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Database: 365,228(8 Aug 2026)

Determination of streaming voltage

Determination of streaming voltage, Total:228 items.

The international standard classification for "Determination of streaming voltage" includes: Rectifiers. Convertors. Stabilized power supply , Cranes , Flow in closed conduits , Measurement of electrical and magnetic quantities .

The Chinese standard classification for "Determination of streaming voltage" includes: Power semiconductor device and parts , Hoisting machinery , Flow capacity and material level instrument , Mechanics Measurement , AC/DC electrical instrument recording instrument .


中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会

  • GB/T 20989-2017 Determination of power losses in high-voltage direct carrent(HVDC) converter stations

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

  • GB/T 19924-2005 Mobile cranes - Determination of stability
  • GB/Z 43963-2024 Guidance for determination of clearances, creepage distances and requirements for solid insulation for equipment with a rated voltage above 1 000 V AC and 1 500 V DC, and up to 2 000 V AC and 3 000 V DC
  • GB/T 22264.2-2008(英文版) Fixed digital electric measuring instruments—Part 2: Special requirements for ammeters and voltmeters
  • GB/T 27759-2011 Measurement of fluid flow—Procedures for the evaluation of uncertainties
  • GB/T 20989-2007 Determination of power losses in high-voltage direct current(HVDC)converter stations
  • GB/T 30965-2014 Earth-moving machinery―Determination of average ground contact pressure for crawler machines.

国家市场监督管理总局、中国国家标准化管理委员会

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

  • JJG(航天) 52-1988 Verification Regulations for Precision Thermoelectric DC Voltage Converter
  • JJG 640-1994 Verification Regulation of Differential Pressure Type Flowmeter

Professional Standard - Aerospace

  • QJ 1144-1987 Rated power, voltage and speed of AC power station for crawler launch vehicle

Taiwan Provincial Standard of the People's Republic of China

  • CNS 5516-1980 Induction Type Overcurrent Relay for High Voltage Receiving

未注明发布机构

Professional Standard - Machinery

  • JB/T 9299-1999 Stabilized voltage supply a.c. output magnetic amplifier type

Group Standards of the People's Republic of China

  • T/CEEIA 467-2020 Guidance for determination of clearances; creepage distances and requirements for solid insulation for equipment with a rated voltage above 1 000 V a.c. and 1 500 V d.c. up to 2 000 V a.c. and 3 000 V d.c.

International Organization for Standardization (ISO)

  • ISO 4305:1991 Mobile cranes; determination of stability
  • ISO 4305:1981 Mobile cranes — Determination of stability
  • ISO 4305:2014/Amd 1:2016 Mobile cranes — Determination of stability
  • ISO/TR 5168:1998 Measurement of fluid flow - Evaluation of uncertainties
  • ISO 5168:2005 Measurement of fluid flow - Procedures for the evaluation of uncertainties
  • ISO/FDIS 24660:2023 Fans — Determination of airflow propelled through an open personnel door by a positive pressure ventilator
  • ISO/DIS 24660 Fans — Determination of airflow propelled through an open personnel door by a positive pressure ventilator
  • ISO 12669:2017 Hydraulic fluid power - Method for determining the required cleanliness level (RCL) of a system
  • ISO 5168:1978 Measurement of fluid flow; Estimation of uncertainty of a flow-rate measurement

Institute of Electrical and Electronics Engineers (IEEE)

