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HP T9V41ATR 32GB DDR4-2400Mhz ECC Registered CL17 RDIMM 1.2V 2R Memory
- Capacity: 32GB
- Type: DDR4 ECC Registered DIMM (RDIMM)
- Speed: 2400MHz
- Configuration: 2Rx4 (Dual Rank x4)
- Latency: CL17
- Voltage: 1.2V
- Error Correction Code (ECC) for data integrity
- Registered DIMM for enhanced stability and scalability
- Suitable for demanding enterprise workloads
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Product Overview
This HP 32GB DDR4 ECC Registered DIMM operates at 2400MHz with CL17 latency. It is a dual-rank module designed for high-performance server and workstation memory applications.
Technical Information
| Memory Type | DDR4 ECC RDIMM |
| Capacity | 32GB |
| Speed | 2400MHz |
Additional Specifications
| Rank | 2Rx4 |
| CAS Latency | CL17 |
| Voltage | 1.2V |
Product Description
The HP T9V41ATR is a 32GB DDR4 ECC Registered DIMM (RDIMM) module, engineered for high-performance computing environments. Operating at a speed of 2400MHz, this memory module provides substantial bandwidth for demanding server and workstation applications. The 2Rx4 configuration indicates a dual-rank module with four data bits per DRAM chip, which can offer improved performance and density compared to single-rank modules in certain system architectures. This RDIMM incorporates Error Correction Code (ECC) technology, which detects and corrects single-bit errors in real-time. This feature is critical for maintaining data integrity and system stability in mission-critical applications where data accuracy is paramount. The registered design buffers command and address signals, reducing the electrical load on the memory controller and enabling higher memory capacities and improved signal integrity, especially in multi-processor systems. With a CAS Latency (CL) of 17 and operating at a standard voltage of 1.2V, the T9V41ATR is designed for reliability and efficiency. It is an ideal choice for servers, workstations, and other enterprise-grade systems that require large amounts of stable, error-corrected memory to handle complex computations, large datasets, and virtualization workloads.



