HiSiliconKirin 710 vs Qualcomm Snapdragon 625. HiSilicon Kirin 710 vs. Qualcomm Snapdragon 625. Cpu Benchmark avec benchmarks. HiSilicon Kirin 710: Qualcomm Snapdragon 625: 1.70 GHz: La fréquence: 2.00 GHz: 2.20 GHz: Turbo (1 cœur) 2.00 GHz: 2.20 GHz: Turbo (tous les cœurs) 2.00 GHz: 8: Noyaux: 8: Non:
When a new product comes out, it is normal for people to inquire about the novelties they have with respect to predecessors, especially if we talk about SoCs. Knowing if the new processor is on par with old technologies or completely revolutionizes the market is essential to determine if it is worth the investment. Today Huawei has presented the chip they will use in the new Nova 5, the Kirin 810. This processor that promises to be a direct competition of the Snapdragons series 7, and has left everyone surprised thanks to its performance. However, for you to have a clearer idea, we present this Kirin 810 vs Kirin 710 vs Kirin 980 Comparison, and so you can see why the next mid-range smartphones look so promising. What's Inside 1Kirin 810 vs Kirin 710 vs Kirin 980 Comparison – Specification SheetKirin 810 vs Kirin 710 vs Kirin 980 Comparison – CPU ComparisonKirin 810 vs Kirin 710 vs Kirin 980 Comparison – Comparison GPUKirin 810 vs. Kirin 710 vs. Kirin 980 Comparison – Other Specs ComparisonConclusionOverall Winner Kirin 810 Kirin 810 vs Kirin 710 vs Kirin 980 Comparison – Specification Sheet SoCKirin 810Kirin 710Kirin 980 CPU2 X Cortex-A76 6 X Cortex-A55 X Cortex-A73 4 X Cortex-A53 X Cortex-A76 2 X Cortex-A76 4 X Cortex-A55 GPUMali-G52Mali-G51Mali-G76 MemoryLPDDR4LPDDR4 1866MHz2-LPDDR4x 1866MHz ModemDual VoLTELTE 12 / 13 DL= 600Mbps UL= 150MbpsLTE 21 / 13 DL= 1400Mbps UL= 150Mbps Mfc. Process7nm TSMC12nm TSMC7nm LPP Kirin 810 vs Kirin 710 vs Kirin 980 Comparison – CPU Comparison The revelation has been today, but we already have important data about the performance of the new Kirin 810. That is why we can make a complete comparison with its brothers and competitors. The first thing is to talk about the CPU, which will be responsible for the vast majority of processes and the management of artificial intelligence. The Kirin 810 has raised the bar within Huawei, although it is not the first SoC of the company to adopt the 7nm TSMC lithography, it is still an engineering achievement. This process represents a 50% improvement in the density of transistors with respect to 8nm, and 64% with respect to 10nm. This translates into more power in the same space. With regard to the structure of the CPU, this octa-core chip is made up of 2 high-performance Cortex-A76 units at and 6 Cortex-A55 units at Additionally, for the AI tasks the chip comes with a DaVinci NPU from the same manufacturer, being a great progress to separate the use of third-party hardware. For its part, and following this Kirin 810 vs. Kirin 710 vs. Kirin 980 Comparison, we break down what the Kirin 710 offers us. This chip, dedicated to the mid-range, has a 12nm lithography, and although at the time it was revolutionary for Huawei, is already somewhat outdated. The good thing is that it remains in the fight thanks to its octa-core architecture with four Cortex-A73 units at and 4 Cortex-A53 at Another feature that keeps it relevant is that it also has NPU for AI functions, worth admiring on a mid-range chip. For the benefit of the comparison, it is fair to mention the other Huawei 7nm processor, the Kirin 980. This processor was born as a competitor of the highest range in the company, standing above the Snapdragon 845 thanks to its octa-core architecture, with 2 Cortex-A76 at 2 Cortex-A76 at and 4 Cortex-A55 at Of the three participants, it is the only one with a different architecture having high and medium performance units. It also has a dual NPU, achieving a unique performance with regard to AI. Also Read Exynos 7904 vs Snapdragon 670 vs Snapdragon 675 Comparison Winner Kirin 980 Reason Better cores Kirin 810 vs Kirin 710 vs Kirin 980 Comparison – Comparison GPU We continue this Kirin 810 vs. Kirin 710 vs. Kirin 980 Comparison in the GPU section. Huawei has always been a pioneer in the use of modern graphics units, and this has not been the exception. Following the trend of creating unique experiences for games, the Kirin 810 uses a customized Mali-G52 GPU to take advantage of the AI features of the Smartphone in which it is installed. It has also been promised that HD games will always work at a minimum of 60FPS. The Kirin 710 is maintained with a mid-range GPU to its credit, the Mali-G51, a unit that today is still very