  • IEEE Std C37.04I-1991 Rating structure for ac high-voltage circuit breakers rated on a symmetrical current basis; supplement
  • IEEE Std C57.110-1986 Recommended practice for establishing transformer capability when supplying nonsinusoidal load currents
  • IEEE PC57.134/D4.0, January 2024 IEEE Draft Guide for Determination of Hottest-Spot Temperature in Dry-Type Distribution and Power Transformers
  • IEEE Std C37.06.1-2000 Guide for High-Voltage Circuit Breakers Rated on Symmetrical Current Basis Designated “Definite Purpose for Fast Transient Recovery Voltage Rise Times”
  • IEEE Std C57.110/COR-2002 Recommended practice for establishing transformer capability when supplying nonsinusoidal load currents
  • IEEE Std C57.110-2008 Establishing liquid-filled and dry-type power and distribution transformer capability when supplying nonsinusoidal load currents
  • IEEE Std C37.016-2006 AC high-voltage circuit switchers rated 15.5 kV through 245 kV
  • IEEE Std C37.012-2005 Application guide for capacitance current switching for ac high-voltage circuit breakers
  • IEEE PC37.114/D8, April 2014 IEEE Draft Guide for Determining Fault Location on AC Transmission and Distribution Lines
  • IEEE PC37.114/D9, July 2014 IEEE Draft Guide for Determining Fault Location on AC Transmission and Distribution Lines
  • IEEE Std 848-1996 IEEE Standard Procedure for the Determination of the Ampacity Derating of Fire-Protected Cables
  • ANSI C37.06.1-2000 American National Standard Guide for High-Voltage Circuit Breakers Rated on Symmetrical Current Basis Designated -Definite Purpose for Fast Transient Recovery Voltage Rise Times
  • IEEE 1601-2010 Trial-Use Standard for Optical AC Current and Voltage Sensing Systems

Korean Agency for Technology and Standards (KATS)

