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Samsung M386B4G70BM0-CK00 32GB DDR3-1600MHz LRDIMM 4Rx4 CL11 Memory
- Capacity: 32GB
- Type: DDR3 SDRAM
- Form Factor: LRDIMM (Load-Reduced DIMM)
- Speed: PC3-12800 (1600MHz)
- Latency: CL11
- Rank: 4Rx4 (Quad Rank x4)
- Voltage: 1.5V
- ECC: Yes (Error-Correcting Code)
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Product Overview
The Samsung M386B4G70BM0-CK00 is a high-capacity 32GB DDR3 LRDIMM memory module designed for demanding server applications. It operates at 1600MHz with a CL11 latency, offering enhanced performance and stability for large-scale computing tasks.
Technical Information
| Memory Size | 32GB |
| Memory Type | DDR3 SDRAM |
| Module Type | LRDIMM |
| Speed | 1600MHz |
Additional Specifications
| CAS Latency | CL11 |
| Rank | 4Rx4 |
| Voltage | 1.5V |
| ECC | Yes |
Product Description
This 32GB DDR3 Load-Reduced DIMM (LRDIMM) from Samsung, model M386B4G70BM0-CK00, is engineered for enterprise-level servers and high-performance computing environments that require substantial memory capacity and advanced signal integrity. Operating at 1600MHz, it provides significant bandwidth to support memory-intensive applications such as large databases, complex simulations, and extensive virtualization. The module features a 4Rx4 configuration, indicating quad rank with x4 organization. This design, combined with the LRDIMM architecture, allows for higher memory densities and improved performance by reducing the electrical load on the memory controller. The CL11 latency ensures efficient data access, contributing to the overall responsiveness of the system. LRDIMMs are particularly beneficial in systems that push the limits of memory capacity, offering superior scalability. As a server-grade memory module, the M386B4G70BM0-CK00 includes Error-Correcting Code (ECC) functionality to detect and correct memory errors, ensuring data integrity and system stability. The standard 1.5V operating voltage is typical for DDR3 technology. This high-capacity LRDIMM is an ideal solution for upgrading servers to meet the demands of modern data centers and computationally intensive workloads.



