AMD A4-5000 vs Intel Atom D425
Comparative analysis of AMD A4-5000 and Intel Atom D425 processors for all known characteristics in the following categories: Essentials, Performance, Memory, Graphics, Graphics interfaces, Graphics API support, Compatibility, Peripherals, Advanced Technologies, Virtualization, Security & Reliability. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark, Geekbench 4 - Single Core, Geekbench 4 - Multi-Core, CompuBench 1.5 Desktop - Face Detection (mPixels/s), CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s), CompuBench 1.5 Desktop - T-Rex (Frames/s), CompuBench 1.5 Desktop - Video Composition (Frames/s), CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s), GFXBench 4.0 - Car Chase Offscreen (Frames), GFXBench 4.0 - Manhattan (Frames), GFXBench 4.0 - T-Rex (Frames), GFXBench 4.0 - Car Chase Offscreen (Fps), GFXBench 4.0 - Manhattan (Fps), GFXBench 4.0 - T-Rex (Fps).
Differences
Reasons to consider the AMD A4-5000
- CPU is newer: launch date 2 year(s) 11 month(s) later
- 3 more cores, run more applications at once: 4 vs 1
- 2 more threads: 4 vs 2
- A newer manufacturing process allows for a more powerful, yet cooler running processor: 28 nm vs 45 nm
- 4x 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
- Around 86% better performance in PassMark - Single thread mark: 504 vs 271
- 6.3x better performance in PassMark - CPU mark: 1285 vs 204
Specifications (specs) | |
Launch date | 23 May 2013 vs June 2010 |
Number of cores | 4 vs 1 |
Number of threads | 4 vs 2 |
Manufacturing process technology | 28 nm vs 45 nm |
L1 cache | 256 KB vs 64 KB (per core) |
L2 cache | 2 MB vs 512 KB (per core) |
Benchmarks | |
PassMark - Single thread mark | 504 vs 271 |
PassMark - CPU mark | 1285 vs 204 |
Reasons to consider the Intel Atom D425
- Around 11% higher maximum core temperature: 100°C vs 90°C
- Around 50% lower typical power consumption: 10 Watt vs 15 Watt
- 2.8x better performance in Geekbench 4 - Single Core: 497 vs 175
- Around 4% better performance in Geekbench 4 - Multi-Core: 602 vs 580
Specifications (specs) | |
Maximum core temperature | 100°C vs 90°C |
Thermal Design Power (TDP) | 10 Watt vs 15 Watt |
Benchmarks | |
Geekbench 4 - Single Core | 497 vs 175 |
Geekbench 4 - Multi-Core | 602 vs 580 |
Compare benchmarks
CPU 1: AMD A4-5000
CPU 2: Intel Atom D425
PassMark - Single thread mark |
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PassMark - CPU mark |
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Geekbench 4 - Single Core |
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Geekbench 4 - Multi-Core |
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Name | AMD A4-5000 | Intel Atom D425 |
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PassMark - Single thread mark | 504 | 271 |
PassMark - CPU mark | 1285 | 204 |
Geekbench 4 - Single Core | 175 | 497 |
Geekbench 4 - Multi-Core | 580 | 602 |
CompuBench 1.5 Desktop - Face Detection (mPixels/s) | 2.119 | |
CompuBench 1.5 Desktop - Ocean Surface Simulation (Frames/s) | 5.104 | |
CompuBench 1.5 Desktop - T-Rex (Frames/s) | 0.111 | |
CompuBench 1.5 Desktop - Video Composition (Frames/s) | 0.24 | |
CompuBench 1.5 Desktop - Bitcoin Mining (mHash/s) | 1.373 | |
GFXBench 4.0 - Car Chase Offscreen (Frames) | 479 | |
GFXBench 4.0 - Manhattan (Frames) | 1133 | |
GFXBench 4.0 - T-Rex (Frames) | 2123 | |
GFXBench 4.0 - Car Chase Offscreen (Fps) | 479 | |
GFXBench 4.0 - Manhattan (Fps) | 1133 | |
