loss modulus peak
loss modulus peak, Total:134 items.
The international standard classification for "loss modulus peak" includes: Measurement of electrical and magnetic quantities , Optoelectronics. Laser equipment , Rotating machinery in general , Fiber and cables .
The Chinese standard classification for "loss modulus peak" includes: Length Measurement , Technical Management , Laser device , Metal physical property test method , Electric rotating machinery in general , Optical communication equipment , Radio Measurement .
National Metrological Verification Regulations of the People's Republic of China
- JJG 896-1995 Characterization Systems for the Loss and Mode Field Diameter of Optical Fiber
- JJG 2073-1990 Measuring Instruments for Dissipation Factor
Professional Standard - Electron
- SJ 2317-1983 Test methods for elasticity modulus and loss factor of paper stock for loudspeakers
- SJ 20821-2002 Measurements method for coefficient of loss per pass of laser rods
工业和信息化部
- YD/T 1954-2022 Characteristics of a bending loss insensitive single-mode optical fibre
- YD/T 2965-2015 Characteristics of a bending loss insensitive multimode optical fibre
- YD/T 2964-2015 Measurement methods for characteristics of a bending-lossinsensitive single-mode optical fibre for the access network
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 5321-2005 Measurement of loss and efficiency for electrical machine by the calorimetric method
- GB/T 21227-2007 AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
- GB/T 16530-1996 Measuring method for polarization dependence of return loss of a single-mode fibre optic component
- GB/T 27661-2011 Test methods for single-pass loss coefficient of laser robs
- GB/T 9771.7-2022 Single-mode optical fibres for telecommunication—Part 7: Characteristics of a bending loss insensitive single-mode optical fibre
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 21227-2021 AC loss measurements—Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
Group Standards of the People's Republic of China
- T/CPSS 1009-2020 Test methods of power loss of magnetic materials with high excitation
- T/DIPA 12-2022 Test methods for power losses of sub-module in voltage-sourced-converter (VSC) valve
- T/ZZB 041-2015 Characteristics of a bending loss insensitive single mode optical fiber B6.a2
- T/ZZB 0181-2017 A bending loss insensitive a2 single mode optical fibre perform for the access network
- T/DYZL 005-2024 Calibration specification for transformer loss measurement system
- T/DYZL 005-2018 Calibration specification for transformer loss measurement system
- T/DIPA 10-2022 Test methods for power losses of sub-module in voltage-sourced-converter (VSC) valve
Professional Standard - Post and Telecommunication
- YD/T 1954-2013 Characteristics of flexuous, lossy and insensitive single mode fibre (SMF)
- YD/T 1954-2009 Characteristics of a Bending Loss Insensitive Single Mode Optical Fibre for the Access Network
National Metrological Technical Specifications of the People's Republic of China
- JJF 1095-2002 Calibration Specification for Capacitor Dielectric Loss Meters
Taiwan Provincial Standard of the People's Republic of China
- CNS 12076-1987 Die Wear Tolerance for Hot Forging Closed Die
GM Daewoo
- GMKOREA EDS-T-7432-2012 Determination of Pressure Modulus and Loss Angle of Elastomers ???? ?? ???, ??? ?? ?? Version 4; English/Korean; This standard may be applied only for current projects. It is Superceded for all future projects and replaced by GMW14738. [Replaced: GMKOREA
International Electrotechnical Commission (IEC)
- IEC TS 62654:2012 Network-based energy consumption measurement - Energy saving system - Conceptual model
- IEC 61580:1995 Measurement of return loss on waveguide and waveguide assemblies
- IEC 61788-13:2012 Superconductivty - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
- IEC 61788-13:2003 Superconductivity - Part 13: AC loss measurements; Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
American National Standards Institute (ANSI)
- ANSI/TIA/EIA 455-157-1994 Measurement of Polarization Dependent Loss (PDL) of Single-Mode Fiber Optic Components
- ANSI/TIA-455-157-1994 Measurement of Polarization Dependent Loss (PDL) of Single-Mode Fiber Optic Components
- ANSI/TIA/EIA 455-24-1991 Water Peak Attenuation Measurement of Single-Mode Fibers
