Comparisonof HiSilicon Kirin 810 vs Qualcomm Snapdragon 710 on AntiTasse, enables you to check their respective specs scores and unique features.
VS We compared two 8-core processors Qualcomm Snapdragon 710 with Adreno 616 graphics and HiSilicon Kirin 810 Mali-G52 MP6. Here you will find the pros and cons of each chip, technical specs, and comprehensive tests in benchmarks, like AnTuTu and Geekbench. ReviewDifferencesBenchmarksAnTuTu v9GeekBench 5GamingSpecsComments Review General comparison of performance, power consumption, and other indicators CPU Performance Single and multi-core processor tests Gaming Performance GPU performance in games and OpenCL/Vulcan Battery life Efficiency of battery consumption NanoReview Score Overall chip score Key Differences Main differences and advantages of each chip Pros of HiSilicon Kirin 810 Supports 113% higher memory bandwidth against GB/sHas a smaller size transistor 7 versus 10 nmPerforms 43% better in floating-point computationsShows significantly better up to 43% AnTuTu 9 score – 369K vs 257KAnnounced 1-year and 1-month laterHigher GPU frequency ~9%Better instruction set architecture Benchmarks Performance tests in popular benchmarks AnTuTu 9 The AnTuTu Benchmark measures CPU, GPU, RAM, and I/O performance in different scenarios CPU 73587 109064 GPU 72514 95721 Memory 35412 72097 UX 75197 91820 Total score 257720 369603 Submit your AnTuTu result GeekBench 5 The GeekBench test shows raw single-threaded and multithreaded CPU performance Image compression 76 Mpixels/s - Face detection images/s - Speech recognition 26 words/s - Machine learning 22 images/s - Camera shooting 12 images/s - HTML 5 Mnodes/s - SQLite Krows/s - 3DMark A cross-platform benchmark that assesses graphics performance in Vulkan Metal 3DMark Wild Life Performance Stability 96% 99% Graphics test 3 FPS 8 FPS Score 550 1421 Gaming Table of average FPS and graphics settings in mobile games PUBG Mobile 39 FPS [Ultra] 30 FPS [High] Call of Duty Mobile 35 FPS [Ultra] 41 FPS [Ultra] Fortnite 26 FPS [Low] 29 FPS [Medium] Shadowgun Legends 53 FPS [Low] 43 FPS [Ultra] World of Tanks Blitz 60 FPS [Ultra] 59 FPS [Ultra] Mobile Legends Bang Bang 55 FPS [Ultra] 60 FPS [Ultra] Device Xiaomi Mi 9 Lite 1080 x 2340 Huawei Honor 9X 1080 x 2340 We provide average results. FPS may differ, depending on game version, OS and other factors. Specifications Full list of technical specifications of Snapdragon 710 and Kirin 810 CPU Architecture 2x GHz – Kryo 360 Gold Cortex-A756x GHz – Kryo 360 Silver Cortex-A55 2x GHz – Cortex-A766x GHz – Cortex-A55 Cores 8 8 Frequency 2200 MHz 2270 MHz Instruction set ARMv8-A L1 cache - 256 KB L2 cache 384 KB 1 MB L3 cache 1 MB - Process 10 nanometers 7 nanometers Transistor count 3 billion billion TDP 5 W 5 W Graphics GPU name Adreno 616 Mali-G52 MP6 Architecture Adreno 600 Rogue GPU frequency 750 MHz 820 MHz Execution units 2 6 Shading units 128 96 FLOPS 384 Gigaflops 551 Gigaflops Vulkan version OpenCL version DirectX version 12 12 Memory Memory type LPDDR4X LPDDR4X Memory frequency 1866 MHz 2133 MHz Bus 2x 16 Bit 4x 16 Bit Max bandwidth Gbit/s Gbit/s Max size 8 GB 8 GB Multimedia ISP Neural processor NPU Hexagon 685 Yes Storage type eMMC UFS eMMC UFS Max display resolution 3360 x 1440 3840 x 2160 Max camera resolution 1x 192MP, 2x 16MP 1x 48MP, 2x 20MP Video capture 4K at 30FPS 1K at 30FPS Video playback 4K at 60FPS 1080p at 60FPS Video codecs VP8, VP9 Audio codecs Qualcomm Aqstic, aptX, aptX HD AIFF, CAF, MP3, MP4, WAV Connectivity Modem X15 LTE - 4G support LTE Cat. 15 LTE Cat. 12 5G support No No Download speed Up to 800 Mbps Up to 600 Mbps Upload speed Up to 150 Mbps Up to 150 Mbps Wi-Fi 5 6 Bluetooth Navigation GPS, GLONASS, Beidou, Galileo, QZSS, SBAS GPS, GLONASS, Beidou, Galileo Cast your vote So, which SoC would you choose? Snapdragon 710 16 Total votes 98 Related Comparisons Comments Please give your opinion on the comparison of Kirin 810 and Snapdragon 710, or ask any questions
TheHiSilicon Kirin 710A is a ARM-based mid-range Octa-Core-SoC for Android based smartphones and tablets. It is based on the Kirin 710, but manufactured in 14nm FinFET at SMIC (China) versus the
HiSilicon Kirin 810 vs Qualcomm Snapdragon 710 vs Qualcomm Snapdragon 712HiSilicon Kirin 810 â–ș remove from comparisonThe HiSilicon Kirin 810 is a ARM-based mid-range Octa-Core-SoC for Android based smartphones and tablets. It was announced mid 2019 and contains 8 processor cores. Two fast ARM Cortex-A76 cores with up to GHz and six small power efficient ARM Cortex-A55 cores with up to GHz bigLITTLE. Furthermore, the SoC integrates a mid range graphics card called ARM Mali-G52 MP6 with 6 clusters. For AI acceleration, the Kirin 810 integrates a Ascend D100 Lite NPU Da Vinci architecture. The integrates LTE modem supports with Dual Sim VoLTE. For photography, the Kirin 810 integrates the Kirin The memory controller supports LPDDR4X at up to 2133 MHz. Furthermore, WiFi and Bluetooth are integrated in the chip. The SoC is manufactured