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DRAM Module Samsung DDR4 / DDR5 – 32GB

DRAM Module Samsung DDR4 / DDR5 – 32GB

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DRAM Module Samsung DDR4 / DDR5 – 32GB

ECC SODIMM | ECC UDIMM | RDIMM | SODIMM | UDIMM

Samsung 32GB DRAM modules based on DDR4 and DDR5 architecture are designed for workstation and server-class environments requiring stable signal integrity and predictable memory behavior under sustained workloads. These modules operate at 1.2V for DDR4, reducing power consumption compared to legacy DDR3 platforms while maintaining higher memory bandwidth and improved bank group efficiency.

For system builders searching for samsung 32gb ddr4 ecc udimm or server grade 32gb ddr5 rdimm modules, this series covers multiple buffering architectures to match motherboard and CPU memory controller requirements.

Module Architecture Overview

  • RDIMM (Registered DIMM) – Includes register to buffer command and control signals. Supports x4 / x8 organization, up to 2 ranks per DIMM and 3DPC configuration. Designed for server platforms requiring improved signal stability and ECC parity protection.
  • SODIMM – Compact form factor for mobile workstations and embedded systems. Supports x8 / x16 organization, up to 2 ranks per DIMM and 2DPC configuration.
  • UDIMM – Unbuffered design with lower latency path. Supports x8 / x16 organization, up to 2 ranks per DIMM and 2DPC configuration. Suitable for desktop and professional workstation builds.

ECC variants include 8-bit parity extension for error detection and correction, typically required in virtualization hosts, database servers, and compute nodes handling continuous memory transactions. The 32GB capacity per module allows system integrators to scale memory density while maintaining balanced channel population.

Typical Application Environment

Common deployment includes 32gb ecc sodimm for workstation laptops, rack servers using 32gb registered dimm modules, and desktop platforms requiring non-ecc unbuffered memory. Compatibility should always be verified against motherboard QVL and CPU memory controller specifications.

Part Number List

M426R4GA3BB0-CQK M474A4G43BB1-CWE M474A4G43AB1-CWE
M474A4G43AB1-CVF M474A4G43MB1-CTD M324R4GA3BB0-CQK
M391A4G43BB1-CWE M391A4G43AB1-CWE M391A4G43AB1-CVF
M391A4G43MB1-CTD M393A4G40CB3-CWE M393A4G43CB4-CWE
M321R4GA0BB0-CQK M321R4GA3BB6-CQK M329R4GA0BB0-CQK
M393A4G40BB3-CWE M393A4G43BB4-CWE M393A4K40EB3-CWE
M393A4K40DB3-CWE M393A4G40AB3-CVF M393A4G40AB3-CWE
M393A4G43AB3-CVF M393A4G43AB3-CWE M393A4K40DB2-CTD
M393A4K40CB1-CRC M393A4K40CB2-CTD M471A4G43CB1-CWE
M471A4G43BB1-CWE M425R4GA3BB0-CWM M425R4GA3BB0-CQK
M378A4G43CB2-CWE M378A4G43BB2-CWE M323R4GA3BB0-CQK
M378A4G43AB2-CVF M378A4G43AB2-CWE M393A4K40DB2-CWE


Technical FAQ

1. When should RDIMM be selected over UDIMM?
RDIMM is recommended when system memory capacity increases across multiple channels. The register reduces electrical loading on the memory controller, improving signal integrity in high-density server configurations.

2. Is ECC mandatory for 32GB modules?
ECC is not mandatory but is strongly recommended in server, virtualization, or financial computing environments where single-bit error correction reduces system instability risks.

3. Are DDR4 and DDR5 modules interchangeable?
No. DDR4 and DDR5 use different pin layouts and signaling standards. Platform compatibility depends on CPU generation and motherboard chipset support.


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