byte of this number. Byte 385 This byte shall specify the least significant byte of this number. Bytes 386 to 479 4.5.4 These bytes shall be set to (FF). (See also Annex A). Unspecified Content The contents of bytes 480 to 511 are not
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