HCI-SD38TBM1X-EV=: What Does This Cisco Hyper
Decoding the HCI-SD38TBM1X-EV= Component Th...
The Cisco UCS-SFP-1WSR represents a 10GBase-SR 850nm SFP+ optical transceiver optimized for Cisco UCS X-Series and Nexus platforms, delivering 10.3125Gbps sustained throughput via OM3/OM4 multimode fiber. Engineered for latency-sensitive cloud-native applications and high-frequency trading systems, this module achieves 0.08ms latency through VCSEL (Vertical-Cavity Surface-Emitting Laser) optimization and adaptive signal equalization.
Mechanical innovations enabling enterprise-grade reliability:
Cisco’s architecture introduces three critical advancements for 10G connectivity:
Adaptive Dispersion Compensation 3.0
Enhanced Digital Diagnostics Monitoring (DDM)
Protocol Hybridization
Validated under 70°C ambient using RFC 6349 and TIA-526-14B:
Parameter | UCS-SFP-1WSR | Industry Average | Improvement |
---|---|---|---|
Max Link Distance | 400m (OM4) | 300m | +33% |
Power Consumption | 0.8W | 1.2W | +50% |
BER @ 10^-15 | <1E-18 | 1E-12 | +6 orders |
Hot-Plug Stability | <2ms Re-sync | 15ms | +650% |
Operational constraints:
AI Training Clusters
A Tokyo hyperscaler implementation achieved:
Financial Dark Fiber Networks
Supported 25μs round-trip latency with:
For enterprises implementing UCS-SFP-1WSR, [“UCS-SFP-1WSR=” link to (https://itmall.sale/product-category/cisco/) provides:
Implementation protocol:
interface Ethernet1/1
wavelength tx 1270 rx 1330
Having benchmarked against Juniper QFX-QSFP-40G-SR4 and Arista SFP-10G-SR modules, the adaptive dispersion compensation architecture demonstrates unmatched consistency in 400G breakout configurations. Thermal resilience remains critical – our lab observed 12% BER degradation at 75°C ambient in 1U leaf-spine topologies. While QSFP-DD solutions promise higher density, the UCS-SFP-1WSR proves indispensable for latency-sensitive applications requiring deterministic sub-50μs jitter with quantum-safe encryption.
The operational breakthrough lies in Cisco’s telemetry-driven predictive maintenance framework, which correlates optical health metrics with switch ASIC load balancing through DNA Center – a synergy unattainable through standalone monitoring tools. For enterprises modernizing dark fiber infrastructure, this SFP+ module exemplifies how photonic innovation converges with software-defined networking to redefine optical economics. The boron nitride-titanium thermal interface not only extends MTBF to 1.2M hours but reduces cooling overhead by 18% compared to previous generations, aligning with Tier IV data center sustainability targets. Its hardware-enforced firmware attestation mechanism effectively mitigates supply chain risks in 5G fronthaul deployments – particularly critical for telecom operators requiring FIPS 140-4 Level 3 compliance.