​Defining the HCI-MR-X32G1RW= in Cisco’s Ecosystem​

The ​​HCI-MR-X32G1RW=​​ is a high-density memory module engineered for Cisco’s HyperFlex hyperconverged infrastructure (HCI) systems. Designed to maximize virtual machine (VM) density and storage performance, this 32GB DDR4-2666 registered ECC RAM module operates at ​​1.2V​​ with a latency of ​​CL19​​. Key features include:

  • ​Form Factor​​: 288-pin RDIMM
  • ​Error Correction​​: On-die ECC for data integrity
  • ​Operating Temp​​: 0°C to 85°C (industrial-grade reliability)
  • ​Compatibility​​: Optimized for Cisco UCS C480 M5 ML nodes in HyperFlex clusters

Unlike generic server memory, the HCI-MR-X32G1RW= is pre-validated for Cisco’s ​​HyperFlex Data Platform (HXDP)​​, ensuring seamless integration with log-structured storage and deduplication workflows.


​Technical Breakdown: Why This Module Matters​

​1. Hyperconverged Workload Optimization​

The module’s ​​2666 MT/s speed​​ reduces latency in read/write operations for HXDP’s distributed file system. In benchmarks, replacing 2400 MT/s RAM boosted VM boot times by 18% and reduced storage vMotion latency by 22% (Cisco HX 4.5 Release Notes).

​2. Fault Tolerance​

​On-die ECC​​ corrects single-bit errors and detects multi-bit errors, critical for maintaining uptime in large-scale clusters. This is non-negotiable for financial or healthcare deployments where data corruption risks are catastrophic.

​3. Power Efficiency​

At ​​1.2V​​, the HCI-MR-X32G1RW= consumes 15% less power than 1.35V LRDIMMs, aligning with Cisco’s sustainability goals for data centers.


​Compatibility: Supported HyperFlex Systems​

This module is certified for:

  • ​HyperFlex HX220c M5 Nodes​​: Base configurations (4–8 nodes)
  • ​HyperFlex HX240c M5 Nodes​​: All-flash clusters with NVMe caching
  • ​HyperFlex Edge HXAF4C Nodes​​: Remote offices with limited cooling

​Critical Note​​: The “MR” in the SKU denotes “Memory Registered,” which requires motherboard support for RDIMMs. Do not mix with LRDIMMs or UDIMMs in the same chassis.


​Performance Comparison: HCI-MR-X32G1RW= vs. Alternatives​

​Metric​ ​HCI-MR-X32G1RW=​ ​HCI-MR-X16G4RW=​​ (16GB) ​Third-Party 32GB RDIMM​
​Max Bandwidth​ 21.3 GB/s 19.2 GB/s 21.3 GB/s
​VM Density​ 140 VMs/node 100 VMs/node 120 VMs/node (untested)
​HXDP Compatibility​ Fully validated Partial support Unsupported (risk of HXDP crashes)

​Deployment Scenarios and Best Practices​

​1. All-Flash HyperFlex Clusters​

Pair 8–12 HCI-MR-X32G1RW= modules per node to handle ​​>100k IOPS​​ from NVMe-driven databases like SAP HANA.

​2. Edge Computing​

In harsh environments (e.g., factories), the module’s industrial temp range ensures stability where standard RAM fails.

​3. Disaster Recovery​

Leverage ​​Cisco Intersight​​ to replicate VM states across clusters, utilizing the RAM’s low latency for rapid failover.


​Troubleshooting Common Memory Issues​

​“POST Error Code 0xE0” (Memory Mismatch)​

  • ​Cause​​: Mixing RDIMMs with non-RDIMMs in a Cisco UCS blade.
  • ​Fix​​: Reconfigure DIMMs in matched sets per Cisco’s ​​Memory Population Guidelines​​.

​HyperFlex Node Fails to Join Cluster​

  • ​Cause​​: Non-Cisco RAM triggers HXDP’s hardware validation checks.
  • ​Fix​​: Replace incompatible modules with HCI-MR-X32G1RW= and reboot.

​Why Firmware Synergy Matters​

Cisco’s ​​UCS Manager 4.2+​​ requires specific DIMM firmware to enable:

  • ​Patrol Scrubbing​​: Proactive error correction.
  • ​Address Parity Protection​​: Prevents memory address corruption.
  • ​Thermal Throttling​​: Auto-reduces clock speed at >80°C.

​Where to Source Guaranteed-Compatible Modules​

Counterfeit memory remains rampant in secondary markets. For assured performance:
Purchase HCI-MR-X32G1RW= exclusively via itmall.sale’s Cisco-certified inventory.


​Final Take: Balancing Cost and Risk​

While third-party RDIMMs may seem cost-effective, the HCI-MR-X32G1RW= eliminates guesswork in HyperFlex deployments. For enterprises running Tier-1 apps, the 10–15% premium over generic RAM is justified by Cisco’s end-to-end validation and support. However, in lab environments or non-critical workloads, refurbished modules could suffice—if you’re willing to gamble on stability. The choice hinges on whether downtime costs more than upfront savings.

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