Intel Pentium 2030M vs AMD Ryzen 5 3500U

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CPU comparison with benchmarks

-VS-

CPU lineage

Intel Pentium 2030M or Intel Pentium 2030M – which processor offers superior performance? In this comparison, we examine disparities and assess which of these two CPUs outperforms the other. We delve into technical specifications and benchmark outcomes.
The Intel Pentium 2030M features 2 processor cores and has the capability to manage 2 threads concurrently.
It was released in Q1/2013 and belongs to the 4 generation of the Intel Pentium series.
To use the Intel Pentium 2030M, you'll need a motherboard with a PGA 988 socket.
The AMD Ryzen 5 3500U features 4 processor cores and has the capability to manage 8 threads concurrently.
It was released in Q1/2019 and belongs to the 2 generation of the AMD Ryzen 5 series.
To use the AMD Ryzen 5 3500U, you'll need a motherboard with a FP5 socket.
Mobile Segment Mobile
Intel Pentium 2030M Name AMD Ryzen 5 3500U
Intel Pentium Family AMD Ryzen 5
4 Generation 2
Intel Pentium 2000 Group AMD Ryzen 3000U
 
 

CPU Cores and Base Frequency

The Intel Pentium 2030M has 2 CPU cores and can calculate 2 threads in parallel.
The clock frequency of the Intel Pentium 2030M is 2.5 GHz
The AMD Ryzen 5 3500U has 4 CPU cores and can calculate 8 threads in parallel.
The clock frequency of the AMD Ryzen 5 3500U is 2.1 GHz
and turbo frequency for one core is 3.7 GHz.
2 Threads 8
None None 3.0 GHz
No Hyperthreading Yes
2x Cores 4x
No Overclocking No
normal Core architecture normal
2.5 GHz Frequency 2.1 GHz
None None 3.7 GHz
2 CPU Cores 4
 
 

Internal Graphics

The Intel Pentium 2030M has integrated graphics, called iGPU for short.
Specifically, the Intel Pentium 2030M uses the Intel HD Graphics (Ivy Bridge GT1), which has 48 texture shaders
and 6 execution units.
The iGPU uses the system's main memory as graphics memory and sits on the processor's die.
The AMD Ryzen 5 3500U has integrated graphics, called iGPU for short.
Specifically, the AMD Ryzen 5 3500U uses the AMD Radeon Vega 8 Graphics, which has 512 texture shaders
and 8 execution units.
0.65 GHz GPU frequency 1.2 GHz
Q4/2012 Release date Q1/2018
11.0 Direct X 12
Intel HD Graphics (Ivy Bridge GT1) GPU name AMD Radeon Vega 8 Graphics
22 nm Technology 14 nm
-- Max. displays --
48 Shaders 512
2.0 GB Max. GPU Memory 2.0 GB
6 Execution units 8
7 Generation 8
1.1 GHz GPU (Turbo) --
 
 

Artificial Intelligence and Machine Learning

-- AI specifications --
-- AI hardware --
 
 

Hardware codec support

A photo or video codec that is accelerated in hardware can greatly accelerate the working speed of a processor and extend the battery life of notebooks or smartphones when playing videos.
Decode / Encode AVC Decode / Encode
Decode VC-1 Decode
No VP9 Decode / Encode
No h265 / HEVC (10 bit) Decode / Encode
Decode / Encode h264 Decode / Encode
No VP8 Decode / Encode
No h265 / HEVC (8 bit) Decode / Encode
Decode JPEG Decode / Encode
No AV1 No
 
 

Memory & PCIe

The processor supports a maximum memory capacity of 32.0 GB distributed across 2 memory channels. It offers a peak memory bandwidth of 25.6 GB/s. Both the type and quantity of memory can have a substantial impact on the overall system performance.
The processor supports a maximum memory capacity of 32.0 GB distributed across 2 memory channels. It offers a peak memory bandwidth of 38.4 GB/s. Both the type and quantity of memory can have a substantial impact on the overall system performance.
2 Memory channels 2
32.0 GB Max. Memory 32.0 GB
pci PCIe pci
Yes AES-NI Yes
No ECC Yes
25.6 GB/s Bandwidth 38.4 GB/s
DDR3L-1600, DDR3L-1333, DDR3-1333, DDR3-1600 Memory type DDR4-2400
 
 

Thermal Management

The processor has a thermal design power (TDP) of 35 W watts.
TDP indicates the cooling solution needed to effectively manage the processor's heat. It generally provides an approximate indication of the actual power consumption of the CPU itself.
The processor has a thermal design power (TDP) of 15 W watts.
None TDP up 35 W
90 °C Tjunction max 105 °C
35 W TDP (PL1 / PBP) 15 W
None TDP down 12 W
 
 

Technical details

The Intel Pentium 2030M is manufactured using a 22 nm process.
A smaller manufacturing process indicates a more contemporary and energy-efficient CPU.
In total, this processor boasts a generous 2.0 MB cache.
A substantial cache can significantly enhance the processor's performance, particularly in scenarios like gaming.
The AMD Ryzen 5 3500U is manufactured using a 12 nm process.
In total, this processor boasts a generous 4.0 MB cache.
Q1/2013 Release date Q1/2019
-- Part Number --
0 bytes L2-Cache 0 bytes
VT-x, VT-x EPT, VT-d Virtualization AMD-V, SVM
SSE4.1, SSE4.2 ISA extensions SSE4a, SSE4.1, SSE4.2, FMA3, AVX2
Monolithic Chip design Chiplet
Ivy Bridge U Architecture Picasso (Zen+)
22 nm Technology 12 nm
PGA 988 Socket FP5
Windows 10, Linux Operating systems Windows 10, Linux, Windows 11
-- Release price --
Technical data sheet Documents Technical data sheet
x86-64 (64 bit) Instruction set (ISA) x86-64 (64 bit)
2.0 MB L3-Cache 4.0 MB
 
 

Benchmarks

Geekbench 6 (Multi-Core)

AMD Ryzen 5 3500U
4C 8T @ 2.1 GHz
2907
2907
Intel Pentium 2030M
2C 2T @ 2.5 GHz
754
754

Geekbench 5, 64bit (Multi-Core)

AMD Ryzen 5 3500U
4C 8T @ 2.1 GHz
2579
2579
Intel Pentium 2030M
2C 2T @ 2.5 GHz
968
968

Geekbench 6 (Single-Core)

AMD Ryzen 5 3500U
4C 8T @ 2.1 GHz
976
976
Intel Pentium 2030M
2C 2T @ 2.5 GHz
421
421