ANSI SMPTE ST 211M-2001 Motion-Picture Film - 16- and 35-mm Variable-Area Photographic Audio Records - Signal-to-Noise Ratio.pdf
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1、SMPTE STANDARD SMPTE 211 M-2001 Revision of ANSI/SMPTE 211M-1996 for Motion-Picture Film - 16- and 35-mm Variable-Area Photographic Audio Records - Signal-to-Noise Ratio 1 Scope This standard specifies a method for measuring the signal-to-noise ratio of 16- and 35-mm variable-area photographic audio
2、 records. 2 Definitions 2.1 biased, unmodulated audio record: A variable- area audio record with no input to the photo- graphic audio recorder, but with noise-reduction biasing used in accordance with normal practice for the recorder being used. 2.2 fully-modulated audio record: A var i a b I e - ar
3、ea audio record which has an amplitude equal to the maximum amplitude permitted by the ap- plicable standard defining the dimensions of the photographic audio records (see annex e). 2.3 system noise: The noise output of the repro- ducer itself. 2.4 unbiased, unmodulated audio record: A variable-area
4、 audio record recorded with no input to the photographic audio recorder, and with no noise-reduction biasing. 2.5 weighting network A circuit which alters the frequency response of the measuring apparatus by a prescribed amount to provide agreement between the measured signal-to-noise ratio and the
5、subjective impression of noisiness. Page 1 of 6 pages 3 Test method 3.1 Test track The test trackshall consist of three sections, recorded in sequence at the same lamp-current setting and printed at the same light step. 3.1.1 Section 1 shall consist of an audio record of 1000 Hz recorded at 80% of f
6、ull modulation and shall serve as the reference signal. The length of this section shall provide about 10 seconds of running time. When reproduced, this section shall have less than 5% harmonic distor- tion. 3.1.2 Section 2 shall be recorded with an unbi- ased, unmodulated audio record. The length o
7、f this section shall provide about 15 seconds of running time. 3.1.3 Section 3 shall be recorded with a biased, unmodulated audio record. The length of this section shall provide about 15 seconds of run- ning time. 3.2 Test measurements 3.2.1 The test track described in 3.1 shall be recorded and dev
8、eloped under standard condi- tions for the system being checked. There shall be sufficient unspliced film ahead of the test track to permit stabilization of printer speed. 3.2.2 The test track shall be reproduced, and the output of the reproducer shall be measured with the required test apparatus (s
9、ee 4.1 through 4.4). The signal level of section 1 (the reference signal) shall be measured without the weighting Copyright Q 2001 by THE SOCIETY OF MOTION PICNRE ANDTELNISION ENGINEERS 595 W. HaMale Ave., white Phi NY 108)7 (914) 761-1 1 Approved June 6,2001 SMPTE 211M-2001 - WEIGHTING NMRK REPRODU
10、CER network, and the signal level of sections 2 and 3 shall be measured with the weighting network. The unbiased, unmodulated signal-to-noise ratio (A) in decibels, shall be calculated as follows: AC VLmEER Vsl vs2 A= 20l0g - + 2dB where Vsi is the signal level of section 1 in volts and VS is the si
11、gnal level of section 2 in volts. The biased, unmodulated signal-to-noise ratio (B), in decibels, shall be calculated as follows: vs1 VS3 B= 20l0g - + 2dB where Vsi is the signal level of section 1 in volts and Va is the signal level of section 3 in volts. 3.2.3 Following the above measurements, the
12、 system noise shall be measured with the required test apparatus with the exciter lamp on, all driving and take-up motors on, and a 0.4 neutral-density filter placed at or near the film plane. The signal-to-system-noise ratio (C), in decibels, shall be calculated as follows: Vsl Vn C= 20l0g - + 2dB
