Apple M2 10-Core GPU vs NVIDIA Quadro RTX 3000 (Laptop) vs Apple M2 Max 38-Core GPU
Apple M2 10-Core GPU ► remove from comparison
Die Apple M2 GPU ist eine selbst designte Grafikkarte im Apple M2 SoC und laut Apple mit acht oder zehn Kernen. Die 10-Kern-Variante bietet wahrscheinlich 160 Ausführungseinheiten und eine theoretische Maximalleistung von 3,6 Teraflops. Damit ist sie um 1 Teraflop schneller als die alte 8-Kern-GPU im Apple M1 und soll auch größere Caches bieten.
Bei der Performance gibt Apple eine 35% höhere Performance (bei leicht höherem Stromverbrauch von 15 Watt) an. In unseren Benchmarks sehen wir einen Vorsprung von knapp 40% gegenüber dem M1, die 14-Kern-GPU vom M1 Pro bleibt aber deutlich voran.
Die M2-GPU unterstützt Apple's Metal 2 Schnittstelle und dürfte eine ähnliche Architektur wie die älteren PowerVR Grafikeinheiten (z.B. im Apple A10 ) aufweisen.
Da der SoC im (second generation) 5nm Prozess bei TSMC hergestellt wird (wahrscheinlich N5P), sollte die Energieeffizienz sehr sein. Die GPU nutzt laut internen Tools unter Last in etwa 13,5 Watt (15 Watt laut Apple).
NVIDIA Quadro RTX 3000 (Laptop) ► remove from comparison
Die Nvidia Quadro RTX 3000 für Laptops ist eine professionelle Grafikkarte für große und schwere Notebooks. Sie basiert auf den selben Chip wie die Consumer GeForce RTX 2070 jedoch mit zertifizierten Treibern für professionelle Anwendungen, weniger Kernen und geringeren Taktraten und langsameren, aber größerem Grafikspeicher.
Die Quadro-Grafikkarten bieten zertifizierte Treiber , welche auf Stabiltität und Performance bei professionellen Anwendungen (CAD-, DCC-, Medizin-, Prospektions-, Visualisierungsanwendungen) optimiert sind. Dadurch ist die Performance im Vergleich zu den Consumergrafikkarten mit gleichem Chip in diesen Bereichen deutlich besser.
Variante Shader TGP (W) Base (MHz) Boost (MHz) Quadro RTX 4000 Desktop 2304 160 1005 1545 Quadro RTX 3000 Mobile 1920 80 945 1380 Quadro RTX 3000 Max-Q 1920 70 870 1380 Quadro RTX 4000 Max-Q 2304 65 765 1305 Quadro RTX 4000 Max-Q 2304 60 600 1215 GeForce RTX 2070 Mobile 2304 115? 1215 1440
Features
Der TU106-Chip wird in 12nm gefertigt und bietet eine Reihe neuer Features, wie DLSS (Deep Learning Super Sampling) und Real Time Ray Tracing. Dadurch lassen sich vor allem Beleuchtungseffekte sehr viel realistischer darstellen. Weiterhin gibt es Support für DisplayPort 1.4 (ready), HDMI 2.0b, HDR, Simultaneous Multi-Projection (SMP) sowie H.265 Video De- und Encoding (PlayReady 3.0).
Performance
Die theoretische Performance sollte leicht unterhalb einer GeForce RTX 2070 liegen. Bei manchen professionellen Applikationen verhelfen die Quadro Treiber der RTX 3000 jedoch zu einer höheren Performance.
Mit einem TDP von 80 Watt benötigt die Quadro RTX 3000 zwar deutlich weniger als die stärkeren RTX 4000 und 5000 GPUs, jedoch eignet sie sich trotzdem nur für große Workstation Laptops.
Apple M2 Max 38-Core GPU ► remove from comparison
Die Apple M2 Max 38-Core GPU ist eine von Apple selbst designte Grafikkarte im Apple M2 Max SoC und laut Apple mit allen 38 Kernen. Die GPU hat keinen dedizierten Grafikspeicher aber kann auf den schnellen gemeinsamen LPDDR5-6400? Speicher (unified Memory, 32 bis 96 GB, 400 GBit Bandbreite) zugreifen.
Neu ist beim M2 Pro und Max der Support für HDMI 2.1 (8K Displays).
