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Database: 365,228(8 Aug 2026)

gas phase time peak

gas phase time peak, Total:113 items.

The international standard classification for "gas phase time peak" includes: Photographic equipment. Projectors , Leisure. Tourism , Geology. Meteorology. Hydrology .

The Chinese standard classification for "gas phase time peak" includes: Camera and photograph instrument , Supply and Use Relation , Meteorology .


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

  • GB/T 8338-2023 Camera shutters—Time measurement
  • GB/T 42887-2023 Digital still cameras—Measuring shooting timing lag, shutter release time lag, shooting rate, and start-up time

Taiwan Provincial Standard of the People's Republic of China

Professional Standard - Machinery

国家旅游局

  • LB/T 068-2017 Standards of responding to tourist scenic area during peak hours

Sichuan Provincial Standard of the People's Republic of China

  • DB51/T 2141-2016 Response requirements for tourist attractions during peak tourist hours

中国气象局

  • QX/T 365-2016 Specifications for schedule format of meteorological satellites

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1832-2016 Measurement of shooting time lag, shutter time lag, shooting speed and start-up time of digital cameras in photography

PL-PKN

  • PN T01504-60-1987 Diodes Measuring methods Instant and peak forward recovery voltages Ufr, Ufrm and forward recovery time tfr
  • PN N84509-1992 Photography. Camera shutters. Timing

German Institute for Standardization

  • DIN 5483-1:1983 Time-dependent quantities; terms for the time-dependency
  • DIN V 32879-1:1995 Optoelectronic measurement of distance using time-of-flight principle - Part 1: Incoherent time-of-flight principle

International Telecommunication Union (ITU)

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector

SCC

  • ITU-T G.8273 AMD 1-2020 Framework of phase and time clocks Amendment 1
  • AWWA QTC97003 Correlations Between Travel Time and Water Quality in a Deadend Loop
  • UNE 21099:1966 INDICATIVE TIMETABLE INDEX OF PHASE POSITION FOR TRIPHASIC NETWORKS CONDUCTORS
  • ITU-T G.8275.1-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
  • ITU-T G.8275.1 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
  • ITU-T Y.1369.1-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
  • ITU-T G.8275.2-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
  • NS-EN 13826:2003 Peak expiratory flow meters
  • AENOR UNE 52003:1958 Determination of work times. Normal time and standard time.
  • ITU-T Y.1369.2-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
  • ITU-T G.8275.2 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
  • ITU-T Y.1369.2 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with partial timing support from the network
  • ITU-T Y.1369.1 AMD 3-2020 Precision time protocol telecom profile for phase/time synchronization with full timing support from the network
  • ITU-T G.8271-2020 Time and phase synchronization aspects of telecommunication networks
  • ITU-T Y.1366-2020 Time and phase synchronization aspects of telecommunication networks
  • UNE-EN 13826:2004 Peak expiratory flow meters
  • BS ISO 18573:2003 Conveyor belts. Test atmospheres and conditioning periods
  • VDI 2852 BLATT 3-2001 Characteristics of numerically controlled manufacturing equipment — positioning time, spindle acceleration time, waiting time
  • ULC 337-2004 Delayed-Action Timelocks (ULC S337)

IETF - Internet Engineering Task Force

Korean Agency for Technology and Standards (KATS)

  • KS C 2375-2006(2021) Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison
  • KS A ISO 516:2003 Photography-Camera shutters-Timing
  • KS C 2375-2006(2016) Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison
  • KS C 2375-2021 Analytical method of polychlorinated biphenyls(PCBs)by gas chromatography peak pattern comparison

International Organization for Standardization (ISO)

  • ISO 15781:2015 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • ISO 15781:2013 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • ISO 516:1999 Photography - Camera shutters - Timing
  • ISO 15781:2019 Photography — Digital still cameras — Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time lag
  • ISO 516:1973 Photography — Still cameras — Shutter exposure-time markings

RO-ASRO

British Standards Institution (BSI)

  • BS ISO 15781:2013 Photography. Digital still cameras. Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • BS ISO 15781:2015 Photography. Digital still cameras. Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • BS EN 13826:2003 Peak expiratory flow meters

SE-SIS

IN-BIS

RU-GOST R

  • GOST 25183.3-1982 Photographic gelatine. Method of determination of dissolution duration

GB-REG

US-FCR

ES-AENOR

  • UNE 52 003 Determination of working time, standard time and time types

European Committee for Standardization (CEN)

ESDU - Engineering Sciences Data Unit

  • ESDU 84020-1984 An introduction to time-dependent aerodynamics of aircraft response@ gusts and active controls.

CZ-CSN

Japanese Industrial Standards Committee (JISC)

  • JIS B 8419:2010 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time and response time

Military Standards (MIL-STD)

YU-JUS

  • JUS N.R1.108-1977 Electronic tubes. Measurements of the electrical properties. Measurement of cathode heating time and heater warm-up time

Society of Motion Picture and Television Engineers (SMPTE)

  • SMPTE EG 40-2002 Engineering Guideline Conversion of Time Values Between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
  • SMPTE EG 40-2012 Engineering Guideline Conversion of Time Values Between SMPTE 12-1 Time Code, MPEG-2 PCR Time Base and Absolute Time
  • SMPTE RP 159-1995 Vertical Interval Time Code and Longitudinal Time Code Relationship

Lithuanian Standards Office

GSO

  • OS GSO ISO 15781:2015 Photography -- Digital still cameras -- Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • BH GSO ISO 15781:2017 Photography -- Digital still cameras -- Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • BH GSO ISO 18573:2016 Conveyor belts -- Test atmospheres and conditioning periods
  • GSO ISO 18573:2013 Conveyor belts -- Test atmospheres and conditioning periods
  • OS GSO ISO 18573:2013 Conveyor belts -- Test atmospheres and conditioning periods

Danish Standards Foundation

  • DS/ISO 15781:2013 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time

Defense Logistics Agency

Association Francaise de Normalisation

American Society of Mechanical Engineers (ASME)

ITE - Institute of Transportation Engineers

  • LP-241-1992 Stuck in Traffic—Coping With Peak-Hour Traffic Congestion
  • CD-032-2005 Transit Despeje Intervals

Institute of Electrical and Electronics Engineers (IEEE)

  • EG 40:2002 EG 40:2002 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
  • SMPTE EG 40:2002 EG 40:2002 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12M Time Code, MPEG-2 PCR Time Base and Absolute Time
  • SMPTE EG 40:2012 EG 40:2012 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12-1 Time Code, MPEG-2 PCR Time Base and Absolute Time
  • EG 40:2012 EG 40:2012 - SMPTE Engineering Guideline - Conversion of Time Values between SMPTE 12-1 Time Code, MPEG-2 PCR Time Base and Absolute Time

United States Navy