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Photometer power

Photometer power, Total:110 items.

In the international standard classification, Photometer power involves: Optics and optical measurements, Special measuring equipment for use in telecommunications, Fibre optic communications, Optoelectronics. Laser equipment, Electricity. Magnetism. Electrical and magnetic measurements, Metrology and measurement in general, Raw materials for rubber and plastics, Solar energy engineering, Lamps and related equipment, Paints and varnishes, Integrated circuits. Microelectronics.


American Society for Testing and Materials (ASTM), Photometer power

  • ASTM E387-04 Standard Test Method for Estimating Stray Radiant Power Ratio of Dispersive Spectrophotometers by the Opaque Filter Method
  • ASTM E387-04(2009) Standard Test Method for Estimating Stray Radiant Power Ratio of Dispersive Spectrophotometers by the Opaque Filter Method
  • ASTM E387-04(2014) Standard Test Method for Estimating Stray Radiant Power Ratio of Dispersive Spectrophotometers by the Opaque Filter Method
  • ASTM E387-84(1995)e1 Standard Test Method for Estimating Stray Radiant Power Ratio of Spectrophotometers by the Opaque Filter Method
  • ASTM E387-04(2022) Standard Test Method for Estimating Stray Radiant Power Ratio of Dispersive Spectrophotometers by the Opaque Filter Method

Taiwan Provincial Standard of the People's Republic of China, Photometer power

National Metrological Verification Regulations of the People's Republic of China, Photometer power

ZA-SANS, Photometer power

Danish Standards Foundation, Photometer power

  • DS/EN 61315:2006 Calibration of fibre-optic power meters
  • DS/EN 61290-1-3:2006 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • DS/EN IEC 61290-1-3:2021 Optical amplifiers – Test methods – Part 1-3: Power and gain parameters – Optical power meter method

European Committee for Electrotechnical Standardization(CENELEC), Photometer power

  • EN IEC 61315:2019 Calibration of fibre-optic power meters
  • EN IEC 61290-1-3:2021 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • EN 61290-1-3:2015 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method

International Electrotechnical Commission (IEC), Photometer power

  • IEC 61315:2019 Calibration of fibre-optic power meters
  • IEC 61315:2019 RLV Calibration of fibre-optic power meters
  • IEC 61315:1995 Calibration of fibre optic power meters
  • IEC 61315:2005 Calibration of fibre optic power meters
  • IEC 61290-2-3:1998 Optical fibre amplifiers - Basic specification - Part 2-3: Test methods for power parameters - Optical power meter
  • IEC 61290-1-3:2021 RLV Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • IEC 61290-1-3:2015 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • IEC 61290-1-3:2005 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • IEC 61290-1-3:2021 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method
  • IEC 61853-1:2011 Photovoltaic (PV) module performance testing and energy rating - Part 1: Irradiance and temperature performance measurements and power rating

Korean Agency for Technology and Standards (KATS), Photometer power

Japanese Industrial Standards Committee (JISC), Photometer power

KR-KS, Photometer power

ES-UNE, Photometer power

  • UNE-EN IEC 61315:2019 Calibration of fibre-optic power meters (Endorsed by Asociación Española de Normalización in July of 2019.)
  • UNE-EN IEC 61290-1-3:2021 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (Endorsed by Asociación Española de Normalización in May of 2021.)
  • UNE-EN 61290-1-3:2015 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (Endorsed by AENOR in August of 2015.)

German Institute for Standardization, Photometer power

  • DIN EN IEC 61315:2020-07 Calibration of fibre-optic power meters (IEC 61315:2019); German version EN IEC 61315:2019 / Note: DIN EN 61315 (2006-09) remains valid alongside this standard until 2022-05-03.
  • DIN EN 61290-1-3:2015-12 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (IEC 61290-1-3:2015); German version EN 61290-1-3:2015 / Note: DIN EN 61290-1-3 (2006-07) remains valid alongside this standard until 2018-03-31.*Appli...
  • DIN EN 61290-1-3:2006 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (IEC 61290-1-3:2005); German version EN 61290-1-3:2005
  • DIN EN IEC 61290-1-3:2021-04 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (IEC 86C/1645/CD:2020); Text in German and English / Note: Date of issue 2021-03-05*Intended as replacement for DIN EN 61290-1-3 (2015-12).

