Intel Atom x6414RE vs AMD Turion 64 ML-40
Comparative analysis of Intel Atom x6414RE and AMD Turion 64 ML-40 processors for all known characteristics in the following categories: Essentials, Performance, Memory, Graphics, Graphics interfaces, Graphics image quality, Graphics API support, Compatibility, Peripherals, Security & Reliability, Advanced Technologies, Virtualization. Benchmark processor performance analysis: PassMark - Single thread mark, PassMark - CPU mark.
Differences
Reasons to consider the Intel Atom x6414RE
- 3 more cores, run more applications at once: 4 vs 1
- 3 more threads: 4 vs 1
- A newer manufacturing process allows for a more powerful, yet cooler running processor: 10 nm vs 90 nm
- Around 50% more L2 cache; more data can be stored in the L2 cache for quick access later
- 3.9x lower typical power consumption: 9 Watt vs 35 Watt
- 4.6x better performance in PassMark - CPU mark: 1544 vs 336
Specifications (specs) | |
Number of cores | 4 vs 1 |
Number of threads | 4 vs 1 |
Manufacturing process technology | 10 nm vs 90 nm |
L2 cache | 1.5 MB vs 1024 KB |
Thermal Design Power (TDP) | 9 Watt vs 35 Watt |
Benchmarks | |
PassMark - CPU mark | 1544 vs 336 |
Reasons to consider the AMD Turion 64 ML-40
- Around 9% better performance in PassMark - Single thread mark: 662 vs 608
Benchmarks | |
PassMark - Single thread mark | 662 vs 608 |
Compare benchmarks
CPU 1: Intel Atom x6414RE
CPU 2: AMD Turion 64 ML-40
PassMark - Single thread mark |
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PassMark - CPU mark |
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Name | Intel Atom x6414RE | AMD Turion 64 ML-40 |
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PassMark - Single thread mark | 608 | 662 |
PassMark - CPU mark | 1544 | 336 |
Compare specifications (specs)
Intel Atom x6414RE | AMD Turion 64 ML-40 | |
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Essentials |
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Architecture codename | Elkhart Lake | Lancaster |
Launch date | Q1'21 | June 2005 |
Launch price (MSRP) | $55 | |
Place in performance rating | 2783 | 2770 |
Processor Number | 6414RE | |
Series | Intel Atom Processor X Series | Turion 64 |
Vertical segment | Embedded | Laptop |
Performance |
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64 bit support | ||
Base frequency | 1.50 GHz | |
L2 cache | 1.5 MB | 1024 KB |
Manufacturing process technology | 10 nm | 90 nm |
Maximum core temperature | 110°C | |
Number of cores | 4 | 1 |
Number of threads | 4 | 1 |
Operating Temperature Range | -40°C to 85°C | |
Die size | 125 mm | |
Front-side bus (FSB) | 800 MHz | |
L1 cache | 128 KB | |
Maximum frequency | 2.2 GHz | |
Transistor count | 114 million | |
Memory |
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Max memory channels | 4 | |
Maximum memory bandwidth | 51.2 GB/s | |
Maximum memory size | 32 GB | |
Supported memory types | 4x32 LPDDR4/x 3200MT/s Max 16GB / 2x64 DDR4 3200MT/s Max 32GB, LPDDR4/x & DDR4 with In Band ECC, | |
Graphics |
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Execution Units | 16 | |
Graphics base frequency | 400 MHz | |
Intel® Quick Sync Video | ||
Processor graphics | Intel UHD Graphics for 10th Gen Intel Processors | |
Graphics interfaces |
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DisplayPort | ||
eDP | ||
HDMI | ||
MIPI-DSI | ||
Number of displays supported | 3 | |
Graphics image quality |
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4K resolution support | ||
Max resolution over DisplayPort | 4096x2160@ 60Hz | |
Max resolution over eDP | 4096x2160@ 60Hz | |
Graphics API support |
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DirectX | Yes | |
OpenGL | Yes | |
Compatibility |
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Max number of CPUs in a configuration | 1 | 1 |
Package Size | 35mm x 24mm | |
Sockets supported | FCBGA1493 | 754 |
Thermal Design Power (TDP) | 9 Watt | 35 Watt |
Peripherals |
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Integrated LAN | ||
Max number of PCIe lanes | 8 | |
Number of USB ports | 4 | |
PCI Express revision | 3.0 | |
PCIe configurations | PCIe 0: 1 x4/2 x2/1 x2 + 2 x1/4 x1, PCIe 1-3: 1 x2/1 x1 | |
Total number of SATA ports | 2 | |
UART | ||
USB revision | 2.0/3.0/3.1 | |
Security & Reliability |
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Execute Disable Bit (EDB) | ||
Intel® OS Guard | ||
Intel® Secure Key technology | ||
Intel® Trusted Execution technology (TXT) | ||
Secure Boot | ||
Advanced Technologies |
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General-Purpose Input/Output (GPIO) | ||
HD Audio | ||
Idle States | ||
Intel 64 | ||
Intel® AES New Instructions | ||
Intel® Hyper-Threading technology | ||
Speed Shift technology | ||
PowerNow | ||
Virtualization |
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Intel® Virtualization Technology (VT-x) | ||
Intel® Virtualization Technology for Directed I/O (VT-d) |