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peak intensity ratio

peak intensity ratio, Total:193 items.

In the international standard classification, peak intensity ratio involves: Rubber, Plastics, Television and radio broadcasting, Iron and steel products, Installations in buildings, Construction materials, Linear and angular measurements, Vocabularies, Insulating fluids, Ferrous metals, Testing of metals, Structures of buildings, Rubber and plastics products, Mechanical testing, Optoelectronics. Laser equipment, Audio, video and audiovisual engineering, Protection against fire, Nuclear energy engineering, Solar energy engineering, Geology. Meteorology. Hydrology, Analytical chemistry, Fuels, Aerospace fluid systems and components, Textile fibres, Wood, sawlogs and sawn timber, Components for aerospace construction, Electricity. Magnetism. Electrical and magnetic measurements, Mobile services, Soil quality. Pedology, Wood-based panels, Beverages, Equipment for petroleum and natural gas industries, Thermodynamics and temperature measurements, Products of the textile industry.


SE-SIS, peak intensity ratio

  • SIS MNC 1109-1982 Stee/ - Comparison between hardness values and tensile strength
  • SIS SS 24 21 23-1982 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • SIS SS 13 72 52-1984 Concrete testing - Hardened concrete - Compressive strength, rated from rebound and sound velocity values

British Standards Institution (BSI), peak intensity ratio

  • 13/30276628 DC BS EN 62704-3. Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz - 6 GHz. Part 3. Specific Requirements for using the Finite-Difference Time-Domain (FDTD) Method for SAR C...
  • BS ISO 6133:1998 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • 13/30276624 DC BS EN 62704-1. Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz - 6 GHz. Part 1. General Requirements for using the Finite Difference Time Domain...
  • 18/30347288 DC BS EN IEC/IEEE 62704-4. Recommended practice for determining the Peak Spatial Average Specific Absorption Rate (SAR) in the human body from wireless communications devices, 30 MHz - 6 GHz. Part 4. General requirements for using the Finite-Element Metho...
  • 21/30433501 DC BS EN 14488-3. Testing sprayed concrete - Part 3. Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • BS EN 14488-3:2006 Testing sprayed concrete - Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • BS EN 10049:2013 Measurement of roughness average $iR$ia and peak count $iR$iP$ic on metallic flat products
  • BS EN ISO 179:1997 Plastics. Determination of Charpy impact strength
  • BS ISO 6133:2015 Tracked Changes. Rubber and plastics. Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • BS EN 10314:2002 Method for the derivation of minimum values of proof strength of steel at elevated temperatures
  • BS ISO 20903:2019 Tracked Changes. Surface chemical analysis. Auger electron spectroscopy and X-ray photoelectron spectroscopy. Methods used to determine peak intensities and information required when reporting results
  • DD ENV 12140-1997 Method for determination of stable carbon isotope ratio (C/C) of sugars from fruit juices, using isotope ratio mass spectrometry
  • DD ENV 12141-1997 Method for determination of stable oxygen isotope ratio (O/O) of water from fruit juices, using isotope ratio mass spectrometry
  • BS EN 1875-3:2023 Tracked Changes. Rubber- or plastics-coated fabrics. Determination of tear strength. Trapezoidal method (five-highest-peak calculation)

International Organization for Standardization (ISO), peak intensity ratio

  • ISO 6133:1981 Rubber and plastics; Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • ISO/TR 10108:1989 Steel; conversion of hardness values to tensile strength values
  • ISO 6133:2015 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • ISO 20903:2011 Surface chemical analysis - Auger electron spectroscopy and X-ray photoelectron spectroscopy - Methods used to determine peak intensities and information required when reporting results
  • ISO 1157:1975 Plastics — Cellulose acetate in dilute solution — Determination of viscosity number and viscosity ratio
  • ISO 20903:2019 Surface chemical analysis — Auger electron spectroscopy and X-ray photoelectron spectroscopy — Methods used to determine peak intensities and information required when reporting results
  • ISO 1157:1990 Plastics; cellulose acetate in dilute solution; determination of viscosity number and viscosity ratio
  • ISO/TR 7517:1983 Coke; Comparison of different tests used to assess the physical strength

