iPhone 15 Pro v Galaxy S24 Ultra v Vivo X100 Pro, smartphone titans in benchmark head-to-head

iPhone 15 Pro v Galaxy S24 Ultra v Vivo X100 Pro, smartphone titans in benchmark head-to-head
The Galaxy S24 Ultra, Vivo X100 Pro and iPhone 15 Pro Max function powerhouse chipsets. (Image: Notebookcheck)

The Galaxy S24 Ultra, iPhone 15 Pro Max and Vivo X100 Pro are 3 of the most effective mobile phones on the marketplace today thanks to their extraordinary chipsets. We put them to the test in a directly head-to-head shootout under the exact same conditions to see which triumphes.

We’ve got our hands on the iPhone 15 Pro Max Galaxy S24 Ultra and Vivo X100 Proall 3 titans of the flagship phone class and running the 3 most effective mobile phone chipsets on the marketplace today.

The iPhone 15 Pro Max runs the custom-made Apple A17 Pro with a hexa-core clocked approximately 3.77 GHz and includes a brand new 6-core GPU architecture. The Galaxy S24 Ultra runs the Qualcomm Snapdragon 8 Gen 3 (SD8G3) with a timeless big.LITTLE octa-core setup clocked approximately 3.4 GHz with a Adreno 750 GPU that clocks approximately 1GHz. The Vivo X100 Pro runs the MediaTek Dimensity 9300 (D9300) chips with a non-traditional ‘all huge’ octa-core arch clocked approximately 3.25 GHz with 4 big cores and 4 mid cores. Its Mali G720-Immortalis sports a 12-core setup.

Naturally, getting these gadgets and chips in hand, we wished to see how they compare performance-wise in a quick-fire head-to-head test of their CPUs and GPUs under the very same conditions. To this degree, we took a step of the space ambient temperature level and the temperature level of each gadget on its back utilizing an infrared heat picking up weapon before and after each run. All gadgets were checked under the exact same ambient temperature level and at the exact same time, offering us an excellent sign of thermal management which includes extra context to their particular ratings. This is a much fairer method of comparing efficiency.

As you would anticipate, we checked the CPUs with Geekbench 6, which has actually a modified work of real-world jobs that smartphone users progressively work on their gadgets, consisting of artificial intelligence jobs associated with photography and language designs. To evaluate the GPU, we subjected them to the Wild Life Extreme Stress Test, which runs a graphics extensive work looped over a 20-minute duration, tape-recording the very best loop rating, and the most affordable as the chip begins to warm up and throttle. It informs us a lot about the gadget’s thermal management in addition to the capability of each chip’s continual efficiency.

Geekbench 6:

In evaluating the efficiency of the chips in Geekbench 6, you can see from the table that the iPhone’s A17 Pro chip has a strong 30+% percent lead in single-core efficiency over both the Galaxy’s SD8G3 and the Vivo’s D9300. This is usually thought about the most crucial metric as a lot of mobile apps still just use a single core. For more intricate jobs, multi-core efficiency ends up being more essential, especially for device knowing jobs in picture apps or video gaming. In this case, the D9300 is generally on par with the A17 Pro while the SD8G3 routes by around simply 7%.

This would have been unprecedented just a year or 2 back, so it appears the efficiency space in between Apple’s vaunted chips and the competitors is closing significantly. Early criteria for the SD8G4 and D9400 due later on this year are likewise extremely appealing, with Apple’s efficiency crown looking as though it might be fallen unless it is formulating something unique with the A18 Pro in action. In regards to thermal efficiency throughout Geekbench 6, they stayed well under control for all the chipsets, although the D9300 got somewhat toastier– bearing in mind that Geekbench 6 is not a tension test.

3D Mark Wild Life Extreme Stress Test:

The 3D Mark Wild Life Extreme Stress Test was performed in the exact same space at the very same time with the exact same ambient temperature level of 26-degrees Celsius (78.8 F) and screen brightness set to 50%. It exposes, when again, that Apple has a severe battle on its hands.

The SD8G3 and D9300 both exceed the A17 Pro by a significant margin in peak efficiency, although the iPhone’s least expensive boot loop rating was greatest. The iPhone’s total frame rate variety was likewise on par with the SD8G3. Notably, the iPhone’s stability was likewise the greatest at 61.4%, around 10% greater than the other 2 chips. This is possibly an advantage of its TSMC 3nm fabrication and in spite of the truth that it just leans on fundamental graphite sheeting for a thermal service. It likewise recommends that the overheating problems dealt with by the iPhone 15 Pro at launch have actually lastly been eradicated.

Externally, the Vivo/D9300 ran most popular at 44-degrees Celsius (111.2 F), while both the SD8G3 and A17 Pro remained simply listed below 40-degrees Celsius (104 F). While the Vivo X100 Pro has a vapor chamber, Samsung has actually fitted the Galaxy S24 Ultra with a vapor chamber that is 92% bigger than it fitted to the S23 Ultra. The SD8G3 drew a little more juice losing 9% of its charge over the 20m test, with the A17 Pro and D9300 dropping simply 7% of their charge each.

Conclusion:

All of these phones will power through the jobs for power users and routine users alike. Any of these phones will likewise use exceptional mobile video gaming efficiency too, with little to separate them in general. The A17 Pro takes the total CPU efficiency gong, while the SD8G3 and D9300 share the honors on the GPU side in regards to straight-out efficiency.

As we just recently highlighted solelynevertheless, the A17 Pro likewise gain from AMD’s FidelityFX Super Resolution upscaling, an open source innovation that Apple has actually constructed into its MetalFX structure. Although both the SD8G3 and D9300 might have more graphics horse power, the A17 Pro will have the ability to punch above its weight in requiring video gaming titles like Citizen Evil Village and Death Stranding that have actually just recently made it to the platform as iOS exclusives at this time.

What these tests likewise show is that, when integrated with their NPUs for artificial intelligence velocity, the CPU and GPU efficiency of these chips operating in unison will have the ability to manage more AI jobs on-device than state chips like the Tensor G3which need to off-load a number of the Pixel 8 Pro’s most current generative AI jobs to the cloud for processing. This lowers personal privacy, increases latency and drains pipes more battery, which is a genuine advantage of using the powerhouse efficiency that all these mobile phones and their chips provide. Standards matter now more than ever previously.

* Note: While we did run the Geekbench ML test, which targets the NPU, we weren’t positive in the outcomes it was producing for the SD8G3, and will call Primate Labs to much better comprehend what may be going on before releasing them.

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