in the modern 7nm process at TSMC and therefore should be very energy Snapdragon 710 â–ș remove from comparisonThe Qualcomm Snapdragon 710 SD710 is a fast mid-range ARM-based SoC largely found on Android tablets and smartphones. Announced in early 2018, the SD710 is the first of the 700 series and positions itself between the 600 series Snapdragon 660 and 800 series Snapdragon 845. It integrates 8 Kryo 360 cores devided in two big cores most likely based on Cortex-A75 at up to GHz and six small cores most likely based on Coretx-A55 at up to GHz. The memory controller supports LPDDR4X and the integrated graphics card is called Adreno 616. The X15 LTE modem supports 4x4 MIMO with up to 800 MBbit/s download and 150 MBit/s upload. Compared to the older Snapdragon 660, Qualcomm advertises the CPU clusters to be up to 20% faster and the GPU up to 35 %. The Snapdragon 710 is manufactured in the modern 10 nm process at Samsung 10LPP.Qualcomm Snapdragon 712 â–ș remove from comparisonThe Qualcomm Snapdragon 712 SD712 is a fast mid-range ARM-based SoC largely found on Android tablets and smartphones. Compared to the Snapdragon 710 predecessor, the 712 offers a 10% faster CPU and GPU due to clock rate increases 100 MHz for the CPU It was announced early 2019 and positions itself between the 600 series Snapdragon 660 and 800 series Snapdragon 845. It integrates 8 Kryo 360 cores devided in two big cores most likely based on Cortex-A75 at up to GHz and six small cores most likely based on Coretx-A55 at up to or GHz. The memory controller supports LPDDR4X and the integrated graphics card is called Adreno 616. The X15 LTE modem supports 4x4 MIMO with up to 800 MBbit/s download and 150 MBit/s upload. The Snapdragon 712 is manufactured in the modern 10 nm process at Samsung 10LPP.ModelHiSilicon Kirin 810Qualcomm Snapdragon 710Qualcomm Snapdragon 712SeriesHiSilicon Qualcomm SnapdragonQualcomm SnapdragonCodenameCortex-A76/-A55Kryo 360Kryo 360Series Snapdragon Kryo 360HiSilicon Kirin 990 5G - GHz8 / 8 Cortex-A76/-A55HiSilicon Kirin 990 - GHz8 / 8 Cortex-A76/-A55HiSilicon Kirin - GHz8 / 8 Cortex-A76/-A55HiSilicon Kirin - GHz8 / 8 Cortex-A76/-A55HiSilicon Kirin 810 - GHz8 / 8 Cortex-A76/-A55HiSilicon Kirin 980 - GHz8 / 8 Cortex-A76/-A55Clock1880 - 2270 MHz2200 MHz2300 MHzCores / Threads8 / 88 / 88 / 8Technology7 nm10 nm10 nmFeaturesARM Mali-G52 MP6 GPU, 2x Cortex-A76 GHz + 6x Cortex-A55 GHz, LTE Cat-12 1400 Mbps Downlink, Cat-13 200 Mbps Uplink, Bluetooth 5, WiFi a/b/g/n/ac, AGPS, Glonass, BaidouAdreno 612 GPU, X15 LTE Modem, Hexagon 685 DSP, Specra 250 ISP, GPS, GLONASS, SBAS, Beidou, GalileoAdreno 616 GPU, X15 LTE Modem, Hexagon 685 DSP, Specra ISPiGPUARM Mali-G52 MP6Qualcomm Adreno 616Qualcomm Adreno 616ArchitectureARMARMARMAnnounced ManufacturerQualcomm Snapdragon SD 710Qualcomm Snapdragon SD 712BenchmarksPerformance Rating - Geekbench PCM Work, Sling Shot Physics, Antutu v8 CPU - Kirin 810 Performance Rating - Geekbench PCM Work, Sling Shot Physics, Antutu v8 CPU - SD 710 3DMark - 3DMark Ice Storm Unlimited Physicsmin 18123 avg 23401 median 24426 21% max 27654 Points min 13595 avg 14925 median 12% max 18181 Points min 13686 avg 13692 median 13692 12% max 13698 Points 3DMark - 3DMark Sling Shot Extreme ES Unlimited Physicsmin 3501 avg 3731 median 3720 47% max 3972 Points min 1840 avg 2330 median 2477 31% max 2720 Points min 1982 avg 2244 median 2244 28% max 2506 Points 3DMark - 3DMark Sling Shot ES Unlimited Physicsmin 3463 avg 3749 median 3782 54% max 4003 Points min 1862 avg 2362 median 35% max 2634 Points min 1946 avg 2226 median 2226 32% max 2506 Points Geekbench - Geekbench - 64 Bit Single-Coremin 592 avg 598 median 598 26% max 604 Points min 392 avg 393 median 393 17% max 394 Points Geekbench - Geekbench - 64 Bit Multi-Coremin 1890 avg 1920 median 7% max 1949 Points min 1448 avg 1478 median 1478 5% max 1508 Points Geekbench - Geekbench 64 Bit Single-CoreGeekbench - Geekbench 64 Bit Multi-CoreGeekbench - - Geekbench - 64 Bit Single-Coremin 1799 avg 1819 median 1821 19% max 1833 Points Geekbench - - Geekbench - 64 Bit Multi-Coremin 5754 avg 5843 median 7% max 5917 Points Geekbench - Geekbench 64 Bit Single-Coremin 1835 avg 1858 median 1858 26% max 1881 Points Geekbench - Geekbench 64 Bit Multi-Coremin 5683 avg 5800 median 14% max 5916 Points Geekbench 3 - Geekbench 3 32 Bit Multi-CoreGeekbench 3 - Geekbench 3 32 Bit Single-CoreGeekbench 3 - Geekbench 3 64 Bit Multi-CoreGeekbench 3 - Geekbench 3 64 Bit Single-CoreGeekbench 2 - 32 Bit - Geekbench Streammin 787 avg 1443 median 1443 12% max 2099 Points Geekbench 2 - 32 Bit - Geekbench Memorymin 2565 avg 2600 median 24% max 2634 Points Geekbench 2 - 32 Bit - Geekbench Floating Pointmin 11443 avg 11547 median 23% max 11650 Points Geekbench 2 - 32 Bit - Geekbench Integermin 5224 avg 5235 median 11% max 5245 Points Geekbench 2 - 32 Bit - Geekbench Total Scoremin 6446 avg 6539 median 6539 17% max 6632 Points Mozilla Kraken - Kraken Total Score *min 2472 avg 2950 median 2646 3% max 3731 ms min 3035 avg 