good for image reproduction thanks to its speed of 650MHz. The Kirin 980 premiered at the time a powerful 7nm Mali-G76 GPU unit with a speed of 720MHz. This offers amazing game speeds and 60FPS in the vast majority of games. This is a very closed section between Kirin 810 and 980, and it will depend on how each is optimized in conjunction with Huaweis Turbo technology. Winner Kirin 810 Reason To be mid-range, it is up to the big ones in performance. Kirin 810 vs. Kirin 710 vs. Kirin 980 Comparison – Other Specs Comparison We finished this Kirin 810 vs. Kirin 710 vs. Kirin 980 Comparison with other highlights among these SoCs. The Kirin 810 is still a mystery in some specifications, but for now, we can confirm the use of IVP + ISP to capture photographs, significantly improving the image quality, contrast, and brightness. We also know that it supports Dual VoLTE, perfect to enjoy 2 SIM cards with 4G support. The Kirin 710 is not far behind in qualities. It is also compatible with Dual VoLTE and offers downloads speeds of up to 300mbps and upload speeds of up to 150mbps thanks to the Cat12 and Cat13 protocols. The Kirin 980, meanwhile, has dual ISP for capturing photos, significantly reducing the time it takes to capture it and with lower energy consumption. At the connection level, it has a LTE21 for downloads and LTE13 for the upload, which give it higher speeds than the Kirin 810. Winner Kirin 810 Reason It adapts very well the characteristics of the high range Conclusion Overall Winner Kirin 810 This new SoC that fully enters the mid-range promises to be a revolution in terms of refreshing the power of new terminals. The 7nm lithography is settling more and more between the processors, and this is the first sample of it. Huawei is striving to demonstrate that they can build an entirely own ecosystem around which to work, not only in the highest range but in more accessible ones. The Kirin 810 turns out to be a pleasant surprise, and we can only hope to see its result in the market.
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HiSilicon Kirin 710Qualcomm Snapdragon 710Why is HiSilicon Kirin 710 better than Qualcomm Snapdragon 710? faster CPU speed?4 x & 4 x x & 6 x higher ram speed?2200MHzvs1866MHzHas NX bit?2 newer version of VFP?4vs2Why is Qualcomm Snapdragon 710 better than HiSilicon Kirin 710?2nm smaller semiconductor size?10nmvs12nm100MHz faster GPU clock speed? faster downloads?800MBits/svs600MBits/s2GB larger maximum memory amount?8GBvs6GBUser reviewsOverall ratingHiSilicon Kirin 7105 User reviewsHiSilicon Kirin 710Qualcomm Snapdragon 7104 User reviewsQualcomm Snapdragon 710FeaturesGeneral infoA 32-bit operating system can only support up to 4GB of RAM. 64-bit allows more than 4GB, giving increased performance. It also allows you to run 64-bit integrated graphics you don’t need to buy a separate graphics semiconductors provide better performance and reduced power consumption. Chipsets with a higher number of transistors, semiconductor components of electronic devices, offer more computational power. A small form factor allows more transistors to fit on a chip, therefore increasing its graphics processing unit GPU has a higher clock is used in games, with newer versions supporting better fifth-generation wireless technology delivers higher speeds and lower latency than the previous, fourth-generation turbo Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710When the GPU is running below its limitations, it can boost to a higher clock speed in order to give increased ES is used for games on mobile devices such as smartphones. Newer versions support better apps use OpenCL to apply the power of the graphics processing unit GPU for non-graphical computing. Newer versions introduce more functionality and better CPU speed indicates how many processing cycles per second can be executed by a CPU, considering all of its cores processing units. It is calculated by adding the clock rates of each core or, in the case of multi-core processors employing different microarchitectures, of each group of threads result in faster performance and better technology, a chip can switch between two sets of processor cores to maximize performance and battery life. For example, when playing a game the more powerful cores will be used to increase performance, whereas checking email will use the less powerful cores to maximize battery Multi-Processing HMP is a more advanced version of technology. In this setup, a processor can utilize all cores at the same time, or just a single core for