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Micron MT4GU16K2568-16-MPXX 4GB PC3-12800 DDR3-1600MHz Non-ECC Unbuffered CL11 240-Pin UDIMM 1.35V D...
- Capacity: 4GB
- Memory Type: DDR3 SDRAM
- Speed: PC3-12800 (1600MHz)
- Form Factor: 240-Pin UDIMM
- Voltage: 1.35V
- ECC: Non-ECC
- Buffering: Unbuffered
- CAS Latency: CL11
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Product Overview
The Micron MT4GU16K2568-16-MPXX is a 4GB DDR3 SDRAM module designed for high-performance computing. It operates at a speed of 1600MHz with a CAS Latency of 11, providing efficient data transfer for demanding applications. This module is ideal for upgrading servers and workstations requiring reliable and fast memory.
Technical Information
| Manufacturer | Micron |
| Part Number | MT4GU16K2568-16-MPXX |
| Memory Size | 4GB |
| Memory Technology | DDR3 SDRAM |
| Memory Speed | 1600MHz |
Additional Specifications
| Module Type | UDIMM |
| Error Correction | Non-ECC |
| Buffering | Unbuffered |
| CAS Latency | CL11 |
| Voltage | 1.35V |
Product Description
This Micron memory module, identified by SKU MT4GU16K2568-16-MPXX, is engineered to deliver robust performance for a variety of computing environments. With 4GB of capacity, it offers a significant boost for systems struggling with memory limitations. The DDR3 technology ensures compatibility with a wide range of motherboards and processors that support this standard, making it a versatile upgrade option. The module operates at a frequency of 1600MHz, classified as PC3-12800, which translates to a high data transfer rate essential for multitasking and running memory-intensive applications. The unbuffered design is standard for most desktop and server memory, allowing for direct signal transmission to the memory controller. Furthermore, its Non-ECC nature makes it suitable for standard computing tasks where data integrity checks are managed at the application level or are not critical. Designed with a 240-pin UDIMM form factor, this module is physically compatible with standard DIMM slots. The low operating voltage of 1.35V contributes to reduced power consumption and heat generation, which is beneficial for system stability and energy efficiency. The CAS Latency of CL11 indicates the number of clock cycles required to access data, providing a balance between speed and latency for optimal system responsiveness.