SCC

  • BS EN 61803:1999 Determination of power losses in high-voltage direct current (HVDC) converter stations
  • DANSK DS/EN 61803:2000 Determination of power losses in high-voltage direct current (HVDC) convertor stations
  • CEI EN 61803/A2:2011 Determination of power losses in high-voltage direct current (HVDC) converter stations - This standard illustrates a method for determining losses in high-voltage direct current converter stations. This publication contains ...
  • CEI EN 61803:2011 Determination of power losses in high-voltage direct current (HVDC) converter stations - This standard illustrates a method for determining losses in high-voltage direct current converter stations. This publication contains ...
  • UNE 21428-4:1996 THREE PHASE OIL-IMMERSED DISTRIBUTION TRANSFORMERS 50 HZ, FROM 2 500 KVA WITH HIGHEST VOLTAGE FOR EQUIPMENT NOT EXCEEDING 36 KV. PART 4: DETERMINATION OF THE POWER RATING OF A TRANSFORMER LOADED WITH NON-SINUSOIDAL CURRENTS.
  • CSA C9.1-M1981-1981(C2001) Guide to Load Determination of Distribution Transformers and Dry-Type Power Transformers
  • CEI EN 50563:2013 External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes
  • CEI EN 50563/A1:2013 External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes
  • DANSK DS/EN 50563:2011 External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes
  • DANSK DS/EN 50563/A1:2011 External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes
  • BS EN 61803:1999+A2:2016 Determination of power losses in high-voltage direct current (HVDC) converter stations line-commutated converters
  • CEI EN IEC 62751-2/A2:2015 Determination of power losses in voltage sourced converter (VSC) valves for high voltage direct current (HVDC) systems Part 2: Modular multilevel converters
  • CEI EN 62751-2:2015 Determination of power losses in voltage sourced converter (VSC) valves for high voltage direct current (HVDC) systems Part 2: Modular multilevel converters
  • CEI EN IEC 61803:2021 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • DANSK DS/EN IEC 61803:2020 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • DIN EN 62751-2 E:2013 Draft Document - Determination of power losses in voltage sourced converter (VSC) valves for high voltage direct current (HVDC) systems - Part 2: Modular multilevel converters
  • DIN EN 50563/AA E:2014 Draft Document - External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes; German version EN 50563:2011/FprAA:2013
  • UNE 21538-3:1997 THREE-PHASE DRY-TYPE DISTRIBUTION TRANSFORMERS 50 HZ, FROM 100 TO 2 500 KVA, WITH HIGHEST VOLTAGE FOR EQUIPMENT NOT EXCEEDING 36 KV. PART 3: DETERMINATION OF THE POWER RATING OF A TRANSFORMER LOADED WITH NON-SINUSOIDAL CURRENT.
  • DIN EN 50563 E:2011 Draft Document - External a.c. - d.c. and a.c. - a.c. power supplies - Determination of no-load power and average efficiency of active modes; German version FprEN 50563:2011
  • DANSK DS/HD 538.3 S1:1997 Three-phase dry-type distribution transformers 50 Hz, from 100 to 2500 kVA, with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal current
  • CEI 14-22:1998 Three-phase dry-type distribution transformers 50 Hz, from 100 to 2500 kVA, with a maximum voltage for the component not exceeding 36 kV - Part 3: Determination of the equivalent rated power of a transformer having load current...
  • CEI EN 62751-1/A2:2015 Determination of power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems Part 1: General requirements
  • CEI EN 62751-1:2015 Determination of power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems Part 1: General requirements
  • CEI EN IEC 63210:2022 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V
  • BS PD IEC/TS 60076-19:2013 Power transformers. Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • AENOR UNE 21538-3:1997 Three-phase dry type transformers, for low voltage distribution, from 100 to 2,500 kVA, 50 Hz, with higher voltage for material up to 36 kV. Part 3: Determination of the power characteristics of a current-loaded transformer...
  • DIN EN 50541-2 E:2012 Draft Document - Three phase dry-type distribution transformers 50 Hz, from 100 to 3150 kVA, with highest voltage for equipment not exceeding 36 kV - Part 2: Determination of the power rating of a transformer loaded with non-sinusoidal current; German ...
  • AENOR UNE-EN 50541-2:2014 Three-phase dry type 50 Hz distribution transformers, from 100 kVA to 3,150 kVA, with higher voltage for material up to 36 kV. Part 2: Determination of the power characteristics of a transformer loaded with non-sinusoidal currents...
  • CEI EN IEC 60076-19-1:2024 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of the losses of power transformers
  • AENOR UNE-CLC/TR 50462:2009 Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • DANSK DS/EN 50464-3:2007 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV – Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • UNE-EN 50464-3:2010 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV -- Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • DANSK DS/CLC/TR 50462:2008 Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • CEI CLC/TR 50462:2009 Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • CEI EN 50464-3:2007 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • CEI EN 50541-2:2014 Three phase dry-type distribution transformers 50 Hz, from 100 to 3 150 kVA, with highest voltage for equipment not exceeding 36 kV Part 2: Determination of loadability of a transformer loaded with nonsinusoidal current
  • AENOR UNE-EN 50464-3:2010 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • DANSK DS/EN IEC 60076-19-1:2023 Power transformers – Part 19-1: Rules for the determination of uncertainties in the measurement of the losses of power transformers
  • AENOR UNE-EN 60076-19:2016 Power transformers. Part 19: Rules for the determination of uncertainties in the measurement of power transformer losses and reactances.
  • DIN IEC 61803/A1 E:2009 Draft Document - Determination of power losses in high-voltage direct current (HVDC) converter stations (IEC 22F/196/CD:2009)
  • DIN EN 61803/A2 E:2015 Draft Document - Determination of power losses in high-voltage direct current (HVDC) converter stations (IEC 22F/356/CD:2014)
  • DANSK DS/EN 50541-2:2013 Three phase dry-type distribution transformers 50 Hz, from 100 kVA to 3 150 kVA, with highest voltage for equipment not exceeding 36 kV – Part 2: Determination of loadability of a transformer loaded with non-sinusoidal current
  • DANSK DS/EN 60076-19:2015 Power transformers – Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • DANSK DS/IEC/TS 60076-19:2013 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of losses in power transformers and reactors
  • 12/30267005 DC PD IEC/TS 60076-19. Power transformers. Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • IEC 60056-4A:1974 Supplement A - High-voltage alternating-current circuit-breakers - Part 4: Type tests and routine tests - Appendix E: Methods of determining prospective transient recovery voltage waves
  • DANSK DS/IEC TS 62993:2017 Guidance for determination of clearances, creepage distances and requirements for solid insulation for equipment with a rated voltage above 1 000 V AC and 1 500 V DC, and up to 2 000 V AC and 3 000 V DC
  • FCI 68-2-1998(R2003) Recommended Procedure in Rating Flow and Pressure Characteristics of Solenoid Valves for Liquid Service (Including Determination of the Valve Flow Coefficient - Cv/Kv)
  • DIN EN 62751-1/A1 E:2016 Draft Document - Determination of power losses in voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) systems - Part 1: General requirements (IEC 22F/423/CD:2016)
  • DIN EN IEC 60076-19-1:2024 Power transformers - Part 19-1: Rules for the determination of uncertainties in the measurement of the losses of power transformers (IEC 60076-19-1:2023); German version EN IEC 60076-19-1:2023
  • BS PD IEC TS 63471:2023 DC voltages for HVDC grids
  • DIN IEC /TS 62993 E:2016 Draft Document - Guidance for determination of clearances - Creepage distances and requirements for solid insulation for equipment with a rated voltage above 1000 V a.c. and 1500 V d.c. up to 2000 V a.c. and 3000 V d.c. (IEC 109/151B/CD:2016)
  • DIN EN IEC 61803 E:2019 Draft Document - Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters (IEC 22F/514/CD:2018); Text in German and English
  • DIN EN 60076-19:2016 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors (IEC/TS 60076-19:2013, modified); German version EN 60076-19:2015
  • DANSK DS/EN IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V
  • AS C356.2:1966 Stationary type spot and projection resistance welding equipment (single-phase a.c. transformer type)

