Notebookcheck Logo

Intel Core Ultra 7 165U vs Qualcomm Snapdragon X Elite X1E-78-100 vs Intel Core Ultra 5 135U

Intel Core Ultra 7 165U

► remove from comparison Intel Ultra 7 165U

The Intel Core Ultra 7 165U is an upper mid-range Meteor Lake family chip that debuted in December 2023. This 1st Gen Core Ultra processor has come to replace 13th generation Core processors; it has 12 cores (2 + 8 + 2) and 14 threads at its disposal. Its Performance cores, of which there are 2, are HT-enabled andrun at up to 4.9 GHz while its Efficient cores, of which there are 10 (8 main cores plus 2 extra ones found in the Low Power Island) run at up to 3.8 GHz. The 4-core Intel Arc Graphics, just out of the oven, serves as the integrated graphics adapter - this runs at up to 2.0 GHz - and there is a bevy of other brand-new technologies on offer as well including the integrated AI Boost NPU with two Gen 3 engines for hardware AI workload acceleration.

Architecture and Features

With Meteor Lake, Intel intends to deliver higher CPU performance, higher GPU performance and at the same time, longer battery life than what Raptor Lake chips were capable of. The company also wants a large piece of the AI cake and is working with Microsoft and other partners to make that happen. As a result, Windows Defender is now AI-enabled, meaning it can use the Intel NPU to take some of the load off the main CPU cores. We also get this new Intel Device Discovery technology that is designed to give us a better hardware-based remote laptop management than ever before; and, to make things even better, Intel now offers a dedicated Arc Pro graphics driver for workstations.

This generation of Intel Core processors features Redwood architecture P-cores and Crestwood architecture E-cores. Both come with slight architectural improvements over Raptor Cove and Gracemont respectively for slightly higher performance-per-clock figures; the interesting thing is that of the 10 E-cores, two are actually a separate cluster located on what Intel calls a "Low Power Island". Essentially, the latter is an SoC within an SoC that can stay active while most other parts of the chip are temporarily switched off to save power. The low-power E-cores run at up to 2.1 GHz. Intel hopes this approach will let it deliver unprecedentedly low power consumption figures when under low load, boosting battery life of laptops and tablets powered by Meteor Lake.

To build its Meteor Lake processors, Intel uses the Foveros technology (stacking several chips on top of each other). This is a cost-cutting measure more than anything else, as manufacturing several small dies on several different processes is so much cheaper than making a huge single die and hoping that there are no defects in it that will require disabling some parts of it.

Elsewhere, the Core Ultra 7 165U comes with 12 MB of L3 cache which is a significant reduction compared to the 24 MB that the 155H, the 165H and the 185H have. The processor has a decent number of PCIe 4 lanes for NVMe SSD speeds up to 7.8 GB/s; it supports RAM running at up to 7467 MHz (DDR5-5600, LPDDR5-7467, LPDDR5x-7467, to be specific - which is about as good as what 8040 series Ryzen chips have). vPro Enterprise and business-centric features such as the Remote Platform Erase are onboard as well. Naturally, the 165U also features built-in Thunderbolt 4 support and Intel CNVi Wi-Fi support. It is also worth mentioning that Intel chose to keep native SATA III support that AMD had removed from its Ryzen processors quite a while ago.

The 165U is compatible with 64-bit Windows 10, 64-bit Windows 11 and with many Linux distros.

Performance

While we have no way of knowing what the 165U will be like, as of December 2023, it's safe to expect the chip to be almost as fast as the Core i7-1350P (Raptor Lake, 12 cores, 16 threads, up to 4.7 GHz), as far as multi-thread performance is concerned.

Either way, real-world performance of the chip may vary significantly depending on how high the CPU power limits are and how competent the cooling solution of the system is.

Graphics

The 4-core Arc Graphics runs at up to 2.0 GHz. We expect the iGPU to be about as fast as the aging 96 EU Iris Xe meaning it's good enough for most games at 1080p, provided one is fine with low-to-medium quality settings.

A proper DX12 Ultimate graphics adapter, the Arc Graphics is no stranger to ray tracing and other modern technologies including AI frame generation (XeSS). It will let you connect up to four SUHD 4320p monitors and it will both HW-encode and HW-encode the most widely used video codecs including AVC, HEVC and AV1 in a fast and efficient manner.

Your mileage may vary depending on how high the CPU power limits are, how competent the cooling solution of your system is, how fast the RAM of your system is.