Danish Standards Foundation, peak intensity ratio

  • DS/ISO 6133:1981 Rubber and plastics. Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • DS/EN 14488-3:2006 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • DS/EN 10049:2006 Measurement of roughness average Ra and peak count RPc on metallic flat products
  • DS/ISO 9847:2012 Solar energy - Calibration of field pyranometers by comparison to a reference pyranometer
  • DS/EN 10314:2003 Method for the derivation of minimum values of proof strength of steel at elevated temperatures

Japanese Industrial Standards Committee (JISC), peak intensity ratio

  • JIS K 6274:2006 Rubber and plastics -- Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • JIS K 6274:2018 Rubber and plastics -- Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength

International Telecommunication Union (ITU), peak intensity ratio

  • ITU-R BS.1771-2006 Requirements for loudness and true-peak indicating meters
  • ITU-R BS.1771-2012 Requirements for loudness and true-peak indicating meters
  • ITU-R BS.1771 FRENCH-2006 Requirements for loudness and true-peak indicating meters Sp閏ifications des appareils de mesure indiquant l'intensit?sonore et les niveaux de cr阾e vrais
  • ITU-R BS.1771-1-2012 Requirements for loudness and true-peak indicating meters
  • ITU-R BS.1770-1-2007 Algorithms to measure audio programme loudness and true-peak audio level
  • ITU-R BS.1770-2-2011 Algorithms to measure audio programme loudness and true-peak audio level
  • ITU-R BS.1770-2 SPANISH-2011 Algorithms to measure audio programme loudness and true-peak audio level Algoritmos para medir la sonoridad de los programas radiof髇icos y el nivel de cresta de audio real
  • ITU-R BS.1770-2015 Algorithms to measure audio programme loudness and true-peak audio level
  • ITU-R BS.1770-1 FRENCH-2007 Algorithms to measure audio programme loudness and true-peak audio level Algorithmes de mesure de l'intensit?sonore des programmes audio et des niveaux de cr阾e vrais des signaux audio
  • ITU-R BT.815-1 SPANISH-1994 Specification of a signal for measurement of the contrast ratio of displays
  • ITU-R BT.815-1 FRENCH-1994 Specification of a signal for measurement of the contrast ratio of displays
  • ITU-R QUESTION 1-4/5-2007 Interference protection ratios and minimum field strengths required in the land mobile services

AGMA - American Gear Manufacturers Association, peak intensity ratio

  • 09FTM06-2009 Dependency of the Peak-to-Peak-Transmission-Error on the Type of Profile Correction and the Transverse Contact Ratio of the Gear Pair
  • P149.03-1983 Prediction of the Peak Temperature on the Surface of Thermoplastic Gear Teeth
  • 93FTMS1-1993 Spur Gear Bending Strength Geometry Factors: A Comparison of AGMA and ISO Methods

Association Francaise de Normalisation, peak intensity ratio

  • NF T46-055:1990 Vulcanized or thermoplastic rubber. Analysis of the multipeak traces obtained when determining the adhesive strength and the tear strength.
  • NF EN 14488-3:2006 Essais pour béton projeté - Partie 3 : résistances à la flexion (au premier pic, ultime et résiduelle) d'éprouvettes parallélépipèdiques en béton renforcé par des fibres
  • NF T46-055:2005 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength.
  • NF ISO 6133:2015 Caoutchouc et plastiques - Analyse des tracés multi-pics obtenus lors des déterminations de la résistance au déchirement et de la force d'adhérence
  • NF T46-055*NF ISO 6133:2015 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • NF A45-000*NF EN 10049:2014 Measurement of roughness average Ra and peak count RPc on metallic flat products
  • NF P18-511-3*NF EN 14488-3:2006 Testing sprayed concrete - Part 3 : flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • NF M60-407*NF ISO 10980:1998 Validation of the strength of reference solutions used for measuring concentrations.
  • NF A03-680*NF EN 10325:2006 Steel - Determination of yield strength increase by the effect of heat treatment (Bake-Hardening-Index)
  • NF A03-035:2003 Method for the derivation of minimum values of proof strength of steel at elevated temperatures.
  • NF EN 14651+A1:2007 Méthode d'essai du béton de fibres métalliques - Mesurage de la résistance à la traction par flexion (limite de proportionnalité (LOP), résistance résiduelle)
  • NF EN 14651/IN1:2007 Méthode d'essai du béton de fibres métalliques - Mesurage de la résistance à la traction par flexion (limite de proportionnalité (LOP), résistance résiduelle)
  • NF A03-035*NF EN 10314:2016 Method for the derivation of minimum values of proof strength of steel at elevated temperatures

