Notebookcheck Logo

Intel Core i5-1250P vs Qualcomm Snapdragon X Elite X1E-80-100 vs Qualcomm Snapdragon X X1-26-100

Intel Core i5-1250P

► remove from comparison Intel i5-1250P

The Intel Core i5-1250P is a mid-range Alder Lake-P family SoC designed for use in ultra-light, ultra-thin (yet actively cooled) laptops. It was announced in early 2022 and it has 4 performance cores, as opposed to the 6 cores of the top-of-the-line i7-1280P (P-cores, Golden Cove architecture) mated to 8 efficient cores (E-cores, Gracemont architecture). The i5's P-cores are Hyper-Threading-enabled for a total of 16 threads when combined with its E-cores. The clock speeds range from 1.7 GHz to 4.4 GHz for the performance cluster and 1.2 GHz to 3.3 GHz for the efficient cluster. The shortcomings of this processor as compared with the slightly faster Core i5-1260P include the smaller L3 cache, slower iGPU model, lower clock speeds. Full vPro feature set is enabled in the case of this i5, though ("Enterprise" tier, allowing for remote device management).

Architecture

The i5 is a continuation of Intel's efforts to use the ARM-developed big.LITTLE technology for its own benefit. A single "little" Alder Lake core is supposed to be as fast as a Skylake core (as found in the venerable Core i7-6700HQ among other options) which is six years old at this point. All of Core i5-1250P's CPU cores enjoy access to 12 MB of L3 cache. The integrated memory controller supports various memory types up to LPDDR5-5200, DDR5-4800, LPDDR4x-4267 or DDR4-3200; Intel recommends using no more than 64 GB, for reference. Just like the other 12th Gen Intel Core processors, this Core i5 comes with the Thread Director which is a new functionality designed to help Windows 11 decide which cores to use for what workload for best performance and efficiency possible. Hardware acceleration of AI algorithms is supported via GNA 3.0 and DL Boost (via AVX2). The alluringly fast PCI-Express 5.0 spec has not found its way into Alder Lake P processors, so users will have to be content with PCI-Express 4.0 for the time being. Four PCI-Express 4 lanes allow for a read/write rate of up to 7.9 GB/s, provided a suitably fast NVMe SSD is used.

Please note this is not a user-replaceable CPU. It gets permanently soldered on to the motherboard (FCBGA1744 socket interface).

Performance

The average 1250P in our database nearly matches the Ryzen 5 5500U and the Ryzen 5 PRO 6650U in multi-thread performance, trailing behind the Core i5-1240P just slightly. This is a great CPU for nearly all tasks imaginable, as long as one does not expect it to be as fast as the mighty Core i7-12700H.

Your mileage may vary depending on how high the Power Limits are and how competent the cooling solution of your system is. The latter is really important as a single Golden Cove core can eat more than 20 W when under heavy load.

Graphics

The built-in graphics adapter in the form of the 80 EU Iris Xe running at up to 1.4 GHz has seen little change from what was built into certain 11th Gen Tiger Lake UP3 processors, like a Core i5-1135G7, which is hardly a downside as this iGPU is loaded with modern features, AV1 video decoding capability and SUHD 4320p monitor support included. The Xe isn't a stranger to a bit of casual gaming; that said, your mileage may vary depending on how high the Power Limits are and how capable the cooling solution of a laptop is. Expect something close to NVIDIA's MX250 or in other words, acceptable framerates in most games when playing at 1080p / Low settings. Fast RAM is a prerequisite for decent performance as the Xe has to make do with no dedicated video memory.

Power consumption

The i5's base power consumption (also known as the default TDP or Power Limit 1) is 28 W; its maximum Turbo power consumption (also known as the PL2) is not supposed to exceed 64 W. As for the "Minimum Assured" power consumption, Intel's guidelines mention 20 W. All in all, an active cooling solution is a must for a CPU like this.

The i5-1250P is built with Intel's fourth-gen 10 nm manufacturing process marketed as Intel 7 for decent, as of late 2022, energy efficiency. Despite that, the i5 is more power-hungry than certain 7 nm U-class AMD Ryzen 5000 chips delivering similar, or even higher, performance.

