Amendment 1 - Fibre optic interconnecting devices and passive components - Basic test and measurement procedures - Part 1: General and guidance

Lichtwellenleiter - Verbindungselemente und passive Bauteile - Grundlegende Prüf- und Messverfahren - Teil 1: Allgemeines und Leitfaden

Amendement 1 - Dispositifs d'interconnexion et composants passifs fibroniques - Procédures fondamentales d'essais et de mesures - Partie 1: Généralités et recommandations

Optični spojni elementi in pasivne komponente - Osnovni preskusni in merilni postopki - 1. del: Splošno in smernice - Dopolnilo A1

General Information

Status
Not Published
Public Enquiry End Date
14-Sep-2023
Technical Committee
Current Stage
4020 - Public enquire (PE) (Adopted Project)
Start Date
03-Jul-2023
Due Date
20-Nov-2023

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Standards Content (Sample)

SLOVENSKI STANDARD
SIST EN IEC 61300-1:2022/oprA1:2023
01-september-2023
Optični spojni elementi in pasivne komponente - Osnovni preskusni in merilni
postopki - 1. del: Splošno in smernice - Dopolnilo A1
Amendment 1 - Fibre optic interconnecting devices and passive components - Basic test
and measurement procedures - Part 1: General and guidance
Lichtwellenleiter - Verbindungselemente und passive Bauteile - Grundlegende Prüf- und
Messverfahren - Teil 1: Allgemeines und Leitfaden
Amendement 1 - Dispositifs d'interconnexion et composants passifs fibroniques -
Procédures fondamentales d'essais et de mesures - Partie 1: Généralités et
recommandations
Ta slovenski standard je istoveten z: EN IEC 61300-1:2022/prA1:2023
ICS:
33.180.20 Povezovalne naprave za Fibre optic interconnecting
optična vlakna devices
SIST EN IEC 61300-1:2022/oprA1:2023 en
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

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SIST EN IEC 61300-1:2022/oprA1:2023

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SIST EN IEC 61300-1:2022/oprA1:2023
86B/4760/CDV
COMMITTEE DRAFT FOR VOTE (CDV)

PROJECT NUMBER:
IEC 61300-1/AMD1 ED5
DATE OF CIRCULATION: CLOSING DATE FOR VOTING:
2023-06-23 2023-09-15
SUPERSEDES DOCUMENTS:
86B/4701/CD, 86B/4741A/CC

IEC SC 86B : FIBRE OPTIC INTERCONNECTING DEVICES AND PASSIVE COMPONENTS
SECRETARIAT: SECRETARY:
Japan Mr Shigeru Tomita
OF INTEREST TO THE FOLLOWING COMMITTEES: PROPOSED HORIZONTAL STANDARD:


Other TC/SCs are requested to indicate their interest, if
any, in this CDV to the secretary.
FUNCTIONS CONCERNED:
EMC ENVIRONMENT QUALITY ASSURANCE SAFETY
SUBMITTED FOR CENELEC PARALLEL VOTING NOT SUBMITTED FOR CENELEC PARALLEL VOTING
Attention IEC-CENELEC parallel voting
The attention of IEC National Committees, members of
CENELEC, is drawn to the fact that this Committee Draft
for Vote (CDV) is submitted for parallel voting.
The CENELEC members are invited to vote through the
CENELEC online voting system.

nex AThis document is still under study and subject to change. It should not be used for reference purposes.
nex BRecipients of this document are invited to submit, with their comments, notification of any relevant patent rights
of which they are aware and to provide supporting documentation.
nex CRecipients of this document are invited to submit, with their comments, notification of any relevant “In Some
Countries” clauses to be included should this proposal proceed. Recipients are reminded that the CDV stage is
the final stage for submitting ISC clauses. (SEE AC/22/2007 OR NEW GUIDANCE DOC).

TITLE:
Amendment 1 - Fibre optic interconnecting devices and passive components - Basic test and
measurement procedures - Part 1: General and guidance

PROPOSED STABILITY DATE: 2029

NOTE FROM TC/SC OFFICERS:


Copyright © 2023 International Electrotechnical Commission, IEC. All rights reserved. It is permitted to
download this electronic file, to make a copy and to print out the content for the sole purpose of preparing
National Committee positions. You may not copy or "mirror" the file or printed version of the document, or any
part of it, for any other purpose without permission in writing from IEC.

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 2 – 86B/4760/CDV
1 INTERNATIONAL ELECTROTECHNICAL COMMISSION
2 ____________
3
4 FIBRE OPTIC INTERCONNECTING
5 DEVICES AND PASSIVE COMPONENTS –
6 BASIC TEST AND MEASUREMENT PROCEDURES
7
8 Part 1: General and guidance
9
10 AMENDMENT 1
11 Add the following new contents:
12
13 CONTENTS
14 Annex C (normative)  Test sample configuration in environmental test chamber . 5
15 C.1 General . 5
16 C.2 Pigtail test sample . 6
17 C.3 Hardened connector pigtail test sample . 6
18 C.4 Patchcord test sample . 7
19 C.5 Non-connectorised passive component test sample . 8
20 C.6 Connectorised passive component test sample . 9
21 C.7 Plug-receptacle style passive component test sample . 11
22 C.8 Fibre management system test sample . 12
23 C.9 Protective housing test sample without looped cable . 13
24 C.10 Protective housing test sample with looped cable . 13
25 C.11 Combined protective housing test sample with looped cable . 15
26 C.12 Mechanical splice or fusion splice test sample . 15
27 Bibliography . 17
28
29 Figure C.1 – Example configuration of a pigtail test sample . 6
30 Figure C.2 – Example configuration of a hardened connector pigtail test sample . 7
31 Figure C.3 – Example configuration of a patchcord test sample . 8
32 Figure C.4 – Example configuration of a non-connectorised passive component test
33 sample . 9
34 Figure C.5 – Example configuration of a connectorised passive component test sample . 11
35 Figure C.6 – Example configuration of a plug-receptacle style passive component test
36 sample . 12
37 Figure C.7 – Example configuration of a fibre management system test sample . 12

