Superseded
, Confirmed
Standard
Historical
IEEE 1184:2006 (R2011)
IEEE Guide for Batteries for Uninterruptible Power Supply Systems
Summary
Revision Standard - Superseded.
Various battery systems are discussed 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. Design requirements of the UPS components are beyond the scope of this document. Battery back-up systems for dc-output rectifiers are also beyond the scope of this document.
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. Design requirements of the UPS components are beyond the scope of this document. Battery back-up systems for dc-output rectifiers are also beyond the scope of this document. While this document applies to all UPS systems, it may be impractical to implement some of its guidance and recommendations with small, self-contained systems, such as products intended to back up individual personal computers. This guide divides the available technologies into the following three main categories: ? Vented lead-acid batteries (VLA) ? Valve-regulated lead acid (VRLA) ? Ni-Cd batteries (Ni-Cd) For each category, the technology and the design of the battery are described in order to facilitate user selection. The specific advantages for particular applications are also listed.
This guide is intended to assist those involved with battery systems for uninterruptible power supply systems. Proper design, installation, and maintenance will enable the user to manage the battery system for optimum operation and results.
Various battery systems are discussed 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. Design requirements of the UPS components are beyond the scope of this document. Battery back-up systems for dc-output rectifiers are also beyond the scope of this document.
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. Design requirements of the UPS components are beyond the scope of this document. Battery back-up systems for dc-output rectifiers are also beyond the scope of this document. While this document applies to all UPS systems, it may be impractical to implement some of its guidance and recommendations with small, self-contained systems, such as products intended to back up individual personal computers. This guide divides the available technologies into the following three main categories: ? Vented lead-acid batteries (VLA) ? Valve-regulated lead acid (VRLA) ? Ni-Cd batteries (Ni-Cd) For each category, the technology and the design of the battery are described in order to facilitate user selection. The specific advantages for particular applications are also listed.
This guide is intended to assist those involved with battery systems for uninterruptible power supply systems. Proper design, installation, and maintenance will enable the user to manage the battery system for optimum operation and results.
Notes
Superseded
Technical characteristics
| Publisher | Institute of Electrical and Electronics Engineers (IEEE) |
| Publication Date | 09/29/2006 |
| Confirmation Date | 12/07/2011 |
| Edition | |
| Page Count | 73 |
| EAN | --- |
| ISBN | --- |
| Weight (in grams) | --- |
| Brochures |
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Amendments replaces
06/06/1995
Superseded
Historical
Previous versions
16/05/2022
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29/09/2006
Superseded
, Confirmed
Historical
06/06/1995
Superseded
Historical