3370 median 4% max 3800 ms min 2912 avg 3648 median 4% max 4383 ms Octane V2 - Octane V2 Total Scoremin 15947 avg 16825 median 16604 16% max 17925 Points min 9771 avg 11817 median 12% max 12802 Points min 10328 avg 11945 median 11945 11% max 13562 Points WebXPRT 3 - WebXPRT 3 Scoremin 71 avg median 83 19% max 97 Points min 57 avg median 16% max 72 Points min 47 avg median 14% max 72 Points AnTuTu v6 - AnTuTu v6 Total Scoremin 135848 avg 136892 median 137134 47% max 137693 Points AnTuTu v7 - AnTuTu v7 MEMmin 3343 avg 6694 median 7636 23% max 8159 Points AnTuTu v7 - AnTuTu v7 UXmin 43917 avg 44744 median 44198 54% max 46663 Points AnTuTu v7 - AnTuTu v7 GPUmin 37446 avg 45655 median 47945 15% max 49284 Points AnTuTu v7 - AnTuTu v7 CPUmin 63606 avg 65473 median 40% max 66830 Points AnTuTu v7 - AnTuTu v7 Total Scoremin 155113 avg 162553 median 162918 29% max 169262 Points AnTuTu v8 - AnTuTu v8 UXmin 55189 avg 62040 median 58957 49% max 71973 Points min 7553 avg 26433 median 26433 22% max 45313 Points AnTuTu v8 - AnTuTu v8 MEMmin 45079 avg 53673 median 47554 38% max 68387 Points min 36796 avg 41477 median 41477 33% max 46158 Points AnTuTu v8 - AnTuTu v8 GPUmin 56693 avg 68299 median 64645 12% max 83558 Points min 49409 avg 52655 median 52655 10% max 55901 Points AnTuTu v8 - AnTuTu v8 CPUmin 92494 avg 97432 median 94457 34% max 105346 Points min 67712 avg 68330 median 68330 25% max 68948 Points AnTuTu v8 - AnTuTu v8 Total Scoremin 259370 avg 291444 median 295579 28% max 319383 Points min 172068 avg 188895 median 188895 18% max 205722 Points PassMark PerformanceTest Mobile V1 - PerformanceTest Mobile V1 CPU Testsmin 178496 avg 180262 median 180127 24% max 182163 Points PCMark for Android - PCM f. Android Computer Visionmin 3402 avg 3476 median 3491 18% max 3518 Points PCMark for Android - PCM f. Android Storagemin 4719 avg 4933 median 10% max 5372 Points PCMark for Android - PCM f. Android Work Score 7541 avg 8133 median 7695 50% max 9164 Points min 6453 avg 6824 median 44% max 7460 Points min 6832 avg 7554 median 7554 49% max 8276 Points PCMark for Android - PCM f. Android Work Scoremin 9189 avg 10361 median 9824 49% max 12070 Points min 7041 avg 8137 median 8201 41% max 9345 Points min 8346 avg 9745 median 49% max 11143 Points PCMark for Android - PCM f. Android Work Battery Lifemin 368 avg 554 median 11% max 739 min Average Benchmarks HiSilicon Kirin 810 → 100% n=17Average Benchmarks Qualcomm Snapdragon 710 → 75% n=17Average Benchmarks Qualcomm Snapdragon 712 → 78% n=17 - Range of benchmark values for this graphics card - Average benchmark values for this graphics card* Smaller numbers mean a higher performance1 This benchmark is not used for the average 15. 1307520 checking url part for id 12116 +0s ... 0s 1 checking url part for id 10981 +0s ... 0s 2 checking url part for id 11301 +0s ... 0s 3 not redirecting to Ajax server +0s ... 0s 4 did not recreate cache, as it is less than 5 days old! Created at Mon, 12 Jun 2023 135518 +0200 + ... 5 composed specs + ... 6 did output specs +0s ... 7 getting avg benchmarks for device 12116 + ... 8 got single benchmarks 12116 + ... 9 getting avg benchmarks for device 10981 + ... 10 got single benchmarks 10981 + ... 11 getting avg benchmarks for device 11301 + ... 12 got single benchmarks 11301 + ... 13 got avg benchmarks for devices +0s ... 14 No cached benchmark found, getting uncached values + ... 15 No cached benchmark found, getting uncached values + ... 16 No cached benchmark found, getting uncached values + ... 17 No cached benchmark found, getting uncached values + ... 18 No cached benchmark found, getting uncached values + ... 19 No cached benchmark found, getting uncached values + ... 20 No cached benchmark found, getting uncached values + ... 21 No cached benchmark found, getting uncached values + ... 22 No cached benchmark found, getting uncached values + ... 23 No cached benchmark found, getting uncached values + ... 24 No cached benchmark found, getting uncached values + ... 25 No cached benchmark found, getting uncached values + ... 26 min, max, avg, median took s + ... 27 return log +0s ... 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 frĂ©quence: 2.00 GHz: 2.20 GHz: Turbo (1 cƓur) 2.00 GHz: 2.20 GHz: Turbo (tous les cƓurs) 2.00 GHz: 8: Noyaux: 8: Non:

VS We compared the 4-core Qualcomm Snapdragon 820 Adreno 530 with the newer 8-core HiSilicon Kirin 710 Mali-G51 MP4 SoC. Here you will find the pros and cons of each chip, technical specs, and comprehensive tests in benchmarks, like AnTuTu and Geekbench. ReviewDifferencesBenchmarksAnTuTu v9GeekBench 5GamingSpecsComments Review General comparison of performance, power consumption, and other indicators CPU Performance Single and multi-core processor tests Gaming Performance GPU performance in games and OpenCL/Vulcan Battery life Efficiency of battery consumption NanoReview Score Overall chip score Key Differences Main differences and advantages of each chip Pros of Qualcomm Snapdragon 820 Performs better in floating-point computationsShows better up to 25% AnTuTu 9 score – 243K vs 195K Pros of HiSilicon Kirin 710 Announced 2-years and 9-months laterHas 4 more coresHigher GPU frequency ~60%Has a smaller size transistor 12 versus 14 nm Benchmarks Performance tests in popular benchmarks AnTuTu 9 The AnTuTu Benchmark measures CPU, GPU, RAM, and I/O performance in different scenarios CPU 62161 70901 GPU 87560 33222 Memory 34897 33714 UX 58362 57642 Total score 243674 195658 Submit your AnTuTu result GeekBench 5 The GeekBench test shows raw single-threaded and multithreaded CPU performance Image compression Mpixels/s Mpixels/s Face detection images/s images/s Speech recognition words/s words/s Machine learning images/s images/s Camera shooting images/s images/s HTML 5 Mnodes/s Mnodes/s SQLite Krows/s Krows/s 3DMark A cross-platform benchmark that assesses graphics performance in Vulkan Metal 3DMark Wild Life Performance Stability - 84% Graphics test 4 FPS 3 FPS Score 792 554 Gaming Table of average FPS and graphics settings in mobile games PUBG Mobile - 51 FPS [Medium] Call of Duty Mobile - 29 FPS [Low] Fortnite - 25 FPS [Low] Shadowgun Legends - 56 FPS [Low] World of Tanks Blitz - 52 FPS [Ultra] Mobile Legends Bang Bang - 60 FPS [Ultra] Device - Huawei Honor 10 Lite 1080 x 2340 We provide average results. FPS may differ, depending on game version, OS and other factors. Specifications Full list of technical specifications of Snapdragon 820 and Kirin 710 CPU Architecture 2x GHz – Kryo2x GHz – Kryo 4x GHz – Cortex-A734x GHz – Cortex-A53 Cores 4 8 Frequency 2150 MHz 2200 MHz Instruction set ARMv8-A ARMv8-A L1 cache 64 KB 256 KB L2 cache 1 MB 512 KB L3 cache - 1 MB Process 14 nanometers 12 nanometers Transistor count 2 billion billion TDP 11 W 5 W Graphics GPU name Adreno 530 Mali-G51 MP4 Architecture Adreno 500 Bifrost GPU frequency 624 MHz 1000 MHz Execution units 2 4 Shading units 256 64 FLOPS 319 Gigaflops Gigaflops Vulkan version OpenCL version DirectX version 12 12 Memory Memory type LPDDR4 LPDDR4X Memory frequency 1866 MHz 1866 MHz Bus 2x 32 Bit 2x 32 Bit Max bandwidth Gbit/s - Max size 8 GB 6 GB Multimedia ISP Neural processor NPU Hexagon 680 No Storage type eMMC UFS eMMC UFS Max display resolution 3840 x 2160 2340 x 1080 Max camera resolution 1x 28MP, 2x 13MP 1x 40MP, 2x 24MP Video capture 4K at 30FPS 1K at 30FPS Video playback 4K at 30FPS 1080p at 60FPS Video codecs VP8, VP9 Audio codecs AIFF, CAF, MP3, MP4, WAV AIFF, CAF, MP3, MP4, WAV Connectivity Modem X12 - 4G support LTE Cat. 12 LTE Cat. 12 5G support No No Download speed Up to 600 Mbps Up to 600 Mbps Upload speed Up to 150 Mbps Up to 150 Mbps Wi-Fi 5 4 Bluetooth Navigation GPS, GLONASS, Beidou, Galileo, QZSS, SBAS GPS, GLONASS, Beidou, Galileo Cast your vote So, which SoC would you choose? Snapdragon 820 58 Total votes 114 Related Comparisons Comments Please give your opinion on the comparison of Kirin 710 and Snapdragon 820, or ask any questions

28999 USD (Amazon) The HiSilicon Kirin 710 is a ARM-based mid-range Octa-Core-SoC for Android based smartphones and tablets. It was announced mid 2018 and contains 8 processor cores (4x Cortex HiSilicon Kirin 710Qualcomm Snapdragon 888Why is HiSilicon Kirin 710 better than Qualcomm Snapdragon 888?Has AES?Why is Qualcomm Snapdragon 888 better than HiSilicon Kirin 710? faster CPU speed?1 x & 3 x & 4 x x & 4 x higher ram speed?3200MHzvs2200MHz7nm smaller semiconductor size? faster downloads?7500MBits/svs600MBits/sHas 5G support?10GB larger maximum memory amount?16GBvs6GB20x faster uploads?3000MBits/svs150MBits/s1 Higher version of DDR memory supported?5vs4User reviewsOverall ratingHiSilicon Kirin 7105 User reviewsHiSilicon Kirin 710Qualcomm Snapdragon 88815 User reviewsQualcomm Snapdragon 888FeaturesGeneral 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 clock speed Unknown. Help us by suggesting a value. Qualcomm Snapdragon 888The 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 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 speed1 x & 3 x & 4 x 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 888A larger L2 cache results in faster CPU and system-wide cache Unknown. Help us by suggesting a value. Qualcomm Snapdragon 888A 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 888The clock multiplier controls the speed of the cache Unknown. Help us by suggesting a value. HiSilicon Kirin 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 channels Unknown. Help us by suggesting a value. Qualcomm Snapdragon 888More memory channels increases the speed of data transfer between the memory and the version Unknown. Help us by suggesting a value. Qualcomm Snapdragon 888A 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 version Unknown. Help us by suggesting a value. Qualcomm Snapdragon 888Vector 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 888This 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 888This 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 888This 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.
