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Rockchip RK3066 1.5 GHz vs Intel Celeron J4105 vs Google Tensor G4

Rockchip RK3066 1.5 GHz

► remove from comparison  RK3066

Der Rockchip RK3066 ist ein günstiger SoC für Tablets und Smartphones. Er bietet zwei ARM Cortex-A9 CPU Kerne mit NEON Erweiterungen, eine ARM Mali 400MP4 (Quad-Core mit 250 MHz getaktet) Grafikkarte und einen Video De- und Encoder. Der integrierte Speicherkontroller unterstützt maximal 2 GB DDR1-3.

Weitere Features lt Wikipedia

  • VPU (Video Processing Unit) Multi-Media Processor supporting 1080p image and video decoding
  • HDMI 1.4 Interface
  • 2-channels TFT LCD Interface with 5 layers and 3D Display (1920×1080 Maximum Display Size)
  • USB 2.0 Interface
  • SD/MMC Interface

Intel Celeron J4105

► remove from comparison Intel Celeron J4105

Der Intel Celeron J4105 ist ein Ende 2017 vorgestellter Quad-Core-SoC für Desktops, der hauptsächlich in preiswerten Mini-PCs verbaut wird. Er taktet mit 1,5 bis 2,5 GHz (Einzelkern Burst) und gehört der Gemini-Lake-Plattform an. Die Fertigung erfolgt wie beim Vorgänger Apollo Lake in einem 14-Nanometer-Prozesses mit FinFETs. Neben den vier CPU-Kernen integriert der Chip auch eine DirectX-12-fähige Grafikeinheit sowie einen DDR4/LPDDR4-Speichercontroller (Dual-Channel, 2.400 MHz). Der SoC kann nicht ausgetauscht werden, da er direkt mit dem Mainboard verlötet wird (BGA Package).

Architektur

Die Prozessor-Architektur der Gemini Lake SoCs wurde im Vergleich zum Vorgänger leicht weiterentwickelt. Intel nennt sie nun Goldmont Plus Kerne und verdoppelt den Level 2 Cache von 2 auf 4 MB. Trotzdem sollte die Pro-MHz-Leistung noch deutlich hinter den aktuellen Kaby-Lake Prozessoren bleiben.

Google Tensor G4

► remove from comparison

The Google Tensor G4 is the processor powering Pixel 9 series phones that debuted in August 2024. It certainly is well-connected, with both 5G and Wi-Fi 7 onboard. According to reports, the chip is built using one of Samsung's 4 nm processes making for decent power efficiency, as of late 2024.

The CPU part of the SoC is made up of 8 cores. The Cortex-X4 reportedly runs at 3.1 GHz and is the fastest of the bunch. Then there are also 3 Cortex-A720 cores (2.6 GHz) and 4 very frugal Cortex-A520 cores (1.95 GHz). This setup is only just enough for middling benchmark scores that are a far cry from what the Snapdragon 8 Gen 3, not to mention the A18 Pro deliver.

The G715 MP7 reportedly serves as the graphics adapter.

ModelRockchip RK3066 1.5 GHzIntel Celeron J4105Google Tensor G4
Series Intel Gemini LakeGoogle
Serie:
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 GHz « 1.5 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 1GHz1 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
Intel Celeron J4105 « 1.5 - 2.5 GHz4 / 4 cores
Intel Pentium Silver N50001.1 - 2.7 GHz4 / 4 cores
Intel Celeron J40052 - 2.7 GHz2 / 2 cores
Intel Celeron J41151.8 - 2.5 GHz4 / 4 cores
Intel Celeron N41001.1 - 2.4 GHz4 / 4 cores
Intel Celeron N40001.1 - 2.6 GHz2 / 2 cores
Google Tensor G4 « 1.95 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 1GHz1 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
Clock1500 MHz1500 - 2500 MHz1950 MHz
L2 Cache512 KB4 MB
Cores / Threads2 / 24 / 48 / 8
1 x ARM Cortex-X4
3 x ARM Cortex-A720
4 x ARM Cortex-A520
Technology40 nm14 nm4 nm
FeaturesMali-400 MP4, Single Channel DDR3 Memory ControllerDDR4-2400/LPDDR4-2400 RAM, PCIe 2, MMX, SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, VMX, SMEP, SMAP, MPX, EIST, TM1, TM2, Turbo, AES-NI, RDRAND, RDSEED, SHA, SGX
iGPUARM Mali-400 MP4 (250 MHz)Intel UHD Graphics 600 (250 - 750 MHz)ARM Mali-G715 MP7
ArchitectureARMx86ARM
Announced
Manufacturerwww.rock-chips.comark.intel.com
CodenameGemini Lake
TDP10 Watt
max. Temp.105 °C
SocketBGA1090
$107 U.S.

Benchmarks

Cinebench R15 - Cinebench R15 CPU Multi 64 Bit
270 Points (2%)
Cinebench R15 - Cinebench R15 CPU Single 64 Bit
73 Points (21%)
3DMark - 3DMark Ice Storm Physics
100%
1 RK3066 +
min: 4687     avg: 4990     median: 5059 (4%)     max: 5161 Points
3DMark - 3DMark Ice Storm Extreme Physics
100%
1 RK3066 +
4890 Points (4%)
Sunspider - Sunspider 1.0 Total Score *
100%
1 RK3066 +
1959 ms (21%)
Quadrant Standard Edition 2.0 - Quadrant Standard 2.0 Total Score
100%
1 RK3066 +
min: 3105     avg: 3862     median: 3974 (9%)     max: 4257 points
PassMark PerformanceTest Mobile V1 - PerformanceTest Mobile V1 CPU Tests
100%
1 RK3066 +
5852 Points (1%)

Average Benchmarks Rockchip RK3066 1.5 GHz → 0% n=0

Average Benchmarks Intel Celeron J4105 → 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 19. 00:26:25

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

#1 checking url part for id 3576 +0s ... 0s

#2 checking url part for id 9928 +0s ... 0s

#3 checking url part for id 18012 +0s ... 0s

#4 redirected to Ajax server, took 1729290385s time from redirect:0 +0s ... 0s

#5 did not recreate cache, as it is less than 5 days old! Created at Wed, 16 Oct 2024 05:17:00 +0200 +0s ... 0s

#6 composed specs +0.003s ... 0.003s

#7 did output specs +0s ... 0.003s

#8 getting avg benchmarks for device 3576 +0s ... 0.004s

#9 got single benchmarks 3576 +0.001s ... 0.005s

#10 getting avg benchmarks for device 9928 +0s ... 0.005s

#11 got single benchmarks 9928 +0s ... 0.005s

#12 getting avg benchmarks for device 18012 +0s ... 0.006s

#13 got single benchmarks 18012 +0s ... 0.006s

#14 got avg benchmarks for devices +0s ... 0.006s

#15 min, max, avg, median took s +0.004s ... 0.01s

#16 return log +0s ... 0.01s

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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)