TechTopics No. 28 Standards for outdoor high-voltage ... - Siemens

TechTopics No. 28 Standards for outdoor high-voltage ... - Siemens TechTopics No. 28 Standards for outdoor high-voltage ... - Siemens

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Today, the principle standards that apply to outdoor highvoltagecircuit breakers are these:Document Rev. Sponsor Title Working groupC37.04 1999 ANSI/IEEE Rating Structure for AC High-Voltage Circuit Breakers IEEEC37.06 2009 ANSI/IEEEAC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis –Preferred Ratings and Related Required Capabilities for Voltages above 1000 VIEEEC37.09 1999 ANSI/IEEE Standard Test Procedure for AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis IEEEC37.010 1999 ANSI/IEEE Application Guide for AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis IEEESG4 2009 NEMA Alternating-Current High-Voltage Circuit Breakers NEMAC37.24 2003 ANSI/IEEE Guide for Evaluating the Effect of Solar Radiation on Outdoor Metal-Enclosed Switchgear IEEEC57.13 2008 ANSI/IEEE Standard Requirements for Instrument Transformers IEEEC37.85 2002 ANSI/IEEEC37.11 1997 ANSI/IEEEAlternating-Current High-Voltage Power Vacuum Interrupters –Safety Requirements for X-Radiation LimitsRequirements for Electrical Control for AC High-Voltage Circuit Breakers Rated on aSymmetrical Current BasisNEMAIEEEC37.12 2008 ANSI/IEEE AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis – Specifications Guide IEEEOf these, by far the most significant are C37.04, C37.06,C37.09 and C37.010. Each of these documents has beenrevised in the 1999 to 2000 time frame (and again in 2009 forC37.06).The last column of the table indicates the organization thatsponsors the working group that maintains the standard.Accredited Standards Committee (ASC) C37 sponsors thestandard C37.85, which specifies X-radiation limits andmethods of determination for vacuum interrupters. Theworking group for this document is a NEMA technicalcommittee.The voting representation within ASC C37 conforms tothe ANSI requirements for balanced representation. Equaldelegations represent IEEE, NEMA and the Electric Light& Power (users) group, represented by the Edison ElectricInstitute.Various other organizations also have voting representatives,including representatives of testing organizations, installationcontractors, government entities and the like.The procedures of ASC C37 assure that no one interestgroup (producers, users or general interest) has the ability todominate the process of creation or approval of the standards.The list of standards above is not all-inclusive, but does includethe major standards. There are others that apply, such asthose for protective relays, device numbers and the like. Itis interesting to note that only one NEMA standard, SG4, islisted. For the most part, IEEE and NEMA have cooperated overseveral decades to incorporate the applicable sections of thehistoric NEMA standards into the relevant ANSI/IEEE or ANSIdocuments. NEMA SG4 was revised in 2009 to address thoseissues not covered adequately in the ANSI/IEEE standards. Themajor areas covered in SG4 are RIV testing, sound levels, specialapplications (arc furnaces), terminal configurations, currenttransformer installation and wiring requirements, as well asinstallation and maintenance recommendations. Most of theinformation in SG4 2009 has been offered to IEEE for inclusionin presently active revisions of C37.04 and C37.09.The material formerly in NEMA SG4 that was not transferredto IEEE has been moved to a new publication, SG11. Thisinformation primarily concerns maintenance of historic outdoorcircuit breakers.

Over the years, major strides have been made in harmonizingthe requirements of the ANSI/IEEE standards with therequirements of the IEC standards (primarily IEC 60056, whichhas recently been re-identified as IEC 62271-100). Over thenext few years, working groups within the High-Voltage CircuitBreakers Subcommittee of the IEEE Switchgear Committeewill be working to further harmonize with the internationalstandards.Siemens does not take a position as to the proper applicabilityof any particular standards over other accepted standards. Wedesign and manufacture our products with primary concern forthe safety of our customers and users, regardless of applicablestandards. Siemens makes no warranties or guarantees ofcompliance with any standards except by specific contractualrelationship with our customers and as marked on the productsthemselves when delivered from the manufacturer.The information provided in this document contains merely generaldescriptions or characteristics of performance which in case of actualuse do not always apply as described or which may change as a result offurther development of the products. An obligation to provide therespective characteristics shall only exist if expressly agreed in the termsof contract.All product designations may be trademarks or product names ofSiemens AG or supplier companies whose use by third parties for theirown purposes could violate the rights of the owners.Siemens Industry, Inc.7000 Siemens RoadWendell, NC 27591Subject to change without prior notice.Order No.: E50001-F710-A317-X-4A00All rights reserved.© 2012 Siemens Industry, Inc.For more information, contact: +1 (800) 347-6659www.usa.siemens.com/techtopics

