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Database: 365,228(8 Aug 2026)

Impedance tube design

Impedance tube design, Total:175 items.

The international standard classification for "Impedance tube design" includes: Acoustics measurements and noise abatement in general , Therapy equipment , Explosives. Pyrotechnics , Rectifiers. Convertors. Stabilized power supply , Equipment for petroleum and natural gas industries , Aerospace electric equipment and systems .

The Chinese standard classification for "Impedance tube design" includes: Acoustic Measurement , Radio Measurement , Physiotherapy and TCM instrument and equipment , Chemical product , Power semiconductor device and parts , Petrochemical and chemical industry engineering , Chemical equipment , Electronic components .


National Metrological Verification Regulations of the People's Republic of China

未注明发布机构

  • ASTM RR-E33-1006 1991 C0384-Standard Test Method for Impedance and Absorption of Acoustical Materials by Impedance Tube Method
  • IEEE Std 844.4-2019 IEEE/CSA Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning, and Maintenance
  • AS/NZS 1935.1:1998(R2016) Acoustics - Determination of Sound Absorption Coefficient and Impedance in Impedance Tubes Part 1: Method Using Standing Wave Ratio

National Metrological Technical Specifications of the People's Republic of China

  • JJF 1883-2020 Calibration Specification for Standard Sample in Impedance Tube Absorption
  • JJF 1446-2014 Calibration Specification for Impedance Tubes(Transfer Function Method)
  • JJF 1771-2019 Program of Pattern Evaluation for Measuring Instruments of Aural Acoustic Impedance/Admittance

国家药监局

  • YY/T 1661-2019 Electrical resistance detector at acupuncture points equipment

Professional Standard - Petroleum

  • SY/T 0450-2004 Code for seismic design of oil and gas steel pipeline
  • SY/T 0450-1997 Seismic design code of oil and gas buried steel pipeline

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 18696.1-2004 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1:Method using standing wave ratio
  • GB/T 27603-2011 Measurement of radiofrequency impedance for industrial electric detonator
  • GB/T 43534-2023 Design and testing methods for AC side impedance of voltage source converter based high voltage direct current(VSC-HVDC) transmission
  • GB/T 18696.2-2002 Acoustics - Determinatio of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer function method

Group Standards of the People's Republic of China

  • T/XAI 10-2021 Test equipment for impedance value of package substrate
  • T/QGCML 3251-2024 Light-emitting diode thermal impedance test method
  • T/CSA 047-2019 Measurement Method for Real Thermal Resistance and Impedance of Light Emitting Diodes

Professional Standard - Railway

  • TB/T 2828-1997 Calculation Method of Impedance of Electrified Railway Traction Network

Professional Standard - Petrochemical Industry

  • SH/T 3039-2018 Specification for seismic design of non一buried pipe in petrochemical industry
  • SH/T 3039-2003 General seismic design rule of non-buried pipe for petrochemical industry
  • SHJ 39-1991 General rules for antiseismic design of unburied piping for petrochemical enterprises

Professional Standard - Electron

  • SJ 20788-2000 Measurment method for thermal impedance of semiconductor diodes

Professional Standard - Aerospace

IPC - Association Connecting Electronics Industries

Association Francaise de Normalisation

  • NF EN 60645-5:2005 Electroacoustics - Audiometric equipment - Part 5: instruments for measuring aural impedance or admittance (impedance meters or admittance meters)
  • NF A48-888*NF ISO 16134:2020 Earthquake-resistant and subsidence-resistant design of ductile iron pipelines
  • NF S31-079-2*NF EN ISO 10534-2:2003 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2 : transfer-function method
  • NF EN ISO 10534-2:2003 Acoustics - Determination of sound absorption factor and impedance of impedance tubes - Part 2: transfer function method
  • NF S31-079-1*NF EN ISO 10534-1:2003 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1 : method using standing wave ratio
  • NF EN ISO 10534-1:2003 Acoustics - Determination of sound absorption factor and acoustic impedance using the impedance tube - Part 1: standing wave rate method
  • NF EN 13941-1+A1:2021 District heating pipes - Design and installation of thermally insulated single- or two-pipe blocked systems for directly buried hot water networks - Part 1: design
  • NF EN 13941-1/IN1:2021 District heating pipes - Design and installation of thermally insulated single- or two-pipe blocked systems for directly buried hot water networks - Part 1: design
  • NF ISO 16134:2020 Design of ductile iron pipelines resistant to earthquakes and subsidence phenomena