- ANSI/IEEE C57.123:2010 Guide for Transformer Loss Measurement
- ANSI/TIA-455-244-2011 Express Tube Optical Loss Measurements Methods
- ANSI/EIA/TIA 455-24:1991 Water Peak Attenuation Measurement of Single-Mode Fibers
- ANSI/TIA-455-8-2000 Measurement of Splice or Connector Loss and Reflectance Using an OTDR
- ANSI/INCITS/ISO/IEC 14492:2001 Information technology - Lossy/lossless coding of bi-level images
Korean Agency for Technology and Standards (KATS)
- KS C 6926-2001 TEST METHODS FOR ATTENUATION OF SINGLE-MODE OPTICAL FIBERS
- KS F ISO 17554:2018 Reaction to fire tests — Mass loss measurement
- KS C 6950-1992(2002) TEST METHODS FOR ATTENUATION OF ALL PLASTIC MULTIMODE OPTICAL FIBERS
- KS H ISO 1573:2007 Tea-Determination of loss in mass at 103 ℃
- KS D 0071-2002(2022) Measuring method for high frequency core loss in amorphous magnetic cores
- KS E ISO 6606:2003 Aluminium ores-Determination of loss of mass at 1 075℃-Gravimetric method
- KS C IEC 61580-2020 Measurement of return loss on waveguide and waveguide assemblies
- KS C IEC 61580:2005 Measurement of return loss on waveguide and waveguide assemblies
- KS C IEC 61580-2005(2020) Measurement of return loss on waveguide and waveguide assemblies
European Committee for Electrotechnical Standardization(CENELEC)
- CLC/TR 50682:2018 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
- CLC/TR 50682-2018 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
SCC
- DANSK DS/CLC/TR 50682:2018 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
- CEI CLC/TR 50682:2020 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
- BS PD CLC/TR 50682:2018 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
- MIL MIL-STD-220C-2009 Method of Insertion Loss Measurement
- MIL MIL-STD-220B-2000 METHOD OF INSERTION LOSS MEASUREMENT (SUPERSEDING MIL-STD-220A)
- BS PD IEC/TR 62383:2006 Determination of magnetic loss under magnetic polarization waveforms including higher harmonic components. Measurement, modelling and calculation methods
- DANSK DS/EN 61788-13:2012 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
British Standards Institution (BSI)
- PD CLC/TR 50682:2018 Consideration on the use of OTDRs to measure return loss of single-mode optical fibre connections
- BS EN 61788-13:2012 Superconductivity. AC loss measurements. Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
- BS EN 61788-13:2003 Superconductivity - AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
- BS EN 60512-25-2:2002 Connectors for electronic equipment - Tests and measurements - Test 25b - Attenuation (insertion loss) - Section 2 Attenuation (insertion loss)
- PD IEC/TR 62383:2006 Determination of magnetic loss under magnetic polarization waveforms including higher harmonic components. Measurement, modelling and calculation methods
- BS EN IEC 60793-1-47:2018 Optical fibres. Measurement methods and test procedures. Macrobending loss
Defense Logistics Agency
- DLA MIL-STD-220 C-2009 METHOD OF INSERTION LOSS MEASUREMENT
- DLA MIL-STD-220 B CHG NOTICE 1-2004 METHOD OF INSERTION LOSS MEASUREMENT
U.S. Air Force
- AIR FORCE A-A-59661 A-2009 MEASUREMENT SET, TRANSMISSION IMPAIRMENT
TIA - Telecommunications Industry Association
- TIA/EIA-526-7-1998 OFSTP-7 Measurement of Optical Power Loss of Installed Single-Mode Fiber Cable Plant
- EIA/TIA-526-14-1990 OFSTP-14 Optical Power Loss Measurements of Installed Multimode Fiber Cable Plant
- EIA/TIA-455-24-1991 FOTP-24 Water Peak Attenuation Measurement of Single-Mode Fibers
- TIA/EIA-455-24-1991 FOTP-24 Water Peak Attenuation Measurement of Single-Mode Fibers
- TSB-142-2005 Optical Return Loss Meters - Measurement and Application Issues
- TSB-176-A-2017 Radiowave Propagation- Path Loss- Measurement and Validation
- TSB-176-2009 Radiowave Propagation – Path Loss – Measurement and Validation
KR-KS
- KS F ISO 17554-2018 Reaction to fire tests — Mass loss measurement
Association Francaise de Normalisation
- NF EN 61280-4-2:2015 Test procedures for optical fiber telecommunications subsystems - Part 4-2: cable installations - Measurement of optical return loss and single-mode fiber loss
- NF EN IEC 61300-3-7:2021 Interconnect devices and fibronic passive components - Fundamental testing and measurement procedures - Part 3-7: examinations and measurements - Loss and return loss of unimodal components as a function of length...