British Standards Institution (BSI), Photometer power

  • BS EN 61315:2006 Calibration of fibre-optic power meters
  • BS EN IEC 61290-1-3:2021 Optical amplifiers. Test methods - Power and gain parameters. Optical power meter method
  • BS EN IEC 61315:2019 Tracked Changes. Calibration of fibre-optic power meters
  • BS EN 61290-1-3:2005 Optical amplifiers — Test methods — Part 1-3: Power and gain parameters — Optical power meter method
  • BS EN 61290-1-3:2015 Optical amplifiers. Test methods. Power and gain parameters. Optical power meter method
  • BS EN 61290-1-3:2006 Optical amplifiers. Test methods. Power and gain parameters. Optical power meter method
  • BS EN 61853-1:2011 Photovoltaic (PV) module performance testing and energy rating. Irradiance and temperature performance measurements and power rating
  • 20/30410203 DC BS EN IEC 61290-1-3. Optical amplifiers. Test methods. Part 1-3. Power and gain parameters. Optical power meter method

Association Francaise de Normalisation, Photometer power

  • NF EN IEC 61315:2019 Étalonnage de wattmètres pour dispositifs à fibres optiques
  • NF EN 61290-2-3:1998 Amplificateurs à fibres optiques - Spécification de base - Partie 2-3 : méthodes d'essai pour les paramètres de puissance optique. Mesureur de puissance optique.
  • NF C93-805-1-3*NF EN 61290-1-3:2016 Optical amplifiers - Test methods - Part 1-3 : power and gain parameters - Optical power meter method
  • NF EN IEC 61290-1-3:2021 Amplificateurs optiques - Méthodes d'essai - Partie 1-3 : paramètres de puissance et de gain - Méthode par appareil de mesure de la puissance optique
  • NF C93-803*NF EN 61315:2006 Calibration of fibre-optic power meters
  • NF C93-803:1997 Calibration of fibre optic power meters.
  • NF EN IEC 62129-3:2019 Étalonnage des appareils de mesure de longueur d'onde/appareil de mesure de la fréquence optique - Partie 3 : fréquencemètres optiques faisant référence en interne à un peigne de fréquence
  • NF C57-113-1*NF EN 61853-1:2011 Photovoltaic (PV) module performance testing and energy rating - Part 1 : irradiance and temperature performance measurements and power rating

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Photometer power

Lithuanian Standards Office , Photometer power

  • LST EN 61315-2006 Calibration of fibre-optic power meters (IEC 61315:2005)
  • LST EN 61290-1-3-2006 Optical amplifiers. Test methods. Part 1-3: Power and gain parameters. Optical power meter method (IEC 61290-1-3:2005)
  • LST EN IEC 61290-1-3:2021 Optical amplifiers - Test methods - Part 1-3: Power and gain parameters - Optical power meter method (IEC 61290-1-3:2021)

HU-MSZT, Photometer power

(U.S.) Telecommunications Industries Association , Photometer power

  • TIA-455-231-2003 FOTP-231 IEC-61315 Calibration of Fibre-Optic Power Meters
  • TIA-455-231-2015 FOTP-231 IEC-61315 Calibration of Fibre-Optic Power Meters
  • TIA/EIA-455-211-2000 FOTP-211 IEC 61290-2-3 Optical Fibre Amplifiers - Basic Specification Part 2-3: Test Methods for Optical Power Parameters - Optical Power Meter

American National Standards Institute (ANSI), Photometer power

  • ANSI/TIA-455-231-2015 FOTP-231 IEC-61315 Calibration of Fibre-Optic Power Meters
  • ANSI/TIA-455-231-2003 IEC 61315 - Calibration of Fibre-Optic Power Meters
  • ANSI/TIA-455-95A-2000 Absolute Optical Power Test for Optical Fibers and Cables
  • ANSI/TIA-455-211-2000 FOTP211 - IEC 61290-2-3- Optical Fibre Amplifiers - Basic Specification - Part 2-3: Test Methods for Optical Power Parameters - Optical Power Meter demultiplexer
  • ANSI/TIA/EIA 455-211-2000 FOTP211 - IEC 61290-2-3- Optical Fibre Amplifiers - Basic Specification - Part 2-3: Test Methods for Optical Power Parameters - Optical Power Meter demultiplexer

