Double trace measurement
Double trace measurement, Total:150 items.
The international standard classification for "Double trace measurement" includes: Walls. Partitions. Facades , Geology. Meteorology. Hydrology , Telecontrol. Telemetering .
The Chinese standard classification for "Double trace measurement" includes: Technical Management , Building construction and decoration engineering , Meteorology , Remote control and remote measuring equipment and system .
Professional Standard - Electron
- SJ/T 10029-1991 Dual-trace oscilloscope for Type SR8
- SJ 2534.12-1987 Test procedures for antennas-Special measurement for angle-tracking antennas
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 32525-2016 General specification for photoelectric tracking and measuring equipment
- GB/T 30594-2014 Thermal performance of double-skin glass facade—Tracer gas mehtod
Group Standards of the People's Republic of China
- T/CAMS 29-2019 CNC Crankshaft Orbital Grinding Machine with Dual-wheelhead
- T/CRES 0002-2018 Test Method for Solar Heliostat Tracking Accuracy
- T/CEC 5087-2023 Technical Specifications for Laser Tracking Measurement of Hydrogenerator Set Installation
- T/CQCBDS 0017-2018 Technical Specification of dual Mode Positioning Logistics Tracking System for Beidou/GPS
Military Standard of the People's Republic of China-General Armament Department
- GJB 7063-2010 Evaluation methods for the tracking and controlling quality of the space TT&C equipment
- GJB 1376.2-1996 Radar tracking subsystem performance test method distance tracking performance
- GJB 8624-2015 Large-scale measurement system - laser tracker calibration specifications
- GJB 3147-1998 General specifications for infrared tracking measurement systems
- GJB 7895-2012 The tracking and measuring regulation of locomotive CW velocity-measurement radar for space test range
Yunnan Provincial Standard of the People's Republic of China
- DB53/T 327.20-2010 Burley Tobacco Quality Tracking
- DB53/T 207.29-2007 Quality Tracking of Yongsheng Flue-cured Tobacco Leaf
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 33903-2017 Automatic solar tracker of shading ball model for diffuse radiation measurement
- GB/T 33692-2017 Automatic solar tracker for direct radiation measurement
National Metrological Technical Specifications of the People's Republic of China
- JJF 1242-2010 Calibration Specification for Laser Tracker 3-Dimensional Measuring System
Military Standard of the People's Republic of China-Commission of Science,Technology and Industry for National Defence
- GJB/J 6201-2008 Calibration Specification for the Large Scale Coordinate Measurement System-Laser Tracker
Professional Standard - Nuclear Industry
- EJ/T 615-1991 Barium-131 tracer logging microspheres
Professional Standard - Aerospace
- QJ 1770A-1995 General specification for self-tracking telemetry stations
- QJ 1770B-2004 General specification for auto-tracking telemetry station
Association Francaise de Normalisation
- NF X10-350-3*NF ISO 9555-3:1994 Measurement of liquid flow in open channels. Tracer dilution methods for the measurement of steady flow. Part 3 : chemical tracers.
- NF X10-350-2*NF ISO 9555-2:1994 Measurement of liquid flow in open channels. Tracer dilution methods for the measurement of steady flow. Part 2 : radioactive tracers.
- NF X10-350-4*NF ISO 9555-4:1994 Measurement of liquid flow in open channels. Tracer dilution methods for the measurement of steady flow. Part 4 : fluorescent tracers.
- NF ISO 9555-3:1994 Liquid flow measurement in open channels - Steady state dilution methods using tracers - Part 3: chemical tracers
- NF X10-133:1977 Measurement of water flow in closed pipes - Tracer methods - Part III: constant flow injection method using radioactive tracers
- NF X10-132:1975 Measurement of water flow in closed pipes - Tracer methods - Part II: constant flow injection method using non-radioactive tracers
- NF ISO 9555-2:1994 Liquid flow measurement in open channels - Steady state dilution methods using tracers - Part 2: radioactive tracers
- NF X10-137:1977 Mesure de débit de l'eau dans les conduites fermées - Méthodes par traceurs - Partie VII : méthode du temps de transit utilisant des traceurs radioactifs.
