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No overheating was observed in either of the phones. The latter allows us to simulate several hours of gaming. BenchmarksĪpart from performance, we also tested the two chips for potential overheating issues with the help of the Epic Citadel app. We compared the two models in 8 benchmark tests in which we checked CPU (first 4 tests) and GPU (the latter 4 tests) performance. You can find more useful information about Snapdragon 820 on Qualcomm’s official website: Also available are Quick Charge™ 3.0 and WiPower for quick and wireless charging. Additionally, the specs are supplemented by Bluetooth 4.1, Wi-Fi 802.11ac 2×2 MU-MIMO, support of 4K screens, up to 25MP cameras and 4K video recording.
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Snapdragon 820 also boasts LTE Cat 12/13 support with download speed up to 600 Mbps (Cat 12), and upload speed up to 150 Mbps (Cat 13).
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Furthermore, there is an update of the GPU – the new Adreno 530 brings 40% better GPU performance (when compared to Adreno 430). Also, the chip features four Kryo cores – two ticking at 2.15 GHz and other two – at 1.6 GHz. According to the manufacturer, CPU performance is twice as high as that of Snapdragon 810. Snapdragon 820 is Qualcomm’s top-notch CPU for 2016. You can find more useful information about Exynos 8890 on Samsung’s official website: Additionally, there is an integrated Mali-T880MP12 GPU. The current chip supports LTE Cat 12/13 with download speed up to 600 Mbps (Cat 12), and upload speed up to 150 Mbps (Cat 13). According to Samsung, Exynos 8890 provides up to 30% higher performance and up to 10% better energy efficiency, when compared to its predecessor – Exynos 7 Octa 7420.
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It has been manufactured through a 14 nm FinFET technological process and features four Cortex-A53 cores, ticking at 1.59 GHz, plus two other considerably more powerful Exynos M1 cores whose frequency can reach up to 2.6 GHz.
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The most common smartphone GPUsīelow are the most common GPUs found in some of the most popular smartphones in use today.
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On the other hand, when you can confirm a device's chipset and hardware has the power to process the most impressive visual elements you can offer, go ahead and serve the full immersive experience.
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Whether you're offering resource-heavy content such as HD video, animations or interactive elements, scaling back where a visitor's device lacks the computational ability to handle it can save them from a potentially frustrating experience, which wouldn't help your business either. The image above, for example, is a Qualcomm Snapdragon SoC, which combines CPU, GPU, memory controller, connectivity (Bluetooth, WiFi, LTE), a Digital Signal Processor, as well as some other vital pieces of a functioning phone's infrastructure. In smartphones, however, restrictions in space have led to the GPU/CPU being combined into a System On Chip, which cuts out the need for additional connectors between such components where space is so limited.
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In desktop computers, they're usually two distinct parts of the internal setup, allowing each to be replaced or upgraded individually. It differs from the CPU by handling the visual rendering elements of a phone's display, whereas the CPU is the brain of the device, handling all the heavy computation and logic behind the screen.Ĭombined, both have a dramatic effect on the performance capabilities of a given device. In a smartphone, the GPU (graphics processing unit) is a central part of the system hardware.