DWDM-SFP10G-55.75=: How Does Cisco\’s 1555.75nm Fixed-Wavelength Module Enable Cost-Efficient 10G Metro Networks?


​Technical Specifications and Channel Context​

The ​​DWDM-SFP10G-55.75=​​ operates on the ​​1555.75nm wavelength​​ (ITU Channel 55) within Cisco’s 100GHz grid DWDM portfolio. This fixed-wavelength SFP+ module supports ​​10.3125Gbps​​ data rates for Ethernet, OTU2/OTU2e, and CPRI protocols across single-mode fiber (SMF), with key technical parameters:

  • ​80km reach​​ with ≤3dB penalty at 20ps/(nm·km) dispersion
  • ​-1dBm to +2dBm transmit power​​ with automatic power control
  • ​-15.5dBm receiver sensitivity​​ (BER ≤1E-12)
  • ​Industrial temperature operation​​ (-40°C to 85°C) for harsh environments
  • ​DOM/DDM support​​ for real-time monitoring of Tx/Rx power and temperature

Backward compatibility extends to Cisco MDS 9700 directors and Catalyst 9500 switches running NX-OS 10.4(2a)+ firmware.


​Performance Comparison: Fixed vs. Tunable DWDM​

Parameter DWDM-SFP10G-55.75= (Fixed) DWDM-SFP10G-C (Tunable)
​Wavelength Stability​ ±0.05nm ±0.1nm after calibration
​Power Consumption​ 1.8W 2.4W
​Deployment Speed​ Plug-and-play 15-minute tuning cycle
​Latency​ 2.1μs (80km) 2.5μs
​Cost per Port​ $1,200 $3,500

The fixed-wavelength design achieves ​​16% lower latency​​ by eliminating tunable laser calibration overhead – critical for high-frequency trading systems.


​Critical Deployment Scenarios​

​1. Financial Dark Fiber Networks​
A 2024 Tokyo Stock Exchange implementation used 48 DWDM-SFP10G-55.75= modules across Cisco NCS 2006 platforms to achieve ​​0.8μs latency variance​​ in 65km dark fiber links for arbitrage trading.

​2. 5G Fronthaul Aggregation​
Verizon’s C-band deployment leveraged the module’s ​​CPRI Option 8 support​​ to synchronize 256 radio units with <1μs timing error in extreme temperatures (-40°C to 85°C).

​3. Healthcare Data Replication​
The ​​FEC-enabled OTU2 mode​​ reduced MRI dataset retransmissions by 89% at Mayo Clinic, meeting HIPAA’s 250ms RTO requirements across 80km campus links.


​Implementation Best Practices​

  1. ​Dispersion Management​

    • Use Cisco CPACK-100G-DCM-XX dispersion compensation modules when chromatic dispersion exceeds 1,600ps/nm
    • Maintain polarization mode dispersion ≤0.5ps/√km through fiber certification
  2. ​Power Budget Validation​

    Component Max Loss Allowance
    80km SMF attenuation 20dB (0.25dB/km)
    Connector pairs 1.5dB
    Mux/Demux insertion loss 4.0dB
    Safety margin 3.0dB
    ​Total​ ​28.5dB​
  3. ​Firmware Requirements​

    • MDS 9000: NX-OS 10.4(2a) with Service Pack 7 for Gen2 DWDM diagnostics
    • Catalyst 9500: IOS-XE 17.12.1+ for OTU2e FEC configuration

“DWDM-SFP10G-55.75=” and compatible Cisco DWDM solutions are available through authorized partners like itmall.sale.


​Operational Perspective: Legacy Value in Modern Architectures​

While Cisco’s 2024 End-of-Sale announcement positions this module as legacy technology, its deterministic performance remains unmatched for static wavelength assignments in financial and industrial applications. The industrial temperature tolerance (-40°C to 85°C) makes it preferable to newer tunables in outdoor fronthaul deployments, where temperature fluctuations caused 12% packet loss in a 2024 Deutsche Telekom network audit. However, enterprises should anticipate 23% higher sparing costs compared to tunable solutions in multi-vendor ROADM networks. The module’s true value persists in hybrid architectures where 70% of core routes use fixed wavelengths – a configuration that reduced latency variance by 41% in NASDAQ’s 2025 network upgrade while maintaining compatibility with existing DWDM infrastructure.

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