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Hlavní stránka>IEC 63267-2-2:2024 - Fibre optic interconnecting devices and passive components - Connector optical interfaces for enhanced macro bend multimode fibres - Part 2-2: Connection parameters of physically contacting 50 μm core diameter fibres - Non-angled and angled for reference connector applications
sklademVydáno: 2024-03-15
IEC 63267-2-2:2024 - Fibre optic interconnecting devices and passive components - Connector optical interfaces for enhanced macro bend multimode fibres - Part 2-2: Connection parameters of physically contacting 50 μm core diameter fibres - Non-angled and angled for reference connector applications

IEC 63267-2-2:2024

Fibre optic interconnecting devices and passive components - Connector optical interfaces for enhanced macro bend multimode fibres - Part 2-2: Connection parameters of physically contacting 50 μm core diameter fibres - Non-angled and angled for reference connector applications

Dispositifs d'interconnexion et composants passifs fibroniques – Interfaces optiques de connecteurs pour fibre multimodale à performances améliorées par macrocourbures – Partie 2-2: Paramètres de connexion de fibres de diamètre de cœur de 50 µm en contact physique - Fibres inclinées et non inclinées pour les applications de connecteurs de référence

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Anglicky/Francouzsky Tisk
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Označení normy:IEC 63267-2-2:2024
Vydáno:2024-03-15
Jazyk:Anglicky/Francouzsky
Popis

IEC 63267-2-2:2024

IEC 63267-2-2:2024 defines the dimensional limits of an optical interface for reference connections necessary to meet specific requirements for fibre-to-fibre interconnection of non-angled and angled polished multimode reference connectors intended to be used for attenuation measurements in the field or factory. Several grades of reference connections are defined in this document. The multimode reference connections are terminated to restricted IEC 60793-2-10 A1-OM2b to A1-OM5b fibre at the 850 nm band only. The geometrical dimensions and tolerances of the specified reference connections 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.