13、where Vsi is the signal level of section 1 in volts and Vn is the signal level of system noise in volts. If the signal-to-system-noise ratio is not at least 1 O dB greater than the unbiased, unmodulated signal-to- noise ratio or the biased, unmodulated signal-to-noise ratio, whichever is greater, th
14、e system signal-to-noise ratio measurement shall be reported with the audio track signal-to-noise ratios. 4 Test equipment 4.1 Measuring devices Two types of measuring devices may be used: Type ITWARM consists of a weighting circuit with unity gain at 2000 Hz and an average response voltmeter. The s
15、ystem is described in 4.2. Type ITU consists of a weighting network with unity gain at 1000 Hz and a quasi-peak response volt- meter. The system is described in 4.3. Type ITU measurements should be made when the system to be measured contains significant amounts of impulse noise. The readings made o
16、n the two measuring systems are generally diff erent and cannot be compared. The type of measurement used shall be stated when giving the result. 4.2 ITU/ARM measuring apparatus An acceptable signal-to-noise measuring apparatus is shown in figure 1. 4.2.1 Weighting network 4.2.1.1 The nominal respon
17、se of the weighting network shall vary with frequency in accordance with the numerical values shown in the second column in table 1. Figure 1 - Measuring apparatus for signal-to-noise ratio Page 2 ot 6 pages SMPTE 211M-2001 Table 1 -Weighting curve ITWARM ITU Frequency response response Tolerance (H
18、z) (dB) (dB) (dB) 31.5 63.0 100.0 200.0 400.0 800.0 1000.0 2000.0 31 50.0 4000.0 5000.0 6300.0 71 00.0 8000.0 9000.0 10 000.0 12 500.0 14 000.0 16 000.0 20 000.0 31 500.0 -35.5 -29.5 -25.4 -1 9.4 -1 3.4 - 7.5 - 5.6 0.0 + 3.4 + 4.9 + 6.1 + 6.6 + 6.4 + 5.8 + 4.5 + 2.5 - 5.6 -1 0.9 -1 7.3 -27.8 -48.3 -
19、29.9 -23.9 -1 9.8 -1 3.8 - 7.8 - 1.9 0.0 + 5.6 + 9.0 +10.5 +11.7 +12.2 +12.0 +11.4 +10.1 + 8.1 0.0 - 5.3 -1 1.7 -22.2 -42.7 I 2.00 f 1.40* 1: 1.00 f 0.85 I 0.70* t 0.55* I 0.50 f 0.50 I 0.50* f 0.50* f 0.50 0.0 f 0.20* f 0.40* I 0.60* I 0.80 f 1.20* f 1.40* f 1.65* t 2.00 + 2.80“ -OD This tolerance
20、is obtained by linear interpolation or a logarithmic graph on the basis of values specifiec for the frequencies used to define the mask; .e. 31.5, 100, 1000, 5000, 6300, and 20 O00 Hz. 4.2.1.2 The permissible differences between the response curve of the measuring network and the nominal response of
21、 the weighting network shall be as shown in the last column of table 1. 4.2.1.3 The weighting network shall be provided with a means of bypassing or defeating itself. 4.2.2 Voltmeter 4.2.2.1 The ITWARM voltmeter shall provide a voltage indication proportional to the average value of the rectified si
22、gnal. It shall have suffi- cient sensitivity so that the noise signals will cause a meter deflection of at least one-third of full scale. 4.2.2.2 The voltmeter shall be free from exces- sive overswing, determined as follows: When a 1000-Hz signal is suddenly applied to the input at an amplitude whic
23、h would give a steady read- ing of approximately two-thirds of full scale, there shall be less than 0.3 dB momentary ex- cess reading. 4.3 ITU measuring apparatus An acceptable signal-to-noise measuring apparatus is shown in figure 1. 4.3.1 Weighting network 4.3.1.1 The nominal response of the ITU w
24、eighting network shall vary with frequency in accordance with the numerical values shown in the third column of table 1. J: 4.3.1.2 The permissible differences between the response curve of the measuring networks and the nominal response of the weighting network shall be as shown in the last column
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