Power consumption

This Core Ultra 7 series processor has a Base power consumption of 15 W, with 57 W being its maximum Intel-recommended Turbo power consumption. An active cooling solution is a must for a system powered by this chip.

The 165U is comprised of several small chips ("tiles") that are connected using Intel's Foveros technology. The tile containing main CPU cores is produced on the fairly modern 7 nm Intel process marketed as Intel 4 while most other tiles (the iGPU, the I/O die, ...) are built with TSMC's N5 and N6 processes. The base tile is built with the old Intel 22FFL process.

Qualcomm Snapdragon X Elite X1E-78-100

► remove from comparison Qualcomm Snapdragon X Elite X1E-78-100

The Snapdragon X Elite X1E-78-100 is a pretty fast ARM architecture processor (SoC) for use in Windows laptops. The X1E-78-100 is the least powerful member of the Snapdragon X Elite processor series, as of May 2024; as such, it has 12 Oryon CPU cores (3 clusters of equally powerful cores; 12 threads) running at no more than 3.4 GHz. Other key features include the 3.8 TFLOPS Adreno iGPU, the 45 TOPS Hexagon NPU and an impressively fast LPDDR5x-8448 memory controller.

The top dog, known as the Snapdragon X Elite X1E-84-100, is thought to be based on the same die with the same NPU but with a faster GPU (possibly due to faster clock speeds), higher CPU clock speeds and possibly higher power targets as well.

Architecture and Features

Qualcomm Oryon cores are in part based on Nuvia IP; they most likely make use of the ARM v8.7 microarchitecture. Much like modern AMD and Intel processors, the Snapdragon chip is compatible with USB 4 and thus with Thunderbolt 4 but it remains to be seen if the X Elite is compatible with GeForce or Radeon discrete graphics cards.

The Qualcomm SoC is said to have 12 PCIe 4 and 4 PCIe 3 lanes for connecting various kinds of devices. NVMe SSDs are supported with a throughput of up to 7.9 GB/s; furthermore, most laptops built around the chip are expected to have 16 GB of LPDDR5X-8448 RAM. There is also a 45 TOPS NPU for accelerating AI workloads.

Performance

Our first benchmarks (featuring a 35 W X Elite X1E-78-100) revealed very decent CPU performance figures that see the X Elite going head-to-head with the AMD Ryzen 7 7840U. It's also not much faster or slower than the Apple M3 chip with 10 GPU cores. While not groundbreaking, this should be good enough for the user to be able to run any applications in 2024 and 2025.

Like any other Windows on ARM platform, the Snapdragon X chip works best with applications and games compiled specifically for ARM processors. If making use of the built-in x86 to ARM emulation mode, a performance penalty of about 20% is to be expected.

Graphics

The integrated Adreno GPU is DirectX 12-enabled but not DirectX 12 Ultimate-enabled, despite featuring VRS and ray tracing support. It is supposed to deliver up to 3.8 TFLOPS of performance; for reference, the slowest current generation professional Nvidia Ada graphics card for laptops, the RTX 500 Ada, delivers up to 9.2 TFLOPS.

Its gaming performance is rather underwhelming according to our in-house testing results. While slightly faster than the aging Iris Xe (96 EUs), the Adreno fails to outgun the Radeon 780M meaning there is little point in comparing it with full-fat discrete graphics cards. Baldur's Gate 3, a triple-A title released in 2023, is pretty much unplayable at 1080p / Low. GTA V, a game that saw the light of day in 2015, is playable at 1080p / High.

The Qualcomm iGPU will let you use up to 3 UHD 2160p monitors simultaneously. 2160p120 integrated displays are supported, as are the popular AV1, HEVC and AVC video codecs (both decoding and encoding). The hardware does not support the VVC codec; that feature remains a Lunar Lake exclusive for now.

Power consumption

The X1E-78-100 is set to be slightly less power-hungry than its more powerful brothers. Expect to see anything between 20 W and 45 W under long-term workloads depending on the system and on the performance profile chosen. That's exactly what Ryzen HS chips normally consume.

The SoC is built with a 4 nm TSMC process for decent, as of H1 2024, energy efficiency.