ES-UNE

  • UNE-EN 61803:1999 Determination of power losses in high-voltage direct current (HVDC) converter stations (Endorsed by AENOR in May of 2001.)
  • UNE-EN 61803:1999/A2:2016 Determination of power losses in high-voltage direct current (HVDC) converter stations with line commutated converters (Endorsed by AENOR in November of 2016.)
  • UNE-EN IEC 61803:2020 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters (Endorsed by Asociación Española de Normalización in January of 2021.)
  • UNE-EN 61803:1999/A1:2010 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters (Endorsed by AENOR in April of 2011.)
  • UNE-EN IEC 60076-19-1:2023 Power transformers - Part 19-1: Rules for the determination of uncertainties in the measurement of the losses of power transformers
  • EN IEC 60076-19-1:2023 Power transformers - Part 19-1: Rules for the determination of uncertainties in the measurement of the losses of power transformers
  • UNE-EN 60076-19:2016 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • UNE-EN IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V (Endorsed by Asociación Española de Normalización in June of 2021.)

GSO

  • OS GSO ISO 17559:2015 Hydraulic fluid power -- Electrically controlled hydraulic pumps -- Test methods to determine performance characteristics
  • GSO ISO 17559:2015 Hydraulic fluid power -- Electrically controlled hydraulic pumps -- Test methods to determine performance characteristics
  • BH GSO IEC 61803:2016 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • GSO IEC 61803:2014 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • OS GSO IEC/TS 60076-19:2014 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of losses in power transformers and reactors
  • BH GSO IEC/TS 60076-19:2015 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of losses in power transformers and reactors
  • GSO IEC/TS 60076-19:2014 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of losses in power transformers and reactors
  • GSO ISO 5168:2008 Measurement of fluid flow -Procedures for evaluation of uncertainties.
  • OS GSO ISO 5168:2008 Measurement of fluid flow -Procedures for evaluation of uncertainties.
  • GSO ISO 4392-3:2013 Hydraulic fluid power -- Determination of characteristics of motors -- Part 3: At constant flow and at constant torque

British Standards Institution (BSI)

