AMD Ryzen Embedded R2514 vs AMD Athlon XP 2500+

Comparative analysis of AMD Ryzen Embedded R2514 and AMD Athlon XP 2500+ processors for all known characteristics in the following categories: Essentials, Performance, Memory, Compatibility, Peripherals. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark.

 

Differences

Reasons to consider the AMD Ryzen Embedded R2514

  • CPU is newer: launch date 19 year(s) 7 month(s) later
  • 3 more cores, run more applications at once: 4 vs 1
  • Around 102% higher clock speed: 3.7 GHz vs 1.83 GHz
  • A newer manufacturing process allows for a more powerful, yet cooler running processor: 12 nm vs 130 nm
  • 3x more L1 cache, more data can be stored in the L1 cache for quick access later
  • 4x more L2 cache, more data can be stored in the L2 cache for quick access later
  • 4.5x lower typical power consumption: 15 Watt vs 68 Watt
  • 5.8x better performance in PassMark - Single thread mark: 2037 vs 353
  • 29.8x better performance in PassMark - CPU mark: 6883 vs 231
Specifications (specs)
Launch date 30 Sep 2022 vs February 2003
Number of cores 4 vs 1
Maximum frequency 3.7 GHz vs 1.83 GHz
Manufacturing process technology 12 nm vs 130 nm
L1 cache 96 KB (per core) vs 128 KB
L2 cache 512 KB (per core) vs 512 KB
Thermal Design Power (TDP) 15 Watt vs 68 Watt
Benchmarks
PassMark - Single thread mark 2037 vs 353
PassMark - CPU mark 6883 vs 231

Compare benchmarks

CPU 1: AMD Ryzen Embedded R2514
CPU 2: AMD Athlon XP 2500+

PassMark - Single thread mark
CPU 1
CPU 2
2037
353
PassMark - CPU mark
CPU 1
CPU 2
6883
231
Name AMD Ryzen Embedded R2514 AMD Athlon XP 2500+
PassMark - Single thread mark 2037 353
PassMark - CPU mark 6883 231

Compare specifications (specs)

AMD Ryzen Embedded R2514 AMD Athlon XP 2500+

Essentials

Launch date 30 Sep 2022 February 2003
Place in performance rating 1212 3210
Architecture codename Barton
Vertical segment Desktop

Performance

Base frequency 2.1 GHz
Die size 210 mm² 101 mm
L1 cache 96 KB (per core) 128 KB
L2 cache 512 KB (per core) 512 KB
L3 cache 4 MB (shared)
Manufacturing process technology 12 nm 130 nm
Maximum core temperature 105°C
Maximum frequency 3.7 GHz 1.83 GHz
Number of cores 4 1
Number of threads 8
Transistor count 4,940 million 63 million
Unlocked

Memory

ECC memory support
Supported memory types DDR4

Compatibility

Configurable TDP 12-35 Watt
Max number of CPUs in a configuration 1 1
Sockets supported FP5 A
Thermal Design Power (TDP) 15 Watt 68 Watt

Peripherals

PCIe configurations Gen 3, 16 Lanes, (CPU only)