Intel Xeon Gold 6248 20c/40t 2.5GHz-3.9GHz 150W (CD8069504194301)
P/N: CD8069504194301
183€ (excl. TAX)

P/N: PK8072006269900
6 312€ (excl. TAX)
7574 € RRP en Intel.com
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Warranty 1 year
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Intel Xeon 6767P — 64-core Granite Rapids CPU for enterprise-scale virtualization and compute-heavy workloads. EU delivery, global shipping.
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| Dimensions | 17 × 17 × 10 cm |
|---|---|
| Country of manufacture | China, USA |
| Manufacturer's warranty (years) | 1 |
| Series | Intel Xeon 6 |
| Number of cores | 64 |
| Number of threads | 128 |
| Clock frequency (GHz) | 2.4 |
| Cache L3 (MB) | 336 |
| Cache L2 (MB) | 2 |
| Cache L1 (KB) | 112 |
| Process technology (nm) | 5 |
| Maximum Turbo Frequency (GHz) | 3.9 |
| Memory type | DDR5, DDR5/MRDIMM |
| Maximum memory channels | 8 |
| Maximum memory frequency (MHz) | 8000, 6400 |
| Maximum memory capacity | 4TB |
| Heat dissipation TDP (W) | 350 |
| PCI Express controller | PCIE 5.0 |
| Number of PCI Express lanes | 88 |
| Processors on a motherboard | 2 |
| Length (cm) | 17 |
| Width (cm) | 17 |
| SKU | SRV5F |
| Architecture | Granite Rapids |
| Socket | LGA 4710 |
The Intel Xeon 6767P represents one of the most balanced high-density compute options in the Granite Rapids Xeon 6 family. It targets infrastructures that must sustain heavy parallel workloads while maintaining predictable performance, tight latency bounds, and high memory throughput. Compared to the 6761P, this model is tuned with a slightly lower base frequency but retains a similar thermal envelope and the same 64-core footprint, making it suitable for environments where compute density and steady-state efficiency matter more than turbo burst behavior.
At the silicon level, the 6767P provides 64 cores, 128 threads, 2.4 GHz base clock and up to 3.9 GHz turbo, allowing it to process large volumes of concurrent tasks without degradation. Its clock distribution is optimized for multi-tenant clusters—CI/CD orchestration, containerized microservices, real-time telemetry engines, online transaction systems, and internal PaaS environments where hundreds or thousands of threads must run concurrently with minimal jitter.
The model includes a 336 MB L3 cache, which is a defining characteristic of the high-end Granite Rapids tier. This expanded cache improves performance for workloads with broad working sets and irregular access patterns: distributed search engines, large recommendation models, vector stores, complex joins in analytical databases, and Python/Java services with high GC activity. With a cache this large, CPU stalls decrease significantly, which is particularly valuable in cloud environments where noisy-neighbor effects often disrupt performance consistency.
Memory capabilities remain one of the CPU’s strongest attributes. Supporting up to 4 TB of DDR5 memory at 6400 MT/s, the 6767P provides the throughput and capacity needed for in-memory analytics, advanced BI platforms, real-time stream processing, massive dataframe operations, and LLM inference pipelines with large context windows. Although this model does not explicitly list MRDIMM support, the standard DDR5 bandwidth already exceeds what most enterprise applications can saturate.
The I/O subsystem offers 88 PCIe 5.0 lanes, enabling mixed deployment of GPUs, SmartNICs, NVMe arrays, AI accelerators, and programmable network adapters. This makes the 6767P well suited for hybrid AI setups where tasks shift dynamically between CPU-bound and accelerator-bound pipelines. PCIe 5.0 ensures that parallel throughput remains stable even under multi-device saturation.
With a 350 W TDP, the processor is engineered for predictable thermal behavior under continuous 24/7 workloads. This is ideal for Kubernetes clusters, high-availability compute nodes, distributed analytics platforms, and edge data center deployments where stability and thermal predictability are critical to automation and orchestration layers.
In real operational scenarios, the Xeon 6767P excels in:
Overall, the Intel Xeon 6767P is a versatile, high-density compute processor that prioritizes scalability, determinism, and memory throughput—an excellent choice for enterprise organizations moving toward AI-driven, cloud-native, and analytically intensive operations.
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