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IEEE C37.100.1-2007

$98.04

IEEE Standard of Common Requirements for High Voltage Power Switchgear Rated Above 1000 V

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IEEE 2007
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New IEEE Standard – Superseded. This Standard collects the common requirements that are in many IEEE Power Switchgear Standards. These include: Service Conditions, Design (type) Tests, Design and Construction, Production (routine) Tests and Ratings. This standard applies to alternating current switchgear, designed for both indoor and outdoor installation and for operation at service frequencies up to and including 60 Hz on systems having voltages above 1000 V.

PDF Catalog

PDF Pages PDF Title
3 IEEE Standard of Common
Requirements for High-Voltage Power
Switchgear Rated Above 1000 V
4 Acknowledgments
6 Introduction
Notice to users
Errata
Interpretations
7 Patents
Participants
10 CONTENTS
13 1. Overview
1.1 Scope
14 1.2 Normative references
15 2. Normal (usual) and special (unusual) service conditions
16 2.1 Normal (usual) service conditions
17 2.2 Special (unusual) service conditions for both indoor and outdoor switchgear
21 3. Definitions
4. Ratings
22 4.1 Rated maximum voltage (V) or (Ur)
4.2 Rated insulation level, Ud, Us, Up
27 4.3 Rated power frequency (fr)
4.4 Rated continuous (normal) current and temperature rise
31 4.5 Rated short-time withstand current (Ik)
4.6 Rated peak withstand current (Ip)
4.7 Rated duration of short-circuit (tk)
4.8 Rated supply voltage of closing and opening devices and of auxiliary and control circuits (Ua)
33 4.9 Rated supply frequency of closing and opening devices and of auxiliary circuits
4.10 Rated pressure of compressed gas supply for insulation and/or operation
4.11 Rated filling levels for insulation and/or operation
34 5. Design and construction
5.1 Requirements for liquids in switchgear
5.2 Requirements for gases in switchgear
5.3 Grounding of switchgear
5.4 Auxiliary and control equipment
35 5.5 Dependent power operation
5.6 Stored energy operation
5.7 Independent manual operation
5.8 Operation of releases
5.9 Low- and high-pressure interlocking and monitoring devices
36 5.10 Nameplates
37 5.11 Interlocking devices
5.12 Position indication
5.13 Degrees of protection by enclosures
39 5.14 Creepage distances for outdoor insulators
5.15 Gas and vacuum tightness
5.16 Liquid tightness
40 5.17 Flammability
5.18 Electromagnetic compatibility (EMC)
5.19 X-ray emission
6. Design (type) tests
6.1 Grouping of tests
43 6.2 Dielectric tests
51 6.3 Radio influence voltage (RIV) test
52 6.4 Measurement of the resistance of circuits
53 6.5 Temperature-rise tests
55 6.6 Short-time withstand current and peak withstand current test
58 6.7 Verification of the degrees of protection provided by enclosures
6.8 Tightness tests
61 6.9 Electromagnetic compatibility tests
62 6.10 Additional tests on auxiliary and control circuits
6.11 X-radiation procedure for vacuum interrupters
63 7. Routine (production) tests
64 7.1 Dielectric test on the main circuit
7.2 Dielectric test on auxiliary and control circuits
7.3 Measurement of the resistance of the main circuit
7.4 Tightness test
65 7.5 Design and visual checks
66 Annex A (informative) Recommendations for application of this standard to relevant switchgear standards
68 Annex B (normative) Altitude correction factors
72 Annex C (normative) Exposure to pollution
75 Annex D (normative) Identification of test specimens
77 Annex E (normative) Determination of the equivalent rms value of a short-time current during a short cuircuit of a given duration
79 Annex F (normative) Method for the weatherproofing test for outdoor switchgear
82 Annex G (informative) Tightness (information, example, and guidance)
84 Annex H (informative) Symbols and related terminology
86 Annex I (informative) Proposed values of rated maximum voltage for future design
88 Annex J (informative) Notes on the development of IEEE Std C37.100.1-2007
94 Annex K (informative) Bibliography
IEEE C37.100.1-2007
$98.04