Intel Core Ultra 5 135U

► remove from comparison Intel Ultra 5 135U

The Intel Core Ultra 5 135U is mid-range Meteor Lake chip that debuted in December 2023. This 1st Gen Core Ultra processor has come to replace 13th generation Core processors; it has 12 cores and 14 threads at its disposal. Its Performance cores, of which there are 2, are HT-enabled and run at up to 4.4 GHz while its Efficient cores, of which there are 10 (8 main cores plus 2 extra ones found in the Low Power Island) run at up to 3.6 GHz. The 4-core Intel Arc Graphics, just out of the oven, serves as the integrated graphics adapter - this runs at up to 1.90 GHz - and there is a bevy of other brand-new technologies on offer as well such as the integrated AI Boost NPU with two Gen 3 engines for hardware AI workload acceleration.

Architecture and Features

With Meteor Lake, Intel intends to deliver higher CPU performance, higher GPU performance and at the same time, longer battery life than what Raptor Lake chips were capable of. The company also wants a large piece of the AI cake and is working with Microsoft and other partners to make that happen. As a result, Windows Defender is now AI-enabled, meaning it can use the Intel NPU to take some of the load off the main CPU cores. We also get this new Intel Device Discovery technology that is designed to give us a better hardware-based remote laptop management than ever before; and, to make things even better, Intel now offers a dedicated Arc Pro graphics driver for workstations.

This generation of Intel Core processors features Redwood architecture P-cores and Crestwood architecture E-cores. Both come with slight architectural improvements over Raptor Cove and Gracemont respectively for slightly higher performance-per-clock figures; the interesting thing is that of the 10 E-cores, two are actually a separate cluster located on what Intel calls a "Low Power Island". Essentially, the latter is an SoC within an SoC that can stay active while most other parts of the chip are temporarily switched off to save power. The low-power E-cores run at up to 2.1 GHz. Intel hopes this approach will let it deliver unprecedentedly low power consumption figures when under low load, boosting battery life of laptops and tablets powered by Meteor Lake.

To build its Meteor Lake processors, Intel uses the Foveros technology (stacking several chips on top of each other). This is a cost-cutting measure more than anything else, as manufacturing several small dies on several different processes is so much cheaper than making a huge single die and hoping that there are no defects in it that will require disabling some parts of it.

Elsewhere, the Core Ultra 5 135U comes with 12 MB of L3 cache which is a significant reduction compared to the 24 MB that the 155H, the 165H and the 185H have. The processor has a decent number of PCIe 4 lanes for NVMe SSD speeds up to 7.8 GB/s; it supports RAM running at up to 7467 MHz (DDR5-5600, LPDDR5-7467, LPDDR5x-7467, to be specific - which is about as good as what 8040 series Ryzen chips have). vPro Enterprise and business-centric features such as the Remote Platform Erase are onboard as well. Naturally, the 135U also features built-in Thunderbolt 4 support and Intel CNVi Wi-Fi support. It is also worth mentioning that Intel chose to keep native SATA III support that AMD had removed from its Ryzen processors quite a while ago.

The 135U is compatible with 64-bit Windows 10, 64-bit Windows 11 and with many Linux distros.

Performance

While we have no way of knowing what the 135U will be like, as of December 2023, it's safe to expect the chip to be somewhat faster than the Core i7-1355U (Raptor Lake, 10 cores, 12 threads, up to 5.0 GHz), as far as multi-thread performance is concerned.

Either way, real-world performance of the chip may vary significantly depending on how high the CPU power limits are and how competent the cooling solution of the system is.

Graphics

The 4-core Arc Graphics runs at up to 1.90 GHz. We expect the iGPU to be just slightly slower than the aging 96 EU Iris Xe meaning you will be able to play most games at 1080p as long as most settings are set to Low.

A proper DX12 Ultimate graphics adapter, the Arc Graphics is no stranger to ray tracing and other modern technologies including AI frame generation (XeSS). It will let you connect up to four SUHD 4320p monitors and it will both HW-encode and HW-encode the most widely used video codecs including AVC, HEVC and AV1 in a fast and efficient manner.

Your mileage may vary depending on how high the CPU power limits are, how competent the cooling solution of your system is, how fast the RAM of your system is.

Power consumption

This Core Ultra 5 series processor has a Base power consumption of 15 W, with 57 W being its maximum Intel-recommended Turbo power consumption. An active cooling solution is a must for a system powered by this chip.

The 135U is comprised of several small chips ("tiles") that are connected using Intel's Foveros technology. The tile containing main CPU cores is produced on the fairly modern 7 nm Intel process marketed as Intel 4 while most other tiles (the iGPU, the I/O die, ...) are built with TSMC's N5 and N6 processes. The base tile is built with the old Intel 22FFL process.

