- Extensive computing performance: Powered by Intel® Xeon® 6 Scalable processors, with 32 DDR5 RDIMM up to 6400MHz 1DPC, delivering exceptional performance and maximum efficiency across the widest range of workloads.
- Modular and scalable architecture: Built with DC-MHS architecture, provide seamless integration and optimization, making them ideal for modern data centers and diverse IT environments.
- Large Storage Capacity: Supports up to 24 NVMe drives, providing extensive storage space to meet demanding data requirements for large-scale applications and workloads.
- Optimized air cooling solution: Features hot-swap fan bar design for improved maintenance and optimized airflow, combined with a two-sided PSU placement to separate heat, ensuring efficient thermal management up to TDP 350W.
- Tool-less, easy-maintenance design: Features tool-less access, including a top-cover handle and optimized fan bar for improved cable management and easy maintenance.
ASUS RS720-E12-RS24U is a versatile and high-performance 2U server powered by dual Intel® Xeon® 6 processors, supporting up to 32 DIMMs for enhanced memory performance maximum up to 4TB and delivering exceptional efficiency across a broad range of workloads. With a modular and scalable DC-MHS architecture, RS720-E12-RS24U provide seamless integration and optimization, making them ideal for modern data centers and diverse IT environments.
Powered by Intel Xeon 6 processors, RS720-E12-RS24U features large storage capacities, accommodating extensive data demands while maintaining swift access times. With compatibility for a PCIe® LAN card or an OCP 3.0 module, RS700-E12-RS4U is designed for hyperscale data center connectivity, enabling rapid data exchange and seamless communication across networks. This versatile server is built for scalability and accommodating a wide range of expansion cards, including networking and RAID, for flexible storage solutions.
RS720-E12-RS24U features a modular DC-MHS architecture that ensures seamless integration and high performance in data center environments. Its scalable design allows businesses to adapt to changing IT workloads by adding or removing modules without disruption. This flexibility improves operational efficiency, simplifies system management and supports phased upgrades. The architecture optimizes capital expenditure and resource use, reducing upfront costs. Additionally, modular components can be replaced or upgraded quickly, minimizing downtime and ensuring continuous operations. The DC-MHS architecture also incorporates advanced cooling and power management systems, improving energy efficiency, reducing operational costs, and supporting sustainability efforts.
Optimizes server utilization for high-performance computing tasks like AI training and big data analytics.
Enables seamless communication and data transfer between different parts of the server, improving overall performance.
Enhances system security by providing a trusted foundation for server operations and remote management.
RS720-E12-RS24U features an optimized air-cooled thermal solution with a hot-swap fan bar design and two-sided PSU placement, optimizing airflow, isolating heat sources, and ensuring efficient cooling and reliable performance for demanding applications, supporting up to 350W.
ASUS has redesigned the server-chassis structure for optimal airflow, without compromising on specifications, enhancing cooling efficiency. With a quick-release top cover and a streamlined airflow system, you can manage cables and components effortlessly, reducing maintenance time. This creates a seamless airflow path from front to back, efficiently dissipating heat and keeping the system running cool and stable, streamlining upkeep and minimizing downtime.
Effortless top-cover design
Fan bar design
DC-SCM card
Air Duct
ASUS holds the most amount of records in dual-socket (2P) and single-socket (1P) on SPEC CPU 2017 benchmark and dominate the computing performance. These top performance results provide a useful insight into compute-intensive workloads on different computer systems, enabling our customers to reduce complexity, tackle challenging workloads and accelerate system validations.













