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Corsair CMV4GX3M1C1600C11 4GB DDR3L-1600MHz PC3L-12800 Non-ECC Unbuffered CL11 240-Pin DIMM Memory M...
- Memory Capacity: 4GB
- Memory Type: DDR3L SDRAM
- Speed: 1600MHz (PC3L-12800)
- CAS Latency: CL11
- Voltage: 1.35V
- Module Type: Unbuffered DIMM
- Non-ECC (Error Correction Code)
- Pin Count: 240-Pin
- Low voltage operation for reduced power consumption
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Product Overview
The Corsair CMV4GX3M1C1600C11 is a 4GB DDR3L memory module designed for energy efficiency and performance. It operates at 1600MHz (PC3L-12800) with a CAS latency of CL11 and a low voltage of 1.35V.
Technical Information
| Memory Size | 4GB |
| Memory Type | DDR3L |
| Speed Rating | PC3L-12800 |
| Memory Clock Speed | 1600MHz |
Additional Specifications
| CAS Latency | CL11 |
| Module Type | DIMM |
| Features | Non-ECC, Unbuffered, Low Voltage |
| Pins | 240-Pin |
Product Description
The Corsair CMV4GX3M1C1600C11 is a 4GB DDR3L memory module, specifically designed for systems that benefit from lower power consumption. It operates at a frequency of 1600MHz, denoted by the PC3L-12800 standard, and features a CAS Latency of CL11. The 'L' in DDR3L indicates its low-voltage operation, typically at 1.35V, which is more energy-efficient than standard 1.5V DDR3 memory. This makes it an ideal choice for laptops, compact PCs, and servers where power efficiency is a key consideration. This module is backward compatible with standard DDR3 slots, meaning it can function in motherboards designed for 1.5V DDR3 memory, though it will operate at the higher voltage in such cases. It is a Non-ECC (Non-Error Correcting Code) module, suitable for most consumer and mainstream business applications where advanced error detection is not a primary requirement. The Unbuffered design ensures direct communication between the memory controller and the DRAM chips, contributing to its responsiveness. With its 240-pin configuration, the CMV4GX3M1C1600C11 is intended for installation in standard desktop motherboards. This 4GB module provides a modest but effective upgrade for systems that may be experiencing performance bottlenecks due to insufficient RAM. It enhances multitasking capabilities and improves the overall responsiveness of the operating system and applications, making it a practical choice for general computing needs.


