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Database: 365,228(8 Aug 2026)

Analysis of experimental results of circuit design of temperature measuring bridge

Analysis of experimental results of circuit design of temperature measuring bridge, Total:78 items.

The international standard classification for "Analysis of experimental results of circuit design of temperature measuring bridge" includes: Metrology and measurement in general , Product and company certification. Conformity assessment , Public buildings .

The Chinese standard classification for "Analysis of experimental results of circuit design of temperature measuring bridge" includes: Display recording instrument , Residential and public building engineering .


Professional Standard - Machinery

  • JB/T 9231-1999 Directives of designing and calculating the bridge resistances and scales of moving coil temperature indicators

Group Standards of the People's Republic of China

国家市场监督管理总局

  • RB/T 039-2020 Guidance for metrological traceability results instruments and equipments in testingconfirmation of laboratory

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

  • GB/T 32146.2-2015(法语版) Technical requirements for design and construction of inspection and testing laboratories Part 2: Electrical laboratories
  • GB/T 32146.2-2015 Technical requirements of design and construction for inspection and testing laboratory―Part 2:Electrical laboratory

IX-SA

  • AS 303:1972 Structural Analysis and Experimental Design

American National Standards Institute (ANSI)

  • ANSI/ASTM E1323:2009 Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ANSI/ASTM D7372:2021 Standard Guide for Analysis and Interpretation of Proficiency Test Program Results

American Society for Testing and Materials (ASTM)

  • ASTM E1323-15 Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ASTM E1323-89(2002) Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ASTM E1323-89(1994)e1 Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ASTM E1323-15(2020) Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ASTM E1323-09 Standard Guide for Evaluating Laboratory Measurement Practices and the Statistical Analysis of the Resulting Data
  • ASTM E1006-21 Standard Practice for Analysis and Interpretation of Physics Dosimetry Results from Test Reactor Experiments
  • ASTM E1006-13 Standard Practice for Analysis and Interpretation of Physics Dosimetry Results from Test Reactor Experiments
  • ASTM D933-84(2007) Standard Practice for Reporting Results of Examination and Analysis of Water-Formed Deposits
  • ASTM D933-84(1999) Standard Practice for Reporting Results of Examination and Analysis of Water-Formed Deposits
  • ASTM E1763-06 Standard Guide for Interpretation and Use of Results from Interlaboratory Testing of Chemical Analysis Methods
  • ASTM E1763-98(2003) Standard Guide for Interpretation and Use of Results from Interlaboratory Testing of Chemical Analysis Methods
  • ASTM E1763-98 Standard Guide for Interpretation and Use of Results from Interlaboratory Testing of Chemical Analysis Methods

Association Francaise de Normalisation

  • NF A06-001:1979 Analysis of light metals by spectrography. Processing of test results. Statistical interpretation.
  • NF T51-199:1974 Plastics : statistical analysis of experimental results. Henry test.
  • XP P98-405:1998 Road safety barriers. Railings for bridges and civil engineering structures. Design, manufacturing, implementation.
  • NF A06-000:1979 Statistical interpretation of interlaboratory tests. Simplified method applicable to maximum 20 laboratories and maximum 10 results per laboratory.
  • NF X11-632:1990 SIZE DETERMINATION. EXPRESSION FO RESULTS OF SIZE DETERMINATION.
  • NF V09-105:2008 Sensory analysis - General guidance for the design of test rooms.

Korean Agency for Technology and Standards (KATS)

  • KS Q ISO 22971-2012(2017) Accuracy (trueness and precision) of measurement methods and results-Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatabil
  • KS D ISO 7242:2006 Chemical analysis of light metals and their alloys-Statistical interpretation of inter-laboratory trials
  • KS Q ISO 22971-2022 Accuracy (trueness and precision) of measurement methods and results-Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and eproducibility results
  • KS Q ISO 22971-2012(2022) Accuracy (trueness and precision) of measurement methods and results-Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatabil
  • KS Q ISO 22971:2012 Accuracy (trueness and precision) of measurement methods and results-Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and eproducibility results

ES-AENOR

International Organization for Standardization (ISO)

  • ISO/TR 7242:1981 Chemical analysis of light metals and their alloys; Statistical interpretation of inter-laboratory trials
  • ISO/TR 22971:2005 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • ISO 9276-3:2008 Representation of results of particle size analysis - Part 3: Adjustment of an experimental curve to a reference model
  • ISO/TR 27877:2021 Statistical analysis for evaluating the precision of binary measurement methods and their results

British Standards Institution (BSI)

  • PD ISO/TR 22971:2005 Accuracy (trueness and precision) of measurement methods and results. Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • BS ISO 9276-3:2008 Representation of results of particle size analysis - Adjustment of an experimental curve to a reference model
  • PD ISO/TR 27877:2021 Statistical analysis for evaluating the precision of binary measurement methods and their results

