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| Unit Price: | £ |
| Part No: | FEAS -2115GT-HNTR-01-G2 |
| Manufacturer No: | AS -2115GT-HNTR-01-G2 |
| Delivery: | In Stock: 7-10 Days |
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The Supermicro AS-2115GT-HNTR-01-G2 is a 2U four-node GrandTwin A+ server that combines four independent hot-pluggable systems in a compact rackmount chassis. Each node comes with an AMD EPYC 9534 processor, 512GB of DDR5-4800 ECC RDIMM memory, a 960GB 2.5-inch SATA SSD, and dual 100GbE QSFP28 network connectivity. Shared redundant 2200W Titanium Level power supplies provide the power capacity required by this high-density platform.
*NVMe/SATA functionality depends on configuration chosen. Additional parts are required
The four-node configuration places four independent server systems into a single 2U chassis, making efficient use of rack space while allowing each node to operate with its own processor, memory, storage, and networking resources.
Each pre-configured node includes an AMD EPYC 9534 processor with 64 cores and a 2.45GHz base frequency. The underlying platform also supports AMD EPYC 9004 and 9005 series processors, with processor support dependent on the motherboard revision.
Every node is supplied with 512GB of DDR5-4800 ECC RDIMM memory, providing substantial capacity for virtualised environments, web applications, storage services, and other memory-intensive workloads. Each node has 12 DIMM slots and can support up to 3TB of DDR5 memory depending on the processor and motherboard revision.
Each node provides dual 100GbE QSFP28 network ports, giving the four-node platform high-bandwidth connectivity for demanding data transfer requirements, clustered applications, and distributed workloads.
The pre-configured system includes a 960GB 2.5-inch SATA SSD per node. Each node can accommodate up to six hot-swap 2.5-inch NVMe or SATA drives when the required optional components are installed.
The chassis uses two 2200W redundant Titanium Level power supplies shared across the four nodes. The power configuration provides additional continuity for systems operating in demanding 24-hour environments, with full redundancy dependent on the system configuration and workload.
*Full redundancy based on configuration and application load
The Supermicro AS-2115GT-HNTR-01-G2 is a 2U four-node GrandTwin A+ server that combines four independent hot-pluggable systems in a compact rackmount chassis. Each node comes with an AMD EPYC 9534 processor, 512GB of DDR5-4800 ECC RDIMM memory, a 960GB 2.5-inch SATA SSD, and dual 100GbE QSFP28 network connectivity. Shared redundant 2200W Titanium Level power supplies provide the power capacity required by this high-density platform.
*NVMe/SATA functionality depends on configuration chosen. Additional parts are required
The four-node configuration places four independent server systems into a single 2U chassis, making efficient use of rack space while allowing each node to operate with its own processor, memory, storage, and networking resources.
Each pre-configured node includes an AMD EPYC 9534 processor with 64 cores and a 2.45GHz base frequency. The underlying platform also supports AMD EPYC 9004 and 9005 series processors, with processor support dependent on the motherboard revision.
Every node is supplied with 512GB of DDR5-4800 ECC RDIMM memory, providing substantial capacity for virtualised environments, web applications, storage services, and other memory-intensive workloads. Each node has 12 DIMM slots and can support up to 3TB of DDR5 memory depending on the processor and motherboard revision.
Each node provides dual 100GbE QSFP28 network ports, giving the four-node platform high-bandwidth connectivity for demanding data transfer requirements, clustered applications, and distributed workloads.
The pre-configured system includes a 960GB 2.5-inch SATA SSD per node. Each node can accommodate up to six hot-swap 2.5-inch NVMe or SATA drives when the required optional components are installed.
The chassis uses two 2200W redundant Titanium Level power supplies shared across the four nodes. The power configuration provides additional continuity for systems operating in demanding 24-hour environments, with full redundancy dependent on the system configuration and workload.
*Full redundancy based on configuration and application load
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