ANSI SMPTE ST 230M-1996 Television Analog Recording - 1 2-in Type L - Electrical Parameters Control Code and Tracking Control.pdf
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1、 - STD-SMPTE 23UM-ENGL 377b 8357403 0002578 57b SMPTE STANDARD ANSVSMPTE 230M-1996 Revision of ANSIICMPTE 230M-1991 for Television Analog Recording - U2-h Type L- Electrical Parameters, Control Code and Tracking Control 1 Scope 1.1 This standard specifies the electrical pa- rameters of video, audio,
2、 time and control code, and tracking-control signais for 1/2-n type L helical-scan video tape recorders operating with video signals having a typical scanning structure of 525 lines, 59.94 fields per second, and 2:l interlace. This standard specifies two recording modes: Mode 1 uses oxide-particte t
3、ape, and mode 2 uses metal-particle tape and permits audio frequency modulation (AFM) signals to be recorded. 1.2 Where nominal values are given without tol- erances, interchange performance will be limited by implementation accuracy. 2 Normative references The following standards contain provisions
4、 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 to investigate the possibility of applying the most re
5、cent edition of the standards indicated below. ANSIIEEE 152-1 992, Audio Program Level Measure- ment ANWSMPTE 12M-1995, Television, Audio and Film -Time and Control Code ANSI/SMPTE 238M-1992, Television Analog Record- ing - 1/2-in Type L - Tapes and Cassettes Page 1 of 13 pages IEC 268-12 (1987), Pa
6、rt 12: Application of Connec- tors for Broadcast and Similar Use ITU-R BT.470-4, Television Systems 3 Video recording This component video recording system is intended to operate compatibly in an NTSC environment. To achieve this, the levels and ratios used in the format are derived from the monochr
7、ome or composite input signal as defined in 3.4. The video recording system shall provide separate signal paths for the luminance and color-difference signals. These component signals shall be recorded on two separate tracks designated respectively as the Y track for the luminance signal and the C t
8、rack for the color-difference signals. The R-Y and B-Y color- difference signals shall be recorded in the form of a compressed time-division multiplexed signal on the C track. When operating in mode 2, two AFM signals may be recorded in addition to the compressed color- difference signals. 3.1 Mode
9、selection 3.1.1 Two modes of operation are defined for the following tape types: - Oxide-particle tape: Mode 1 - Metal-particle tape: Mode 2 3.1.2 Sensing of tape type shall be automatic by means of a sensing hole in the cassette as described in ANSVSMPTE 238M. CAUTION NOTICE: This Standard may be r
10、evised or withdrawn at any time. The procedures of the Standard Developer require that action be taken to reaffirm, revise, or withdraw this standard no later than five years from the date of publication. Purchasers of standards may receive current information on all standards by calling or writing
11、the Standard Developer. Printed in USA. L American National Standard Copyright O 1996 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 595 W. Harisdale Ave., White Plains, NY 10607 (914) 761-1100 Approved October 10,1996 _ STD-SMPTE 230fl-ENGL L77b 8357LiOL 0002577 Li02 ANSVCMPTE 2301111-19
12、96 3.2 Luminance channel 3.2.1 Signal Processing Asigna1 processing system, as specified in this stand- ard, shall contain the following elements in the order of the signal flow. 3.2.1.1 A means for modifying the sync portion of the luminance signal. 3.2.1.2 A means for insertion of a vertical inter
13、- val subcarrier is required in mode 2 when the signal to be recorded has been decoded from a composite source as defined in ITU-R BT.470-4. The vertical interval subcarrier (VISC) is optional in mode 1. INPUT LUMINANCE SIGNAL MODIFIED LUMINANCE SKiNAL 3.2.1.3 A video nonlinear preemphasis process.
