ITU-T O 41-1994 Psophometer for Use on Telephone-Type Circuits - Specifications for Measuring Equipment - Equipment for the Measurement of Analogue Parameters (Study Group 4) 17 pp.pdf
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1、ITU-T RECMN*0.43 94 4862593 Ob00377 868 INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU 0.41 (1 0/94) SPECIFICATIONS FOR MEASURING EQUIPMENT EQUIPMENT FOR THE MEASUREMENT OF ANALOGUE PARAMETERS PSOPHOMETER FOR USE ON TELEPHONE-TYPE CIRCUITS ITU-T Recommend
2、ation 0.41 (Previously “CCITT Recommendation”) FOREWORD The ITU-T (Telecommunication Standardization Sector) is a permanent organ of the International Telecommunication Union (ITU). The ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommen- dations on them
3、with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WT?SC), which meets every four years, establishes the topics for study by the ITU-T Study Groups which, in their turn, produce Recommendations on these topics. The approval o
4、f Recommendations by the Members of the IT-T is covered by the procedure laid down in WTSC Resolution No. 1 (Helsinki, March 1-12, 1993). ITU-T Recommendation 0.41 was revised by ITU-T Study Group 4 (1993-1996) and was approved under the WTSC Resolution No. 1 procedure on the 15th of October 1994. N
5、OTE In this Recommendation, the expression ?Administration? is used for conciseness to indicate both a telecommunication administration and a recognized operating agency: O ITU 1995 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic
6、 or mechanical, including photocopying and microfilm, without permission in writing from the ITU. CONTENTS 1 Introduction 2 General . 3 Specific requirements . 3.1 3.2 3.3 3.4 3.5 3.6 3.7 3.8 3.9 3.10 Input impedance 3.1.1 Terminating mode . 3.1.2 Bridging mode 3.1.3 Complex input impedances . Longi
7、tudinal losses . Calibration accuracy at 800 Hz . Relative gain versus frequency (frequency weighting) 3.5.1 Optional frequency characteristic . Detector circuit characteristics 3.6.1 Detector circuitry tests 3.6.2 Turnover Detector and display dynamics (measurement averaging time) . 3.7.1 Instrumen
8、tation with continuous signal monitoring . 3.7.2 Instrumentation with non-continuous signal monitoring . Measuring range . 3.7.3 Damped response Linearity Operating environment . Output indicator 3.10.1 Immunity to electromagnetic fields Annex A . Comparison of ITU-T and North American weightings .
9、Annex B . Level and noise measurements at interfaces with complex impedances . Level measurements at interfaces with real impedance . General considerations . Level measurements at interfaces with complex impedances . B.2.1 B.2.2 B . 1 B.2 Level meters with complex input impedances Psophometers with
10、 complex input impedances B.3 Conclusion References . Page 1 1 1 1 1 2 2 2 2 2 2 4 4 5 5 5 5 6 6 6 6 6 7 7 10 10 11 11 12 12 13 Recommendation 0.41 (10/94) 1 ABSTRACT Defines the basic requirements for an instrument to measure noise and other interfering signals on telephone circuits. KEYWORDS Compl
11、ex impedances, measurement, noise measurement, psophometer, tester, weighting filter. 11 Recommendation 0.41 (10/94) Recommendation 0.41 PSOPHOMETER FOR USE ON TELEPHONE-TYPE CIRCUITS (Published 1972; revised 1984, 1988,1992, 1995) 1 Introduction This Recommendation provides basic requirements for p
12、sophometers to be used for the measurement of noise and other interfering signals on international telephone circuits and circuit sections. 2 General To accomplish the measurements as stated above, a psophometer should have the following significant characteristics: a) The relative sensitivity of th
13、e instrument, at various frequencies, should be as specified by the psophometric weighting characteristics. (See Note.) The reference point for the sensitivity of the instrument should be O dBm (one milliwatt) at 800 Hz. The r.m.s. (root mean square) value of the weighted noise signal should be dete
14、cted and displayed. (See Note.) The dynamics of the detector and display device should meet requirements given in clause 3. The overall accuracy of the instrument when being used in its normal range and environmental conditions should be * 1 .O dB or better. Specific tests for accuracy of various as
15、pects of the instrument are given in clause 3. NOTE - The characteristics of the weighting filter combined with an r.m.s. detector can be described by the formula (Pp means psophometric power): b) c) d) e) In this formula, W(f) is the weighting filter of the psophometer with the limiting frequencies
16、 F1 = 16.66 Hz and F2 = 6 kHz as given in Table 1. b) sinusoidal signais; c) any periodic signal having a peak-to-r.m.s. ratio of 8 dB or less. 4 Recommendation 0.41 (10/94) ITU-T RECMN*O-41 94 M 48b2.591 Ob00385 934 TABLE 2/0.41 Characteristics of the optional flat filter with an equivalent noise b
17、andwidth of 3.1 kHz (bandwidth of a telephone channel) Frequency (Hz) 3400 Attenuation Increasing 24 dB/octave (Note 1) Approximately 3 dB (Note 2) I k 0.25 dB OdB I $: 0.25 dB Approximately 3 dB (Note 2) Increasing 24 dB/octave (Note 1) NOTES 1 24 dBfoctave up to an attenuation of at least 50 dB. 2
18、 3.1 kHz k 155 Hz. Below 300 Hz and above 3400 Hz the attenuation shall increase at a slope not less than The exact cut-off frequency shall be chosen to achieve an equivalent noise bandwidth of 3.6.1 Detector circuitry tests The following test is recommended to assure that the detector circuitry is
19、functioning as prescribed. a) Apply pulses of an 1800 Hz sine wave at a pulse rate of 80 Hz, with 20 percent of the cycle at full amplitude and 80 percent of the cycle 8.4 dB below full amplitude. The indicated r.m.s. value should be 5.0 2 0.5 dB lower than the level of the ungated full amplitude si
20、ne wave. Alternatively, psophometers manufactured to previous design specifications (see Annex A) shall meet the following test: Successively apply two sinusoidal signals of different frequencies, which are not harmonically related and which provide the same output level on the output indicator. The
21、n apply both these signals at the same levels simultaneously. The increase on the output indicator should be 3 dB t: 0.25 dB above the reading for the single frequency input. This condition should be fulfilled using different pairs of frequencies at different levels. b) 3.6.2 Turnover Apply a rectan
22、gular wave form with a 20 percent duty cycle and a repetition rate of 600 pulses per second to the input of the instrument, and note the noise reading. Invert the input leads, the two readings shall agree within 1 dB. This test should be performed at several levels over the specified operating range
23、 of the set. 3.7 Detector and display dynamics (measurement averaging time) The response time for the detector and indicating means shall meet one or both of the following requirements: 3.7.1 Instrumentation with continuous signai monitoring The application of an 800 Hz sinusoidal signal with a dura
24、tion of 150 to 250 ms should produce an output indication which is the same as that produced by the application of a continuous 800 Hz signal of the same amplitude. Applied signals of shorter duration should produce lower readings on the output indicator. Recommendation 0.41 (10/94) 5 ITU-T RECMN*0-
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