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NAVY - UFGS-26 33 53.00 20.00 20 - UNINTERRUPTIBLE POWER SUPPLY (UPS) Organization: NAVY
Date: 2007-10-01
Description: This specification covers UPS with electro-chemical batteries. Electro-mechanical (stored energy) UPS are not addressed.
NAVY - UFGS-26 33 53.00 20 - UNINTERRUPTIBLE POWER SUPPLY (UPS) Organization: NAVY
Date: 2008-04-01
Description: This specification covers UPS with electro-chemical batteries. Electro-mechanical (stored energy) UPS are not addressed.
DSF/EN 62040-1/FPRA1 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 1: GENERAL AND SAFETY REQUIREMENTS FOR UPS Organization: DS
Description: It is used with IEC 60950-1, which is referred to in this standard as "RD" (reference document). NOTE UPS applications generally make use of a chemical battery as the energy storage device.
IEC 62040-1 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) – PART 1: GENERAL AND SAFETY REQUIREMENTS FOR UPS - EDITION 1.1; CONSOLIDATED REPRINT Organization: IEC
Date: 2013-01-01
Description: NOTE UPS applications generally make use of a chemical battery as the energy storage device.
CENELEC - EN 62040-1 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 1: GENERAL AND SAFETY REQUIREMENTS FOR UPS - INCORPORATES AMENDMENT A1: 2013 Organization: CENELEC
Date: 2008-11-01
Description: NOTE UPS applications generally make use of a chemical battery as the energy storage device.
DSF/EN 62040-1/FPRA1 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) -- PART 1: GENERAL AND SAFETY REQUIREMENTS FOR UPS Organization: DS
Description: IEC 62040-1:2008 applies to uninterruptible power systems (UPS) with an electrical energy storage device in the d.c. link.
NASA-LLIS-3762 - LESSONS LEARNED - MAINTAINING AN UNINTERRUPTIBLE POWER SUPPLY (UPS) Organization: NASA
Date: 2011-05-27
Description: Review of technical specifications revealed that the UPS batteries require full recharge cycling every 6 months in order to keep the batteries from discharging beyond the safe limit.
IEC 62040-2 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) – PART 2: ELECTROMAGNETIC COMPATIBILITY (EMC) REQUIREMENTS - EDITION 3.0 Organization: IEC
Date: 2016-11-01
Description: NOTE 1 UPS generally connect to their energy storage device through a DC link. A chemical battery is an example of an energy storage device.
IEC 62040-2 REDLINE - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 2: ELECTROMAGNETIC COMPATIBILITY (EMC) REQUIREMENTS - EDITION 3.0 Organization: IEC
Date: 2016-11-01
Description: NOTE 1 UPS generally connect to their energy storage device through a DC link. A chemical battery is an example of an energy storage device.
DSF/FPREN 62040-1 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 1: SAFETY REQUIREMENTS Organization: DS
Description: This part of the IEC 62040 series of standards for uninterruptible power systems (UPS) applies to movable, stationary, fixed or built-in UPS for use in low-voltage distribution systems and that are intended to be installed in an area accessible by an ordinary person or in a restricted access area as applicable, that deliver fixed frequency a.c. output voltage with port voltages not exceeding 1000 V a.c. or 1500 V d.c. and that include an energy storage device.
DS/EN 62040-3 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 3: METHOD OF SPECIFYING THE PERFORMANCE AND TEST REQUIREMENTS Organization: DS
Date: 2011-08-04
Description: This standard is intended to specify performance and test requirementys of a complete UPS and not of individual UPS functional units. The individual UPS functional units are dealt with in IEC publications referred to in the bibliography given in annex O that apply so far that they are not in contradiction with this standard.
CEI EN 62040-3 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) PART 3: METHOD OF SPECIFYING THE PERFORMANCE AND TEST REQUIREMENTS Organization: CEI
Date: 2012-05-01
Description: This standard is intended to specify performance and test requirements of a complete UPS and not of individual UPS functional units. The individual UPS functional units are dealt with in IEC publications referred to in the bibliography that apply so far that they are not in contradiction with this standard.
