CPU Comparison: AMD Ryzen 7 9800X3D vs Intel Xeon W-3175X @ 3.10GHz

Key Findings

  • The AMD Ryzen 7 9800X3D leads in single-threaded performance by up to 106.3%
  • In multi-threaded workloads, the AMD Ryzen 7 9800X3D shows superior performance with a 7.7% advantage
  • The Intel Xeon W-3175X @ 3.10GHz has the highest core count with 28 cores

Performance Rankings & Market Position

AMD Ryzen 7 9800X3D

Desktop
Release Date
Q4 2024
Market Position
214th fastest in multithreading
4890 CPUs33rd fastest in single threading
4890 CPUs61st fastest in
1398 Desktop CPUs

Intel Xeon W-3175X @ 3.10GHz

Desktop
Release Date
Q1 2019
Market Position
238th fastest in multithreading
4890 CPUs1274th fastest in single threading
4890 CPUs72nd fastest in
1398 Desktop CPUs

Performance

Single-Thread Performance

9800X3D
4,431
3.10GHz
2,148

Multi-Thread Performance

9800X3D
40,043
3.10GHz
37,167

Specifications: AMD Ryzen 7 9800X3D vs Intel Xeon W-3175X @ 3.10GHz

💻CPU Model
AMD Ryzen 7 9800X3D
9800X3D
Intel Xeon W-3175X @ 3.10GHz
3.10GHz
🔄Other Names
AMD Ryzen 7 9800X3D 8-Core Processor
9800X3D
Intel(R) Xeon(R) W-3175X CPU @ 3.10GHz
3.10GHz
⚡Base Clock
4.7 GHz
9800X3D
3.1 GHz
3.10GHz
🚀Turbo Clock
5.2 GHz
9800X3D
3.8 GHz
3.10GHz
💻Cores/Threads
8 Threads: 16
9800X3D
28 Threads: 56
3.10GHz
🔌Socket
AM5
9800X3D
FCLGA3647
3.10GHz
⚡TDP
120 W
9800X3D
255 W
3.10GHz
💾Cache
L1 Instruction Cache: 8 x 32 KBL1 Data Cache: 8 x 48 KBL2 Cache: 8 x 1024 KBL3 Cache: 96 MB
9800X3D
L1 Instruction Cache: 28 x 32 KBL1 Data Cache: 28 x 32 KBL2 Cache: 28 x 1024 KBL3 Cache: 39 MB
3.10GHz

The AMD Ryzen 7 9800X3D and Intel Xeon W-3175X @ 3.10GHz compete in the Desktop segment. The AMD Ryzen 7 9800X3D shows superior single-thread performance, making it better for tasks like gaming and light workloads.

For multi-threaded applications, the Intel Xeon W-3175X @ 3.10GHz takes the lead, despite having the same core count.

Power consumption differs significantly, with the Intel Xeon W-3175X @ 3.10GHz drawing more power under load (255W vs 120W). This may impact system thermal design and power supply requirements.