Qualcomm Snapdragon X Elite X1E-80-100

► remove from comparison Qualcomm SD X Elite X1E-80-100

The Snapdragon X Elite X1E-80-100 is a pretty fast ARM architecture processor (SoC) for use in Windows laptops. The X1E-80-100 is the second-fastest member of the Snapdragon X series, as of May 2024; as such, it has 12 Oryon CPU cores (3 clusters of equally powerful cores; 12 threads) running at up to 4.0 GHz, the 3.8 TFLOPS Adreno X1-85 GPU, the 45 TOPS Hexagon NPU and an impressively fast LPDDR5x-8448 memory controller.

The faster Snapdragon X Elite X1E-84-100 is thought to be based on the same die with the same NPU and the same number of CPU cores but with higher GPU and CPU clock speeds.

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 it is is compatible with GeForce or Radeon discrete graphics cards.

The Qualcomm SoC is thought to have at least 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

When all of the 12 cores are under load, they can run at up to 3.4 GHz. The much more desirable 4.0 GHz clock speed is only achievable under single-thread or dual-thread loads.

Given the very similar clock speeds, its multi-thread benchmark scores should be about the same as that of the X1E-78-100 for Ryzen 7 7840U and Apple M3-like performance in most real-world tasks. We'll make sure to update this section once we get our hands on a system powered by the X1E-80-100.

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 3.8 TFLOPS Adreno X1-85 GPU is DirectX 12-enabled but not DirectX 12 Ultimate-enabled, despite featuring VRS and ray tracing support. The 3.8 TFLOPS of performance that it delivers pale in comparison to the slowest current-generation professional Nvidia Ada graphics card for laptops, the RTX 500 Ada, that delivers up to 9.2 TFLOPS.

Its gaming performance is somewhat underwhelming. While slightly faster than the aging Iris Xe (96 EUs), the Adreno is not fast enough to outpace 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-80-100 is most likely going to be less power-hungry than its more powerful brother (the latter can be set to consume up to 80 Watts). Expect to see anything between 20 W and 45 W under long-term workloads because that's what Ryzen HS chips normally consume.

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

Qualcomm Snapdragon X X1-26-100

► remove from comparison Qualcomm SD X1-26-100

The 8-core Snapdragon X (X1-26-100) is an affordable ARM architecture processor for use in Windows laptops. Unveiled in Jan 2025, this Qualcomm SoC features 8 Oryon CPU cores running at up to 2.98 GHz, along with the 1.7 TFLOPS X1-45 iGPU and the 45 TOPS Hexagon NPU. The super-fast LPDDR5x-8448 memory controller, USB 4.0 support, TB 4 support and PCIe 4 support are all onboard as well.

Architecture and Features

The Oryon cores (2 clusters of essentially identical cores; 8 threads) are mostly based on Nuvia IP and reportedly 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 (with no eGPU support).

The X1-26-100 is based on the smaller die codenamed Purwa, unlike most X Elite and some X Plus processors. It is believed to have at least 8 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 present for accelerating AI workloads.

Performance

The CPU should be about 10% slower than its faster brother named X1P-42 due to the latter's higher CPU clock speeds. Generally speaking, a performance level similar to recent U-class Intel Core 5 chips is to be expected.

Graphics

The X1-45 used here delivers up to 1.7 TFLOPS of performance. Unlike the much faster 3.8 TFLOPS and 4.6 TFLOPS X1-85 iGPUs, this little guy here has much fewer unified shaders and runs at lower clock speeds, too. Games put it a little behind the GeForce MX350; this kind of performance is sufficient for older games and sub-900p resolutions only.

AVC, HEVC and AV1 video codecs can be both hardware-decoded and hardware-encoded whereas with VP9, only decoding is possible. The highest monitor resolution supported is UHD 2160p.

Power consumption

Expect to see anything between 15 W and 30 W under long-term workloads depending on the system and the power profile chosen. The number includes RAM power consumption.

The SoC is built with TSMC's N4P process for decent power efficiency, as of H1 2025.

