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753225-201 HPE 32GB DDR4 SDRAM Ecc Reg 288-Pin Ram

753225-201
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Brief Overview of 753225-201

HPE 753225-201 32GB 2133Mhz Pc4-17000 DDR4 SDRAM Ecc Reg 288-Pin RAM. New (System) Pull with 1 Year Replacement Warranty

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SKU/MPN753225-201Availability✅ In StockProcessing TimeUsually ships same day ManufacturerHPE Manufacturer WarrantyNone Product/Item ConditionNew (System) Pull ServerOrbit Replacement Warranty1 Year Warranty
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Description

HPE 753225-201 32GB 2133Mhz PC4-17000 RAM

The HPE 753225-201 32GB DDR4 SDRAM ECC Reg RAM is engineered to deliver dependable performance, improved data integrity, and exceptional responsiveness for enterprise-level workloads. Designed for high-efficiency servers and data-intensive applications, this 32GB 2133MHz module provides stable memory performance, enhanced multitasking, and long-term reliability in demanding IT infrastructures.

General Information

  • Brand: Hewlett Packard Enterprise (HPE)
  • Model Number: 753225-201
  • Product Category: Server RAM / Registered ECC DDR4 Module

Technical Specifications

  • Capacity: 32GB
  • Memory Format: 1 x 32GB single module
  • Technology: DDR4 SDRAM
  • Clock Speed: 2133 MHz
  • Module Type: LRDIMM (Load-Reduced DIMM)
  • Error Correction: ECC – Error-Correcting Code for preventing data corruption
  • Signal Processing: Registered; 4Rx4 rank configuration
  • CAS Latency: CL15 for faster memory access
  • Voltage:
  • Interface: 288-pin design for optimum connectivity

Physical Characteristics

  • Width: 8.89 cm (3.5 inches)
  • Depth: 19.81 cm (7.8 inches)
  • Height: 1.91 cm (0.75 inches)
  • Shipping Weight: 0.20 lbs

Compatibility with HPE Gen9 Servers

Supported HPE Server Platforms

  • HPE ProLiant BL460c Gen9
  • HPE ProLiant BL660c Gen9
  • HPE ProLiant DL180 Gen9
  • HPE ProLiant DL360 Gen9
  • HPE ProLiant DL380 Gen9
  • HPE ProLiant DL388 Gen9
  • HPE ProLiant DL560 Gen9
  • HPE ProLiant DL580 Gen9
  • HPE ProLiant DL60 Gen9
  • HPE ProLiant DL80 Gen9
  • HPE ProLiant ML110 Gen9
  • HPE ProLiant ML150 Gen9
  • HPE ProLiant ML350 Gen9
  • HPE ProLiant DL120 Gen9
  • HPE ProLiant DL160 Gen9
  • HPE ProLiant XL170r Gen9
  • HPE ProLiant XL190r Gen9
  • HPE ProLiant XL230a Gen9
  • HPE ProLiant XL250a Gen9
  • HPE ProLiant 4xxl170r Gen9
  • HPE ProLiant XL230b Gen9
  • HPE ProLiant WS460c Gen9
  • HPE Apollo 4200 Series

HPE 753225-201 32GB 2133Mhz PC4-17000 RAM Overview

The HPE 753225-201 32GB 2133Mhz PC4-17000 DDR4 SDRAM ECC Registered 288-Pin RAM belongs to a class of memory modules engineered to meet the rigorous performance expectations found in datacenters, virtualization clusters, and mission-critical workloads. This category of server-grade DDR4 ECC Registered memory is structured to deliver reliability, bandwidth efficiency, scalable capacity, and long-term operational stability. It incorporates advanced error-correction algorithms, optimized signal processing, and superior thermal tolerance. The architecture behind this module emphasizes workload consistency, reduced latency, and high transfer rates, particularly suited for modern compute-intensive applications. The focus of this category is to ensure that server platforms operate continuously with minimal risk of interruption, making it a significant component for organizations prioritizing uptime and responsiveness.

Core Technical Foundations of DDR4 ECC Registered RAM

This category of DDR4 ECC Registered modules is built upon a robust technical foundation centered around improved data handling, reduced power consumption, higher frequency operation, and enhanced stability. The HPE 753225-201 32GB memory operates at 2133MHz, aligning with the PC4-17000 standard, which achieves exceptional data transfer performance. The DDR4 architecture changes the way commands and data interact within the memory subsystem. By using deeper prefetch buffers, refined signaling, reduced voltage operation, and increased module density, this generation of server memory outperforms earlier types by large margins. The introduction of a 288-pin configuration ensures more reliable electrical connectivity and greater module bandwidth. The ECC Registered design adds signal buffering and error mitigation capabilities, ensuring that large-capacity modules operate predictably under sustained heavy workloads.

Operational Advantages of ECC and Registered Buffering

ECC memory incorporates advanced error-checking to identify, isolate, and correct single-bit issues before they propagate into system-wide failures. This level of error management is essential in enterprise ecosystems where millions of memory transactions occur every second. The Registered component of the module adds a buffer between the memory controller and the DRAM chips, which reduces the electrical load placed on the CPU memory controller. This ensures that platforms can support greater module densities without experiencing signal distortion or timing inconsistencies. The combination of these technologies allows the HPE 753225-201 32GB DDR4 module to maintain exceptional consistency during intense computational tasks. The focus on error correction and signal stabilization ensures long-term hardware reliability, making this category ideal for datacenters, financial analytics servers, scientific computing environments, and high-demand enterprise applications.

