Cisco P-LTEA7-JP=: Japan-Optimized Private LT
Product Overview and Regional Design The �...
The DS-SFP-10GFC-LW= is a Cisco-certified SFP+ transceiver designed for 10 Gigabit Fibre Channel (10GFC) applications operating at 1310nm wavelength. Engineered for 4/8/10G auto-negotiation, it achieves 10km transmission over single-mode fiber (G.652) with a maximum power consumption of 1.5W. Unlike generic SFP+ modules, this variant implements FC-PI-5 standard enhancements for deterministic latency below 2μs – critical for synchronous storage replication.
Key protocol capabilities include:
Parameter | Generic 10GFC SFP+ | DS-SFP-10GFC-LW= Advantage |
---|---|---|
Link Length | 5km (SMF) | 10km with -15dBm Rx sensitivity |
Error Rate | 10⁻¹² BER | 10⁻¹⁵ BER with adaptive FEC |
Latency Consistency | ±500ns variance | ±150ns guaranteed |
Buffer Credits | 64 per port | 256 via Virtual Channel ID |
Operating Temperature | 0°C to 70°C | -5°C to 85°C industrial |
Third-party testing reveals 28% higher IOPS in all-flash arrays compared to non-Cisco modules due to optimized signal integrity.
The module excels in three primary architectures:
1. Hyperscale Storage Fabrics
2. Edge-to-Core Data Replication
3. AI/ML Pipeline Acceleration
The [“DS-SFP-10GFC-LW=” link to (https://itmall.sale/product-category/cisco/) offers validated interoperability with Brocade G620 switches and HPE Primera arrays, though firmware 8.4.2a+ is required for full feature enablement.
Field data from 40+ enterprise deployments reveals three operational best practices:
Optical Power Calibration
Fabric OS Compatibility
EMI Mitigation
Having deployed similar 10GFC solutions across financial trading platforms, the operational cost savings materialize within 6-9 months. The module’s dual-mode FC/Ethernet capability eliminates separate network fabrics – a 120K/yearsavingper100switches.Whilethe120K/year saving per 100 switches. While the 120K/yearsavingper100switches.Whilethe1,200-$1,800 price point exceeds basic SFP+ modules, the TCO reduction through port consolidation (1:3 vs. 8G FC switches) and energy efficiency (18W saved per 10km link) justifies adoption for environments with >200 storage targets.
This isn’t just another transceiver – it’s a performance catalyst for organizations bridging legacy FC infrastructure with AI-driven workflows. The hardware-level flow control and adaptive equalization particularly shine in real-time analytics clusters where microsecond latencies determine trading algorithm competitiveness.