SCC

  • ANSI/ASTM C384-1977 Impedance and Absorption of Acoustical Materials by the Impedance Tube Method
  • ANSI/ASTM C384-1985 Impedance and Absorption of Acoustical Materials by the Impedance Tube Method
  • CSA C293.4:19/IEEE 844.4-2019 IEEE/CSA Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning, and Maintenance
  • IEEE/CSA 844.4-2019 IEEE/CSA Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning, and Maintenance
  • DANSK DS/EN ISO 10534-1:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1: Method using standing wave ratio
  • DANSK DS/EN ISO 10534-2:2001 Acoustics – Determination of sound absorption coefficient and impedance in impedance tubes – Part 2: Transfer-function method
  • NS-EN ISO 10534-1:2001 Acoustics — Determination of sound absorption coefficient and impedance in impedances tubes — Part 1: Method using standing wave ratio (ISO 10534-1:1996)
  • CAN/HSO 5030:2020 Antimicrobial Stewardship Program
  • NS-EN ISO 10534-2:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedances tubes - Part 2: Transfer-function method (ISO 10534-2:1998)

GSO

  • GSO ISO 16134:2022 Earthquake-resistant and subsidence-resistant design of ductile iron pipelines
  • BH GSO ISO 16134:2023 Earthquake-resistant and subsidence-resistant design of ductile iron pipelines
  • OS GSO ISO 10534-1:2013 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 1: Method using standing wave ratio
  • GSO ISO 10534-1:2013 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 1: Method using standing wave ratio
  • OS GSO ISO 10534-2:2013 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 2: Transfer-function method
  • GSO ISO 10534-2:2013 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 2: Transfer-function method

IEEE - The Institute of Electrical and Electronics Engineers@ Inc.

  • IEEE P844.4/C293.4/D1-2018 Draft Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design@ Installation@ Testing@ Commissioning@ and Maintenance
  • IEEE P844.4/C293.4/D0-2018 Draft Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design@ Installation@ Testing@ Commissioning@ and Maintenance

Institute of Electrical and Electronics Engineers (IEEE)

  • IEEE Std 844.4-2019/CSA C293.4:19 IEEE/CSA Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning, and Maintenance
  • IEEE Std 844.4-2019*CSA C293.4:19 IEEE/CSA Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning, and Maintenance
  • IEEE P844.4/C293.4/D0, August 2018 IEEE/CSA Draft Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning and Maintenance
  • IEEE P844.4/C293.4/D1, November 2018 IEEE/CSA Approved Draft Standard for Impedance Heating of Pipelines and Equipment - Application Guide for Design, Installation, Testing, Commissioning and Maintenance

British Standards Institution (BSI)

  • BS ISO 16134:2020 Earthquake-resistant and subsidence-resistant design of ductile iron pipelines
  • BS EN ISO 10534-2:2001 Acoustics. Determination of sound absorption coefficient and impedance in impedance tubes - Transfer-function method
  • BS EN ISO 10534-1:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedances tubes - Method using standing wave ratio
  • BS EN ISO 10534-2:1999 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Transfer-function method
  • 19/30387803 DC BS ISO 16134. Earthquake and subsidence-resistant design of ductile iron pipelines
  • BS EN ISO 10534-2:2001(2002) Acoustics — Determination of sound absorption coefficient and impedance in impedance tubes — Part 2 : Transfer - function method
  • BS EN ISO 11990-1:2011 Lasers and laser-related equipment. Determination of laser resistance of tracheal tubes. Tracheal tube shaft
  • BS EN ISO 11990-1:2014 Lasers and laser-related equipment. Determination of laser resistance of tracheal tubes. Tracheal tube shaft
  • BS ISO 10534-2:1999 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Transfer-function method
  • ASME B31.E-2008 Standard for the Seismic Design and Retrofit of Above-Ground Piping Systems
  • BS EN 61188-1-2:1998 Printed boards and assemblies. Design and use. Generic requirements. Generic requirements. Controlled impedance
  • BS ISO 16134:2006 Earthquake- and subsidence-resistant design of ductile iron pipelines
  • KIT 212-2010 Design of structures for earthquake resistance