HiSiliconKirin 955: 8 (4x2 0 Store: EMDD Store Qualcomm SM8350 Snapdragon 888 5G Mobile Platform, Launched 2021, SM8350, Quick Charge 5, Adreno 660 GPU, Octa-Core,2 This study specially analyses the impact of Covid-19 outbreak on the AI Accelerator, covering the supply chain analysis, impact assessment to the AI Accelerator market size growth
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.

TheHiSilicon Kirin 820e is a ARM-based mid-range Octa-Core-SoC for Android based smartphones and tablets. It was announced 2022 and contains 8 processor cores. One fast ARM Cortex-A76 core with

VS We compared two 8-core processors HiSilicon Kirin 810 with Mali-G52 MP6 graphics and Kirin 710 Mali-G51 MP4. Here you will find the pros and cons of each chip, technical specs, and comprehensive tests in benchmarks, like AnTuTu and Geekbench. ReviewDifferencesBenchmarksAnTuTu v9GeekBench 5GamingSpecsComments Review General comparison of performance, power consumption, and other indicators CPU Performance Single and multi-core processor tests Gaming Performance GPU performance in games and OpenCL/Vulcan Battery life Efficiency of battery consumption NanoReview Score Overall chip score Key Differences Main differences and advantages of each chip Pros of HiSilicon Kirin 810 Performs better in floating-point computationsShows significantly better up to 89% AnTuTu 9 score – 369K vs 195KHas a smaller size transistor 7 versus 12 nmAnnounced 11-months laterBetter instruction set architecture Pros of HiSilicon Kirin 710 Higher GPU frequency ~22% Benchmarks Performance tests in popular benchmarks AnTuTu 9 The AnTuTu Benchmark measures CPU, GPU, RAM, and I/O performance in different scenarios CPU 109064 70901 GPU 95721 33222 Memory 72097 33714 UX 91820 57642 Total score 369603 195658 Submit your AnTuTu result GeekBench 5 The GeekBench test shows raw single-threaded and multithreaded CPU performance Image compression - Mpixels/s Face detection - images/s Speech recognition - words/s Machine learning - images/s Camera shooting - images/s HTML 5 - Mnodes/s SQLite - Krows/s 3DMark A cross-platform benchmark that assesses graphics performance in Vulkan Metal 3DMark Wild Life Performance Stability 99% 84% Graphics test 8 FPS 3 FPS Score 1421 554 Gaming Table of average FPS and graphics settings in mobile games PUBG Mobile 30 FPS [High] 51 FPS [Medium] Call of Duty Mobile 41 FPS [Ultra] 29 FPS [Low] Fortnite 29 FPS [Medium] 25 FPS [Low] Shadowgun Legends 43 FPS [Ultra] 56 FPS [Low] World of Tanks Blitz 59 FPS [Ultra] 52 FPS [Ultra] Mobile Legends Bang Bang 60 FPS [Ultra] 60 FPS [Ultra] Device Huawei Honor 9X 1080 x 2340 Huawei Honor 10 Lite 1080 x 2340 We provide average results. FPS may differ, depending on game version, OS and other factors. Specifications Full list of technical specifications of Kirin 810 and Kirin 710 CPU Architecture 2x GHz – Cortex-A766x GHz – Cortex-A55 4x GHz – Cortex-A734x GHz – Cortex-A53 Cores 8 8 Frequency 2270 MHz 2200 MHz Instruction set ARMv8-A L1 cache 256 KB 256 KB L2 cache 1 MB 512 KB L3 cache - 1 MB Process 7 nanometers 12 nanometers Transistor count billion billion TDP 5 W 5 W Graphics GPU name Mali-G52 MP6 Mali-G51 MP4 Architecture Rogue Bifrost GPU frequency 820 MHz 1000 MHz Execution units 6 4 Shading units 96 64 FLOPS 551 Gigaflops Gigaflops Vulkan version OpenCL version DirectX version 12 12 Memory Memory type LPDDR4X LPDDR4X Memory frequency 2133 MHz 1866 MHz Bus 4x 16 Bit 2x 32 Bit Max bandwidth Gbit/s - Max size 8 GB 6 GB Multimedia ISP Neural processor NPU Yes No Storage type eMMC UFS eMMC UFS Max display resolution 3840 x 2160 2340 x 1080 Max camera resolution 1x 48MP, 2x 20MP 1x 40MP, 2x 24MP Video capture 1K at 30FPS 1K at 30FPS Video playback 1080p at 60FPS 1080p at 60FPS Video codecs VP8, VP9 Audio codecs AIFF, CAF, MP3, MP4, WAV AIFF, CAF, MP3, MP4, WAV Connectivity 4G support LTE Cat. 12 LTE Cat. 12 5G support No No Download speed Up to 600 Mbps Up to 600 Mbps Upload speed Up to 150 Mbps Up to 150 Mbps Wi-Fi 6 4 Bluetooth Navigation GPS, GLONASS, Beidou, Galileo GPS, GLONASS, Beidou, Galileo Cast your vote So, which SoC would you choose? Related Comparisons Comments Please give your opinion on the comparison of Kirin 710 and Kirin 810, or ask any questions
\n \n kirin 810 vs snapdragon 710
Lebihbanyak hasil thread dalam performa yang lebih cepat dan multitasking yang lebih baik. 3. Menggunakan teknologi big.LITTLE. HiSilicon Kirin 810. Qualcomm Snapdragon 845. Menggunakan teknologi big.LITTLE, sebuah chip dapat beralih di antara dua set inti prosesor untuk memaksimalkan kinerja dan daya tahan baterai.
