IEC TR 63484:2024
(Main)Guidance on fungus resistance of optical fibre cables
Guidance on fungus resistance of optical fibre cables
IEC TR 63484:2024 information about fungal growth on the outer sheath of optical fibre cables and on the inner components of the cable. It also provides guidance for specifying fungus resistance performance of optical cable outer sheath and internal cable components, including recommendations for fungus resistance test method as well as evaluation after test.
This document applies to optical fibre cables for use with telecommunication equipment and devices employing similar techniques, and to hybrid telecommunication cables having a combination of both optical fibres and electrical conductors.
Since conditions suitable for fungal growth include high relative humidity and a warm atmosphere, the document is applicable to optical cables intended for transportation, storage and use under such environment over certain period, for instance, some days at least.
General Information
Standards Content (Sample)
IEC TR 63484 ®
Edition 1.0 2024-09
TECHNICAL
REPORT
Guidance on fungus resistance of optical fibre cables
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IEC TR 63484 ®
Edition 1.0 2024-09
TECHNICAL
REPORT
Guidance on fungus resistance of optical fibre cables
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 33.180.10 ISBN 978-2-8322-9719-3
– 2 – IEC TR 63484:2024 © IEC 2024
CONTENTS
FOREWORD . 4
1 Scope . 6
2 Normative references . 6
3 Terms and definitions . 6
4 Mechanisms of fungal infection and growth. 6
4.1 Mechanisms of fungal infection . 6
4.2 Environmental conditions for fungal growth . 7
5 Effects of fungal growth on optical cable . 7
5.1 General . 7
5.2 Main effects on optical cable . 8
6 Prevention of fungal growth . 8
6.1 General . 8
6.2 Cable sheath . 8
6.2.1 Physical methods . 8
6.2.2 Chemical methods . 8
6.3 Cable internal components . 9
6.4 Cable drum . 9
7 Sheath material selection and cable design principles . 9
7.1 Common sheath material . 9
7.2 Cable design principles . 11
8 Fungus resistance test method . 11
8.1 General consideration . 11
8.2 Objective . 11
8.3 Sample . 12
8.3.1 General . 12
8.3.2 Fibre samples . 12
8.3.3 Cable samples . 12
8.3.4 Material samples . 12
8.3.5 Biocide/Fungicide efficacy samples . 12
8.4 Apparatus . 12
8.5 Procedure . 13
8.5.1 General . 13
8.5.2 Conditioning . 13
8.5.3 Test fungi . 13
8.6 Assessment . 13
8.6.1 Visual inspection . 13
8.6.2 Evaluation of other properties . 13
8.7 Requirements . 14
8.8 Details to be specified . 14
Bibliography . 15
Figure 1 – Fungal growth on optical cable with PVC sheath . 10
Figure 2 – Fungal growth on optical cable with LSZH sheath . 10
Figure 3 – Fungal growth on optical cable with TPU sheath . 11
Table 1 – Test fungi . 13
Table 2 – Suggested test items (other than visual inspection) after exposure . 14
– 4 – IEC TR 63484:2024 © IEC 2024
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
GUIDANCE ON FUNGUS RESISTANCE OF OPTICAL FIBRE CABLES
FOREWORD
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IEC TR 63484 has been prepared by subcommittee 86A: Fibres and cables, of IEC technical
committee 86: Fibre optics. It is a Technical Report.
The text of this Technical Report is based on the following documents:
Draft Report on voting
86A/2485/DTR 86A/2489/RVDTR
Full information on the voting for its approval can be found in the report on voting indicated in
the above table.
The language used for the development of this Technical Report is English.
This document was drafted in accordance with ISO/IEC Directives, Part 2, and developed in
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– 6 – IEC TR 63484:2024 © IEC 2024
GUIDANCE ON FUNGUS RESISTANCE OF OPTICAL FIBRE CABLES
1 Scope
This document provides information about fungal growth on the outer sheath of optical fibre
cables and on the inner components of the cable. It also provides guidance for specifying fungus
resistance performance of optical cable outer sheath and internal cable components, including
recommendations for fungus resistance test method as well as evaluation after test.
This document applies to optical fibre cables for use with telecommunication equipment and
devices employing similar techniques, and to hybrid telecommunication cables having a
combination of both optical fibres and electrical conductors.
Since conditions suitable f
...
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