752370-091 HPE 32GB RAM Pc4-17000 DDR4 Ecc Reg 2133mhz
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Same product also available in:
| SKU/MPN | Warranty | Price | Condition | You save |
|---|---|---|---|---|
| 752370-091 | 1 Year Warranty | $122.00 | New (System) Pull | You save: $42.70 (26%) |
| 752370-091 | 1 Year Warranty | $168.00 | New Sealed in Box (NIB) | You save: $58.80 (26%) |
Details of HPE 752370-091 32GB RAM
The HPE 752370-091 32GB RAM Pc4-17000 DDR4 SDRAM ECC Registered 2133MHz module is engineered for enterprise-grade performance, ensuring reliability and speed for demanding workloads.
General Information
- Brand: HPE
- Part Code: 752370-091
- Category: Memory Module
Technical Specifications
- Capacity: 32GB
- Technology: DDR4 SDRAM
- Configuration: 1 x 32GB
- Chip Structure: x4
Performance Attributes
- Speed: 2133 MHz
- Standard: DDR4-2133 / PC4-17000
- Signal Type: Registered
- Error Detection: ECC (Error-Correcting Code)
- Latency: CL15
Connectivity & Power
- Pin Count: 288-pin
- Voltage: 1.2V
- Form Factor: RDIMM (Registered DIMM)
Physical Characteristics
Dimensions
- Width: 8.89 cm (3.5 in)
- Depth: 19.81 cm (7.8 in)
- Height: 1.91 cm (0.75 in)
Weight
- Mass: 0.45 kg (1 lb)
Compatibility
Supported Servers
- HPE ProLiant BL460c Gen9
- HPE ProLiant DL380 Gen9
- HPE ProLiant DL380p Gen9
Key Benefits
Enhanced Reliability
- ECC error correction ensures data integrity
- Registered signal processing improves stability
High Performance
- 2133 MHz speed for faster data transfer
- Optimized for enterprise workloads
HPE 752370-091 32GB RAM PC4-17000 DDR4 SDRAM
The HPE 752370-091 32GB RAM PC4-17000 DDR4 SDRAM ECC Registered 2133MHz memory module is designed to deliver exceptional reliability, speed, and performance for enterprise servers and data center infrastructures. Built for demanding workloads, it ensures that Hewlett Packard Enterprise servers can operate efficiently under heavy data processing conditions. This high-performance memory module helps boost overall system responsiveness, enhance multitasking capabilities, and maintain data integrity across critical business operations.
Exceptional Memory Architecture for Enterprise Efficiency
The HPE 752370-091 DDR4 SDRAM features a high bandwidth PC4-17000 architecture capable of operating at a frequency of 2133MHz. This ensures optimal data throughput and faster access times, which are crucial for workloads such as virtualization, large database operations, and high-performance computing environments. The memory’s registered (RDIMM) design enhances signal integrity, allowing it to support higher densities and more stable performance in enterprise-grade systems. This makes it an ideal choice for servers that require long-term stability and continuous operation without performance degradation.
Advanced ECC Functionality for Data Integrity
Data integrity is a vital aspect of modern computing, especially in mission-critical applications. The HPE 752370-091 RAM incorporates Error-Correcting Code (ECC) technology that detects and corrects single-bit memory errors automatically. This feature minimizes system crashes, prevents data corruption, and extends hardware reliability, ensuring consistent uptime. ECC Registered memory also enhances stability by buffering command and address signals, which reduces electrical loads and improves communication between the memory controller and the module. This makes it indispensable for data-sensitive environments where even a single bit error can cause significant issues.
Optimized Performance with DDR4 Technology
As a DDR4 SDRAM module, the HPE 752370-091 offers numerous advantages over its DDR3 predecessors. DDR4 technology allows for higher module densities, lower voltage operation, and improved energy efficiency. Operating at 1.2 volts, it consumes less power while delivering faster data rates. This not only helps reduce energy costs but also minimizes thermal output, contributing to a cooler and more stable system. The lower latency and higher bandwidth of DDR4 enable servers to manage more simultaneous data requests, making it suitable for memory-intensive tasks like cloud computing and virtualization.
Energy Efficiency and Cost Optimization
In enterprise environments, energy efficiency translates directly into reduced operational costs. The HPE 752370-091 memory module has been engineered to meet modern data center power efficiency standards. Its low voltage operation helps lower power consumption without compromising on performance. By optimizing data transfer rates and minimizing idle power usage, this module contributes to a greener, more sustainable computing ecosystem. Organizations deploying multiple modules in large-scale infrastructures will benefit from significant cumulative power savings over time, aligning with modern environmental and budgetary goals.
