Intel Xeon E5-2676 v3 vs AMD Ryzen 3 PRO 5350G

Compare Intel 12 core CPU vs AMD Ryzen PRO 5000 Series 4 core processor, specs and benchmark score. Which is the better CPU for gaming?

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Benchmark Score

Overall Score

A combined score of all workloads

4534 points
1% slightly better overall score
4446 points

Gaming Score

The raw gaming performance with a fast GPU

4262 points
7056 points
65% significantly better gaming score

Multitasking Score

Performance in workloads using up to 8 cores

4640 points
26% slightly better multitasking score
3657 points

Heavy Workload Score

Performance in workloads using up to 16 cores

4684 points
33% slightly better heavy workload score
3510 points

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Specifications

Cores

Number of physical processing units

12
200% significantly more cores
4

Threads

Number of logical processing units

24
200% significantly more threads
8

TDP

Thermal Design Power: Measure of heat generated by the CPU

120 W
65 W
84% significantly lower TDP

Other details

Rank

Ranking in the hardwareDB database

403rd of 1,119
411th of 1,119

Family

The product line

-
Ryzen PRO 5000 Series

Release date

The official date of release of this chip

-
2021 June

Memory Type

The type of memory used by this chip

-
DDR4

Is Unlocked

Can this CPU can be overclocked

-
No

Xeon E5-2676 v3 vs Ryzen 3 PRO 5350G specs and performance

In our benchmarks, the Xeon E5-2676 v3 beats the Ryzen 3 PRO 5350G in overall performance. Despite this, the Ryzen 3 PRO 5350G has the advantage in our gaming benchmark.

With info from our database, we find that the Xeon E5-2676 v3 has significantly more cores with 12 cores whereas the Ryzen 3 PRO 5350G has 4 cores. It also has more threads than the Ryzen 3 PRO 5350G. The Ryzen 3 PRO 5350G outputs less heat than Xeon E5-2676 v3 thanks to a 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 Xeon E5-2676 v3 has more threads than cores. Each physical core is split into multiple threads.

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