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MODUK - TS 10238A - WASH FLUID FOR THERMAL IMAGE SIGHT - AMENDMENT A Organization: MODUK
Date: 1983-10-31
Description: This specification relates to a fluid suitable for use in the windscreen wash system of the thermal image sight fitted to military vehicles.
NFPA 1801 - STANDARD ON THERMAL IMAGERS FOR THE FIRE SERVICE - EFFECTIVE DATE: 06/18/2012 Organization: NFPA
Date: 2013-01-01
Description: Any accessories or enhancements built into, attached to, or sold with the thermal imager by the thermal imager manufacturer for later attachment shall be tested with the thermal imager with those accessories and enhancements installed or attached, as specified in 4.3.9.4, to ensure the performance and functions of the thermal imager.
NATO - STANAG 4347 - DEFINITION OF NOMINAL STATIC RANGE PERFORMANCE FOR THERMAL IMAGING SYSTEMS - ED 1; AMENDMENT 1: 7/1/96 Organization: NATO
Date: 1995-07-18
Description: AIM The aim of this agreement is to provide standardized technical criteria for the definition of nominal static range performance for thermal imaging systems to be used for ground targets seen from the surface or from slightly elevated positions, in order to compare the performance of different systems.
ASTM F1721 - STANDARD PRACTICES FOR DETERMINING STABILITY OF DIRECT THERMAL IMAGING PRODUCTS Organization: ASTM
Date: 2004-02-01
Description: These practices cover the evaluation of the effect of various solvents, light, heat, and humidity on direct thermal imaging products. These practices may be used to evaluate the performance of thermal products coated on paper, film, or other substrate for specific applications.
ASTM F1405 - STANDARD TEST METHOD FOR DETERMINING THE DYNAMIC THERMAL RESPONSE OF DIRECT THERMAL IMAGING PRODUCTS-ATLANTEK METHOD Organization: ASTM
Date: 2008-01-01
Description: This test method covers the measurement of thermal response of various direct thermal imaging papers or other thermal-coated substrates used for facsimile, labels, medical recorders, plotters, and printers.
NATO - STANAG 4350 - CALCULATION OF MINIMUM RESOLVABLE TEMPERATURE DIFFERENCE (MRTD) FOR THERMAL IMAGING SYSTEMS - ED 1 Organization: NATO
Date: 1995-07-18
Description: AIM The aim of this agreement is to provide a standard procedure for the calculation of MRTD to evaluate and compare thermal imagers and thermal imager concepts.
NFPA 1408 - STANDARD FOR TRAINING FIRE SERVICE PERSONNEL IN THE OPERATION, CARE, USE, AND MAINTENANCE OF THERMAL IMAGERS - EFFECTIVE DATE: 12/1/2014 Organization: NFPA
Date: 2015-01-01
Description: This standard shall contain minimum requirements for training fire service personnel to utilize fire service thermal imagers (TI). This standard specifies evolutions that can be adapted to local conditions and serves as a standard mechanism for the evaluation of minimum acceptable performance during training for the utilization of fire service TI.
ASTM E1213 - STANDARD PRACTICE FOR MINIMUM RESOLVABLE TEMPERATURE DIFFERENCE FOR THERMAL IMAGING SYSTEMS Organization: ASTM
Date: 2014-10-01
Description: This practice covers the determination of the minimum resolvable temperature difference (MRTD) capability of the compound observer-thermal imaging system as a function of spatial frequency. The values stated in SI units are to be regarded as standard.
ASTM E1311 - STANDARD PRACTICE FOR MINIMUM DETECTABLE TEMPERATURE DIFFERENCE FOR THERMAL IMAGING SYSTEMS Organization: ASTM
Date: 2014-10-01
Description: This practice covers the determination of the minimum detectable temperature difference (MDTD) capability of a compound observer-thermal imaging system as a function of the angle subtended by the target.
ASTM E1543 - STANDARD PRACTICE FOR NOISE EQUIVALENT TEMPERATURE DIFFERENCE OF THERMAL IMAGING SYSTEMS Organization: ASTM
Date: 2014-10-01
Description: This practice covers the determination of the noise equivalent temperature difference (NETD; NEΔT) of thermal imaging systems of the conventional forward-looking infrared (FLIR) or other types that utilize an optical-mechanical scanner; it does not include charge-coupled devices or pyroelectric vidicons.
NPFC - MIL-I-24698 - INFRARED THERMAL IMAGING SYSTEMS Organization: NPFC
NPFC - A-A-59417 - THERMAL IMAGING SYSTEM Organization: NPFC
NTIS ADA176836 - THERMAL IMAGE MEASUREMENTS INFRARED SIGNATURES Organization: NTIS
NAVY - MIL-PRF-24698 CANC NOTICE 1 - INFRARED THERMAL IMAGING SYSTEMS (METRIC) Organization: NAVY
Date: 1999-07-13
SPIE - UNCOOLED THERMAL IMAGING - UNCOOLED THERMAL IMAGING ARRAYS, SYSTEMS, AND APPLICATIONS Organization: SPIE
Date: 2009-01-01
Description: This introduction to uncooled infrared focal plane arrays and their applications is aimed at professionals, students, and end users. Topics include principal uncooled thermal detection mechanisms; fundamental performance limits and theoretical performance; the state of the art; and applications, technical trends, and systems employing uncooled arrays.
NPFC - MIL-STD-1859 - THERMAL IMAGING DIVICES, PERFORMANCE PARAMETERS OF Organization: NPFC
ASTM F1623 - STANDARD TERMINOLOGY RELATING TO THERMAL IMAGING PRODUCTS Organization: ASTM
Date: 1996-01-10
JEDEC JEP 138 - USER GUIDELINES FOR IR THERMAL IMAGING DETERMINATION OF DIE TEMPERATURE Organization: JEDEC
Date: 1999-09-01
Description: The purpose of these user guidelines is to provide background and an example for the use of an infrared (IR) microscope to determine die temperature of electronic devices for calculations such as thermal resistance. 
NPFC - MIL-STD-2194 - INFRARED THERMAL IMAGING SURVEY PROCEDURE FOR ELECTRICAL EQUIPMENT Organization: NPFC
ASTM - F1721 (RL) - STANDARD PRACTICES FOR DETERMINING STABILITY OF DIRECT THERMAL IMAGING PRODUCTS Organization: ASTM
Date: 2004-02-01

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