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Optical heating instrument

Optical heating instrument, Total:211 items.

In the international standard classification, Optical heating instrument involves: Shipbuilding and marine structures in general, Thermodynamics and temperature measurements, Natural gas, Mining equipment, Glass, Industrial furnaces, Optical equipment, Optics and optical measurements, Solar energy engineering, Paper and board, Analytical chemistry, Ceramics, Coals, Road vehicle systems, Lubricants, industrial oils and related products, Energy and heat transfer engineering in general, Graphical symbols, Environmental testing, Plastics, Occupational safety. Industrial hygiene, Adhesives, Farming and forestry, Domestic, commercial and industrial heating appliances, Products of the textile industry, Milk and milk products, Iron and steel products, Road vehicles in general, Radiation measurements, Installations in buildings, Water quality, Air quality, Non-ferrous metals, Production in the chemical industry, Automatic controls for household use, Materials for aerospace construction, Aerospace electric equipment and systems, Kitchen equipment, Domestic safety, Semiconducting materials, Fuels, Protection against fire, Insulating materials, Fibre optic communications, Rubber, Products of the chemical industry, Telecommunication systems, Medical equipment.


AT-ON, Optical heating instrument

Professional Standard-Ships, Optical heating instrument

  • CB 1085.6-1989 Man-hour quota for instrumentation manufacturing Optical parts processing and optical instrument assembly

Group Standards of the People's Republic of China, Optical heating instrument

  • T/CIS 17007-2023 General technical specification for adiabatic accelerating rate calorimeter
  • T/CMA YJ044-2020 Natural gas calorific value sound and light measuring instrument
  • T/QGCML 711-2023 Light wave far infrared quartz heating tube
  • T/SDNY 037-2022 Rapid detection of phorate and phoxim in vegetables by photothermal card reader method

Military Standards (MIL-STD), Optical heating instrument

Professional Standard - Geology, Optical heating instrument

  • DZ 57.13-1987 Time quota optical parts processing for geological instrumentation industry

Aerospace Industries Association/ANSI Aerospace Standards, Optical heating instrument

Korean Agency for Technology and Standards (KATS), Optical heating instrument

  • KS B ISO 9022-16-2002(2017) Optics and optical instruments-Environmental test methods-Part 16:Combined bounce or steady-state acceleration and dry heat or cold
  • KS B ISO 9022-16-2002(2022) Optics and optical instruments-Environmental test methods-Part 16:Combined bounce or steady-state acceleration and dry heat or cold
  • KS B ISO 9022-16:2002 Optics and optical instruments-Environmental test methods-Part 16:Combined bounce or steady-state acceleration and dry heat or cold
  • KS B ISO 9022-2:2003 Optics and optical instruments-Environmental test methods-Part 2:Cold, heat and humidity
  • KS B ISO 9022-2:2013 Optics and optical instruments ― Environmental test methods ― Part 2: Cold, heat, humidity
  • KS B ISO 9022-10-2002(2017) Optics and optical instruments-Environmental test methods-Part 10:Combined sinusoidal vibration and dry heat or cold
  • KS B ISO 9022-18-2002(2022) Optics and optical instruments-Environmental test methods-Part 18:Combined damp heat and low internal pressure
  • KS B ISO 9022-18-2002(2017) Optics and optical instruments-Environmental test methods-Part 18:Combined damp heat and low internal pressure
  • KS B ISO 9022-18:2002 Optics and optical instruments-Environmental test methods-Part 18:Combined damp heat and low internal pressure
  • KS B ISO 9022-15-2002(2017) Optics and optical instruments-Environmental test methods-Part 15:Combined digitally controlled broad-band random vibration and dry heat or cold
  • KS B ISO 9022-21-2002(2022) Optics and optical instruments-Environmental test methods-Part 21:Combined low pressure and ambient temperature or dry heat
  • KS B ISO 9022-10-2002(2022) Optics and optical instruments-Environmental test methods-Part 10:Combined sinusoidal vibration and dry heat or cold
  • KS B ISO 9022-21-2002(2017) Optics and optical instruments-Environmental test methods-Part 21:Combined low pressure and ambient temperature or dry heat
  • KS A ISO/ASTM 51956:2012 Practice for use of thermoluminescence dosimetry (TLD) systems for radiation processing
  • KS B ISO 9022-21:2002 Optics and optical instruments-Environmental test methods-Part 21:Combined low pressure and ambient temperature or dry heat
  • KS B ISO 9022-10:2002 Optics and optical instruments-Environmental test methods-Part 10:Combined sinusoidal vibration and dry heat or cold
  • KS B ISO 9022-15:2002 Optics and optical instruments-Environmental test methods-Part 15:Combined digitally controlled broad-band random vibration and dry heat or cold
  • KS B ISO 9022-13:2002 Optics and optical instruments-Environmental test methods-Part 13:Combined shock, bump or free fall and dry heat or cold
  • KS B ISO 9022-13-2002(2017) Optics and optical instruments-Environmental test methods-Part 13:Combined shock, bump or free fall and dry heat or cold
  • KS B ISO 9022-13-2002(2022) Optics and optical instruments-Environmental test methods-Part 13:Combined shock, bump or free fall and dry heat or cold
  • KS B ISO 9022-15-2002(2022) Optics and optical instruments-Environmental test methods-Part 15:Combined digitally controlled broad-band random vibration and dry heat or cold

