CPU Comparison: Intel Core i7-14700F vs AMD Ryzen Threadripper 2950X

Key Findings

  • The Intel Core i7-14700F leads in single-threaded performance by up to 75.0%
  • In multi-threaded workloads, the Intel Core i7-14700F shows superior performance with a 48.2% advantage
  • The AMD Ryzen Threadripper 2950X has the highest core count with 16 cores

Performance Rankings & Market Position

Intel Core i7-14700F

Desktop
Release Date
Q1 2024
Market Position
186th fastest in multithreading
4890 CPUs40th fastest in single threading
4890 CPUs53rd fastest in
1398 Desktop CPUs

AMD Ryzen Threadripper 2950X

Desktop
Release Date
Q3 2018
Market Position
347th fastest in multithreading
4890 CPUs899th fastest in single threading
4890 CPUs117th fastest in
1398 Desktop CPUs

Performance

Single-Thread Performance

i7-14700F
4,302
2950X
2,458

Multi-Thread Performance

i7-14700F
43,649
2950X
29,456

Specifications: Intel Core i7-14700F vs AMD Ryzen Threadripper 2950X

💻CPU Model
Intel Core i7-14700F
i7-14700F
AMD Ryzen Threadripper 2950X
2950X
🔄Other Names
Intel(R) Core(TM) i7-14700F, Intel Core i7-14700F
i7-14700F
AMD Ryzen Threadripper 2950X 16-Core Processor
2950X
⚡Base Clock
N/A
i7-14700F
3.5 GHz
2950X
🚀Turbo Clock
N/A
i7-14700F
4.4 GHz
2950X
💻Cores/Threads
N/A
i7-14700F
16 Threads: 32
2950X
🔌Socket
FCLGA1700
i7-14700F
sTR4
2950X
⚡TDP
65 W
i7-14700F
180 W
2950X
💾Cache
L1 Instruction Cache: 8 x 32 KBL1 Data Cache: 8 x 48 KBL2 Cache: 8 x 2048 KBL3 Cache: 33 MB
i7-14700F
L1 Instruction Cache: 16 x 64 KBL1 Data Cache: 16 x 32 KBL2 Cache: 16 x 512 KBL3 Cache: 32 MB
2950X

The Intel Core i7-14700F and AMD Ryzen Threadripper 2950X compete in the Desktop segment. The Intel Core i7-14700F shows superior single-thread performance, making it better for tasks like gaming and light workloads.

For multi-threaded applications, the AMD Ryzen Threadripper 2950X takes the lead, despite having the same core count.

Power consumption differs significantly, with the AMD Ryzen Threadripper 2950X drawing more power under load (180W vs 65W). This may impact system thermal design and power supply requirements.