ModelIntel Core i5-1250PQualcomm Snapdragon X Elite X1E-80-100Qualcomm Snapdragon X X1-26-100
CodenameAlder Lake-POryonOryon
SeriesIntel Alder Lake-PQualcomm Snapdragon XQualcomm Snapdragon X
Series: Snapdragon X Oryon
Intel Core i7-1280P1.3 - 4.8 GHz14 / 20 cores24 MB L3
Intel Core i7-1270P1.6 - 4.8 GHz12 / 16 cores18 MB L3
Intel Core i7-1260P1.5 - 4.7 GHz12 / 16 cores18 MB L3
Intel Core i5-1250P « 1.2 - 4.4 GHz12 / 16 cores12 MB L3
Intel Core i5-1240P1.2 - 4.4 GHz12 / 16 cores12 MB L3
Intel Core i3-1220P1.1 - 4.4 GHz10 / 12 cores12 MB L3
Qualcomm Snapdragon X Elite X1E-00-1DE3.8 - 4.3 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-84-1003.8 - 4.2 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-80-100 « - 4 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-78-100 - 3.4 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-64-100 - 3.4 GHz10 / 10 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-46-100 - 4 GHz8 / 8 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-42-100 - 3.4 GHz8 / 8 cores6 MB L3 Oryon
Qualcomm Snapdragon X X1-26-100 - 2.98 GHz8 / 8 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-00-1DE3.8 - 4.3 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-84-1003.8 - 4.2 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-80-100 - 4 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Elite X1E-78-100 - 3.4 GHz12 / 12 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-64-100 - 3.4 GHz10 / 10 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-46-100 - 4 GHz8 / 8 cores6 MB L3 Oryon
Qualcomm Snapdragon X Plus X1P-42-100 - 3.4 GHz8 / 8 cores6 MB L3 Oryon
Qualcomm Snapdragon X X1-26-100 « - 2.98 GHz8 / 8 cores6 MB L3 Oryon
Clock1200 - 4400 MHz <=4000 MHz <=2980 MHz
L1 Cache1.1 MB2.3 MB2.3 MB
L2 Cache10 MB12 MB12 MB
L3 Cache12 MB6 MB6 MB
Cores / Threads12 / 1612 / 12
12 x 4.0 GHz Qualcomm Oryon
8 / 8
8 x 3.0 GHz Qualcomm Oryon
TDP28 Watt
Technology10 nm4 nm4 nm
max. Temp.100 °C
SocketBGA1744
FeaturesDDR4-3200/LPDDR4x-4266/DDR5-4800/LPDDR5-5200, PCIe 4, Thr. Director, DL Boost, GNA, Remote Platform Erase, MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, AVX, AVX2, BMI2, ABM, FMA, ADX, SMEP, SMAP, EIST, TM1, TM2, HT, Turbo, SST, AES-NI, RDRAND, RDSEED, SHA
iGPUIntel Iris Xe Graphics G7 80EUs ( - 1400 MHz)Qualcomm SD X Adreno X1-85 3.8 TFLOPSQualcomm SD X Adreno X1-45 1.7 TFLOPS
Architecturex86ARMARM
Announced
Manufacturerark.intel.comwww.qualcomm.comwww.qualcomm.com
TDP Turbo PL280 Watt