Today, the principle standards that apply to <strong>outdoor</strong> <strong>high</strong><strong>voltage</strong>circuit breakers are these:Document Rev. Sponsor Title Working groupC37.04 1999 ANSI/IEEE Rating Structure <strong>for</strong> AC High-Voltage Circuit Breakers IEEEC37.06 2009 ANSI/IEEEAC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis –Preferred Ratings and Related Required Capabilities <strong>for</strong> Voltages above 1000 VIEEEC37.09 1999 ANSI/IEEE Standard Test Procedure <strong>for</strong> AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis IEEEC37.010 1999 ANSI/IEEE Application Guide <strong>for</strong> AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis IEEESG4 2009 NEMA Alternating-Current High-Voltage Circuit Breakers NEMAC37.24 2003 ANSI/IEEE Guide <strong>for</strong> Evaluating the Effect of Solar Radiation on Outdoor Metal-Enclosed Switchgear IEEEC57.13 2008 ANSI/IEEE Standard Requirements <strong>for</strong> Instrument Trans<strong>for</strong>mers IEEEC37.85 2002 ANSI/IEEEC37.11 1997 ANSI/IEEEAlternating-Current High-Voltage Power Vacuum Interrupters –Safety Requirements <strong>for</strong> X-Radiation LimitsRequirements <strong>for</strong> Electrical Control <strong>for</strong> AC High-Voltage Circuit Breakers Rated on aSymmetrical Current BasisNEMAIEEEC37.12 2008 ANSI/IEEE AC High-Voltage Circuit Breakers Rated on a Symmetrical Current Basis – Specifications Guide IEEEOf these, by far the most significant are C37.04, C37.06,C37.09 and C37.010. Each of these documents has beenrevised in the 1999 to 2000 time frame (and again in 2009 <strong>for</strong>C37.06).The last column of the table indicates the organization thatsponsors the working group that maintains the standard.Accredited <strong>Standards</strong> Committee (ASC) C37 sponsors thestandard C37.85, which specifies X-radiation limits andmethods of determination <strong>for</strong> vacuum interrupters. Theworking group <strong>for</strong> this document is a NEMA technicalcommittee.The voting representation within ASC C37 con<strong>for</strong>ms tothe ANSI requirements <strong>for</strong> balanced representation. Equaldelegations represent IEEE, NEMA and the Electric Light& Power (users) group, represented by the Edison ElectricInstitute.Various other organizations also have voting representatives,including representatives of testing organizations, installationcontractors, government entities and the like.The procedures of ASC C37 assure that no one interestgroup (producers, users or general interest) has the ability todominate the process of creation or approval of the standards.The list of standards above is not all-inclusive, but does includethe major standards. There are others that apply, such asthose <strong>for</strong> protective relays, device numbers and the like. Itis interesting to note that only one NEMA standard, SG4, islisted. For the most part, IEEE and NEMA have cooperated overseveral decades to incorporate the applicable sections of thehistoric NEMA standards into the relevant ANSI/IEEE or ANSIdocuments. NEMA SG4 was revised in 2009 to address thoseissues not covered adequately in the ANSI/IEEE standards. Themajor areas covered in SG4 are RIV testing, sound levels, specialapplications (arc furnaces), terminal configurations, currenttrans<strong>for</strong>mer installation and wiring requirements, as well asinstallation and maintenance recommendations. Most of thein<strong>for</strong>mation in SG4 2009 has been offered to IEEE <strong>for</strong> inclusionin presently active revisions of C37.04 and C37.09.The material <strong>for</strong>merly in NEMA SG4 that was not transferredto IEEE has been moved to a new publication, SG11. Thisin<strong>for</strong>mation primarily concerns maintenance of historic <strong>outdoor</strong>circuit breakers.

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