Quadro T2000 Max-Q vs Radeon R9 285

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Aggregate performance score

We've compared Radeon R9 285 with Quadro T2000 Max-Q, including specs and performance data.

R9 285
2014
2 GB GDDR5, 190 Watt
14.95

T2000 Max-Q outperforms R9 285 by a minimal 3% based on our aggregate benchmark results.

Primary details

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

Place in the ranking333323
Place by popularitynot in top-100not in top-100
Cost-effectiveness evaluation7.59no data
Power efficiency6.2430.56
ArchitectureGCN 3.0 (2014−2019)Turing (2018−2022)
GPU code nameTongaTU117
Market segmentDesktopMobile workstation
Release date2 September 2014 (10 years ago)27 May 2019 (5 years ago)
Launch price (MSRP)$249 no data

Cost-effectiveness evaluation

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

no data

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 cores17921024
Core clock speed918 MHz1200 MHz
Boost clock speedno data1620 MHz
Number of transistors5,000 million4,700 million
Manufacturing process technology28 nm12 nm
Power consumption (TDP)190 Watt40 Watt
Texture fill rate102.8103.7
Floating-point processing power3.29 TFLOPS3.318 TFLOPS
ROPs3232
TMUs11264

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 datamedium sized
InterfacePCIe 3.0 x16PCIe 3.0 x16
Length221 mmno data
Width2-slotno data
Supplementary power connectors2x 6-pinNone

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 typeGDDR5GDDR5
Maximum RAM amount2 GB4 GB
Memory bus width256 Bit128 Bit
Memory clock speed1375 MHz2000 MHz
Memory bandwidth176.0 GB/s128.0 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 Connectors2x DVI, 1x HDMI 1.4a, 1x DisplayPort 1.2No outputs
HDMI+-

API and SDK compatibility

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

DirectX12 (12_0)12 (12_1)
Shader Model6.56.5
OpenGL4.64.6
OpenCL2.11.2
Vulkan1.2.1701.2.131
CUDA-7.5

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.

R9 285 14.95
T2000 Max-Q 15.41
+3.1%

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.

R9 285 6680
T2000 Max-Q 6887
+3.1%

3DMark Fire Strike Graphics

Fire Strike is a DirectX 11 benchmark for gaming PCs. It features two separate tests displaying a fight between a humanoid and a fiery creature made of lava. Using 1920x1080 resolution, Fire Strike shows off some realistic graphics and is quite taxing on hardware.

R9 285 8570
+3.7%
T2000 Max-Q 8262

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 HD55−60
−3.6%
57
+3.6%
1440p24−27
−8.3%
26
+8.3%
4K35−40
−8.6%
38
+8.6%

Cost per frame, $

1080p4.53no data
1440p10.38no data
4K7.11no data

FPS performance in popular games

Full HD
Low Preset

Atomic Heart 40−45
+0%
40−45
+0%
Counter-Strike 2 95−100
+0%
95−100
+0%
Cyberpunk 2077 35−40
+0%
35−40
+0%

Full HD
Medium Preset

Atomic Heart 40−45
+0%
40−45
+0%
Battlefield 5 70−75
+0%
70−75
+0%
Counter-Strike 2 95−100
+0%
95−100
+0%
Cyberpunk 2077 35−40
+0%
35−40
+0%
Far Cry 5 55−60
+0%
55−60
+0%
Fortnite 90−95
+0%
90−95
+0%
Forza Horizon 4 65−70
+0%
65−70
+0%
Forza Horizon 5 50−55
+0%
50−55
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 60−65
+0%
60−65
+0%
Valorant 130−140
+0%
130−140
+0%