- NF ISO 9555-4:1994 Flow measurement of liquids in open channels - Steady state dilution methods using tracers - Part 4: fluorescent tracers
- NF X10-136:1977 Mesure de débit de l'eau dans les conduites fermées - Méthodes par traceurs - Partie VI : méthode du temps de transit utilisant des traceurs non radioactifs.
- NF X10-144:1982 Measurement of gas flow in closed pipes - Tracer methods - Part 4: transit time method using radioactive tracers
- NF ISO 24460:2023 Mesure du débit des fluides dans des conduites fermées - Méthodes par traceur radioactif
- NF X10-350-1*NF ISO 9555-1:1994 Measurement of liquid flow in open channels. Tracer dilution methods for the measurement of steady flow. Part 1 : general.
- NF X10-141:1982 Measurement of gas flow in closed pipes - Tracer methods - Part 1: generalities
- NF X10-131:1974 Measurement of water flow in closed pipes - Tracer methods - Part I: generalities
International Organization for Standardization (ISO)
- ISO 9555-3:1992 Measurement of liquid flow in open channels; tracer dilution methods for the measurement of steady flow; part 3: chemical tracers
- ISO 9555-4:1992 Measurement of liquid flow in open channels; tracer dilution methods for the measurement of steady flow; part 4: fluorescent tracers
- ISO 9555-2:1992 Measurement of liquid flow in open channels; tracer dilution methods for the measurement of steady flow; part 2: radioactive tracers
- ISO/TR 11656:1993 Measurement of liquid flow in open channels; mixing length of a tracer
- ISO 4053-4:1978 Measurement of gas flow in conduits; Tracer methods; Part IV : Transit time method using radioactive tracers
- ISO 2975-7:1977 Measurement of water flow in closed conduits; Tracer methods; Part VII : Transit time method using radioactive tracers
- ISO 2975-3:1976 Measurement of water flow in closed conduits; Tracer methods; Part III : Constant rate injection method using radioactive tracers
- ISO 2975-2:1975 Measurement of water flow in closed conduits; Tracer methods; Part II : Constant rate injection method using non-radioactive tracers
- ISO 2975-6:1977 Measurement of water flow in closed conduits; Tracer methods; Part VI : Transit time method using non-radioactive tracers
- ISO/DIS 24460 Measurement of fluid flow rate in closed conduits — Radioactive Tracer Methods
- ISO 24460:2023 Measurement of fluid flow rate in closed conduits — Radioactive tracer methods
- ISO 4053-1:1977 Measurement of gas flow in conduits; Tracer methods; Part I : General
- ISO 2975-1:1974 Measurement of water flow in closed conduits; Tracer methods; Part I : General
- ISO 9555-1:1994 Measurement of liquid flow in open channels - Tracer dilution methods for the measurement of steady flow - Part 1: General
- ISO/DIS 19430 Determination of particle size distribution and number concentration by particle tracking analysis (PTA)
American National Standards Institute (ANSI)
- ANSI/ASME MFC-13M-2006 Measurement of Fluid Flow in Closed Conduits-Tracer Methods
GSO
- BH GSO ISO 9555-3:2016 Measurement of liquid flow in open channels -- Tracer dilution methods for the measurement of steady flow -- Part 3: Chemical tracers
- BH GSO ISO 9555-4:2016 Measurement of liquid flow in open channels -- Tracer dilution methods for the measurement of steady flow -- Part 4: Fluorescent tracers
- OS GSO ISO 2975-3:2014 Measurement of water flow in closed conduits -- Tracer methods -- Part 3: Constant rate injection method using radioactive tracers
- OS GSO ISO 2975-7:2014 Measurement of water flow in closed conduits -- Tracer methods -- Part 7: Transit time method using radioactive tracers
- BH GSO ISO 2975-7:2016 Measurement of water flow in closed conduits -- Tracer methods -- Part 7: Transit time method using radioactive tracers
- BH GSO ISO 2975-2:2016 Measurement of water flow in closed conduits -- Tracer methods -- Part 2: Constant rate injection method using non-radioactive tracers
- OS GSO ISO 2975-2:2014 Measurement of water flow in closed conduits -- Tracer methods -- Part 2: Constant rate injection method using non-radioactive tracers