Qualcomm Snapdragon 810 MSM8994vsHiSilicon Kirin 710Qualcomm Snapdragon 810 MSM8994Why is HiSilicon Kirin 710 better than Qualcomm Snapdragon 810 MSM8994? faster CPU speed?4 x & 4 x x 2GHz & 4 x higher ram speed?2200MHzvs1600MHz8nm smaller semiconductor size? newer version of DirectX? newer version of OpenCL? is Qualcomm Snapdragon 810 MSM8994 better than HiSilicon Kirin 710?64KB bigger L1 cache?128KBvs64KBUser reviewsOverall ratingHiSilicon Kirin 7105 User reviewsHiSilicon Kirin 710Qualcomm Snapdragon 810 MSM89943 User reviewsQualcomm Snapdragon 810 MSM8994FeaturesGeneral 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 810 MSM8994When 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 HMP✖Qualcomm Snapdragon 810 MSM8994Heterogeneous 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 clock speed Unknown. Help us by suggesting a value. Qualcomm Snapdragon 810 MSM8994When 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 710A larger L2 cache results in faster CPU and system-wide 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 810 MSM8994The clock multiplier controls the speed of the cache Unknown. Help us by suggesting a value. HiSilicon Kirin 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 channels Unknown. Help us by suggesting a value. Qualcomm Snapdragon 810 MSM8994More memory channels increases the speed of data transfer between the memory and the 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 speed Unknown. Help us by suggesting a value. Qualcomm Snapdragon 810 MSM8994The download speed is a measurement of the internet connection bandwidth, representing the maximum data transfer rate at which a device can access online speed Unknown. Help us by suggesting a value. Qualcomm Snapdragon 810 MSM8994The 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 810 MSM8994This 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 810 MSM8994This 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 810 MSM8994This benchmark measures the performance of the CPU when it is rate Unknown. Help us by suggesting a value. HiSilicon Kirin 710The number of pixels that can be rendered to the screen every performance is a measurement of the raw processing power of the 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.

Onthe CPU cores of snapdragon 730 and Kirin 810, it adopts the cluster design of two large and six small cores, and the A76 + A55 architecture of arm, The advantage of Qilin 810 is more obvious. From the process point of view, Qilin 810 uses 7Nm process, and uses 2×2.27ghz a766x1.88ghz A55, GPU is mail G52, snapdragon 730 uses 8nm process, uses 2×2.2ghz a766x1.8ghz A55, GPU is Adreno 618.

The HiSilicon Kirin 710 is undoubtedly a powerful mid-range processor from Huawei that can compete with the 600 series processors from Qualcomm. But, when it was first announced by the company, there were rumors that this chipset is named so because it is a competitor to the Snapdragon 710. But is this true?We have seen in our previous comparisons of the Kirin 710 vs Snapdragon 636 and Kirin 710 vs Snapdragon 660 that the Kirin 710 sits between the Snapdragon 636 and the 660 regarding the performance. Still, if you want to know how it competes with Snapdragon 710, then in this article, we are going to do a comparison of Kirin 710 vs Snapdragon 710. And we already know which chipset is better, right?Xiaomi Mi 8 SE is the first phone featuring the Snapdragon 710FYI, the Qualcomm Snapdragon 710 was announced in May this year, and it is the most powerful mid-range processor that the company has right now. The performance is pretty comparable to the Snapdragon 835 of last year, thanks to the similar technology used. The Xiaomi Mi 8 SE is the first smartphone that was launched with the Snapdragon 710, and we have seen in the reviews that this chipset performs 710 VS SNAPDRAGON 710 – THE SPECIFICATIONHuawei Kirin 710Qualcomm Snapdragon 710Manufacturing 4x ARM Cortex-A73 + 4x ARM Cortex-A538x Qualcom Kryo 360 CPUCLOCK SPEEDUp to GHzUp to GHzGPUARM Mali-G51 MP4 GPUQualcomm Adreno 616 GPUCAMERAUp to 16MP + 2MP Dual CamerasUp to 32 MP single camera Up to 20 MP dual cameraDISPLAYFull HD+ 2340 x 1080 pixelsQuad HD+OTHER FEATURES4G VoLTE, Wi-Fi ac / 5GHz 2×2 MIMO, Bluetooth LE, GPS + GLONASS2x2 with Mu-MIMO, Bluetooth GPS, GLONASS, Beidou, Galileo, QZSS, SBASWell, as the specifications suggest, the Qualcomm Snapdragon 710 is much powerful than the Kirin 710. First, it is manufactured by the 10nm process, which is the same technology used for the Snapdragon 835. In fact, the Snapdragon 845 is using the second generation of this process. Now you got the idea, right?Kirin 710 vs. Snapdragon 71010nm process means that this chipset can perform better and is more power efficient than the 12nm or 14nm processors. On paper, the difference between 12nm and 10nm may not seem much, but in reality, it is a huge difference regarding the overall performance and the we have the CPUs. The Qualcomm Snapdragon 710 has powerful 8x Kryo 360 CPUs and the best thing is that these CPUs are powerful than the Kryo 280 on the Snapdragon 835. So regarding the CPU performance, the Snapdragon 710 sits between the Snapdragon 835 and the Snapdragon 845. On the Kirin 710, there are 4X Cortex-A73 cores clocked at and four Cortex-A53 cores clocked at Both the Kirin 710 and the Snapdragon 710 have a clock speed up to regarding the CPU, but since the specifications are better in case of the Snapdragon 710, it is better when we consider the CPU Snapdragon 710Coming to the GPU, the Snapdragon 710 has the Adreno 616, and there is not much information about its specifications. One thing that we know, however, is that the Adreno 616 is just behind the Adreno 630 on the Snapdragon 845 regarding the performance. In fact, Snapdragon 710, along with the Snapdragon 845, is the only processor from Qualcomm that has the 600 series Adreno GPU. Coming to the Kirin 710’s GPU, well, it simply doesn’t stand a chance as it is the old ARM Mali-G51 MP4 GPU that is for the budget and mid-range we have other specifications like the maximum camera specs, display specs, LTE Modem, etc. In all those aspects, the Snapdragon 710 is the clear winner. Now you know the meaning of the title, right?KIRIN 710 VS SNAPDRAGON 710 – THE BENCHMARKS On Geekbench, the Snapdragon 710 processor scores around 1900 on the Single core and 5900 on multi-core, which is an impressive score. Talking about AnTuTu Benchmark, the chipset scores around 170K, which is again a great score for a mid-range OUT Qualcomm Snapdragon 710 vs Snapdragon 660 – ComparisonTalking about the Kirin 710, the chipset scores around 138K on AnTuTu benchmark, which is way less than the score of the Snapdragon 710. Also on Geekbench, the chipset scores around 1590 on single core and 5594 on multi-core. Here, the difference is not huge, but still, Snapdragon 710 is the clear winner. In the above images, you can notice that there is not a huge difference regarding the CPU performance, but when we consider other things like the GPU, UX, etc., the Snapdragon 710 beats the Kirin 710 with as mentioned in the beginning, this is a comparison of two chipsets that actually aren’t made to compete with each other. One is a processor that can compete with high-end chipsets, whereas the other is the processor that is meant for the mid-range phones. So yes, the Kirin 710 may have a similar name as the Snapdragon 710, but the difference in terms of the overall performance is this was all about the Kirin 710 vs Snapdragon 710 comparison. If you have any questions, then do let us know via the comments section below. The Comparison of Kirin 710 with the Helio P60 is coming next on DroidHolic so stay tuned.