Die iGPU unterstützt Apple's Metal 2 Schnittstelle und dürfte eine ähnliche Architektur wie die älteren PowerVR Grafikeinheiten (z.B. im Apple A10 ) aufweisen.
Da der SoC im 5nm Prozess bei TSMC hergestellt wird, sollte die Energieeffizienz hervorragend sein. Laut powermetrics braucht die GPU bis zu 53,6 Watt (Chip inkl. CPU gesamt 89 Watt).
Apple M2 10-Core GPU NVIDIA Quadro RTX 3000 (Laptop) Apple M2 Max 38-Core GPU Apple M2 Serie Pipelines 10 - unified 1920 - unified 38 - unified Kerntakt 1398 (Boost) MHz 945 - 1380 (Boost) MHz Speichertyp LPDDR5-6400 GDDR6 LPDDR5-6400 Shared Memory nein nein nein Stromverbrauch 15 Watt 80 Watt 53 Watt Herstellungsprozess 5 nm 12 nm 5 nm Erscheinungsdatum 06.06.2022 27.05.2019 17.01.2023 Predecessor M1 8-Core GPU Codename N19E-Q1 Architektur Turing Speichertakt 14000 MHz Speicherbandbreite 192 Bit Max. Speichergröße 6 GB API DirectX 12_1, OpenGL 4.6 Transistors 10.8 Billion Features DLSS, Raytraycing, VR Ready, G-SYNC, Vulkan, Multi Monitor Notebookgröße groß (17" z.B.) mittel (15.4" z.B.)
CPU in M2 10-Core GPU GPU Base Speed GPU Boost / Turbo Apple M2 8 x 2424 MHz, 20 W ? MHz 1398 MHz
CPU in M2 Max 38-Core GPU GPU Base Speed GPU Boost / Turbo Apple M2 Max 12 x 2424 MHz, 79 W ? MHz ? MHz
Benchmarks Performance Rating - 3DMark 11 + Fire Strike + Time Spy - Quadro RTX 3000 (Laptop)
6.6 pt (20%)
...
NVIDIA Quadro RTX 3000 (Laptop)
...
max:
3DMark - 3DMark Time Spy Score
min: 5566 avg: 5856 median: 5923 (17%) max: 6080 Points
3DMark - 3DMark Time Spy Graphics
min: 5503 avg: 5702 median: 5589 (15%) max: 6014 Points
3DMark - 3DMark Ice Storm Extreme Graphics
140064 Points (16%)
3DMark - 3DMark Cloud Gate Score
min: 32163 avg: 35433 median: 36407 (34%) max: 37729 Points
3DMark - 3DMark Cloud Gate Graphics
min: 62730 avg: 86865 median: 91394 (22%) max: 106470 Points
3DMark - 3DMark Fire Strike Standard Score
min: 12693 avg: 13568 median: 13570 (23%) max: 14442 Points
3DMark - 3DMark Fire Strike Standard Graphics
min: 13802 avg: 14842 median: 14841.5 (17%) max: 15881 Points
3DMark - 3DMark Ice Storm Graphics
123598 Points (14%)
3DMark - 3DMark Wild Life Unlimited
min: 21302 avg: 23924 median: 24236 (12%) max: 25317 Points
GPU TDP ? TDP 13 W 94% 100%
3DMark - 3DMark Wild Life Extreme Unlimited
min: 5328 avg: 6533 median: 6823.5 (8%) max: 6987 Points
GPU TDP ? TDP 12 W TDP 13 W 89% 100% 98%
25103 Points (29%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 25% 28% 27% 100%
3DMark 11 - 3DM11 Performance Score
min: 15944 avg: 17495 median: 17864 (23%) max: 18307 Points
3DMark 11 - 3DM11 Performance GPU
min: 17569 avg: 19467 median: 19878.5 (17%) max: 20542 Points
3DMark Vantage 3DM Vant. Perf. total + NVIDIA Quadro RTX 3000 (Laptop) 3DMark Vantage - 3DM Vant. Perf. total
50309 Points (15%)
3DM Vant. Perf. GPU no PhysX + NVIDIA Quadro RTX 3000 (Laptop) 3DMark Vantage - 3DM Vant. Perf. GPU no PhysX
54830 Points (30%)
3DMark 06 3DMark 06 - Standard 1280x1024 + NVIDIA Quadro RTX 3000 (Laptop)
37304 Points (49%)
Unigine Valley 1.0 - Unigine Valley 1.0 DX
58.3 fps (18%)
