GeForce GTX Titan vs Quadro RTX 3000 with Max-Q Design

NVIDIA

GeForce GTX Titan

2013Core: 837 MHzBoost: 876 MHz
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VS
NVIDIA

Quadro RTX 3000 with Max-Q Design

2019Core: 600 MHzBoost: 1215 MHz
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GeForce GTX Titan vs Quadro RTX 3000 with Max-Q Design Performance Spectrum

About G3D Mark

G3D Mark is a standard benchmark that measures graphics performance in real-world gaming scenarios. It simplifies comparing cards from different brands, where higher scores directly correlate with better fps and smoother gaming experiences.

GeForce GTX Titan vs Quadro RTX 3000 with Max-Q Design FPS Benchmarks

Predicted gaming performance across popular games. Tested paired with Ryzen 7 9800X3D to isolate GPU performance.

Search any supported game below to compare 1080p FPS for both components.

GeForce GTX Titan vs Quadro RTX 3000 with Max-Q Design: Pros, Cons & Final Verdict

See where each GPU makes more sense in practice: raw FPS, VRAM, features, power draw, pricing, and long-term headroom.

GeForce GTX Titan

2013

Why buy it

  • Delivers 100+% more G3D Mark for each dollar spent, at 8.2 vs 0 G3D/$ ($999 MSRP vs Unknown MSRP).

Trade-offs

  • Lower average FPS than Quadro RTX 3000 with Max-Q Design across 50 tracked games in our benchmark data.
  • No DLSS support; it relies on Upscaling support instead.
  • 2013 hardware with 6 GB of VRAM already sits in legacy territory for modern games.
  • 316.7% higher power demand at 250W vs 60W.

Quadro RTX 3000 with Max-Q Design

2019

Why buy it

  • 18.8% more average FPS across 50 tracked games in our benchmark data.
  • Access to DLSS 2 Super Resolution (2020).
  • Better long-term bet: Turing (2018−2022) on 12nm gives it a newer hardware base for upcoming games.
  • Draws 60W instead of 250W, a 190W reduction.

Trade-offs

  • Lower G3D Mark per dollar, at 0 vs 8.2 G3D/$ (Unknown MSRP vs $999 MSRP).

Quick Answers

Which GPU is faster for gaming right now?
Quadro RTX 3000 with Max-Q Design is the faster gaming card right now. In our data, it leads by 18.8% in average FPS across 50 tracked games in our benchmark data. PassMark G3D leans toward GeForce GTX Titan instead at 8,181 vs 8,119, so for this question the real-game FPS result matters more than the synthetic split.
Which GPU is the safer long-term pick for 2026 and beyond?
Quadro RTX 3000 with Max-Q Design is the safer long-term pick for 2026 and beyond. The case is simple: the newer upscaling stack, DLSS 2 Super Resolution (2020) instead of no meaningful modern upscaling stack, a 12nm process instead of 28nm, 36 vs 0 ray-tracing units, and a newer 2019 generation instead of 2013. That gives it the more rounded hardware package for newer games.
Which GPU is the better buy today?
GeForce GTX Titan makes the most sense today based on the pricing and value data we have for this matchup. If you are mainly targeting 1080p and some 1440p, GeForce GTX Titan is the easier value choice. If you care more about 1080p and some 1440p headroom, Quadro RTX 3000 with Max-Q Design has the stronger long-term case.

GeForce GTX Titan vs Quadro RTX 3000 with Max-Q Design Technical Specifications

Side-by-side specs, architecture details, clocks, memory, power, and platform differences.

NVIDIA

GeForce GTX Titan

The GeForce GTX Titan is manufactured by NVIDIA. It was released in February 19 2013. It features the Kepler architecture. The core clock ranges from 837 MHz to 876 MHz. It has 2688 shading units. The thermal design power (TDP) is 250W. Manufactured using 28 nm process technology. G3D Mark benchmark score: 8,181 points. Launch price was $999.

NVIDIA

Quadro RTX 3000 with Max-Q Design

The Quadro RTX 3000 with Max-Q Design is manufactured by NVIDIA. It was released in May 27 2019. It features the Turing architecture. The core clock ranges from 600 MHz to 1215 MHz. It has 2304 shading units. The thermal design power (TDP) is 60W. Manufactured using 12 nm process technology. It features 36 dedicated ray tracing cores for enhanced lighting effects. G3D Mark benchmark score: 8,119 points.

