Lenovo
4TH YR(34.56TB NVME TLC)PACK UNIFIED ESSENTIAL
In Stock
Lenovo 5WS7C20989 34.56 TB NVMe TLC Pack | Enterprise Storage
Lenovo
MPN: 5WS7C20989
$1,713.25$1,797.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- Lenovo Unified Essential support pack
- 4th-year coverage extension
- Designed for 34.56 TB NVMe TLC systems
- Service-only offering for Lenovo storage environments
- Supports long-term infrastructure planning
- Procurement-friendly fixed-term coverage
- Aligned to enterprise storage lifecycle management
- Extend support coverage with a 4th-year Unified Essential pack
Protect high-capacity storage platforms with an additional year of Lenovo support coverage. This 4th-year Unified Essential pack for 34.56 TB NVMe TLC systems is designed for organizations that need to keep large storage investments covered as they move through extended operational cycles.
For infrastructure teams, the advantage is straightforward: maintain continuity without reworking the platform or changing the deployment model. The pack supports Lenovo unified environments and fits procurement strategies that separate capital hardware purchases from ongoing service protection.
When storage density is high, the cost of a coverage gap can be higher than the cost of the extension itself. This pack helps reduce that risk while supporting cleaner budget forecasting and more disciplined lifecycle management. It is a practical fit for enterprise storage fleets where capacity, continuity, and service planning all matter.
Ideal For
- Extend support on deployed Lenovo storage systems after the initial coverage term
- Maintain service continuity for high-capacity production data platforms
- Standardize support renewal for enterprise storage fleets
- Match procurement cycles to multi-year infrastructure refresh plans
Why This Product
- 1Adds 4th-year coverage rather than replacing hardware
- 2Fits Lenovo unified storage environments
- 3Supports 34.56 TB NVMe TLC deployments
- 4Helps preserve budget predictability over longer refresh cycles



