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Telechips TCC8803 1GHz vs NXP i.MX 6SLL vs Renesas MP5232

Telechips TCC8803 1GHz

► remove from comparison  TCC8803 1GHz

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.

 

NXP i.MX 6SLL

► remove from comparison  i.MX 6SLL

Der NXP i.MX 6SLL oder i.MX6SLL (i.MX 6 Series, MCIMX6V7DVN10AB Part Number) ist ein low-End Single-Core-Chip für e-Reader. Er integriert einen einzelnen ARM Cortex-A9 Kern mit bis zu 1 GHz Taktfrequenz und einen Grafikkarte mit 2D Beschleunigung namens Pixel Processor PXP (inkl. E-INK Display Controller EPDC mit bis zu 2332x1650 5 Bit Graustufen-Support). Der integrierte Speichercontroller kann laut NXP mit 400 MHz LPDDR2 und LPDDR3 umgehen (32 Bit Interface). Festspeicher kann durch die drei Verbindungen mit eMMC 5.0 oder SD 3.0 angebunden werden. Ausserdem können 2x USB 2.0 OTG mit PHY nach aussen geführt werden. WLAN, Bluetooth, GPS und Camera Sensoren müssen durch externe Chips angebunden werden.

Der i.MX 6SLL ist Pin-kompatibel mit dem i.MX 6SoloLite.

Renesas MP5232

► remove from comparison  MP5232

Der Renesas MP5232 ist ein günstiger Dual-Core ARM SoC mit LTE Unterstützung. Er zielt hauptsächlich auf Einstiegs-LTE-Smartphones mit Android im Bereich von 150 - 300 Euro ab. Als Prozessorpart sind zwei ARM Cortex-A9 mit bis zu 1.5 GHz integriert. Im Samsung Galaxy Core LTE SM-G386F werden diese jedoch z.B. nur mit maximal 1.2 GHz betrieben. Weiters findet man eine PowerVR SGX544 Grafikkarte und die oben erwähnten LTE Cat. 4 und 3G (DC-HSPA+, Edge) Einheiten im SoC. Auch ein integrierter 1080p Video De- und Encoder, 20 MP ISP und Audio Subsystem sind im MP5232 verbaut.

Quellen: Test Samsung Galaxy Core LTE SM-G386F, Renesas

ModelTelechips TCC8803 1GHzNXP i.MX 6SLLRenesas MP5232
Series
Serie: Cortex-A9
Google Tensor G41.95 GHz8 / 8 cores
HiSilicon Kirin 9000W1.53 - 2.49 GHz12 / 12 cores
Samsung Exynos W10001.5 GHz5 / 5 cores
UNISOC Tiger T3101.8 - 2 GHz4 / 4 cores
Rockchip RK32881.8 GHz4 / 4 cores
Apple S52 / 2 cores
HiSilicon k3v2 Hi36201.2 GHz4 / 4 cores
Rockchip RK3066 1.5 GHz1.5 GHz2 / 2 cores
Amlogic AML8726-MX1.5 GHz2 / 2 cores
Rockchip RK31681.2 GHz2 / 2 cores
Rockchip RK2918 1.2 GHz1.2 GHz1 / 1 cores
ARM Cortex A8 1.2 GHz1.2 GHz1 / 1 cores
Telechips TCC8803 1GHz « 1 GHz1 / 1 cores
Loongson 2F 900MHz0.9 GHz1 / 1 cores
CSR86700.08 GHzcores
ARM Cortex-M4 cores
HiSilicon Hi6262 cores
DK3.5+STcores
unknown cores
HiSilicon Kirin 910T1.8 GHz4 / 4 cores Cortex-A9
Rockchip RK31881.8 GHz4 / 4 cores Cortex-A9
HiSilicon Kirin 9101.6 GHz4 / 4 cores Cortex-A9
Renesas MP52321.5 GHz2 / 2 cores Cortex-A9
Broadcom BCM21664T1.2 GHz2 / 2 cores Cortex-A9
Marvell PXA9861.2 GHz2 / 2 cores Cortex-A9
NXP i.MX 6SLL « 1 GHz1 / 1 cores Cortex-A9
WonderMedia PRIZM WM89501 GHz1 / 1 cores Cortex-A9
HiSilicon Kirin 910T1.8 GHz4 / 4 cores Cortex-A9
Rockchip RK31881.8 GHz4 / 4 cores Cortex-A9
HiSilicon Kirin 9101.6 GHz4 / 4 cores Cortex-A9
Renesas MP5232 « 1.5 GHz2 / 2 cores Cortex-A9
Broadcom BCM21664T1.2 GHz2 / 2 cores Cortex-A9
Marvell PXA9861.2 GHz2 / 2 cores Cortex-A9
NXP i.MX 6SLL1 GHz1 / 1 cores Cortex-A9
WonderMedia PRIZM WM89501 GHz1 / 1 cores Cortex-A9
Clock1000 MHz1000 MHz1500 MHz
Cores / Threads1 / 11 / 12 / 2
Technology65 nm40 nm
ArchitectureARMARMARM
Announced
CodenameCortex-A9Cortex-A9
L1 Cache64 KB
L2 Cache256 KB
Features32-Bit DRAM Controller 400 MHz LPDDR2/LPDDR3, E-INK Display Controller, 2D Graphics Acceleration, eMMC 5.0, USB 2.0 OTG
iGPUNXP PXP
Manufacturerwww.nxp.comwww.renesas.com