- NF EN IEC 60793-1-40:2019 Optical fibers - Part 1-40: methods of measuring attenuation
- NF C31-888-13:2003 Superconductivity - Part 13 : AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites.
- NF C31-888-13*NF EN 61788-13:2013 Superconductivity - Part 13 : AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
- NF EN 61788-13:2013 Superconductivity - Part 13: measurement of alternating current losses - Magnetometer measurement methods of hysteresis losses in superconducting multi-filament composites
American Society for Testing and Materials (ASTM)
- ASTM E2425-11 Standard Test Method for Loss Modulus Conformance of Dynamic Mechanical Analyzers
- ASTM E2425-05 Standard Test Method for Loss Modulus Conformance of Dynamic Mechanical Analyzers
- ASTM E2425-21 Standard Test Method for Loss Modulus Conformance of Dynamic Mechanical Analyzers
- ASTM E2425-16 Standard Test Method for Loss Modulus Conformance of Dynamic Mechanical Analyzers
- ASTM E159-06 Standard Test Method for Loss of Mass in Hydrogen for Cobalt, Copper, Tungsten, and Iron Powders (Hydrogen Loss)
Institute of Electrical and Electronics Engineers (IEEE)
- IEEE C57.123-2019 IEEE Guide for Transformer Loss Measurement
- IEEE C57.123-2010 IEEE Guide for Transformer Loss Measurement
- IEEE Std C57.123-2019 IEEE Guide for Transformer Loss Measurement
- IEEE Std C57.123-2002 IEEE Guide for Transformer Loss Measurement
- IEEE Std C57.123-2010 IEEE Guide for Transformer Loss Measurement - Redline
- IEEE PC57.123/D11, August 2019 IEEE Draft Guide for Transformer Loss Measurement
- IEEE Unapproved Draft Std PC57.123/D2.8, Apr 2009 IEEE Draft Guide for Transformer Loss Measurement
- IEEE PC57.123/D10, June 2019 IEEE Draft Guide for Transformer Loss Measurement
- IEEE Unapproved Draft Std PC57.123/D2.4, Feb 2008 IEEE Draft Guide for Transformer Loss Measurement
- IEEE Unapproved Draft Std PC57.123/D2.7, Oct 2008 IEEE Draft Guide for Transformer Loss Measurement
- IEEE Unapproved Draft Std PC57.123/D2.9, Mar 2010 IEEE Draft Guide for Transformer Loss Measurement
CZ-CSN
- CSN 34 7010 Cast.41-1986 Dissipation factor measurement ot power cables
Japanese Industrial Standards Committee (JISC)
- JIS H 7311:2018 Superconductivity -- AC loss measurements -- Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
- JIS H 7311:2006 Superconductivity -- AC loss measurements -- Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
- JIS A 1416:1994 Method for laboratory measurement of sound transmission loss
Conference of European Post Telecommunication (CEPT)
- CEPT ERC REPORT 101-1999 A Comparison of the Minimum Coupling Loss Method, Enhanced Minimum Coupling Loss Method, and the Monte-Carlo Simulation (Menton)
International Organization for Standardization (ISO)
- ISO 1573:1980 Tea; Determination of loss in mass at 103 degrees C
- ISO 1573:1975 Title missing - Legacy paper document
- ISO/IEC 14492:2001 Information technology - Lossy/lossless coding of bi-level images
International Telecommunication Union (ITU)
- ITU-T SERIES G SUPP 14-2007 Methods for measuring regularity return loss
- ITU-T SERIE G SUPP 14 SPANISH-2007 Methods for measuring regularity return loss
IEEE - The Institute of Electrical and Electronics Engineers@ Inc.
