Brand: Samsung | Category: Memory (RAM)
SKU: SAM-M321R4GA3PB2-CCP | Part #: M321R4GA3PB2-CCP | MPN: M321R4GA3PB2-CCP
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The Samsung 32GB DDR5-6400 2Rx8 ECC RDIMM M321R4GA3PB2-CCP from Samsung is enterprise-grade Memory (RAM) hardware built for data centers. It features 32GB capacity, 288-pin RDIMM form factor, 6400 MT/s speed. A high-performance 32GB DDR5-6400 ECC Registered DIMM memory module from Samsung, designed for enterprise servers and data centers requiring high speed and reliability. Available in brand new condition. Samsung memory (ram) products are trusted by enterprises and data centers worldwide. Available from Omnixon Global. Contact our sales team to request a quote.
| Brand | Samsung |
| Category | Memory (RAM) |
| SKU | SAM-M321R4GA3PB2-CCP |
| Part Number | M321R4GA3PB2-CCP |
| Condition | New |
| Capacity | 32GB |
| Form Factor | 288-pin RDIMM |
| Speed | 6400 MT/s |
| Capacity | 32GB |
| Memory Speed | 6400 MT/s |
| Type | DDR5 |
| Memory Voltage | 1.1V |
| Rank | 2Rx8 |
| CAS Latency | CL22 |
| Memory Form Factor | RDIMM |
| ECC | Yes |
The Samsung 32GB DDR5-6400 2Rx8 ECC RDIMM M321R4GA3PB2-CCP is enterprise 288-pin RDIMM memory designed for ECC-protected workloads — virtualization hosts, database servers, analytics platforms, and AI training rigs. Samsung validates this module against major server vendor compatibility matrices.
Key specifications for the Samsung 32GB DDR5-6400 2Rx8 ECC RDIMM M321R4GA3PB2-CCP: capacity 32GB; form factor 288-pin RDIMM; new condition; capacity 32GB; speed 6400Mbps; type DDR5; voltage 1.1V; rank 2Rx8; cas latency CL22. Manufacturer part number M321R4GA3PB2-CCP. For the full datasheet with electrical, environmental, and compliance details, contact our pre-sales engineering team.
The Samsung 32GB DDR5-6400 2Rx8 ECC RDIMM M321R4GA3PB2-CCP fits 288-pin RDIMM memory slots and is compatible with major server platforms validated by Samsung. Server vendor IPL/HCL compatibility (Dell PowerEdge, HPE ProLiant, Lenovo ThinkSystem, Supermicro) is checked at quote time so you don't risk a memory-channel mismatch.