low-intensity tasks. This can provide powerful performance or increased battery life the CPU is running below its limitations, it can boost to a higher clock speed in order to give increased cache Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710A larger L2 cache results in faster CPU and system-wide cache Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710A larger L1 cache results in faster CPU and system-wide multiplier Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710The clock multiplier controls the speed of the cache Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710A larger L3 cache results in faster CPU and system-wide can support faster memory, which will give quicker system Double Data Rate memory is the most common type of RAM. Newer versions of DDR memory support higher maximum speeds and are more maximum amount of memory RAM is the maximum rate that data can be read from or stored into memory channels increases the speed of data transfer between the memory and the version Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710A higher version of eMMC allows faster memory interfaces, having a positive effect on the performance of a device. For example, when transferring files from your computer to the internal storage over code memory can detect and correct data corruption. It is used when is it essential to avoid corruption, such as scientific computing or when running a system on a chip SoC has an integrated LTE cellular chip. LTE is capable of downloading at faster speeds than older, 3G download speed is a measurement of the internet connection bandwidth, representing the maximum data transfer rate at which a device can access online upload speed is a measurement of the internet connection bandwidth, representing the maximum data transfer rate at which a device can send information to a server or another technology integrated into the processor to secure the device for use with features such as mobile payments and streaming video using digital rights management DRM.Multithreading technology such as Intel's Hyperthreading or AMD's Simultaneous Multithreading provides increased performance by splitting each of the processor's physical cores into virtual cores, also known as threads. This way, each core can run two instruction streams at bit helps protect the computer from malicious provides acceleration for media processing, such as listening to is used to speed up encryption and Floating-Point VFP is used by the processor to deliver increased performance in areas such as digital 5 is a cross-platform benchmark that measures a processor's single-core performance. Source Primate Labs, 2023Geekbench 5 is a cross-platform benchmark that measures a processor's multi-core performance. Source Primate Labs, 2023PassMark result Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710This benchmark measures the performance of the CPU using multiple result single Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710This benchmark measures the performance of the CPU using a single result overclocked Unknown. Help us by suggesting a value. HiSilicon Kirin 710 Unknown. Help us by suggesting a value. Qualcomm Snapdragon 710This benchmark measures the performance of the CPU when it is Snapdragon 8 Gen 2Qualcomm Snapdragon 8 Gen 1Qualcomm Snapdragon 8 Plus Gen 1MediaTek Dimensity 9200 PlusQualcomm Snapdragon 7c Plus Gen 3Show allThis page is currently only available in English.
TheAI-oriented BPI-EAI80 SBC is based on an Edgeless EAI80 SoC (2x Cortex-M4F cores and an NPU) plus 8MB RAM and SPI flash storage Snapdragon 730G: The Snapdragon 730G has the company's Hexagon 688 DSP with the company's 4th Gen AI engine This provides an unambiguous example of spike-based computation, outperforming all known conventional
Comparedto the similar named Kirin 820, the 820e offers slower clocked CPU cores on a level with the older Kirin 810. The chip should also integrate Bluetooth 5 and WiFi 6.
Prosof HiSilicon Kirin 810. Supports 128% higher memory bandwidth (31.78 against 13.91 GB/s) Performs 78% better in floating-point computations. Higher GPU frequency (~49%) Has a smaller size transistor (7 versus 10 nm) Shows better (up to 30%) AnTuTu 9 score - 372K vs 287K. Better instruction set architecture.
Differencebetween MediaTek Helio P35 and HiSilicon Kirin 810 Check out detailed comparison which includes antutu benchmark results, performance, gaming, processors, number of cores, threads and cache memory.
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kirin 810 vs snapdragon 710