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DOD - DSCC-DWG-04022 - CAPACITORS, FIXED ELECTROLYTIC (NONSOLID ELECTROLYTE), TANTALUM, (POLARIZED, SINTERED SLUG) 85°C (VOLTAGE DERATED TO 125°C) Organization: DOD
Date: 2008-01-22
Description: These capacitors covered by this specification must be able to operate satisfactorily in systems under the following demanding conditions including: -55°C to +125°C operating temperature range, 48 hours of salt spray, 1,000 cycles of surge voltage.
DOD - DSCC-DWG-04033 - CAPACITORS, FIXED ELECTROLYTIC (NONSOLID ELECTROLYTE), TANTALUM, (POLARIZED, SINTERED SLUG) 85°C (VOLTAGE DERATED TO 125°C) Organization: DOD
Date: 2008-01-22
Description: These capacitors covered by this specification must be able to operate satisfactorily in systems under the following demanding conditions including: -55°C to +125°C operating temperature range, 48 hours of salt spray, 1,000 cycles of surge voltage.
DOD - DESC-DWG-09021 - CAPACITORS, TANTALUM, HYBRID, HERMETICALLY SEALED Organization: DOD
Date: 2014-09-24
Description: The capacitors utilize a sintered tantalum anode and ruthenium oxide coated cathodes operating in aqueous electrolyte.
NASA-LLIS-1039 - LESSONS LEARNED – LIMITATIONS OF MATERIAL PROCUREMENT SPECIFICATIONS IN POLYTETRAFLUOROETHYLENE (PTFE) RESIN SELECTION Organization: NASA
Date: 2001-08-22
Description: Description of Driving Event: In order to mitigate seal extrusion-related failures in the Primary Reaction Control System (PRCS) pilot-operated valve (POV), an effort was undertaken to develop a redesigned POV (RPOV) pilot seat assembly.
ASTM F1609 - STANDARD SPECIFICATION FOR CALCIUM PHOSPHATE COATINGS FOR IMPLANTABLE MATERIALS Organization: ASTM
Date: 2008-05-01
Description: This specification includes hydroxylapatite coatings, tricalcium phosphate coatings, or combinations thereof, with or without intentional minor additions of other ceramic or metallic,3 and applied by methods including, but not limited to, the following: (1) mechanical capture, (2) plasma spray deposition, (3) dipping/sintering, (4) electrophoretic deposition, (5) porcelainizing, and (6) sputtering.
NFPA 122 - STANDARD FOR FIRE PREVENTION AND CONTROL IN METAL/NONMETAL MINING AND METAL MINERAL PROCESSING FACILITIES - EFFECTIVE DATE: 12/1/2014 Organization: NFPA
Date: 2015-01-01
Description: As applies to surface metal mineral processing plants, this standard shall not cover the following: (1) Solvent extraction plants (2) Pressure-leaching processes (3) Alumina refineries (4) Nonmetal mineral processing plants (5) Metal smelters including roasting, sintering, and calcining (6) Metal refineries such as electrowinning or electrorefining processes (7) Gas, liquid, or solid waste handling or storage systems Nothing in this standard is intended to prohibit the use of new methods or devices, provided sufficient technical data are submitted to the authority having jurisdiction to demonstrate that the new method or device is equivalent in quality, effectiveness, durability, and safety to that specified by this standard.
ASTM A977/A977M - STANDARD TEST METHOD FOR MAGNETIC PROPERTIES OF HIGH-COERCIVITY PERMANENT MAGNET MATERIALS USING HYSTERESIGRAPHS Organization: ASTM
Date: 2007-11-01
Description: This test method is suitable for all materials processed into bulk magnets by any common fabrication technique (casting, sintering, rolling, molding, and so forth), but not for thin films or for magnets that are very small or of unusual shape.

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