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Supermicro Debuts New Top-Loading and Simply Double Storage Systems with 3rd Generation Intel Xeon Processors, PCI-E 4.0 with NVMe Cache for High-Capacity Cloud-Scale Storage

Rugpjūtis 10, 2021

Supermicro

Supermicro Debuts New Top-Loading and Simply Double Storage Systems with 3rd Generation Intel Xeon Processors, PCI-E 4.0 with NVMe Cache for High-Capacity Cloud-Scale Storage

Comprehensive Family of 60-bay and 90-bay 4U Storage Models Supporting Single-Node, Dual-Node, Storage Bridge Bay, or JBOD Configurations in a Highly Serviceable Architecture

Super Micro Computer, Inc. (SMCI), a global leader in enterprise computing, storage, networking solutions, and green computing technology, announced new versions of its market-proven top-loading storage solutions with 60-bay and 90-bay systems along with new Simply Double storage systems fully optimized for the latest 3rd Gen Intel Xeon Scalable processors and PCI-E 4.0 NVMe drives. These best-in-class high-capacity storage and expansion systems are ideal for cloud-scale storage implementations as well as HPC storage workloads.

"As the growth in software-defined, cloud-based storage continues to accelerate, Supermicro helps data centers to rapidly modernize their infrastructure to leverage flexible configuration, tool-less modular designs that can be serviced by a technician, and simple expansion capabilities with our new X12 60-bay or 90-bay single, dual node and high availability architecture innovation," said Charles Liang, president, and CEO, Supermicro. "Our new high-capacity storage systems continue Supermicro's focus on resource saving and delivers industry-leading capacity for a lower total cost of ownership (TCO)."

Top-Loading Storage Systems

Supermicro’s new top-loading architecture delivers improved flexibility, modularity, and serviceability that customers require. Both 60-bay and 90-bay systems are available in single-node, dual-node, and dual-node high availability (HA) configurations. The dual-node HA and single-node configurations control access to all drives in the systems. The dual-node configuration evenly split the drive control access between each node. With a modular, tool-less design, all critical onboard systems – hot-swap server nodes, expanders, fan modules, power supplies, and drives – are fully optimized for easy serviceability by one technician.

Supermicro's new high-capacity top-loading systems are optimized for enterprise and cloud-scale storage environments. This scale-up and scale-out architectures design offers customers the configuration options of PCI-E 4.0-based RAID or IT mode SAS controller. These 4U systems feature 60 or 90 hot-swap 2.5" or 3.5" SAS3/SATA3 bays plus two onboard PCI-E M.2 slots and two internal slim SATA SSD slots. The single-node system also supports two rear hot-swap 2.5" bays for OS mirroring and four optional NVMe U.2 bays for fast caching. The system supports 1.6 petabytes of cost-optimized storage at the maximum configuration, plus up to 60TB of SSD flash via the rear-accessed NVMe. The single- and dual-node systems use 3rd Gen Intel Xeon Scalable processors in a dual-socket configuration with 16 DIMM slots per server node. 

Simply Double Storage Systems

Supermicro's Simply Double storage server is an industry-leading solution for content delivery. Today’s announcement introduces performance and serviceability enhancements to the overall design to support 3rd Gen Intel Xeon Scalable processors in a dual-socket configuration with 16 DIMMs while maintaining the same dense storage footprint. Up to four rear hot-swap U.2 NVMe bays are supported, allowing users to add flash without sacrificing any of the 24 SAS/SATA 3.5” storage bays. Innovative chassis design enhances airflow and streamlines system service accessibility to components such as the motherboard, CPU, memory, PCI-E slots, internal drive bays, and rear drive bays. Along with these mechanical improvements, the system can be configured with the options of PCI-E 4.0-based RAID or IT mode SAS controller. 

Disclaimer:: The information contained in each press release posted on this site was factually accurate on the date it was issued. While these press releases and other materials remain on the Company's website, the Company assumes no duty to update the information to reflect subsequent developments. Consequently, readers of the press releases and other materials should not rely upon the information as current or accurate after their issuance dates.