The EBE10UE8AFFA-8G-E is an 8GB DDR3 SDRAM memory module manufactured by Elpida Memory (now Micron Technology). This memory module is designed to provide high-speed and reliable performance for desktop computers, workstations, and other demanding computing applications. DDR3 technology offers significant improvements in data transfer rates and power efficiency compared to its predecessors.
Applications:
- Desktop Computers
- Workstations
- Gaming PCs
- High-Performance Computing
- Memory Upgrades
Features:
- 8GB Capacity: Provides substantial memory for multitasking and memory-intensive applications.
- DDR3 Technology: Utilizes DDR3 SDRAM for faster data transfer rates.
- PC3-10600 (DDR3-1333): Operates at a frequency of 1333MHz, ensuring quick data access.
- 240-Pin DIMM: Standard form factor for easy installation in compatible motherboards.
- 1.5V Low Voltage: Designed for reduced power consumption and heat generation, contributing to system stability.
Benefits:
- Enhanced System Performance: Increases overall system responsiveness and speed.
- Improved Multitasking: Allows users to run multiple applications seamlessly without performance degradation.
- Higher Bandwidth: Provides faster data transfer rates for quicker loading times and reduced latency.
- Energy Efficiency: Operates at a lower voltage, saving power and reducing heat.
- Easy Installation: Compatible with standard DDR3 DIMM slots, making upgrades straightforward.
Additional Details:
The EBE10UE8AFFA-8G-E is a DDR3-1333 (PC3-10600) unbuffered DIMM. It operates at 1.5V. Refer to the Elpida/Micron datasheet for specific timing parameters such as CAS Latency (CL), tRCD, and tRP for optimal configuration. Check motherboard compatibility to ensure support for DDR3 memory and the specified module capacity and speed. These modules typically do not include ECC (Error Correction Code); therefore, they are best suited for consumer and general computing applications. For systems requiring error detection and correction, ECC modules may be necessary. Verify module specifications based on the intended usage environment.