Huawei 02311NTY 100GBASE-SR4 QSFP28 OM4 850nm 100m OMND10N13 MMF MPO Transceiver

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Huawei

Product Features

100GBASE-SR4 Performance : Delivers 100Gbps bandwidth over 100 meters of OM4 multi-mode fiber, fully compliant with IEEE 802.3ba standard.
850nm Parallel Multi-Lane Technology : Utilizes four 25G parallel lanes at 850nm for cost-effective and high-density data center connectivity.
QSFP28 Form Factor : Industry-standard hot-pluggable form factor for high port density and seamless integration into modern network equipment.
Low Power Consumption : Optimized power design reduces heat generation and operational costs in high-density racks.
Full DDM/DOM Monitoring : Real-time monitoring of temperature, voltage, bias current, and optical power for proactive network maintenance.

Huawei 02311NTY 100GBASE-SR4 QSFP28 OM4 850nm 100m OMND10N13 MMF MPO Transceiver

Huawei 02311NTY OMND10N13 is a high-performance 100GBASE-SR4 QSFP28 optical transceiver, specifically designed for short-distance transmission up to 100 meters over OM4 multimode fiber. This module features an 850nm wavelength, 4×25G parallel channels, and optimized optical power budget, providing reliable 100G connectivity for high-density data center top-of-rack switches, server-to-switch links, and short-distance inter-rack connections. With MPO interface and full digital diagnostic monitoring (DDM/DOM), it is an ideal choice for high-speed 100G multimode deployment in enterprise and carrier-grade data center environments.


Huawei Part Number
02311NTY
Band
  Huawei
  Model Number
OMND10N13
Fiber Type
QSFP28
Wavelength
850nm
Transmission Distance
Up to 100m
Connector
Duplex LC
Fiber Type
Multi-Mode Fiber (MMF)
Operating Temperature
  0°C ~ 70°C
Hot Pluggable
  Yes
Data Rate
100Gbps
Country of Origin
China
Transmit Power
-8.4 dBm ~ +2.4 dBm
Receiver Sensitivity
-10.3 dBm
Power Consumption
≤12W
Supply Voltage
  3.3V DC

Typical Applications
Product Highlights

1. 100G Short-Reach Multi-Mode Transmission

2. Industry-Standard QSFP28 Form Factor

3. Advanced Network Management & Reliability