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IEC 60898-3
Edition 1.0 2019-04
INTERNATIONAL
STANDARD
Electrical accessories – Circuit-breakers for overcurrent protection for
household and similar installations –
Part 3: Circuit-breakers for DC operation
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IEC 60898-3
Edition 1.0 2019-04
INTERNATIONAL
STANDARD
Electrical accessories – Circuit-breakers for overcurrent protection for
household and similar installations –
Part 3: Circuit-breakers for DC operation
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 29.120.50 ISBN 978-2-8322-6676-2
– 2 – IEC 60898-3:2019 © IEC 2019
CONTENTS
FOREWORD . 9
1 Scope . 11
2 Normative references . 12
3 Terms and definitions . 12
3.1 Devices . 13
3.2 General terms . 13
3.3 Constructional elements . 15
3.4 Conditions of operation . 18
3.5 Characteristic quantities . 19
3.6 Definitions related to insulation co-ordination . 23
4 Classification . 25
4.1 General . 25
4.2 According to the number of poles . 25
4.3 According to the current direction through the poles. 25
4.4 According to the protection against external influences . 26
4.5 According to the method of mounting . 26
4.6 According to the methods of connection . 26
4.6.1 According to the fixation system . 26
4.6.2 According to the type of terminals . 26
4.7 According to the instantaneous tripping current (see 3.5.18) . 26
5 Characteristics of circuit-breakers. 26
5.1 List of characteristics . 26
5.2 Rated quantities . 27
5.2.1 Rated voltages . 27
5.2.2 Rated direct current (I ) . 27
n
5.2.3 Rated short-circuit capacity (I ) . 27
cn
5.2.4 Rated making and breaking capacity of an individual pole (I ) . 27
cn1
5.3 Standard and preferred values . 28
5.3.1 Preferred values of rated voltage . 28
5.3.2 Preferred values of rated current . 28
5.3.3 Values of rated short-circuit capacity . 28
5.3.4 Standard ranges of instantaneous tripping . 28
5.3.5 Standard value of rated impulse withstand voltage (U ) . 28
imp
6 Marking and other product information . 29
7 Standard conditions for operation in service . 30
7.1 General . 30
7.2 Ambient air temperature range . 30
7.3 Altitude . 31
7.4 Atmospheric conditions . 31
7.5 Conditions of installation . 31
7.6 Pollution degree . 31
8 Requirements for construction and operation . 31
8.1 Mechanical design . 31
8.1.1 General . 31
8.1.2 Mechanism . 31
8.1.3 Clearances and creepage distances (see Annex A) . 33
8.1.4 Screws, current-carrying parts and connections . 35
8.1.5 Terminals for external conductors . 36
8.1.6 Non-interchangeability . 38
8.1.7 Mechanical mounting of plug-in type circuit-breakers . 39
8.2 Protection against electric shock . 39
8.3 Dielectric properties and isolating capability . 39
8.3.1 General . 39
8.3.2 Dielectric properties . 40
8.3.3 Isolating capability . 40
8.3.4 Dielectric strength at rated impulse withstand voltage (U ) . 40
imp
8.4 Temperature rise . 40
8.4.1 Temperature rise limits . 40
8.4.2 Ambient air temperature . 40
8.5 Uninterrupted duty . 41
8.6 Automatic operation . 41
8.6.1 Standard time-current zone . 41
8.6.2 Conventional quantities . 42
8.6.3 Tripping characteristic . 42
8.7 Mechanical and electrical endurance . 42
8.8 Performance at short-circuit currents and at small DC currents . 43
8.9 Resistance to mechanical shock and impact . 43
8.10 Resistance to heat . 43
8.11 Resistance to abnormal heat and to fire . 43
8.12 Resistance to rusting . 43
8.13 Behaviour in case of making inrush current . 43
8.14 Power loss . 43
8.15 Requirement of small DC currents. 44
9 Tests . 44
9.1 Type tests and test sequences . 44
9.2 Test conditions . 45
9.3 Test of indelibility of marking . 46
9.4 Test of reliability of screws, current-carrying parts and connections . 46
9.5 Tests of reliability of screw-type terminals for external copper conductors. 47
9.6 Test of protection against electric shock . 49
9.7 Test of dielectric properties . 49
9.7.1 Resistance to humidity . 49
9.7.2 Insulation resistance of the main circuit . 50
9.7.3 Dielectric strength of the main circuit . 51
9.7.4 Insulation resistance and dielectric strength of auxiliary circuits. 51
9.7.5 Verification of impulse withstand voltages (across clearances and
across solid insulation) and of leakage current across open contacts . 52
9.8 Test of temperature rise and measurement of power loss . 55
9.8.1 Ambient air temperature . 55
9.8.2 Test procedure . 55
9.8.3 Measurement of the temperature of parts . 55
9.8.4 Temperature rise of a part . 55
9.8.5 Measurement of power loss . 55
9.9 28-day test . 56
9.10 Test of tripping characteristic . 56
– 4 – IEC 60898-3:2019 © IEC 2019
9.10.1 General . 56
9.10.2 Test of time-current characteristic . 56
9.10.3 Test of instantaneous tr
...