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NVIDIA RTX 4000 Ada Generation Laptop GPU vs NVIDIA Quadro T1000 Max-Q

NVIDIA RTX 4000 Ada Generation Laptop GPU

► remove from comparison NVIDIA NVIDIA RTX 4000 Ada Generation Laptop GPU

The Nvidia RTX 4000 Ada Generation, not to be confused with the A4000, P4000 or RTX 4000 Turing Generation, is a very powerful professional graphics card for use in laptops that sports 7,424 CUDA cores and 12 GB of ECC GDDR6 VRAM. Brought into existence in 2023, this graphics adapter leverages TSMC's 5 nm process and Nvidia's Ada Lovelace architecture to achieve great performance combined with moderate power consumption. The Nvidia-recommended TGP range for the card is very wide at 60 W to 175 W leading to bizarre performance differences between different systems powered by what is supposed to be the same product.

Hardware-wise, the RTX 4000 is a GeForce RTX 4080 Laptop in disguise. Consequently, both make use of the AD103 chip and have little difficulty running triple-A games at QHD 1440p.

Quadro series graphics cards ship with much different BIOS and drivers than GeForce cards and are targeted at professional users rather than gamers. Commercial product design, large-scale calculations, simulation, data mining, 24 x 7 operation - if any of this sounds familiar, then a Quadro card will make you happy.

Architecture and Features

Ada Lovelace brings a range of improvements over older graphics cards utilizing the outgoing Ampere architecture. It's not just a better manufacturing process and a higher number of CUDA cores that we have here (up to 16,384 versus 10,752); under-the-hood refinements are plentiful, including an immensely larger L2 cache and an optimized ray tracing routine (a different way to determine what is transparent and what isn't is used) and other changes. Naturally, these graphics cards can both encode and decode some of the most widely used video codecs, AVC, HEVC and AV1 included; they also support a host of Nvidia technologies, including Optimus and DLSS 3, and they can certainly be used for various AI tasks.

The RTX 4000 features 58 RT cores of the 3rd generation, 232 Tensor cores of the 4th generation and 7,424 CUDA cores, making it a lot faster than the RTX 3500 Ada Generation. Elsewhere, the graphics card comes with 12 GB of 192-bit wide ECC GDDR6 memory for a very healthy throughput of ~432 GB/s. Error correction can be turned off if desired. The fact that error correction is present here proves that the RTX 4000 is indeed targeted at professional users.

Just like Ampere-based cards, the RTX 4000 makes use of the PCI-Express 4 protocol. 8K SUHD monitors are supported, however DP 1.4a video outputs can potentially prove to be a bottleneck down the line.

Performance

With its power target set to ~130 W, the Ada Generation graphics card delivers a Blender Classroom v3.3 CUDA score of 22 seconds which is a very good result. All 2024 games are playable at 1440p with the highest settings possible on this GPU.

Nvidia's marketing materials mention "up to 33.5 TFLOPS" of performance which is pretty impressive. The RTX 5000 Ada Generation is good for a little over 42 TFLOPS, for reference.

Your mileage may vary depending on how competent the cooling solution of your laptop is and how high the TGP power target of the RTX 4000 is. One other thing worth mentioning is that enabling error correction appears to reduce the amount of video memory that is available to applications and games by up to a gigabyte.

Power consumption

Nvidia no longer divides its laptop graphics cards into Max-Q and non-max-Q models. Instead, laptop makers are free to set the TGP according to their needs, and the range can sometimes be shockingly wide. This is the case with the RTX 4000, as the lowest value recommended for it sits at just 60 W while the highest is more than two times higher at 175 W (this most likely includes Dynamic Boost). The slowest system built around an RTX 4000 Ada can easily be 60% slower than the fastest one. This is the kind of delta that we've already seen on consumer-grade laptops featuring the latest GeForce RTX cards.

Last but not the least, the improved 5 nm process (TSMC 4N) the RTX 4000 Ada is built with makes for very decent energy efficiency, as of mid 2023.

NVIDIA Quadro T1000 Max-Q

► remove from comparison NVIDIA Quadro T1000 Max-Q

The Nvidia Quadro T1000 with Max-Q Design is a professional mobile graphics card that is based on the Turing architecture (TU117 chip). Compared to the consumer GTX 1650, the Quadro T1000 features less CUDA cores / shaders (768 versus 896). The chip is manufactured in 12nm FinFET at TSMC. Compared to the normal Quadro T1000, the Max-Q variants are clocked lower and work in a more efficient state. Currently, we know of two variants with different clock speeds and power consumptions (35 and 40 W).