Benchmarks

Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - i5-1250P
29.9 pt (50%)
Restrict / Search: Model: Max. age: years
Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - SD X Elite X1E-80-100
33.7 pt (56%)
Restrict / Search: Model: Max. age: years
Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - SD X1-26-100
28 pt (47%)
Restrict / Search: Model: Max. age: years
96 Points (54%)
min: 646     avg: 672     median: 672 (13%)     max: 698 Points
Cinebench R23 - Cinebench R23 Multi Core
7282 Points (7%)
min: 6897     avg: 7172     median: 7171.5 (7%)     max: 7446 Points
Cinebench R23 - Cinebench R23 Single Core
1521 Points (64%)
min: 975     avg: 977     median: 976.5 (41%)     max: 978 Points
Cinebench R20 - Cinebench R20 CPU (Single Core)
536 Points (58%)
min: 359     avg: 362.5     median: 362.5 (39%)     max: 366 Points
Cinebench R20 - Cinebench R20 CPU (Multi Core)
2334 Points (6%)
min: 2644     avg: 2743     median: 2743 (7%)     max: 2842 Points
Cinebench R15 - Cinebench R15 CPU Multi 64 Bit
1528 Points (10%)
min: 1338     avg: 1371     median: 1371 (9%)     max: 1404 Points
Cinebench R15 - Cinebench R15 CPU Single 64 Bit
201 Points (56%)
min: 181.5     avg: 183.8     median: 183.8 (51%)     max: 186 Points
Cinebench R11.5 - Cinebench R11.5 CPU Multi 64 Bit
9.7 Points (13%)
14.8 Points (19%)
Cinebench R11.5 - Cinebench R11.5 CPU Single 64 Bit
2.7 Points (65%)
1.9 Points (45%)
Cinebench R10 - Cinebench R10 Rend. Single (32bit)
7918 Points (48%)
2299 Points (14%)
Cinebench R10 - Cinebench R10 Rend. Multi (32bit)
38277 Points (28%)
14395 Points (10%)
wPrime 2.10 - wPrime 2.0 1024m *
340 s (4%)
308.5 s (4%)
wPrime 2.10 - wPrime 2.0 32m *
9.6 s (2%)
9.5 s (2%)
WinRAR - WinRAR 4.0
5561 Points (9%)
9297 Points (15%)
7-Zip 18.03 - 7-Zip 18.03 Multi Thread 4 runs
24625 MIPS (14%)
min: 29312     avg: 29610     median: 29609.5 (17%)     max: 29907 MIPS
7-Zip 18.03 - 7-Zip 18.03 Single Thread 4 runs
3532 MIPS (42%)
min: 4088     avg: 4095     median: 4095 (48%)     max: 4102 MIPS
X264 HD Benchmark 4.0 - x264 Pass 2
79.6 fps (27%)
X264 HD Benchmark 4.0 - x264 Pass 1
201.1 fps (46%)
HWBOT x265 Benchmark v2.2 - HWBOT x265 4k Preset
6.8 fps (12%)
min: 4.44     avg: 5     median: 5 (9%)     max: 5.52 fps
TrueCrypt - TrueCrypt Serpent
1 GB/s (29%)
TrueCrypt - TrueCrypt Twofish
1.9 GB/s (33%)
TrueCrypt - TrueCrypt AES
9.5 GB/s (25%)
min: 791     avg: 821     median: 821 (10%)     max: 851 Seconds
Blender - Blender 2.79 BMW27 CPU *
511 Seconds (4%)
min: 440     avg: 458.5     median: 458.5 (3%)     max: 477 Seconds
R Benchmark 2.5 - R Benchmark 2.5 *
0.6 sec (13%)
min: 0.861     avg: 0.9     median: 0.9 (19%)     max: 0.888 sec
3DMark 06 - CPU - 3DMark 06 - CPU
11842 Points (25%)
Super Pi mod 1.5 XS 1M - Super Pi mod 1.5 XS 1M *
8.4 s (2%)
20 s (4%)
Super Pi mod 1.5 XS 2M - Super Pi mod 1.5 XS 2M *
18.5 s (1%)
43.1 s (2%)
Super Pi Mod 1.5 XS 32M - Super Pi mod 1.5 XS 32M *
461.5 s (2%)
995 s (4%)
3DMark 11 - 3DM11 Performance Physics
11666 Points (29%)
min: 11816     avg: 11947     median: 11946.5 (29%)     max: 12077 Points
3DMark - 3DMark Cloud Gate Physics
9084 Points (23%)
min: 10549     avg: 10757     median: 10756.5 (27%)     max: 10964 Points
3DMark - 3DMark Fire Strike Standard Physics
16016 Points (29%)
min: 12446     avg: 12499     median: 12498.5 (22%)     max: 12551 Points
3DMark - 3DMark Time Spy CPU
3227 Points (14%)
5659 Points (24%)
min: 2070     avg: 2106     median: 2121 (53%)     max: 2126 Points
min: 10492     avg: 10553     median: 10550 (41%)     max: 10618 Points
Geekbench 5.5 - Geekbench 5.1 - 5.5 64 Bit Single-Core
1622 Points (63%)
Geekbench 5.5 - Geekbench 5.1 - 5.5 64 Bit Multi-Core
7672 Points (14%)
Geekbench 5.0 - Geekbench 5.0 64 Bit Single-Core
1583 Points (7%)
Geekbench 5.0 - Geekbench 5.0 64 Bit Multi-Core
8778 Points (28%)
Geekbench 4.4 - Geekbench 4.1 - 4.4 64 Bit Single-Core
7072 Points (71%)
Geekbench 4.4 - Geekbench 4.1 - 4.4 64 Bit Multi-Core
35532 Points (35%)
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
734 ms (1%)
min: 518.4     avg: 520     median: 519.5 (1%)     max: 520.6 ms
Octane V2 - Octane V2 Total Score
min: 88198     avg: 92454     median: 92123 (70%)     max: 98705 Points
min: 65692     avg: 68056     median: 68055.5 (51%)     max: 70419 Points
min: 248     avg: 248.5     median: 248.5 (68%)     max: 249 Points
WebXPRT 3 - WebXPRT 3 Score
254 Points (46%)
min: 353     avg: 355     median: 355 (64%)     max: 357 Points
CrossMark - CrossMark Overall
1554 Points (58%)
min: 1093     avg: 1104     median: 1103.5 (41%)     max: 1114 Points
Power Consumption - Prime95 Power Consumption - external Monitor *
32.2 Watt (6%)
min: 54.2     avg: 56.1     median: 56.9 (10%)     max: 57.1 Watt
59 Watt (10%)
Power Consumption - Cinebench R15 Multi Power Consumption - external Monitor *
45.5 Watt (8%)
min: 41.1     avg: 57.8     median: 61.5 (11%)     max: 67.2 Watt
min: 41.4     avg: 44.1     median: 44.1 (8%)     max: 46.8 Watt
min: 3.25     avg: 4.1     median: 4.1 (3%)     max: 4.99 Watt
min: 4.16     avg: 4.4     median: 4.4 (5%)     max: 4.72 Watt
Power Consumption - Power Efficiency - Cinebench R15 Multi external Monitor
33.6 Points per Watt (25%)
min: 28.8     avg: 32     median: 31.6 (24%)     max: 35.9 Points per Watt
min: 28.6     avg: 31.3     median: 31.3 (23%)     max: 33.9 Points per Watt