Unigine Heaven 2.1 - Heaven 2.1 high
199.4 fps (37%)
Blender - Blender 3.3 Classroom METAL *
min: 205 avg: 221 median: 221 (23%) max: 237 Seconds
GPU TDP 12 W TDP 13 W 104% 100%
51.2 Seconds (5%)
GPU TDP 12 W TDP 13 W TDP 64 W 104% 100% 126%
SPECviewperf 12 specvp12 sw-03 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 sw-03
min: 107 avg: 112.1 median: 110.6 (27%) max: 120.2 fps
specvp12 snx-02 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 snx-02
min: 99.6 avg: 112.7 median: 113.5 (17%) max: 124.3 fps
specvp12 showcase-01 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 showcase-01
min: 76.9 avg: 81 median: 82 (18%) max: 83.2 fps
specvp12 mediacal-01 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 mediacal-01
min: 43.01 avg: 46 median: 46 (12%) max: 49 fps
specvp12 maya-04 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 maya-04
min: 72.4 avg: 78.2 median: 73.8 (20%) max: 92.9 fps
specvp12 energy-01 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 energy-01
min: 11.54 avg: 11.8 median: 11.8 (11%) max: 12.13 fps
specvp12 creo-01 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 creo-01
min: 113.6 avg: 118.2 median: 119.1 (48%) max: 121 fps
specvp12 catia-04 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 catia-04
min: 108.8 avg: 117.5 median: 115.5 (19%) max: 130 fps
specvp12 3dsmax-05 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 12 - specvp12 3dsmax-05
min: 151 avg: 157.3 median: 158 (28%) max: 163 fps
SPECviewperf 13 specvp13 sw-04 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 sw-04
min: 109.6 avg: 120.2 median: 121.6 (33%) max: 128 fps
specvp13 snx-03 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 snx-03
min: 160.6 avg: 204.3 median: 215.5 (24%) max: 225.4 fps
specvp13 showcase-02 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 showcase-02
min: 73.3 avg: 79.3 median: 80.8 (18%) max: 82.5 fps
specvp13 medical-02 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 medical-02
min: 53.9 avg: 59.8 median: 59.8 (12%) max: 65.6 fps
specvp13 maya-05 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 maya-05
min: 155.4 avg: 182.3 median: 189.5 (22%) max: 194.7 fps
specvp13 energy-02 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 energy-02
min: 25.76 avg: 28.2 median: 28.2 (9%) max: 30.55 fps
specvp13 creo-02 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 creo-02
min: 160.6 avg: 182.5 median: 186.5 (27%) max: 196.2 fps
specvp13 catia-05 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 catia-05
min: 185.8 avg: 199 median: 202.5 (23%) max: 205.2 fps
specvp13 3dsmax-06 + NVIDIA Quadro RTX 3000 (Laptop) SPECviewperf 13 - specvp13 3dsmax-06
min: 149.4 avg: 156.7 median: 157.5 (27%) max: 162.5 fps
Cinebench R10 Cinebench R10 Shading (32bit) + NVIDIA Quadro RTX 3000 (Laptop) Cinebench R10 - Cinebench R10 Shading (32bit)
6821 Points (5%)
Cinebench R11.5 Cinebench R11.5 OpenGL 64 Bit + NVIDIA Quadro RTX 3000 (Laptop) Cinebench R11.5 - Cinebench R11.5 OpenGL 64 Bit
129.2 fps (43%)
