Overview
First Intel Optane technology-based high availability dual port drive offering greater resiliency for enterprise storage solutions.¦High availability and performance are crucial for enterprise storage architectures providing mission-critical applications, such as online transaction processing for financial services. The Intel Optane SSD DC D4800X with its unique combination of dual port PCIe NVMe, consistent low latency, and high random read/write performance, delivers the performance, and capabilities required for enterprise-class storage arrays.¦The SSD DC D4800X provides dual port redundancy for maximum data availability during system upgrades or a failover event, enabling enterprise class capabilities and serviceability in high availability storage systems.
  • 24x7 data availability with redundant paths and hot-plug capability for continued data access in the event of a failure
  • High performance, low latency data placed on Intel Optane SSDs to accelerate data delivery and amplify system performance of capacity NAND SSDs
  • Use as a high speed buffer cache for warm data stored on dense high-capacity Intel QLC 3D NAND SSDs - providing efficient storage of bulk data with increased performance
NAND bottlenecks Intel Optane technology provides industry-leading capabilities of breakthrough performance, predictably fast service, responsiveness under load and high endurance. The first Intel Optane technology-based dual port drive can break the NAND bottleneck to help deliver higher service levels to mission-critical applications and reduce transaction costs for latency sensitive workloads. Breakthrough performance with data path redundancy Combining breakthrough performance with data path redundancy enables enterprise storage array providers to design solutions capable of extremely consistent and fast response times even in the presence of increasing write pressure and high performance at low queue depths commonly found in enterprise workloads. Supports write-intensive workloads common in areas such as OLTP and high performance computing (HPC) with high endurance.