Korean Agency for Technology and Standards (KATS)

  • KS D ISO 16134-2013 Earthquake- and subsidence-resistant design of ductile iron pipelines
  • KS D ISO 16134-2007(2012) Earthquake- and subsidence-resistant design of ductile iron pipelines
  • KS D ISO 16134:2007 Earthquake- and subsidence-resistant design of ductile iron pipelines
  • KS D ISO 16134:2013 Earthquake- and subsidence-resistant design of ductile iron pipelines
  • KS F 2814-1-2016(2021) Determination of sound absorption coefficient and impedance in impedance tubes Part 1:Method using standing wave ratio
  • KS F 2814-1-2016 Determination of sound absorption coefficient and impedance in impedance tubes Part 1:Method using standing wave ratio
  • KS F 2814-1-2021 Determination of sound absorption coefficient and impedance in impedance tubes Part 1:Method using standing wave ratio
  • KS F 2814-2-2022 Acoustics-determination of sound absorption coefficient and impedance in impedance tubes-Part 2:Transfer-function method
  • KS F 2814-1-2001 Determination of sound absorption coefficient and impedance in impedance tubes Part 1:Method using standing wave ratio
  • KS F 2814-2-2002(2022) Acoustics-determination of sound absorption coefficient and impedance in impedance tubes-Part 2:Transfer-function method
  • KS F 2814-2-2002(2017) Acoustics-determination of sound absorption coefficient and impedance in impedance tubes-Part 2:Transfer-function method
  • KS F 2814-2-2002 Acoustics-determination of sound absorption coefficient and impedance in impedance tubes-Part 2:Transfer-function method
  • KS R 9190-2003 Railway signaling equipment-Impedance bonds-Test methods
  • KS A ISO 6258:2006 Nuclear power plants-Design against seismic hazards
  • KS A ISO 6258-2006(2021) Nuclear power plants-Design against seismic hazards
  • KS A ISO 6258-2021 Nuclear power plants-Design against seismic hazards
  • KS A ISO 6258-2006(2016) Nuclear power plants-Design against seismic hazards

Institute of Interconnecting and Packaging Electronic Circuits (IPC)

  • IPC 2141A-2004 Design Guide for High-Speed Controlled Impedance Circuit Boards

International Organization for Standardization (ISO)

  • ISO 16134:2006 Earthquake- and subsidence-resistant design of ductile iron pipelines
  • ISO 16134:2020 Earthquake-resistant and subsidence-resistant design of ductile iron pipelines
  • ISO 10534-1:1996 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1: Method using standing wave ratio
  • ISO 10534-2:1998 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method
  • ISO 6258:1985 Nuclear power plants; Design against seismic hazards
  • ISO/FDIS 4917-6:2023 Design of Nuclear Power Plants against Seismic Events
  • ISO 4917-3:2024 Design of nuclear power plants against seismic events
  • ISO 4917-4:2024 Design of nuclear power plants against seismic events
  • ISO/FDIS 4917-4:2023 Design of Nuclear Power Plants against Seismic Events
  • ISO 4917-1:2024 Design of nuclear power plants against seismic events
  • ISO/FDIS 4917-1:2023 Design of Nuclear Power Plants against Seismic Events
  • ISO 4917-6:2024 Design of nuclear power plants against seismic events
  • ISO/DIS 4917-5:2023 Design of Nuclear Power Plants against Seismic Events
  • ISO/FDIS 4917-3:2023 Design of Nuclear Power Plants against Seismic Events

Japanese Industrial Standards Committee (JISC)

  • JIS A 1405:1998 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Method using standing wave ratio
  • JIS A 1405-1:2007 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 1: Method using standing wave ratio
  • JIS A 1405-2:2007 Acoustics -- Determination of sound absorption coefficient and impedance in impedance tubes -- Part 2: Transfer-function method

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.