Cinebench R15 Cinebench R15 OpenGL 64 Bit + Apple M2 10-Core GPU Cinebench R15 - Cinebench R15 OpenGL 64 Bit
min: 128.65 avg: 132.8 median: 131 (8%) max: 140.5 fps
GPU TDP 12 W TDP 13 W 100% 93%
Cinebench R15 OpenGL 64 Bit + NVIDIA Quadro RTX 3000 (Laptop)
min: 192.4 avg: 203.6 median: 204 (12%) max: 214 fps
GPU TDP ? TDP 12 W TDP 13 W 100% 69% 64%
Cinebench R15 OpenGL 64 Bit + Apple M2 Max 38-Core GPU
147.5 fps (9%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 100% 69% 64% 72%
Cinebench R15 OpenGL Ref. Match 64 Bit + Apple M2 10-Core GPU Cinebench R15 - Cinebench R15 OpenGL Ref. Match 64 Bit
99.5 % (100%)
GPU TDP 12 W TDP 13 W 100% 100%
Cinebench R15 OpenGL Ref. Match 64 Bit + NVIDIA Quadro RTX 3000 (Laptop)
min: 99.6 avg: 99.8 median: 99.8 (100%) max: 100 %
GPU TDP ? TDP 12 W TDP 13 W 100% 100% 100%
Cinebench R15 OpenGL Ref. Match 64 Bit + Apple M2 Max 38-Core GPU
99.5 % (100%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 100% 100% 100% 100%
GFXBench - GFXBench 5.0 4K Aztec Ruins High Tier Offscreen
min: 35.6 avg: 43.9 median: 47.9 (19%) max: 48.6 fps
GPU TDP ? TDP 12 W TDP 13 W 85% 99% 100%
179.9 fps (73%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 23% 27% 27% 100%
GFXBench - GFXBench 5.0 Aztec Ruins High Tier Offscreen
min: 68 avg: 96 median: 102.6 (19%) max: 110 fps
GPU TDP ? TDP 12 W TDP 13 W 76% 99% 100%
397.6 fps (72%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 21% 27% 27% 100%
GFXBench - GFXBench 5.0 Aztec Ruins Normal Tier Offscreen
min: 208 avg: 267.5 median: 283.8 (21%) max: 296 fps
GPU TDP ? TDP 12 W TDP 13 W 83% 99% 100%
950 fps (70%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 26% 30% 31% 100%
GFXBench - GFXBench Car Chase Offscreen
min: 136 avg: 197.6 median: 206.1 (23%) max: 232 fps
GPU TDP ? TDP 12 W TDP 13 W 82% 100% 85%
257.8 fps (29%)
GPU TDP ? TDP 12 W TDP 13 W 87% 100% 85%
585 fps (66%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 35% 40% 34% 100%
GFXBench 3.1 - GFXBench Manhattan ES 3.1 Offscreen
min: 247 avg: 318.6 median: 331.5 (7%) max: 374.6 fps
GPU TDP ? TDP 12 W TDP 13 W 82% 100% 85%
384.8 fps (8%)
GPU TDP ? TDP 12 W TDP 13 W 86% 100% 85%
1294 fps (27%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 25% 29% 25% 100%
GFXBench 3.0 - GFXBench 3.0 Manhattan Offscreen
min: 411 avg: 503 median: 509.5 (30%) max: 557.2 fps
GPU TDP ? TDP 12 W TDP 13 W 83% 100% 97%
407.8 fps (24%)
GPU TDP ? TDP 12 W TDP 13 W 81% 100% 97%
1708 fps (100%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 26% 33% 32% 100%
GFXBench (DX / GLBenchmark) 2.7 GFXBench T-Rex HD Offscreen C24Z16 + Apple M2 10-Core GPU GFXBench (DX / GLBenchmark) 2.7 - GFXBench T-Rex HD Offscreen C24Z16
min: 628 avg: 824 median: 891.5 (7%) max: 931.9 fps
GPU TDP ? TDP 12 W TDP 13 W 78% 100% 98%
GFXBench T-Rex HD Offscreen C24Z16 + NVIDIA Quadro RTX 3000 (Laptop)
1010 fps (8%)
GPU TDP ? TDP 12 W TDP 13 W 84% 100% 98%
GFXBench T-Rex HD Offscreen C24Z16 + Apple M2 Max 38-Core GPU
3185 fps (25%)
GPU TDP ? TDP 12 W TDP 13 W TDP 64 W 25% 29% 29% 100%
Antutu v9 - AnTuTu v9 GPU
