
Out of Stock
Lenovo 4M27A09985 Gen 6 FC32-64 Blade | SAN Switch, Enterprise
Lenovo
MPN: 4M27A09985
$121,223.82$179,999.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 32 Gb Fibre Channel SAN port speed
- 64 total ports
- 4 x 32 Gb QSFP+ transceivers
- Gen 6 Fibre Channel architecture
- Blade form factor
- Lenovo storage fabric component
- Designed for enterprise SAN environments
- Consolidate SAN connectivity with 32 Gb Fibre Channel links
Scale Fibre Channel connectivity without adding unnecessary rack complexity. This Lenovo Gen 6 port blade is built for storage teams that need dense, high-speed SAN fabric capacity in a compact architecture. With 32 Gb Fibre Channel support and 4 x 32 Gb QSFP+ transceivers, it is suited for environments where port density, link speed, and fabric consistency matter more than generic switching features.
For infrastructure teams running mission-critical storage, the value is in the fabric design. Higher-speed links help reduce congestion across storage paths, while the blade form factor supports cleaner integration into modular SAN deployments. That makes it a strong fit for data centers standardizing on Fibre Channel for predictable latency and operational control.
This is the kind of component chosen when uptime, throughput, and long-term fabric planning justify a premium build. It is not about adding ports for the sake of count; it is about maintaining storage performance as environments grow, without forcing a redesign of the SAN core.
Ideal For
- Deploy in enterprise SAN fabrics requiring dense Fibre Channel connectivity
- Expand storage networking in modular blade-based data center environments
- Support mission-critical block storage paths for virtualization clusters
- Standardize high-speed fabric links across large-scale storage arrays
Why This Product
- 1Higher port density than entry-level SAN modules
- 232 Gb Fibre Channel supports faster storage links
- 3Blade design fits modular infrastructure planning
- 4QSFP+ transceivers support dense fabric deployment




