ASTM E 1256 : 2017 : REDLINE
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
Standard Test Methods for Radiation Thermometers (Single Waveband Type)
09-06-2017
English
09-06-2017
CONTAINED IN VOL. 14.03, 2017 Specifies these test methods can be utilized to evaluate the following six basic operational parameters of a radiation thermometer (single waveband type).
Committee |
E 20
|
DocumentType |
Redline
|
Pages |
8
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
1.1The test methods described in these test methods can be utilized to evaluate the following six basic operational parameters of a radiation thermometer (single waveband type):
Section | |
Calibration Accuracy | 8 |
Repeatability | 9 |
Field-of-View | 10 |
Response Time | 11 |
Warm-Up Time | 12 |
Long-Term Stability | 13 |
1.2This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
1.3The term single waveband refers to radiation thermometers that operate in a single band of spectral radiation. This term is used to differentiate single waveband radiation thermometers from those termed as ratio radiation thermometers, two channel radiation thermometers, two color radiation thermometers, multiwavelength radiation thermometers, multichannel radiation thermometers, or multicolor radiation thermometers. The term single waveband does not preclude wideband radiation thermometers such as those operating in the 8–14 μm band.
1.4This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
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ASTM E 452 : 2002 | Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer |
ASTM E 452 : 2002 : R2013 | Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer |
I.S. EN 80601-2-59:2009 | MEDICAL ELECTRICAL EQUIPMENT - PART 2-59: PARTICULAR REQUIREMENTS FOR THE BASIC SAFETY AND ESSENTIAL PERFORMANCE OF SCREENING THERMOGRAPHS FOR HUMAN FEBRILE TEMPERATURE SCREENING |
ASTM E 452 : 2002 : R2018 | Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer |
CSA C22.2 No. 80601-2-59 : 2010 : INC : COR 1 : 2011 | MEDICAL ELECTRICAL EQUIPMENT - PART 2-59: PARTICULAR REQUIREMENTS FOR THE BASIC SAFETY AND ESSENTIAL PERFORMANCE OF SCREENING THERMOGRAPHS FOR HUMAN FEBRILE TEMPERATURE SCREENING |
CSA C22.2 No. 80601-2-59 : 2010 : R2015 | MEDICAL ELECTRICAL EQUIPMENT - PART 2-59: PARTICULAR REQUIREMENTS FOR THE BASIC SAFETY AND ESSENTIAL PERFORMANCE OF SCREENING THERMOGRAPHS FOR HUMAN FEBRILE TEMPERATURE SCREENING |
CSA C22.2 No. 80601-2-59 : 2010FR | MEDICAL ELECTRICAL EQUIPMENT - PART 2-59: PARTICULAR REQUIREMENTS FOR THE BASIC SAFETY AND ESSENTIAL PERFORMANCE OF SCREENING THERMOGRAPHS FOR HUMAN FEBRILE TEMPERATURE SCREENING |
CEI EN 80601-2-59 : 2011 | MEDICAL ELECTRICAL EQUIPMENT - PART 2-59: PARTICULAR REQUIREMENTS FOR BASIC SAFETY AND ESSENTIAL PERFORMANCE OF SCREENING THERMOGRAPHS FOR HUMAN FEBRILE TEMPERATURE SCREENING |
ASTM C 210 : 1995 | TEST METHOD FOR REHEAT CHANGE OF INSULATING FIREBRICK |
ASTM C 210 : 1995 : R2005 | Standard Test Method for Reheat Change of Insulating Firebrick |
ASTM E 344 : 2016-12 | TERMINOLOGY RELATING TO THERMOMETRY AND HYDROMETRY |
EN 80601-2-59:2009 | Medical electrical equipment - Part 2-59: Particular requirements for the basic safety and essential performance of screening thermographs for human febrile temperature screening |
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