Professional Standard - Radio Television Film, peak intensity ratio

  • GY/T 263-2012 Technical requirements for loudness and true-peak indicating meters
  • GY/T 262-2012 Algorithms to measure audio programme loudness and true-peak audio level

Society of Automotive Engineers (SAE), peak intensity ratio

  • SAE J911-1998 Surface Roughness and Peak Count Measurement of Cold-Rolled Sheet Steel
  • SAE ARP1974-1986 Clamps, Support, Comparative Fatigue Strengths, Test Method
  • SAE ARP1974-2007 Clamps, Support, Comparative Fatigue Strengths, Test Method
  • SAE AS1974-2013 Clamps, Support, Comparative Fatigue Strengths, Test Method

German Institute for Standardization, peak intensity ratio

  • DIN EN 14488-3:2021-05 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens; German and English version prEN 14488-3:2021 / Note: Date of issue 2021-04-09*Intended as replacement for DIN EN 14488-3 (2006...
  • DIN EN 14488-3:2006-09 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens; German version EN 14488-3:2006 / Note: To be replaced by DIN EN 14488-3 (2021-05).
  • DIN VDE 0418-4:1967 Specifications for electric integrating meters; Maximum demand indicators
  • DIN EN 10049:2014-03 Measurement of roughness average Ra and peak count RPc on metallic flat products; German version EN 10049:2013
  • DIN ISO 6133:2004 Rubber and plastics - Analysis of multipeak traces obtained in determination of tear strength and adhesion strength (ISO 6133:1998)
  • DIN ISO 6133:2017 Rubber and plastics - Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength (ISO 6133:2015)
  • DIN 804:1977-03 Machine Tools; On-load Speeds for Machine Tools; Nominal Values, Limiting Values, Transmission Ratios
  • DIN EN 10314:2003 Method for the derivation of minimum values of proof strength of steel at elevated temperatures; German version EN 10314:2002
  • DIN EN 10314:2016-10 Method for the derivation of minimum values of proof strength of steel at elevated temperatures; German version EN 10314:2016
  • DIN EN 14488-3:2006 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens English version of DIN EN 14488-3:2006-09
  • DIN EN 1875-3:2023-04 Rubber- or plastics-coated fabrics - Determination of tear strength - Part 3: Trapezoidal method (five-highest-peak calculation); German version EN 1875-3:2023
  • DIN EN 1875-3:2023 Rubber- or plastics-coated fabrics - Determination of tear strength - Part 3: Trapezoidal method (five-highest-peak calculation)
  • DIN 65474:1992 Aerospace; fibre reinforced plastics; thermal-spike test method

ATIS - Alliance for Telecommunications Industry Solutions, peak intensity ratio

  • T1.TR.74-2001 Objective Video Quality Measurement Using a Peak- Signal-to-Noise-Ratio (PSNR) Full Reference Technique

Lithuanian Standards Office , peak intensity ratio

  • LST EN 14488-3-2006 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • LST EN 10049-2006 Measurement of roughness average Ra and peak count RPc on metallic flat products
  • LST EN 1194-2000 Timber structures - Glued laminated timber - Strength classes and determination of characteristic values
  • LST EN 10314-2003 Method for the derivation of minimum values of proof strength of steel at elevated temperatures

European Committee for Standardization (CEN), peak intensity ratio

  • prEN 14488-3-2021 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • EN 10049:2013 Measurement of roughness average Ra and peak count RPc on metallic flat products
  • EN 14651:2005 Test method for metallic fibre concrete - Measuring the flexural tensile strength (limit of proportionality (LOP), residual) Incorporates Amendment A1: 2007
  • EN ISO 1157:1999 Plastics - Cellulose Acetate in Dilute Solution - Determination of Viscosity Number and Viscosity Ratio ISO 1157: 1990
  • EN 10314:2016 Method for the derivation of minimum values of proof strength of steel at elevated temperatures
  • EN 14488-3:2006 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • EN 1194:1999 Timber Structures - Glued Laminated Timber - Strength Classes and Determination of Characteristic Values

