Lenovo
LENOVO DCG SOURCING LENOVO 32GB (1X32GB) 4RX4 PC3L-8500R DDR3-10666MHZ RDIMM
Out of Stock
Lenovo 32GB DDR3-10666 RDIMM 78P1539 | Server Memory, ECC, Registered
Lenovo
MPN: 78P1539
$336.59$371.47
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 32GB capacity
- DDR3 SDRAM technology
- 1,066 MHz memory speed
- RDIMM form factor
- ECC support
- PC3L-8500R low-voltage specification
- 4Rx4 module organization
- Increase server headroom with 32GB capacity
When a server needs more room to breathe, this Lenovo 32GB RDIMM delivers capacity without changing the platform. It runs as DDR3-10666 memory and uses low-voltage PC3L signaling to help keep power use in check across populated systems. ECC support helps protect data integrity, while registered buffering is designed for server-class stability under sustained load.
The 4Rx4 organization makes this module a fit for environments that require dense memory configurations and predictable behavior. For infrastructure teams maintaining proven Lenovo systems, it offers a practical way to increase capacity for virtualization, database caching, and application workloads without moving to a new hardware generation. That matters when uptime, compatibility, and budget discipline all carry weight.
Choose this module when you need to extend the useful life of a trusted server platform and keep performance consistent as demand grows. It is a straightforward upgrade for teams that value verified compatibility and enterprise memory characteristics over generic desktop parts.
Ideal For
- Expand Lenovo rack servers used for virtualization clusters
- Increase memory capacity in database and caching servers
- Replace lower-capacity DIMMs in production application hosts
- Extend the service life of legacy enterprise infrastructure
Why This Product
- 132GB capacity for higher-density server expansion
- 2DDR3-10666 speed for compatible legacy platforms
- 3ECC and registered design for server-grade stability
- 4Low-voltage PC3L operation for efficient power use