Quadro K3100M vs Quadro RTX 4000

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Aggregate performance score

We've compared Quadro RTX 4000 with Quadro K3100M, including specs and performance data.

RTX 4000
2018
8 GB GDDR6, 160 Watt
37.81
+573%

RTX 4000 outperforms K3100M by a whopping 573% based on our aggregate benchmark results.

Primary details

GPU architecture, market segment, value for money and other general parameters compared.

Place in the ranking111599
Place by popularitynot in top-100not in top-100
Cost-effectiveness evaluation37.220.27
Power efficiency17.045.40
ArchitectureTuring (2018−2022)Kepler (2012−2018)
GPU code nameTU104GK104
Market segmentWorkstationMobile workstation
Release date13 November 2018 (6 years ago)23 July 2013 (11 years ago)
Launch price (MSRP)$899 $1,999

Cost-effectiveness evaluation

The higher the performance-to-price ratio, the better. We use the manufacturer's recommended prices for comparison.

RTX 4000 has 13685% better value for money than K3100M.

Detailed specifications

General parameters such as number of shaders, GPU core base clock and boost clock speeds, manufacturing process, texturing and calculation speed. Note that power consumption of some graphics cards can well exceed their nominal TDP, especially when overclocked.

Pipelines / CUDA cores2304768
Core clock speed1005 MHz706 MHz
Boost clock speed1545 MHzno data
Number of transistors13,600 million3,540 million
Manufacturing process technology12 nm28 nm
Power consumption (TDP)160 Watt75 Watt
Texture fill rate222.545.18
Floating-point processing power7.119 TFLOPS1.084 TFLOPS
ROPs6432
TMUs14464
Tensor Cores288no data
Ray Tracing Cores36no data

Form factor & compatibility

Information on compatibility with other computer components. Useful when choosing a future computer configuration or upgrading an existing one. For desktop graphics cards it's interface and bus (motherboard compatibility), additional power connectors (power supply compatibility).

Laptop sizeno datalarge
InterfacePCIe 3.0 x16MXM-B (3.0)
Length241 mmno data
Width1-slotno data
Supplementary power connectors1x 8-pinno data

VRAM capacity and type

Parameters of VRAM installed: its type, size, bus, clock and resulting bandwidth. Integrated GPUs have no dedicated video RAM and use a shared part of system RAM.

Memory typeGDDR6GDDR5
Maximum RAM amount8 GB4 GB
Memory bus width256 Bit256 Bit
Memory clock speed1625 MHz800 MHz
Memory bandwidth416.0 GB/s102.4 GB/s
Shared memory--

Connectivity and outputs

Types and number of video connectors present on the reviewed GPUs. As a rule, data in this section is precise only for desktop reference ones (so-called Founders Edition for NVIDIA chips). OEM manufacturers may change the number and type of output ports, while for notebook cards availability of certain video outputs ports depends on the laptop model rather than on the card itself.

Display Connectors3x DisplayPort, 1x USB Type-CNo outputs
Display Portno data1.2

Supported technologies

Supported technological solutions. This information will prove useful if you need some particular technology for your purposes.

Optimus-+
3D Vision Prono data+
Mosaicno data+
nView Display Managementno data+
Optimusno data+

API and SDK compatibility

List of supported 3D and general-purpose computing APIs, including their specific versions.

DirectX12 Ultimate (12_1)12
Shader Model6.55.1
OpenGL4.64.5
OpenCL1.21.2
Vulkan1.2.131+
CUDA7.5+

Synthetic benchmark performance

Non-gaming benchmark results comparison. The combined score is measured on a 0-100 point scale.


Combined synthetic benchmark score

This is our combined benchmark score. We are regularly improving our combining algorithms, but if you find some perceived inconsistencies, feel free to speak up in comments section, we usually fix problems quickly.

RTX 4000 37.81
+573%
K3100M 5.62

Passmark

This is the most ubiquitous GPU benchmark. It gives the graphics card a thorough evaluation under various types of load, providing four separate benchmarks for Direct3D versions 9, 10, 11 and 12 (the last being done in 4K resolution if possible), and few more tests engaging DirectCompute capabilities.

RTX 4000 15229
+572%
K3100M 2265

GeekBench 5 OpenCL

Geekbench 5 is a widespread graphics card benchmark combined from 11 different test scenarios. All these scenarios rely on direct usage of GPU's processing power, no 3D rendering is involved. This variation uses OpenCL API by Khronos Group.

RTX 4000 85391
+1308%
K3100M 6066

GeekBench 5 Vulkan

Geekbench 5 is a widespread graphics card benchmark combined from 11 different test scenarios. All these scenarios rely on direct usage of GPU's processing power, no 3D rendering is involved. This variation uses Vulkan API by AMD & Khronos Group.

RTX 4000 78638
+2220%
K3100M 3389

GeekBench 5 CUDA

Geekbench 5 is a widespread graphics card benchmark combined from 11 different test scenarios. All these scenarios rely on direct usage of GPU's processing power, no 3D rendering is involved. This variation uses CUDA API by NVIDIA.

RTX 4000 94250
+2187%
K3100M 4121

Gaming performance

Let's see how good the compared graphics cards are for gaming. Particular gaming benchmark results are measured in FPS.