Benchmarks

3DMark - 3DMark Ice Storm Physics
100%
1 MP5232 +
4163 Points (3%)
3DMark - 3DMark Ice Storm Extreme Physics
100%
1 MP5232 +
4147 Points (3%)
Geekbench 3 - Geekbench 3 32 Bit Multi-Core
100%
1 MP5232 +
654 Points (1%)
Geekbench 3 - Geekbench 3 32 Bit Single-Core
100%
1 MP5232 +
373 Points (7%)
Linpack Android / IOS - Linpack Single Thread
13.4 MFLOPS (1%)
88%
1 MP5232 +
11.7 MFLOPS (1%)
Linpack Android / IOS - Linpack Multi Thread
100%
1 MP5232 +
70.2 MFLOPS (2%)
Mozilla Kraken 1.1 - Kraken 1.1 Total Score *
100%
1 MP5232 +
21760 ms (25%)
Sunspider - Sunspider 1.0 Total Score *
6771 ms (74%)
444%
1 MP5232 +
1525 ms (17%)
Sunspider - Sunspider 0.9.1 Total Score *
100%
1 MP5232 +
1480 ms (14%)
Octane V2 - Octane V2 Total Score
100%
1 MP5232 +
1547 Points (1%)
Quadrant Standard Edition 2.0 - Quadrant Standard 2.0 Total Score
100%
1 MP5232 +
3959 points (9%)
AnTuTu v4 - AnTuTu v4 Total Score
100%
1 MP5232 +
12246 Points (28%)
AndEBench - AndEBench Java
100%
1 MP5232 +
209 Iter./s (6%)
AndEBench - AndEBench Native
100%
1 MP5232 +
4260 Iter./s (14%)
PassMark PerformanceTest Mobile V1 - PerformanceTest Mobile V1 CPU Tests
100%
1 MP5232 +
4557 Points (1%)

Average Benchmarks Telechips TCC8803 1GHz → 0% n=0

Average Benchmarks NXP i.MX 6SLL → 0% n=0

Average Benchmarks Renesas MP5232 → 0% n=0

- Bereich der Benchmarkergebnisse für diese Grafikkarte
- Durchschnittliche Benchmarkergebnisse für diese Grafikkarte
* Smaller numbers mean a higher performance
1 This benchmark is not used for the average calculation

v1.28
log 16. 19:39:46

#0 ran 0s before starting gpusingle class +0s ... 0s

#1 checking url part for id 3327 +0s ... 0s

#2 checking url part for id 11524 +0s ... 0s

#3 checking url part for id 5844 +0s ... 0s

#4 redirected to Ajax server, took 1731782386s time from redirect:0 +0s ... 0s

#5 did not recreate cache, as it is less than 5 days old! Created at Sat, 16 Nov 2024 05:16:39 +0100 +0s ... 0s

#6 composed specs +0.004s ... 0.004s

#7 did output specs +0s ... 0.004s

#8 getting avg benchmarks for device 3327 +0.001s ... 0.004s

#9 got single benchmarks 3327 +0.003s ... 0.008s

#10 getting avg benchmarks for device 11524 +0.001s ... 0.008s

#11 got single benchmarks 11524 +0.003s ... 0.011s

#12 getting avg benchmarks for device 5844 +0s ... 0.011s

#13 got single benchmarks 5844 +0s ... 0.011s

#14 got avg benchmarks for devices +0s ... 0.011s

#15 min, max, avg, median took s +0.005s ... 0.016s

#16 return log +0s ... 0.016s

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> Notebook Test, Laptop Test und News > Benchmarks / Technik > Benchmarks / Technik > Prozessor Vergleich - Head 2 Head
Autor: Klaus Hinum,  8.09.2017 (Update:  1.07.2023)