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Apple M3 Max 16-Core vs Qualcomm Snapdragon X Elite X1E-80-100 vs Qualcomm Snapdragon X Elite X1E-84-100

Apple M3 Max 16-Core

► remove from comparison Apple Apple M3 Max 16-Core

The Apple M3 Max (16 Core) is a system on a chip (SoC) from Apple for notebooks that was launched towards the end of 2023. It integrates a new 16-core CPU with 12 performance cores with up to 4.06 GHz and 4 efficiency cores with 2.8 GHz. There is also a slimmed-down 14-core variant with a 30-core GPU.

Thanks to the higher clock rates and architectural improvements, the processor performance is also significantly better than the M2 Max in benchmarks and can keep up with the fastest mobile CPUs (such as a Core i9-13900HX).

The M3 also integrates a new graphics card with dynamic caching, mesh shading and ray tracing acceleration via hardware. In the top model, all 40 cores of the chip are used and support up to 5 displays simultaneously (internal and 4 external).

GPU and CPU can jointly access the shared memory on the package (unified memory). This is available in 48, 64 and 128 GB variants and offers 400 GB/s maximum bandwidth (512 bit bus).

The integrated 16-core Neural Engine has also been revised and now offers 18 TOPS peak performance (compared to 15.8 TOPS in the M2 but 35 TOPS in the new A17 Pro). The video engine now also supports AV1 decoding in hardware. H.264, HEVC and ProRes (RAW) can still be decoded and encoded. Like its predecessor, the Max chip offers two video engines and can therefore encode and decode two streams simultaneously.

Unfortunately, the integrated WLAN only continues to support WiFi 6E (no WiFi 7), unlike the small M3 SoC thunderbolt 4 is also supported (max 40 Gbit/s).

The chip is manufactured in the current 3nm process (N3B) at TSMC and contains 92 billion transistors (+37% vs. Apple M2 Max). Under load, the CPU part consumes up to 56 watts, the chip can use a total of 78 watts.

Qualcomm Snapdragon X Elite X1E-80-100

► remove from comparison Qualcomm Snapdragon 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 a 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 Elite X1E-84-100

► remove from comparison Qualcomm Snapdragon X Elite X1E-84-100

The Snapdragon X Elite X1E-84-100 is a pretty fast ARM architecture processor (SoC) for use in Windows laptops. The X1E-84-100 is the 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 4.2 GHz, along with the 4.6 TFLOPS Adreno X1-85 GPU, the 45 TOPS Hexagon NPU and an impressively fast LPDDR5x-8448 memory controller.

Two slower Snapdragon X Elite flavors exist, known as the X1E-80-100 and X1E-78-100. In the meantime, the X1E-00-1DE is a special version of the X1E-84-100 aimed at system makers and software developers that has just slightly higher single-core and dual-core Boost clock speed of 4.3 GHz but otherwise the same CPU/GPU/NPU configuration.

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 believed 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 run at up to 3.8 GHz. The 4.2 GHz clock speed is only achievable under single-thread or dual-thread loads.

Taking the difference in clock speeds into consideration, its multi-thread performance should be around 12% higher than that of the X Elite X1E-78-100 for AMD Ryzen 7 8845HS-like performance in most real-world tasks. We'll make sure to update this section once we get our hands on a laptop powered by the X1E-84-100.

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 4.6 TFLOPS X1-85 GPU is DirectX 12-enabled but not DirectX 12 Ultimate-enabled, despite featuring VRS and ray tracing support. The 4.6 TFLOPS of performance that it supposedly delivers represent a half of what the slowest current-generation professional Nvidia Ada graphics card for laptops, the RTX 500 Ada, is capable of.

Its gaming performance is set to be just slightly better than that of the Radeon 780M. That should be sufficient for about 30 fps in Baldur's Gate 3, a triple-A title released in 2023, at 1080p / Low. Slightly older games will run just fine with most settings set to Medium.

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

As the most powerful Snapdragon X Elite chip, the X1E-84-100 can eat up to 80 watts depending on the system and the power profile chosen. This will differ from one laptop to another, with most designs expected to target the 40 W sweet spot.

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

ModelApple M3 Max 16-CoreQualcomm Snapdragon X Elite X1E-80-100Qualcomm Snapdragon X Elite X1E-84-100
SeriesApple Apple M3Qualcomm Snapdragon XQualcomm Snapdragon X
Series: Snapdragon X Oryon
Apple M3 Max 16-Core « 2.75 - 4.06 GHz16 / 16 cores
Apple M3 Max 14-Core2.75 - 4.06 GHz14 / 14 cores
Apple M3 Pro 12-Core2.75 - 4.06 GHz12 / 12 cores
Apple M3 Pro 11-Core2.75 - 4.06 GHz11 / 11 cores
Apple M32.75 - 4.06 GHz8 / 8 cores
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
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
Clock2748 - 4056 MHz <=4000 MHz <=4200 MHz
Cores / Threads16 / 16
12 x 4.1 GHz Apple M3 P-Core
4 x 2.7 GHz Apple M3 E-Core
12 / 12
12 x 4.0 GHz Qualcomm Oryon
12 / 12
12 x 4.2 GHz Qualcomm Oryon
TDP78 Watt
Transistors92000 Million
Technology3 nm4 nm4 nm
FeaturesARMv8 Instruction Set
iGPUApple M3 Max 40-Core GPUQualcomm Snapdragon X Adreno X1-85 (3.8 TFLOPS)Qualcomm Snapdragon X Adreno X1-85 (4.6 TFLOPS)
ArchitectureARMARMARM
Announced
Manufacturerwww.apple.comwww.qualcomm.comwww.qualcomm.com
CodenameOryonOryon
TDP Turbo PL280 Watt80 Watt

