DFRobot
2mm SC-SC Single Mode Duplex Fiber Jumper (50m)
This 50-metre single-mode duplex fibre jumper features SC-SC connectors with ceramic ferrules, delivering reliable long-distance optical communication. The d...
This 50-metre single-mode duplex fibre jumper features SC-SC connectors with ceramic ferrules, delivering reliable long-distance optical communication. The dual-core design (two single-core fibres) with a 2 mm wire diameter provides carrier-grade performance with low insertion loss and high return loss.
Single-mode fibre enables one light mode to propagate at a time, making it ideal for long-distance data transmission. The PBT protective shell and tensile-resistant construction ensure durability across a wide operating temperature range.
Key Features
- Single-Mode Duplex – 9/125 (G652D) specification for long-distance transmission
- SC-SC Connectors – Square-type connectors with ceramic ferrules
- Low Insertion Loss – ≤0.3 dB for minimal signal degradation
- High Return Loss – ≥50 dB for reliable performance
- Carrier-Grade – Industry-standard quality for professional installations
- Durable Construction – 100 N tensile strength, rated for 1,000+ plug cycles
Specifications
- Fibre Type – Single-mode duplex 9/125 (G652D)
- Connector – SC-SC (square)
- Wire Diameter – 2.0 mm
- Length – 50 m
- Ferrule – Ceramic
- Wavelength – 1310–1550 nm
- Insertion Loss – ≤0.3 dB
- Return Loss – ≥50 dB
- Interchangeability – ≤0.2 dB
- Shell Material – PBT
- Bending Radius – 30 mm
- Tensile Strength – 100 N
- Connector Pull Force – 10–20 N
- Plug/Unplug Cycles – >1,000
- Operating Temperature – −40 °C to +80 °C
Ideal For
- Optical fibre communication systems
- Fibre access networks
- Long-distance data transmission
- Local area networks (LANs)
Package Contents
- 1× 2 mm SC-SC single-mode duplex fibre jumper (50 m)
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Plain-language definitions for the technical terms used above.
- Torque
- A twisting force that causes something to rotate, usually measured in newton-metres or kilogram-centimetres. It matters when choosing motors, servos, gears, and tools because higher torque is needed to lift heavier loads, turn larger wheels, or move mechanisms without stalling.
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