AMD EPYC 3451 vs Intel Xeon Silver 4116T
Comparative analysis of AMD EPYC 3451 and Intel Xeon Silver 4116T processors for all known characteristics in the following categories: Essentials, Performance, Memory, Compatibility, Peripherals, Security & Reliability, Advanced Technologies, Virtualization. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark.
Differences
Reasons to consider the AMD EPYC 3451
- 4 more cores, run more applications at once: 16 vs 12
- 8 more threads: 32 vs 24
- Around 15% higher maximum core temperature: 105°C vs 91°C
- Around 29% better performance in PassMark - CPU mark: 19532 vs 15187
| Specifications (specs) | |
| Number of cores | 16 vs 12 |
| Number of threads | 32 vs 24 |
| Maximum core temperature | 105°C vs 91°C |
| Benchmarks | |
| PassMark - CPU mark | 19532 vs 15187 |
Reasons to consider the Intel Xeon Silver 4116T
- Around 18% lower typical power consumption: 85 Watt vs 100 Watt
- Around 5% better performance in PassMark - Single thread mark: 1781 vs 1700
| Specifications (specs) | |
| Thermal Design Power (TDP) | 85 Watt vs 100 Watt |
| Benchmarks | |
| PassMark - Single thread mark | 1781 vs 1700 |
Compare benchmarks
CPU 1: AMD EPYC 3451
CPU 2: Intel Xeon Silver 4116T
| PassMark - Single thread mark |
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| PassMark - CPU mark |
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| Name | AMD EPYC 3451 | Intel Xeon Silver 4116T |
|---|---|---|
| PassMark - Single thread mark | 1700 | 1781 |
| PassMark - CPU mark | 19532 | 15187 |
Compare specifications (specs)
| AMD EPYC 3451 | Intel Xeon Silver 4116T | |
|---|---|---|
Essentials |
||
| Architecture codename | Zen (Snowy Owl) | Skylake |
| Launch date | 21 Feb 2018 | Q3'17 |
| Place in performance rating | 1217 | 1239 |
| Processor Number | 4116T | |
| Series | Intel® Xeon® Scalable Processors | |
| Status | Launched | |
| Vertical segment | Server | |
Performance |
||
| Base frequency | 2.15 GHz | 2.10 GHz |
| Die size | 2x 213 mm² | |
| L1 cache | 96K (per core) | |
| L2 cache | 512K (per core) | |
| L3 cache | 32MB (shared) | |
| Manufacturing process technology | 14 nm | 14 nm |
| Maximum core temperature | 105°C | 91°C |
| Maximum frequency | 3 GHz | 3.00 GHz |
| Number of cores | 16 | 12 |
| Number of threads | 32 | 24 |
| Transistor count | 4,800 million | |
| Unlocked | ||
| Number of Ultra Path Interconnect (UPI) Links | 2 | |
Memory |
||
| ECC memory support | ||
| Supported memory types | DDR4-2666 MHz, Dual-channel | DDR4-2400 |
| Max memory channels | 6 | |
| Maximum memory size | 768 GB | |
| Supported memory frequency | 2400 MHz | |
Compatibility |
||
| Configurable TDP | 80-100 W | |
| Max number of CPUs in a configuration | 1 | |
| Sockets supported | AMD BGA SP4r2 | FCLGA3647 |
| Thermal Design Power (TDP) | 100 Watt | 85 Watt |
| Low Halogen Options Available | ||
| Package Size | 76.0mm x 56.5mm | |
Peripherals |
||
| PCIe configurations | Gen 3, 64 Lanes, (CPU only) | |
| Max number of PCIe lanes | 48 | |
| PCI Express revision | 3.0 | |
| Scalability | 2S | |
Security & Reliability |
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| Execute Disable Bit (EDB) | ||
| Intel® Trusted Execution technology (TXT) | ||
| Mode-based Execute Control (MBE) | ||
Advanced Technologies |
||
| Enhanced Intel SpeedStep® technology | ||
| Instruction set extensions | Intel® SSE4.2, Intel® AVX, Intel® AVX2, Intel® AVX-512 | |
| Intel 64 | ||
| Intel® AES New Instructions | ||
| Intel® Hyper-Threading technology | ||
| Intel® Optane™ Memory Supported | ||
| Intel® TSX-NI | ||
| Intel® Turbo Boost technology | ||
| Intel® Volume Management Device (VMD) | ||
| Intel® vPro™ Platform Eligibility | ||
| Number of AVX-512 FMA Units | 1 | |
| Speed Shift technology | ||
Virtualization |
||
| Intel® Virtualization Technology (VT-x) | ||
| Intel® Virtualization Technology for Directed I/O (VT-d) | ||
| Intel® VT-x with Extended Page Tables (EPT) | ||