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Homepage>BS Standards>33 TELECOMMUNICATIONS. AUDIO AND VIDEO ENGINEERING>33.180 Fibre optic communications>33.180.20 Fibre optic interconnecting devices>BS EN IEC 61755-6-2:2018 Fibre optic interconnecting devices and passive components. Connector optical interfaces Connection of 50 μm core diameter multimode physically contacting fibres. Non-angled for reference connector application, at wavelength of 850 nm using selected A1a fibre only
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BS EN IEC 61755-6-2:2018 Fibre optic interconnecting devices and passive components. Connector optical interfaces Connection of 50 μm core diameter multimode physically contacting fibres. Non-angled for reference connector application, at wavelength of 850 nm using selected A1a fibre only

BS EN IEC 61755-6-2:2018

Fibre optic interconnecting devices and passive components. Connector optical interfaces Connection of 50 μm core diameter multimode physically contacting fibres. Non-angled for reference connector application, at wavelength of 850 nm using selected A1a fibre only

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Standard number:BS EN IEC 61755-6-2:2018
Pages:18
Released:2018-08-31
ISBN:978 0 580 96964 5
Status:Standard
DESCRIPTION

BS EN IEC 61755-6-2:2018


This standard BS EN IEC 61755-6-2:2018 Fibre optic interconnecting devices and passive components. Connector optical interfaces is classified in these ICS categories:
  • 33.180.20 Fibre optic interconnecting devices

This part of the IEC 61755 defines the dimensional limits of an optical interface for reference connectors necessary to meet specific requirements for fibre-to-fibre interconnection of non-angled polished multimode reference connectors with cylindrical ferrules intended to be used for attenuation measurements in the field or factory.

One grade of reference connector is defined in this document. The reference connector is terminated to selected IEC 60793-2-10:2015 A1a fibre. The geometrical dimensions and tolerances of the specified reference connector have been developed primarily to limit the variation in measured attenuation between multiple sets of two reference connectors, and therefore to limit the variation in measured attenuation between randomly chosen reference connectors when mated with connectors in the field or factory.