14、3.2.1.4 A video preemphasis network. 3.2.1.5 A means for clipping the video signal after preemphasis. 3.2.1.6 A linear frequency modulator having constant deviation with respect to the amplitude of the modulating frequencies. 3.2.1.7 An amplifier to provide current drive to the Y channel record head
15、s. 3.2.2 Modification of sync portion Means shall be used to modify the pulse width and amplitude of the sync portion as shown in figure 1. Uduu 525 12 3 4 5 6 ? 9 I u- i -ORIGINAL WAVEFORM- I (NOT MOOIFIED) I INPUT LUMINANCE SIGNAL I I MODIFIED LWINANCE SIGNAL L NOTES 2 Rise time a-b should be 180
16、ns with an approximate gaussian shape at the 10% and 90% points. 3 Dimension c is the midpoint of the a-b transition. 4 See annex A.1, of this signal may or may not be present. It is not part of the format. Figure 1 - Waveform of the modified luminance sync (vertical sync and equalizing pulse portio
17、n remains unmodified) Page 2 of 13 pages STD-SMPTE 230M-ENGL L97b , H.P.F. L.P.F. - 3.2.3 Luminance nonlinear preemphasis - The luminance signal shall receive nonlinear preem- phasis (see figure 2). The characteristics shall be as shown in table 1. LIMITER - M Table 1 - Video nonlinear preemphasis c
18、haracteristics MHz 0.2 0.5 1 .o 1.5 2.0 3.0 4.0 5.0 dalue: Input (d6) -30 -20 -15 -10 -5 O 0.4 0.4 0.4 0.4 0.3 0.2 1.9 1.7 1.7 1.4 0.8 0.4 4.6 4.0 3.5 2.4 1.3 0.7 6.7 5.6 4.6 3.0 1.6 0.9 8.0 6.6 4.9 3.3 1.8 1.1 9.5 7.5 5.3 3.6 2.2 1.3 9.9 7.6 5.3 3.6 2.2 1.4 9.9 7.3 5.1 3.3 2.0 1.2 are in decibels.
19、NOTE - The phase of the side chain (Q2) shall be equal to the phase of the input signal (l) at 3.58 MHz pnorto the mixing. Figure 2 - Block diagram of video nonlinear preernphasis 3.2.4 Luminance preemphasis Preemphasis is defined by the frequency and phase characteristics of the network shown in fi
20、gure 3 when fed from a zero impedance source and feeding an infinite impedance load. 3.2.5 Amplitude clipping For an input signal where blanking is at 0% and peak white at loo%, any positive or negative amplitude excursion exceeding the levels shown in table 2 shall be clipped. rn 8357401 0002580 32
21、4 rn ANCVSMPTE 230M-1996 O 1 - O Figure 3 - Preemphasis network Table 2 - Luminance amplitude clipping characteristics I Mode 1 Mode 2 Positive excursion limit +310% nom +324% nom +315% max +329% max Negative excursion limit -125% nom -214% nom -1 30% max -21 9% max I 3.2.6 Recorded carrier frequenc
22、y Carrier frequencies corresponding to reference video levels shall be as shown in table 3 when recording a flat-field signal. Table 3 - Carrier frequencies corresponding to reference video levels Mode 1 Mode 2 100% white 6.4 MHz nom 7.7 MHz nom 7.0 MHz nom 50% level 5.7 MHz nom Blanking 4.97 f 0.05
23、 MHz 6.27 f 0.05 MHz Sync tip 4.4 MHz nom 5.7 MHz nom Deviation 1.43 f 0.05 MHz 1.43 f 0.05 MHz (blanking to peak white) 3.2.7 Y track record head current 3.2.7.1 The amplitude of the record current for the Y track shall be such that the maximum level of remanent flux on the tape is produced when re
24、cording a Y signal with 50% amplitude flat field. 3.2.7.2 The amplitude of the Y track record cur- rent shall decrease with increasing frequency in the range 2 MHz to 10 MHz, according to a straight line contained within limit lines as shown in figure 4. Page 3 of 13 pages ANSVSMPTE 2301111-1996 O R
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