Lenovo
4TH & 5TH YR(983.04TB NVME QLC)PACK UNIFIED COMPLETE
In Stock
Lenovo 5WS7C21156 983.04 TB NVMe QLC Pack | Enterprise Storage
Lenovo
MPN: 5WS7C21156
$28,687.02$31,457.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- Lenovo support pack for unified storage environments
- Coverage aligned to 4th and 5th-year lifecycle planning
- 983.04 TB NVMe QLC capacity reference
- Designed for enterprise flash infrastructure
- Pack format for complete unified coverage
- MPN 5WS7C21156
- Vendor Lenovo
- Extend storage coverage through years 4 and 5 with 983.04 TB NVMe QLC capacity
Keep large unified storage environments covered through years 4 and 5 with Lenovo’s 983.04 TB NVMe QLC pack. Sized for substantial flash capacity, it supports organizations that need long-range service alignment without disrupting operational plans or forcing an early platform replacement.
This pack is a strong fit for infrastructure teams managing dense NVMe QLC deployments where support continuity matters as much as raw capacity. By extending coverage across two later lifecycle years, it helps reduce risk during the period when systems are often most exposed to budget constraints, aging hardware concerns, and shifting workload demand.
For procurement and architecture teams, the advantage is clarity. Coverage is tied to a defined lifecycle window and a large capacity footprint, making it easier to plan spend, maintain service expectations, and keep unified storage aligned with enterprise requirements.
Ideal For
- Extending support on a unified flash array through years 4 and 5
- Maintaining coverage for high-capacity NVMe QLC deployments
- Planning lifecycle continuity for enterprise storage refresh cycles
- Supporting procurement for long-term storage service alignment
Why This Product
- 1Years 4-5 coverage versus single-year support packs
- 2983.04 TB capacity reference versus smaller storage packs
- 3Unified storage focus versus generic drive coverage
- 4NVMe QLC alignment versus legacy flash support models