Compatibility with HPE Server Platforms
The HPE 752370-091 32GB DDR4 ECC Registered memory is specifically designed for HPE ProLiant server systems, ensuring seamless integration and maximum performance. It is validated and tested by Hewlett Packard Enterprise to deliver consistent performance under diverse workloads. The module is compatible with various ProLiant Gen9 and Gen10 series servers, supporting features like memory mirroring, RAID protection, and advanced monitoring. Using genuine HPE memory modules ensures firmware-level optimization, guaranteed compatibility, and access to HPE’s warranty and support infrastructure, reducing the risks associated with third-party components.
Scalability and Expandability for Future Workloads
As organizations scale their IT infrastructure, memory expandability becomes a key consideration. The HPE 752370-091 module offers 32GB of capacity per DIMM, enabling administrators to increase total system memory quickly. This scalability supports future growth as applications evolve and demand greater resources. When deployed in multi-channel configurations, it can dramatically improve data throughput and parallel processing performance. The module’s registered design allows more DIMMs to be installed per channel, enhancing system flexibility and enabling servers to handle more virtual machines and concurrent processes efficiently.
Reliable Performance for Business-Critical Applications
Reliability is the cornerstone of enterprise memory design, and the HPE 752370-091 DDR4 ECC Registered memory excels in maintaining consistent operation under high workloads. It is built using high-quality DRAM chips, rigorously tested for endurance and error-free performance. The module ensures minimal downtime and faster recovery times, which are crucial for mission-critical systems like ERP servers, financial databases, and virtualization hosts. Its error detection and correction mechanisms minimize disruptions caused by transient faults, allowing businesses to maintain continuous operations without data loss or corruption.
Latency and Throughput Optimization
Memory latency and bandwidth are two essential parameters influencing overall server performance. The HPE 752370-091 operates with optimized CAS latency timing and maintains a 2133MHz clock speed to ensure rapid data transactions. The combination of low latency and high throughput results in faster execution of complex workloads. When integrated with multi-core processors, this memory module allows for smoother task scheduling and reduced wait times for data retrieval, enhancing the responsiveness of enterprise applications and server workloads.
Enhanced Reliability through Rigorous Testing
Hewlett Packard Enterprise follows a stringent validation process for its memory modules. Each HPE 752370-091 unit undergoes multiple phases of quality assurance testing to verify electrical, thermal, and mechanical stability. The module is tested under simulated enterprise workloads to ensure it performs consistently across diverse environments. Such rigorous testing ensures that every component meets or exceeds industry standards for durability and reliability, significantly reducing the chances of premature failure in production systems. These measures contribute to the high confidence organizations have in HPE server memory components.
Server Workload Optimization and Application Support
Different workloads demand varying memory characteristics. The HPE 752370-091 module is well-suited for applications that rely heavily on data throughput and reliability. These include large-scale databases, business analytics platforms, virtualization clusters, and in-memory computing solutions. By ensuring high performance and stability, this memory helps servers handle real-time data analytics, enterprise applications, and transaction-heavy workloads efficiently. The increased bandwidth facilitates faster access to data sets, improving processing times and enabling better decision-making capabilities across organizational operations.
Thermal Design and Stability under Load
Thermal management is an important aspect of data center efficiency. The HPE 752370-091 RAM features advanced thermal design that helps dissipate heat effectively during heavy usage. Its low-voltage operation reduces heat generation, ensuring the server maintains optimal temperature levels even under sustained workloads. Stable thermal performance reduces the risk of throttling and hardware degradation, extending the lifespan of the memory and maintaining consistent system reliability over time.
Compatibility with Virtualization and Cloud Workloads
In virtualized environments, memory capacity and reliability are key to maintaining performance across multiple virtual machines. The HPE 752370-091 32GB module offers ample capacity to support complex virtualization architectures. Its ECC functionality ensures that virtual machines run without interruptions caused by memory errors, providing greater uptime and data integrity. Cloud environments benefit from its scalability and stability, allowing administrators to allocate memory dynamically across workloads while maintaining predictable performance.
Optimized for High-Density Server Configurations
Modern data centers often deploy high-density servers to maximize computing power within limited rack space. The HPE 752370-091 DDR4 module supports high-density configurations, enabling multiple memory modules to operate efficiently within compact form factors. The registered architecture ensures signal stability even when multiple DIMMs are installed per channel, preventing data bottlenecks. This capability is particularly useful in environments that require heavy parallel processing, such as cloud data centers, enterprise databases, and AI or machine learning infrastructures.