- BH GSO ISO 2975-3:2016 Measurement of water flow in closed conduits -- Tracer methods -- Part 3: Constant rate injection method using radioactive tracers
- OS GSO ISO 2975-1:2014 Measurement of water flow in closed conduits -- Tracer methods -- Part 1: General
- GSO ISO 2975-6:2022 Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioactive tracers
- BH GSO ISO 2975-6:2023 Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioactive tracers
British Standards Institution (BSI)
- BS EN 13848-3:2021 Railway applications. Track. Track geometry quality. Measuring systems. Track construction and maintenance machines
- BS 5857-2.4:1980 Methods for measurement of fluid flow in closed conduits, using tracers. Measurement of gas flow. Transit time method using radioactive tracers
- BS 5857-1.5:1980 Methods for measurement of fluid flow in closed conduits, using tracers. Measurement of water flow. Transit time method using radioactive tracers
- 18/30304254 DC BS EN 13848-2. Railway applications. Track. Track geometry quality. Part 2. Measuring systems. Track recording vehicles
- 20/30354178 DC BS EN 13848-3. Railway applications. Track. Track geometry quality. Part 3. Measuring systems. Track construction and maintenance machines
- BS 5857-1.1:1980(2008)*ISO 2975-I:1974 Methods for measurement of Fluid flow in closed conduits, using tracers — Part 1 : Measurement of water flow — Section 1.1 General [ ISO title : Measurement of water flow in closed conduits — Tracer methods — Part I : General ]
- BS 3680-2C:1993 Measurement of liquid flow in open channels. Dilution methods. Methods of measurement using chemical tracers
- BS 3680-2B:1993 Measurement of liquid flow in open channels - Dilution methods - Methods of measurement using radioactive tracers
- BS 3680-2D:1993 Measurement of liquid flow in open channels. Dilution methods. Methods of measurement using fluorescent tracers
- BS EN 13848-5:2017 Railway applications. Track. Track geometry quality. Geometric quality levels. Plain line, switches and crossings
- BS 4088 Sec.1.2:1995 Measurement of liquid flow in open channels. Dilution methods. General
- BS 5857-2.1:1980 Methods for measurement of fluid flow in closed conduits, using tracers. Measurement of gas flow. General
- BS 5857-2.1:1980(1999)*ISO 4053-I:1977 Methods for measurement of Fluid flow in closed conduits, using tracers — Part 2 : Measurement of gas flow — Section 2.1 General [ ISO title : Measurement of gas flow in conduits — Tracer methods — Part I : General ]
- BS EN 13230-3:2016 Railway applications. Track. Concrete sleepers and bearers. Twin-block reinforced sleepers
- BS EN 13848-1:2019 Railway applications. Track. Track geometry quality. Characterization of track geometry
- 22/30404754 DC BS ISO 24460. Measurement of fluid flow rate in closed conduits. Radioactive Tracer Methods
- 19/30386991 DC BS EN 13848-6 AMD1. Railway applications. Track. Track geometry quality. Part 6. Characterisation of track geometry quality
- BS ISO 24460:2023 Measurement of fluid flow rate in closed conduits. Radioactive tracer methods
Korean Agency for Technology and Standards (KATS)
- KS B ISO 4053-4-2001(2011) Measurement of gas flow in conduits-Tracer methods-Part 4:Transit time method using radioactive tracers
- KS B ISO 2975-7-2001(2016) Measurement of water flow in closed conduits-Tracer methods-Part 7:Transit time method using radioactive tracers
- KS B ISO 4053-4:2015 Measurement of gas flow in conduits-Tracer methods-Part 4:Transit time method using radioactive tracers
- KS B ISO 4053-4:2001 Measurement of gas flow in conduits-Tracer methods-Part 4:Transit time method using radioactive tracers
- KS B ISO 4053-4-2015 Measurement of gas flow in conduits-Tracer methods-Part 4:Transit time method using radioactive tracers
- KS B ISO 2975-3:2014 Measurement of water flow in closed conduits — Tracer methods — Part 3: Constant rate injection method using radioN tracers
