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ANSI/IEEE

ANSI/IEEE C95.1-1992, IEEE Standards Dept., Piscataway, N.J., 1992. [Pg.348]

A.merican National Standardfor Metric Practice, ANSI/IEEE Std 268-1992, Institute of Electrical and Electronics Engineers, Inc., New York, 1992. [Pg.311]

ANSI/IEEE-C62.41-1991 Recommended practice for surge voltages in low voltage a.c. power circuits ... [Pg.162]

ANS1/1EEE13I, 5.1/1996 Insulation Coordination. Definitions, Principles. and Rules ANSI/IEEE-l/1992... [Pg.228]

ANSI/IEEE-118/1992 ANSI/IEEE 112/1992 ANSI/IEEE 43/1992 ANSl/IEEE-i 17/1992 IEEE-1107/1996... [Pg.271]

IEEE 4/190S ANSI/IEEE 433/1991 ANSI/IEEE 434/1992 ANSI/IEEE-273/1998... [Pg.271]

ANSI/IEEE 1312/1993 ANSI/IEEE I3I3.1/I996 ANSI/IEEE C37.16/I997... [Pg.399]

ANSI/IEEE-3.36/1991 Standard Installation, Inspection and testing requirements for power instrumentation and control equipment at nuclear facilites ... [Pg.453]

ANSI/IEEE-344/1993 ANSI/IEEE-649/1992 ANSI/IEEE-693/1991 NEMA 250/1991 NEMA/ICS 6/1996... [Pg.453]

ANSI/IEEE 446/1995 Recommended practice for emergency and standby power systems for industrial and commercial applications. (IEEE Orange Book) ... [Pg.530]

ANSI/IEEE C37.101/1993 Guide for generator ground protection ... [Pg.530]

ANSI/IEEE 115-1/1995 Test procedures for synchronous machines, acceptance and performance testing ... [Pg.530]

ANSI/IEEE-C62.2/1994 Guide for application of gapped silicon carbide surge arrester for a.c. systems ... [Pg.624]

ANSI/IEEE Insulation coordination, Definitions, Principles and Rules ... [Pg.624]

ANSI/IEEE 1036/1993 ANSI/IEEE 1137/1998 ANSI C93.1/I98I NEMA-107/1993 NEiMA/ICS-2/1993... [Pg.773]

ANSI/IEEE C.37.90.1/1989 Guide for surge withstand capability tests, for protective relays and relay systems ... [Pg.842]

We previously encountered failure modes and effects (FMEA) and failure modes effects and criticality analysis (FMECA) as qualitative methods for accident analysis. These tabular methods for reliability analysis may be made quantitative by associating failure rates with the parts in a systems model to estimate the system reliability. FMEA/FMECA may be applied in design or operational phases (ANSI/IEEE Std 352-1975, MIL-STD-1543 and MIL-STD-1629A). Typical headings in the F.Mld. A identify the system and component under analysis, failure modes, the ef fect i>f failure, an estimale of how critical apart is, the estimated probability of the failure, mitigaturs and IHissihiy die support systems. The style and contents of a FMEA are flexible and depend upon the. ilitcLiives of the analyst. [Pg.99]

Figure 2.1 Active equipment failure modes. Reprinted from ANSI IEEE Std. 500-1984, with permission of the IEEE Standards Department. Figure 2.1 Active equipment failure modes. Reprinted from ANSI IEEE Std. 500-1984, with permission of the IEEE Standards Department.
ANSI/IEEE. Publication 979. Guide for Substation Fire Protection. American National Standards Institute, Washington, DC. [Pg.432]

The k factor concept is derived from the ANSI/IEEE C57.110 standard, Recommended Practices for Establishing Transformer Capability When Supplying Non-Sinusoidal Load Currents, which provides the following expression for derating a transformer when supplying harmonic loads ... [Pg.102]

ANSI/IEEE Std 610.12-1990, Standard Glossary of Software Engineering Terminology, Institute of Electrical and Electronic Engineers, New York, 1990. [Pg.9]


See other pages where ANSI/IEEE is mentioned: [Pg.162]    [Pg.243]    [Pg.243]    [Pg.271]    [Pg.399]    [Pg.399]    [Pg.399]    [Pg.453]    [Pg.495]    [Pg.495]    [Pg.551]    [Pg.591]    [Pg.720]    [Pg.720]    [Pg.720]    [Pg.720]    [Pg.773]    [Pg.773]    [Pg.773]    [Pg.773]    [Pg.825]    [Pg.901]    [Pg.81]    [Pg.53]    [Pg.52]   
See also in sourсe #XX -- [ Pg.233 ]




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