  • BS ISO 17559:2003 Hydraulic fluid power. Electrically controlled hydraulic pumps. Test methods to determine performance characteristics
  • BS ISO 10767-1:2015 Hydraulic fluid power. Determination of pressure ripple levels generated in systems and components. Method for determining source flow ripple and source impedance of pumps
  • BS EN 60076-19:2015 Power transformers. Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • BS 7821-4:1995(1999) Three phase oil - immersed distribution transformers, 50 Hz, from 50 to 2500 kVA with highest voltage for equipment not exceeding 36 kV — Part 4 : Determination of the power rating of a transformer loaded with non - sinusoidal currents
  • BS ISO 15086-3:2022 Hydraulic fluid power. Determination of the fluid-borne noise characteristics of components and systems - Measurement of hydraulic impedance
  • BS EN IEC 60076-19-1:2023 Power transformers Part 19 - 1 : Rules for the determination of uncertainties in the measurement of the losses on power transformers
  • BS EN IEC 60034-2-3:2024 Rotating electrical machines - Specific test methods for determining losses and efficiency of converter-fed AC motors
  • BS 4062-2:1990 Valves for hydraulic fluid power systems. Methods for determining performance
  • 20/30335823 DC BS EN 60076-19. Power transformers. Part 19. Rules for the determination of uncertainties in the measurement of the losses on power transformers
  • BS ISO 6358-2:2019 Pneumatic fluid power. Determination of flow-rate characteristics of components using compressible fluids - Alternative test methods
  • 21/30436064 DC BS EN IEC 60076-19. Power transformers. Part 19. Rules for the determination of uncertainties in the measurement of the losses on power transformers
  • BS EN IEC 60034-2-3:2020 Rotating electrical machines. Specific test methods for determining losses and efficiency of converter-fed AC motors
  • BS ISO 12669:2017 Hydraulic fluid power. Method for determining the required cleanliness level (RCL) of a system
  • BS ISO 5168:2005 Measurement of fluid flow - Procedures for the evaluation of uncertainties
  • BS ISO 8426:2008 Hydraulic fluid power - Positive displacement pumps and motors - Determination of derived capacity
  • 22/30426288 DC BS ISO 5352. Hydraulic fluid power. Determining discharge flow rate and thermal losses of gas loaded accumulators
  • BS 7844-3:1998 Three-phase dry-type distribution transformers 50 Hz, from 100 to 2500 kVA with highest voltage for equipment not exceeding 36 kV - Determination of the power rating of a transformer loaded with non-sinusoidal current
  • BS EN IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V

CZ-CSN

  • CSN 33 3030-1986 Determination of transient recovery voltage forms in networks of alternating voltages.
  • CSN 50 0452-1988 Condenser páper. Determination of breakdown voltage at alternating (50 Hz) and direct voltage

Association Francaise de Normalisation

  • NF EN 50563:2013 External AC - DC and AC - AC Power Sources - Determination of No-Load Power and Average Active Mode Efficiency
  • NF EN 50563/A1:2014 External AC - DC and AC - AC Power Sources - Determination of No-Load Power and Average Active Mode Efficiency
  • NF EN IEC 61803:2020 Determination of power losses in high-voltage direct current (HVDC) converter stations equipped with line-commutated converters
  • NF E38-325*NF EN 327:2014 Heat exchangers - Forced convection air cooled refrigerant condensers - Test procedures for establishing performance
  • FD E48-154:2002 Hydraulic fluid power - Test method for determinating the flowrate performances of hydro-pneumatic accumulators
  • NF C61-321:1981 Electrical accessories for domestic and similar purposes. Socket-outlets and cable couplers rated 6A and 250V. Characteristics.
  • NF C52-176-19*NF EN 60076-19:2016 Power transformers - Part 19 : rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • NF C61-320:1981 Electrical accessories for domestic and similar purposes. Plugs and socket-outlets and cable couplers rated 6 amperes and 250 volts.
  • NF ISO 6358-2:2020 Pneumatic transmissions - Determination of flow characteristics of components through which a compressible fluid passes - Part 2: alternative test methods
  • NF EN IEC 63210:2021 Self-healing power shunt capacitors intended for alternating current networks with a rated voltage greater than 1,000 V
  • NF ISO 12669:2018 Hydraulic transmissions - Method for determining the required level of cleanliness (NPR) of a system
  • NF E48-665*NF ISO 12669:2018 Hydraulic fluid power - Method for determining the required cleanliness level (RCL) of a system
  • NF X10-323:1990 Measurement of liquid flow in open channels - Determination of submerged cable correction
  • NF C51-112-3*NF EN IEC 60034-2-3:2020 Rotating electrical machines - Part 2-3 : specific test methods for determining losses and efficiency of converter-fed AC motors
  • NF ISO 18320:2020 Hydrometry - Measurement of river flow - Determination of the height-flow relationship
  • NF C54-210*NF EN IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V