- KS B ISO 2975-7:2001 Measurement of water flow in closed conduits-Tracer methods-Part 7:Transit time method using radioactive tracers
- KS B ISO 2975-3:2004 Measurement of water flow in closed conduits-Tracer methods-Part 3:Constant rate injection method using radioactive tracers
- KS B ISO 2975-6:2004 Measurement of water flow in closed conduits-Tracer methods-Part 6:Transit time method using non-radioactive tracers
- KS B ISO 2975-7-2001(2021) Measurement of water flow in closed conduits-Tracer methods-Part 7:Transit time method using radioactive tracers
- KS B ISO 2975-2:2004 Measurement of water flow in closed conduits-Tracer methods-Part 2:Constant rate injection method using non-radioactive tracers
- KS B ISO 4053-1-2015 Measurement of gas flow in conduits-Tracer method-Part 1:General
- KS B ISO 2975-7-2021 Measurement of water flow in closed conduits-Tracer methods-Part 7:Transit time method using radioactive tracers
- KS B ISO 2975-3-2014(2019) Measurement of water flow in closed conduits — Tracer methods — Part 3: Constant rate injection method using radioactive tracers
- KS B ISO 4053-1:2001 Measurement of gas flow in conduits-Tracer method-Part 1:General
- KS B ISO 2975-2:2014 Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioN tracers
- KS B ISO 4053-1:2015 Measurement of gas flow in conduits-Tracer method-Part 1:General
- KS B ISO 2975-6:2014 Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioN tracers
- KS B ISO 2975-1:2014 Measurement of water flow in closed conduits — Tracer methods — Part 1: General
- KS B ISO 2975-3-2019 Measurement of water flow in closed conduits — Tracer methods — Part 3: Constant rate injection method using radioactive tracers
- KS B ISO 2975-2-2019 Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioactive tracers
- KS B ISO 2975-1:2004 Measurement of water flow in closed conduits-Tracer methods-Part 1:General
- KS B ISO 4053-1-2001(2011) Measurement of gas flow in conduits-Tracer method-Part 1:General
- KS B ISO 2975-2-2014(2019) Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioactive tracers
- KS B ISO 2975-6-2014(2019) Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioactive tracers
- KS B ISO 2975-1-2014(2019) Measurement of water flow in closed conduits — Tracer methods — Part 1: General
- KS B ISO 2975-6-2019 Measurement of water flow in closed conduits — Tracer methods — Part 6: Transit time method using non-radioactive tracers
- KS C 3563-2-2019 Personal wellness device — Activity tracker — Part 2: Step count measurement
Defense Logistics Agency
- DLA SMD-5962-77054 REV G-2011 MICROCIRCUIT, LINEAR, DUAL TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-89930 REV E-2013 MICROCIRCUIT, LINEAR, DUAL POLARITY TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-88763-1990 MICROCIRCUIT, LINEAR, DUAL-POLARITY TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-89930 REV D-2011 MICROCIRCUIT, LINEAR, DUAL POLARITY TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-88763 REV A-2010 MICROCIRCUIT, LINEAR, DUAL POLARITY TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-89930 REV C-2003 MICROCIRCUIT, LINEAR, DUAL POLARITY TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
- DLA SMD-5962-77054 REV F-2004 MICROCIRCUIT, LINEAR, DUAL TRACKING VOLTAGE REGULATOR, MONOLITHIC SILICON
Standard Association of Australia (SAA)
- AS ISO 9555.3:2023 Measurement of liquid flow in open channels — Tracer dilution methods for the measurement of steady flow, Part 3: Chemical tracers
- AS 5213:2019 Density tracer testing for measuring performance of coal density separators
- AS 3778.5.1:2022 Measurement of water flow in open channels, Part 5.1: Tracer dilution methods for the measurement of steady flow — General (ISO 9555-1:1994, IDT)
American Society of Mechanical Engineers (ASME)
- ASME MFC-13M-2006 Measurement of Fluid Flow in Closed Conduits: Tracer Methods
- ASME MFC-13M-2006(R2014) Measurement of Fluid Flow in Closed Conduits:Tracer Methods
