nanosecond multiframe
nanosecond multiframe, Total:58 items.
The international standard classification for "nanosecond multiframe" includes: Test conditions and procedures in general , Carbon materials .
The Chinese standard classification for "nanosecond multiframe" includes: Basic standards and general methods , Oxide and elementary substance .
National Metrological Verification Regulations of the People's Republic of China
- JJG(航天) 30-1987 Verification Regulations for DC Nanosecond Digital Voltmeter
Professional Standard - Post and Telecommunication
- YD/T 4294-2023 Nanosecond GNSS Relative Timing Technical Requirements and Test Methods
Military Standard of the People's Republic of China-General Armament Department
- GJB 6367-2008(XG1-2015) Modification sheet 1-2015 of the square wave calibration method for nanosecond voltage dividers and current coils
- GJB 6367-2008 Method of assignation and check by rectangular pulse injection for nanosecond voltage dividers and current measuring coils
- GJB 8152-2013 Measuring method for temporal-profile of sub-nanosecond laser pulse by the streak camera
Group Standards of the People's Republic of China
- T/CCSA 451-2023 Technical requirements and test methods of nanosecond level synchronization for positioning
- T/GDTEX 25-2022 Aoinn NDL multifunctional finishing agent
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 24491-2009 Multi-walled carbon nanotubes
- GB/T 33243-2016 Nanotechnologies-Characterization of multiwall carbon nanotube(MWCNT)
未注明发布机构
- ANSI/EIA 364-87B:2017 TP-87B Nanosecond Event Detection Test Procedure for Electrical Connectors, Contacts and Sockets
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 40568-2021 Nanotechnologies—Characterization of multiwall carbon nanotubes—Mesoscopic shape factors
HU-MSZT
- MNOSZ 5474-1955 Frame leather. Multi-layer frame skin. Footwear products
Society of Motion Picture and Television Engineers (SMPTE)
- SMPTE RP 136-2004 Time and Control Codes for 24, 25 or 30 Frame-Per-Second Motion-Picture Systems
- SMPTE RP 136-1999 Time and Control Codes for 24, 25 or 30 Frame-Per-Second Motion-Picture Systems
ECIA - Electronic Components Industry Association
- EIA-364-87-1997 TP-87 Nanosecond-Event Detection for Electrical Connectors@ Contacts and Sockets
- EIA-364-87A-2009 TP-87A NANOSECOND EVENT DETECTION TEST PROCEDURE FOR ELECTRICAL CONNECTORS@ CONTACTS AND SOCKETS
Electronic Components, Assemblies and Materials Association
- ECA 364-87-1997 TP-87 Nanosecond-Event Detection for Electrical Connectors, Contacts and Sockets
American Society for Testing and Materials (ASTM)
- ASTM B878-97(2019) Standard Test Method for Nanosecond Event Detection for Electrical Contacts and Connectors
- ASTM B878-97(2014) Standard Test Method for Nanosecond Event Detection for Electrical Contacts and Connectors
- ASTM B878-97 Standard Test Method for Nanosecond Event Detection for Electrical Contacts and Connectors
- ASTM B878-97(2003) Standard Test Method for Nanosecond Event Detection for Electrical Contacts and Connectors
Korean Agency for Technology and Standards (KATS)
- KS A ISO 9642-2002(2022) Cinematography-Time and control code for 24, 25 and 30 frames per second motion-picture systems-Specifications
- KS A ISO 9642-2002(2017) Cinematography-Time and control code for 24, 25 and 30 frames per second motion-picture systems-Specifications
- KS A ISO 9642-2022 Cinematography-Time and control code for 24, 25 and 30 frames per second motion-picture systems-Specifications
Military Standards (MIL-STD)
- DOD A-A-51100-1985 NADOLOL TABLETS
American National Standards Institute (ANSI)
- ANSI/EIA 364-87A:2009 Nanosecond Event Detection Test Procedure for Electrical Connectors, Contacts and Sockets
- ANSI/ATIS 0100801.04-2005 Multimedia Communications Delay, Synchronization and Frame Rate
British Standards Institution (BSI)
- BS ISO 9642:2020 Cinematography. Time and control code for 24, 25 and 30 frames per second motion-picture film systems. Specifications
- PD ISO/TR 10929:2012 Nanotechnologies. Characterization of multiwall carbon nanotube (MWCNT) samples