RU-GOST R

  • GOST R 58140-2018 External a.c. - d.c. and a.c. - a.c. power supplies. Determination of no-load power and average efficiency of active modes
  • GOST 21342.17-1978 Resistors. Test method for resistance change depending upon voltage
  • GOST 8.278-1978 State system for ensuring the uniformity of measurements. D.C. Measuring voltaqe dividers. Methods and means of verification
  • GOST 8.278-2013 State system for ensuring the uniformity of measurements. D. c. measuring voltage dividers. Verification methods
  • GOST 26130-1984 Electrical insulating paper. Methods for determination of electrical strength at alternating (frequency of 50 Hz) and constant voltage

U.S. Military Regulations and Norms

  • ARMY MIL-PRF-55514 G SUPP 1-2013 CAPACITORS, FIXED, PLASTIC (OR METALLIZED PLASTIC) DIELECTRIC, DC OR DC-AC, IN NONMETAL CASES, NON-ESTABLISHED AND ESTABLISHED RELIABILITY GENERAL SPECIFICATION FOR
  • ARMY MIL-PRF-55514/4 F VALID NOTICE 2-2012 Capacitors, Fixed, Metallized Plastic Dielectric, DC, in Nonmetal Cases, Established Reliability and Non-Established Reliability, Styles CFR05 and CFR06
  • ARMY MIL-PRF-39007/10 H VALID NOTICE 1-2013 Resistor, Fixed, Wire-Wound (Power Type), Nonestablished Reliability, Established Reliability, and Space Level Style RWR84
  • ARMY MIL-PRF-39007/9 J VALID NOTICE 1-2013 Resistor, Fixed, Wire-Wound (Power Type), Nonestablished Reliability, Established Reliability, and Space Level Style RWR81
  • ARMY QPL-39009-QPD-2011 Resistors, Fixed, Wire-Wound (Power Type, Chassis Mounted), Nonestablished Reliability, and Established Reliability, General Specification for
  • ARMY QPL-39014-QPD-2010 Capacitor, Fixed, Ceramic Dielectric (General Purpose), Established Reliability and Non-Established Reliability, General Specification for
  • ARMY MIL-PRF-55681/7 C VALID NOTICE 1-2011 Capacitors, Chip, Multiple Layer, Fixed, Ceramic Dielectric, Established Reliability and Non-Established Reliability, Style CDR31, Metrix
  • ARMY QPL-39014-2012 Capacitor, Fixed, Ceramic Dielectric (General Purpose), Established Reliability and Non-Established Reliability, General Specification for
  • ARMY QPL-55365-2012 Capacitor, Fixed, Electrolytic (Tantalum), Chip, Established Reliability, Nonestablished Reliability, and High Reliability, Generation Specification for
  • ARMY MIL-PRF-39007/6 H VALID NOTICE 1-2013 Resistor, Fixed, Wire-Wound (Power Type), Nonestablished Reliability, Established Reliability, and Space Level Style RWR74
  • ARMY MIL-PRF-39007/11 J VALID NOTICE 1-2013 Resistor, Fixed, Wire-Wound (Power Type), Nonestablished Reliability, Established Reliability, and Space Level Style RWR89

International Electrotechnical Commission (IEC)

  • IEC 61803:2020 RLV Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • IEC 61803:2020 Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • IEC 61803:1999+AMD1:2010 CSV Determination of power losses in high-voltage direct current (HVDC) converter stations with line-commutated converters
  • IEC 14/726/DTS:2012 IEC/TS 60076-19, Ed. 1: Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1000 V

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

  • IEEE 1158-1991 Recommended Practice for Determination of Power Losses in High-Voltage Direct-Current (HVDC) Converter Stations
  • IEEE C37.06.1-2000 Guide for High-Voltage Circuit Breakers Rated on Symmetrical Current Basis Designated “Definite Purpose for Fast Transient Recovery Voltage Rise Times”
  • IEEE 66-1957 Proposed Guide for Determination of SHORT-CIRCUIT CHARACTERISTICS OF DIRECT-CURRENT MACHINERY
  • IEEE C37.013-1989 AC HIGH-VOLTAGE GENERATOR CIRCUIT BREAKERS RATED ON A SYMMETRICAL CURRENT BASIS
  • IEEE C37.013-1997 AC High-Voltage Generator Circuit Breakers Rated on a Symmetrical Current Basis
  • IEEE C37.013 INT 1-2005 AC High-Voltage Generator Circuit Breakers Rated on a Symmetrical Current Basis
  • IEEE C37.013-1993 AC High-Voltage Generator Circuit Breakers Rated on a Symmetrical Current

