Intel Atom x7-E3950 | Intel Celeron J3455 | |
12 W | Max TDP | 10 W |
NA | Power consumption per day (kWh) | NA |
NA | Running cost per day | NA |
NA | Power consumption per year (kWh) | NA |
NA | Running cost per year | NA |
Intel Atom x7-E3950 vs Intel Celeron J3455

The Intel Atom x7-E3950 operates with 4 cores and 4 CPU threads. It run at 2.00 GHz base -- all cores while the TDP is set at 12 W.The processor is attached to the BGA 1296 CPU socket. This version includes 2.00 MB of L3 cache on one chip, supports 4 memory channels to support LPDDR3-1866 RAM and features 2.0 PCIe Gen 6 lanes. Tjunction keeps below 110 °C degrees C. In particular, Cherry Trail Architecture is enhanced with 14 nm technology and supports VT-x, VT-x EPT. The product was launched on Q4/2016

The Intel Celeron J3455 operates with 4 cores and 4 CPU threads. It run at 2.30 GHz base 2.20 GHz all cores while the TDP is set at 10 W.The processor is attached to the BGA 1296 CPU socket. This version includes 2.00 MB of L3 cache on one chip, supports 2 memory channels to support RAM and features 2.0 PCIe Gen 6 lanes. Tjunction keeps below -- degrees C. In particular, Apollo Lake Architecture is enhanced with 14 nm technology and supports VT-x, VT-x EPT, VT-d. The product was launched on Q3/2016
Intel Atom x7-E3950
Intel Celeron J3455
Compare Detail
1.60 GHz | Frequency | 1.50 GHz |
4 | Cores | 4 |
2.00 GHz | Turbo (1 Core) | 2.30 GHz |
-- | Turbo (All Cores) | 2.20 GHz |
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Hyperthreading | No |
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Overclocking | No ![]() |
normal | Core Architecture | normal |
Intel HD Graphics 505 | GPU | Intel HD Graphics 500 |
0.65 GHz | GPU (Turbo) | 0.75 GHz |
14 nm | Technology | 14 nm |
0.65 GHz | GPU (Turbo) | 0.75 GHz |
12 | DirectX Version | 12 |
3 | Max. displays | 3 |
LPDDR3-1866 | Memory | |
4 | Memory channels | 2 |
Max memory | ||
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ECC | No ![]() |
-- | L2 Cache | -- |
2.00 MB | L3 Cache | 2.00 MB |
2.0 | PCIe version | 2.0 |
6 | PCIe lanes | 6 |
14 nm | Technology | 14 nm |
BGA 1296 | Socket | BGA 1296 |
12 W | TDP | 10 W |
VT-x, VT-x EPT | Virtualization | VT-x, VT-x EPT, VT-d |
Q4/2016 | Release date | Q3/2016 |
Cinebench R20 (Single-Core)
Cinebench R20 is the successor of Cinebench R15 and is also based on the Cinema 4 Suite. Cinema 4 is a worldwide used software to create 3D forms. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
Cinebench R20 (Multi-Core)
Cinebench R20 is the successor of Cinebench R15 and is also based on the Cinema 4 Suite. Cinema 4 is a worldwide used software to create 3D forms. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
Cinebench R15 (Single-Core)
Cinebench R15 is the successor of Cinebench 11.5 and is also based on the Cinema 4 Suite. Cinema 4 is a worldwide used software to create 3D forms. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
Cinebench R15 (Multi-Core)
Cinebench R15 is the successor of Cinebench 11.5 and is also based on the Cinema 4 Suite. Cinema 4 is a worldwide used software to create 3D forms. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
Geekbench 5, 64bit (Single-Core)
Geekbench 5 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
Geekbench 5, 64bit (Multi-Core)
Geekbench 5 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
iGPU - FP32 Performance (Single-precision GFLOPS)
The theoretical computing performance of the internal graphics unit of the processor with simple accuracy (32 bit) in GFLOPS. GFLOPS indicates how many billion floating point operations the iGPU can perform per second.
Geekbench 3, 64bit (Single-Core)
Geekbench 3 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
Geekbench 3, 64bit (Multi-Core)
Geekbench 3 is a cross plattform benchmark that heavily uses the systems memory. A fast memory will push the result a lot. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
Cinebench R11.5, 64bit (Single-Core)
Cinebench 11.5 is based on the Cinema 4D Suite, a software that is popular to generate forms and other stuff in 3D. The single-core test only uses one CPU core, the amount of cores or hyperthreading ability doesn't count.
Cinebench R11.5, 64bit (Multi-Core)
Cinebench 11.5 is based on the Cinema 4D Suite, a software that is popular to generate forms and other stuff in 3D. The multi-core test involves all CPU cores and taks a big advantage of hyperthreading.
Cinebench R11.5, 64bit (iGPU, OpenGL)
Cinebench 11.5 is based on the Cinema 4D Suite, a software that is popular to generate forms and other stuff in 3D. The iGPU test uses the CPU internal graphic unit to execute OpenGL commands.
Estimated results for PassMark CPU Mark
Some of the CPUs listed below have been benchmarked by CPU-Comparison. However the majority of CPUs have not been tested and the results have been estimated by a CPU-Comparison’s secret proprietary formula. As such they do not accurately reflect the actual Passmark CPU mark values and are not endorsed by PassMark Software Pty Ltd.

Electric Usage Estimate