Average FPS across all PC games

Here are the average frames per second in a large set of popular games across different resolutions:

Full HD220−230
+567%
33
−567%
4K100−110
+525%
16
−525%

Cost per frame, $

1080p4.09
+1382%
60.58
−1382%
4K8.99
+1290%
124.94
−1290%
  • RTX 4000 has 1382% lower cost per frame in 1080p
  • RTX 4000 has 1290% lower cost per frame in 4K

FPS performance in popular games

Full HD
Low Preset

Counter-Strike 2 12−14
+0%
12−14
+0%
Cyberpunk 2077 12−14
+0%
12−14
+0%

Full HD
Medium Preset

Battlefield 5 18−20
+0%
18−20
+0%
Counter-Strike 2 12−14
+0%
12−14
+0%
Cyberpunk 2077 12−14
+0%
12−14
+0%
Forza Horizon 4 24−27
+0%
24−27
+0%
Forza Horizon 5 12−14
+0%
12−14
+0%
Metro Exodus 14−16
+0%
14−16
+0%
Red Dead Redemption 2 16−18
+0%
16−18
+0%
Valorant 18−20
+0%
18−20
+0%

Full HD
High Preset

Battlefield 5 18−20
+0%
18−20
+0%
Counter-Strike 2 12−14
+0%
12−14
+0%
Cyberpunk 2077 12−14
+0%
12−14
+0%
Dota 2 20−22
+0%
20−22
+0%
Far Cry 5 27−30
+0%
27−30
+0%
Fortnite 35−40
+0%
35−40
+0%
Forza Horizon 4 24−27
+0%
24−27
+0%
Forza Horizon 5 12−14
+0%
12−14
+0%
Grand Theft Auto V 20−22
+0%
20−22
+0%
Metro Exodus 14−16
+0%
14−16
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 45−50
+0%
45−50
+0%
Red Dead Redemption 2 16−18
+0%
16−18
+0%
The Witcher 3: Wild Hunt 18
+0%
18
+0%
Valorant 18−20
+0%
18−20
+0%
World of Tanks 90−95
+0%
90−95
+0%

Full HD
Ultra Preset

Battlefield 5 18−20
+0%
18−20
+0%
Counter-Strike 2 12−14
+0%
12−14
+0%
Cyberpunk 2077 12−14
+0%
12−14
+0%
Dota 2 20−22
+0%
20−22
+0%
Far Cry 5 27−30
+0%
27−30
+0%
Forza Horizon 4 24−27
+0%
24−27
+0%
Forza Horizon 5 12−14
+0%
12−14
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 45−50
+0%
45−50
+0%
Valorant 18−20
+0%
18−20
+0%

1440p
High Preset

Dota 2 6−7
+0%
6−7
+0%
Grand Theft Auto V 6−7
+0%
6−7
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 35−40
+0%
35−40
+0%
Red Dead Redemption 2 5−6
+0%
5−6
+0%
World of Tanks 40−45
+0%
40−45
+0%

1440p
Ultra Preset

Battlefield 5 10−11
+0%
10−11
+0%
Cyberpunk 2077 5−6
+0%
5−6
+0%
Far Cry 5 12−14
+0%
12−14
+0%
Forza Horizon 4 10−11
+0%
10−11
+0%
Forza Horizon 5 8−9
+0%
8−9
+0%
Metro Exodus 7−8
+0%
7−8
+0%
The Witcher 3: Wild Hunt 9−10
+0%
9−10
+0%
Valorant 16−18
+0%
16−18
+0%

4K
High Preset

Counter-Strike 2 10−11
+0%
10−11
+0%
Dota 2 16−18
+0%
16−18
+0%
Grand Theft Auto V 16−18
+0%
16−18
+0%
Metro Exodus 2−3
+0%
2−3
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 16−18
+0%
16−18
+0%
Red Dead Redemption 2 4−5
+0%
4−5
+0%
The Witcher 3: Wild Hunt 16−18
+0%
16−18
+0%

4K
Ultra Preset

Battlefield 5 5−6
+0%
5−6
+0%
Counter-Strike 2 10−11
+0%
10−11
+0%
Cyberpunk 2077 2−3
+0%
2−3
+0%
Dota 2 16−18
+0%
16−18
+0%
Far Cry 5 7−8
+0%
7−8
+0%
Fortnite 5−6
+0%
5−6
+0%
Forza Horizon 4 6−7
+0%
6−7
+0%
Forza Horizon 5 3−4
+0%
3−4
+0%
Valorant 5−6
+0%
5−6
+0%

This is how RTX 4000 and K3100M compete in popular games:

  • RTX 4000 is 567% faster in 1080p
  • RTX 4000 is 525% faster in 4K

All in all, in popular games:

  • there's a draw in 63 tests (100%)

Pros & cons summary


Performance score 37.81 5.62
Recency 13 November 2018 23 July 2013
Maximum RAM amount 8 GB 4 GB
Chip lithography 12 nm 28 nm
Power consumption (TDP) 160 Watt 75 Watt

RTX 4000 has a 572.8% higher aggregate performance score, an age advantage of 5 years, a 100% higher maximum VRAM amount, and a 133.3% more advanced lithography process.

K3100M, on the other hand, has 113.3% lower power consumption.

The Quadro RTX 4000 is our recommended choice as it beats the Quadro K3100M in performance tests.

Be aware that Quadro RTX 4000 is a workstation card while Quadro K3100M is a mobile workstation one.


Should you still have questions concerning choice between the reviewed GPUs, ask them in Comments section, and we shall answer.

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NVIDIA Quadro RTX 4000
Quadro RTX 4000
NVIDIA Quadro K3100M
Quadro K3100M

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Community ratings

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Questions & comments

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