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Qualcomm Snapdragon 8cx vs Apple M3 Max 14-Core vs Microsoft SQ1

Qualcomm Snapdragon 8cx

► remove from comparison Qualcomm SD 8cx

The Qualcomm Snapdragon 8cx Compute Platform (or SD8cx) is a ARM based SoC for Windows laptops. It integrates a similar CPU part as the Snapdragon 855 (same cores but without the Prime Core feature) and is manufactured in 7nm at TSMC. The 4 Kryo 495 Gold cores are based on the ARM Cortex-A76 architecture (for performance) and clocked at 2.84 GHz under load (no single core Turbo). The 4 Kryo 495 Silver cores are small ARM Cortex-A55 cores for power efficiency and clocked at 1.9 GHz under load. According to Qualcomm, the clock speed should not be reduced under constant load with typical (fanless) cooling. The integrated X24 LTE modem supports up to 2 Gbps download speeds. Furthermore, the SoC integrates ac-Wifi and a dual-channel 32-bit 1866 MHz LPDDR4x memory controller.

The processor performance should be similar to a Intel Core i5 8th gen U-series (e.g. i5-8250U) according to Qualcomm. However, this is only the case for native ARM64 compiled Windows apps which are not that many (in mid 2019). 32 bit applications and games for AMD/Intel run in a rather slow emulation and 64 bit apps wont start at all (but an emulator should come in Windows in 2021).

The integrated Adreno 680 graphics card is a beefier version of the Adreno 640 in the Snapdragon 855 and should be twice as fast as the old Adreno 630 (in Windows laptops) and offer a 60% higher efficiency.

The chip is very power efficient as its produced at Samsung in the modern 7 nm process (7LPP). Therefore, laptops using the Snapdragon 8cx can be passively cooled (no fan) and should not throttle under constant load.

Apple M3 Max 14-Core

► remove from comparison Apple Apple M3 Max 14-Core

The Apple M3 Max 14 core CPU is a system on a chip (SoC) from Apple for notebooks that was introduced towards the end of 2023. It integrates a new 14-core CPU with 10 performance cores with up to 4.06 GHz and 4 efficiency cores with 2.8 GHz. There is also a more powerful 16-core variant with 40 GPU cores.

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.

The M3 also integrates a new graphics card with dynamic caching, mesh shading and ray tracing acceleration via hardware. In the cheaper model, 30 of the chip's 40 cores 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 36 and 96 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).

Microsoft SQ1

► remove from comparison Qualcomm SQ1

The Microsoft SQ1 is a ARM based SoC for Windows tablets (Surface Pro X). It is based on the Snapdragon 8cx but with higher clocked CPU and GPU cores. The CPU cores clock with up to 3 GHz. The 4 Kryo 495 Gold cores are based on the ARM Cortex-A76 architecture (for performance) and clocked at up to 3 GHz (2.84 GHz  for the 8cx) under load (no single core Turbo). The 4 Kryo 495 Silver cores are small ARM Cortex-A55 cores for power efficiency and clocked at 1.9 GHz (unverified) under load. The integrated X24 LTE modem supports up to 2 Gbps download speeds. Furthermore, the SoC integrates ac-Wifi and a dual-channel 32-bit 1866 MHz LPDDR4x memory controller.

The processor performance should be similar to a Intel Core i5 8th gen U-series (e.g. i5-8250U) according to Qualcomm. However, this is only the case for native ARM64 compiled Windows apps which are not that many (in mid 2019). 32 bit applications and games for AMD/Intel run in a rather slow emulation and 65 bit apps wont start at all.

The integrated Adreno 685 graphics card is a higher clocked version of the Adreno 680 in the Snapdragon 8cx. Microsoft claims 2 TFlops theoretical performance compared to the 1.8 for the Adreno 680 (+11%).

The chip is very power efficient as its produced at TSMC in the modern 7 process. Therefore, laptops using the Snapdragon 8cx can be passively cooled (no fan) and should not throttle under constant load.