ï»żHiSiliconKirin 810 remove from comparison. The HiSilicon Kirin 810 is a ARM-based mid-range Octa-Core-SoC for Android based smartphones and tablets. It was announced mid 2019 56 caracterĂ­sticas comparadasHiSilicon Kirin 710Qualcomm Snapdragon 710Por que HiSilicon Kirin 710 Ă© melhor que Qualcomm Snapdragon 710?CPU mais rĂĄpida?4 x & 4 x x & 6 x RAM 334MHz maior?2200MHzvs1866MHzPossui NX bit?2 versĂŁo/versĂ”es mais recentes de VFP?4vs2Por que Qualcomm Snapdragon 710 Ă© melhor que HiSilicon Kirin 710?Semicondutor 2nm menor?10nmvs12nmClock do GPU 100MHz mais rĂĄpido?750MHzvs650MHzDownloads mais rĂĄpidos?800MBits/svs600MBits/s2GB a mais de tamanho mĂĄximo de memĂłria?8GBvs6GBAvaliaçÔes de usuĂĄriosClassificação geralHiSilicon Kirin 7105 AvaliaçÔes de usuĂĄriosHiSilicon Kirin AvaliaçÔes de usuĂĄriosQualcomm Snapdragon 7104 AvaliaçÔes de usuĂĄriosQualcomm Snapdragon AvaliaçÔes de usuĂĄriosRecursoInformaçÔes geraisUm sistema operacional 32-bit pode suportar, no mĂĄximo, 4GB de RAM. Sistemas 64-bit permite mais do que 4GB, proporcionando maior desempenho. TambĂ©m Ă© possĂ­vel executar aplicativos uma placa de vĂ­deo integrada, vocĂȘ nĂŁo precisa comprar uma placa pequenos proporcionam melhor desempenho e menor consumo de energia. Chipsets com um maior nĂșmero de transistores, componentes semicondutores de dispositivos eletrĂŽnicos, oferecem mais poder computacional. Um fator de forma pequeno permite que mais transistores se encaixem em um chip, aumentando, assim, seu unidade de processamento grĂĄfico GPU tem uma velocidade de clock mais DirectX Ă© usado em games, com as versĂ”es mais novas suportando grĂĄficos tecnologia sem fio 5G. A rede mĂłvel de quinta geração oferece velocidades mais altas e latĂȘncia menor do que a rede de quarta geração GPU Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Quando a GPU estĂĄ rodando abaixo de suas limitaçÔes, ela pode aumentar a velocidade para um clock superior a fim de fornecer desempenho OpenGL ES Ă© usado para games em dispositivos mĂłveis, tais como smartphones. As versĂ”es mais recentes suportam grĂĄficos aplicativos usam OpenCL para desfrutar do poder da unidade de processamento de grĂĄficos GPU para computação nĂŁo grĂĄfica. As versĂ”es mais recentes introduzem mais funcionalidade e melhor velocidade da CPU ou processador indica quantos ciclos de processamento podem ser executados por uma CPU a cada segundo, considerando todos os seus nĂșcleos unidades de processamento. Essa velocidade Ă© calculada pela soma da capacidade de cada nĂșcleo – ou, no caso de processadores multinĂșcleos que empregam diferentes microarquiteturas, de cada grupo de threads resulta em desempenho mais rĂĄpido e melhor a tecnologia um chip pode alternar entre dois conjuntos de nĂșcleos de processador, a fim de maximizar o desempenho do aparelho e a duração da bateria. Durante uma partida de jogo, por exemplo, os nĂșcleos mais potentes sĂŁo utilizados para otimizar a performance, enquanto o ato de checar e-mails aciona nĂșcleos menos potentes para prolongar a duração da Multiprocessamento HeterogĂȘneo HMP - "Heterogenous Multi-Processing" Ă© uma versĂŁo mais avançada da tecnologia Nesta configuração, o processador pode utilizar todos os nĂșcleos ao mesmo tempo, ou apenas um nĂșcleo para tarefas de baixa intensidade. Isso pode, respectivamente, fornecer desempenho mais potente ou prolongar a duração da a CPU estiver rodando abaixo de suas limitaçÔes, ela pode acelerar a velocidade de clock para oferecer desempenho L2 Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Um cache L2 maior resulta em uma CPU mais rĂĄpida e no sistema como um L1 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Um cache L1 maior resulta em uma CPU mais rĂĄpida e no sistema como um de clock Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710O multiplicador de clock controla a velocidade da L3 Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Um cache L3 maior resulta em uma CPU mais rĂĄpida e no sistema como um suportar memĂłria mais rĂĄpida, fornecendo melhor desempenho ao memĂłria DDR Double Data Rate Ă© o tipo mais comum de memĂłria RAM. As versĂ”es mais recentes de memĂłria DDR suportam velocidades mĂĄximas mais altas e consomem menos quantidade mĂĄxima de memĂłria RAM.Esta Ă© a taxa mĂĄxima de dados que podem ser lidos ou armazenados na canais de memĂłria aumenta a velocidade de transferĂȘncia de dados entre a memĂłria e a eMMC Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Um versĂŁo mais elevada de eMMC permite interfaces de memĂłria mais rĂĄpidos, o que tem um efeito positivo no desempenho do dispositivo. Por exemplo, quando transfere arquivos de seu computador para um armazenamento interno usando cĂłdigo corretor de erros de memĂłria pode detectar e corrigir dados corrompidos. Ele Ă© usado quando Ă© essencial evitar corrupção, tal como em computação cientĂ­fica