American Petroleum Institute (API), Optical heating instrument

British Standards Institution (BSI), Optical heating instrument

  • BS ISO 9022-2:2002 Optics and optical instruments - Environmental test methods - Cold, heat and humidity
  • BS ISO 9022-18:1995 Optics and optical instruments. Environmental test methods. Combined damp heat and low internal pressure
  • BS EN 419-1:2000 Non-domestic gas-fired overhead luminous radiant heaters - Safety
  • BS EN 419-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Safety
  • BS EN 10267:1998 Ferritic-pearlitic steels for precipitation hardening from hot-working temperatures
  • BS EN 419-2:2006 Non-domestic gas-fired overhead luminous radiant heaters - Rational use of energy
  • BS EN 419:2019 Gas-fired overhead luminous radiant heaters for non-domestic use. Safety and energy efficiency
  • BS EN ISO 23674:2022 Cosmetics. Analytical methods. Direct determination of traces of mercury in cosmetics by thermal decomposition and atomic absorption spectrometry (mercury analyser)
  • BS EN 50379-2:2004 Specification for portable electrical apparatus designed to measure combustion flue gas parameters of heating appliances - Performance requirements for apparatus used in statutory inspections and assessment
  • BS EN 50379-2:2012 Specification for portable electrical apparatus designed to measure combustion flue gas parameters of heating appliances. Performance requirements for apparatus used in statutory inspections and assessment

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Optical heating instrument

  • GB/T 12085.2-1989 Optics and optical instruments--Environmental test methods--Cold, heat, humidity
  • GB/T 12085.2-2010 Optics and optical instruments.Enviromental test methods.Part 2:Cold,heat,humidity
  • GB/T 12085.16-1995 Optics and optical instruments--Environmental test methods--Combined bounce or steady state acceleration, in dry heat or cold
  • GB/T 12085.18-2011 Optics and optical instruments.Enviromental test methods.Part 18: Combined damp heat and low internal pressure
  • GB/T 7287.10-1987 Measuring method for normal spectral emittance of infrared heater
  • GB/T 12085.16-2010 Optics and optical instruments.Environmental test methods.Part 16:Combined bounce or steady-state acceleration and dry heat or cold
  • GB/T 4324.26-2012 Methods for chemical analysis of tungsten.Part 26:Determination of nitrogen content.Pulse heating inert gas fusion-thermal conductive method and the Nessler reagent spectrophotometry

National Metrological Technical Specifications of the People's Republic of China, Optical heating instrument

