SMPTE ST 398M-2004 Digital Video Recording - 1 2-in Type D-14 Component Format 525 60 and 625 50.pdf
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1、 Table of contents 1 Scope 2 Normative references 3 Environment and test conditions 4 Video tape 5 Helical recordings 6 Program track data 7 Video interface 8 Audio data interface 9 Video processing 10 Audio data processing 11 Longitudinal track Annex A Tape tension Annex B Cross-tape track measurem
2、ent technique Annex C Track pattern during insert editing Annex D Recorder block diagram contained in this document Annex E Reference and calibration tape Annex F Tape cassette Annex G Abbreviations Annex H Bibliography 1 Scope This standard specifies the content, format, and recording method of the
3、 data blocks containing video, audio, and associated data which form the helical records on 12.65-mm (0.5-in) tape. In addition, this standard specifies the content, format, and recording method of the longitudinal record containing tracking information for the scanning head associated with the heli
4、cal records, and also the longitudinal cue audio, and time and control code tracks. One video channel and eight independent AES3 audio data channels1)are recorded in the digital format. Each of these AES3 data channels is designed to be capable of independent editing. NOTE 1 Throughout the text of t
5、his standard, the expression “AES3 audio data” shall be abbreviated to “audio data” and represents digitized audio and data in AES-3 format. The video channel records and reproduces a component television signal in the 525-line system with a frame frequency of 29.97 Hz (hereafter referred to as the
6、525/60 system) and the 625-line system with a frame frequency of 25.00 Hz (hereafter referred to as the 625/50 system). Page 1 of 83 pages SMPTE 398M-2004 Copyright 2004 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 595 W. Hartsdale Ave., White Plains, NY 10607 (914) 761-1100 Approved Fe
7、bruary 3, 2004 SMPTE STANDARD for Digital Video Recording 1/2-in Type D-14 Component Format 525/60 and 625/50 SMPTE 398M-2004 Page 2 of 83 pages Figures 1 and 2 show block diagrams of typical recording and playback circuits. Figure 1 Record block diagram Figure 2 Playback block diagram (ANALOGCOMPON
8、ENT)ANALOG/DIGITALINTERFACEINTRA-FIELDSHUFFLEBLOCKSHUFFLEAUDIO(ANALOG)(DIGITAL AES3)VIDEOOUTERECCENCODERANALOG/DIGITALINTERFACEHELICALTRACKRECORDDRIVERAND HEADCHANNELCODERINNERECCENCODERDATAMUXSYNC/ID GEN.CONTROL TRACKINFORMATIONCONTROL TRACKGEN.TIME ANDCONTROLCODEEXTT.C. TIME CODEGEN.CUE(ANALOG)REC
9、. AMPRECORDDRIVERSAND HEADSCHANNELDEMUXSWITCHOUTERECCENCODERINTRA-FIELDSHUFFLE(DIGITALCOMPONENT)AUDIO(ANALOG)DIGITAL/ANALOGINTERFACEINTRA-FIELDDESHUFFLE(DIGITAL AES3)AUDIOERRORCONCEALOUTERECCDECODERBLOCKDESHUFFLEVIDEODIGITAL/ANALOGINTERFACEVIDEOERRORCONCEALHELICALTRACKPLAYBACKHEADPRE AMPAND EQ.CONTR
10、OL TRACKINFORMATIONCONTROL TRACKP.B.TIME ANDCONTROL CODET.C.TIME CODEREADERCUE(ANALOG)P.B. AMPHEADS ANDPLAYBACKINTERFACESYNCDETECCHANNELDECODERINNERECCDECODERDATADEMUXINTRA-FIELDDESHUFFLECHANNELMUXSWITCHOUTERECCDECODER(ANALOGCOMPONENT)(DIGITALCOMPONENT)SMPTE 398M-2004 Page 3 of 83 pages 2 Normative
11、references The following standards contain provisions, which through reference in this text, constitute provisions of this standard. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this standard are encouraged t
12、o investigate the possibility of applying the most recent edition of the standards indicated below. ANSI/SMPTE 125M-1995, Television Component Video Signal 4:2:2 Bit-Parallel Digital Interface ANSI/SMPTE 259M-1997, Television 10-Bit 4:2:2 Component and 4fsc Composite Digital Signals Serial Digital I
13、nterface ANSI/SMPTE 272M-1994, Television Formatting AES/EBU Audio and Auxiliary Data into Digital Video Ancillary Data Space SMPTE 12M-1999, Television, Audio and Film Time and Control Code SMPTE RP 155-1997, Audio Levels for Digital Audio Records on Digital Television Tape Recorders AES3-1992 (R19
14、97), Serial Transmission Format for two Channel Linearly Represented Digital Audio Data 3 Environment and test conditions 3.1 Environment Tests and measurements made on the system to check the requirements of this standard shall be carried out under the following conditions: Temperature 20 C 1 C Rel
15、ative humidity (50 2) % Barometric pressure from 86 kPa to 106 kPa Tape conditioning not less than 24 h Center tape tension 0.31 N 0.05 N (see annex A) 4 Magnetic tape 4.1 Base The base material shall be polyester or equivalent. 4.2 Width The tape width shall be 12.650 mm 0.008 mm. The tape, covered
16、 with glass, shall be measured without tension at a minimum of five different positions along the tape using a calibrated comparator having an accuracy of 0.001 mm (1 m). The tape width is defined as the average of the five readings. 4.3 Width fluctuation Tape width fluctuation shall not exceed 5 m
17、peak to peak. Measurement of tape width fluctuation shall be taken over a tape length of 900 mm. The value of tape width fluctuation shall be evaluated by measuring the tape width at 10 points, each separated by a distance of 100 mm. SMPTE 398M-2004 Page 4 of 83 pages 4.4 Tape thickness Two types of
18、 tape thickness shall be permitted by this standard. The first tape thickness shall be 10.2 m to 11.0 m (referred to as 11 m); the second tape thickness shall be 13.0 m to 14.0 m (referred to as 14 m). 4.5 Transmissivity Transmissivity shall be less than 5%, measured over the range of wavelengths 80
19、0 nm to 900 nm. 4.6 Offset yield strength The offset yield strength shall be greater than 9 N for 11-m tape and 10 N for 14-m tape. The force to produce 0.2 % elongation of a 1000-mm test sample with a pull rate of a 10-mm per minute shall be used to confirm the offset yield strength. The line begin
20、ning at 0.2 % elongation parallel to the initial tangential slope is drawn and then read at the point of intersection of the line 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 c
21、oating coercivity shall be a class 1800 (144000 A/m) with an applied field of 400000 A/m (5000 Oe) as measured by a 50-Hz or 60-Hz B-H meter or vibrating sample magnetometer (VSM). 4.9 Particle orientation The metal particles shall be longitudinally oriented. 5 Helical recordings 5.1 Tape speed The
22、tape speed shall be 167.228 mm/s (525/60 system) and 185.995 mm/s (625/50 system). The tolerance shall be 0.2 %. 5.2 Record location and dimensions 5.2.1 The format requires a full track width erasure for continuous recording and a flying erasure for insert editing. 5.2.2 Record location and dimensi
23、ons for continuous 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 be contained within the tolerances specified in figure 3 and tables 1 (525/60 system) and 2 (625/50 system). 5.2.3 The
24、reference edge of the tape for dimensions specified in this standard shall be the lower edge as shown in figure 3. The magnetic coating, with the direction of tape travel 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 figur
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