Scalability and Capacity Expansion Benefits

The category of 32GB ECC Registered DDR4 modules, including the HPE 753225-201, supports scalable server memory expansion by enabling multi-channel distribution across motherboards with advanced memory topologies. This empowers organizations to configure servers according to specific workload requirements, whether for virtualization clusters, large-scale database operations, or AI inference engines. The high-density structure of the module reduces the number of individual DIMMs required, lowering overall system energy consumption and improving heat dissipation performance. This scalable nature makes the category suitable for blade servers, rack servers, and tower-based enterprise-grade systems seeking to maintain optimal memory headroom for future expansion.

Performance Characteristics of PC4-17000 2133MHz DDR4 

The PC4-17000 speed rating reflects the module’s ability to achieve a peak theoretical bandwidth near 17GB per second per module, enhancing throughput efficiency for server workloads such as virtualization, high-volume transactional processing, and real-time analytics. DDR4 SDRAM at 2133MHz delivers improved bus speeds, increased memory bandwidth, and optimized command handling compared to DDR3 memory. The category is designed to reduce latency, improve parallel task execution, and ensure rapid data access, making it a suitable solution for multitasking-heavy operational environments. Moreover, the module leverages an internal architecture designed around refined bank groups, which improves block-level memory access efficiency and reduces stall cycles, contributing to smoother performance across all workload layers.

Energy-Efficient Memory Operation

This DDR4 ECC Registered category focuses on minimizing power draw without sacrificing output performance. Thanks to the reduced operating voltage of DDR4 technology, servers equipped with modules like the HPE 753225-201 experience lower thermal output and improved energy profiles. Reduced electrical resistance, refined PCB layering, and optimized internal circuitry minimize waste heat generation. This contributes to overall datacenter energy efficiency, especially when scaled across multi-module server configurations. The enhanced power efficiency of this memory category reduces operational cost, enabling businesses to allocate resources toward performance scaling rather than energy overhead.

Thermal Stability and Continuous Runtime Reliability

Thermal regulation is a critical element for server memory reliability. Modules within this category are engineered with heat-spreading materials, stable DRAM chip arrangements, and internal timing controls that maintain operational integrity even when exposed to sustained computational pressure. The HPE 753225-201 32GB DDR4 ECC Registered module is crafted to perform efficiently within high-density server chassis environments, ensuring thermal uniformity and preventing performance drops caused by heat saturation. Memory timing algorithms built into this category of modules adjust dynamically to thermal conditions, preserving bandwidth and minimizing data errors throughout the lifecycle of the memory module.

Integration Compatibility With HPE Server Platforms

HPE’s DDR4 ECC Registered RAM category, including the 753225-201 module, is purpose-built for integration with HPE ProLiant Gen9 and similar platforms that require high-stability memory environments. The module aligns with system-level firmware optimization, advanced chipset compatibility, and unified error-handling integration. This ensures seamless interoperability, consistent throughput, and improved memory channel utilization. Server ecosystems benefit from enhanced NUMA node balancing, improved virtualization responsiveness, and better database read/write performance. Firmware-level integration ensures precise timing synchronization with server processors, enabling memory operations to execute at maximum efficiency within supported configurations.

Reliability Standards and Quality Assurance

The memory category adheres to strict quality assurance frameworks, ensuring that all modules undergo rigorous testing cycles for temperature resistance, speed validation, electrical stress tolerance, and ECC performance accuracy. These high standards uphold enterprise-grade reliability, guaranteeing that modules like the HPE 753225-201 can operate continuously for extended periods without degradation. Quality validation ensures consistent signal timing, stable module behavior, and long-term functionality across various environmental and workload conditions. The robust QA process ensures that the memory meets the specific reliability expectations associated with datacenter-class hardware.

Compatibility With Multi-Module Configurations

Large server systems often utilize multiple memory channels to maximize performance. This category of 32GB DDR4 ECC Registered memory is engineered to coexist with other modules across different banks and channels while maintaining synchronized timing behavior. The registered buffer ensures consistent signaling between modules, reducing crosstalk and stabilizing data routing throughout the server’s memory architecture. Compatibility improvements ensure balanced channel load distribution, allowing servers to achieve full bandwidth potential, especially during intensive database indexing, virtualization workload balancing, and distributed computing processes.

Long-Term Value and Infrastructure Sustainability

Investing in DDR4 ECC Registered memory modules like the HPE 753225-201 provides long-term infrastructure value due to their durability, efficiency, and reliability. As enterprise environments continue to evolve, this category of memory supports future-oriented scalability, enabling businesses to expand capacity without replacing the entire memory architecture. The longevity of DDR4 technology, combined with stable electrical and thermal characteristics, ensures that hardware investments remain valuable throughout extended datacenter refresh cycles.

Reduced Downtime and Improved Operational Consistency

Unplanned downtime can severely impact enterprise operations. This memory category’s ECC and Registered features work together to reduce failure risks and create predictable runtime conditions. The enhanced error correction not only prevents data corruption but also reduces the likelihood of systemic crashes, which contributes to operational stability. The module’s resilient PCB design, thermal consistency, and optimized power draw further reinforce uptime reliability, making this category one of the most dependable memory solutions in the server ecosystem.

Future-Proofing Enterprise Server Memory Infrastructure

The evolution of server workloads toward larger datasets, virtualization dependency, and real-time analytics requires memory infrastructures that support ongoing growth. The HPE 753225-201 and related DDR4 ECC Registered modules provide scalable foundations for future expansions. As enterprises integrate more advanced software, employ bigger databases, and utilize more computationally heavy applications, having high-capacity and stable memory modules ensures seamless transitions into next-generation architectures. This category supports continuous expansion without sacrificing performance consistency.

Features
Manufacturer Warranty:
None
Product/Item Condition:
New (System) Pull
ServerOrbit Replacement Warranty:
1 Year Warranty