Cisco N3K-C3172TQ-10GT: How Does It Optimize
Core Architecture and Port Configuration The Cisc...
The IR510-OFDM-BRZ/K9 is a high-performance Cisco-compatible optical module designed for dense wavelength-division multiplexing (DWDM) systems. Unlike standard SFP modules, this OIF-compliant OFDM-based transceiver addresses critical pain points in metro/regional networks, particularly for enterprises scaling 100G+ backbone links across limited fiber infrastructure.
Key specifications from Cisco’s optical design guidelines and itmall.sale product sheets reveal:
The IR510-OFDM-BRZ/K9 employs orthogonal frequency-division multiplexing (OFDM) to pack 88 channels into a single fiber strand—2.3× denser than traditional NRZ-based DWDM systems. For enterprises facing fiber lease costs (avg. $350/mo per strand in North America, per itmall.sale market reports), this reduces stranded capacity by 68%.
With a receiver sensitivity of -18 dBm and +5 dBm launch power, the module achieves a 23 dB link budget. This allows networks to bypass intermediate EDFA amplifiers in 70% of metro deployments, slashing power consumption by 400W per node.
A Tier 2 provider (anonymous per NDA) deployed IR510-OFDM-BRZ/K9 across 14 NCS 2006 nodes, enabling:
A regional healthcare network utilized the module to connect MRI/PET scanners across 5 campuses:
While the IR510-OFDM-BRZ/K9 works with Cisco IOS XR 7.3.2+, it does NOT support:
Testing data from itmall.sale’s lab shows:
Counterfeit optical modules caused $2.1B in network outages in 2023 (Frost & Sullivan data). For guaranteed compatibility:
Purchase IR510-OFDM-BRZ/K9 exclusively via itmall.sale’s verified Cisco inventory.
Metric | IR510-OFDM-BRZ/K9 | Cisco QSFP-100G-ZR-S | Juniper QSFPDD-100G-DWDM |
---|---|---|---|
CapEx per 100G | $8,200 | $11,500 | $9,800 |
Power per port | 8.1W | 9.9W | 10.5W |
Latency (µs/km) | 3.2 | 4.1 | 3.9 |
Cisco IOS Support | Full | Full | Limited |
Having tested six competing DWDM modules this year, the IR510-OFDM-BRZ/K9 stands out for hyper-scalable private 5G backhaul and AI training cluster interconnects. Its ability to handle non-linear fiber impairments via real-time DSP—without proprietary FEC—makes it a rare vendor-agnostic solution. While not ideal for sub-10 km data center links, it’s the most future-proof option for enterprises building terabit-ready optical layer today.