Full HD
High Preset

Atomic Heart 40−45
+0%
40−45
+0%
Battlefield 5 70−75
+0%
70−75
+0%
Counter-Strike 2 95−100
+0%
95−100
+0%
Counter-Strike: Global Offensive 210−220
+0%
210−220
+0%
Cyberpunk 2077 35−40
+0%
35−40
+0%
Dota 2 124
+0%
124
+0%
Far Cry 5 55−60
+0%
55−60
+0%
Fortnite 90−95
+0%
90−95
+0%
Forza Horizon 4 65−70
+0%
65−70
+0%
Forza Horizon 5 50−55
+0%
50−55
+0%
Grand Theft Auto V 60−65
+0%
60−65
+0%
Metro Exodus 33
+0%
33
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 60−65
+0%
60−65
+0%
The Witcher 3: Wild Hunt 63
+0%
63
+0%
Valorant 130−140
+0%
130−140
+0%

Full HD
Ultra Preset

Battlefield 5 70−75
+0%
70−75
+0%
Cyberpunk 2077 35−40
+0%
35−40
+0%
Dota 2 113
+0%
113
+0%
Far Cry 5 55−60
+0%
55−60
+0%
Forza Horizon 4 65−70
+0%
65−70
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 60−65
+0%
60−65
+0%
The Witcher 3: Wild Hunt 33
+0%
33
+0%
Valorant 130−140
+0%
130−140
+0%

Full HD
Epic Preset

Fortnite 90−95
+0%
90−95
+0%

1440p
High Preset

Counter-Strike 2 30−35
+0%
30−35
+0%
Counter-Strike: Global Offensive 120−130
+0%
120−130
+0%
Grand Theft Auto V 27−30
+0%
27−30
+0%
Metro Exodus 21−24
+0%
21−24
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 160−170
+0%
160−170
+0%
Valorant 160−170
+0%
160−170
+0%

1440p
Ultra Preset

Battlefield 5 45−50
+0%
45−50
+0%
Cyberpunk 2077 14−16
+0%
14−16
+0%
Far Cry 5 35−40
+0%
35−40
+0%
Forza Horizon 4 40−45
+0%
40−45
+0%
The Witcher 3: Wild Hunt 27−30
+0%
27−30
+0%

1440p
Epic Preset

Fortnite 35−40
+0%
35−40
+0%

4K
High Preset

Atomic Heart 12−14
+0%
12−14
+0%
Counter-Strike 2 14−16
+0%
14−16
+0%
Grand Theft Auto V 30−35
+0%
30−35
+0%
Metro Exodus 12−14
+0%
12−14
+0%
The Witcher 3: Wild Hunt 24−27
+0%
24−27
+0%
Valorant 90−95
+0%
90−95
+0%

4K
Ultra Preset

Battlefield 5 24−27
+0%
24−27
+0%
Counter-Strike 2 14−16
+0%
14−16
+0%
Cyberpunk 2077 6−7
+0%
6−7
+0%
Dota 2 46
+0%
46
+0%
Far Cry 5 18−20
+0%
18−20
+0%
Forza Horizon 4 27−30
+0%
27−30
+0%
PLAYERUNKNOWN'S BATTLEGROUNDS 16−18
+0%
16−18
+0%

4K
Epic Preset

Fortnite 16−18
+0%
16−18
+0%

This is how R9 285 and T2000 Max-Q compete in popular games:

  • T2000 Max-Q is 4% faster in 1080p
  • T2000 Max-Q is 8% faster in 1440p
  • T2000 Max-Q is 9% faster in 4K

All in all, in popular games:

  • there's a draw in 63 tests (100%)

Pros & cons summary


Performance score 14.95 15.41
Recency 2 September 2014 27 May 2019
Maximum RAM amount 2 GB 4 GB
Chip lithography 28 nm 12 nm
Power consumption (TDP) 190 Watt 40 Watt

T2000 Max-Q has a 3.1% higher aggregate performance score, an age advantage of 4 years, a 100% higher maximum VRAM amount, a 133.3% more advanced lithography process, and 375% lower power consumption.

Given the minimal performance differences, no clear winner can be declared between Radeon R9 285 and Quadro T2000 Max-Q.

Be aware that Radeon R9 285 is a desktop card while Quadro T2000 Max-Q is a mobile workstation one.

Vote for your favorite

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AMD Radeon R9 285
Radeon R9 285
NVIDIA Quadro T2000 Max-Q
Quadro T2000 Max-Q

Other comparisons

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Community ratings

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4.2 79 votes

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