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Calibration Specification for Underwater Sound Transducers in 1 kHz to 200 kHz
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Basic data
| Standard ID | JJF 1861-2020 (JJF1861-2020) |
| Description (Translated English) | Calibration Specification for Underwater Sound Transducers in 1 kHz to 200 kHz |
| Sector / Industry | Metrology & Measurement Industry Standard |
| Classification of Chinese Standard | A59 |
| Word Count Estimation | 26,298 |
| Date of Issue | 2020-09-11 |
| Date of Implementation | 2021-03-11 |
| Regulation (derived from) | Announcement No. 40 (2020) of the State Administration for Market Regulation |
| Issuing agency(ies) | State Administration for Market Regulation |
JJF 1861-2020: Calibration Specification for Underwater Sound Transducers in 1 kHz to 200 kHz
---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Calibration Specification for Underwater Sound Transducers in 1 kHz to.200 kHz
National Metrology Technical Specifications of the People's Republic of China
1kHz~200kHz underwater acoustic transducer calibration specification
2020-09-11 released
2021-03-11 implementation
Issued by the State Administration for Market Regulation
1kHz~200kHz underwater acoustic transducer
Calibration specification
Focal point. National Technical Committee of Acoustics Measurement
Main drafting unit. 715 Research Institute of China Shipbuilding Industry Corporation
Participated in the drafting unit. Institute of Acoustics, Chinese Academy of Sciences
726 Research Institute of China Shipbuilding Industry Corporation
This specification entrusts the National Acoustics Metrology Technical Committee to be responsible for interpretation
The main drafters of this specification.
Yi Wensheng (The 715th Research Institute of China Shipbuilding Industry Corporation)
Zhao Songyang (The 715th Research Institute of China Shipbuilding Industry Corporation)
Zhao Han (The 715th Research Institute of China Shipbuilding Industry Corporation)
Participating drafters.
Mo Xiping (Institute of Acoustics, Chinese Academy of Sciences)
Wang Yan (The 726 Research Institute of China Shipbuilding Industry Corporation)
table of Contents
Introduction (Ⅱ)
1 scope (1)
2 References (1)
3 Terms and measurement units (1)
3.1 Equivalent electrical impedance mode (1)
3.2 Equivalent electrical admittance mode (1)
3.3 Free field sensitivity (1)
3.4 Free-field sensitivity level (2)
3.5 Send voltage response (2)
3.6 Sending voltage response level (2)
3.7 Send current response (2)
3.8 Send current response level (2)
3.9 Sound source level(2)
3.10 Directivity pattern (2)
4 Overview (2)
5 Metering characteristics (3)
5.1 Equivalent electrical impedance mode, equivalent electrical admittance mode (3)
5.2 Free-field sensitivity level (3)
5.3 Sending voltage response level (3)
5.4 Send current response level (3)
5.5 Sound source level(3)
5.6 Directivity (3)
6 Calibration conditions (3)
6.1 Environmental conditions (3)
6.2 Measurement standards and other equipment (3)
7 Calibration items and calibration methods (4)
7.1 Calibration items (4)
7.2 Calibration method (4)
8 Calibration result expression (9)
8.1 Calibration data processing (9)
8.2 Calibration certificate (9)
8.3 Measurement uncertainty of calibration results (10)
9 Recheck interval (10)
Appendix A Contents of Calibration Certificate (11)
Appendix B Pulse Sound Calibration Technology (14)
Appendix C Evaluation Example of Measurement Uncertainty (16)
Introduction
JJF 1071-2010 "Rules for the Compilation of National Metrology and Calibration Specifications", JJF 1001-2011 "General Metrology Terms and
Definition" and JJF 1059.1-2012 "Evaluation and Expression of Measurement Uncertainty" together constitute the support for the formulation of this specification
The basic series of specifications. This code was formulated with reference to GB/T 7965-2002 "Acoustic Underwater Acoustic Transducer Measurement
Quantities" and GB/T 7967-2002 "High-power characteristics and measurement of acoustic hydroacoustic transmitters".
This specification is released for the first time.
1kHz~200kHz underwater acoustic transducer calibration specification
1 Scope
This specification applies to the calibration of underwater acoustic transducers in the frequency range of 1kHz to.200kHz.
2 Reference documents
This specification refers to the following documents.
JJG449-2014 Octave and Fractional Octave Filter
JJF 1001 General measurement terms and definitions
JJF 1034 Acoustic measurement terms and definitions
JJF 1059.1-2012 Measurement Uncertainty Evaluation and Expression
GB/T 3102.7 Acoustic quantities and units
GB/T 3947-1996 Acoustic terms
GB/T 7965-2002 Acoustic and underwater acoustic transducer measurement
GB/T 7967-2002 High-power characteristics and measurement of acoustic hydroacoustic transmitter
For dated reference documents, only the dated version applies to this specification; for undated reference documents,
The latest version (including all amendments) is applicable to this specification.
3 Terms and units of measurement
The following terms and definitions defined by JJF 1001, JJF 1034 and GB/T 3947-1996 apply to this code.
This specification adopts the quantities and units specified in GB/T 3102.7.
3.1 Equivalent electrical impedance mode
At a certain frequency, the complex ratio of the instantaneous voltage at the electrical terminal of the underwater acoustic transducer to the instantaneous current caused is the equivalent electrical impedance,
Its amplitude is the equivalent electrical impedance modulus, the symbol is |Z|.
Note. The unit is ohm (Ω).
3.2 Equivalent conductivity nanomode
The reciprocal of the equivalent electrical impedance of the underwater acoustic transducer is the equivalent electrical admittance, and its amplitude is the equivalent electrical admittance mode, with the symbol |Y|.
Note. The unit is Siemens (S).
3.3 Free field sensitivity
The open-circuit voltage at the output of the receiving transducer is the same as the reference sound center of the transducer before the transducer is introduced into the sound field
The ratio of the free-field sound pressure at, the symbol is M.
Note. The unit is Volts per Pa (V/Pa).
[JJF 1034-2005, definition 3.64]
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