Micron 1x 32GB DDR5-6400 RDIMM PC5-51200R Dual Rank x8 Module

Micron 1x 32GB DDR5-6400 RDIMM PC5-51200R Dual Rank x8 Module

SKU: MTC20F2085S1RC64BH1

  • $3,199.99
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Product Overview

The MTC20F2085S1RC64BH1 is a 32 GB DDR5‑6400 ECC RDIMM, dual‑rank ×8, 1.1V module from Micron, tailored for high-throughput and reliability‑critical server environments. Its broad OEM compatibility makes it a premium yet practical upgrade choice for enterprise server platforms.

Do check your server motherboard/BIOS compatibility (particularly with high-density RDIMMs), but otherwise this is a robust pick for memory-intensive workloads.

This RAM module operates at a standard voltage of 1.1V with a CAS Latency of CL52, and is designed to allow you to run more applications simultaneously, switch between them faster, and provide a smoother computing experience.


Technical Specifications
Part No. MTC20F2085S1RC64BH1
Capacity 32GB (1x 32GB)
Brand Micron
Speed DDR5-6400 - 6400MT/s - PC5-51200R
Voltage 1.1V
Technology DDR5-6400
Error Correction ECC
Signal Processing Registered
Form Factor 288-pin RDIMM
Ranks Dual Rank x8
CAS Latency CL52
Pieces in Kit 1

Compatibility

You can verify the compatibility of this RAM module in a number of ways:

  • Use the RamCity Finder to see all guaranteed compatible RAM upgrades for your brand and model system or motherboard
  • Search online to see if this product is on the QVL (Qualified Vendor List) for your system or motherboard
  • Contact one of our Upgrade Evangelists for an expert opinion
  • Use Cases & Compatibility

    • Target Systems: Designed for enterprise-grade servers and workstations. Compatible with platforms like Intel Xeon and AMD EPYC (e.g., Dell PowerEdge, HPE ProLiant, Lenovo ThinkSystem).

    • Primary Benefits:

      • High capacity density: Enables large in-system memory with fewer modules.

      • ECC + registered: Ensures data integrity and system stability—ideally suited for critical workloads.

      • x8 chip organization: Offers higher density per chip, suitable for memory-constrained server configurations.