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Samsung M368L6423ETN-B3 512MB DDR Non ECC PC-2700 333Mhz Memory
- 512MB DDR SDRAM capacity
- PC-2700 standard
- 333MHz clock speed
- Non-ECC (Non-Error Correcting Code)
- 184-pin DIMM form factor
- Suitable for desktop computers
- Provides system memory for multitasking and application performance
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Product Overview
The Samsung M368L6423ETN-B3 is a 512MB DDR SDRAM module operating at PC-2700 speed, which corresponds to 333MHz. This Non-ECC memory is designed for systems that do not require error correction code, making it suitable for general computing and gaming applications. It offers a reliable upgrade path for compatible motherboards.
Technical Information
| Capacity | 512MB |
| Memory Type | DDR SDRAM |
| Speed | 333MHz (PC-2700) |
| ECC | Non ECC |
Additional Specifications
| Form Factor | DIMM |
| Pins | 184 |
| Manufacturer | Samsung |
Product Description
This Samsung M368L6423ETN-B3 memory module provides 512MB of DDR SDRAM, operating at a speed of 333MHz, which is classified under the PC-2700 standard. DDR (Double Data Rate) SDRAM technology allows for data transfer on both the rising and falling edges of the clock signal, effectively doubling the data throughput compared to older SDR SDRAM. The module is Non-ECC, meaning it does not incorporate error-checking and correction capabilities, which is typical for consumer-grade desktop systems and gaming PCs where the overhead of ECC is not required. The 184-pin DIMM form factor is standard for DDR memory modules used in desktop computers. With a capacity of 512MB, this module is suitable for upgrading older systems or for use in configurations where a modest amount of RAM is sufficient for the intended applications. The 333MHz clock speed ensures compatibility with motherboards designed to support PC-2700 memory, providing a balance between performance and compatibility. Upgrading system memory with modules like the M368L6423ETN-B3 can significantly improve a computer's performance, especially in multitasking scenarios and when running memory-intensive applications. By increasing the amount of available RAM, the system can store more data and program instructions for quicker access, reducing reliance on slower storage devices like hard drives. This makes the overall computing experience smoother and more responsive.