AENOR, peak intensity ratio

  • UNE-EN 14488-3:2007 Testing sprayed concrete - Part 3: Flexural strengths (first peak, ultimate and residual) of fibre reinforced beam specimens
  • UNE 53612:1984 RUBBER-ANALYSIS OF MULTI-PEAK TRACES OBTAINED IN DETERMINATIONS OF TEAR STRENGTH AND ADHESION STRENGTH

CEN - European Committee for Standardization, peak intensity ratio

  • EN 10049:2005 Measurement of roughness average Ra and peak count RPc on metallic flat products

Korean Agency for Technology and Standards (KATS), peak intensity ratio

KR-KS, peak intensity ratio

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, peak intensity ratio

  • GB/T 12833-1991 Rubber and plastics--Analysis of multi-peak traces obtained in determinations of tear strength and adhesion strength
  • GB/T 12833-2006 Rubber and plastics. Analysis of multipeak traces obtained in determinations of tear strength and adhesion strength
  • GB/T 3771-1983 Conversion of hardness and strength for copper alloys
  • GB/T 2523-2008 Measuring method of surface roughness and peak count for cold-rolled metal sheet (strip)
  • GB/T 2523-2022 Measuring method of surface roughness, peak count and waviness for cold-rolled metal sheet and strip
  • GB/T 1172-1999 Conversion of hardness and strength for ferrous metal
  • GB/T 13072-1991 Method for measuring the activity ratios of Ra226 to Ra228 in geological water samples
  • GB/T 13783-1992 Cotton fibres--Determination of breaking tenacity of flat bundles

RU-GOST R, peak intensity ratio

  • GOST R 57183-2016 Timber structures. Test methods for determination of embedment strength and ratio foundation stiffness values for dowel type fasteners
  • GOST R 50005-1992 Lasers and solid-state laser heads. Measurement methods of peak local energy (power) density
  • GOST 26423-1985 Soils. Methods for determination of specific electric conductivity, pH and solid residue of water extract

NZ-SNZ, peak intensity ratio

  • AS/NZS 3889:1993 Rubber and Plastics - Analysis of Multi-Peak Traces Obtained in Determinations of Tear Strength and Adhesion Strength

ES-UNE, peak intensity ratio

  • UNE-ISO 6133:2022 Rubber and plastics. Analysis of multi-peak traces obtained of determinations of tear strength and adhesion strength
  • UNE-EN 10049:2013 Measurement of roughness average Ra and peak count RPc on metallic flat products (Endorsed by AENOR in January of 2014.)
  • UNE-EN 10314:2016 Method for the derivation of minimum values of proof strength of steel at elevated temperatures
  • UNE-EN 1875-3:2023 Rubber- or plastics-coated fabrics - Determination of tear strength - Part 3: Trapezoidal method (five-highest-peak calculation)

Group Standards of the People's Republic of China, peak intensity ratio

  • T/GDC 242-2023 Modified High Density Polyethylene (Ds PE) Double Order Peak Enhancement Tube
  • T/GZHG 024-2022 Nano-modified high-density polyethylene (MUHDPE) double-peak reinforced buried drainage pipe
  • T/GDC 84-2021 Nano-modified high-density polyethylene (MUHDPE) double-peak reinforced drainage pipe for buried
  • T/YNSX 006-2022 High molecular weight high density polyethylene (HMWHDPE) double crest reinforced reinforced winding structure wall drainage pipe

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, peak intensity ratio

  • ITU-R BS.1770-3-2012 Algorithms to measure audio programme loudness and true-peak audio level
  • ITU-R BS.1770-2006 Algorithms to measure audio programme loudness and true-peak audio level ((Question ITU-R 2/6))

ZA-SANS, peak intensity ratio

  • SANS 6246:2006 Treton impact value of aggregates
  • SANS 6239:2006 Aggregate impact value of coarse aggregate
  • SANS 16133:2003 Rubber and plastics - Analysis of multipeak traces obtained in determinations of tear strength and adhesion strength

The Society for Protective Coatings (SSPC), peak intensity ratio

  • SSPC PA 17-2012 Procedure for Determining Conformance to Steel Profile/Surface Roughness/Peak Count Requirements

