MTP to MTP OM4 12-Fiber Type B Trunk Cable: MTP-MTP-OM4-12B

MTP to MTP OM4 12-Fiber Trunk Cable Overview
Our MTP to MTP OM4 12-Fiber Type B Trunk Cable enables high-density multimode connectivity for data center and enterprise networks. This 12-fiber trunk features Type B reversed polarity with female-to-female MTP connectors and 50/125μm OM4 fiber supporting 40G/100G applications. UPC polish ensures low insertion loss while the magenta LSZH jacket provides safety compliance in lengths from 0.5 to 60 meters.
- Fiber Type: OM4 50/125μm Multi-Mode (MMF)
- Connector A: MTP-12 Female (UPC)
- Connector B: MTP-12 Female (UPC)
- Polish Type": UPC to UPC
- Max Cable Length: 60 m
- Jacket Color: Magenta (OM4 LSZH)
- Polarity: Type B (Reversed/Crossover)
- Fiber Count: 12 Fibers
- Jacket Type: LSZH (Low Smoke Zero Halogen)
MTP OM4 12-Fiber Trunk Cable Pricing
MTP to MTP OM4 12-Fiber Type B Trunk Cable Specification
Fiber Type | OM4 50/125μm Multi-Mode (MMF) |
Connector A | MTP-12 Female (UPC) |
Connector B | MTP-12 Female (UPC) |
Connector Brand | US Conec |
Polish Type" | UPC to UPC |
Max Cable Length | 60 m |
Jacket Color | Magenta (OM4 LSZH) |
Polarity | Type B (Reversed/Crossover) |
Fiber Count | 12 Fibers |
Jacket Type | LSZH (Low Smoke Zero Halogen) |
Operating Wavelength | 850 / 1310 nm (Dual Window MMF) |
Jacket Diameter | 3 mm |
Glass Fiber | YOFC |
Attenuation @ 850 nm | 2.3 dB/km |
Attenuation @ 1310 nm | 0.6 dB/km |
Insertion Loss (MPO) | ≤0.35 dB Max (Elite/Premium) |
Return Loss (MPO) | ≥20 dB |
Minimum Bend Radius | 7.5 nm |
Installation Tensile Load | 66 N |
Long Term Tensile Load | 50 N |
Operating Temperature | -10°C to +70°C |
Storage Temperature | -40°C to +85°C |
MTP to MTP OM4 12-Fiber Type B Trunk Cable Datasheet
v1Complete technical specifications and product details
MTP to MTP OM4 12-Fiber Type B Trunk Cable Description
The EDGEOPTIC MTP-MTP-OM4-12B is a high-performance MTP trunk cable designed for data center and enterprise network applications requiring high-density fiber connectivity. This 12 fibers trunk cable provides MTP-12 Female to MTP-12 Female connections with Type B (Reversed/Crossover) polarity configuration. MTP (Multi-fiber Termination Push-on) is a registered trademark of US Conec, representing the highest quality multi-fiber connectivity available.
The cable utilizes OM4 50/125μm Multi-Mode (MMF) optical fiber, optimized for operation at 850 / 1310 nm (Dual Window MMF). The fiber delivers low attenuation of 2.3 dB/km at 850nm, and 0.6 dB/km at 1310nm, ensuring minimal signal loss across transmission distances.
The optical interface is precision-polished to achieve insertion loss of ≤0.35 dB Max (Elite/Premium) and return loss of ≥20 dB, meeting or exceeding industry standards for reliable network performance. These specifications ensure consistent signal quality and minimal reflection for sensitive optical equipment.
The cable features LSZH (Low Smoke Zero Halogen) jacket material, Magenta (OM4 LSZH) color coding, 3 mm cable diameter. With a minimum bend radius of 7.5 nm, the cable provides flexibility for routing in confined spaces while maintaining optical performance. The cable is rated for 66 N installation tensile load and 50 N long-term tensile load, ensuring durability during installation and extended operation.
Operating temperature range spans -10°C to +70°C, with storage rated at -40°C to +85°C, making the cable suitable for controlled data center environments as well as more demanding industrial installations.
This trunk cable supports 40G and 100G Ethernet applications using parallel fiber transmission, ideal for high-density data center deployments. Available in lengths up to 60 m, it enables efficient structured cabling architectures with rapid deployment capabilities.
The EDGEOPTIC MTP-MTP-OM4-12B is CE/RoHS certified, compliant with ISO/IEC-61754, EN 50399, and EN 50575 standards. All cables undergo comprehensive quality testing including optical parameter measurements, connector cleanliness verification, and full specification validation prior to shipment, ensuring reliable performance in production environments.