ModelShaderTGP (W)Base (MHz)Boost (MHz)
Quadro T1000 Mobile7685013951455
Quadro T1000 Max-Q7684012301455
Quadro T1000 Max-Q768357951455
Quadro T2000 Mobile10246015751785
GeForce GTX 1650 Mobile8965013951560

The Quadro T1000 is a mobile graphics card that is based on the Turing architecture (TU116 chip). Compared to the faster RTX 2000 GPUs (e.g. RTX 2060), the T1000 integrates no Raytracing or Tensor cores. Due to the same boost clock as the mobile T1000, the Max-Q variants can perform similar with sufficient cooling.

The Turing generation did not only introduce raytracing for the RTX cards, but also optimized the architecture of the cores and caches. According to Nvidia the CUDA cores offer now a concurrent execution of floating point and integer operations for increased performance in compute-heavy workloads of modern games. Furthermore, the caches were reworked (new unified memory architecture with twice the cache compared to Pascal). This leads to up to 50% more instructions per clock and a 40% more power efficient usage compared to Pascal.

Thanks to the low power consumption, the Max-Q T2000 GPU can be used in thin and light laptops. The used TU116 chip is manufactured in 12nm FFN at TSMC.

NVIDIA RTX 4000 Ada Generation Laptop GPUNVIDIA Quadro T1000 Max-Q
Quadro Turing Series
NVIDIA RTX 5000 Ada Generation Laptop GPU compare 9728 @ 0.93 - 1.68 GHz256 Bit @ 20000 MHz
NVIDIA RTX 4000 Ada Generation Laptop GPU 7424 192 Bit @ 16000 MHz
NVIDIA RTX 3500 Ada Generation Laptop GPU compare 5120 192 Bit @ 16000 MHz
NVIDIA RTX 3000 Ada Generation Laptop GPU compare 4608 128 Bit @ 16000 MHz
NVIDIA RTX 2000 Ada Generation Laptop GPU compare 3072 128 Bit @ 16000 MHz
Nvidia RTX 1000 Ada Generation Laptop GPU compare 2560 96 Bit @ 16000 MHz
Nvidia RTX 500 Ada Generation Laptop GPU compare 2048 64 Bit @ 12000 MHz
Quadro RTX 6000 (Laptop) compare 4608 @ 1.28 - 1.46 GHz384 Bit @ 14000 MHz
Quadro RTX 5000 (Laptop) compare 3072 @ 1.04 - 1.55 GHz256 Bit @ 14000 MHz
Quadro RTX 5000 Max-Q compare 3072 @ 0.6 - 1.35 GHz256 Bit @ 14000 MHz
Quadro RTX 4000 (Laptop) compare 2560 @ 1.11 - 1.56 GHz256 Bit @ 14000 MHz
Quadro RTX 4000 Max-Q compare 2560 @ 0.78 - 1.38 GHz256 Bit @ 14000 MHz
Quadro RTX 3000 (Laptop) compare 1920 @ 0.95 - 1.38 GHz192 Bit @ 14000 MHz
Quadro RTX 3000 Max-Q compare 1920 @ 0.6 - 1.22 GHz192 Bit @ 14000 MHz
Quadro T2000 (Laptop) compare 1024 @ 1.58 - 1.79 GHz128 Bit @ 8000 MHz
Quadro T2000 Max-Q compare 1024 @ 0.93 - 1.5 GHz128 Bit @ 8000 MHz
Quadro T1000 (Laptop) compare 768 @ 1.4 - 1.46 GHz128 Bit @ 8000 MHz
T1000 compare 896 @ 1.07 - 1.4 GHz128 Bit @ 10000 MHz
T1200 Laptop GPU compare 1024 @ 0.86 - 1.43 GHz128 Bit @ 10000 MHz
Quadro T1000 Max-Q 768 @ 0.8 - 1.46 GHz128 Bit @ 8000 MHz
T600 Laptop GPU compare 896 @ 1.4 GHz128 Bit @ 10000 MHz
T550 Laptop GPU compare 1024 @ 1.07 - 1.67 GHz64 Bit @ 12000 MHz
T500 Laptop GPU compare 896 @ 1.37 - 1.7 GHz64 Bit @ 10000 MHz
T600 compare 640 @ 0.74 - 1.34 GHz128 Bit @ 10000 MHz
ArchitectureAda LovelaceTuring
Pipelines7424 - unified768 - unified
Raytracing Cores58
Tensor / AI Cores232
Theoretical Performance33.6 TFLOPS FP32
Memory Speed16000 effective = 2000 MHz8000 MHz
Memory Bus Width192 Bit128 Bit
Memory TypeGDDR6GDDR5
Max. Amount of Memory12 GB4 GB
Shared Memorynono
Memory Bandwidth432 GB/s
APIDirectX 12 Ultimate, Shader 6.7, OpenGL 4.6, OpenCL 3.0, Vulkan 1.3DirectX 12_1, OpenGL 4.6
Power Consumption150 Watt (60 - 150 Watt TGP)35 - 40 Watt
technology5 nm12 nm
PCIe4.0 x16
Displays4 Displays (max.), HDMI 2.1, DisplayPort 1.4a
Notebook Sizelargemedium sized
Date of Announcement21.03.2023 27.05.2019
Link to Manufacturer Pageimages.nvidia.com
PredecessorRTX A3000 Laptop GPU
CodenameN19P-Q1
Core Speed795 / 1230 - 1455 (Boost) MHz

