The Supermicro SYS-1028TP-DC1TR is a high-density 1U TwinPro server engineered for enterprise data centers that require maximum compute power within a constrained physical footprint. This system integrates two independent hot-plug nodes into a single 1U chassis, making it an ideal solution for high-performance computing (HPC), cloud hosting, and big data analytics. Each node is built on the Intel C612 chipset, supporting dual Intel Xeon E5-2600 v3/v4 processors and up to 2TB of DDR4 ECC LRDIMM memory. This architecture provides the necessary throughput for intensive virtualization and complex parallel processing tasks.
The Supermicro SYS-220TP-HC8TR is a high-density 2U 4-node BigTwin server engineered for mission-critical enterprise workloads and hyper-converged infrastructure (HCI). Each of the four hot-swappable nodes supports dual 3rd Gen Intel Xeon Scalable processors, providing a massive compute footprint within a compact 2U chassis. This architecture is specifically designed for data center environments where rack space and power efficiency are primary constraints.
The Supermicro SYS-220TP-HC9TR is a high-density 2U 4-node multi-node system part of the BigTwin™ family, engineered for demanding enterprise data center environments. Each of the four hot-pluggable nodes supports dual 3rd Gen Intel Xeon Scalable processors, providing a massive compute footprint within a compact 2U rack space. This architecture is specifically designed to solve the challenges of power efficiency and thermal management in high-performance computing (HPC) and hyper-converged infrastructure (HCI) deployments.
The Supermicro SYS-620TP-HC9TR is a high-density 2U 4-node BigTwin system engineered for mission-critical enterprise workloads and hyper-converged infrastructure (HCI). Each of the four hot-pluggable nodes supports dual 3rd Gen Intel Xeon Scalable processors, delivering a massive compute footprint within a compact rack profile. This architecture is specifically optimized for high-performance computing (HPC), large-scale cloud deployments, and software-defined storage where power efficiency and thermal management are critical operational requirements.
The Supermicro SYS-220HE-FTNR is a high-density 2U rackmount server engineered specifically for edge computing and telecommunications environments where space and environmental resilience are critical. Part of the Hyper-E family, this system features a short-depth chassis measuring just 574mm (22.6 inches), making it ideal for deployment in shallow racks, branch offices, or telco central offices. It supports dual 3rd Gen Intel Xeon Scalable processors, providing the computational power necessary for AI inference, 5G RAN workloads, and virtualization at the edge.
The Supermicro SYS-F511E2-RT represents a high-density computing breakthrough, engineering eight independent server nodes into a single 4U chassis. Designed specifically for hyperscale data centers, hyperconverged infrastructure (HCI), and high-performance computing (HPC) clusters, this FatTwin platform maximizes compute density while significantly reducing total cost of ownership (TCO). By utilizing a shared power and cooling architecture, the system delivers superior energy efficiency compared to standard 1U rackmount deployments. Each of the eight hot-pluggable nodes is powered by a single 4th or 5th Generation Intel Xeon Scalable processor, offering a cost-effective balance of core count and power consumption ideal for scale-out workloads. The architecture supports substantial memory capacity with DDR5 technology, ensuring rapid data processing for bandwidth-intensive applications. IT administrators and procurement managers will value the tool-less serviceability and the flexible storage backplane, which supports a hybrid mix of NVMe, SAS, and SATA drives. This system is the optimal choice for enterprises seeking to maximize floor space utility without compromising on performance or manageability.
The Supermicro SYS-F521E3-RTB represents a high-density computing solution designed for hyperscale data centers, hyperconverged infrastructure (HCI), and enterprise storage environments. As part of the advanced FatTwin architecture, this 4U system houses four independent hot-pluggable nodes, each optimized for single-socket performance and massive storage capacity. By utilizing a shared power and cooling infrastructure, the system significantly reduces Total Cost of Ownership (TCO) while maintaining granular control over compute resources. Each node supports the latest 5th and 4th Gen Intel Xeon Scalable processors, delivering robust processing power for data-intensive applications without the power overhead of dual-socket configurations. The chassis design prioritizes storage density, offering eight hot-swap 3.5-inch hybrid drive bays per node, making it an ideal platform for software-defined storage solutions like vSAN and Ceph. With support for PCIe 5.0 and flexible AIOM networking, the SYS-F521E3-RTB ensures future-proof connectivity and bandwidth for demanding enterprise workloads.
The Supermicro SYS-F610P2-RTN is a high-density computing solution designed to maximize performance per watt and per square foot in enterprise data centers. Engineered as part of the advanced FatTwin architecture, this 4U system houses eight independent hot-pluggable nodes, making it an ideal platform for hyperscale virtualization, high-performance computing (HPC), and big data analytics. By consolidating compute resources into a shared power and cooling infrastructure, organizations can significantly reduce cabling complexity and total cost of ownership compared to traditional 1U rackmount servers. Each node within the chassis supports dual 3rd Generation Intel Xeon Scalable processors, leveraging the Ice Lake architecture to deliver PCIe 4.0 connectivity and enhanced memory bandwidth. The system offers exceptional storage flexibility through a hybrid backplane, allowing each node to manage six hot-swap 2.5-inch drives across NVMe, SAS, or SATA interfaces. This versatility enables architects to tailor storage performance to specific workload demands, from latency-sensitive databases to capacity-focused archives. With redundant Titanium-level power supplies and AIOM networking support, the SYS-F610P2-RTN delivers enterprise-grade reliability and scalability for mission-critical deployments.
The Supermicro SYS-F620P3-RTBN is a high-density 4U FatTwin system engineered for hyper-converged infrastructure, enterprise cloud, and high-performance computing (HPC) environments. This verified configuration houses four independent hot-pluggable nodes within a single chassis, maximizing compute density without sacrificing thermal efficiency or serviceability. Each node is powered by dual 3rd Gen Intel Xeon Scalable processors (Ice Lake), delivering substantial performance gains through PCIe 4.0 connectivity and support for Intel Optane Persistent Memory 200 Series. A defining characteristic of this "RTBN" model is its unique hybrid storage architecture. Each node supports eight 3.5-inch hot-swap drive bays distributed as six front-accessible bays and two rear-accessible bays. This layout enables flexible tiered storage strategies, allowing administrators to mix high-speed NVMe for caching with high-capacity SAS/SATA for data retention. With redundant Titanium Level power supplies and AIOM (OCP 3.0) networking flexibility, the SYS-F620P3-RTBN offers a robust, scalable foundation for data-intensive enterprise applications.
Supermicro AS-F1114S-FT FatTwin A+ server delivers high-density computing in a 4U rackmount chassis with eight hot-pluggable nodes. Each node supports a single AMD EPYC processor and up to 512 GB DDR4 memory, totaling 4 TB system memory for enterprise virtualization, HPC, and storage-intensive workloads. Nodes feature 2 fixed SATA drives with optional support for 2 additional NVMe drives, providing flexible storage configurations. AIOM cards enable adaptable networking, while dedicated RJ45 ports support IPMI 2.0 remote management with KVM and virtual media access. Redundant 2000 W 80 PLUS Platinum power supplies ensure energy efficiency and continuous operation. Ideal for data centers requiring compact, high-performance, and easily maintainable server infrastructure.
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