IEEE DRAFT C62.42 : D12 2005
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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APPLICATION OF COMPONENT SURGE-PROTECTIVE DEVICES FOR USE IN LOW-VOLTAGE (EQUAL TO OR LESS THAN 1000 V[RMS] OR 1200 V DC) CIRCUITS
12-01-2013
31-05-2006
Introduction
1 Overview
2 References
3 Definitions
4 Electrical Environment
5 Comparison and Selection of Component Surge-Protective Devices
6 Gas tubes
7 Air gaps
8 Component metal oxide varistor surge-protective devices
9 Component avalanche junction semiconductor surge-protective
devices
Annex A (informative) Circuit behavior of gas tube arresters
Annex B (informative) Circuit Behavior of air gap arresters
Annex C (informative) Examples of Applications of Metal Oxide
Varistors
Annex D (informative) Generic examples of surge problems that
are solved by the application of avalanche junction
semiconductor SPDs
Annex E (informative) Bibliography
Describes the application of component air gaps, gas tubes, metal oxide varistors, and avalanche junction semiconductor surge-protective devices for use within surge protectors, equipment, or systems involving low-voltage power, data, communication and/or signaling circuits.
| DocumentType |
Draft
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| PublisherName |
Institute of Electrical & Electronics Engineers
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| Status |
Superseded
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| SupersededBy |
| IEEE C62.33-1982 | IEEE Standard Test Specifications for Varistor Surge-Protective Devices |
| IEEE C62.41-1991 | IEEE Recommended Practice for Surge Voltages in Low-Voltage AC Power Circuits |
| IEEE 487-2015 | IEEE Standard for the Electrical Protection of Communications Facilities Serving Electric Supply Locations -- General Considerations |
| IEEE 81-2012 | IEEE Guide for Measuring Earth Resistivity, Ground Impedance, and Earth Surface Potentials of a Grounding System |
| IEEE C62.62-2010 | IEEE Standard Test Specifications for Surge-Protective Devices (SPDs) for Use on the Load Side of the Service Equipment in Low Voltage (1000 V and less) AC Power Circuits |
| IEEE C62.31-2006 | IEEE Standard Test Methods for Low-Voltage Gas-Tube Surge-Protective Device Components |
| IEC 61000-4-4:2012 RLV | Electromagnetic compatibility (EMC) - Part 4-4: Testing and measurement techniques - Electrical fast transient/burst immunity test |
| ANSI C62.61:1993 | American National Standard for Gas Tube Surge Arresters on Wire Line Telephone Circuits |
| IEEE C62.36-2014 REDLINE | IEEE Standard Test Methods for Surge Protectors Used in Low-Voltage Data, Communications, and Signaling Circuits |
| UL 943:5ED 2016-05-17 | Ground-Fault Circuit-Interrupters |
| IEEE 80-2013 REDLINE | IEEE Guide for Safety in AC Substation Grounding |
| NFPA 70 : 2017 | NATIONAL ELECTRICAL CODE |
| IEEE C37.90.1-2012 | IEEE Standard for Surge Withstand Capability (SWC) Tests for Relays and Relay Systems Associated with Electric Power Apparatus |
| IEC 61312-1:1995 | Protection against lightning electromagnetic impulse - Part 1: General principles |
| ANSI C101.1 : 1992 | LEAKAGE CURRENT FOR APPLIANCES |
| IEEE C62.35-2010 | IEEE Standard Test Methods for Avalanche Junction Semiconductor Surge-Protective Device Components |
| IEEE 367-2012 | IEEE Recommended Practice for Determining the Electric Power Station Ground Potential Rise and Induced Voltage from a Power Fault |