Samsung Authorized Partner STORE|Enterprise displays, computing, and storage solutions with expert support and competitive pricing
Samsung Authorized Partner
Samsung 16GB DDR5-4800 RDIMM 1Rx8 1.1V server memory module
Out of Stock

Samsung 16GB DDR5-4800 RDIMM M321R2GA3BB6-CQK | Server Memory

Samsung

MPN: M321R2GA3BB6-CQK

$238.28$253.82
Contact Us for Availability
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty

Key Features

  • 16GB DDR5 SDRAM capacity
  • 4,800 MHz memory speed
  • Registered DIMM architecture
  • 1Rx8 module organization
  • 1.1V operating voltage
  • 288-pin DIMM form factor
  • Server memory module
  • Samsung DDR5 platform
Add bandwidth and capacity to DDR5 server platforms with Samsung 16GB DDR5-4800 RDIMM memory. This module is designed for registered server environments where predictable behavior, efficient power use, and clean platform compatibility matter more than consumer-grade speed claims. Running at 4,800 MHz and 1.1V, it supports modern infrastructure teams that need to scale memory without compromising thermal or electrical budgets. The 1Rx8 organization is well suited to enterprise systems that rely on balanced density and stable operation across multiple DIMM slots. For virtualization hosts, database servers, and compute nodes, this Samsung module provides a straightforward way to increase usable memory while preserving the integrity of the platform design. It is a practical fit for organizations standardizing on DDR5 and looking for server memory that aligns with long-term deployment requirements.

Ideal For

  • Expand memory in DDR5-capable virtualization hosts
  • Support database and analytics servers that need higher bandwidth
  • Populate enterprise rack servers with registered DDR5 modules
  • Standardize memory across modern compute clusters

Why This Product

  • 1DDR5-4800 bandwidth for newer server platforms
  • 21.1V design for improved power efficiency
  • 3Registered RDIMM architecture for enterprise stability
  • 41Rx8 organization for balanced density