SCC

  • BS PD ISO/TR 22971:2005 Accuracy (trueness and precision) of measurement methods and results. Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • DANSK DS/ISO/TR 22971:2005 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • DIN ISO /TR 22971:2012 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results (ISO/TR 22971:2005...
  • AWWA ACE90002 Analysis and Results of a Statewide Meter Testing Program
  • VDI/VDE 2635 BLATT 2-2019 Experimental structural analysis - Recommendation for carrying out strain measurements at high temperatures
  • VDI/VDE/GESA 2635 BLATT 2:2004 Experimental structural analysis — Recommendation for carrying out strain measurements at high temperatures
  • AWWA JAW10546 Journal AWWA — A Statistical Experimental Design for Comparison Testing of Analytical Procedures
  • VDI/VDE 2635 BLATT 1-2015 Experimental structural analysis — strain gauges with metallic measuring grid — characteristics and test conditions
  • AWWA JAW6223 Journal AWWA — Interpreting Laboratory Results For the Design of Rapid Mixing and Flocculation Systems
  • AS 1038.16:1986 Coal and coke - Analysis and testing - Acceptance and reporting of results
  • BS PD ISO/TR 27877:2021 Statistical analysis for evaluating the precision of binary measurement methods and their results
  • DANSK DS/ISO/TR 27877:2021 Statistical analysis for evaluating the precision of binary measurement methods and their results

Danish Standards Foundation

  • DS/ISO/TR 22971:2005 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • DS/ISO 2602:1981 Statistical interpretation of test results. Estimation of the mean. Confidence interval
  • DS/ISO/TR 27877:2021 Statistical analysis for evaluating the precision of binary measurement methods and their results

American Concrete Institute

  • ACI 343R-1995 Analysis and Design of Reinforced Concrete Bridge Structures

Indonesia Standards

  • SNI 04-6185.2-1999 Short-circuit current - Calculation of effects - Part 2: Examples of calculation

PL-PKN

ZA-SANS

  • SANS 22971:2010 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results
  • SANS 60865-2:2008 Short-circuit currents - Calculation of effects Part 2: Examples of calculation

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

  • ASHRAE HI-02-11-1-2002 Early Detection of Insulation Breakdown in Low-Voltage Motors@ Part I: Background@ Experimental Design@ and Preliminary Results (RP-1078)
  • ASHRAE NY-08-014-2008 Performance of VAV Series Fan-Powered Terminal Units: Experimental Results and Models (RP-1292)
  • ASHRAE 3752-1994 Design Sensitivity Analysis for Optimal Temperature Control of a Radiant Electric Slab

VDI - Verein Deutscher Ingenieure

  • VDI/VDE/GESA 2635 Blatt 2-2001 Experimentelle Strukturanalyse - Empfehlungen zur Durchfuehrung von Dehnungsmessungen bei hohen Temperaturen
  • VDI/VDE 2635 BLATT 2-2018 Experimentelle Strukturanalyse - Empfehlung zur Durchfuehrung von Dehnungsmessungen bei hohen Temperaturen
  • VDI/VDE/GESA 2635 Blatt 1-2007 Experimental structure analysis - Metallic bonded resistance strain gages - Characteristics and testing conditions
  • VDI/VDE/GESA 2635 Blatt 1-2005 Experimental structure analysis - Metallic bonded resistance strain gages - Characteristics and testing conditions
  • VDI/VDE 2635 Blatt 1-2014 Experimental structure analysis - Metallic bonded resistance strain gages - Characteristics and testing conditions

Association of German Mechanical Engineers

German Institute for Standardization

  • DIN ISO/TR 22971:2012 Accuracy (trueness and precision) of measurement methods and results - Practical guidance for the use of ISO 5725-2:1994 in designing, implementing and statistically analysing interlaboratory repeatability and reproducibility results (ISO/TR 22971:2005);

AGMA - American Gear Manufacturers Association

  • P229.27-1983 Results of an Experimental Program Utilized to Verify a New Gear Tooth Strength Analysis

YU-JUS

  • JUS N.A5.200-1979 Ageing testing of electrical insulating materials. Statistical analysis ofageing test data. Methods based on mean values ofnormally distributed test results

ETSI - European Telecommunications Standards Institute

  • TR 101 562-2-2012 PowerLine Telecommunications (PLT); MIMO PLT; Part 2: Setup and Statistical Results of MIMO PLT EMI Measurements (V1.2.1)

The American Road & Transportation Builders Association

AT-ON

  • ONORM B 4003-1994 Bridges for railroads and trams - General principles for design and construction

GB-REG

  • REG NASA-LLIS-1804--2007 Lessons Learned ?Design and Analysis of Electronic Circuits for Worst Case Environments and Part Variations

WRC - Welding Research Council

  • BULLETIN 274-1982 INTERNATIONAL BENCHMARK PROJECT ON SIMPLIFIED METHODS FOR ELEVATED TEMPERATURE DESIGN AND ANALYSIS: PROBLEM II – THE SACLAY FLUCTUATING SODIUM LEVEL EXPERIMENT; COMPARISON OF ANALYTICAL AND EXPE