The MT54A16G8080A00AC-32:A is a high-capacity memory module manufactured by Micron Technology Inc. This module is designed for demanding applications requiring substantial memory resources and high-speed data access. Its features make it suitable for use in advanced computing and data processing environments.
Applications
- High-Performance Computing Servers: Provides large memory capacity for data-intensive applications.
- Data Centers: Used in servers to support virtualization and cloud computing.
- Workstations: Enables smooth operation of memory-intensive software.
- Networking Equipment: Utilized in high-end routers and switches for data buffering.
- Industrial Automation: Supports complex data analysis.
Features
- Capacity: 16GB (16G x 80 x 80).
- Speed: '-32' indicates a high-speed rating.
- Operating Voltage: Typically operates at a low voltage for power efficiency.
- Form Factor: Designed for easy integration into server and workstation systems.
- Error Correction: ECC (Error-Correcting Code) support ensures data integrity.
- Advanced Packaging: High-density packaging enables large memory capacity.
Benefits
- Large Memory Capacity: Handles large datasets and memory-intensive applications.
- High Speed: Fast data transfer rates improve system performance.
- Reliability: Micron's manufacturing ensures dependability and longevity.
- Data Integrity: ECC support reduces the risk of data corruption.
- Power Efficiency: Optimized for low power consumption.
Additional Details
The MT54A16G8080A00AC-32:A adheres to industry standards, ensuring compatibility with a wide range of systems. The high-density packaging technology allows for a large memory capacity in a compact form factor. ECC support enhances data reliability by detecting and correcting errors. The module is designed to operate efficiently, minimizing power consumption. The ':A' suffix might indicate a specific revision or production batch. This memory module is a good choice for environments where large memory capacity and high performance are essential.