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Features And Benefits ▼
The Samsung 64GB DDR4 module utilizes a highly specialized registered architecture designed specifically for demanding server environments. By incorporating an advanced register buffer chip directly onto the precision-engineered printed circuit board, this memory module effectively isolates the control and command signals from the host memory controller. When IT administrators populate multiple DIMM slots across a dense server chassis, the electrical load typically increases, threatening signal integrity. This registered design reorganizes those signals, ensuring that even fully populated motherboards maintain precise, synchronized data transmission. You can physically feel the secure, satisfying engagement of the 288-pin gold-plated edge connectors as they lock firmly into place, establishing a dependable hardware foundation that drastically reduces transmission errors compared to standard unbuffered alternatives.
Operating a critical data center requires absolute data accuracy at all times. This module features dedicated hardware-level Error-Correcting Code (ECC) capabilities. As your servers process millions of continuous transactions, the ECC algorithm silently monitors the data stream, actively identifying and repairing single-bit anomalies in real time without interrupting the CPU cycle or causing noticeable latency. This active defense mechanism acts as an invisible shield, preventing minor electrical interferences from cascading into corrupted databases or sudden application crashes. Your IT infrastructure gains the resilience necessary to support 24/7 continuous operations, safeguarding sensitive enterprise records and maintaining uninterrupted service availability for end-users.
Engineered with a 2Rx4 (Dual Rank x4) high-density particle configuration, this memory stick achieves an optimal balance between processing performance and overall system compatibility. Unlike denser 4Rx4 modules that can heavily tax the memory controller and limit the total number of installable modules per channel, the dual-rank design presents a significantly lower signal load. This specific layout is widely recognized for its exceptional compatibility with mainstream Gen10 and Gen11 rack servers. It simplifies the capacity planning process for technical departments, allowing for maximum memory expansion without encountering unexpected hardware bottlenecks, performance degradation, or complex configuration issues during deployment.
Thermal management remains a primary concern in densely packed computing environments. Operating at the standard DDR4 voltage of exactly 1.2V, this Samsung memory module minimizes electrical draw while maintaining peak 3200MHz frequency performance. The lower voltage directly translates to noticeably reduced heat generation. When walking through the server aisles, the difference becomes tangible—cooling fans run at lower, more efficient RPMs, emitting a steady, quieter hum rather than a strained roar. This thermal efficiency significantly lowers the cooling pressure on the facility's HVAC systems, ultimately driving down overall electricity expenditure and long-term maintenance costs for the entire operation.
Before reaching your facility, each module undergoes rigorous factory-level compatibility and high-load stress testing to guarantee pristine condition and absolute reliability under heavy workloads. This strict quality control ensures the memory perfectly adapts to industry-leading platforms, including Dell PowerEdge R750, HPE DL380 Gen10/Gen11, and Supermicro X12 series Xeon servers. For organizations executing large-scale capacity expansion projects on existing infrastructure, this verified compatibility removes the guesswork and risk. The standardized design enables true plug-and-play deployment, allowing your technical teams to execute hardware upgrades swiftly, minimize costly maintenance windows, and maximize the return on investment for legacy hardware.
Parameter Item Specification Value ▼
Model | M393A8G40CB4-CWE |
|---|---|
Brand | Samsung |
Capacity | 64GB |
Memory Type | DDR4 RDIMM (Registered ECC / RECC) |
Pin Count | 288Pin |
Frequency | 3200MHz (PC4-25600R) |
Rank Configuration | 2Rx4 (Dual Rank ×4) |
CAS Latency | CL22 |
Operating Voltage | 1.2V |
Error Correction | ECC Support |
Operating Temperature | 0℃ ~ 85℃ |
Chip Composition | (4G x 4) × 36 |
Compatible Platform | Intel Xeon Cascade Lake / Ice Lake Server Platform |
Compliance | RoHS Compliant |
Typical Application Scenarios ▼
In modern Virtual Desktop Infrastructure (VDI) and private cloud clusters, memory capacity directly dictates the number of virtual machines a single node can effectively host. Allocating this 64GB high-capacity RECC memory allows system architects to maximize VM density per server, providing sufficient resource allocation for complex multi-tenant environments. The stable ECC performance ensures that isolated virtual machines remain protected from memory-induced kernel panics, delivering a responsive, crash-free experience for enterprise private cloud cluster deployments.
Enterprise databases like Redis, MySQL, and PostgreSQL rely heavily on in-memory caching to deliver rapid query responses. Loading massive datasets directly into this large single-module capacity eliminates the latency associated with frequent disk swapping. By keeping the most accessed data close to the CPU, organizations can dramatically accelerate transaction processing speeds, making this memory module an ideal hardware foundation for real-time data caching platforms and high-traffic business databases.
Centralized storage arrays and medical Picture Archiving and Communication Systems (PACS) require unyielding reliability. These systems handle massive, irreplaceable files, from detailed medical imaging to extensive corporate archives. The reliable continuous running capability of this registered memory guarantees that critical storage controllers remain active. It ensures uninterrupted access to massive documents, pictures, and video resources, preventing file corruption during long-cycle data storage tasks.
Medium-scale High-Performance Computing (HPC) nodes tackle heavily memory-intensive workloads, including genomic sequencing, fluid dynamics simulations, and complex data statistics. The substantial 64GB capacity per single stick enables computing clusters to achieve massive total memory pools without prematurely exhausting available DIMM slots. Researchers and analysts can load larger simulation models directly into active memory, significantly reducing computation cycles and accelerating critical project timelines.
The core applications that run an organization—such as ERP systems, supply chain management software, and Office Automation (OA) platforms—cannot afford unexpected downtime. Deployed within enterprise core business service hosts, this module significantly lowers the risk of systemic hardware failures. The robust ECC data protection mechanism guarantees the stable, continuous operation of financial systems and collaborative platforms, securing the digital backbone of the organization against unpredictable memory faults.