CPU Comparison: Intel Core i5-14600KF vs AMD Ryzen Threadripper 2920X
Key Findings
- The Intel Core i5-14600KF leads in single-threaded performance by up to 71.9%
- In multi-threaded workloads, the Intel Core i5-14600KF shows superior performance with a 54.2% advantage
- The AMD Ryzen Threadripper 2920X has the highest core count with 12 cores
Performance Rankings & Market Position
Intel Core i5-14600KF
Release Date
Q4 2023
Market Position
218th fastest in multithreading
4890 CPUs44th fastest in single threading
4890 CPUs63rd fastest in
1398 Desktop CPUs
AMD Ryzen Threadripper 2920X
Release Date
Q4 2018
Market Position
454th fastest in multithreading
4890 CPUs862nd fastest in single threading
4890 CPUs152nd fastest in
1398 Desktop CPUs
Performance
Single-Thread Performance
i5-14600KF
4,281
2920X
2,491
Multi-Thread Performance
i5-14600KF
39,246
2920X
25,454
Specifications: Intel Core i5-14600KF vs AMD Ryzen Threadripper 2920X
💻CPU Model
Intel Core i5-14600KF
i5-14600KF
AMD Ryzen Threadripper 2920X
2920X
🔄Other Names
Intel(R) Core(TM) i5-14600KF, Intel Core i5-14600KF
i5-14600KF
AMD Ryzen Threadripper 2920X 12-Core Processor
2920X
⚡Base Clock
N/A
i5-14600KF
3.5 GHz
2920X
🚀Turbo Clock
N/A
i5-14600KF
4.3 GHz
2920X
💻Cores/Threads
N/A
i5-14600KF
12 Threads: 24
2920X
🔌Socket
FCLGA1700
i5-14600KF
sTR4
2920X
⚡TDP
125 W
i5-14600KF
180 W
2920X
💾Cache
L1 Instruction Cache: 6 x 32 KBL1 Data Cache: 6 x 48 KBL2 Cache: 6 x 2048 KBL3 Cache: 24 MB
i5-14600KF
L1 Instruction Cache: 12 x 64 KBL1 Data Cache: 12 x 32 KBL2 Cache: 12 x 512 KBL3 Cache: 32 MB
2920X
The Intel Core i5-14600KF and AMD Ryzen Threadripper 2920X compete in the Desktop segment. The Intel Core i5-14600KF shows superior single-thread performance, making it better for tasks like gaming and light workloads.
For multi-threaded applications, the AMD Ryzen Threadripper 2920X takes the lead, despite having the same core count.
Power consumption differs significantly, with the AMD Ryzen Threadripper 2920X drawing more power under load (180W vs 125W). This may impact system thermal design and power supply requirements.