IEEE C62 43 0-2017 en Guide for Surge Protectors and Protective Circuits Used in Information and Communications Technology Circuits Including Smart Grid Data Ne.pdf

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1、IEEE Guide for Surge Protectors and Protective Circuits Used in Information and Communications Technology Circuits, Including Smart Grid Data NetworksOverview IEEE Std C62.43.0-2017 IEEE Power and Energy Society Sponsored by the Surge Protective Devices Committee IEEE 3 Park Avenue New York, NY 1001

2、6-5997 USAIEEE Std C62.43.0-2017 IEEE Guide for Surge Protectors and Protective Circuits Used in Information and Communications Technology Circuits, Including Smart Grid Data NetworksOverview Sponsor Surge Protective Devices Committee of the IEEE Power and Energy Society Approved 23 March 2017 IEEE-

3、SA Standards BoardAbstract: An introduction to a series of guides on the application of surge protectors and protective circuits used in information and communications technology circuits, including Smart Grid data networks, is provided in this guide. Keywords: gas discharge tube, GDT, ICT, IEEE C62

4、43.0, information and communications technology, metal-oxide varistors, MOV, positive temperature coefficient, protection circuits, protector, PTC, surge, surge protection, transformer The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright

5、2017 by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 21 September 2017. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent fitness for a particular purpose; non-infringement; and quality, accuracy, effectiveness, c

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29、 for errata periodically. Patents Attention is called to the possibility that implementation of this standard may require use of subject matter covered by patent rights. By publication of this standard, no position is taken by the IEEE with respect to the existence or validity of any patent rights i

30、n connection therewith. If a patent holder or patent applicant has filed a statement of assurance via an Accepted Letter of Assurance, then the statement is listed on the IEEE-SA Website at http:/ standards .ieee .or g/ about/ sasb/ patcom/ patents .html. Letters of Assurance may indi- cate whether

31、the Submitter is willing or unwilling to grant licenses under patent rights without compensation or under reasonable rates, with reasonable terms and conditions that are demonstrably free of any unfair dis- crimination to applicants desiring to obtain such licenses. Essential Patent Claims may exist

32、 for which a Letter of Assurance has not been received. The IEEE is not responsible for identifying Essential Patent Claims for which a license may be required, for conducting inqui- ries into the legal validity or scope of Patents Claims, or determining whether any licensing terms or conditions pro

33、vided in connection with submission of a Letter of Assurance, if any, or in any licensing agreements are reasonable or non-discriminatory. Users of this standard are expressly advised that determination of the valid- ity of any patent rights, and the risk of infringement of such rights, is entirely

34、their own responsibility. Further information may be obtained from the IEEE Standards Association.6 Copyright 2017 IEEE. All rights reserved. Participants At the time this guide was submitted to the IEEE-SA Standards Board for approval, the 3.6.7 LV Data, Communications and Signaling Circuit Surge P

35、rotective Devices Working Group had the following membership: Albert Martin, Chair Ernie Gallo, Vice Chair Tim Ardley Robert Ashton Frank Basciano Nisar Chaudhry Leonard Drewes Bogey Klobassa Peter Kobsa Michael J. Maytum Wolfgang Oertel Alan Rebeck Thomas Tran Bill Travis The following members of t

36、he individual balloting committee voted on this guide. Balloters may have voted for approval, disapproval, or abstention. Robert Ashton Frank Basciano William Bush William Byrd Suresh Channarasappa Douglas Dorr Randall Groves Raymond Hill Werner Hoelzl Ronald Hotchkiss Noriyuki Ikeuchi Piotr Karocki

37、 Yuri Khersonsky Albert Livshitz Albert Martin Michael J. Maytum Michael Newman Wolfgang Oertel Lorraine Padden Thomas Phipps Percy Pool Iulian Profir Thomas Rozek Ryandi Ryandi Bartien Sayogo Veselin Skendzic Jerry Smith Gary Smullin David Tepen Roger Verdolin John Vergis Matthew Wakeham John Wang

38、Lanyi Wang Kenneth White David Zech When the IEEE-SA Standards Board approved this guide on 23 March 2017, it had the following membership: Jean-Philippe Faure, Chair Gary Hoffman, Vice Chair John D. Kulick, Past Chair Konstantinos Karachalios, Secretary Chuck Adams Masayuki Ariyoshi Ted Burse Steph

39、en Dukes Doug Edwards J. Travis Griffith Michael Janezic Thomas Koshy Joseph L. Koepfinger* Kevin Lu Daleep Mohla Damir Novosel Ronald C. Petersen Annette D. Reilly Robby Robson Dorothy Stanley Adrian Stephens Mehmet Ulema Phil Wennblom Howard Wolfman Yu Yuan *Member Emeritus7 Copyright 2017 IEEE. A

40、ll rights reserved. Introduction This introduction is not part of IEEE Std C62.43.0-2017, IEEE Guide for Surge Protectors and Protective Circuits Used in Information and Communications Technology Circuits, Including Smart Grid Data NetworksOverview. This guide gives an introduction to a series of gu

41、ides on the application of surge protectors and protective cir- cuits used in information and communications technology circuits, including smart grid data networks. Acknowledgments Figure 1 and Subclause 4.2 reprinted with permission from Michael J. Maytum, Introduction to Surge Mitiga- tion Techniques , 2013 B30.

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