ModelIntel Core Ultra 7 165UQualcomm Snapdragon X Elite X1E-78-100Intel Core Ultra 5 135U
SeriesIntel Meteor Lake-UQualcomm Snapdragon XIntel Meteor Lake-U
CodenameMeteor Lake-POryonMeteor Lake-P
Series: Meteor Lake-U Meteor Lake-P
Intel Core Ultra 7 165U « 3.8 - 4.9 GHz12 / 14 cores12 MB L3
Intel Core Ultra 7 155U3.8 - 4.8 GHz12 / 14 cores12 MB L3
Intel Core Ultra 5 135U3.6 - 4.4 GHz12 / 14 cores12 MB L3
Intel Core Ultra 5 125U3.6 - 4.3 GHz12 / 14 cores12 MB L3
Qualcomm Snapdragon X Elite X1E-84-100 - 4.2 GHz12 / 12 cores Oryon
Qualcomm Snapdragon X Elite X1E-80-100 - 4 GHz12 / 12 cores Oryon
Qualcomm Snapdragon X Elite X1E-78-100 « - 3.4 GHz12 / 12 cores Oryon
Qualcomm Snapdragon X Plus X1P-64-100 - 3.4 GHz10 / 10 cores Oryon
Qualcomm Snapdragon X Plus X1P-42-1008 / 8 cores Oryon
Intel Core Ultra 7 165U3.8 - 4.9 GHz12 / 14 cores12 MB L3
Intel Core Ultra 7 155U3.8 - 4.8 GHz12 / 14 cores12 MB L3
Intel Core Ultra 5 135U « 3.6 - 4.4 GHz12 / 14 cores12 MB L3
Intel Core Ultra 5 125U3.6 - 4.3 GHz12 / 14 cores12 MB L3
Clock3800 - 4900 MHz <=3400 MHz3600 - 4400 MHz
L3 Cache12 MB12 MB
Cores / Threads12 / 14
2 x 4.9 GHz Intel Redwood Cove P-Core
8 x 3.8 GHz Intel Crestmont E-Core
2 x 2.1 GHz Intel Crestmont E-Core
12 / 12
8 x 3.4 GHz
4 x 3.4 GHz Qualcomm Oryon
12 / 14
2 x 4.4 GHz Intel Redwood Cove P-Core
8 x 3.6 GHz Intel Crestmont E-Core
2 x 2.1 GHz Intel Crestmont E-Core
TDP15 Watt35 Watt15 Watt
Technology7 nm4 nm7 nm
max. Temp.110 °C110 °C
FeaturesDDR5-5600/LPDDR5-7467/LPDDR5x-7467 RAM, PCIe 4, Thr. Director, DL Boost, AI Boost, vPro Enterp., RPE, MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, AES, AVX, AVX2, AVX-VNNI, FMA3, SHADDR5-5600/LPDDR5-7467/LPDDR5x-7467 RAM, PCIe 4, Thr. Director, DL Boost, AI Boost, vPro Enterp., RPE, MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, AES, AVX, AVX2, AVX-VNNI, FMA3, SHA
iGPUIntel Graphics 4-Cores iGPU (Arc) ( - 2000 MHz)Qualcomm Snapdragon X Adreno 3.8 TFLOPS GPU Intel Graphics 4-Cores iGPU (Arc) ( - 1900 MHz)
Architecturex86ARMx86
Announced
Manufacturerark.intel.comwww.qualcomm.comark.intel.com
TDP Turbo PL245 Watt

