Description
Micron MTA36ASF4G72PZ-2G6D1SI DDR4 32GB (1x32GB) RDIMM Server Memory 2666MHz. Accelerated Data Transfer: Operates at an impressive 2666MHz clock speed to maximize bandwidth, reduce latency, and streamline dense computing workloads. Designed to meet the rigorous demands of enterprise-level data centers and high-performance computing environments, the Micron MTA36ASF4G72PZ-2G6D1SI DDR4 Server Memory module delivers the reliability and speed necessary for intensive workload management. As modern enterprise applications become increasingly data-heavy, system bottlenecks can severely hinder operational efficiency. This 32GB Registered DIMM (RDIMM) addresses that challenge directly by providing a substantial capacity boost and a high-speed transfer rate of 2666MHz. Built with premium semiconductor craftsmanship, the module utilizes advanced error-correcting code (ECC) technology to detect and correct single-bit memory errors, effectively preventing data corruption and system crashes. By integrating this high-density memory component into your server architecture, you ensure smoother multitasking, accelerated database queries, and enhanced virtualization capabilities, maintaining optimal uptime for critical business operations. Key Features: Enterprise-Grade Capacity: Provides 32GB of high-density DDR4 memory in a single module configuration, significantly expanding server virtualization and database capabilities. Accelerated Data Transfer: Operates at an impressive 2666MHz clock speed to maximize bandwidth, reduce latency, and streamline dense computing workloads. ECC Error Correction: Features advanced Error-Correcting Code technology that detects and corrects data corruption, ensuring continuous system stability. Registered DIMM Architecture: Incorporates a register layer to reduce electrical load on the memory controller, allowing for greater overall system scalability. Optimized Server Craftsmanship: Engineered by Micron with premium materials and rigorous testing to guarantee seamless compatibility with modern server architectures.