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Optimized Dell PowerEdge R760 with Dual Xeon 6548Y+ & 24 NVMe Storage
Keywords
PowerEdge R760, Xeon Gold 6548Y+, 24 NVMe drives, 768 GB DDR5 memory, H755 RAID, iDRAC9 Enterprise, dual 2400W PSU, enterprise server configuration
Description
This high-end configuration features the Dell PowerEdge R760, outfitted with dual **Intel Xeon Gold 6548Y+** processors (32 cores each) to deliver a combined 64-core compute capability. With a full NVMe chassis design supporting **24 NVMe drives**, it offers tremendous I/O throughput suited for demanding workloads. The inclusion of **iDRAC9 Enterprise** ensures robust remote management and monitoring.
The memory subsystem is built for performance: **8 × 64 GB DDR5 RDIMMs** at 5600 MT/s yield a total of **512 GB** (expandable as the system supports up to 32 slots), with an optimized “Performance” DIMM configuration. The chassis is further enhanced by **very high performance fans (×6)** to maintain optimal thermal conditions under full load.
Storage is configured without a conventional RAID controller for direct NVMe access (C30, no RAID), but includes two M.2 SSDs in RAID (2 × 480 GB) for boot and metadata resilience. The server is powered by **dual, hot-plug, redundant 2400 W PSUs**, ensuring stability and fault tolerance in heavy enterprise environments.
Connectivity and expandability are well addressed: PCIe risers support multiple Gen4 slots, and network options include an **Intel E810-XXV dual 10/25 GbE OCP NIC**, a Broadcom 5720 dual 1 GbE LOM, and an additional Intel 10/25 GbE low-profile adapter. This blend offers flexibility for both high throughput and traditional networking.
Key Features
- Dual Intel Xeon Gold 6548Y+ (32C / 64T per CPU) for heavy compute workloads
- 24 NVMe Direct-attached drives in 2.5" chassis for maximal I/O bandwidth
- 2 × 480 GB M.2 SSDs in RAID for OS and metadata resiliency
- Performance-optimized DDR5 RDIMM (5600 MT/s) memory configuration
- No RAID controller for NVMe bays (C30 mode) to reduce latency
- 6 × very high performance fans for thermal management
- Dual 2400 W hot-swap redundant power supplies
- Flexible network connectivity with 10/25 GbE OCP, 1 GbE LOM, and an extra 10/25 GbE adapter
- iDRAC9 Enterprise for full remote management and system control
Configuration
Module / Component | Specification / Part Number |
---|---|
Base System | PowerEdge R760 (210-BDZY) |
Trusted Platform Module | TPM 2.0 V6 (461-AAIG) |
Chassis | 2.5" chassis with up to 24 NVMe direct drives (470-BBCF) |
Processor (Primary) | Intel Xeon Gold 6548Y+ (338-CPCB) |
Processor (Secondary) | Intel Xeon Gold 6548Y+ (338-CPCB / 379-BDCO) |
Memory Mode | Performance Optimized (370-AAIP) |
Memory Type / Speed | DDR5 RDIMM 5600 MT/s (370-BBRX) |
Memory Modules | 8 × 64 GB RDIMM 5600 MT/s (370-BBRN) |
RAID Mode | “C30” No RAID for NVMe bays (780-BCDO) |
Boot / BOSS | 2 × 480 GB M.2 SSD RAID (boot optimized) |
Fans | 6 × Very High Performance Fans (750-ADGJ) |
Power Supplies | 2 × 2400 W redundant PSUs (450-AJEV) |
Power Cords | C19 to C20, 0.6 m (450-AAXT × 2) |
PCIe Riser | Riser Config 11: 2×8 FH + 2×16 LP (Gen4) (330-BCDY) |
Motherboard | High-power support board (329-BKCD) |
OCP NIC | Intel E810-XXV Dual Port 10/25 GbE (540-BCXW) |
Additional NIC | Broadcom 5720 Dual 1 GbE LOM (540-BDKD) |
Extra NIC | Intel E810-XXV Dual Port 10/25 GbE LP (540-BCXV) |
Bezel | Standard 2U Bezel (321-BHMY / 325-BEVI) |
Management | iDRAC9 Enterprise 16G (528-CTIC) |
Rails | ReadyRails Sliding Rails (770-BDZP) |
Support & Warranty | ProSupport & Next Business Day Onsite 36 months (865-BBLL / 865-BBLM) |
Compatibility
This configuration aligns with the Dell PowerEdge R760 technical guide, which supports up to two high-TDP CPUs, DDR5 memory up to 5600 MT/s, and up to 24 NVMe drives.
The chassis supports PCIe Gen4 riser slots consistent with the configured riser (Config 11) to ensure full bandwidth for NICs and expansion. The memory mode and DIMM speed are fully supported by the platform under “performance optimized” settings.
Because the NVMe bays are configured in “C30 no RAID” mode, the system treats each NVMe drive as independent, which is ideal for high-performance workloads. Boot drives are handled by the M.2 RAID configuration, which is consistent with Dell’s BOSS/boot options on R760.
The PCIe and network cards are compatible with standard OCP 3.0 and LP slots, allowing the Intel E810 and Broadcom NICs to interoperate correctly. iDRAC9 Enterprise provides full remote management, including firmware updates, logs, and secure access.
Usage Scenarios
This configuration is ideal for **high-throughput database and analytics workloads** where NVMe performance and parallelism are critical. The 24 NVMe drives offer massive aggregate I/O which is especially beneficial for data lake, OLAP, or real-time analytics engines.
In **virtualization environments**, combining many VMs with heavy I/O requirements (e.g. storage-intensive VMs) will benefit from the direct NVMe layout. The CPUs and memory support high VM densities with low I/O contention.
As a **machine learning or inference host**, the system can deliver fast dataset staging and model loading thanks to NVMe bandwidth, while CPU cores drive preprocessing or orchestration tasks. The M.2 RAID ensures reliable boot and metadata performance.
For **block storage or object storage nodes**, this server can act as a high-performance NVMe storage node, exposing each drive independently or managed via software RAID/erasure coding layers higher up in the stack.
Use cases in **real-time analytics**, **caching layers**, **log aggregation**, or **render farms** also map well to this architecture, due to the combination of CPU, memory, and NVMe I/O capacity.
Frequently Asked Questions (FAQs)
1. Why choose “C30 no RAID” mode for NVMe drives?
“C30 no RAID” allows each NVMe drive to operate independently with minimal overhead. This is optimal for workloads that manage redundancy at the software layer (erasure coding, replication) rather than hardware RAID, reducing latency and maximizing throughput.
2. Can this configuration support more memory beyond 512 GB?
Yes. The R760 supports up to 32 DDR5 DIMM slots (per Dell’s spec sheet), enabling much larger capacity than currently populated. The current layout can be expanded in future to increase total memory.
3. What is the expected power draw under full NVMe load with dual CPUs?
Power consumption depends on workload, but under full CPU + NVMe utilization, the system may draw substantial watts. The dual 2400 W power supplies provide headroom and redundancy, allowing continued operation if one PSU fails.
4. Is GPU support possible on this configuration?
While this build is focused on CPU + NVMe, the R760 platform supports GPU options (double-width or single-width) depending on riser and cooling configuration. To add GPUs, you’d need to adjust the riser layout, airflow, power, and possibly move away from full NVMe population to free up lanes or slots.
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