Snapdragon 8 Elite Gen 6 Pro Early AnTuTu Score Shows Big Performance Jump
The Snapdragon 8 Elite Gen 6 Pro is already starting to attract attention, and an early AnTuTu benchmark result suggests Qualcomm’s next flagship mobile chipset could deliver a major performance upgrade over current-generation Android phones.
According to a score shared by reliable Weibo tipster Digital Chat Station, the Snapdragon 8 Elite Gen 6 Pro reached an overall AnTuTu result of 4,835,412 points. That puts it around 20.7 percent ahead of the fastest Snapdragon 8 Elite Gen 5-powered device currently listed on AnTuTu, the REDMAGIC 11 Pro, which holds a score of 4,005,248 points.
While early benchmark results should always be viewed with caution, this score gives us a strong first look at what Qualcomm may be preparing for its next premium smartphone platform.
The benchmark shows gains across both CPU and GPU performance, but the graphics side appears to see the bigger improvement. The Snapdragon 8 Elite Gen 6 Pro is expected to feature the Adreno 850 GPU, and the early numbers suggest it could bring a noticeable leap in gaming performance, visual rendering, and demanding mobile workloads.
This lines up with earlier reports claiming that the Pro version of the Snapdragon 8 Elite Gen 6 may offer a more powerful graphics upgrade compared to the standard model. If these early results are accurate, the chipset could become especially appealing for high-end gaming phones and premium Android flagships.
One of the most interesting upgrades reportedly coming to the Snapdragon 8 Elite Gen 6 Pro is 18MB of dedicated graphics memory. The chip is also said to support enhanced upscaling and frame generation features. These technologies could help smartphones deliver smoother gameplay, better image quality, and improved frame rates in graphically intensive games.
For mobile gamers, this could be a major advantage. As Android games continue to become more demanding, features like frame generation and intelligent upscaling may help flagship devices maintain high performance without sacrificing visual quality.
On the CPU side, both upcoming 2nm Snapdragon 8 Elite Gen 6 chips are expected to use a new 2 + 3 + 3 core layout. This redesigned cluster could be one of the key reasons behind the improved AnTuTu result. A better CPU structure usually helps with multitasking, app launching, productivity performance, and benchmark scores.
The Pro variant may go even further. Previous rumors suggest Qualcomm has tested the Snapdragon 8 Elite Gen 6 Pro with performance cores running at up to 5.00GHz. If that clock speed appears in final retail devices, it could lead to higher scores not only in AnTuTu but also in single-core and multi-core benchmarks such as Geekbench.
However, real-world performance will depend heavily on the phone using the chipset. Cooling design, power limits, software tuning, and device size can all affect benchmark results. A gaming phone with a large vapor chamber, liquid cooling system, or built-in active fan could push the Snapdragon 8 Elite Gen 6 Pro even harder and produce higher scores than a slim flagship phone with more limited thermal headroom.
That is why early benchmark results are useful but not final. Scores can improve before launch as software matures, or they can vary depending on the prototype device used for testing. Still, a score of 4.83 million points is an impressive early showing and suggests Qualcomm is preparing a serious performance leap for its next-generation flagship platform.
If these gains carry over to commercial smartphones, the Snapdragon 8 Elite Gen 6 Pro could become one of the most powerful Android chipsets available, especially for gaming, AI workloads, high-refresh-rate displays, and advanced camera processing.
For now, the early AnTuTu result points to a promising future for premium Android phones. With a stronger GPU, a redesigned CPU cluster, possible 5.00GHz performance cores, and new gaming-focused features, the Snapdragon 8 Elite Gen 6 Pro is shaping up to be a major upgrade over the Snapdragon 8 Elite Gen 5.






