AMD Athlon Silver 3050U
VS
Intel Pentium Silver N5030

AMD Athlon Silver 3050U vs Intel Pentium Silver N5030 Comparison by technical specs (TDP, performance, memory, compatibility). CPU performance analysis in the benchmark comparison (in the mode of a single core and all the cores).

VS

Which CPU is better for gaming and apps?

A comparative analysis of the technical specifications of AMD Athlon Silver 3050U and Intel Pentium Silver N5030 reveals which model is better suited for gaming and operational apps. We recommend paying attention to the yellow-highlighted specs, as these are the most important factors to consider when choosing a CPU for these purposes.

CPU Cores and Base Frequency

The number of cores and the base frequency are two important factors that affect the CPU's performance. A CPU with more cores can simultaneously execute more tasks, and a CPU with a higher base frequency can execute tasks faster.

2.30 GHz
Frequency
1.10 GHz
2
CPU Cores
4
3.20 GHz
Turbo (1 Core)
3.10 GHz
2
CPU Threads
4
2.30 GHz
Turbo (2 Cores)
no data
No
Hyperthreading
No
No
Overclocking
No
no data
Turbo (4 Cores)
2.40 GHz

Internal Graphics

AMD Radeon Vega 3 Graphics
GPU name
Intel UHD Graphics 605
1.10 GHz
GPU frequency
0.25 GHz
No turbo
GPU (Turbo)
0.75 GHz
8
Generation
9.5
12
DirectX Version
12
3
Execution units
18
192
Shader
144
2 GB
Max. Memory
8 GB
3
Max. displays
3
14 nm
Technology
14 nm
Q1/2018
Release date
Q4/2017

Hardware codec support

Decode / Encode
h264
Decode / Encode
Decode / Encode
JPEG
Decode / Encode
Decode / Encode
h265 8bit
Decode / Encode
Decode / Encode
h265 10bit
Decode / Encode
Decode / Encode
VP8
Decode / Encode
Decode / Encode
VP9
Decode / Encode
Decode
VC-1
Decode
Decode / Encode
AVC
Decode / Encode

RAM and PCIe

The memory and PCIe specifications of a processor are important factors to consider when choosing a processor for your needs. If you need a processor with high memory capacity and a fast memory clock speed for gaming or other demanding applications, then you should choose a processor with a high-end memory and PCIe configuration.

DDR4-2400
Memory type
DDR4-2400 LPDDR4-2400
32 GB
Max. Memory
2
Memory channels
2
Yes
ECC
No
3.0
PCIe version
2.0
8
PCIe lanes
6

Encryption

Yes
AES-NI
Yes

Thermal Management

Thermal Design Power (TDP) is a measure of the amount of heat that a processor dissipates when operating. The higher the TDP, the more heat the processor dissipates and the more powerful the cooling system needs to be to prevent it from overheating.

When choosing a processor, it is important to consider the TDP and the type of cooling that is available. Processors with a higher TDP will require more powerful cooling, which may require a more expensive motherboard or case.

TDP measures the heat a processor dissipates. Higher TDP requires more powerful cooling.

15 W
TDP
6 W
95 °C
Tjunction max.
--
25 W
TDP up
--
12 W
TDP down
--

Technical details

4.00 MB
L3-Cache
4.00 MB
14 nm
Technology
14 nm
Dali (Zen+)
Architecture
Gemini Lake Refresh
AMD-V, SEV
Virtualization
VT-x, VT-x EPT, VT-d
FP5
Socket
BGA 1090
Q1/2020
Release date
Q4/2019

Devices using this processor

Unknown
Used in
Unknown

CPU generation and family

AMD Athlon Silver 3050U vs Intel Pentium Silver N5030

Which to buy

The benchmark comparison of AMD Athlon Silver 3050U and Intel Pentium Silver N5030 allows defining which CPU is currently better, more modern and efficient. The more points, the better.

Compare Benchmarks

Real world tests of AMD Athlon Silver 3050U vs Intel Pentium Silver N5030:

Cinebench R20 (Single-Core)

Cinebench R20 is a cross-platform testing tool that measures CPU performance. It is based on the Cinema 4D rendering engine, which is used by professional animators and designers. Cinebench R20 is a reliable and accurate benchmark that can be used to compare the performance of different CPUs. The single-core test in Cinebench R20 measures the performance of a single CPU core. This is a good test for measuring the CPU's raw processing power. The higher the score, the better the CPU's performance. The Cinebench R20 single-core test is a good way to compare the performance of different CPUs. It is a reliable and accurate benchmark that can be used to measure the CPU's raw processing power.

Cinebench R15 (Single-Core)

Cinebench R15 is a cross-platform testing tool that measures CPU performance. It is based on the Cinema 4D rendering engine, which is used by professional animators and designers. Cinebench R15 is a reliable and accurate benchmark that can be used to compare the performance of different CPUs. The single-core test in Cinebench R15 measures the performance of a single CPU core. This is a good test for measuring the CPU's raw processing power. The higher the score, the better the CPU's performance. The Cinebench R15 single-core test is a good way to compare the performance of different CPUs. It is a reliable and accurate benchmark that can be used to measure the CPU's raw processing power. Here are some of the factors that can affect the Cinebench R15 single-core score: The CPU's clock speed The CPU's cache size The CPU's architecture The CPU's thermal throttling The Cinebench R15 single-core score is a good way to compare the performance of different CPUs, but it is important to note that it is not the only factor that affects CPU performance. Other factors, such as the CPU's multi-core performance, memory bandwidth, and storage performance, can also affect overall system performance.

Cinebench R15 (Multi-Core)

Cinebench R15 is a multi-core CPU benchmark based on the Cinema 4D rendering engine. It measures the performance of all CPU cores. The higher the score, the better the CPU's performance.

iGPU - FP32 Performance (Single-precision GFLOPS)

FP32 Performance (Single-precision GFLOPS) is a measure of the floating-point performance of an integrated graphics processing unit (iGPU). It is measured in gigaflops (GFLOPs), which is a billion floating-point operations per second. The higher the GFLOPs, the better the iGPU's floating-point performance. Floating-point performance is important for tasks that require a lot of calculations, such as video editing, 3D rendering, and scientific computing.