YU-JUS

RU-GOST R

CZ-CSN

German Institute for Standardization

  • DIN EN ISO 10534-1:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedances tubes - Part 1: Method using standing wave ratio (ISO 10534-1:1996); German version EN ISO 10534-1:2001
  • DIN EN ISO 10534-2:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method (ISO 10534-2:1998); German version EN ISO 10534-2:2001
  • DIN EN ISO 10534-2 Berichtigung 1:2007-11 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method (ISO 10534-2:1998); German version EN ISO 10534-2:2001, Corrigenda to DIN EN ISO 10534-2:2001-10 / Note: To be replaced by DIN...
  • DIN EN ISO 10534-2 Berichtigung 1:2007 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method (ISO 10534-2:1998); German version EN ISO 10534-2:2001, Corrigenda to DIN EN ISO 10534-2:2001-10
  • DIN EN ISO 10534-2:2001-10 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method (ISO 10534-2:1998); German version EN ISO 10534-2:2001 / Note: To be replaced by DIN EN ISO 10534-2 (2022-10).

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE)

Lithuanian Standards Office

  • LST 1380-1995 Cardiovascular examination. Electrocardiography, rhytmography, impedance cardiography sphygmomanometry. Terms
  • LST EN ISO 10534-2:2002 Acoustics - Determination of sound absorption coefficient and impedance in impedances tubes - Part 2: Transfer-function method (ISO 10534-2:1998)

AASHTO - American Association of State Highway and Transportation Officials

CU-NC

  • NC 90-19-16-1987 Metrological Assurance. Impedance Meters. Methods and Means of Verification

The American Road & Transportation Builders Association

ESDU - Engineering Sciences Data Unit

US-FCR

Danish Standards Foundation

  • DS/EN ISO 10534-2:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 2: Transfer-function method
  • DS/EN ISO 10534-1:2001 Acoustics - Determination of sound absorption coefficient and impedance in impedance tubes - Part 1: Method using standing wave ratio

American Society for Testing and Materials (ASTM)

  • ASTM C384-04(2016) Standard Test Method for Impedance and Absorption of Acoustical Materials by Impedance Tube Method
  • ASTM C384-04(2011) Standard Test Method for Impedance and Absorption of Acoustical Materials by Impedance Tube Method
  • ASTM C384-04 Standard Test Method for Impedance and Absorption of Acoustical Materials by Impedance Tube Method
  • ASTM C384-03 Standard Test Method for Impedance and Absorption of Acoustical Materials by the Impedance Tube Method

American Institute of Steel Construction (AISC)

CN-STDBOOK

European Committee for Standardization (CEN)

  • EN ISO 10534-2:2001 Acoustics - Determination of Sound Absorption Coefficient and Impedance in Impedances Tubes - Part 2: Transfer-Function Method

(U.S.) Joint Electron Device Engineering Council Soild State Technology Association

  • JEDEC JESD24-12-2004 Thermal Impedance Measurement for Insulated Gate Bipolar Transistors (Delta VCE(on) Method) (This is an alternative method to JEDEC Standard No. 24-6)

GM North America

American Society of Mechanical Engineers (ASME)

  • ASME B31E Addenda-2010 Standard for the Seismic Design and Retrofit of Above-Ground Piping Systems
  • ASME B31E-2008 Standard for the Seismic Design and Retrofit of Above-Ground Piping Systems

American National Standards Institute (ANSI)

NZ-SNZ

  • AS/NZS 1935.1:1998 Acoustics - Determination of Sound Absorption Coefficient and Impedance in Impedance Tubes Part 1: Method Using Standing Wave Ratio

European Committee for Electrotechnical Standardization(CENELEC)

  • CLC/TR 50450-2006 Resistibility requirements for equipment having (a) telecommunication port(s)

AENOR

  • UNE-EN ISO 10534-2:2002 Acoustics - Determination of sound absorption coefficient and impedance in impedances tubes - Part 2: Transfer-function method. (ISO 10534-2:1998)

American Society of Civil Engineers (ASCE)

American Concrete Institute

ACI - American Concrete Institute

Manufacturers Standardization Society of the Valve and Fitting Industry (MSS)

  • MSS SP-127-2014 Bracing for Piping Systems Seismic - Wind - Dynamic Design, Selection, Application