Benchmarks

Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - Ultra 7 165U
38.4 pt (53%)
Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - Snapdragon X Elite X1E-78-100
34.6 pt (48%)
Cinebench 2024 - Cinebench 2024 CPU Single Core
96 Points (67%)
108 Points (75%)
Cinebench 2024 - Cinebench 2024 CPU Multi Core
529 Points (10%)
min: 786     avg: 977     median: 994.5 (19%)     max: 1132 Points
Cinebench R23 - Cinebench R23 Multi Core
min: 10226     avg: 10512     median: 10511.5 (10%)     max: 10797 Points
10856 Points (10%)
9315 Points (9%)
Cinebench R23 - Cinebench R23 Single Core
min: 1662     avg: 1686     median: 1685.5 (72%)     max: 1709 Points
1130 Points (48%)
1563 Points (66%)
Cinebench R20 - Cinebench R20 CPU (Single Core)
min: 624     avg: 643     median: 642.5 (71%)     max: 661 Points
420 Points (47%)
605 Points (67%)
Cinebench R20 - Cinebench R20 CPU (Multi Core)
min: 3934     avg: 4055     median: 4055 (10%)     max: 4176 Points
4033 Points (10%)
3641 Points (9%)
Cinebench R15 - Cinebench R15 CPU Multi 64 Bit
min: 1605     avg: 1636     median: 1636 (10%)     max: 1667 Points
1984 Points (13%)
1634 Points (10%)
Cinebench R15 - Cinebench R15 CPU Single 64 Bit
min: 228     avg: 240     median: 240 (72%)     max: 252 Points
210 Points (63%)
228 Points (69%)
7-Zip 18.03 - 7-Zip 18.03 Multli Thread 4 runs
min: 41133     avg: 42287     median: 42287 (24%)     max: 43441 MIPS
44935 MIPS (26%)
38415 MIPS (22%)
7-Zip 18.03 - 7-Zip 18.03 Single Thread 4 runs
min: 4938     avg: 4949     median: 4949 (59%)     max: 4960 MIPS
4611 MIPS (55%)
4649 MIPS (56%)
HWBOT x265 Benchmark v2.2 - HWBOT x265 4k Preset
min: 11.6     avg: 12     median: 12 (21%)     max: 12.3 fps
7.6 fps (13%)
10.3 fps (18%)
Blender - Blender 3.3 Classroom CPU *
min: 592     avg: 610     median: 610 (8%)     max: 628 Seconds
545 Seconds (7%)
687 Seconds (9%)
Blender - Blender 2.79 BMW27 CPU *
min: 310     avg: 322.5     median: 322.5 (2%)     max: 335 Seconds
313 Seconds (2%)
358 Seconds (3%)
R Benchmark 2.5 - R Benchmark 2.5 *
min: 0.4881     avg: 0.5     median: 0.5 (11%)     max: 0.504 sec
0.8 sec (16%)
0.5 sec (12%)
3DMark 11 - 3DM11 Performance Physics
min: 14652     avg: 14861     median: 14860.5 (40%)     max: 15069 Points
14781 Points (40%)
14632 Points (40%)
3DMark - 3DMark Cloud Gate Physics
13450 Points (34%)
8244 Points (21%)
10633 Points (27%)
3DMark - 3DMark Fire Strike Standard Physics
min: 19519     avg: 19993     median: 19993 (36%)     max: 20467 Points
18547 Points (33%)
19641 Points (35%)
3DMark - 3DMark Time Spy CPU
min: 6581     avg: 6916     median: 6915.5 (29%)     max: 7250 Points
5236 Points (22%)
5741 Points (24%)
Geekbench 6.2 - Geekbench 6.2 Single-Core
min: 2290     avg: 2323     median: 2323 (63%)     max: 2356 Points
2454 Points (66%)
2176 Points (59%)
Geekbench 6.2 - Geekbench 6.2 Multi-Core
min: 9441     avg: 9693     median: 9692.5 (38%)     max: 9944 Points
9514 Points (38%)
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Single-Core
min: 1732     avg: 1734     median: 1733.5 (73%)     max: 1735 Points
1805 Points (76%)
1568 Points (66%)
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Multi-Core
min: 8564     avg: 8642     median: 8641.5 (15%)     max: 8719 Points
9591 Points (17%)
8533 Points (15%)
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
min: 521     avg: 542     median: 541.5 (1%)     max: 562 ms
454.4 ms (1%)
578 ms (1%)
Octane V2 - Octane V2 Total Score
90596 Points (80%)
WebXPRT 4 - WebXPRT 4 Score
min: 242     avg: 248     median: 248 (71%)     max: 254 Points
285 Points (82%)
230 Points (66%)
WebXPRT 3 - WebXPRT 3 Score
min: 265     avg: 272     median: 272 (57%)     max: 279 Points
419 Points (87%)
246 Points (51%)
CrossMark - CrossMark Overall
min: 1471     avg: 1494     median: 1493.5 (57%)     max: 1516 Points
978 Points (37%)
1287 Points (49%)
Power Consumption - Prime95 Power Consumption - external Monitor *
min: 45.5     avg: 50.8     median: 50.8 (9%)     max: 56.1 Watt
44.7 Watt (8%)
33.7 Watt (6%)
Power Consumption - Cinebench R15 Multi Power Consumption - external Monitor *
63.2 Watt (12%)
65.3 Watt (12%)
47.5 Watt (9%)
Power Consumption - Idle Power Consumption - external Monitor *
min: 3.54     avg: 4.6     median: 4.6 (3%)     max: 5.7 Watt
3.5 Watt (2%)
2.2 Watt (1%)
Power Consumption - Idle Power Consumption 150cd 1min *
min: 4.04     avg: 6.6     median: 6.6 (7%)     max: 9.24 Watt
6.1 Watt (7%)
2.3 Watt (3%)
Power Consumption - Cinebench R15 Multi Power Efficiency - external Monitor
26.4 Points per Watt (20%)

