
Core i5-10400F

Xeon 6737P
Core i5-10400F vs Xeon 6737P Performance Spectrum
About PassMark
PassMark CPU Mark evaluates processor speed through complex mathematical computations. It provides a reliable metric to compare multi-core performance, where higher scores indicate faster processing for multitasking, gaming, and heavy workloads.
Core i5-10400F vs Xeon 6737P FPS Benchmarks
Predicted gaming performance across popular games. Tested paired with GeForce RTX 5090 to isolate CPU performance.
Search any supported game below to compare 1080p FPS for both components.

Path of Exile 2

Counter-Strike 2

League of Legends

Valorant

Among Us

Apex Legends

ARC Raiders

Baldur's Gate 3

Call of Duty: Black Ops 6
Core i5-10400F vs Xeon 6737P: Pros, Cons & Final Verdict
See where each CPU makes more sense in practice: gaming, heavier work, platform cost, power draw, and upgrade path.
Core i5-10400F
2020Why buy it
- β Costs $4,835 less on MSRP ($160 MSRP vs $4,995 MSRP).
- β Delivers 410.8% more PassMark for each dollar spent, at 81.4 vs 15.9 PassMark/$ ($160 MSRP vs $4,995 MSRP).
- β Draws 65W instead of 270W, a 205W reduction.
- β Includes a boxed cooler (Yes), unlike Xeon 6737P.
Trade-offs
- βWorse for gaming: lower average FPS than Xeon 6737P across 50 shared CPU benchmark tests.
- βLower Geekbench multi-core (5,783 vs 45,000).
- βLess compelling for workstation-style loads than Xeon 6737P, which brings 32 cores / 64 threads and 88 PCIe lanes.
- βOlder platform position on LGA1200 with DDR4, while Xeon 6737P moves to LGA4710 and DDR5.
Xeon 6737P
2025Why buy it
- β Better for gaming: +24.3% higher average FPS across 50 shared CPU benchmark tests.
- β Better for workstations and heavier parallel workloads: 32 cores / 64 threads, plus 88 PCIe lanes vs 16.
- β Newer platform on LGA4710 with DDR5 support instead of LGA1200 and DDR4.
- β 450% more PCIe lanes (88 vs 16) for storage and expansion-heavy builds.
Trade-offs
- βLower PassMark per dollar, at 15.9 vs 81.4 PassMark/$ ($4,995 MSRP vs $160 MSRP).
- β315.4% higher power demand at 270W vs 65W.
- βNo boxed cooler included, unlike Core i5-10400F.
Quick Answers
So, is Xeon 6737P better than Core i5-10400F?
Which one is better for gaming?
Which one is better for streaming, content creation, and heavy multitasking?
Which one is the smarter buy today, not just the cheaper CPU?
Which one is more future-proof for 2026 and beyond?
Core i5-10400F vs Xeon 6737P Technical Specifications
Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

Core i5-10400F
The Core i5-10400F is manufactured by Intel. It was released in 30 April 2020 (5 years ago). It is based on the Comet Lake (2020β2025) architecture. It features 6 cores and 12 threads. Base frequency is 2.9 GHz, with boost up to 4.3 GHz. L3 cache: 12 MB (total). L2 cache: 256K (per core). Built on 14 nm process technology. Socket: LGA1200. Thermal design power (TDP): 65 Watt. Memory support: DDR4. Passmark benchmark score: 13,029 points. Launch price was $155.

