• High-density 16-fiber multimode interconnection scenarios in data centers, supporting high data rates and short-distance dual-wavelength transmission
• High-bandwidth transmission scenarios such as enterprise campus networks and multimedia systems
• Cabling systems for multi-channel signal transmission such as security surveillance and smart buildings
• US Conec MTP®-16 and duplex LC connector combination enables 16-fiber high-density interconnection and flexible breakout
• Corning ClearCurve® OM4 multimode fiber supports low-attenuation dual-wavelength transmission at 850nm/1300nm
• APC to UPC polish with cross polarity design ensures signal transmission accuracy and stability
• Low insertion loss (MTP≤0.35dB, LC≤0.2dB) and high return loss (MTP≥20dB, LC≥30dB) provide excellent signal integrity
• The Plenum (OFNP) jacket is highly flame-retardant, with a minimum bend radius of only 7.5mm, suitable for complex cabling environments
• Excellent mechanical performance with a long-term tensile load of 80N and short-term 240N ensures reliability during cabling and use
| Specification Details | |||
|---|---|---|---|
| Connector A | US Conec MTP®-16 Female (No Pins), Offset Key | Connector B | Duplex LC |
| Fiber Type | OM4 50/125μm | Wavelength | 850/1300nm |
| Glass Fiber | Corning ClearCurve® Multimode Fiber | Min. Bend Radius | 7.5mm |
| Polish Type | APC to UPC | Polarity | Cross |
| Cable Jacket | Plenum (OFNP) | Cable OD | 3.0mm |
| Breakout Diameter (OD) | 2.0mm | Breakout Length | 0.5m |
| MTP Connector Insertion Loss | ≤0.35dB (typical 0.15dB) | MTP Connector Return Loss | ≥20dB |
| LC Connector Insertion Loss | ≤0.2dB | LC Connector Return Loss | ≥30dB |
| Attenuation @850nm | ≤2.3dB/km | Attenuation @1300nm | ≤0.6dB/km |
| Long-Term Tensile Load | 80N | Short-Term Tensile Load | 240N |
| Operating Temperature | -10-60°C(14-140℉) | Storage Temperature | -10-70°C(14-158℉) |
Delivery Length
Custom lengths are available per actual equipment interconnection distance requirements, covering a wide range of application scenarios from short to long distance.