ANSI IEEE C62 11-2005 Standard for Metal-Oxide Surge Arresters for AC Power Circuits ( 1 kV)《交流电源电路用金属氧化物避雷器标准》.pdf
《ANSI IEEE C62 11-2005 Standard for Metal-Oxide Surge Arresters for AC Power Circuits ( 1 kV)《交流电源电路用金属氧化物避雷器标准》.pdf》由会员分享,可在线阅读,更多相关《ANSI IEEE C62 11-2005 Standard for Metal-Oxide Surge Arresters for AC Power Circuits ( 1 kV)《交流电源电路用金属氧化物避雷器标准》.pdf(86页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std C62.11-2005(Revision of IEEE Std C62.11-1999)IEEE Standard forMetal-Oxide Surge Arresters forAC Power Circuits ( 1 kV)I E E E3 Park Avenue New York, NY 10016-5997, USA22 March 2006IEEE Power Engineering SocietySponsored by theSurge Protective Devices CommitteeCopyright The Institute of Elec
2、trical and Electronics Engineers, Inc. Provided by IHS under license with IEEENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Copyright The Institute of Electrical and Electronics Engineers, Inc. Provided by IHS under license with IEEENot for ResaleNo reproduction
3、or networking permitted without license from IHS-,-,-Recognized as an IEEE Std C62.11-2005 American National Standard (ANSI) (Revision of IEEE Std C62.11-1999) IEEE Standard for Metal-Oxide Surge Arresters for AC Power Circuits ( 1 kV) Sponsor Surge Protective Devices Committee of the IEEE Power Eng
4、ineering Society Approved 29 December 2005 American National Standards Institute Approved 22 September 2005 IEEE-SA Standards Board Copyright The Institute of Electrical and Electronics Engineers, Inc. Provided by IHS under license with IEEENot for ResaleNo reproduction or networking permitted witho
5、ut license from IHS-,-,-Abstract: This standard applies to metal-oxide surge arresters (MOSAs) designed to repeatedly limit the voltage surges on 48 Hz to 62 Hz power circuits (1000 V) by passing surge discharge current and automatically limiting the flow of system power current. This standard appli
6、es to devices for separate mounting and to devices supplied integrally with other equipment. The tests demonstrate that an arrester can survive the rigors of reasonable environmental conditions and system phenomena while protecting equipment and/or the system from damaging overvoltages caused by lig
7、htning, switching, and other undesirable surges. Keywords: discharge current, discharge voltage, duty-cycle voltage rating, lightning protection, maximum continuous operating voltage, MCOV, metal-oxide surge arrester, MOSA, surge arrester, valve arrester _ The Institute of Electrical and Electronics
8、 Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2006 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 22 March 2006. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permiss
9、ion to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. Copyright The Institute of Electrical and Electronics Engineers, Inc. Provided by IHS under license with IEEENot for ResaleNo reproduction or networking per
10、mitted without license from IHS-,-,-iv Copyright 2006 IEEE. All rights reserved. This introduction is not part of IEEE Std C62.11-2005, IEEE Standard for Metal-Oxide Surge Arresters for AC Power Circuits ( 1 kV).Introduction Metal-oxide surge arresters (MOSAs) described in this standard represent th
11、e most predominant surge arrester technology applied on ac power systems above 1 kV. This standard presents minimum criteria for the testing of such surge arresters. Matters of application of this type of surge arrester are covered in IEEE Std C62.22-1997. Testing and application of older technology
12、 silicon carbide surge arresters are covered in IEEE Std C62.1 and ANSI Std C62.2-1987, respectively. For testing and application of surge protective devices for use in low-voltage circuits (1 kV and below), other standards in the C62 series are available. This revision of IEEE Std C62.11 contains t
13、he following significant changes from the previous revision: Addition of partial discharge (PD) test requirements and elimination of internal ionization voltage test Addition of accelerated aging test of polymer-housed arresters with exposure to salt fog Addition of moisture ingress test requirement
14、s for polymer-housed arresters combined with maximum design cantilever load (MDCL) test Split of discharge-current withstand tests clause into two separate clauses: high-current short-duration withstand test and low-current long-duration withstand test Restructure of design test clauses and subclaus
15、es to provide consistency of format Revision of Table 2 to provide more helpful references to design test clauses for different classes and types of arrester Addition of definitions for electrical unit, mechanical unit, PD, and prospective short-circuit current Replacement of the terms watts loss an
16、d watt loss with power loss to provide consistency throughout the standard Replacement of the term creepage with leakage to provide consistency throughout the standard Editorial changes to correct a variety of errors of previous revision Notice to users Errata Errata, if any, for this and all other
17、standards can be accessed at the following URL: http:/ standards.ieee.org/reading/ieee/updates/errata/index.html. Users are encouraged to check this URL for errata periodically. Interpretations Current interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp
18、/ index.html. Copyright The Institute of Electrical and Electronics Engineers, Inc. Provided by IHS under license with IEEENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-v Copyright 2006 IEEE. All rights reserved. Patents Attention is called to the possibility tha
19、t implementation of this standard may require use of subject matter covered by patent rights. By publication of this standard, no position is taken with respect to the existence or validity of any patent rights in connection therewith. The IEEE shall not be responsible for identifying patents or pat
20、ent applications for which a license may be required to implement an IEEE standard or for conducting inquiries into the legal validity or scope of those patents that are brought to its attention. Participants At the time this standard was completed, the 3.3.11 Working Group had the following members
21、hip: Michael G. Comber, Chair Larry Vogt, Vice-chair H. Steve Brewer James Case Michael Champagne John DuPont Steven P. Hensley Raymond Hill Volker Hinrichsen David W. Jackson Bengt Johnnerfelt Joseph L. Koepfinger Gerald E. Lee Dennis W. Lenk Jody Levine Paul Lindemulder Iuda Morar Joe Osterhout Jo
22、hn B. Posey Mike Ramarge Thomas Rozek Paul Schaffer John Stein Keith Stump Eva Tarasiewicz Ed Taylor Rao Thallam James Wilson Jon Woodworth The following members of the individual balloting committee voted on this standard. Balloters may have voted for approval, disapproval, or abstention. Roy Alexa
23、nder Thomas Blair Mark Bushnell James Case Michael Comber Tommy Cooper Jerry Corkran R. Daubert Guru Dutt Dhingra Randall Dotson Charles Drexler Dana Dufield Amir El-Sheikh Clifford C. Erven Thomas Field Ernie Gallo Manuel Gonzalez David Goodwin Randall Groves Jeffrey Hartenberger Steven P. Hensley
24、Raymond Hill Edward Horgan, Jr. Ronald Hotchkiss David W. Jackson Bengt Johnnerfelt Wilhelm Kapp Yuri Khersonsky Joseph L. Koepfinger Stephen R. Lambert Benny Lee Dennis W. Lenk Boyd Leuenberger Jody Levine Jason Lin Paul Lindemulder Allan Ludbrook William A. Maguire Michael Maytum John McDaniel Nig
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ANSIIEEEC62112005STANDARDFORMETALOXIDESURGEARRESTERSFORACPOWERCIRCUITS1KV 交流 电源 电路 金属 氧化物 避雷器 标准 PDF

链接地址:http://www.mydoc123.com/p-1242475.html