Improved Server Responsiveness and Application Speed
Faster memory performance directly enhances server responsiveness. The HPE 752370-091 DDR4 module improves read and write operations, allowing applications to access data more quickly. This results in faster boot times, quicker application launches, and smoother performance under multitasking conditions. When paired with HPE’s advanced processors and storage solutions, the memory plays a key role in optimizing overall system speed, delivering measurable improvements in both user experience and backend processing efficiency.
Role in Enhancing Server Virtualization and Database Operations
Memory-intensive applications such as database management systems, virtual machine clusters, and business analytics tools rely heavily on efficient memory configurations. The HPE 752370-091 supports high-capacity configurations that improve database indexing speeds, reduce query latency, and increase parallel processing capabilities. Virtualized systems benefit from the module’s consistent bandwidth and reduced latency, allowing administrators to host more virtual machines per physical server without performance drops. This efficiency translates to better hardware utilization and reduced operational costs in data-driven enterprises.
Workload Balance and Performance Optimization
The architecture of the HPE 752370-091 module helps balance workload distribution across multiple memory channels. This ensures that each processor core can access memory efficiently, minimizing contention and optimizing throughput. For environments handling mixed workloads, such as transaction processing and real-time analytics, this balance ensures consistent responsiveness across applications. It also reduces system bottlenecks, enabling smoother performance under concurrent user operations or complex data calculations.
Integration with Advanced HPE Firmware and BIOS
HPE designs its firmware and BIOS to work harmoniously with genuine HPE components. The HPE 752370-091 DDR4 RAM benefits from automatic firmware recognition, ensuring correct timing adjustments and voltage management for optimal performance. This seamless integration minimizes compatibility issues and allows administrators to utilize memory diagnostics and monitoring tools embedded within HPE’s management suite. The advanced firmware integration further enhances error reporting and predictive failure analysis, strengthening system reliability and manageability.
Improving Data Throughput for High-Performance Computing
In high-performance computing (HPC) environments, memory throughput can significantly impact computational efficiency. The HPE 752370-091 module, with its 2133MHz frequency, enables faster data access between processors and memory banks. This reduces computational delays in simulation, modeling, and scientific workloads. The combination of ECC reliability and DDR4 bandwidth makes it an essential component for HPC clusters where accuracy and speed must coexist. As a result, research institutions and data-driven organizations can rely on this memory module to achieve consistent and repeatable computational performance.
Contribution to System Balance and Server Optimization
Memory plays a central role in maintaining system balance across CPU, storage, and network components. The HPE 752370-091 ensures that data movement between these subsystems remains consistent and efficient. It prevents processing bottlenecks that can arise from slower memory access, thereby enhancing the overall performance profile of enterprise servers. The module’s ability to maintain synchronization across subsystems improves workload predictability, enhancing both responsiveness and stability across integrated IT environments.
Security Features and Error Detection Capabilities
In modern enterprise systems, data security is as important as performance. The ECC technology within the HPE 752370-091 module provides intrinsic protection against data corruption caused by cosmic radiation, voltage fluctuations, or transient bit flips. This automatic error detection and correction feature safeguards mission-critical information, reducing the risk of data loss. Combined with HPE’s integrated monitoring tools, administrators can proactively identify potential issues before they escalate, ensuring higher operational security and data reliability.
Improved System Management and Monitoring
HPE memory modules, including the 752370-091, integrate seamlessly with system management tools such as HPE Integrated Lights-Out (iLO) and HPE OneView. These tools provide administrators with real-time monitoring of memory health, usage, and temperature. Predictive failure analysis allows preemptive maintenance before critical issues arise. This proactive management reduces downtime and ensures that enterprise systems operate at peak performance levels at all times.
Server Memory Designed for Next-Generation Applications
With the rapid evolution of enterprise computing, the demand for faster and more reliable memory continues to rise. The HPE 752370-091 32GB DDR4 module is ready to support next-generation workloads, including AI computation, machine learning, and cloud-native services. Its high transfer rate and stability ensure that even the most data-intensive applications run smoothly. The module provides a foundation for scalable IT infrastructure capable of adapting to emerging technological trends and expanding business requirements.
Performance Consistency Across Diverse Workloads
One of the key strengths of the HPE 752370-091 RAM is its ability to maintain consistent performance across a wide range of workloads. Whether the system is processing database queries, handling virtualization layers, or managing network storage, this memory module ensures steady throughput and minimal latency fluctuations. Its design enables balanced performance even when server resources are heavily utilized, offering predictable outcomes in dynamic data center environments.
