


2U 2-Node (Front I/O)
2U 4-Node (Front I/O)
2U 4-Node (Rear I/O)
Overview
Highlights
- 2U2N or 2U4N designs with 12 or 16 DIMMs per node
- Front or rear I/O options with modular design to increase flexibility and reduce cost
- Front/Cold aisle serviceability with easy front node access
Innovations
- Flexible storage options with new support for EDSFF E1.S drives
- Resource Saving for Best Efficiency and TCO
Optimized for:
- Virtualization
- Cloud
- Hosting & Content Delivery
- Hyperscale / Hyperconverged
- HPC
- GPU Virtualization
- Scale-out Object Storage
- Telco Edge Cloud
- Cluster Node
X14 GrandTwin® Datasheet
New X14 GrandTwin® multi-node systems featuring Intel® Xeon® 6700/6500 series processors with P-cores and 6700 series processors with E-cores
New Levels of Optimization Are Now Available with Supermicro X14 Servers for AI, HPC, Enterprise, and Edge Workloads, Incorporating Intel® Xeon® 6 Series Processors
Supermicro X14 Servers Give Users the Flexibility to Match Systems and Processors to Workloads
This Server CANNOT Lose Data
Check out the latest video with Linus Tech Tips, featuring Supermicro's high-density multi-node GrandTwin™ servers running a high-performance clustered storage solution powered by AMD EPYC™ 9004 Series CPUs.
Absolute Hosting Delivers Class-Leading VPS Servers with Supermicro Servers with AMD EPYC™ CPUS
Performance and rack density for powerful VPS servers
Supermicro's GrandTwin® Excels at OpenSSL for Cryptography Workloads
Supermicro GrandTwin with Intel® QuickAssist Technology Demonstrates Tremendous Performance Increase for Cryptography Algorithms
New Supermicro GrandTwin 2U4N 1P Platform at Intel Vision 2022
Below is a Supermicro BigTwin that we have seen for generations. On top though, is a new platform Supermicro is calling the “GrandTwin”. This is a new line of 2U4N servers from Supermicro and not a one-off platform.
Construct Optimized IT Solutions With The Supermicro X12 Twin Family Of Multi-Node Servers
Select From the Twin Family of Multi-Node Servers to Exactly Match Workload Requirements with Superior Functionality and Efficiency