  • JJF(建材) 160-2019 Calibration specification for photothermal mirror reflectance measuring instrument
  • JJF(建材) 164-2020 Calibration specification for on-site photothermal parameter measuring instrument for architectural glass

Professional Standard - Commodity Inspection, Optical heating instrument

  • SN/T 3078.1-2012 Guide for assessing thermal stability of chemicals.Part 1:Methods of accelerating rate calorimetry

Professional Standard - Machinery, Optical heating instrument

  • JB/T 5636-1991 Optical glass softening & heating oven. Grading of energy consumption

European Committee for Electrotechnical Standardization(CENELEC), Optical heating instrument

  • EN 62925:2017 Concentrator photovoltaic (CPV) modules - Thermal cycling test to differentiate increased thermal fatigue durability

Association Francaise de Normalisation, Optical heating instrument

  • NF C57-355*NF EN 62925:2017 Concentrator photovoltaic (CPV) modules - Thermal cycling test to differentiate increased thermal fatigue durability
  • NF E04-202-4:1996 Pipelines, pipe components and apparatus for industrial processes. Symbolic representation. Part 4 : heat equipment.
  • NF E31-401-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1 : safety.
  • NF T90-131:1986 TESTING WATER. DETERMINATION OF TOTAL MERCURY BY FLAMELESS ATOMIC ABSORPTION SPECTROMETRY. METHOD AFTER DIGESTION WITH BROMINE.
  • NF E31-401*NF EN 419:2019 Gas-fired overhead luminous radiant heaters for non-domestic use - Safety and energy efficiency
  • NF E04-202-6:1997 Pipelines, pipe components and apparatus for industrial processes. Symbolic representation. Part 6 : product separation with heat transfer.
  • NF E31-401-2:2006 Non-domestic gas-fired overhead luminous radiant heaters - Part 2 : rational use of energy.
  • NF E04-202-5:1997 Pipelines, pipe components and apparatus for industrial processes. Symbolic representation. Part 5 : product separation without heat transfer.
  • NF P52-617-4-6:2008 Heating systems in buildings - Method for calculation of system energy requirements and system efficiencies - Part 4-6 : heat generation systems, photovoltaic systems.
  • NF P52-617-4-7:2009 Heating systems in buildings - Method for calculation of system energy requirements and system efficiencies - Part 4-7 : space heating generation systems, biomass combustion systems.
  • NF T51-358*NF EN ISO 1600:1999 Plastics. Cellulose acetate. Determination of light absorption on moulded specimens produced using different periods of heating.
  • NF EN ISO 1600:1999 Plastiques - Acétate de cellulose - Détermination de l'absorption de lumière sur éprouvettes moulées produites en utilisant différentes périodes de chauffage.
  • NF EN ISO 23674:2022 Cosmétiques - Méthodes d'analyse - Dosage direct des traces de mercure dans les cosmétiques par décomposition thermique et spectrométrie d'absorption atomique (analyseur de mercure)

International Electrotechnical Commission (IEC), Optical heating instrument

  • IEC 62925:2016 Concentrator photovoltaic (CPV) modules - Thermal cycling test to differentiate increased thermal fatigue durability

