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Features And Benefits ▼
Equipped with an advanced onboard register chip designed to precisely reorganize clock and control signals across the memory bus. This physical architecture is built upon a multi-layer, high-frequency printed circuit board (PCB) paired with thickened gold-plated connection pins. The precision-engineered gold contacts ensure minimal insertion loss and defend against oxidation in demanding data center environments. By effectively improving signal integrity when multiple memory modules are installed simultaneously, this design dramatically reduces transmission errors and supports massive, stable memory capacity expansion for complex server clusters.
Real-time detection and automatic repair of single-bit data errors form the backbone of this module's reliability. The hardware-level Error-Correcting Code (ECC) actively monitors the data stream, preventing silent data corruption and catastrophic service crashes caused by electromagnetic interference or prolonged operational stress. This continuous, background validation process fully satisfies the long-term, non-stop running demands of enterprise core business systems, ensuring that mission-critical applications remain online without unexpected downtime.
The 2Rx4 architecture is strategically built using premium, original DRAM modules sourced from top-tier fabrication plants. Compared to standard 2Rx8 layouts, the x4 chip configuration delivers significantly higher fault tolerance, making it the preferred specification for intensive database management, virtualization, and storage server deployments. Its proven physical layout and rigorous component selection mean it is widely listed on the official Huawei compatibility matrix, guaranteeing seamless integration and dependable performance under heavy workloads.
Adopting the JEDEC standard DDR4 1.2V operating voltage, this module strikes an optimal balance between processing capability and electrical draw. The lower voltage translates directly to a cooler physical operating temperature, reducing the thermal load on server chassis fans and cooling infrastructure. For large-scale data center cluster deployments, this tangible reduction in heat generation significantly lowers long-term electricity and HVAC cooling costs while extending the lifespan of surrounding internal server components.
Parameter Item Specification Value ▼
Model PN | 06200288 (N29DDR432 / M429R32) |
|---|---|
Brand | Huawei (FusionServer) |
Capacity | 32GB |
Memory Type | DDR4 RDIMM (Registered ECC / RECC) |
Pin Count | 288Pin |
Frequency | 2933MHz (PC4-2933Y / PC4-23400) |
Rank Configuration | 2Rx4 (Dual Rank ×4) |
CAS Latency | CL21-21-21 |
Operating Voltage | 1.2V |
Error Correction | Hardware ECC Support |
Operating Temperature | 0℃ ~ 85℃ |
Compatible Platform | Huawei FusionServer V5 Series, Intel Xeon Cascade Lake Platform |
Compliance | RoHS Compliant |
Application Scenarios ▼
This 32GB RECC memory provides abundant, stable resource allocation for hosting multiple virtual machines on a single physical host. The ECC's stable performance avoids unexpected VM crashes during peak usage spikes, making it highly suitable for VDI (Virtual Desktop Infrastructure) deployments and enterprise private cloud cluster construction where end-user experience depends on uninterrupted memory availability.
Sufficient single-module capacity supports massive data loading for MySQL, Redis, and other memory-intensive database caches. By keeping active datasets in RAM, it drastically reduces frequent disk swap latency and accelerates data query response speeds. This is highly applicable for enterprise business databases and real-time caching platforms that process thousands of concurrent transactions per second.
Deployed extensively for enterprise shared storage and medical Image Archiving and Communication Systems (PACS). The continuous, stable operation guarantees uninterrupted access to massive document repositories, high-resolution diagnostic images, and video resources. It effortlessly handles the sustained, long-cycle data archiving workloads required by healthcare facilities and legal compliance archives.
Engineered to meet memory-intensive tasks including complex model simulation, big data statistical processing, and genomic sequence analysis. The single-stick high density helps computing nodes achieve a much larger total RAM configuration without occupying excessive DIMM slots, leaving room for future hardware expansion and maximizing the computational throughput of each individual node.
Installed directly into hosts running financial systems, supply chain management software, and collaborative office environments. The robust ECC data protection actively reduces downtime risk, guaranteeing the stable operation of enterprise core information systems where every minute of offline time equates to significant operational disruption.