TR-TSE
- TS 2543-1977 MEASUREMENT OF WATER FLOW ?N CLOSED CONDUTTS-TRACER METHODS PART II: CONSTANT RATE INJECTION METHOD USING NON-RADIOACTIVE TRACERS
- TS 2353-1976 MEASUREMENT OF WATER FLOW ?N CLOSED CONDUITS — TRACER METHODS PART I : GENERAL
- TS 2950-1978 Measurement Of Water Flow In Closed Conduits - Tracer Methods Part III: Constant Rate Injection Method Using Radioactive Tracers
SCC
- BS 3680-2C:1983 Measurement of liquid flow in open channels. Dilution methods-Methods of measurement using radioactive tracers
- AWWA WQTC64157 Quantification of Network Model Confidence Using Tracer Test Data
- UNE-EN 14137:2004 Postal services - Quality of service - Measurement of loss of registered mail and other types of postal service using a track and trace system
- DANSK DS/EN 14137:2003 Postal services - Quality of service - Measurement of loss of registered mail and other types of postal service using a track and trace system
- NS-EN 14137:2003 Postal services — Quality of service — Measurement of loss of registered mail and other types of postal service using a track and trace system
- AWWA MTC61132 Submerged Membranes Provide Double Barrier — against Cryptosporidium and Prosecution
- DANSK DS/ISO 24460:2023 Measurement of fluid flow rate in closed conduits – Radioactive tracer methods
- SN-CEN/TR 15472:2006 Postal services — Measurement of transit times for parcels by the use of a track and trace system
- MIL MIL-D-85056A-1982 DUAL MODE TRACKER FOR BOMBING SET, ANGLE RATE AN/ASB-19(V) (SUPERSEDING MIL-D-85056)
- DANSK DS/CEN/TS 15472:2016 Postal services - Method for measurement of parcel transit time for cross-border parcels within the European Union and EFTA using Tracking and Tracing
- SN-CEN/TS 15472:2016 Postal services — Method for measurement of parcel transit time for cross-border parcels within the European Union and EFTA using Tracking and Tracing
United States Navy
- NAVY MIL-D-85056 A VALID NOTICE 1-1991 DUAL MODE TRACKER FOR BOMBING SET, ANGLE RATE AN/ASB-19(V)
- NAVY MIL-D-85056 A-1982 DUAL MODE TRACKER FOR BOMBING SET, ANGLE RATE AN/ASB-19(V)
- NAVY MIL-D-85056 A NOTICE 2-1996 DUAL MODE TRACKER FOR BOMBING SET, ANGLE RATE AN/ASB-19(V)
HU-MSZT
- MNOSZ 15593-1953 Surveying measurement tools. biprism
German Institute for Standardization
- DIN 45549:1980 Tracking ability-test-record
- DIN 45549:1980-12 Tracking ability-test-record
ECSS - European Cooperation for Space Standardization
- E-ST-50-02C-2008 Ranging and Doppler tracking
Danish Standards Foundation
- DS/CEN/TR 15472:2006 Postal services - Measurement of transit times for parcels by the use of a track and trace system
CEN - European Committee for Standardization
- PD CEN/TR 15472:2006 Postal services - Measurement of transit times for parcels by the use of a track and trace system
European Committee for Standardization (CEN)
- PD CEN/TR 15472:2016 Postal services - Measurement of transit times for parcels by the use of a track and trace system
- CEN/TS 15472:2016 Postal services - Method for measurement of parcel transit time for cross-border parcels within the European Union and EFTA using Tracking and Tracing
American Society for Testing and Materials (ASTM)
- ASTM E2029-11(2019) Standard Test Method for Volumetric and Mass Flow Rate Measurement in a Duct Using Tracer Gas Dilution
US-Unspecified Preparing Activity
- DI-MGMT-80257-1986 FOLLOW-UP SURVEY AND INSPECTION REPORT
AENOR
- UNE-CEN/TR 15472:2008 IN Postal services - Measurement of transit times for parcels by the use of a track and trace system
Double flange measurement interface,Bipolar transistors - Methods of measurement of low frequency noise figure,Optical measurement of tracer particles,Dual Signal Selective Measurement,Measured 22 pairs,Technical Requirements for Exhaust Pollutant Measuring Equipment of Gasoline Vehicle Double Idle Method,Dual Wavelength Measurement,bipotential measurement,Double Rod Moisture Meter,Single and Dual Wavelength Measurements,dual wave measurement