- IEEE PC57.123/D10-2019 Draft Guide for Transformer Loss Measurement
(U.S.) Telecommunications Industries Association
- TIA-455-239-2007 FOTP-239 Fiber Optic Splice Loss Measurement Methods
- TIA/EIA-455-157-1994 FOTP-157 Measurement of Polarization Dependent Loss (PDL) of Single-Mode Fiber Optic Components
- TIA-455-8-2000 FOTP-8 Measurement of Splice or Connector Loss and Reflectance Using an OTDR
- TIA TSB-142-2005 Optical Return Loss Meters - Measurement and Application Issues
GSO
- NB/T 11496-2024 Flexible DC converter valve submodule loss test method
- GSO IEC 61580:2014 Measurement of return loss on waveguide and waveguide assemblies
- GSO IEC 61788-13:2013 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
- BH GSO IEC 61788-13:2016 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
HU-MSZT
- MNOSZ 19896-1954 Measuring ear plant loss during harvest
- MSZ 9247-1971 Measurement of total losses in magnets and magnetic materials
ITU-T - International Telecommunication Union/ITU Telcommunication Sector
- SERIES G SUPP 14-2007 Methods for measuring regularity return loss
- SERIE G SUPP 14 SPANISH-2007 Methods for measuring regularity return loss
European Committee for Standardization (CEN)
- PD CEN/TS 14038-2:2011 Electrochemical re-alkalization and chloride extraction treatments for rein-forced concrete - Part 2: Chloride extraction
Canadian Standards Association (CSA)
- CSA ISO/CEI 14495-1-02:2002 Technologies de l磇nformation - Compression sans perte et quasi sans perte d磇mages fixes a modele continu: Principes ISO/CEI 14495-1:1999
SAE - SAE International
- SAE J1540-1992 Manual Transmission Efficiency and Parasitic Loss Measurement
- SAE J1540-1996 Manual Transmission Efficiency and Parasitic Loss Measurement
AGMA - American Gear Manufacturers Association
- 05FTM11-2005 Low Loss Gears
American Gear Manufacturers Association
- AGMA 05FTM11-2005 Low Loss Gears
Society of Automotive Engineers (SAE)
- SAE J1540-2000 Manual Transmission Efficiency and Parasitic Loss Measurement
- SAE J1540-2012 Manual Transmission Efficiency and Parasitic Loss Measurement
ESDU - Engineering Sciences Data Unit
- ESDU 15010-2016 Coupling loss factors
ZA-SANS
- NRS 080-2004 Quantifying and reporting of energy losses in electricity distribution networks
RU-GOST R
- GOST 18986.11-1984 Semiconductor diodes. Total series equivalent resistance measurement methods
Spanish Association for Standardization (UNE)
- UNE-EN 61788-13:2012 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites (Endorsed by AENOR in November of 2012.)
- UNE-EN 61788-13:2004 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
CENELEC - European Committee for Electrotechnical Standardization
- EN 61788-13:2003 Superconductivity Part 13: AC loss measurements Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites
- EN 61788-13:2012 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
DIN
- DIN EN 61788-13:2004 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in Cu/Nb-Ti multifilamentary composites (IEC 61788-13:2003); German version EN 61788-13:2003
Danish Standards Foundation
- DS/EN 61788-13:2013 Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites
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