SSPC - The Society for Protective Coatings, peak intensity ratio

  • PA 17-2012 Procedure for Determining Conformance to Steel Profile/Surface Roughness/Peak Count Requirements

YU-JUS, peak intensity ratio

  • JUS G.S2.152-1985 Rubber and plastics. Analysis of multi-peak traces obtained in determination of tear strength and adhesion strength
  • JUS C.A4.013-1993 Mechanical testing of metals - Conversion of hardness values steel to tensile strength values
  • JUS M.E2.213-1994 Boiler plants - Additional testings - Methods for the mathematical calculation of components with time-dependent characteristic values of strength

PL-PKN, peak intensity ratio

  • PN P04930-08-1991 Wool Determination of staple specific strength
  • PN H04357-1993 Steel and cast steel. Comparative tables of the Rockwell, Vickers, Brinell and Shore. Hardnes and tensile strength values

American Society of Mechanical Engineers (ASME), peak intensity ratio

  • ASME STP-PT-087-2018 Yield Strength Values up to Maximum Temperature Design
  • ASME SEC VIII D2 MA APP 1-2001 Appendix 1 - Mandatory Basis for Establishing Design Stress Intensity Values
  • ASME SEC III D1 MA APP III-2001 Appendix III Basis for Establishing Design Stress Intensity Values and Allowable Stress Values
  • ASME N-525-2001 Design Stress Intensities and Yield Strength Values for UNS N06690 with a Minimum Specified Yield Strength of 30 ksi, Class 1 Components Section III, Division 1

国家广播电影电视总局, peak intensity ratio

  • GY/T 282-2014 Technical requirements for average loudness and true peak audio level of digital television programs

Professional Standard - Aviation, peak intensity ratio

  • HB/Z 215-1992 Conversion value of hardness and strength of aluminum alloy sheet

Taiwan Provincial Standard of the People's Republic of China, peak intensity ratio

  • CNS 617-1998 Method for determination of pyrometric cone equivalent (retractoriness) of refractory products
  • CNS 15032-2006 Solar energy - Calibration of field pyrheliometers by comparison to a reference pyrheliometer

ESDU - Engineering Sciences Data Unit, peak intensity ratio

  • AERO 00.01.08 A-1982 Specific heat capacities and their ratio as functions of temperature for several common gases.
  • ESDU 81012-1981 Fatigue threshold stress intensity factors and slow crack propagation rates in low and medium strength low alloy steel.
  • ESDU 81012-2013 Fatigue threshold stress intensity factors and slow crack propagation rates in low and medium strength low alloy steel
  • ESDU 17003-2017 Fatigue Crack Propagation Rates and Threshold Stress Intensity Factors in High Strength Low Alloy Steel Plate@ Bar and Forgings
  • ESDU 85019-1985 Fatigue crack propagation rates and threshold stress intensity factors in high strength low alloy steel plate@ bar and forgings.

United States Navy, peak intensity ratio

IT-UNI, peak intensity ratio

(U.S.) Plastic Pipe Association, peak intensity ratio

  • PPI TN-18-1998 Policy for Determining Long-Term Strength (LTHS) by Temperature Interpolation

BE-NBN, peak intensity ratio

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., peak intensity ratio

  • ASHRAE DA-00-3-4-2000 Church Heating: Numerical Modeling and Comparison between Radiant and Forced Convection Systems
  • ASHRAE 4496-2002 Optimization Method for Minimizing Annual Energy@ Peak Demand@ and Annual Energy Cost Through Use of Building Thermal Storage

