ANSI SMPTE ST 279M-2001 Digital Video Recording - 1 2-in Type D-5 Standard-Definition Component Video and Type HD-D5 High-Definition Video Compressed Data.pdf
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1、SMPTE STANDARD SMPTE 279M-2001 Revision of ANSVSMPTE 279M-1996 a for Digital Video Recording - 1/2-in Type D-5 Standard-Definition Component Video and Type HD-D5 10-kHz tone at reference level b) A signal of constant frequency (Le., one-half the Nyquist frequency) shall be recorded only on the track
2、s of field O, segment O for the purpose of mechanical align- ment. The recording level should conform to that in 6.6.3. 4 Videotape 4.1 Base The base material shall be polyester or equivalent. 4.2 Width The tape width shall be 12.650 mm I 0.008 mm. The tape, covered with glass, shall be measured wit
3、hout tension at a minimum of five different positions along the tape using a calibrated comparator having an accuracy of 0.001 mrn (1 pm). The tape width is defined as the average of the five readings. Page 3 of 88 pages SMPTE 279M-2001 Table 1 - Record location and dimensions (525/60 system) Dimens
4、ions Nominal Tolerance A B C D E F G H I KO K1 L M P1 P2 x1 x2 x3 x4 x5 X6 Y Time and control code track lower edge Time and control code track upper edge Control track lower edge Control track upper edge Program area lower edge Program area width Cue audio track lower edge Cue audio track upper edg
5、e Helical track pitch Video sector O length Video sector 1 length Helical track total length Audio sector length Control track reference pulse to program reference point (see figure 4) CueAime and control code signal, start of code word, to program reference point (see figure 4) Location of start of
6、 video sector VO Location of start of audio sector Al ) Location of start of audio sector A2) Location of start of audio sector A3) Location of start of audio sector A4) Location of start of video sector V1) Program reference point O 0.450 0.900 1.300 1.629 10.020 11.950 12.550 0.0200 55.458 55.391
7、11 6.397 0.936 180.549 183.400 O 55.752 57.049 58.345 59.642 60.938 1.640 Basic f 0.050 f 0.050 f 0.050 Derived Derived f 0.050 f 0.050 Ref Derived Derived Derived Derived f 0.050 i 0.100 f 0.050 f 0.050 f 0.050 f 0.050 i 0.050 i 0.050 Basic - e Track angle 4.9384 Basic cc0 Azimuth angle (track O) -
8、20.038 f 0.1 50 CL1 Azimuth anale (track 1) 19.962 f 0.1 50 NOTES 1 Measurements shall be made under the conditions specified in 3.1. The measurements shall be corrected to account for actual tape speed (see figures B.l and 8.2). 2 All dimensions are in millimeters. ) Audio channel numbers vary. Pag
9、e 4 of 88 pages SMPTE 2791111-2001 Table 2 - Record location and dimensions (625150 system) Dimensions Nominal Tolerance A B C D E F G H I KO K1 L M P1 P2 x1 x2 x3 x4 x5 X6 Y Time and control code track lower edge Time and control code track upper edge Control track lower edge Control track upper ed
10、ge Program area lower edge Program area width . Cue audio track lower edge Cue audio track upper edge Helical track pitch Video sector O length Video sector 1 length Helical track total length Audio sector length Control track reference pulse to program reference point (see figure 4) Cue/time and co
11、ntrol code signal, start of code word, to program reference point (see figure 4) Location of start of video sector VO Location of start of audio sector Al) Location of start of audio sector A2) Location of start of audio sector A3) Location of start of audio sector A4l) Location of start of video se
12、ctor V1 ) Proaram reference Doint O 0.450 0.900 1.300 1.716 9.940 11.950 12.550 0.01 80 55.066 54.993 11 5.558 0.936 179.606 182.995 O 55.344 56.631 57.91 8 59.205 60.492 1.728 Basic f 0.050 f0.050 f 0.050 De rived Derived f 0.050 f 0.050 Ref Derived Derived Derived Derived f 0.050 f 0.1 O0 f 0.050
13、f 0.050 f0.050 f 0.050 f 0.050 f 0.050 Basic 0 Track angle 4.9345 O Basic ao Azimuth angle (track O) -20.035“ f 0.1 50 a1 Azimuth angle (track 1) 19.965“ f 0.1 50 NOTES 1 Measurements shall be made under the conditions specified in 3.1. The measurements shall be corrected to account for actual tape
14、speed (see figures B.l and 8.2). 2 All dimensions are in millimeters. ) Audio channel numbers vary. Page 5 of 88 pages SMPTE 279M-2001 4.3 Width fluctuation Tape width fluctuation shall not exceed 5 pm peak to peak. Measurement of tape width fluctuation shall be taken over a tape length of 900 mm. T
15、he value of tape width fluctuation shall be evaluated by measuring the tape width at 1 O points, each separated by a distance of 100 mm. 4.4 Tape thickness Two types of tape thickness shall be permitted by this standard. The first tape thickness shall be 10.2 pm to 11.0 pm (referred to as 11 pm); th
16、e second tape thick- nessshallbe13.0pmto 14.0pm (referredtoas 14pm). 4.5 Transmissivity Transmissivity shall be less than 5%, measured over the range of wavelengths 800 nm to 900 nm. 4.6 Offset yield strength The offset yield strength shall be greater than 9 N for Il-pm tape and 10 N for 14-pm tape.
17、 The force required to produce 0.2% elongation of a 1000-mm test sample with a pull rate of 10-mm per minute shall be used to confirm the offset yield strength. The line beginning at 0.2% elongation parallel to the initial tangential slope is drawn and then read at the point of intersection of the l
18、ine and the stress-strain curve. 4.7 Magnetic coating The magnetic layer of the tape shall consist of a coating of metal particles or equivalent. 4.8 Coating coercivity The coating coercivity shall be a class 1800 (144000 Alm) with an applied field of 400000 Alm (5000 Oe) as measured by a 50-Hz or 6
19、0-Hz B-H meter or vibrating sample magnetometer (VSM). 4.9 Particle orientation The metal particles shall be longitudinally oriented. 5 Helical recording 5.1 Tape speed The tape speed shall be 167.228 mm/s. The tolerance shall be k 0.2%. 5.2 Record location and dimensions 5.2.1 The format requires f
20、ull-width erasure for continuous recording and flying erasure for in- sert editing. 5.2.2 Record location and dimensions for con- tinuous recording shall be as specified in figures 3 and 4 and tables 1 (525/60 system) and 2 (625/50 system). In recording, sector locations on each helical track shall
21、be contained within the tolerance specified in figure 3 and tables 1 (525/60 system) and 2 (625150 system). 5.2.3 The reference edge of the tape for record location dimensions specified in this standard shall be the lower edge as shown in figure 3. The magnetic coating, with the direction of tape tr
22、avel as shown in figure 3, is on the side facing the observer (measuring techniques are shown in annex B). . 5.2.4 As indicated in figure 3, this standard antici- pates a zero guard band between recorded tracks, and the record head width should be equivalent to the track pitch of 20 krn (525160 syst
23、em) or 18 pm (625/50 system). The scanner head configuration should be chosen such that the recorded track widths are contained within the limits of 18 pm to 22 pm (525160 system) or 16 pm to 20 pm (625150 system). 5.2.5 In insert editing, this standard provides a guard band of 2 mm (nominal) betwee
24、n the pre- viously recorded track and the inserted track at editing points only. A typical track pattern for insert editing is shown in figure C.l of annex C. 5.3 Helical track record tolerance zones The lower edges of any eight consecutive tracks starting at the first track in each video frame shal
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