AMD Ryzen 3 3200GE vs Intel Core i9-9920X

Comparative analysis of AMD Ryzen 3 3200GE and Intel Core i9-9920X processors for all known characteristics in the following categories: Essentials, Performance, Memory, Graphics, Graphics interfaces, Compatibility, Peripherals, Security & Reliability, Advanced Technologies, Virtualization. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark, Geekbench 4 - Single Core, Geekbench 4 - Multi-Core, 3DMark Fire Strike - Physics Score.

 

Differences

Reasons to consider the AMD Ryzen 3 3200GE

  • CPU is newer: launch date 9 month(s) later
  • Around 3% higher maximum core temperature: 95 °C vs 92°C
  • A newer manufacturing process allows for a more powerful, yet cooler running processor: 12 nm vs 14 nm
  • 4.7x lower typical power consumption: 35 Watt vs 165 Watt
Launch date 7 Jul 2019 vs October 2018
Maximum core temperature 95 °C vs 92°C
Manufacturing process technology 12 nm vs 14 nm
Thermal Design Power (TDP) 35 Watt vs 165 Watt

Reasons to consider the Intel Core i9-9920X

  • 8 more cores, run more applications at once: 12 vs 4
  • 20 more threads: 24 vs 4
  • Around 16% higher clock speed: 4.40 GHz vs 3.8 GHz
  • 2x more L1 cache, more data can be stored in the L1 cache for quick access later
  • 6x more L2 cache, more data can be stored in the L2 cache for quick access later
  • 4.8x more L3 cache, more data can be stored in the L3 cache for quick access later
  • Around 20% better performance in PassMark - Single thread mark: 2637 vs 2206
  • 3.5x better performance in PassMark - CPU mark: 25223 vs 7309
Specifications (specs)
Number of cores 12 vs 4
Number of threads 24 vs 4
Maximum frequency 4.40 GHz vs 3.8 GHz
L1 cache 64K (per core) vs 384 KB
L2 cache 1 MB (per core) vs 2 MB
L3 cache 19.25 MB (shared) vs 4 MB
Benchmarks
PassMark - Single thread mark 2637 vs 2206
PassMark - CPU mark 25223 vs 7309

Compare benchmarks

CPU 1: AMD Ryzen 3 3200GE
CPU 2: Intel Core i9-9920X

PassMark - Single thread mark
CPU 1
CPU 2
2206
2637
PassMark - CPU mark
CPU 1
CPU 2
7309
25223
Name AMD Ryzen 3 3200GE Intel Core i9-9920X
PassMark - Single thread mark 2206 2637
PassMark - CPU mark 7309 25223
Geekbench 4 - Single Core 1168
Geekbench 4 - Multi-Core 12860
3DMark Fire Strike - Physics Score 0

Compare specifications (specs)

AMD Ryzen 3 3200GE Intel Core i9-9920X

Essentials

Architecture codename Zen Skylake
Launch date 7 Jul 2019 October 2018
OPN Tray YD3200C6M4MFH
Place in performance rating 1022 1018
Vertical segment Desktop Desktop
Processor Number i9-9920X
Series Intel® Core™ X-series Processors
Status Launched

Performance

Base frequency 3.3 GHz 3.50 GHz
L1 cache 384 KB 64K (per core)
L2 cache 2 MB 1 MB (per core)
L3 cache 4 MB 19.25 MB (shared)
Manufacturing process technology 12 nm 14 nm
Maximum core temperature 95 °C 92°C
Maximum frequency 3.8 GHz 4.40 GHz
Number of cores 4 12
Number of GPU cores 8
Number of threads 4 24
Unlocked
64 bit support
Bus Speed 8 GT/s DMI3
Maximum case temperature (TCase) 72 °C
Number of QPI Links 0

Memory

Max memory channels 2 4
Supported memory types DDR4-2933 DDR4-2666
Maximum memory size 128 GB

Graphics

Graphics base frequency 1200 MHz
iGPU core count 8
Processor graphics Radeon Vega 8 Graphics

Graphics interfaces

DisplayPort
HDMI

Compatibility

Sockets supported AM4 FCLGA2066
Thermal Design Power (TDP) 35 Watt 165 Watt
Max number of CPUs in a configuration 1
Thermal Solution PCG 2017X

Peripherals

PCI Express revision 3.0 3.0
Max number of PCIe lanes 44
Scalability 1S Only

Security & Reliability

Execute Disable Bit (EDB)
Intel® Trusted Execution technology (TXT)

Advanced Technologies

Enhanced Intel SpeedStep® technology
Instruction set extensions Intel® SSE4.1, Intel® SSE4.2, Intel® AVX2, Intel® AVX-512
Intel 64
Intel® Advanced Vector Extensions (AVX)
Intel® AES New Instructions
Intel® Hyper-Threading technology
Intel® Optane™ Memory Supported
Intel® Turbo Boost technology
Number of AVX-512 FMA Units 2

Virtualization

Intel® Virtualization Technology (VT-x)
Intel® Virtualization Technology for Directed I/O (VT-d)