Single Mode Duplex LSZH Fibre Cable | 9/125 Micron | 100% Optically Tested | 0.5m Length | by SERVEREDGE
The Single Mode Duplex LSZH Fibre Cable is designed for high-performance data transmission, featuring a 9/125 micron core diameter and a Low Smoke Zero Halogen jacket for minimal toxic emissions. Ideal for telecommunications networks and data centers, this cable is 100% optically tested, ensuring reliable connectivity and compliance with industry standards.
Sign in
Please login to continue to your account.
Product Name/Title: Single Mode Duplex LSZH Fibre Cable | 9/125 Micron | 100% Optically Tested | 0.5m Length | by SERVEREDGE
Brand: SERVEREDGE
SKU: LCLC-0.5-OS2
Alternatively Known As: Single Mode Duplex Fibre Optic Cable, OS2 Fibre Cable, LSZH Fibre Cable, 09/125 Fibre Cable
- Fibre Type: Single Mode OS2
- Core Diameter: 9/125 microns
- Fibre Type Compliance: B1.3 in IEC 6 793-2-5 & G652d
- Jacket: Low Smoke Zero Halogen (LSZH)
- Length: 0.5 meters
- Optical Testing: 100% optically tested with test reports
- Dimensions (H x L x W): 3mm x 500mm x 5mm
- Weight: 0.05 kg
- Single Mode OS2 fibre optic cable
- Low Smoke Zero Halogen (LSZH) jacket for minimal toxic emissions in case of fire
- 100% optically tested with provided test reports
- Available in various lengths from 0.5m to 50m
- Installation should be performed by qualified technicians experienced in fibre optic cable handling and termination to ensure optimal performance and safety.
- Telecommunications networks
- Data centers and server rooms
- High-speed internet connections
- Long-distance and high-performance data transmission
- Complies with AS/NZS 60035 – Electrical Equipment in Explosive Atmospheres
- Low Smoke Zero Halogen jacket reduces toxic emissions and environmental impact during fire incidents
Standard manufacturer warranty applies; please refer to SERVEREDGE warranty policy for details.
The SERVEREDGE 0.5m LCLC Single Mode Duplex LSZH Fibre Cable 09/125 OS2 is available for immediate purchase, ideal for telecommunications and data center applications.