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 3 – 86B/4760/CDV
38 Figure C.8 – Example configuration of a protective housing test sample without looped
39 cable . 13
40 Figure C.9 – Example configuration I of a protective housing test sample with looped
41 cable . 14
42 Figure C.10 – Example configuration II of a protective housing test sample with looped
43 cable . 14
44 Figure C.11 – Example configuration of a combined distribution and track/spur
45 protective housing test sample with looped cable . 15
46 Figure C.12 – Example configuration of a mechanical splice or fusion splice test
47 sample . 16
48
49
50

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 4 – 86B/4760/CDV
51 Add the following new paragraph:
52 4.2.3 Requirements to test sample configuration in environmental test chamber
53 Annex C defines example configuration of the test sample and specifies the fibre, pigtail or
54 cable length inside the environmental test chamber for different test sample types.
55
56 Add the following new Annex C

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 5 – 86B/4760/CDV
57 Annex C
58 (normative)
59
60 Test sample configuration in environmental test chamber
61 C.1 General
62 This annex defines the configurations of the test samples and the fibre, pigtail or cable lengths
63 inside the environmental test chamber for the different test sample types, such as:
64 – Pigtail;
65 – Hardened connector pigtail;
66 – Patchcord;
67 – Non-connectorised passive component;
68 – Connectorised passive component;
69 – Plug-receptacle style passive component;
70 – Fibre management system;
71 – Protective housing without looped cable;
72 – Protective housing with looped cable;
73 – Combined protective housing test sample with looped cable;
74 – Mechanical splice or fusion splice.
75 An environmental test chamber is used for temperature cycling, dry heat, cold, damp heat and
76 similar tests.
77 The test sample configuration and the fibre, pigtail or cable lengths inside the environmental
78 test chamber shall be as given in clauses C.2 to C.12, unless otherwise specified in the relevant
79 IEC 61753 performance standards and IEC 62005 reliability documents.
80 The method of storage shall not affect the optical fibre with respect to expansion or contraction.
81 Tight coiling on a rigid cable reel shall not be used. The overlength of the fibres, pigtails or
82 cables of the sample inside the chamber shall be routed in large diameter loose coils or bends.
83 The diameter of the coils or bends shall be larger than the minimum bending diameter specified
84 for the cable in service. The fibre, pigtail or cable coils shall be loosely fixed in a way that the
85 cable elements are not under stress and are free to move.
86 The test sample or the additional pigtails should have unterminated leads of sufficient length to
87 allow termination (splicing, connecting, etc.) to the optical monitoring equipment located outside
88 of the environmental test chamber. The deployment of the fibre, pigtail or cable outside the
89 chamber shall not affect the results.
90 The configurations are shown with one incoming and one outgoing fibre, pigtail or cable of a
91 test sample in Figure C.1 to Figure C.12 for easy illustration. Different types of test samples
92 exist having one or more incoming and one or more outgoing fibres, pigtails or cables or even
93 an incoming fibre, pigtail or cable only. The test sample configurations and length specifications
94 for such test samples shall be applied analogously.
95 When several test samples are tested in the same chamber, the test samples shall be placed
96 in such a way that they do not influence each other and do not exert any load on other test
97 samples. Options are to place the test samples side by side or on different height levels. Care
98 should be taken to ensure that the specified temperature and/or humidity is present at all
99 samples. The test sample configuration and length specification for multiple test samples shall
100 be applied analogously.

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 6 – 86B/4760/CDV
101 NOTE When using one of the protective housing test sample configurations in C.9 to C.11, experience shows that
102 the test samples are only capable to pass the change of temperature requirements of the IEC 61753 series in this
103 configuration when the cables are suitable for the specified operating temperature range. This means that the fibre
104 protrusion after temperature changes is 20 mm or less at the terminated cable ends in the housings.
105 C.2 Pigtail test sample
106 The pigtail test sample should be placed inside the environmental test chamber as shown in
107 Figure C.1. This configuration should be used for connectors terminated on pigtails and is
108 intended for non-hardened connectors. For hardened connectors see C.3.
109
110 Key
111 1 environmental test chamber
112 2 pigtail
113 3 adaptor, if required
114 4 incoming and outgoing pigtails whose fibres are connected to the measurement equipment
115 Figure C.1 – Example configuration of a pigtail test sample
116 Each pigtail should be at least 3 m in length and a length of at least 1,5 m shall be located
117 inside the environmental test chamber. The end of the sheath and strength members of the
118 reinforced cable may be outside or inside the environmental test chamber. An adaptor is
119 required if a connector plug-adaptor-plug type is used. If a connector plug-socket type is used,
120 no adaptor is required.
121 C.3 Hardened connector pigtail test sample
122 The hardened connector pigtail test sample should be placed inside the environmental test
123 chamber as shown in Figure C.2. This configuration should be used for hardened connectors
124 terminated on cables.

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SIST EN IEC 61300-1:2022/oprA1:2023
IEC CDV 61300-1/A1/Ed5 © IEC:2023 – 7 – 86B/4760/CDV
125
126 Key
127 1 environmental test chamber
128 2 hardened connector pigtail
129 3 adaptor, if required
130 4 all cable elements fixed of each pigtail
131 5 buffered format, if present, or othe
...

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