CENELEC - EN 62040-3 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 3: METHOD OF SPECIFYING THE PERFORMANCE AND TEST REQUIREMENTS Organization: CENELEC
Date: 2011-06-01
Description: This standard is intended to specify performance and test requirements of a complete UPS and not of individual UPS functional units. The individual UPS functional units are dealt with in IEC publications referred to in the bibliography that apply so far that they are not in contradiction with this standard.
IEC 62040-4 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) – PART 4: ENVIRONMENTAL ASPECTS – REQUIREMENTS AND REPORTING - EDITION 1.0 Organization: IEC
Date: 2013-04-01
Description: This product standard is harmonized with the applicable generic and horizontal environmental standards and contains additional details relevant to UPS. This standard applies to movable, stationary and fixed UPS that deliver single or three-phase fixed frequency a.c. output voltage not exceeding 1 000 V a.c. and that present, generally through a d.c. link, an energy storage system and specified in IEC 62040 product standards for UPS (Part 1: Safety, Part 2: EMC and Part 3: Test and performance).
CEI EN 62040-4 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) PART 4: ENVIRONMENTAL ASPECTS - REQUIREMENTS AND REPORTING Organization: CEI
Date: 2014-05-01
Description: This product standard is harmonized with the applicable generic and horizontal environmental standards and contains additional details relevant to UPS. This standard applies to movable, stationary and fixed UPS that deliver single or three-phase fixed frequency a.c. output voltage not exceeding 1 000 V a.c. and that present, generally through a d.c. link, an energy storage system and specified in IEC 62040 product standards for UPS (Part 1: Safety, Part 2: EMC and Part 3: Test and performance).
CENELEC - EN 62040-4 - UNINTERRUPTIBLE POWER SYSTEMS (UPS) - PART 4: ENVIRONMENTAL ASPECTS - REQUIREMENTS AND REPORTING Organization: CENELEC
Date: 2013-09-01
Description: This product standard is harmonized with the applicable generic and horizontal environmental standards and contains additional details relevant to UPS. This standard applies to movable, stationary and fixed UPS that deliver single or three-phase fixed frequency a.c. output voltage not exceeding 1 000 V a.c. and that present, generally through a d.c. link, an energy storage system and specified in IEC 62040 product standards for UPS (Part 1: Safety, Part 2: EMC and Part 3: Test and performance).
IEEE 1184 - GUIDE FOR BATTERIES FOR UNINTERRUPTIBLE POWER SUPPLY SYSTEMS Organization: IEEE
Date: 2006-03-30
Description: This guide discusses various battery systems so that the user can make informed decisions on selection, installation design, installation, maintenance, and testing of stationary standby batteries used in uninterruptible power supply (UPS) systems. This guide describes how the UPS battery charging and converter components can relate to the selection of the battery systems.
PIP ELSAP12 - DESIGN AND FABRICATION OF VALVE-REGULATED LEAD-ACID BATTERIES Organization: PIP
Date: 2014-06-01
Description: This Practice describes the design, inspection, testing, shipment, and documentation for VRLA batteries for application in electrical stations or uninterruptible power supplies (UPS) in indoor, non-classified areas.
PIP ELSAP11 - DESIGN AND FABRICATION OF FLOODED-CELL LEAD-ACID BATTERIES Organization: PIP
Date: 2016-01-01
Description: This Practice describes the design, inspection, testing, shipment, and documentation for vented, flooded-cell lead-acid batteries for application in electrical stations or uninterruptible power supplies (UPS) in indoor, nonclassified areas.
TSE - TS 1352-3 EN 60896-22 - STATIONARY LEAD-ACID BATTERIES -- PART 22: VALVE REGULATED TYPES - REQUIREMENTS Organization: TSE
Date: 2006-01-17
Description: This part of IEC 60896 applies to all stationary lead-acid cells and monobloc batteries of the valve regulated type for float charge applications (i.e. permanently connected to a load and a d.c. power supply) in a static location (i.e not generally intended to be moved from place to place) and incorporated into stationary equipment or installed in battery rooms for use in Telecom, uninterrruptable power supply (UPS), utility switching, emergency power or similar applications.

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