Average Benchmarks Intel Core i5-1250P → 100% n=17

Average Benchmarks Qualcomm Snapdragon X Elite X1E-80-100 → 131% n=17

Average Benchmarks Qualcomm Snapdragon X X1-26-100 → 102% n=17

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

v1.33
log 17. 06:35:39

#0 ran 0s before starting gpusingle class +0s ... 0s

#1 checking url part for id 14066 +0s ... 0s

#2 checking url part for id 17575 +0s ... 0s

#3 checking url part for id 18623 +0s ... 0s

#4 redirected to Ajax server, took 1752726939s time from redirect:0 +0s ... 0s

#5 did not recreate cache, as it is less than 5 days old! Created at Wed, 16 Jul 2025 05:20:08 +0200 +0s ... 0s

#6 composed specs +0.012s ... 0.012s

#7 did output specs +0s ... 0.012s

#8 getting avg benchmarks for device 14066 +0.003s ... 0.015s

#9 got single benchmarks 14066 +0.005s ... 0.021s

#10 getting avg benchmarks for device 17575 +0.003s ... 0.024s

#11 got single benchmarks 17575 +0.009s ... 0.033s

#12 getting avg benchmarks for device 18623 +0.003s ... 0.036s

#13 got single benchmarks 18623 +0.005s ... 0.041s

#14 got avg benchmarks for devices +0s ... 0.041s

#15 min, max, avg, median took s +0.043s ... 0.084s

#16 return log +0s ... 0.084s

Please share our article, every link counts!
Mail Logo
> 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)