American Society for Testing and Materials (ASTM), peak intensity ratio

  • ASTM D3588-98 Standard Practice for Calculating Heat Value, Compressibility Factor, and Relative Density of Gaseous Fuels
  • ASTM D3588-98(2003) Standard Practice for Calculating Heat Value, Compressibility Factor, and Relative Density of Gaseous Fuels
  • ASTM D2555-98e1 Standard Test Methods for Establishing Clear Wood Strength Values
  • ASTM D2555-98 Standard Test Methods for Establishing Clear Wood Strength Values
  • ASTM D2555-06(2011) Standard Practice for Establishing Clear Wood Strength Values
  • ASTM D2555-17a Standard Practice for Establishing Clear Wood Strength Values
  • ASTM D2555-16 Standard Practice for Establishing Clear Wood Strength Values
  • ASTM A686-92 Clamps, Support, Comparative Fatigue Strengths, Test Method
  • ASTM E816-05 Standard Test Method for Calibration of Pyrheliometers by Comparison to Reference Pyrheliometers
  • ASTM D2555-06 Standard Practice for Establishing Clear Wood Strength Values
  • ASTM E816-15 Standard Test Method for Calibration of Pyrheliometers by Comparison to Reference Pyrheliometers
  • ASTM D2555-17 Standard Practice for Establishing Clear Wood Strength Values
  • ASTM D2555-05a Standard Practice for Establishing Clear Wood Strength Values
  • ASTM D2555-05 Standard Practice for Establishing Clear Wood Strength Values
  • ASTM E812-91(1997) Standard Test Method for Crack Strength of Slow-Bend Precracked Charpy Specimens of High-Strength Metallic Materials (Withdrawn 2005)
  • ASTM D2555-15 Standard Practice for Establishing Clear Wood Strength Values

SAE - SAE International, peak intensity ratio

Institute of Electrical and Electronics Engineers (IEEE), peak intensity ratio

  • IEEE P1528/D6, March 2013 IEEE Draft Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques
  • IEEE 1528-2003 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques Amendment: 2/24/2006
  • IEEE Std 1528-2003 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques
  • IEEE Std 1528-2013 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques - Redline
  • IEEE 1528-2013 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques

Military Standard of the People's Republic of China-General Armament Department, peak intensity ratio

  • GJB 1172.15-1991 Military equipment climate extreme aerial precipitation intensity
  • GJB 1172.5-1991 Military equipment climate extreme ground precipitation intensity

ITU-T - International Telecommunication Union/ITU Telcommunication Sector, peak intensity ratio

  • ITU-T J.340-2010 Reference algorithm for computing peak signal to noise ratio of a processed video sequence with compensation for constant spatial shifts@ constant temporal shift@ and constant luminance gain and offset (Study Group 9)

Professional Standard - Electron, peak intensity ratio

  • SJ 2355.7-1983 Method of measurement for peak emission wavelength and spectral radiation bandwidth of light-emitting devices
  • SJ 2658.12-1986 Methods of measurement for semiconductor infrared diodes Methods of measurement for peak emission wavelength and spectral half width

Professional Standard - Post and Telecommunication, peak intensity ratio

  • YD/T 4196-2023 Determination of spatial average peak specific absorption rate (SAR) in the human body General requirements for wireless communication equipment (30MHz-6GHz) Finite element method (FEM) calculation of SAR

VN-TCVN, peak intensity ratio

  • TCVN 6034-1995 Textile cotton fibres.Determination of breaking tenacity of flat bundles

未注明发布机构, peak intensity ratio

  • BS 6319-9:1987(1999) Testing of resin compositions for use in construction — Part 9 : Method for measurement and classification of peak exotherm temperature

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., peak intensity ratio

  • IEEE 1528 ERTA-2013 Errata to IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques

工业和信息化部, peak intensity ratio

  • YD/T 3552-2019 Determine the average peak specific absorption rate (SAR) in the human body. Wireless communication equipment (30MHz~6GHz). Special requirements for calculating SAR using the finite difference time domain (FDTD) method.
  • YD/T 3553-2019 Determining the spatial average peak specific absorption rate (SAR) in the human body Wireless communication equipment (30MHz ~ 6GHz) General requirements for calculating SAR using the finite difference time domain (FDTD) method

Association of German Mechanical Engineers, peak intensity ratio

API - American Petroleum Institute, peak intensity ratio

  • API REPORT 07714-CAP-1998 Strength of Simple Joints - Effect of Chord Stress and Diameter-to-Thickness Ratio on the Static Strength of DT Tubular Joints Loaded in Brace Compression

American Gear Manufacturers Association, peak intensity ratio

  • AGMA 93FTMS1-1993 Spur Gear Bending Strength Geometry Factors: A Comparison of AGMA and ISO Methods

Professional Standard - Commodity Inspection, peak intensity ratio

  • SN 0045-1992 Method for inspection of PONA of naphtha for exportMethod for test of density and specific gracityof liquids with lipkin bicapillary pycnometer




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