ARM Mali 2D/3D graphics accelerator, DDR / DDR2 / LP-DDR2 / LP-DDR2 memory interface, LVDS Transmitter, HDMI 1.4, Composite TV-Out (NTSC / PAL), USB 2.0 HS OTG, USB 2.0 host, USB 1.1 HOST, EHI (External Host Interface), UART, NAND Flash Interface
Telechips' TCC88xx application processor will redefine the mobile device of tomorrow with new' innovative user experience by PC-like web browsing, 1080p full HD video record & playback, intuitive user interfaces, location based services and next generation social networking applications. TCC88xx supports development of planned features for the Tablet PC and HMP of tomorrow with tremendous performance and programmability to support new applications yet to be imagined. TCC88xx is equipped with hardwired VPU/GPU/ISP to maximize multimedia experience at its peak level.
The Rockchip RK3288 is a mid-range ARM SoC for Android and Chrome OS mobile systems. It integrates four Cortex-A12 cores clocked at up to 1.8 GHz. ARM calls these cores Cortex-A17 due to them having very similar performance levels. The SoC includes an ARM Mali-T760 MP4 (also called Mali-T764) GPU clocked at 600 MHz and a dual-channel DDR3, DDR3L, LPDDR2, LPDDR3 memory controller.
The ARM Cortex-A12 is the successor to the Cortex-A9 and is based on a 32 Bit ARMv7-A microarchitecture. A single A12 core should be roughly 40 % more powerful than an A9 core according to ARM.
The integrated video engine supports encoding of H.264, VP8, and MVC videos up to 1080p. Decoding is supported for videos up to 4K H.264 and 10 Bit H.265.
The chip is manufactured under a 28 nm HKMG process.
The HiSilicon Kirin 9000W is an SoC that can be used in smartphones and tablets based on Android and was first installed in the Huawei MatePad Pro 13.2.
Huawei does not reveal any information about the SoC. The little information that is available comes from benchmarks and system analysis tools. The CPU consists of three clusters with a total of 12 cores. The power-saving cluster has four ARM Cortex-A510 cores, each operating at up to 1,530 MHz, while six other cores use unspecified cores from HiSilicon (0x0D42) and clock at up to 2,150 MHz. The third cluster contains two HiSilicon cores (0x0D02), each with a maximum clock speed of 2,487 MHz. The performance cores could possibly be based on the TaiShan V120 architecture (as in the Kirin 9000S).
The single-core performance is correspondingly mixed, but the multi-core performance is at the level of a high-end SoC from 2022 due to the numerous cores.
A Maleoon 910 by HiSilicon is integrated as the graphics unit, similar to the 9000S (where it was clocked with up to 750MHz).
Nothing concrete is known about the manufacturing process or the architecture. The SoC will probably be manufactured in 7 nm at SMIC.
- Range of benchmark values for this graphics card - Average benchmark values for this graphics card * Smaller numbers mean a higher performance 1 This benchmark is not used for the average calculation
v1.26
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#0 checking url part for id 3327 +0s ... 0s
#1 checking url part for id 6984 +0s ... 0s
#2 checking url part for id 17388 +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 Wed, 01 May 2024 05:34:47 +0200 +0.001s ... 0.001s
#5 composed specs +0.14s ... 0.141s
#6 did output specs +0s ... 0.141s
#7 getting avg benchmarks for device 3327 +0.003s ... 0.144s
#8 got single benchmarks 3327 +0.009s ... 0.153s
#9 getting avg benchmarks for device 6984 +0.003s ... 0.157s
#10 got single benchmarks 6984 +0.014s ... 0.17s
#11 getting avg benchmarks for device 17388 +0.002s ... 0.173s
#12 got single benchmarks 17388 +0.007s ... 0.179s
#13 got avg benchmarks for devices +0s ... 0.179s
#14 min, max, avg, median took s +0.071s ... 0.25s