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Features And Benefits ▼
At the heart of this module lies a precision-soldered load reduction buffer chip that actively manages signal transmission between the memory controller and the DRAM components. By isolating electrical loads, this architecture permits the installation of significantly more memory modules per processor compared to standard RDIMMs. Data center architects can push server configurations to multi-terabyte total capacities, resolving bottleneck issues in high-density virtualized environments without compromising signal integrity or system stability.
Enterprise workloads cannot tolerate silent data corruption. This module features hardware-level Error-Correcting Code (ECC) that actively monitors data streams, instantly identifying and repairing single-bit errors in real-time as they occur. This continuous, invisible background process prevents unexpected service interruptions and system crashes caused by ambient cosmic rays or electrical interference, ensuring mission-critical applications remain online through demanding, continuous operational cycles.
Engineered with a dense 4Rx4 x4 component layout on a highly conductive green printed circuit board, this module delivers exceptional fault tolerance. The quad-rank design is heavily favored for in-memory databases and large-scale computational nodes. By packing 128GB of ultra-high capacity into a single physical stick, administrators can maximize RAM allocation while preserving valuable DIMM slots for future expansion or specialized NVMe storage accelerators.
Operating at the universal JEDEC standard of 1.2 volts, this memory module significantly curbs electrical draw compared to older generations. The lower voltage translates directly into a cooler thermal profile, reducing the exhaust heat generated within crowded server chassis. For expansive data center clusters, this thermal efficiency eases the burden on HVAC cooling systems, yielding measurable reductions in long-term facility power expenditures.
Designed specifically for the Hewlett Packard Enterprise ecosystem, this module has passed rigorous platform validation for HPE ProLiant DL380 Gen10, DL380 Gen11, and DL360 series rack servers. The physical gold-plated 288-pin edge connectors ensure a secure, precise fit. Upon installation, the server firmware immediately initiates a handshake, unlocking exclusive HPE memory performance management features for a true plug-and-play upgrade without requiring manual BIOS timing adjustments.
Parameter Item Specification Value ▼
Official PN | P06037-B21 |
|---|---|
Brand | HPE (Hewlett Packard Enterprise) |
Capacity | 128GB (1×128GB Module) |
Memory Type | DDR4 LRDIMM (Load-Reduced DIMM) ECC |
Pin Count | 288Pin |
Frequency | 3200MHz (PC4-25600L) |
Rank Configuration | 4Rx4 (Quad Rank ×4) |
CAS Latency | CL22-22-22 |
Operating Voltage | 1.2V |
Error Correction | Hardware ECC Support |
Operating Temperature | 0℃ ~ 85℃ |
Compatible Platform | HPE ProLiant Gen10 / Gen10 Plus / Gen11, Intel Xeon Cascade Lake / Ice Lake Platform |
Compliance | RoHS Compliant |
Application Scenarios ▼
The massive 128GB single-module footprint provides the essential memory depth required to host hundreds of concurrent virtual machines on a single physical host. The inherent ECC stability mitigates the risk of hypervisor crashes, making this an optimal foundation for deploying extensive Virtual Desktop Infrastructure (VDI) environments and architecting resilient enterprise private cloud networks.
Applications like Redis, Oracle, and PostgreSQL rely heavily on loading vast datasets directly into active memory. This high-density LRDIMM eliminates the need for frequent, latency-inducing disk swap operations. The result is a dramatic acceleration in real-time data query responses and enhanced efficiency across distributed computing frameworks handling complex analytics.
Memory-intensive tasks, including finite element analysis, genomic sequencing, and large language model data preprocessing, demand rapid access to massive data pools. The dense configuration allows computational nodes to achieve maximum RAM thresholds within restricted physical slot limits, directly shortening processing cycles for complex mathematical simulations.
Storage systems managing heavy volumes of unstructured data—such as medical imaging (PACS), surveillance video, and media archives—require absolute continuous uptime. This memory module ensures reliable, long-cycle operation, guaranteeing that medical professionals and media engineers maintain uninterrupted, fast access to critical archived files.
Centralized business clusters running financial ledgers, supply chain logistics, and customer relationship management platforms represent the nervous system of modern organizations. The hardware-level data protection minimizes the risk of unplanned downtime, safeguarding the integrity of core business information platforms during peak transactional periods.
When extending the lifecycle of existing Gen10 and Gen11 HPE server fleets, upgrading RAM is often the most effective strategy. Integrating these 128GB modules significantly elevates the overall system ceiling, breathing new operational life into existing hardware and strategically delaying the capital expenditure required for entirely new server procurement.