- PD ISO/TS 11888:2017 Nanotechnologies. Characterization of multiwall carbon nanotubes. Mesoscopic shape factors
- BS DD ISO/TS 11888:2011 Nanotechnologies. Characterization of multiwall carbon nanotubes. Mesoscopic shape factors
Defense Logistics Agency
- DLA A-A-59465/1 A VALID NOTICE 1-2010 Delay Line, Active, 14 Pin Surface Mount, 5 Tap, 5 to 500 Nanoseconds
Institute of Electrical and Electronics Engineers (IEEE)
- SMPTE RP 136:2004 RP 136:2004 - SMPTE Recommended Practice - Time and Control Codes for 24, 25 or 30 Frame-Per-Second Motion-Picture Systems
- RP 136:2004 RP 136:2004 - SMPTE Recommended Practice - Time and Control Codes for 24, 25 or 30 Frame-Per-Second Motion-Picture Systems
International Organization for Standardization (ISO)
- ISO 9642:2020 Cinematography — Time and control code for 24, 25 and 30 frames per second motion-picture film systems — Specifications
- ISO/TR 10929:2012 Nanotechnologies - Characterization of multiwall carbon nanotube (MWCNT) samples
CEPT - Conference Europeenne des Administrations des Postes et des Telecommunications
- CEPT T/TR 01-03 E-1986 Frame Structure at 64 kBit/s for Multimedia Applications
- CEPT T/TR 01-03-1986 64 Kbit/s Frame Structure for Multimedia Application
ATIS - Alliance for Telecommunications Industry Solutions
- T1.801.04-1997 Multimedia Communications Delay@ Synchronization@ and Frame Rate
- 0100801.04-2005 Multimedia Communications Delay@ Synchronization@ and Frame Rate
SCC
- DANSK DS/ISO/TR 10929:2012 Nanotechnologies - Characterization of multiwall carbon nanotube (MWCNT) samples
- BS PD ISO/TR 10929:2012 Nanotechnologies. Characterization of multiwall carbon nanotube (MWCNT) samples
- BS PD ISO/TS 11888:2017 Nanotechnologies. Characterization of multiwall carbon nanotubes. Mesoscopic shape factors
- DANSK DS/ISO/TS 11888:2012 Nanotechnologies – Characterization of multiwall carbon nanotubes – Mesoscopic shape factors
Association Francaise de Normalisation
- XP T16-208*XP ISO/TR 10929:2012 Nanotechnologies - Characterization of multiwall carbon nanotube (MWCNT) samples
- XP ISO/TR 10929:2012 Nanotechnologies - Characterization of multi-walled carbon nanotubes (NWCNTs) samples
- XP ISO/TS 11888:2017 Nanotechnologies - Characterization of multilayer carbon nanotubes - Mesoscopic form factors
Alliance of Telecommunications Industry Solutions (ATIS)
- ATIS 0100801.04-2005 Multimedia Communications Delay, Synchronization, and Frame Rate
Danish Standards Foundation
- DS/ISO/TR 10929:2012 Nanotechnologies - Characterization of multiwall carbon nanotube (MWCNT) samples
- DS/ISO/TS 11888:2012 Nanotechnologies - Characterization of multiwall carbon nanotubes - Mesoscopic shape factors
International Telecommunication Union (ITU)
- ITU-T I.233-1 ANNEX F-1996 Frame Mode Bearer Services: ISDN Frame Relaying Bearer Service Annex F: Frame Relay Multicast - Series I: Integrated Services Digital Network Service Capabilities - Bearer Services Supported by an ISDN Study Group 1; 16 pp
RU-GOST R
- GOST R 51317.4.4-2007 Electromagnetic compatibility of technical equipment. Immunity to nanosecond impulsive disturbance. Requirements and test methods
- GOST R 51317.4.4-1999 Electromagnetic compatibility of technical equipment. Immunity to electrical fast transient/burst. Requirements and test methods
- PNST 63-2015 Materials from multiwall carbon nanotubes. Specifications
- GOST 30804.4.4-2013 Electromagnetic compatibility of technical equipment. Immunity to nanosecond impulsive disturbance. Requirements and test methods
ES-UNE
- UNE-EN 302567 V2.1.1:2017 Multiple-Gigabit/s radio equipment operating in the 60 GHz band; Harmonised Standard covering the essential requirements of article 3.2 of Directive 2014/53/EU (Endorsed by Asociación Española de Normalización in August of 2017.)
- UNE-EN 302567 V2.2.1:2021 Multiple-Gigabit/s radio equipment operating in the 60 GHz band; Harmonised Standard for access to radio spectrum (Endorsed by Asociación Española de Normalización in September of 2021.)
KR-KS
- KS C ISO TS 11888-2023 Nanotechnologies — Characterization of multiwall carbon nanotubes — Mesoscopic shape factors