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Hynix HMT84GL7MMR4A-H9MBAF 32GB DDR3-1333MHz LRDIMM 4Rx4 CL9 Memory
- Capacity: 32GB
- Type: DDR3
- Speed: 1333MHz (PC3-10600)
- Form Factor: LRDIMM (Load-Reduced DIMM)
- Rank: 4Rx4 (Quad Rank x4)
- CAS Latency: CL9
- ECC: Yes (implied by LRDIMM)
- Voltage: Standard DDR3 voltage (typically 1.5V)
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Product Overview
This is a Hynix 32GB DDR3-1333MHz LRDIMM memory module. It is designed for servers and high-performance workstations requiring significant memory capacity and speed.
Technical Information
| Brand | Hynix |
| Part Number | HMT84GL7MMR4A-H9MBAF |
| Memory Type | DDR3 SDRAM |
| Capacity | 32GB |
Additional Specifications
| Speed | 1333MHz |
| Form Factor | LRDIMM |
| CAS Latency | CL9 |
| Rank | 4Rx4 |
Product Description
The Hynix HMT84GL7MMR4A-H9MBAF is a high-capacity 32GB memory module engineered for demanding server and workstation environments. It utilizes DDR3 technology, operating at a frequency of 1333MHz, which translates to a bandwidth of PC3-10600. This speed is suitable for a wide range of enterprise applications that require substantial memory resources for efficient operation, such as virtualization, large databases, and complex data analysis. A key feature of this module is its LRDIMM (Load-Reduced DIMM) form factor. LRDIMMs incorporate a memory buffer chip that reduces the electrical load on the memory controller. This allows for higher memory capacities and more memory modules to be populated per channel, making it ideal for systems that need to maximize their total RAM. The 4Rx4 configuration indicates a quad-rank design with x4 data width per rank, further contributing to its high-density capabilities and performance characteristics. Furthermore, this module is designed with ECC (Error-Correcting Code) functionality, inherent to LRDIMMs, which detects and corrects single-bit memory errors, enhancing system stability and data integrity. The CL9 CAS Latency indicates the number of clock cycles required to access a specific memory column. This Hynix module is a robust choice for upgrading or configuring systems where memory performance, capacity, and reliability are paramount.