ModelQualcomm Snapdragon 8cxApple M3 Max 14-CoreMicrosoft SQ1
SeriesQualcomm SnapdragonApple Apple M3Qualcomm Snapdragon
CodenameCortex-A76 / A55 (Kryo 495)Cortex-A76 / A55 (Kryo 495)
Series: Snapdragon Cortex-A76 / A55 (Kryo 495)
Qualcomm Snapdragon 8cx Gen 2 5G3.15 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Microsoft SQ13 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Qualcomm Snapdragon 8cx « 2.84 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Apple M3 Max 16-Core2.75 - 4.06 GHz16 / 16 cores
Apple M3 Max 14-Core « 2.75 - 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 8cx Gen 2 5G3.15 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Microsoft SQ1 « 3 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Qualcomm Snapdragon 8cx2.84 GHz8 / 8 cores2 MB L3 Cortex-A76 / A55 (Kryo 495)
Clock2840 MHz2748 - 4056 MHz3000 MHz
L3 Cache2 MB2 MB
Cores / Threads8 / 814 / 14
10 x 4.1 GHz Apple M3 P-Core
4 x 2.7 GHz Apple M3 E-Core
8 / 8
TDP7 Watt78 Watt
Technology7 nm3 nm7 nm
FeaturesX24 LTE Modem, Adreno 680 GPUARMv8 Instruction SetX24 LTE Modem, Adreno 685 GPU
iGPUQualcomm Adreno 680Apple M3 Max 30-Core GPUQualcomm Adreno 685
ArchitectureARMARMARM
Announced
Manufacturerwww.qualcomm.comwww.apple.comwww.microsoft.com
Transistors92000 Million

Benchmarks

Cinebench R10 - Cinebench R10 Rend. Single (32bit)
100%
1 SD 8cx +
591 Points (4%)
91%
1 SQ1 +
537 Points (3%)
Cinebench R10 - Cinebench R10 Rend. Multi (32bit)
100%
1 SD 8cx +
4187 Points (3%)
102%
1 SQ1 +
4276 Points (3%)
wPrime 2.10 - wPrime 2.0 1024m *
100%
1 SD 8cx +
442.1 s (5%)
100%
1 SQ1 +
429.3 s (5%)
wPrime 2.10 - wPrime 2.0 32m *
100%
1 SD 8cx +
14.6 s (3%)
100%
1 SQ1 +
14.2 s (3%)
Super Pi mod 1.5 XS 1M - Super Pi mod 1.5 XS 1M *
100%
1 SD 8cx +
10.9 s (2%)
98%
1 SQ1 +
21.2 s (5%)
Super Pi mod 1.5 XS 2M - Super Pi mod 1.5 XS 2M *
100%
1 SQ1 +
46.7 s (2%)
Super Pi Mod 1.5 XS 32M - Super Pi mod 1.5 XS 32M *
100%
1 SD 8cx +
564 s (3%)
98%
1 SQ1 +
1095 s (5%)
3DMark 11 - 3DM11 Performance Physics
100%
1 SD 8cx +
3095 Points (8%)
104%
1 SQ1 +
3210 Points (9%)
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Single-Core
100%
1 SD 8cx +
700 Points (30%)
106%
1 SQ1 +
739 Points (31%)
Geekbench 5.5 - Geekbench 5.1 - 5.4 64 Bit Multi-Core
100%
1 SD 8cx +
2760 Points (5%)
104%
1 SQ1 +
2875 Points (5%)
Geekbench 5.0 - Geekbench 5.0 64 Bit Single-Core
100%
1 SQ1 +
728 Points (3%)
Geekbench 5.0 - Geekbench 5.0 64 Bit Multi-Core
100%
1 SQ1 +
2785 Points (9%)
Geekbench 4.4 - Geekbench 4.1 - 4.4 64 Bit Single-Core
100%
1 SD 8cx +
3313 Points (33%)
25%
1 SQ1 +
830 Points (8%)
Geekbench 4.4 - Geekbench 4.1 - 4.4 64 Bit Multi-Core
100%
1 SD 8cx +
11047 Points (12%)
24%
1 SQ1 +
2597 Points (3%)
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
100%
1 SD 8cx +
1464 ms (2%)
100%
1 SQ1 +
1408 ms (2%)
Octane V2 - Octane V2 Total Score
100%
1 SD 8cx +
29364 Points (26%)
106%
1 SQ1 +
31099 Points (27%)
WebXPRT 3 - WebXPRT 3 Score
100%
1 SD 8cx +
116 Points (24%)
100%
1 SQ1 +
116 Points (24%)

Average Benchmarks Qualcomm Snapdragon 8cx → 0% n=

Average Benchmarks Microsoft SQ1 → 0% n=

- 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

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