AMD Ryzen 5 PRO 4650G vs AMD Ryzen Threadripper 2950X

Comparative analysis of AMD Ryzen 5 PRO 4650G and AMD Ryzen Threadripper 2950X processors for all known characteristics in the following categories: Essentials, Performance, Memory, Graphics, Graphics interfaces, Compatibility, Peripherals, Advanced Technologies, Virtualization. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark, 3DMark Fire Strike - Physics Score, Geekbench 4 - Single Core, Geekbench 4 - Multi-Core.

 

Differences

Reasons to consider the AMD Ryzen 5 PRO 4650G

  • CPU is newer: launch date 1 year(s) 10 month(s) later
  • Around 40% higher maximum core temperature: 95 °C vs 68°C
  • A newer manufacturing process allows for a more powerful, yet cooler running processor: 7 nm vs 12 nm
  • 2.8x lower typical power consumption: 65 Watt vs 180 Watt
  • Around 8% better performance in PassMark - Single thread mark: 2657 vs 2457
Specifications (specs)
Launch date 21 Jul 2020 vs 31 August 2018
Maximum core temperature 95 °C vs 68°C
Manufacturing process technology 7 nm vs 12 nm
Thermal Design Power (TDP) 65 Watt vs 180 Watt
Benchmarks
PassMark - Single thread mark 2657 vs 2457

Reasons to consider the AMD Ryzen Threadripper 2950X

  • Processor is unlocked, an unlocked multiplier allows for easier overclocking
  • 10 more cores, run more applications at once: 16 vs 6
  • 20 more threads: 32 vs 12
  • Around 5% higher clock speed: 4.4 GHz vs 4.2 GHz
  • 4x more L1 cache, more data can be stored in the L1 cache for quick access later
  • 2.7x more L2 cache, more data can be stored in the L2 cache for quick access later
  • 4x more L3 cache, more data can be stored in the L3 cache for quick access later
  • Around 81% better performance in PassMark - CPU mark: 29384 vs 16211
  • Around 65% better performance in 3DMark Fire Strike - Physics Score: 7974 vs 4836
Specifications (specs)
Unlocked Unlocked vs Locked
Number of cores 16 vs 6
Number of threads 32 vs 12
Maximum frequency 4.4 GHz vs 4.2 GHz
L1 cache 1536 KB vs 384 KB
L2 cache 8 MB vs 3 MB
L3 cache 32 MB vs 8 MB
Benchmarks
PassMark - CPU mark 29384 vs 16211
3DMark Fire Strike - Physics Score 7974 vs 4836

Compare benchmarks

CPU 1: AMD Ryzen 5 PRO 4650G
CPU 2: AMD Ryzen Threadripper 2950X

PassMark - Single thread mark
CPU 1
CPU 2
2657
2457
PassMark - CPU mark
CPU 1
CPU 2
16211
29384
3DMark Fire Strike - Physics Score
CPU 1
CPU 2
4836
7974
Name AMD Ryzen 5 PRO 4650G AMD Ryzen Threadripper 2950X
PassMark - Single thread mark 2657 2457
PassMark - CPU mark 16211 29384
3DMark Fire Strike - Physics Score 4836 7974
Geekbench 4 - Single Core 1059
Geekbench 4 - Multi-Core 12581

Compare specifications (specs)

AMD Ryzen 5 PRO 4650G AMD Ryzen Threadripper 2950X

Essentials

Architecture codename Zen 2 Zen+
Launch date 21 Jul 2020 31 August 2018
OPN Tray 100-000000143 YD295XA8UGAAF
Place in performance rating 978 838
Vertical segment Desktop Desktop
Family AMD Ryzen Processors
OPN PIB YD295XA8AFWOF
OS Support Windows 10 - 64-Bit Edition, RHEL x86 64-Bit, Ubuntu x86 64-Bit
Price now $899.99
Series AMD Ryzen Threadripper Processors
Value for money (0-100) 8.50

Performance

Base frequency 3.7 GHz 3.5 GHz
L1 cache 384 KB 1536 KB
L2 cache 3 MB 8 MB
L3 cache 8 MB 32 MB
Manufacturing process technology 7 nm 12 nm
Maximum core temperature 95 °C 68°C
Maximum frequency 4.2 GHz 4.4 GHz
Number of cores 6 16
Number of GPU cores 7
Number of threads 12 32
Unlocked
64 bit support
Die size 213 mm
Transistor count 9600 million

Memory

Max memory channels 2 4
Supported memory types DDR4-3200 DDR4
Supported memory frequency 2933 MHz

Graphics

Graphics base frequency 1900 MHz
iGPU core count 7
Processor graphics Radeon Graphics

Graphics interfaces

DisplayPort
HDMI

Compatibility

Configurable TDP 45-65 Watt
Sockets supported AM4 sTR4
Thermal Design Power (TDP) 65 Watt 180 Watt
Max number of CPUs in a configuration 1
Thermal Solution Not included

Peripherals

PCI Express revision 3.0 3.0

Advanced Technologies

AMD SenseMI
The "Zen" Core Architecture

Virtualization

AMD Virtualization (AMD-V™)