Xeon 6737P
The Xeon 6737P is manufactured by Intel. It was released in 24 February 2025 (less than a year ago). It is based on the Granite Rapids (2024β2025) architecture. It features 32 cores and 64 threads. Base frequency is 2.9 GHz, with boost up to 4 GHz. L3 cache: 144 MB (total). L2 cache: 2 MB (per core). Built on Intel 3 nm process technology. Socket: LGA4710. Thermal design power (TDP): 270 Watt. Memory support: DDR5(6400MT/s). Passmark benchmark score: 79,634 points. Launch price was $4,995.
Processing Power
The Core i5-10400F packs 6 cores / 12 threads, while the Xeon 6737P offers 32 cores / 64 threads β the Xeon 6737P has 26 more cores. Boost clocks reach 4.3 GHz on the Core i5-10400F versus 4 GHz on the Xeon 6737P β a 7.2% clock advantage for the Core i5-10400F (base: 2.9 GHz vs 2.9 GHz). The Core i5-10400F uses the Comet Lake (2020β2025) architecture (14 nm), while the Xeon 6737P uses Granite Rapids (2024β2025) (Intel 3 nm). In PassMark, the Core i5-10400F scores 13,029 against the Xeon 6737P's 79,634 β a 143.8% lead for the Xeon 6737P. Geekbench 6 single-core β the metric most relevant to gaming β records 1,454 vs 2,000, a 31.6% lead for the Xeon 6737P that directly translates to higher frame rates. Multi-core Geekbench: 5,783 vs 45,000 (154.4% advantage for the Xeon 6737P). L3 cache: 12 MB (total) on the Core i5-10400F vs 144 MB (total) on the Xeon 6737P.
| Feature | Core i5-10400F | Xeon 6737P |
|---|---|---|
| Cores / Threads | 6 / 12 | 32 / 64+433% |
| Boost Clock | 4.3 GHz+7% | 4 GHz |
| Base Clock | 2.9 GHz | 2.9 GHz |
| L3 Cache | 12 MB (total) | 144 MB (total)+1100% |
| L2 Cache | 256K (per core)+12700% | 2 MB (per core) |
| Process | 14 nm | Intel 3 nm-79% |
| Architecture | Comet Lake (2020β2025) | Granite Rapids (2024β2025) |
| PassMark | 13,029 | 79,634+511% |
| Cinebench R23 Multi | 8,191 | β |
| Geekbench 6 Single | 1,454 | 2,000+38% |
| Geekbench 6 Multi | 5,783 | 45,000+678% |
Memory & Platform
The Core i5-10400F uses the LGA1200 socket (PCIe 3.0), while the Xeon 6737P uses LGA4710 (PCIe 4.0) β making them incompatible on the same motherboard. Maximum memory speed reaches DDR4-2666 on the Core i5-10400F versus DDR5-6400 on the Xeon 6737P β the Xeon 6737P supports 140.1% faster memory, which can translate to measurable gains in memory-sensitive workloads. The Xeon 6737P supports up to 4096 GB of RAM compared to 128 GB β 3100% more capacity for professional workloads. Memory channels: 2 (Core i5-10400F) vs 8 (Xeon 6737P). PCIe lanes: 16 (Core i5-10400F) vs 88 (Xeon 6737P) β the Xeon 6737P offers 72 more lanes for additional GPUs or NVMe drives. Chipset compatibility: H410,B460,H470,Z490,H510,B560,H570,Z590 (Core i5-10400F) and C741 (Xeon 6737P).
| Feature | Core i5-10400F | Xeon 6737P |
|---|---|---|
| Socket | LGA1200 | LGA4710 |
| PCIe Generation | PCIe 3.0 | PCIe 4.0+33% |
| Max RAM Speed | DDR4-2666 | DDR5-6400+140% |
| Max RAM Capacity | 128 GB | 4096 GB+3100% |
| RAM Channels | 2 | 8+300% |
| ECC Support | No | Yes |
| PCIe Lanes | 16 | 88+450% |
Advanced Features
Neither processor supports overclocking. Only the Xeon 6737P supports AVX-512 instructions β important for machine learning and scientific applications. Both support VT-x, VT-d virtualization. Primary use case: Core i5-10400F targets Gaming, Xeon 6737P targets High Performance Server. Direct competitor: Core i5-10400F rivals Ryzen 5 3600; Xeon 6737P rivals EPYC 9005.
| Feature | Core i5-10400F | Xeon 6737P |
|---|---|---|
| Integrated GPU | No | No |
| IGPU Model | β | None |
| Unlocked | No | No |
| AVX-512 | No | Yes |
| Virtualization | VT-x, VT-d | VT-x, VT-d |
| Target Use | Gaming | High Performance Server |
Value Analysis
At launch, the Core i5-10400F was priced at $160, while the Xeon 6737P came in at $4995. On launch pricing ($160 vs $4995), Core i5-10400F was $4835 cheaper. In terms of value on MSRP (PassMark points per dollar), the Core i5-10400F delivers 81.4 pts/$ vs 15.9 pts/$ for the Xeon 6737P β making the Core i5-10400F the 134.5% better value option.
| Feature | Core i5-10400F | Xeon 6737P |
|---|---|---|
| MSRP | $160-97% | $4995 |
| Performance per Dollar | 81.4+412% | 15.9 |
| Release Date | 2020 | 2025 |
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