Benchmarks

3DMark - 3DMark Time Spy Score
16013 Points (43%)
3DMark - 3DMark Time Spy Graphics
16308 Points (33%)
3DMark - 3DMark Cloud Gate Score
61459 Points (58%)
3DMark - 3DMark Cloud Gate Graphics
152418 Points (38%)
3DMark - 3DMark Fire Strike Standard Score
32984 Points (50%)
3DMark - 3DMark Fire Strike Standard Graphics
40179 Points (37%)
3DMark 11 - 3DM11 Performance Score
39943 Points (48%)
3DMark 11 - 3DM11 Performance GPU
54921 Points (42%)
Blender - Blender 3.3 Classroom CUDA *
22 Seconds (3%)
Blender - Blender 3.3 Classroom OPTIX *
15 Seconds (6%)
SPECviewperf 12
specvp12 sw-03 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 sw-03
225.7 fps (56%)
specvp12 snx-02 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 snx-02
308.5 fps (46%)
specvp12 showcase-01 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 showcase-01
156.7 fps (27%)
specvp12 maya-04 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 maya-04
180.9 fps (49%)
specvp12 creo-01 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 creo-01
205.8 fps (82%)
specvp12 catia-04 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 12 - specvp12 catia-04
269.8 fps (45%)
SPECviewperf 13 specvp13 sw-04 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 sw-04
230.4 fps (62%)
specvp13 snx-03 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 snx-03
555 fps (62%)
specvp13 showcase-02 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 showcase-02
155.8 fps (27%)
specvp13 medical-02 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 medical-02
272 fps (46%)
specvp13 maya-05 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 maya-05
447.5 fps (51%)
specvp13 energy-02 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 energy-02
106.8 fps (34%)
specvp13 creo-02 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 creo-02
424.7 fps (62%)
specvp13 catia-05 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 catia-05
417.6 fps (46%)
specvp13 3dsmax-06 + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 13 - specvp13 3dsmax-06
287.6 fps (45%)
SPECviewperf 2020 specvp2020 solidworks-07 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 solidworks-07 4k
150.4 fps (44%)
specvp2020 solidworks-07 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 solidworks-07 1080p
340.8 fps (72%)
specvp2020 snx-04 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 snx-04 1080p
550 fps (67%)
specvp2020 medical-03 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 medical-03 1080p
152 fps (42%)
specvp2020 maya-06 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 maya-06 1080p
478.6 fps (51%)
specvp2020 energy-03 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 energy-03 1080p
38.6 fps (6%)
specvp2020 creo-03 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 creo-03 1080p
138.7 fps (48%)
specvp2020 catia-06 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 catia-06 1080p
131.4 fps (64%)
specvp2020 3dsmax-07 1080p + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 3dsmax-07 1080p
174.9 fps (46%)
specvp2020 medical-03 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 medical-03 4k
69.5 fps (45%)
specvp2020 maya-06 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 maya-06 4k
299.3 fps (43%)
specvp2020 energy-03 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 energy-03 4k
709 fps (100%)
specvp2020 creo-03 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 creo-03 4k
144.9 fps (65%)
specvp2020 catia-06 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 catia-06 4k
80.9 fps (53%)
specvp2020 3dsmax-07 4k + NVIDIA RTX 4000 Ada Generation Laptop GPU
SPECviewperf 2020 - specvp2020 3dsmax-07 4k
114.5 fps (39%)
Cinebench R15
Cinebench R15 OpenGL 64 Bit + NVIDIA RTX 4000 Ada Generation Laptop GPU
Cinebench R15 - Cinebench R15 OpenGL 64 Bit
327 fps (19%)
Cinebench R15 OpenGL Ref. Match 64 Bit + NVIDIA RTX 4000 Ada Generation Laptop GPU
Cinebench R15 - Cinebench R15 OpenGL Ref. Match 64 Bit
99.6 % (100%)
Basemark GPU 1.2 - Basemark GPU 1.2 Vulkan Official Medium Offscreen 1080
104.6 fps (3%)
Basemark GPU 1.2 - Basemark GPU 1.2 Vulkan Official High Offscreen 2160
3.6 fps (1%)
Geekbench 6.5 - Geekbench 6.5 GPU OpenCL
156713 Points (41%)
Geekbench 6.5 - Geekbench 6.5 GPU Vulkan
104760 Points (26%)
Power Consumption - Furmark Stress Test Power Consumption - external Monitor *
202 Watt (27%)
Power Consumption - Cyberpunk 2077 Power Consumption 150cd *
225 Watt (63%)
Power Consumption - Cyberpunk 2077 Power Consumption - external Monitor *
219 Watt (28%)
Power Consumption - Power Efficiency - Cyberpunk 2077 ultra
0.4 fps per Watt (2%)

