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Hynix HMT41GU7AFR8C-PB 8GB DDR3-1600MHz UDIMM 2Rx8 CL11 Memory
- 8GB DDR3 SDRAM capacity
- 1600MHz (PC3-12800) memory speed
- CL11 CAS Latency
- Unbuffered DIMM (UDIMM) form factor
- 2Rx8 organization (Dual Rank, x8 data width)
- Standard height DIMM
- 240-pin connector
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Typically 1-2 handling + 3-7 transit days
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For government, enterprise, data center, and small business customers.
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Product Overview
Hynix HMT41GU7AFR8C-PB is an 8GB DDR3 Unbuffered DIMM (UDIMM) memory module. It operates at 1600MHz with a CL11 latency and features a 2Rx8 configuration, suitable for standard server and workstation applications.
Technical Information
| Capacity | 8GB |
| Type | DDR3 SDRAM |
| Speed | 1600MHz |
Additional Specifications
| Form Factor | UDIMM |
| Latency | CL11 |
| Rank | 2Rx8 |
Product Description
The Hynix HMT41GU7AFR8C-PB is an 8GB DDR3 Unbuffered DIMM (UDIMM) memory module designed to provide reliable and efficient performance for a wide range of computing systems. With a clock speed of 1600MHz (PC3-12800), it offers substantial bandwidth for multitasking and demanding applications, ensuring smooth operation. The module features a CAS Latency (CL) of 11, which is a standard timing for DDR3 memory at this speed, contributing to its overall responsiveness. This UDIMM is organized as 2Rx8, indicating it is a dual-rank module with an x8 data width per rank. Dual-rank modules can sometimes offer performance advantages by allowing the memory controller to access different ranks in an interleaved fashion, potentially improving throughput. As an unbuffered module, it is suitable for standard server and workstation configurations where direct memory access is prioritized. Equipped with a standard 240-pin connector, the HMT41GU7AFR8C-PB is compatible with motherboards and systems that support DDR3 memory technology. It represents a solid choice for memory upgrades or new system builds requiring dependable performance and capacity. Hynix's reputation for quality ensures that this memory module will meet the rigorous demands of modern computing environments.