ou ao se executar um sistema em um chip SoC tem um chip celular LTE integrado. O LTE Ă© capaz de fazer downloads a velocidades mais rĂĄpidas do que a antiga tecnologia velocidade de download Ă© uma medida da largura de banda da conexĂŁo Ă  internet, representando a taxa mĂĄxima de transferĂȘncia de dados em que um dispositivo pode acessar conteĂșdo velocidade de upload Ă© uma medida da largura de banda da conexĂŁo Ă  internet, representando a taxa mĂĄxima de transferĂȘncia de dados em que um dispositivo pode enviar informaçÔes para um servidor ou outro tecnologia integrada no processador para proteger o dispositivo para uso com ferramentas como pagamentos mĂłveis e streaming de vĂ­deo usando gerenciamento de direitos digitais DRM.A tecnologia multithreading como Hyperthreading da Intel ou Multithreading SimultĂąneo da AMD fornece um maior desempenho dividindo cada um dos nĂșcleos fĂ­sicos do processador em nĂșcleos virtuais, tambĂ©m conhecidos como threads. Dessa forma, cada nĂșcleo pode executar dois fluxos de instruçÔes ao mesmo bit ajuda a proteger o computador de ataques fornece aceleração para processamento de mĂ­dia, tal como escutar AES Ă© usado para acelerar a criptografia e a Floating-Point VFP Ă© usado pelo processador para entregar desempenho aumentado em ĂĄreas tais como imagem 5 Ă© um benchmark multiplataforma que mede o desempenho de nĂșcleo Ășnico de um processador. Fonte Primate Labs, 2023Geekbench 5 Ă© um benchmark multiplataforma que mede o desempenho de mĂșltiplos nĂșcleos de um processador. Fonte Primate Labs, 2023resultado PassMark Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Este Ă­ndice de referĂȘncia mede o desempenho da CPU usando mĂșltiplas PassMark Ășnico Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Este Ă­ndice de referĂȘncia mede o desempenho da CPU usando uma Ășnica PassMark em overclock Desconhecido. Ajude-nos sugerindo um valor. HiSilicon Kirin 710 Desconhecido. Ajude-nos sugerindo um valor. Qualcomm Snapdragon 710Este Ă­ndice de referĂȘncia mede o desempenho da CPU enquanto ela estĂĄ com Snapdragon 8 Gen 2Qualcomm Snapdragon 8 Gen 1Qualcomm Snapdragon 8 Plus Gen 1MediaTek Dimensity 9200 PlusQualcomm Snapdragon 7c Plus Gen 3Exibir tudo Search Hisilicon Ai Accelerator. Huawei's flagship Mate 10 Pro is bursting with features Freebie: Denali party tix Synopsys PrimeTime-AI is hyped up Machine Learning, which it's calling artificial intelligence now just to be "special" PhoneCurry Benchmarks Page 15" Display, AI Triple Camera, Dual SIM Global GSM Factory Unlocked MAR-LX3A - International Version (Peacock Blue) 4 0 GHz Cortex
Qualcomm Snapdragon 870 has been announced on January 2021 whereas HiSilicon Kirin 710 has been announced on July 2018. Check out detailed comparison with key specs belowBenchmark Comparison Snapdragon 870 vs Kirin 710 Benchmark measures the performance of the CPU. Geekbench is a benchmark that measures a processor's single core performance and AnTuTu score is the most popular and trustable benchmarking score which evaluates multi core performance. Snapdragon 870 has an AnTuTu benchmark score of 655403 points with CPU, GPU, Memory, UX score 179347, 270188, 98761, 95818 Comparison Snapdragon 870 vs Kirin 710CPU speed shows how many processing cycles per second can be executed by a CPU. Snapdragon 870 comes up with the architecture of Adreno 600 and Kirin 710 comes up with architecture of Bifrost. Former one has 8 core and 3200 MHz frequency and latter has 8 cores and 2200 MHz frequency. A larger cache time leads to faster Comparison Snapdragon 870 vs Kirin 710Qualcomm Snapdragon 870 has Adreno 650 GPU with GPU Frequency as 587 MHz. Dynamic frequency allows the processor to conserve power and reduce noise when it is under a light load. HiSilicon Kirin 710 has Mali-G51 GPU with GPU Frequency as 1000 Comparison Snapdragon 870 vs Kirin 710First chipset has max size of 16 GB and HiSilicon Kirin 710 has max size of 16 GB. It shows the maximum amount of memory supported by a and Connectivity Comparison Snapdragon 870 vs Kirin 710In terms of multimedia, Snapdragon 870 has Hexagon 698 NPU with storage type as UFS UFS and Kirin 710 has No NPU and eMMC UFS storage type.
TheTensor accelerator is used in Snapdragon 855/855 Plus The recent progress of scientific technologies is producing a "Cambrian explosive" [ 1] in developing new techniques that lead the world entering promptly into the new artificial intelligence (AI) era The GPU on the SoC is the Adreno 618, and the SoC also comes in with the Hexagon 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. J7iu.
  • spr8igxox8.pages.dev/409
  • spr8igxox8.pages.dev/506
  • spr8igxox8.pages.dev/414
  • spr8igxox8.pages.dev/312
  • spr8igxox8.pages.dev/363
  • spr8igxox8.pages.dev/366
  • spr8igxox8.pages.dev/129
  • spr8igxox8.pages.dev/242
  • kirin 810 vs snapdragon 710