American Society for Testing and Materials (ASTM), Optical heating instrument

  • ASTM D6789-02 Standard Test Method for Accelerated Light Aging of Printing and Writing Paper by Xenon-Arc Exposure Apparatus
  • ASTM E1770-95 Standard Practice for Optimization of Electrothermal Atomic Absorption Spectrometric Equipment
  • ASTM E1770-95(2006) Standard Practice for Optimization of Electrothermal Atomic Absorption Spectrometric Equipment
  • ASTM D7751-12 Standard Test Method for Determination of Additive Elements in Lubricating Oils by EDXRF Analysis
  • ASTM E1770-14 Standard Practice for Optimization of Electrothermal Atomic Absorption Spectrometric Equipment
  • ASTM C1057-92(1998)e1 Standard Practice for Determination of Skin Contact Temperature from Heated Surfaces Using A Mathematical Model and Thermesthesiometer
  • ASTM C1057-17 Standard Practice for Determination of Skin Contact Temperature from Heated Surfaces Using a Mathematical Model and Thermesthesiometer
  • ASTM C1057-22 Standard Practice for Determination of Skin Contact Temperature from Heated Surfaces Using a Mathematical Model and Thermesthesiometer
  • ASTM D6551/D6551M-05(2019) Standard Practice for Accelerated Weathering of Pressure-Sensitive Tapes by Xenon-Arc Exposure Apparatus
  • ASTM D4355-07 Standard Test Method for Deterioration of Geotextiles by Exposure to Light, Moisture and Heat in a Xenon Arc Type Apparatus
  • ASTM D6756-09a Standard Test Method for Determination of the Red Dye Concentration and Estimation of the ASTM Color of Diesel Fuel and Heating Oil Using a Portable Visible Spectrophotometer
  • ASTM ISO/ASTM 51956-13 Standard Practice for Use of Thermoluminescence-Dosimetry (TLD) Systems for Radiation Processing
  • ASTM F319-19 Standard Practice for Polarized Light Detection of Flaws in Aerospace Transparency Heating Elements
  • ASTM F319-91a(2003) Standard Practice for Polarized Light Detection of Flaws in Aerospace Transparency Heating Elements
  • ASTM F319-09 Standard Practice for Polarized Light Detection of Flaws in Aerospace Transparency Heating Elements
  • ASTM F319-09(2014) Standard Practice for Polarized Light Detection of Flaws in Aerospace Transparency Heating Elements
  • ASTM D7220-12(2017) Standard Test Method for Sulfur in Automotive, Heating, and Jet Fuels by Monochromatic Energy Dispersive X-ray Fluorescence Spectrometry
  • ASTM D7220-22 Standard Test Method for Sulfur in Automotive, Heating, and Jet Fuels by Monochromatic Energy Dispersive X-ray Fluorescence Spectrometry
  • ASTM D6756-02 Standard Test Method for Determination of the Red Dye Concentration and Estimation of the ASTM Color of Diesel Fuel and Heating Oil Using a Portable Visible Spectrophotometer
  • ASTM D6756-10(2015) Standard Test Method for Determination of the Red Dye Concentration and Estimation of the ASTM Color of Diesel Fuel and Heating Oil Using a Portable Visible Spectrophotometer
  • ASTM F526-21 Standard Test Method for Using Calorimeters for Total Dose Measurements in Pulsed Linear Accelerator or Flash X-ray Machines
  • ASTM F1992-99 Standard Practice for Reprocessing of Reusable, Heat-Stable Endoscopic Accessory Instruments (EAI) Used with Flexible Endoscopes
  • ASTM F1992-99(2007) Standard Practice for Reprocessing of Reusable, Heat-Stable Endoscopic Accessory Instruments (EAI) Used with Flexible Endoscopes

Military Standard of the People's Republic of China-General Armament Department, Optical heating instrument

  • GJB 595.5-1988 Environmental test methods for artillery optical instruments - damp heat test

API - American Petroleum Institute, Optical heating instrument

  • API RP 556-2011 Instrumentation@ Control@ and Protective Systems for Gas Fired Heaters (Second Edition)
  • API RP 556 RUSSIAN-2011 Instrumentation@ Control@ and Protective Systems for Gas Fired Heaters (Second Edition)
  • API RP 556-1997 Instrumentation and Control Systems for Fired Heaters and Steam Generators (First Edition)
  • API RP 550 P3-1977 Manual on Installation of Refinery Instruments and Control Systems Part III - Fired Heaters and Inert Gas Generators
  • API RP 550 P3-1975 Manual on Installation of Refinery Instruments and Control Systems Part III-Fired Heaters and Inert Gas Generators (First Edition)

