Qualcomm Snapdragon 400 MSM8928 specs
Qualcomm Snapdragon 400 MSM8928 entry level SoC designed for installation in mobile devices such as tablets and phones, SoC release year 2016. The CPU produced by a 28 nm process. The chipset has a four cores divided into clusters. The first cluster ARM Cortex-A53 is the fastest with four cores running at 1.6 GHz. The SoC has support for 64-bit data. Adreno 305 GPU is working with graphics. Gadgets that have the Snapdragon 400 MSM8928 installed can work in 4G networks. Modem Qualcomm Snapdragon LTE modem allows you to download and send data at a speed 150 MBit/s and 50 MBit/s. To understand Snapdragon 400 MSM8928 chip is good or bad from comparisons with other processors and testing results.Qualcomm Snapdragon 400 MSM8928 specifications General Info Brand Qualcomm Name Snapdragon 400 MSM8928 Model Cortex-A53 Release date 2016 CPU configuration 4x1.6 GHz ARM Cortex-A53 Instruction set architecture ARMv8-A Frequency 1600 MHz Cores 4 Word Size 64 bit Process 28 nm Transistor count ? Security Qualcomm Content Protection,Qualcomm Device Lock Authentication,Qualcomm Processor Security Power consumption (TDP) 4 W L1 cache 128 KB L2 cache 2 MB L3 cache 1 MB
Graphics GPU Adreno 305 Frequency 450 MHz Process 28 nm
Memory Type LPDDR2/3 Frequency 533 MHz Max volume 2 Gb Internal type eMMC 5.0 Memory bandwidth 6 GB/s Memory bus 1x 32 Bit
Connectivity Modem Qualcomm Snapdragon LTE modem Download speed 150 MBit/s Upload speed 50 MBit/s LTE Cat Cat-7 DL/Cat-4 UL Wi-Fi ranges a/b/g/n/ac Location GPS,Galileo,Glonass,Beidou Wi-Fi ver. 5 Bluetooth ver. 4
Cameras Main camera max resolution 16 MPix Codecs 1920 x 1080, max FPS 30. Codec: H.264/AVC,H.265/HEVC
Display and Audio Maximum Display resolution 1280 x 800 pix Video encoding Resolution FullHD, max FPS 30. Codec: H.264/AVC,H.265/HEVC
• Devices lists • Benchmarks • PUBG mobile • Fortnite Mobile • 3DMark • Antutu v10 • GeekBench 6, 5 mobile Qualcomm Snapdragon 400 MSM8928 SoC Comparisons • Vs MediaTek MT8321 • Vs Samsung Exynos 3 Quad 3475 • Vs Spreadtrum SC9832 • Vs Spreadtrum SC7731E • Vs Spreadtrum SC9832A • Vs Spreadtrum SC8830 • Vs Qualcomm Snapdragon 215 • Vs MediaTek MT6735P • Vs Spreadtrum SC9850 • Vs MediaTek MT8127 • Vs MediaTek MT6737V • Vs MediaTek MT8735 • Vs Spreadtrum SC9832E • Vs MediaTek MT6737M • Vs MediaTek MT6735 • Vs MediaTek MT6592M • Vs MediaTek MT8783 • Vs MediaTek MT6737 • Vs Qualcomm Snapdragon 410 MSM8916 • Vs MediaTek MT6592 • Vs Qualcomm Snapdragon 800 MSM8974 • Vs MediaTek MT8163 • Vs Samsung Exynos 5 Octa 5420 • Vs HiSilicon Kirin 620 • Vs MediaTek MT6739WM • Vs Qualcomm 205 • Vs Qualcomm Snapdragon 617 MSM8952 • Vs Samsung Exynos 7 Quad 7578 • Vs MediaTek MT6739WW • Vs Qualcomm Snapdragon 616 MSM8939v2 • Vs MediaTek MT8735M • Vs MediaTek MT6580 • Vs MediaTek MT6580M • Vs MediaTek MT6580A • Vs MediaTek MT6735M • Vs Spreadtrum SC7731 • Vs Spreadtrum SC7731G • Vs Spreadtrum SC7731C • Vs Qualcomm Snapdragon 210 MSM8909 • Vs Spreadtrum SC9830A • Vs MediaTek MT6570 • Vs Atom x3-C3230RK • Vs MediaTek MT8312 • Vs MediaTek MT8735B • Vs Rockchip RK3126C • Vs MediaTek MT8382 • Vs MediaTek MT6580P • Vs Qualcomm Snapdragon 200 MSM8210 • Vs MediaTek MT6732M • Vs Qualcomm Snapdragon 400 MSM8228 • Vs MediaTek MT6582 • Vs MediaTek MT6572 • Vs Qualcomm Snapdragon 410 APQ8016 • Vs MediaTek MT6572M • Vs MediaTek MT8732 • Vs MediaTek MT8735W • Vs Spreadtrum SC9830 • Vs Qualcomm Snapdragon 400 APQ8026 • Vs MediaTek MT8765B • Vs Atom x3-C3130 • Vs MediaTek MT6589 • Vs MediaTek MT8389 • Vs Atom Z3735F • Vs MediaTek MT6582M • Vs Qualcomm Snapdragon 200 MSM8212 • Vs MediaTek MT8312CW • Vs Atom Z2520 • Vs MediaTek MT6737H • Vs Samsung Exynos 3 Quad 3470 • Vs MediaTek MT8167D • Vs Qualcomm Snapdragon S1 • Vs Spreadtrum SC7730SW • Vs Qualcomm Snapdragon 212 MSM8909 v2 • Vs Atom x3-C3200RK • Vs Samsung Exynos 4 Quad 4412 • Vs Qualcomm Snapdragon S4 Play MSM8225 • Vs MediaTek MT6735T • Vs Spreadtrum SC7730SE • Vs MediaTek MT8735P • Vs Spreadtrum SC5735 • Vs MediaTek MT8167A Qualcomm Snapdragon 400 MSM8928 review VIDEO