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IEC 60793-1-47 (REDLINE + STANDARD)

Optical fibres – Part 1-47: Measurement methods and test procedures – Macrobending loss - Edition 4.0

Organization:
IEC - International Electrotechnical Commission
Year: 2017

Abstract: This part of IEC 60793 establishes uniform requirements for measuring the macrobending loss of single-mode fibres (class B) at 1 550 nm or 1 625 nm, category A1 multimode fibres at 850 nm or 1 300 nm, and category A3 and A4 multimode fibres at 650 nm, 850 nm or 1 300 nm, thereby assisting in the inspection of fibres and cables for commercial purposes. This document gives two methods for measuring macrobending sensitivity: • Method A – Fibre winding, pertains to class B single-mode fibres and category A1 multimode fibres. • Method B – Quarter circle bends, pertains to category A3 and A4 multimode fibres. For both of these methods, the macrobending loss can be measured utilizing general fibre attenuation techniques, for example the power monitoring technique (see Annex A) or the cut-back technique (see Annex B). Methods A and B are expected to produce different results if they are applied to the same fibre. This is because the key difference between the two methods is the deployment, including the bend radius and length of fibre that is bent. The reason for the difference is that A3 and A4 multimode fibres are expected to be deployed in short lengths with a smaller number of bends per unit fiber length compared to single-mode and category A1 multimode fibres. In this document, the "curvature radius" is defined as the radius of the suitable circular shaped support (e.g. mandrel or guiding groove on a flat surface) on which the fibre can be bent. In addition, informative Annex E has been added to approximate bend loss for class B singlemode fibres across a broad wavelength range at various effective bends.
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    IEC 60793-1-47 (REDLINE + STANDARD)

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contributor authorIEC - International Electrotechnical Commission
date accessioned2018-07-31T09:58:25Z
date available2018-07-31T09:58:25Z
date copyright2017.10.01
date issued2017
identifier otherNREQCGAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;jsessiouthor:%22NAVY%20-%20YD%20-/handle/yse/264571
description abstractThis part of IEC 60793 establishes uniform requirements for measuring the macrobending loss of single-mode fibres (class B) at 1 550 nm or 1 625 nm, category A1 multimode fibres at 850 nm or 1 300 nm, and category A3 and A4 multimode fibres at 650 nm, 850 nm or 1 300 nm, thereby assisting in the inspection of fibres and cables for commercial purposes. This document gives two methods for measuring macrobending sensitivity: • Method A – Fibre winding, pertains to class B single-mode fibres and category A1 multimode fibres. • Method B – Quarter circle bends, pertains to category A3 and A4 multimode fibres. For both of these methods, the macrobending loss can be measured utilizing general fibre attenuation techniques, for example the power monitoring technique (see Annex A) or the cut-back technique (see Annex B). Methods A and B are expected to produce different results if they are applied to the same fibre. This is because the key difference between the two methods is the deployment, including the bend radius and length of fibre that is bent. The reason for the difference is that A3 and A4 multimode fibres are expected to be deployed in short lengths with a smaller number of bends per unit fiber length compared to single-mode and category A1 multimode fibres. In this document, the "curvature radius" is defined as the radius of the suitable circular shaped support (e.g. mandrel or guiding groove on a flat surface) on which the fibre can be bent. In addition, informative Annex E has been added to approximate bend loss for class B singlemode fibres across a broad wavelength range at various effective bends.
languageEnglish
titleIEC 60793-1-47 (REDLINE + STANDARD)num
titleOptical fibres – Part 1-47: Measurement methods and test procedures – Macrobending loss - Edition 4.0en
typestandard
page112
statusActive
treeIEC - International Electrotechnical Commission:;2017
contenttypefulltext
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