Japanese Industrial Standards Committee (JISC), Optical heating instrument

  • JIS R 1689:2011 Determination of thermal diffusivity of fine ceramic films by pulsed light heating thermoreflectance method
  • JIS R 1689:2018 Determination of thermal diffusivity of fine ceramic films by pulsed light heating thermoreflectance method
  • JIS R 1672:2006 Determination of specific heat of fiber-reinforced ceramics composite by differential scanning calorimetry methods
  • JIS R 1803:2005 Method for the spectral radiant energy measurement of far infrared heaters specified in the far infrared region

RO-ASRO, Optical heating instrument

  • STAS 9178/6-1987 Ennobled papers for exposure packages HOT-MELT COATED WATERED PAPER
  • STAS 9178/3-1987 Ennobled papers for exposure packages WATERED PAPER GOT BY HOT-MELT PASTING
  • STAS 6000/2-1970 Furnituvc CLEAR AND OPAQUE F1NISHES Method of testing finishcd surface rcsistance to dry heat

International Organization for Standardization (ISO), Optical heating instrument

  • ISO 9022-2:2002 Optics and optical instruments - Environmental test methods - Part 2: Cold, heat and humidity
  • ISO 9022-16:1994 Optics and optical instruments - Environmental test methods - Part 16: Combined bounce or steady-state acceleration, in dry heat or cold
  • ISO 9022-2:1994 Optics and optical instruments - Environmental test methods - Part 2: Cold, heat, humidity
  • ISO 1600:1975 Plastics — Cellulose acetate — Determination of light absorption before and after heating
  • ISO 9022-18:1994 Optics and optical instruments - Environmental test methods - Part 18: Combined damp heat and low internal pressure
  • ISO 9022-10:1994 Optics and optical instruments - Environmental test methods - Part 10: Combined sinusoidal vibration, dry heat or cold
  • ISO 9022-10:1998 Optics and optical instruments - Environmental test methods - Part 10: Combined sinusoidal vibration and dry heat or cold
  • ISO/ASTM 51956:2002 Practice for use of thermoluminescence-dosimetry (TLD) systems for radiation processing
  • ISO/ASTM 51956:2005 Practice for use of thermoluminescence dosimetry (TLD) systems for radiation processing
  • ISO 11692:1994 Ferritic-pearlitic engineering steels for precipitation hardening from hot-working temperatures
  • ISO/ASTM 51956:2013 Practice for use of a thermoluminescence-dosimetry system (TLD system) for radiation processing
  • ISO 9022-13:1994 Optics and optical instruments - Environmental test methods - Part 13: Combined shock, bump or free fall, dry heat or cold
  • ISO 17331:2004/Amd 1:2010 Surface chemical analysis - Chemical methods for the collection of elements from the surface of silicon-wafer working reference materials and their determination by total-reflection X-ray fluorescence (TXRF) spectroscopy; Amendment 1
  • ISO 9022-15:1994 Optics and optical instruments - Environmental test methods - Part 15: Combined random vibration wide band; reproducibility medium, in dry heat oder cold
  • ISO 5666-3:1984 Water quality; Determination of total mercury by flameless atomic absorption spectrometry; Part 3 : Method after digestion with bromine

