Samsung Xclipse 920 GPU @ 500 MHz specs
Samsung Xclipse 920 @ 500 MHz top level GPU designed for work in mobile CPUs which are used in smartphones and tablets, GPU release year 2022. The GPU created by a 4 nm process. Samsung Xclipse 920 @ 500 MHz has 192 ALUs working at 500 MHz and is responsible for operating with graphical data, or more simply the GPU helps games pleasing to the eye and seem well and more beautiful, for example Fortnite, Madout2, Asphalt 9, Call of Duty, Minecraft, GTA, PUBG and many others. To understand Samsung Xclipse 920 @ 500 MHz GPU is bad or good from comparisons with other graphics processing units and benchmark results.Samsung Xclipse 920 @ 500 MHz GPU specifications General Info Name Samsung Xclipse 920 Codename (Generation) RDNA 2 Frequency 500 MHz Process 4 nm GFLOPs FP32 (Single Precision) 2124 GFLOPs Triangle Fillrate 1800 MT/s Pixel Fillrate 64 GP/s Memory bandwidth 64 GB/s Release date 2022-01-07
Display DirectX 12 Video encoding/decoding h265/HEVC (10 bit):Decode & Encode h264:Decode & Encode AVC:Decode & Encode VP9:Decode & Encode h265/HEVC (8 bit):Decode & Encode VC-1:Decode & Encode JPEG:Decode & Encode VP8:Decode & Encode AV1:Decode & Encode Anti-aliasing 4x MSAA, 8x MSAA, 16x MSAA Technology 8K 360 VR video playback,Vulkan 1.1, OpenGL ES 3.2,OpenGL 3.3,OpenVG 1.2,DirectX 12,OpenCL 2.0,Volumetric VR video playback Additional information Advanced API support, Dynamic hardware tessellation, General-Purpose GPU (GPGPU) performance, RenderScript, Shared Virtual memory
Samsung Xclipse 920 GPU (500 MHz) review VIDEO • GPU Fortnite Mobile • GPU PUBG mobile • GPU Benchmarks • GPU Devices lists • GPU SoCs lists Samsung Xclipse 920 GPU Comparisons • Vs Adreno 730 (970MHz) • Vs Apple M1 (3200MHz) • Vs Adreno 662 (800MHz) • Vs Adreno 660 (700MHz) • Vs Mali-G710 MP16 (650MHz) • Vs Mali-G78AE (700MHz) • Vs Mali-G78 MP24 (650MHz) • Vs Apple A12Z Bionic (2500MHz) • Vs Adreno 430 (600MHz) • Vs Mali-G78 MP22 (650MHz) • Vs Mali-G78 MP14 (700MHz) • Vs Apple A12X Bionic (2500MHz) • Vs Mali-G78 MP10 (700MHz) • Vs Adreno 650 (645MHz) • Vs Apple A14 Bionic (3000MHz) • Vs Mali-G68 MP6 (700MHz) • Vs Mali-G610 MC3 (600MHz) • Vs Mali-G610 MP6 (600MHz) • Vs Adreno 650 (600MHz) • Vs Mali-G77 MC9 (800MHz) • Vs Mali-G77 MP11 (800MHz) • Vs Mali-G68 MC4 (800MHz) • Vs Adreno 642L (550MHz) • Vs Apple A13 Bionic (2600MHz) • Vs PowerVR BXM-8-256 (800MHz) • Vs Mali-G57 MP5 (850MHz) • Vs Apple A12 Bionic (2500MHz) • Vs Mali-G77 MP8 (800MHz) • Vs Adreno 690 (600MHz) • Vs Mali-G57 MP6 (850MHz) • Vs Mali-G510 MP6 (800MHz) • Vs Mali-G76 MP18 (950MHz) • Vs Apple A16 Bionic (3460MHz) • Vs Apple A15 Bionic GPU (3232MHz) • Vs Mali-G710 MP07 (850MHz) • Vs Apple M2 (3490MHz) • Vs Immortalis-G715 MC16 (750MHz) • Vs Mali-G615 (700MHz) • Vs Mali-G715 MP9 (750MHz) • Vs Adreno 643L (812MHz) • Vs Mali-G68 MP5 (950MHz) • Vs Apple A17 Bionic (3640MHz) • Vs Mali-G610 MC4 (700MHz) • Vs Immortalis-G720 MC20 (800MHz) • Vs Maleoon 910 (750MHz) • Vs Adreno 735 (1100MHz) • Vs Mali-G615 MC2 (1100MHz) • Vs Adreno 830 (1100MHz)