CENELEC - European Committee for Electrotechnical Standardization

  • HD 428.4 S1-1994 Three Phase Oil-Immersed Distribution Transformers 50 Hz@ from 50 to 2500 kVA with Highest Voltage for Equipment not Exceeding 36 kV Part 4: Determination of the Power Rating of a Transformer Loaded with Non-Sinusoidal Currents

Lithuanian Standards Office

  • LST EN 50464-3-2007 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • LST 1744.3-2001 Three phase dry-type distribution transformers 50 Hz, from 100 to 2 500 kVA, with highest voltage for equipment not exceeding 36 kV. Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal current (HD 538.3 S1:1997)

Danish Standards Foundation

  • DS/EN 50464-3:2007 Three-phase oil-immersed distribution transformers 50 Hz, from 50 kVA to 2 500 kVA with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal currents
  • DS/CLC/TR 50462:2008 Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • DS/IEC/TS 60076-19:2013 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of losses in power transformers and reactors

AENOR

  • UNE-CLC/TR 50462:2009 Rules for the determination of uncertainties in the measurement of the losses on power transformer and reactors

European Committee for Electrotechnical Standardization(CENELEC)

  • EN 60076-19:2015 Power transformers - Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors
  • EN IEC 63210:2021 Shunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V
  • EN IEC 60034-2-3:2020 Rotating electrical machines - Part 2-3: Specific test methods for determining losses and efficiency of converter-fed AC motors

ESDU - Engineering Sciences Data Unit

  • TM 148-2004 The implications of flow property profiles on determination and application of non-dimensional pressure loss coefficients for flow of incompressible fluids

Defense Logistics Agency

  • DLA MIL-R-93 F-2007 RESISTORS, FIXED, WIRE-WOUND (ACCURATE), GENERAL SPECIFICATION FOR
  • DLA MIL-R-93 F SUPP 1-2007 RESISTORS, FIXED, WIRE-WOUND (ACCURATE), GENERAL SPECIFICATION FOR
  • DLA QPL-39018-2012 Capacitors, Fixed, Electrolytic (Aluminum Oxide), Established Reliability, and Non-Established Reliability, General Specification for
  • DLA QPL-39018-QPD-2010 Capacitors, Fixed, Electrolytic (Aluminum Oxide), Established Reliability and Non-Established Reliability, General Specification for
  • DLA QPL-39018-72 NOTICE 1-2008 Capacitors, Fixed, Electrolytic (Aluminum Oxide), Established Reliability and Non-Established Reliability, General Specification for
  • DLA QPL-83421-QPD-2010 CAPACITORS, FIXED, METALLIZED, PLASTIC FILM DIELECTRIC (DC, AC, OR DC AND AC), HERMETICALLY SEALED IN METAL CASES OR CERAMIC CASES, ESTABLISHED RELIABILITY, GENERAL SPECIFICATION FOR
  • DLA QPL-83421-QPD-2008 CAPACITORS, FIXED, METALLIZED, PLASTIC FILM DIELECTRIC (DC, AC, OR DC AND AC), HERMETICALLY SEALED IN METAL CASES OR CERAMIC CASES, ESTABLISHED RELIABILITY, GENERAL SPECIFICATION FOR
  • DLA QPL-83421-58 NOTICE 1-2008 CAPACITORS, FIXED, METALLIZED, PLASTIC FILM DIELECTRIC (DC, AC, OR DC AND AC), HERMETICALLY SEALED IN METAL CASES OR CERAMIC CASES, ESTABLISHED RELIABILITY, GENERAL SPECIFICATION FOR
  • DLA MIL-PRF-20/35 K-2011 CAPACITORS, FIXED, CERAMIC DIELECTRIC (TEMPERATURE COMPENSATING), ESTABLISHED AND NON-ESTABLISHED RELIABILITY, STYLES CCR05, CC05, CCR09, AND CC09
  • DLA MIL-PRF-20/27 G-2011 CAPACITORS, FIXED, CERAMIC DIELECTRIC (TEMPERATURE COMPENSATING), ESTABLISHED AND NON-ESTABLISHED RELIABILITY, STYLES CCR75 AND CC75
  • DLA MIL-PRF-20/37 F-2011 CAPACITORS, FIXED, CERAMIC DIELECTRIC (TEMPERATURE COMPENSATING), ESTABLISHED AND NON-ESTABLISHED RELIABILITY, STYLES CCR07 AND CC07

