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Supermicro AS -1126HS-TN-01-G2 Hyper SuperServer, 1.5TB DDR5-6400, 2x 1600W Titanium Level

by Supermicro
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Part No:FEAS -1126HS-TN-01-G2
Manufacturer No:AS -1126HS-TN-01-G2
Delivery: In Stock: 7-10 Days

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Supermicro AS -1126HS-TN-01-G2 Hyper SuperServer, 1.5TB DDR5-6400, 2x 1600W Titanium Level
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    The Supermicro AS-1126HS-TN-01-G2 Hyper SuperServer is a compact 1U dual-socket platform built for heavy compute density, supporting AMD EPYC processors alongside large-scale DDR5 memory capacity and high-speed I/O. It is designed for workloads that require strong parallel processing, fast memory access, and flexible expansion within a tightly packed rack footprint.

    Key Features of Supermicro AS-1126HS-TN-01-G2

    • Dual AMD EPYC 9004/9005 series CPU support for high core density workloads
    • Up to 1.5TB DDR5-6400 ECC memory capacity
    • PCIe 5.0 expansion slots for high-speed networking and accelerator cards
    • Flexible storage configuration with NVMe, SATA, and SAS options
    • Dual redundant 1600W Titanium efficiency power supplies
    • 1U rackmount design for high-density deployment environments
    • Integrated remote management with IPMI and KVM over IP support

    *NVMe/SATA support requires additional parts


    Memory Capacity

    With support for up to 1.5TB DDR5-6400 memory, the system provides wide bandwidth and large capacity headroom for memory-heavy workloads such as virtualization clusters, caching layers, and analytical processing tasks.


    Expansion and Connectivity

    PCIe 5.0 support and flexible slot configuration allow integration of high-speed networking cards, storage controllers, and accelerator hardware, supporting adaptable system design for different compute environments.


    Power and Thermal Design

    Dual 1600W Titanium-rated redundant power supplies provide stable energy delivery under sustained workloads, while the thermal layout is engineered to maintain airflow efficiency in dense 1U deployments.


    Compute Architecture

    Dual AMD EPYC CPU support allows the system to scale core density significantly, making it suitable for workloads with high thread demand and sustained processing loads. The platform is structured to handle intensive multitasking across distributed applications.

    The Supermicro AS-1126HS-TN-01-G2 Hyper SuperServer is a compact 1U dual-socket platform built for heavy compute density, supporting AMD EPYC processors alongside large-scale DDR5 memory capacity and high-speed I/O. It is designed for workloads that require strong parallel processing, fast memory access, and flexible expansion within a tightly packed rack footprint.

    Key Features of Supermicro AS-1126HS-TN-01-G2

    • Dual AMD EPYC 9004/9005 series CPU support for high core density workloads
    • Up to 1.5TB DDR5-6400 ECC memory capacity
    • PCIe 5.0 expansion slots for high-speed networking and accelerator cards
    • Flexible storage configuration with NVMe, SATA, and SAS options
    • Dual redundant 1600W Titanium efficiency power supplies
    • 1U rackmount design for high-density deployment environments
    • Integrated remote management with IPMI and KVM over IP support

    *NVMe/SATA support requires additional parts


    Memory Capacity

    With support for up to 1.5TB DDR5-6400 memory, the system provides wide bandwidth and large capacity headroom for memory-heavy workloads such as virtualization clusters, caching layers, and analytical processing tasks.


    Expansion and Connectivity

    PCIe 5.0 support and flexible slot configuration allow integration of high-speed networking cards, storage controllers, and accelerator hardware, supporting adaptable system design for different compute environments.


    Power and Thermal Design

    Dual 1600W Titanium-rated redundant power supplies provide stable energy delivery under sustained workloads, while the thermal layout is engineered to maintain airflow efficiency in dense 1U deployments.


    Compute Architecture

    Dual AMD EPYC CPU support allows the system to scale core density significantly, making it suitable for workloads with high thread demand and sustained processing loads. The platform is structured to handle intensive multitasking across distributed applications.

    Product data is provided by Icecat, we do not warrant the accuracy of the material above.

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