Average Benchmarks Intel Core Ultra 7 165U → 100% n=24

Average Benchmarks Qualcomm Snapdragon X Elite X1E-78-100 → 97% n=24

Average Benchmarks Intel Core Ultra 5 135U → 93% n=24

- Range of benchmark values for this graphics card
- Average benchmark values for this graphics card
* Smaller numbers mean a higher performance
1 This benchmark is not used for the average calculation

v1.28
log 27. 02:40:20

#0 checking url part for id 16913 +0s ... 0s

#1 checking url part for id 17587 +0s ... 0s

#2 checking url part for id 16917 +0s ... 0s

#3 redirected to Ajax server, took 1719448820 +0s ... 0s

#4 did not recreate cache, as it is less than 5 days old! Created at Tue, 25 Jun 2024 05:15:18 +0200 +0s ... 0s

#5 composed specs +0.009s ... 0.009s

#6 did output specs +0s ... 0.009s

#7 getting avg benchmarks for device 16913 +0.004s ... 0.013s

#8 got single benchmarks 16913 +0.005s ... 0.017s

#9 getting avg benchmarks for device 17587 +0.004s ... 0.021s

#10 got single benchmarks 17587 +0.005s ... 0.026s

#11 getting avg benchmarks for device 16917 +0.001s ... 0.027s

#12 got single benchmarks 16917 +0.004s ... 0.031s

#13 got avg benchmarks for devices +0s ... 0.031s

#14 No cached benchmark found, getting uncached values +0.003s ... 0.034s

#15 No cached benchmark found, getting uncached values +0.001s ... 0.035s

#16 No cached benchmark found, getting uncached values +0.001s ... 0.037s

#17 No cached benchmark found, getting uncached values +0.001s ... 0.038s

#18 No cached benchmark found, getting uncached values +0.001s ... 0.039s

#19 No cached benchmark found, getting uncached values +0.001s ... 0.04s

#20 No cached benchmark found, getting uncached values +0.001s ... 0.042s

#21 No cached benchmark found, getting uncached values +0.001s ... 0.043s

#22 No cached benchmark found, getting uncached values +0.001s ... 0.044s

#23 No cached benchmark found, getting uncached values +0.001s ... 0.045s

#24 No cached benchmark found, getting uncached values +0.001s ... 0.047s

#25 No cached benchmark found, getting uncached values +0.001s ... 0.048s

#26 No cached benchmark found, getting uncached values +0.002s ... 0.05s

#27 No cached benchmark found, getting uncached values +0.004s ... 0.054s

#28 No cached benchmark found, getting uncached values +0.001s ... 0.055s

#29 No cached benchmark found, getting uncached values +0.001s ... 0.057s

#30 No cached benchmark found, getting uncached values +0.001s ... 0.058s

#31 No cached benchmark found, getting uncached values +0.001s ... 0.059s

#32 No cached benchmark found, getting uncached values +0.002s ... 0.061s

#33 No cached benchmark found, getting uncached values +0.001s ... 0.063s

#34 No cached benchmark found, getting uncached values +0.001s ... 0.064s

#35 No cached benchmark found, getting uncached values +0.001s ... 0.065s

#36 No cached benchmark found, getting uncached values +0.001s ... 0.066s

#37 min, max, avg, median took s +0.003s ... 0.069s

#38 return log +0s ... 0.069s

Please share our article, every link counts!
> Expert Reviews and News on Laptops, Smartphones and Tech Innovations > Benchmarks / Tech > Processor Comparison - Head 2 Head
Redaktion, 2017-09- 8 (Update: 2023-07- 1)