AMD Ryzen 3 5300U
VS
Intel Core i3-1125G4
AMD Ryzen 3 5300U
VS
Intel Core i3-1125G4

Which to select

It is time to pick the winner. What is the difference between AMD Ryzen 3 5300U vs Intel Core i3-1125G4? What CPU is more powerful? It is quite easy to determine – look at comparison table. The processor with more cores/ threads and also with higher frequency is the absolute winner!

CPU Cores and Base Frequency

Who will win between AMD Ryzen 3 5300U vs  Intel Core i3-1125G4. The general performance of a CPU can easily be determined based on the number of its cores and the thread count, as well as the base frequency and Turbo frequency. The more GHz and cores a CPU has, the better. Please note that high technical specs require using a powerful cooling system.

2.60 GHz
Frequency
2.00 GHz
4
CPU Cores
4
3.80 GHz
Turbo (1 Core)
3.70 GHz
Yes
Hyperthreading
Yes
No
Overclocking
No
3.60 GHz
Turbo (4 Cores)
3.30 GHz
normal
Core architecture
normal
--
A core
0x
--
B core
0x
--
C core
no data

CPU generation and family

AMD Ryzen 3 5300U
Name
no data
Mobile
Segment
no data
AMD Ryzen 5000U
CPU group
no data
AMD Ryzen
Family
no data
4
Generation
no data
--
Predecessor
no data
AMD Ryzen 3 5425U
Successor
no data

Internal Graphics

Some manufacturers complement their CPUs with graphic chips, such a solution being especially popular in laptops. The higher the clock frequency of a GPU is and the bigger its memory, the better. Find a winner - AMD Ryzen 3 5300U vs Intel Core i3-1125G4. 

AMD Radeon 6 Graphics (Renoir)
GPU name
Intel UHD Graphics (Tiger Lake G4)
1.50 GHz
GPU frequency
0.30 GHz
No turbo
GPU (Turbo)
1.25 GHz
9
Generation
11
12
DirectX Version
12
6
Execution units
48
384
Shader
384
no data
Max. Memory
8 GB
3
Max. displays
3
7 nm
Technology
10 nm
Q1/2020
Release date
Q3/2020
2 GB
Max. GPU Memory
no data

Hardware codec support

Here we deal with specs that are used by some CPU manufacturers. These numbers are mainly technical and can be neglected for the purpose of the comparison analysis.

Decode / Encode
h264
Decode / Encode
Decode / Encode
JPEG
Decode / Encode
Decode / Encode
VP8
Decode
Decode / Encode
VP9
Decode
Decode
VC-1
Decode
Decode / Encode
AVC
Decode
Decode / Encode
h265 / HEVC (8 bit)
Decode / Encode
Decode / Encode
h265 / HEVC (10 bit)
Decode / Encode
No
AV1
No

Memory & PCIe

These are memory standards supported by CPUs. The higher such standards, the better a CPU’s performance is.

no data
Memory type
DDR4-3200LPDDR4-3733
no data
Max. Memory
64 GB
no data
Memory channels
2
no data
ECC
No
no data
PCIe version
4.0
no data
PCIe lanes
16

Encryption

Data encryption support

Yes
AES-NI
Yes

Memory & AMP; PCIe

DDR4-3200 LPDDR4-4266
Memory type
no data
32 GB
Max. Memory
no data
Yes
ECC
no data
2
Memory channels
no data
3.0
PCIe version
no data
12
PCIe lanes
no data

Thermal Management

The thermal design power (TDP), sometimes called thermal design point, is the maximum amount of heat generated by a computer chip or component (often a CPU, GPU or system on a chip) that the cooling system in a computer is designed to dissipate under any workload.

105 °C
Tjunction max.
100 °C
25 W
TDP up
28 W
10 W
TDP down
12 W
15 W
TDP (PL1)
15 W
--
TDP (PL2)
--

Technical details

8
CPU Threads
8
4.00 MB
L3-Cache
8.00 MB
7 nm
Technology
10 nm
Lucienne (Zen 2)
Architecture
Tiger Lake UP3
AMD-V, SVM
Virtualization
VT-x, VT-x EPT, VT-d
FP6
Socket
BGA 1526
Q1/2021
Release date
Q4/2020
x86-64 (64 bit)
Instruction set (ISA)
x86-64 (64 bit)
--
L2-Cache
--
--
Part Number
no data
SSE4a, SSE4.1, SSE4.2, AVX2, FMA3
ISA extensions
no data

Devices using this processor

You probably know already what devices use CPUs. These can be a desktop or a laptop.

Unknown
Used in
Unknown

Compatibility

Technologies and extensions

Virtualization technologies

Memory specs

Peripherals