Intel Core i5-11400H vs Intel Xeon E5-2690 v2

Compare Intel 11th Generation Core i5 6 core CPU vs Intel Xeon E5 v2 Family 10 core processor, specs and benchmark score. Which is the better CPU for gaming?

CPU Comparison

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Benchmark Score

Overall Score

A combined score of all workloads

5137 points
1% slightly better overall score
5073 points

Gaming Score

The raw gaming performance with a fast GPU

7413 points
36% slightly better gaming score
5423 points

Multitasking Score

Performance in workloads using up to 8 cores

4443 points
4932 points
11% slightly better multitasking score

Heavy Workload Score

Performance in workloads using up to 16 cores

4295 points
4878 points
13% slightly better heavy workload score

Free CPU Benchmark

Want to compare your processor against the Core i5-11400H and the Xeon E5-2690 v2? Download our free and quick PC Performance Test.

Other Benchmarks

Blender score

Blender score

Cycles Render (Samples per minute)

107.17 points
0.68% slightly higher Blender score
106.45 points
Geekbench 5 (multi) score

Geekbench 5 (multi) score

Multi threaded benchmark

6310 points
50% significantly higher Geekbench 5 (multi) score
4204 points
Geekbench 5 (single) score

Geekbench 5 (single) score

Single threaded benchmark

1799 points
209% significantly higher Geekbench 5 (single) score
582 points
Geekbench 6 (multi) score

Geekbench 6 (multi) score

Multi threaded benchmark

6415 points
51% significantly higher Geekbench 6 (multi) score
4225 points
Geekbench 6 (single) score

Geekbench 6 (single) score

Single threaded benchmark

1824 points
207% significantly higher Geekbench 6 (single) score
593 points

Specifications

Cores

Number of physical processing units

6
10
66% significantly more cores

Threads

Number of logical processing units

12
20
66% significantly more threads

Clock Speed

Base frequency at which the chip operates

2.69 GHz
3 GHz
11% slightly higher clock speed

Turbo Speed

Higher frequency used for heavy workloads

4.5 GHz
25% slightly higher turbo speed
3.6 GHz

TDP

Thermal Design Power: Measure of heat generated by the CPU

35 W
271% significantly lower TDP
130 W

PCIe Lanes

Number of physical connections between the CPU and expansion slots

20
40
100% significantly more pcie lanes

Memory Channels

Lanes for simultaneous memory access

2
4
100% significantly more memory channels

Supported Memory

Maximum amount of RAM supported by this CPU

128 GiB
768 GiB
499% significantly more supported memory

Other details

Rank

Ranking in the hardwareDB database

333rd of 1,089
342nd of 1,089

Family

The product line

11th Generation Core i5
Xeon E5 v2 Family

Release date

The official date of release of this chip

2021 May
2013 August

Memory Type

The type of memory used by this chip

-
DDR3-1066

Is Unlocked

Can this CPU can be overclocked

No
-

Supports ECC memory

Does this CPU support error correcting memory

No
Yes

Core i5-11400H vs Xeon E5-2690 v2 benchmarks

Our benchmark analysis concludes that the Core i5-11400H performs better than the Xeon E5-2690 v2. Furthermore, our gaming benchmark shows that it also outperforms the Xeon E5-2690 v2 in all gaming tests too.

When comparing core counts for these CPUs, we notice that the Xeon E5-2690 v2 has significantly more cores with 10 cores compared to the Core i5-11400H that has 6 cores. It also has more threads than the Core i5-11400H. These CPUs have different clock speeds. Indeed, the Xeon E5-2690 v2 has a slightly higher clock speed compared to the Core i5-11400H. Despite this, the Core i5-11400H has a slightly higher turbo speed. A Core i5-11400H CPU outputs less heat than a Xeon E5-2690 v2 CPU because of its significantly lower TDP. This measures the amount of heat they output and can be used to estimate power consumption.

Most CPUs have more threads than cores. This technology, colloquially called hyperthreading, improves performance by splitting a core into multiple virtual ones. This provides more efficient utilisation of a core. Indeed, the Core i5-11400H has more threads than cores. Each physical core is split into multiple threads.

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