simplex cable use single 900um or 600um flame-retardant tight buffer fiber as optical communication medium, the tight buffer fiber wrapped with a layer of aramid yarn as strength member units, and the cable is completed with a PVC or LSZH jacket
Product Details
This simplex fiber optic cable features single 900μm or 600μm flame-retardant tight buffer fiber for indoor distribution and FTTx applications. The tight buffer design provides direct fiber protection with aramid yarn strength members and PVC or LSZH jacket options.
The 900μm or 600μm tight buffer coating applies directly to the optical fiber core for enhanced protection in indoor environments. Aramid yarn strength members surround the buffered fiber to handle tensile loads during installation and operation. This construction eliminates the need for gel-filled tubes found in loose tube designs.
Available with standard single-mode or multimode fiber types in 900μm or 600μm tight buffer configurations. The aramid yarn provides tensile strength while maintaining cable flexibility for tight bend radius installations. PVC jacket offers cost-effective flame retardant properties, while LSZH jacket provides low smoke zero halogen performance for plenum applications.
Designed for distribution cable runs, indoor cabling systems, and fiber-to-the-home installations. Commonly used in data center environments for equipment connections and patch panel terminations. Supports multi-core pigtails and patchcords with configurations up to 48 cores per cable assembly.
Soft and flexible construction allows easy routing through conduit systems and cable trays. The tight buffer design eliminates fiber movement within the cable during temperature cycling. Flame retardant jacket materials meet building safety codes for vertical and horizontal cable runs.
Excellent mechanical characteristics handle repeated flexing without signal loss. Environmental stability maintains optical performance across temperature ranges typical in building installations. Compatible with standard fiber optic connectors and termination hardware.
Each cable meets international fiber optic standards for indoor distribution applications. Typically used for backbone connections, equipment jumpers, and permanent building installations requiring reliable single-fiber connectivity.
Available in custom lengths with factory-installed connectors or bulk cable for field termination.
| Cable Code | Cable Diameter | Cable Weight | Crush Resistance | ||||
| (mm) | (kg/km) | Tensile Strength | (N/100mm) | ||||
| (N/100mm) | |||||||
| PVC jacket | LSZH jacket | Short Term | Long Term | Short Term | Long Term | ||
| 4 | 4.8±0.3 | 16 | 18 | 440 | 130 | 1000 | 300 |
| 6 | 5.1±0.3 | 20 | 23 | 440 | 130 | 1000 | 300 |
| 8 | 5.6±0.3 | 27 | 31 | 440 | 130 | 1000 | 300 |
| 12 | 6.2±0.3 | 32 | 36 | 440 | 130 | 1000 | 300 |
| 24 | 8.1±0.3 | 53 | 57 | 660 | 200 | 1000 | 300 |
Ord Infomation
| Module | xxx | xx | X | X |
| YD- | cores | Fiber model | Sheath Material | Fiber type |
| (model) | 001=1 | SM=9/125um | 1=PU | 1=G652D |
| 002=2 | 2=LSZH | 2=G655 | ||
| 004=4 | 3=PVC | 3=G657A1 | ||
| 006=6 | 4=PE | 4=G657B3 | ||
| 008=8 | 5=else | 5=OM1 | ||
| 012=12 | MM=62.5/125um | 6=OM2 | ||
| 016=16 | MM=50/125um | 7=OM3 | ||
| 024=24 | 8=OM4 | |||
| 048=48 | 9=OM5 | |||
| ……. | ……. |
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