
Out of Stock
SAMSUNG 16GB DDR4-3200 ECC SODIMM M474A2G43BB2-CWE | Memory Module
STRATEGIC SOURCING
MPN: M474A2G43BB2-CWE
$228.43$312.00
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- 16GB DDR4 SDRAM capacity
- 3,200 MT/s memory speed
- ECC support
- SODIMM form factor
- 1Rx8 module organization
- 1.2 V operating voltage
- Samsung M474A2G43BB2-CWE MPN
- Preserve data integrity with ECC error correction for memory-sensitive workloads
Keep memory-sensitive workloads running with Samsung 16GB DDR4-3200 ECC SODIMM module M474A2G43BB2-CWE. Designed for systems that need compact form factor memory with error correction, this module helps preserve data integrity under sustained load. The 3,200 MT/s data rate supports responsive performance for virtualization hosts, network appliances, and embedded infrastructure that depend on consistent memory behavior.
Its 1Rx8 organization balances density and compatibility for platforms that accept ECC SODIMM modules, while the 1.2V operating voltage supports efficient power use in space-constrained systems. For teams standardizing on validated memory upgrades, this module offers a practical path to extend service life without changing the platform footprint. It is a strong fit when uptime, predictability, and compatibility matter more than raw capacity alone.
Choose this module when you need server-class memory characteristics in a compact package. It is well suited to environments where a failed DIMM can interrupt services, degrade throughput, or trigger avoidable maintenance windows.
Ideal For
- Memory upgrade for compact server appliances
- ECC-capable expansion for virtualization hosts
- Replacement module for network and security appliances
- Capacity increase for embedded infrastructure systems
Why This Product
- 1ECC support helps protect data integrity versus non-ECC memory
- 23,200 MT/s speed supports stronger throughput than slower DDR4 modules
- 3SODIMM format fits compact systems where full-size DIMMs will not
- 41.2 V operation supports efficient power use in always-on platforms