German Institute for Standardization, Optical heating instrument

  • DIN ISO 9022-2:2003 Optics and optical instruments - Environmental test methods - Part 2: Cold, heat and humidity (ISO 9022-2:2002)
  • DIN ISO 9022-18:2001 Optics and optical instruments - Environmental test methods - Part 18: Combined damp heat and low internal pressure (ISO 9022-18:1994)
  • DIN 10478:2003 Determination of ingredients of raw milk using infra-red spectrophotometry - Function test of the instruments
  • DIN EN 62925:2017 Concentrator photovoltaic (CPV) modules - Thermal cycling test to differentiate increased thermal fatigue durability (IEC 62925:2016); German version EN 62925:2017
  • DIN ISO 9022-21:2001 Optics and optical instruments - Environmental test methods - Part 21: Combined low pressure and ambient temperature or dry heat (ISO 9022-21:1998)
  • DIN EN 10267:1998-02 Ferritic-pearlitic steels for precipitation hardening from hot-working temperatures; German version EN 10267:1998
  • DIN EN 419:2020 Gas-fired overhead luminous radiant heaters for non-domestic use - Safety and energy efficiency
  • DIN EN 419:2020-04 Gas-fired overhead luminous radiant heaters for non-domestic use - Safety and energy efficiency; German version EN 419:2019 / Note: This standard is part of the DVGW body of rules.
  • DIN EN 2591-323:1998 Aerospace series - Elements of electrical and optical connection; test methods - Part 323: Thermal shock; German version EN 2591-323:1998
  • DIN EN ISO 1600:2000-05 Plastics - Cellulose acetate - Determination of light absorption on moulded specimens produced using different periods of heating (ISO 1600:1990); German version EN ISO 1600:1999
  • DIN EN 419-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1: Safety; English version of DIN EN 419-1:2009-07

Professional Standard - Coal, Optical heating instrument

  • MT/T 229-2005 General specifications of instrument for the determination of the crucible swelling number of bituminous coal-electrical heating

Society of Automotive Engineers (SAE), Optical heating instrument

  • SAE J2412-2004 Accelerated Exposure of Automotive Interior Trim Components Using a Controlled Irradiance Xenon-Arc Apparatus
  • SAE J1961-2011 Accelerated Exposure of Automotive Exterior Materials Using a Solar Fresnel Reflective Apparatus
  • SAE J1885-2005 Accelerated Exposure of Automotive Interior Trim Components Using a Controlled Irradiance Water Cooled Xenon-Arc Apparatus
  • SAE AMS4937A-1999 Titanium Alloy, Extrusions and Flash Welded Rings 6Al 6V 2Sn Beta Extruded Plus Annealed, Heat Treatable
  • SAE AMS4937F-2023 Titanium Alloy, Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed, Heat Treatable
  • SAE AMS4937D-2014 Titanium Alloy@ Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4937C-2010 Titanium Alloy, Extrusions and Flash Welded Rings 6Al 6V 2Sn Beta Extruded Plus Annealed, Heat Treatable

SAE - SAE International, Optical heating instrument

  • SAE J2412-2015 Accelerated Exposure of Automotive Interior Trim Components Using a Controlled Irradiance Xenon-Arc Apparatus
  • SAE AMS4937E-2018 Titanium Alloy@ Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4936C-1990 TITANIUM ALLOY EXTRUSIONS AND FLASH WELDED RINGS 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4936B-1984 TITANIUM ALLOY EXTRUSIONS AND FLASH WELDED RINGS 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4937-1992 Titanium Alloy Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4936D-1994 Titanium Alloy Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)
  • SAE AMS4936E-2002 Titanium Alloy Extrusions and Flash Welded Rings 6Al - 6V - 2Sn Beta Extruded Plus Annealed@ Heat Treatable (UNS R56620)

未注明发布机构, Optical heating instrument

  • SAE J2412-201508 Accelerated Exposure of Automotive Interior Trim Components Using a Controlled Irradiance Xenon-Arc Apparatus

FI-SFS, Optical heating instrument

TR-TSE, Optical heating instrument

  • TS 1973-1975 P L A S T I C S DETERMINATION OF LIGHT ABSORPTION OF CELLULOSE ACETATE BEFORE AND AFTER HEATING

GM Global, Optical heating instrument

  • GMW 15381-2012 Heated Backlight Element Compatibility, Weatherstrips Issue 2; English

