IEEE C62.11-1999
$80.71
IEEE Standard for Metal-Oxide Surge Arresters for Alternating Current Power Circuits (>1KV)
Published By | Publication Date | Number of Pages |
IEEE | 1999 |
Revision Standard – Superseded. Superseded by IEEE Std C62.11-2005. Metal-oxide surge arresters designed to repeatedly limit the voltage surges on 48–62 Hz power circuits (>1 kV) are covered in this standard. These devices operate by discharging surge current. Devices for separate mounting and those supplied integrally with other equipment are also discussed.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | Title page |
3 | Introduction Participants |
5 | CONTENTS |
7 | 1. Scope 2. References |
8 | 3. Definitions |
14 | 4. Service conditions 4.1 Usual service conditions 4.2 Unusual service conditions |
15 | 5. Standard voltage ratings: duty-cycle voltage and maximum continuous operating voltage (MCOV) |
16 | 6. Performance characteristics and tests |
17 | 7. Test procedure 7.1 Complete arrester test specimens |
18 | 7.2 Prorated arrester test section |
21 | 7.3 Test measurements 7.4 Impulse test-wave tolerances |
22 | 7.5 Power-frequency test voltages 8. Design tests 8.1 Arrester insulation withstand tests |
23 | 8.2 Power-frequency sparkover test |
24 | 8.3 Discharge-voltage characteristics |
25 | 8.4 Impulse protective level voltage-time characteristic |
29 | 8.5 Accelerated aging procedure |
30 | 8.6 Accelerated aging tests of external polymeric insulating systems for distribution class arresters |
33 | 8.7 Contamination test |
34 | 8.8 Distribution class surge arrester seal integrity test |
35 | 8.9 Internal-ionization voltage (IIV) and RIV tests |
36 | 8.10 Discharge-current withstand tests |
42 | 8.11 Duty-cycle tests |
43 | 8.12 TOV tests |
45 | 8.13 Pressure-relief tests for station and intermediate class arresters |
48 | 8.14 Short-circuit test for porcelain-housed distribution surge arresters |
50 | 8.15 Short-circuit test for polymer-housed distribution class arresters |
53 | 8.16 Failure mode test for liquid-immersed arresters |
54 | 8.17 Deadfront arrester failure mode |
55 | 8.18 Distribution arrester disconnector tests |
57 | 8.19 Maximum design cantilever load-static (MDCL-static) test |
59 | 8.20 Ultimate mechanical strength-static (UMS-static) tests for porcelain-housed arresters 9. Conformance tests of valve arresters 9.1 Power-frequency sparkover test |
60 | 9.2 Front-of-wave impulse protective level 9.3 Discharge-voltage test 9.4 IIV and RIV tests 10. Construction 10.1 Identification data 10.2 Standard mountings |
61 | 10.3 Iron and steel parts 10.4 Terminal connections 10.5 Housing leakage distance |
62 | 11. Protective characteristics 12. Certification test procedures for arresters applied to unit substations 12.1 General 12.2 Tests |
63 | 12.3 Evaluation procedure 12.4 Certification 12.5 Production monitoring and product retest requirements |
64 | 13. Routine tests 13.1 Current-sharing test |
65 | 13.2 Discharge-voltage test 13.3 Ionization voltage test 13.4 Seal test 13.5 Power-frequency test |
66 | 13.6 Power-frequency sparkover |
67 | Annex A—Basis for accelerated aging procedure |
69 | Annex B—Surge arrester classification prescribed test requirements |