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Database: 365,228(8 Aug 2026)

liquid peak time

liquid peak time, Total:99 items.

The international standard classification for "liquid peak time" includes: Chemical reagents , Photographic equipment. Projectors , Leisure. Tourism .

The Chinese standard classification for "liquid peak time" includes: Electrochemical, thermochemistry and optical profile type analyzer , Camera and photograph instrument , Supply and Use Relation .


国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 37849-2019 Method of performance testing for liquid chromatography tandem time of flight mass spectrometry

Taiwan Provincial Standard of the People's Republic of China

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

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

Professional Standard - Machinery

国家旅游局

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

Professional Standard - Agriculture

  • SN/T 5493-2023 Determination of 29 fentanyl analogs in solid and liquid samplesLiquid chromatography-quadrupole time of flight mass spectrometry

Sichuan Provincial Standard of the People's Republic of China

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

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

Anhui Provincial Standard of the People's Republic of China

  • DB34/T 2820-2017 Determination of 330 pesticide residues in Chinese herbal medicines by liquid chromatography quadrupole time-of-flight tandem mass spectrometry

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 12697:1975 Laboratory glassware; graduated pipettes, short delivery time, waiting time 15 s, class AS
  • DIN 12691:1975 Laboratory glassware; one-mark pipettes, short delivery time, waiting time 15 s, class AS
  • DIN V 32879-1:1995 Optoelectronic measurement of distance using time-of-flight principle - Part 1: Incoherent time-of-flight principle
  • DIN 12699:1975-04 Laboratory glassware; graduated pipettes for enzymatic analyses, short delivery time, waiting time 15 s, class AS
  • DIN 12699:1975 Laboratory glassware; graduated pipettes for enzymatic analyses, short delivery time, waiting time 15 s, class AS

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
  • 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
  • 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

IETF - Internet Engineering Task Force

International Organization for Standardization (ISO)

  • ISO 15781:2013 Photography - Digital still cameras - Measuring shooting time lag, shutter release time lag, shooting rate, and start-up time
  • ISO 15781:2015 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

Korean Agency for Technology and Standards (KATS)

  • KS A ISO 516:2003 Photography-Camera shutters-Timing
  • KS B ISO 6416:2021 Hydrometry — Measurement of discharge by the ultrasonic transit time (time of flight) method
  • KS B ISO 12238-2013 Pneumatic fluid power-Directional control valves-Measurement of shifting time

RO-ASRO

  • STAS 9835/2-1990 Photography STILL GAMERAS. CAMERA SHUTTERS EXPOSURE TIME MARKING
  • STAS 3331/1-1986 TIME INTERVALS AND SCALES Main coneepts
  • STAS 7883-1990 Hydrotechnical constructions time behaviour supervision general specifications

KR-KS

  • KS B ISO 6416-2021 Hydrometry — Measurement of discharge by the ultrasonic transit time (time of flight) method

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
  • ISO 9073-13:2022 Nonwovens. Test methods - Repeated liquid strike-through time

Japanese Industrial Standards Committee (JISC)

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

IN-BIS

CZ-CSN

RU-GOST R

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

GB-REG

Spanish Association for Standardization (UNE)

  • UNE 21099:1966 INDICATIVE TIMETABLE INDEX OF PHASE POSITION FOR TRIPHASIC NETWORKS CONDUCTORS
  • UNE 52 003 Determination of working time, standard time and time types

Military Standards (MIL-STD)

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

IEEE - The Institute of Electrical and Electronics Engineers@ Inc.

  • IEEE C57.109-1993 Guide for Liquid-Immersed Transformer Through-Fault-Current Duration

HU-MSZT

  • MNOSZ 19981-1955 Method for testing the softening time of liquid mineral oil cement

Lithuanian Standards Office

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

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 12238:2016 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time
  • OS GSO ISO 12238:2015 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time
  • GSO ISO 12238:2015 Pneumatic fluid power -- Directional control valves -- Measurement of shifting time

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

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

  • ASHRAE 4845-2006 Distribution of Water between Vapor and Liquid Phases of Refrigerants ((RP-1239))

Institute of Electrical and Electronics Engineers (IEEE)

  • 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
  • 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
  • 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