ESDU - Engineering Sciences Data Unit, Optical heating instrument

  • ESDU 17008-2018 A Practical Guide to Turbulence and Flow Measurement by Thermal Anemometry (CTA)@ Laser-Doppler Anemometry (LDA) and Particle-Image Velocimetry (PIV) Part 3: Laser-Doppler Anemometry
  • ESDU 16002-2018 A Practical Guide to Turbulence and Flow Measurement by Thermal Anemometry (CTA)@ Laser-Doppler Anemometry (LDA) and Particle-Image Velocimetry (PIV) Part 2: Constant-Temperature Anemometry
  • ESDU 17009-2018 A Practical Guide to Turbulence and Flow Measurement by Thermal Anemometry (CTA)@ Laser-Doppler Anemometry (LDA) and Particle-Image Velocimetry (PIV) Part 4: Particle-Image Velocimetry
  • ESDU 16001-2018 A Practical Guide to Turbulence and Flow Measurement by Thermal Anemometry (CTA)@ Laser-Doppler Anemometry (LDA) and Particle-Image Velocimetry (PIV) Part 1: Overview and Selection of Measurement Technique

CU-NC, Optical heating instrument

  • NC 13-08-1984 Steel Laminates. Square Hot-Rolled Steel Billets. Quality Specifications

CZ-CSN, Optical heating instrument

Standard Association of Australia (SAA), Optical heating instrument

  • AS 2369.1:1990 Materials for solar collectors for swimming pool heating - Rubber materials
  • AS/NZS 3580.12.1:2001 Methods for sampling and analysis of ambient air - Determination of light scattering - Integrating nephelometer method
  • AS 2369.2:1993 Materials for solar collectors for swimming pool heating - Flexible or plasticized polyvinyl chloride

BE-NBN, Optical heating instrument

American Gear Manufacturers Association, Optical heating instrument

  • AGMA 94FTM3-1994 Application of Ausforming to Gear Finishing - Process, Design and Manufacturability Issues

Danish Standards Foundation, Optical heating instrument

  • DS/EN 10267:1998 Ferritic-pearlitic steels for precipitation hardening from hot-working temperatures
  • DS/EN 419-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1: Safety
  • DS/EN 419-2:2006 Non-domestic gas-fired overhead luminous radiant heaters - Part 2: Rational use of energy
  • DS/EN ISO 1600:1999 Plastics - Cellulose acetate - Determination of light absorption on moulded specimens produced using different periods of heating

Lithuanian Standards Office , Optical heating instrument

  • LST EN 10267-2001 Ferritic-pearlitic steels for precipitation hardening from hot-working temperatures
  • LST EN 419-1-2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1: Safety
  • LST EN 419-2-2006 Non-domestic gas-fired overhead luminous radiant heaters - Part 2: Rational use of energy
  • LST EN ISO 1600:2000 Plastics - Cellulose acetate - Determination of light absorption on moulded specimens produced using different periods of heating (ISO 1600:1990)

AENOR, Optical heating instrument

  • UNE-EN 10267:1998 FERRITIC-PEARLITIC STEELS FOR PRECIPITATION HARDENING FROM HOT-WORKING TEMPERATURES.
  • UNE-EN 419-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1: Safety
  • UNE-EN 419-2:2006 Non-domestic gas-fired overhead luminous radiant heaters - Part 2: Rational use of energy
  • UNE-EN ISO 1600:2000 PLASTICS - CELLULOSE ACETATE - DETERMINATION OF LIGHT ABSORPTION ON MOULDED SPECIMENS PRODUCED USING DIFFERENT PERIODS OF HEATING (ISO 1600:1990)

Indonesia Standards, Optical heating instrument

CEN - European Committee for Standardization, Optical heating instrument

  • EN 419-1:1999 Non-Domestic Gas-Fired Overhead Luminous Radiant Heaters - Part 1: Safety
  • EN 419-1:2009 Non-domestic gas-fired overhead luminous radiant heaters - Part 1: Safety
  • PREN 419-2017 Gas-fired overhead luminous radiant heaters for non-domestic use - Safety and energy efficiency