min: 654168 avg: 728087 median: 728086 (91%) max: 802005 Points
Geekbench 6.3 - Geekbench 6.3 GPU OpenCL
min: 27880 avg: 27900 median: 27900 (8%) max: 27920 Points
GPU TDP 12 W TDP 13 W 100% 100%
Geekbench 6.3 - Geekbench 6.3 GPU Metal
min: 42013 avg: 44473 median: 45460 (29%) max: 45946 Points
GPU TDP ? TDP 12 W TDP 13 W 91% 100% 99%
LuxMark v2.0 64Bit - LuxMark v2.0 Room GPU
2754 Samples/s (10%)
LuxMark v2.0 64Bit - LuxMark v2.0 Sala GPU
5769 Samples/s (10%)
ComputeMark v2.1 - ComputeMark v2.1 Result
8716 Points (9%)
Power Consumption - The Witcher 3 Power Consumption - external Monitor *
min: 22.8 avg: 27.8 median: 26.9 (4%) max: 34.4 Watt
GPU TDP 12 W TDP 13 W 100% 100%
80.7 Watt (11%)
GPU TDP 12 W TDP 13 W TDP 64 W 108% 108% 100%
Power Consumption - Witcher 3 Power Consumption *
min: 27.8 avg: 32.5 median: 30.8 (7%) max: 38.9 Watt
min: 135.5 avg: 143.8 median: 143 (31%) max: 153 Watt
GPU TDP ? TDP 13 W 100% 136%
92 Watt (20%)
GPU TDP ? TDP 13 W TDP 64 W 100% 136% 117%
Power Consumption - GFXBench Aztec Ruins Normal Tier Offscreen Power Consumption 150cd *
min: 16 avg: 16.5 median: 16.7 (6%) max: 16.7 Watt
Power Consumption - Witcher 3 ultra Power Efficiency
min: 1.007 avg: 1 median: 1 (91%) max: 1.108 fps per Watt
min: 0.3523 avg: 0.4 median: 0.4 (36%) max: 0.4354 fps per Watt
GPU TDP ? TDP 13 W 39% 100%
Power Consumption - Witcher 3 ultra Power Efficiency - external Monitor
min: 1.116 avg: 1.1 median: 1.1 (92%) max: 1.207 fps per Watt
0.9 fps per Watt (78%)
GPU TDP 13 W TDP 64 W 100% 84%
Emissions Witcher 3 Fan Noise + Apple M2 10-Core GPU Emissions - Witcher 3 Fan Noise
34.6 dB(A) (55%)
Witcher 3 Fan Noise + NVIDIA Quadro RTX 3000 (Laptop)
min: 30.7 avg: 38.9 median: 41.2 (66%) max: 44.7 dB(A)
GPU TDP ? TDP 13 W 100% 89%
Witcher 3 Fan Noise + Apple M2 Max 38-Core GPU
35.1 dB(A) (56%)
GPU TDP ? TDP 13 W TDP 64 W 100% 89% 90%
Average Benchmarks Apple M2 10-Core GPU → 100% n=6 Average Benchmarks NVIDIA Quadro RTX 3000 (Laptop) → 115% n=6 Average Benchmarks Apple M2 Max 38-Core GPU → 263% n=6
- 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
Spiele-Benchmarks Die folgenden Benchmarks basieren auf unseren Spieletests mit Testnotebooks. Die Performance dieser Grafikkarte bei den gelisteten Spielen ist abhängig von der verwendeten CPU, Speicherausstattung, Treiber und auch Betriebssystem. Dadurch müssen die untenstehenden Werte nicht repräsentativ sein. Detaillierte Informationen über das verwendete System sehen Sie nach einem Klick auf den fps-Wert.
100%
M2 10-Core GPU:
59.3 fps
100%
M2 10-Core GPU:
118.8 fps
100%
M2 10-Core GPU:
58.5 fps
100%
M2 10-Core GPU:
65 fps
100%
M2 10-Core GPU:
118.4 fps
206%
M2 Max 38-Core GPU:
72 fps
241%
M2 Max 38-Core GPU:
60.2 fps
304%
M2 Max 38-Core GPU:
48.6 fps
Quadro RTX 3000 (Laptop):
102 fps
Quadro RTX 3000 (Laptop):
92 fps
Quadro RTX 3000 (Laptop):
84 fps
Quadro RTX 3000 (Laptop):
73 fps
200%
Quadro RTX 3000 (Laptop):
226.5 fps
292%
M2 Max 38-Core GPU:
330 fps
245%
Quadro RTX 3000 (Laptop):
107.7 fps
334%
M2 Max 38-Core GPU:
147 fps
256%
Quadro RTX 3000 (Laptop):