Average Benchmarks NVIDIA RTX 4000 Ada Generation Laptop GPU → 0% n=0

- Range of benchmark values for this graphics card
red legend - Average benchmark values for this graphics card
* Smaller numbers mean a higher performance
1 This benchmark is not used for the average calculation

Game Benchmarks

The following benchmarks stem from our benchmarks of review laptops. The performance depends on the used graphics memory, clock rate, processor, system settings, drivers, and operating systems. So the results don't have to be representative for all laptops with this GPU. For detailed information on the benchmark results, click on the fps number.

low 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
129.3  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
115.1  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
108.4  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
98.3  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
68.5  fps
low 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
178.3  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
160.6  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
141.6  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
137  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
90.7  fps
F1 22

F1 22

2022
low 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
275  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
264  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
238  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
95.5  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
65.7  fps
low 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
275.4  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
232.6  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
171.4  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
137.1  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
92  fps
Strange Brigade

Strange Brigade

2018
low 1280x720
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
452  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
372  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
323  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
292  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
210  fps
Far Cry 5

Far Cry 5

2018
low 1280x720
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
168  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
148  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
138  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
128  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
125  fps
low 1280x720
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
166.8  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
144  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
113.1  fps
low 1280x720
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
207  fps
med. 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
185.3  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
150  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
119.5  fps
low 1280x720
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
215.4  fps
med. 1366x768
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
189.7  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
185.2  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
164.4  fps
GTA V

GTA V

2015
low 1024x768
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
185.8  fps
med. 1366x768
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
183.9  fps
high 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
179.4  fps
ultra 1920x1080
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
125.6  fps
QHD 2560x1440
100%
NVIDIA RTX 4000 Ada Generation Laptop GPU:
118.7  fps

Average Gaming NVIDIA RTX 4000 Ada Generation Laptop GPU → 100%

Average Gaming 30-70 fps → 100%

NVIDIA RTX 4000 Ada Generation Laptop GPUNVIDIA Quadro T1000 Max-Q
lowmed.highultraQHD4Klowmed.highultraQHD4K
Cyberpunk 2077 2.2 Phantom Liberty129.3115.1108.498.368.5
Baldur's Gate 3178.3160.6141.613790.7
F1 2227526423895.565.7
Tiny Tina's Wonderlands275.4232.6171.4137.192
Strange Brigade452372323292210
Far Cry 5168148138128125
X-Plane 11.11166.8144113.1
Final Fantasy XV Benchmark207185.3150119.5
Dota 2 Reborn215.4189.7185.2164.4
GTA V185.8183.9179.4125.6118.7
NVIDIA RTX 4000 Ada Generation Laptop GPUNVIDIA Quadro T1000 Max-Q
lowmed.highultraQHD4Klowmed.highultraQHD4K
< 30 fps
< 60 fps
< 120 fps
≥ 120 fps



10


1
9


2
8


2
6


6
2



< 30 fps
< 60 fps
< 120 fps
≥ 120 fps


















For more games that might be playable and a list of all games and graphics cards visit our Gaming List

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v1.34
log 03. 14:51:55

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#2 checking url part for id 9888 +0s ... 0s

#3 redirected to Ajax server, took 1759495915s time from redirect:0 +0s ... 0s

#4 did not recreate cache, as it is less than 5 days old! Created at Thu, 02 Oct 2025 12:30:49 +0200 +0s ... 0s

#5 composed specs +0.028s ... 0.028s

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#8 getting avg benchmarks for device 11607 +0.017s ... 0.045s

#9 got single benchmarks 11607 +0.006s ... 0.051s

#10 getting avg benchmarks for device 9888 +0s ... 0.051s

#11 got single benchmarks 9888 +0.003s ... 0.054s

#12 got avg benchmarks for devices +0s ... 0.054s

#13 min, max, avg, median took s +0.02s ... 0.074s

#14 before gaming benchmark output +0s ... 0.074s

#15 Got 46 rows for game benchmarks. +0.005s ... 0.078s

#16 composed SQL query for gamebenchmarks +0s ... 0.078s

#17 got data and put it in $dataArray +0.001s ... 0.079s

#18 benchmarks composed for output. +0.004s ... 0.082s

#19 calculated avg scores. +0s ... 0.082s

#20 return log +0.002s ... 0.085s

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> Expert Reviews and News on Laptops, Smartphones and Tech Innovations > Benchmarks / Tech > Graphics Card Comparison - Head 2 Head
Redaktion, 2017-09- 8 (Update: 2023-07- 1)