American National Standards Institute (ANSI), Optical heating instrument

  • ANSI/IEEE 515.1:2005 Standard for the Testing, Design, Installation, and Maintenance of Electrical Resistance Heat Tracing for Commercial Applications
  • ANSI/ASTM D4591:2001 Test Method for Determining Temperatures and Heats of Transitions of Fluoropolymers by Differential Scanning Calorimetry
  • ANSI/ASTM D6113:2009 Test Method for Using a Cone Calorimeter to Determine Fire-test-response Characteristics of Insulating Materials Contained in Electrical or Optical Fiber Cables
  • ANSI/ASTM D6113:2010 Test Method for Using a Cone Calorimeter to Determine Fire-test-response Characteristics of Insulating Materials Contained in Electrical or Optical Fiber Cables

ES-UNE, Optical heating instrument

  • UNE-EN 419:2021 Gas-fired overhead luminous radiant heaters for non-domestic use - Safety and energy efficiency

IN-BIS, Optical heating instrument

RU-GOST R, Optical heating instrument

  • GOST R 54446-2011 Non domestic gas-fired overhead luminos radiant heaters. Part 1. Safety requirements
  • GOST R 54447-2011 Non-domestic gas-fired overhead luminous radiant heaters. Part 2. Rational use of energy
  • GOST 9.026-1974 Unified system of corrosion and ageing protection. Vulcanized rubber. Method of accelerated determination to ozone and thermolightozone resistance
  • GOST 18907-1973 Cold worked and heat treated grinded rods of high-alloy and corrosion-proof steel. Specifications

Canadian General Standards Board (CGSB), Optical heating instrument

IT-UNI, Optical heating instrument

  • UNI 7732-1978 Hot forged finished steel products. Forged rolled and welded rings. Tolerances and machining allowances.

European Committee for Standardization (CEN), Optical heating instrument

  • EN 10267:1998 Ferritic-pearlitic steels for precipitation hardening from hot-working temperatures
  • EN 2591-323:1998 Aerospace series - Elements of electrical and optical connection - Test methods - Part 323: Thermal shock
  • EN 50019:1978/A4:1989 Electrical apparatus for potentially explosive atmospheres; increased safety e; additional definitions, requirements and tests fuer resistance heating devices and units
  • DD ENV 1259-1-1994 Single Burner Gas-Fired Overhead Radiant Tube Heaters and Non-Domestic Gas-Fired Overhead Luminous Radiant Heaters - Part 1: Requirements and Test Methods for Establishing the Rational Use of Energy - Radiometric Method A
  • DD ENV 1259-2-1996 Single Burner Gas-Fired Overhead Radiant Tube Heaters and Non-Domestic Gas-Fired Overhead Luminous Radiant Heaters - Part 2: Requirements and Test Methods for Establishing the Rational Use of Energy - Radiometric Method B
  • DD ENV 1259-3-1996 Single Burner Gas-Fired Overhead Radiant Tube Heaters and Non-Domestic Gas-Fired Overhead Luminous Radiant Heaters - Part 3: Requirements and Test Methods for Establishing the Rational Use of Energy - Radiometric Method C
  • EN 2591-304:1997 Aerospace Series - Elements of Electrical and Optical Connection - Test Methods - Part 304: Damp Heat Steady State

国家市场监督管理总局、中国国家标准化管理委员会, Optical heating instrument

  • GB/T 40561-2021 Photovoltaic silicon material—Determination of oxygen—Pulse heating inert gas fusion infrared absorption method

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, Optical heating instrument

  • GB/T 24131.2-2017 Rubber,raw—Determination of volatile-matter content—Part 2:Thermogravimetric methods using an automatic analyser with an infrared drying unit

Professional Standard - Post and Telecommunication, Optical heating instrument

  • YD/T 839.2-2000 Filling compounds and flooding compounds for telecommunication cable and optical fiber cable.Part2:Hot-application filling compounds

GM North America, Optical heating instrument

  • GM GM9898P-2012 Heated Backlight Element Compatibility - Weatherstrips (Issue 3; Do Not Use on New Programs; Replaced by GMW15381)

邮电部, Optical heating instrument

  • YD/T 839.2-1996 Filling and coating compounds for telecommunications cables and optical cables Part 2: Filling compounds for heating applications




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