Graphics Performance

The GeForce GTX Titan scores 8,181 and the Quadro RTX 3000 with Max-Q Design reaches 8,119 in the G3D Mark benchmark — just a 0.8% difference, making them near-identical in rasterization performance. The GeForce GTX Titan is built on Kepler while the Quadro RTX 3000 with Max-Q Design uses Turing, both on 28 nm vs 12 nm. Shader units: 2,688 (GeForce GTX Titan) vs 2,304 (Quadro RTX 3000 with Max-Q Design). Raw compute: 4.709 TFLOPS (GeForce GTX Titan) vs 5.599 TFLOPS (Quadro RTX 3000 with Max-Q Design). Boost clocks: 876 MHz vs 1215 MHz.

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
G3D Mark Score
8,181
8,119
Architecture
Kepler
Turing
Process Node
28 nm
12 nm
Shading Units
2688+17%
2304
Compute (TFLOPS)
4.709 TFLOPS
5.599 TFLOPS+19%
Boost Clock
876 MHz
1215 MHz+39%
ROPs
48
64+33%
TMUs
224+56%
144
L1 Cache
0.22 MB
2.3 MB+945%
L2 Cache
1.5 MB
4 MB+167%

Advanced Features (DLSS/FSR)

The Quadro RTX 3000 with Max-Q Design supports the newer DLSS 2 Super Resolution, whereas the GeForce GTX Titan is capped at Upscaling support.

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
Upscaling Tech
Upscaling support
DLSS 2 Super Resolution
Frame Generation
Not Supported
Not Supported
Ray Reconstruction
No
No
Low Latency
NVIDIA Reflex
NVIDIA Reflex
💾

Video Memory (VRAM)

Both cards ship with 6 GB of video memory. Memory bus width is 384-bit on the GeForce GTX Titan and 256-bit on the Quadro RTX 3000 with Max-Q Design. L2 Cache: 1.5 MB (GeForce GTX Titan) vs 4 MB (Quadro RTX 3000 with Max-Q Design) — the Quadro RTX 3000 with Max-Q Design has significantly larger on-die cache to reduce VRAM reliance.

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
VRAM Capacity
6 GB
6 GB
Memory Type
GDDR5
GDDR6
Bus Width
384-bit+50%
256-bit
L2 Cache
1.5 MB
4 MB+167%
🖥️

Display & API Support

DirectX support: 12 (GeForce GTX Titan) vs 12 Ultimate (Quadro RTX 3000 with Max-Q Design). Vulkan: 1.0 vs 1.3. OpenGL: 4.6 vs 4.6. Maximum simultaneous displays: 4 vs 4.

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
DirectX
12
12 Ultimate
Vulkan
1.0
1.3+30%
OpenGL
4.6
4.6
Max Displays
4
4
🎬

Media & Encoding

Hardware encoder: NVENC 1st gen (GeForce GTX Titan) vs NVENC 7th Gen (Quadro RTX 3000 with Max-Q Design). Decoder: NVDEC 1st gen vs NVDEC 4th Gen. Supported codecs: H.264,MPEG-2,VC-1 (GeForce GTX Titan) vs H.265,H.264 (Quadro RTX 3000 with Max-Q Design).

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
Encoder
NVENC 1st gen
NVENC 7th Gen
Decoder
NVDEC 1st gen
NVDEC 4th Gen
Codecs
H.264,MPEG-2,VC-1
H.265,H.264
🔌

Power & Dimensions

The GeForce GTX Titan draws 250W versus the Quadro RTX 3000 with Max-Q Design's 60W — a 122.6% difference. The Quadro RTX 3000 with Max-Q Design is more power-efficient. Recommended PSU: 600W (GeForce GTX Titan) vs 500W (Quadro RTX 3000 with Max-Q Design). Power connectors: 6-pin + 8-pin vs PCIe-powered. Card length: 267mm vs 0mm, occupying 2 vs 0 slots. Typical load temperature: 80°C vs Unknown.

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
TDP
250W
60W-76%
Recommended PSU
600W
500W-17%
Power Connector
6-pin + 8-pin
PCIe-powered
Length
267mm
0mm
Height
111mm
0mm
Slots
2
0-100%
Temp (Load)
80°C
Unknown-100%
Perf/Watt
32.7
135.3+314%
💰

Value Analysis

The newer card here is Quadro RTX 3000 with Max-Q Design (2019 vs 2013).

FeatureGeForce GTX TitanQuadro RTX 3000 with Max-Q Design
MSRP
$999
Codename
GK110
TU106
Release
February 19 2013
May 27 2019
Ranking
#311
#313

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