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ATP AL12M72B8BKH9M 4GB DDR3-1333MHz RDIMM 2Rx4 CL9 Memory
- 4GB DDR3 RDIMM Memory Module.
- Speed: 1333MHz.
- Configuration: 2Rx4 (Dual Rank x4).
- Latency: CL9.
- Registered DIMM (RDIMM) for server/workstation use.
- Enhances system performance.
- Reliable memory component.
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Product Overview
The ATP AL12M72B8BKH9M is a 4GB DDR3 RDIMM memory module operating at 1333MHz. It features a 2Rx4 configuration, indicating dual rank with four memory chips per rank, and CL9 latency.
Technical Information
| Product Type | Memory Module |
| Capacity | 4GB |
| Technology | DDR3 |
| Form Factor | RDIMM |
Additional Specifications
| Speed | 1333MHz |
| Rank | 2Rx4 |
| CAS Latency | CL9 |
Product Description
The ATP AL12M72B8BKH9M is a 4GB Registered Dual In-line Memory Module (RDIMM) designed for server and workstation environments. It operates at a speed of 1333MHz, utilizing DDR3 technology to provide efficient data transfer rates. The 2Rx4 configuration signifies that the module is dual-ranked, with each rank composed of four memory chips. This configuration can offer performance benefits in certain server architectures by allowing the memory controller to access different ranks independently, potentially improving throughput. As an RDIMM, this memory module includes an onboard register that buffers address and control signals between the memory controller and the DRAM chips. This buffering reduces electrical load on the memory controller, enabling systems to support larger memory capacities and higher memory speeds. The CL9 CAS Latency indicates the number of clock cycles it takes for the memory module to respond to a column address strobe command, representing a specific timing characteristic. This 4GB DDR3-1333MHz RDIMM is a crucial component for upgrading or populating memory in compatible server systems. It contributes to overall system performance by providing the necessary bandwidth and capacity for running demanding applications and multitasking. Its specifications make it suitable for a wide range of enterprise computing tasks where stability and performance are paramount.



