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Hynix HMT351R7BFR8A-H9T7-AE 4GB DDR3-1333MHz RDIMM 2Rx8 CL9 Memory
- Capacity: 4GB
- Memory Type: DDR3 SDRAM
- Form Factor: RDIMM (Registered DIMM)
- Speed: 1333MHz (PC3-10600R)
- Rank: 2Rx8 (Dual Rank x8)
- CAS Latency: CL9
- Voltage: 1.5V
- ECC: Registered ECC
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Product Overview
The Hynix HMT351R7BFR8A-H9T7-AE is a 4GB DDR3 Registered DIMM (RDIMM) memory module. It operates at 1333MHz with a CAS latency of CL9, making it suitable for standard server and workstation memory upgrades where capacity and reliability are key.
Technical Information
| Capacity | 4GB |
| Memory Type | DDR3 SDRAM |
| Form Factor | RDIMM |
| Speed | 1333MHz |
Additional Specifications
| Rank | 2Rx8 |
| CAS Latency | CL9 |
| ECC | Registered ECC |
Product Description
This Hynix memory module, SKU HMT351R7BFR8A-H9T7-AE, offers a 4GB capacity, providing a solid foundation for memory configurations in servers and workstations. As a DDR3 SDRAM module, it leverages established technology for broad compatibility and reliable performance. The Registered DIMM (RDIMM) form factor is crucial for enterprise environments, as it buffers command and address signals, reducing the electrical load on the memory controller and allowing for higher memory densities and improved system stability. The module operates at a frequency of 1333MHz, also known as PC3-10600R, which delivers a substantial data transfer rate suitable for many business applications and general server tasks. The 2Rx8 configuration signifies that it is dual-ranked, with each rank comprising eight data bits per chip. This configuration can offer performance benefits by allowing the memory controller to interleave accesses between ranks, potentially increasing throughput. The CAS latency of CL9 indicates the number of clock cycles required to access data, a standard metric for memory responsiveness. Designed for the rigors of server environments, the HMT351R7BFR8A-H9T7-AE is built for endurance and consistent operation. It supports Registered ECC (Error-Correcting Code) functionality, which is vital for detecting and correcting single-bit memory errors, thereby preventing data corruption and system crashes. This makes it a dependable choice for applications where data integrity and uptime are paramount.