Society of Automotive Engineers (SAE)

  • SAE ARP1288-1974 PLACARDING OF AIRCRAFT HYDRAULIC EQUIPMENT TO IDENTIFY REQUIRED FLUID SUITABILITY
  • SAE ARP1288A-1998 Placarding of Aircraft Hydraulic Equipment to Identify Phosphate Ester Fluid Compatibility
  • SAE ARP788-2002 Procedure For The Determination Of The Silting Index Of A Fluid

IEC - International Electrotechnical Commission

  • TS 60076-19-2013 Power transformers – Part 19: Rules for the determination of uncertainties in the measurement of the losses on power transformers and reactors (Edition 1.0)

ES-AENOR

  • UNE 21-309-1989 Method for determining electroporation pressure of insulating oil

SAE - SAE International

  • SAE ARP1288A-1992 Placarding of Aircraft Hydraulic Equipment to Identify Phosphate Ester Fluid Compatibility
  • SAE ARP1288B-2012 Placarding of Aircraft Hydraulic Equipment to Identify Phosphate Ester Fluid Compatibility
  • SAE ARP788-1963 Procedure For The Determination Of The Silting Index Of A Fluid
  • SAE J2890-2010 Hydraulic Fluid Power - Accelerated Method for Determining the Wear Characteristics of a Hydraulic Component Due to Contaminants

German Institute for Standardization

  • DIN 42523-3:1997 Three-phase dry-type distribution transformers 50 Hz, from 100 to 2500 kVA, with highest voltage for equipment not exceeding 36 kV - Part 3: Determination of the power rating of a transformer loaded with non-sinusoidal current; German version HD 538.3 S1:
  • DIN V 19218:2008 Measurement of fluid flow - Procedures for the evaluation of uncertainties (ISO 5168:2005, modified)
  • DIN VDE 0661:1988 Portable protective devices intended for an increase in the protection level for 230 V a.c. rated voltage, 16 A rated current, rated residual current I n 30 mA

American National Standards Institute (ANSI)

American Society for Testing and Materials (ASTM)

  • ASTM E1004-17 Standard Test Method for Determining Electrical Conductivity Using the Electromagnetic (Eddy Current) Method
  • ASTM F1662-10 Standard Test Method for Verifying the Specified Dielectric Withstand Voltage and Determining the Dielectric Breakdown Voltage of a Membrane Switch

AR-IRAM

YU-JUS

  • JUS M.C5.090-1985 Control valves. Flow capacity. Sizing equationsfor incompressible fluid flow under installed conditions

IN-BIS

  • IS 2913-1964 Recommendations for determining tidal channel flow

American Society of Mechanical Engineers (ASME)

HU-MSZT

ECIA - Electronic Components Industry Association

  • 251-A-1970 Test to Determine the Temperature Rise as a Function of Current in Printed Conductors

TR-TSE

  • TS 41-1962 250 V. UP TO 10 A. SWITCHES FOK INTEKNAL ELECTRICAL INSTALLATION

CH-SNV

  • VSM 34343-1974 Specifications for metallized paper capacitors for DC voltages and AC voltages up to 314 Var

BE-NBN

  • NBN 819 ADD 7-1991 AUTOMATISCHE AARDSTROOMSCHAKELAARS MET DIFFERENTIEELINRICHTING Bijkomende voorschriften voor automatische aardstroomschakelaars met een nominale spanning niet groter dan 415 V