GFXBench 4.0 - T-Rex (Fps) | 2123 |
Compare specifications (specs)
AMD A4-5000 | Intel Atom D425 | |
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Essentials |
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Architecture codename | Kabini | Pineview |
Family | AMD A-Series Processors | |
Launch date | 23 May 2013 | June 2010 |
OPN Tray | AM5000IBJ44HMD | |
Place in performance rating | 2823 | 3150 |
Series | AMD A4-Series APU for Laptops | Legacy Intel Atom® Processors |
Vertical segment | Laptop, Tablet | Desktop |
Launch price (MSRP) | $993 | |
Price now | $992.98 | |
Processor Number | D425 | |
Status | Discontinued | |
Value for money (0-100) | 0.10 | |
Performance |
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64 bit support | ||
Base frequency | 1.5 GHz | 1.80 GHz |
Die size | 246 mm | 66 mm2 |
L1 cache | 256 KB | 64 KB (per core) |
L2 cache | 2 MB | 512 KB (per core) |
Manufacturing process technology | 28 nm | 45 nm |
Maximum case temperature (TCase) | 90 °C | |
Maximum core temperature | 90°C | 100°C |
Number of cores | 4 | 1 |
Number of threads | 4 | 2 |
Transistor count | 1178 million | 123 million |
Unlocked | ||
Bus Speed | 2.5 GT/s DMI | |
Maximum frequency | 1.8 GHz | |
VID voltage range | 0.800V-1.175V | |
Memory |
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Max memory channels | 1 | 1 |
Supported memory frequency | 1600 MHz | |
Supported memory types | DDR3 | DDR3 800 (SODIMM only); DDR2 667/800 |
Maximum memory bandwidth | 6.4 GB/s | |
Maximum memory size | 4 GB | |
Graphics |
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Enduro | ||
Graphics max frequency | 500 MHz | |
iGPU core count | 128 | |
Processor graphics | AMD Radeon HD 8330 | Integrated |
Switchable graphics | ||
Unified Video Decoder (UVD) | ||
Video Codec Engine (VCE) | ||
Graphics interfaces |
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DisplayPort | ||
HDMI | ||
Graphics API support |
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DirectX | 12 | |
Vulkan | ||
Compatibility |
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Max number of CPUs in a configuration | 1 | 1 |
Sockets supported | FT3 | FCBGA559 |
Thermal Design Power (TDP) | 15 Watt | 10 Watt |
Low Halogen Options Available | ||
Package Size | 22mm x 22mm | |
Peripherals |
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PCI Express revision | 2.0 | |
Advanced Technologies |
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AMD App Acceleration | ||
AMD Elite Experiences | ||
AMD HD3D technology | ||
Enhanced Virus Protection (EVP) | ||
Fused Multiply-Add (FMA) | ||
Fused Multiply-Add 4 (FMA4) | ||
Intel® Advanced Vector Extensions (AVX) | ||
Intel® AES New Instructions | ||
PowerGating | ||
PowerNow | ||
VirusProtect | ||
Enhanced Intel SpeedStep® technology | ||
Idle States | ||
Instruction set extensions | Intel® SSE2, Intel® SSE3, Intel® SSSE3 | |
Intel 64 | ||
Intel® Demand Based Switching | ||
Intel® Hyper-Threading technology | ||
Intel® Turbo Boost technology | ||
Physical Address Extensions (PAE) | 32-bit | |
Thermal Monitoring | ||
Virtualization |
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AMD Virtualization (AMD-V™) | ||
IOMMU 2.0 | ||
Intel® Virtualization Technology (VT-x) | ||
Intel® Virtualization Technology for Directed I/O (VT-d) | ||
Security & Reliability |
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Execute Disable Bit (EDB) | ||
Intel® Trusted Execution technology (TXT) |