The HMT351R7BFR8C-H9T7 is a 4GB DDR3 Registered ECC server memory module manufactured by Hynix Semiconductor. It is designed to improve the performance and stability of servers and workstations requiring high memory capacity and error correction capabilities.
Applications:
- Servers
- Workstations
- High-Performance Computing (HPC) systems
- Data Centers
Features:
- 4GB Capacity
- DDR3 Technology
- Registered ECC (Error-Correcting Code)
- 1333MHz Clock Speed
- 240-Pin DIMM
- 1.5V Operating Voltage
Benefits:
- Enhanced Data Integrity: ECC functionality detects and corrects single-bit memory errors, preventing data corruption and system crashes.
- Improved System Stability: The registered design enhances signal integrity, making the memory module more stable, especially in high-density configurations.
- Increased Performance: The 1333MHz clock speed allows for fast data transfer rates, improving overall system performance.
- Reduced Downtime: By correcting memory errors, ECC memory minimizes the risk of system downtime, ensuring business continuity.
- Compatibility: Designed to be compatible with a wide range of servers and workstations that support DDR3 ECC Registered memory.
Technical Specifications:
This DDR3 Registered ECC DIMM features a 240-pin interface and operates at 1.5V. It is fully compliant with JEDEC standards. The ECC functionality provides essential error detection and correction, maintaining data integrity in critical applications. The registered design includes a register between the DRAM modules and the system's memory controller, buffering address and control signals to enhance signal integrity and stability, crucial in demanding server environments. The module’s timing parameters are carefully optimized for server workloads, balancing performance and stability. This module is ideal for systems that demand high reliability and data integrity, such as financial institutions, scientific research facilities, and data centers. The 4GB capacity allows for handling larger datasets and more complex applications, enhancing overall system responsiveness and productivity.