Outdoor Fiber Optic Cable – GYFTY-All-Dielectric

PLANET GYFTY is an all-dielectric, non-metallic outdoor stranded loose-tube fiber optic cable designed for duct, campus backbone, telecom access and protected outdoor infrastructure. The cable uses color-coded optical fibers in high-modulus PBT loose tubes stranded around a central FRP strength member, with longitudinal water blocking and a virgin black UV-resistant PE outer jacket. Standard fiber is OS2 G.652.D; OM3, OM4 and OM5 multimode fibers are available for project-specific requirements.

Environment Outside Plant (OSP), outdoor duct, campus backbone, access and protected infrastructure routes.
Applications Telecom access/backbone, campus networks, outdoor distribution, industrial and power-area links requiring electrical isolation.
Fiber Type OS2 G.652.D standard; G.657.A1/A2 optional; OM3 / OM4 / OM5 multimode available upon project request.
Fiber Count 2F to 144F standard family range; higher counts subject to PLANET engineering approval.
Fiber Proof Test ≥ 100 kpsi proof-tested optical fiber.
Loose Tubes High-modulus, hydrolysis-resistant virgin PBT; color coded; gel-filled or approved dry design.
Central Strength Member FRP (Fiber Reinforced Plastic), non-metallic / dielectric.
Water Blocking Longitudinal water-blocking tape / yarn plus loose-tube filling compound according to approved construction.
Armor None in standard GYFTY construction.
Outer PE Jacket Virgin black MDPE / HDPE, outdoor grade, UV and weather resistant.
Cable Structure Stranded PBT loose tubes + fillers around FRP central strength member + water blocking + black PE outer jacket.
Cable Classification All-Dielectric | Non-Metallic | Non-Armored.
Cable Marking PLANET-GYFTY + fiber count + fiber type + sequential meter marking + production traceability.
Part Number Description
PL-GYFTY-xxS2 Outdoor Fiber Optic Cable  Single Mode OS2
PL-GYFTY-xxM3 Outdoor Fiber Optic Cable  Multi Mode OM3
PL-GYFTY-xxM4 Outdoor Fiber Optic Cable  Multi Mode OM4
PL-GYFTY-xxM5 Outdoor Fiber Optic Cable  Multi Mode OM5
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