CENELEC - European Committee for Electrotechnical Standardization, Photometer power

  • EN 61290-2-3:1998 Optical Fibre Amplifiers - Basic Specification Part 2-3: Test Methods for Optical Power Parameters Optical Power Meter
  • EN 61290-1-3:2005 Optical amplifiers - Test methods Part 1-3: Power and gain parameters - Optical power meter method

CU-NC, Photometer power

  • NC 90-17-01-1985 Metrological Assurance. Photometry Relative Spectral Luminous E fficiency. Colorimetric Functions Trichromatic Coordinates

Professional Standard - Post and Telecommunication, Photometer power

  • YD/T 1068-2000 Technical requirements for portable optical power meter

RU-GOST R, Photometer power

  • GOST 8.569-2000 State system for ensuring the uniformity of measurements. Low power SHF vattmeters of frequency range 0,02-178,6 GHz. Verification and calibration methods
  • GOST 8.197-2013 State system for ensuring the uniformity of measurements. State verification scheme for instruments measuring of the spectral radiance, spectral radiant power, spectral irradiance, spectral radiant intensity, power and radiant intensity in spectral range
  • GOST 25786-1983 Lasers. Measuring methods of average power, pulse average power, relative average power instability
  • GOST R IEC 61853-1-2013 Photovoltaic modules. Determination of performance testing and energy rating. Part 1. Irradiance and temperature performance measurement according to irradiance and temperature. Power rating

TIA - Telecommunications Industry Association, Photometer power

  • TSB-143-2007 Fiber Optic Power Meters: Measurement and Application Issues

National Metrological Technical Specifications of the People's Republic of China, Photometer power

  • JJF 1755-2019 Calibration Specification for Passive Optical Network (PON) Power Meters

Military Standard of the People's Republic of China-General Armament Department, Photometer power

International Telecommunication Union (ITU), Photometer power

  • ITU-R SF.675-3-1994 Calculation of the Maximum Power Density (Averaged Over 4 kHz) of an Angle-Modulated Carrier
  • ITU-R SF.675-3 FRENCH-1994 CALCULATION OF THE MAXIMUM POWER DENSITY (AVERAGED OVER 4 kHz) OF AN ANGLE-MODULATED CARRIER CALCUL DE LA DENSIT?MAXIMALE DE PUISSANCE (MOYENNE DANS UNE BANDE DE 4 kHz) D'UNE ONDE PORTEUSE ?MODULATION ANGULAIRE
  • ITU-R SF.675-3 SPANISH-1994 CALCULATION OF THE MAXIMUM POWER DENSITY (AVERAGED OVER 4 kHz) OF AN ANGLE-MODULATED CARRIER C罫CULO DE LA DENSIDAD DE POTENCIA M罼IMA (VALOR MEDIO EN UNA BANDA DE 4 kHz) DE UNA PORTADORA CON MODULACI覰 ANGULAR

Illuminating Engineering Society of North America, Photometer power

  • IESNA LM-85-2014 Approved Method for Electrical and Photometric Measurements of High-Power LEDs

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, Photometer power

  • GB/T 34323-2017 Carbon black—Determination of light transmittance of water dispersion—Spectrophotometer method

RO-ASRO, Photometer power

  • STAS 7237-1982 LABORATOR Y DYNAMOMETERS CALIBRATION Technical requirements for quality

CZ-CSN, Photometer power

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, Photometer power

  • ITU-R SF.675-2-1993 Calculation of the Maximum Power Density (Averaged Over 4 KHs) of an Angle-Modulated Carrier

Group Standards of the People's Republic of China, Photometer power

  • T/CSTM 00537-2021 Phase transition temperature measurement of micro-nano thin film -Optical power analysis




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