69.2 fps
356%
M2 Max 38-Core GPU:
96 fps
242%
Quadro RTX 3000 (Laptop):
46 fps
374%
M2 Max 38-Core GPU:
71 fps
M2 Max 38-Core GPU:
47 fps
Quadro RTX 3000 (Laptop):
114 fps
Quadro RTX 3000 (Laptop):
91 fps
Quadro RTX 3000 (Laptop):
86 fps
Quadro RTX 3000 (Laptop):
77 fps
Quadro RTX 3000 (Laptop):
96 fps
Quadro RTX 3000 (Laptop):
77 fps
Quadro RTX 3000 (Laptop):
62 fps
Quadro RTX 3000 (Laptop):
39 fps
100%
M2 10-Core GPU:
60 76 102 ~ 79 fps
171%
Quadro RTX 3000 (Laptop):
135 fps
230%
M2 Max 38-Core GPU:
182 fps
100%
M2 10-Core GPU:
28 31 39 40 ~ 35 fps
286%
Quadro RTX 3000 (Laptop):
100 fps
374%
M2 Max 38-Core GPU:
131 fps
100%
M2 10-Core GPU:
25 27 36 36 ~ 31 fps
284%
Quadro RTX 3000 (Laptop):
88 fps
394%
M2 Max 38-Core GPU:
122 fps
100%
M2 10-Core GPU:
21 23 31 32 ~ 27 fps
293%
Quadro RTX 3000 (Laptop):
79 fps
404%
M2 Max 38-Core GPU:
109 fps
100%
M2 10-Core GPU:
20 fps
390%
M2 Max 38-Core GPU:
78 fps
100%
M2 10-Core GPU:
39.8 fps
Quadro RTX 3000 (Laptop):
114 fps
Quadro RTX 3000 (Laptop):
102 fps
Quadro RTX 3000 (Laptop):
86 fps
Quadro RTX 3000 (Laptop):
219.1 fps
Quadro RTX 3000 (Laptop):
213.9 fps
Quadro RTX 3000 (Laptop):
174.6 fps
Quadro RTX 3000 (Laptop):
99.4 fps
Quadro RTX 3000 (Laptop):
83 fps
Quadro RTX 3000 (Laptop):
142 fps
Quadro RTX 3000 (Laptop):
130 fps
Quadro RTX 3000 (Laptop):
132 fps
Quadro RTX 3000 (Laptop):
121 fps
Quadro RTX 3000 (Laptop):
88 fps
100%
M2 10-Core GPU:
34 fps
321%
Quadro RTX 3000 (Laptop):
101.3 117 ~ 109 fps
244%
M2 Max 38-Core GPU:
83 fps
100%
M2 10-Core GPU:
28 fps
200%
Quadro RTX 3000 (Laptop):
53.9 59 ~ 56 fps
271%
M2 Max 38-Core GPU:
76 fps
M2 Max 38-Core GPU:
84 fps
M2 Max 38-Core GPU:
81 fps
M2 Max 38-Core GPU:
57 fps
100%
M2 10-Core GPU:
67.7 fps
100%
M2 10-Core GPU:
44.2 fps
Average Gaming Apple M2 10-Core GPU → 100% Average Gaming 30-70 fps → 100%
Average Gaming NVIDIA Quadro RTX 3000 (Laptop) → 250% Average Gaming 30-70 fps → 233%
Average Gaming Apple M2 Max 38-Core GPU → 315% Average Gaming 30-70 fps → 272%
Apple M2 Max 38-Core GPU low med. high ultra QHD 4K Borderlands 3 72 60.2 48.6 Total War: Three Kingdoms 330 147 96 71 47 Shadow of the Tomb Raider 182 131 122 109 78 The Witcher 3 83 76 GTA V 84 81 57 < 30 fps < 60 fps < 120 fps ≥ 120 fps 1 2 2 2 1 3 1 1 3 1 1
NVIDIA Quadro RTX 3000 (Laptop) low med. high ultra QHD 4K F1 2019 102 92 84 73 Total War: Three Kingdoms 226.5 107.7 69.2 46 Far Cry New Dawn 114 91 86 77 Assassin´s Creed Odyssey 96 77 62 39 Shadow of the Tomb Raider 135 100 88 79 X-Plane 11.11 114 102 86 Rocket League 219.1 Rise of the Tomb Raider 213.9 174.6 99.4 83 Dota 2 Reborn 142 130 132 121 88 The Witcher 3 289 193 109 56 BioShock Infinite 338 291 271 144 < 30 fps < 60 fps < 120 fps ≥ 120 fps 4 6 6 4 8 3 3 4 2 1
v1.28
log 10. 04:33:17
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#21 benchmarks composed for output. +0.006s ... 0.057s
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#23 return log +0s ... 0.058s
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Autor: Klaus Hinum, 8.09.2017 (Update: 1.07.2023)