Benchmarks

Performance Rating - CB R15 + R20 + 7-Zip + X265 + Blender + 3DM11 CPU - Snapdragon X Elite X1E-80-100
37.7 pt (52%)
Cinebench 2024 - Cinebench 2024 CPU Single Core
min: 139     avg: 139.5     median: 139.5 (97%)     max: 140 Points
123 Points (85%)
min: 124     avg: 128.5     median: 128.5 (89%)     max: 133 Points
Cinebench 2024 - Cinebench 2024 CPU Multi Core
min: 1532     avg: 1572     median: 1572 (29%)     max: 1612 Points
893 Points (17%)
min: 950     avg: 1085     median: 1085 (20%)     max: 1220 Points
Cinebench R23 - Cinebench R23 Multi Core
min: 24020     avg: 24022     median: 24022 (22%)     max: 24024 Points
9927 Points (9%)
Cinebench R23 - Cinebench R23 Single Core
min: 1950     avg: 1959     median: 1959 (83%)     max: 1968 Points
1321 Points (56%)
Cinebench R20 - Cinebench R20 CPU (Single Core)
min: 492     avg: 494.5     median: 494.5 (55%)     max: 497 Points
490 Points (54%)
Cinebench R20 - Cinebench R20 CPU (Multi Core)
min: 5920     avg: 6124     median: 6123.5 (15%)     max: 6327 Points
3640 Points (9%)
Cinebench R15 - Cinebench R15 CPU Multi 64 Bit
min: 3225     avg: 3297     median: 3264 (21%)     max: 3401 Points
2249 Points (14%)
Cinebench R15 - Cinebench R15 CPU Single 64 Bit
min: 269     avg: 271     median: 271 (82%)     max: 273 Points
248 Points (75%)
7-Zip 18.03 - 7-Zip 18.03 Multli Thread 4 runs
44404 MIPS (25%)
7-Zip 18.03 - 7-Zip 18.03 Single Thread 4 runs
5359 MIPS (64%)
HWBOT x265 Benchmark v2.2 - HWBOT x265 4k Preset
6.8 fps (12%)
Blender - Blender 3.3 Classroom CPU *
min: 194     avg: 195     median: 195 (2%)     max: 196 Seconds
637 Seconds (8%)
Blender - Blender 2.79 BMW27 CPU *
min: 215     avg: 216     median: 216 (2%)     max: 217 Seconds
351 Seconds (2%)
R Benchmark 2.5 - R Benchmark 2.5 *
0.6 sec (14%)
3DMark 11 - 3DM11 Performance Physics
14877 Points (40%)
3DMark - 3DMark Fire Strike Standard Physics
18559 Points (33%)
Geekbench 6.2 - Geekbench 6.2 Single-Core
min: 3096     avg: 3127     median: 3126.5 (84%)     max: 3157 Points
2845 Points (77%)
min: 2777     avg: 2872     median: 2871.5 (77%)     max: 2966 Points
Geekbench 6.2 - Geekbench 6.2 Multi-Core
min: 21243     avg: 21254     median: 21253.5 (84%)     max: 21264 Points
14458 Points (57%)
min: 14056     avg: 14648     median: 14647.5 (58%)     max: 15239 Points
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Single-Core
min: 2318     avg: 2325     median: 2324.5 (98%)     max: 2331 Points
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Multi-Core
min: 22816     avg: 22938     median: 22937.5 (41%)     max: 23059 Points
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
min: 379.2     avg: 385.5     median: 385.5 (0%)     max: 391.7 ms
400.3 ms (0%)
Octane V2 - Octane V2 Total Score
min: 94770     avg: 96363     median: 96362.5 (85%)     max: 97955 Points
92123 Points (81%)
WebXPRT 3 - WebXPRT 3 Score
min: 416     avg: 421     median: 421 (88%)     max: 426 Points
435 Points (91%)
CrossMark - CrossMark Overall
min: 2032     avg: 2042     median: 2041.5 (78%)     max: 2051 Points
1443 Points (55%)
Power Consumption - Cinebench R15 Multi Power Consumption - external Monitor *
min: 91.8     avg: 92.3     median: 92.3 (17%)     max: 92.7 Watt
Power Consumption - Idle Power Consumption - external Monitor *
min: 3.81     avg: 5.2     median: 5.2 (3%)     max: 6.49 Watt
4.7 Watt (3%)
Power Consumption - Idle Power Consumption 150cd 1min *
min: 4.63     avg: 6.3     median: 6.3 (7%)     max: 7.91 Watt
3.3 Watt (4%)
Power Consumption - Cinebench R15 Multi Power Efficiency - external Monitor
min: 35.1     avg: 35.9     median: 35.9 (27%)     max: 36.7 Points per Watt

Average Benchmarks Apple M3 Max 16-Core → 100% n=4

Average Benchmarks Qualcomm Snapdragon X Elite X1E-80-100 → 76% n=4

Average Benchmarks Qualcomm Snapdragon X Elite X1E-84-100 → 80% n=4

- 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
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Redaktion, 2017-09- 8 (Update: 2023-07- 1)