RTX PRO 6000 Blackwell Max-Q vs L40
Head-to-head specifications
| Metric | RTX PRO 6000 Blackwell Max-Q | L40 | Difference |
|---|---|---|---|
| 3DMark Time Spy | 27,793 | 31,682 | -12.3% |
| Avg FPS @ 1080p | 205 | 231 | -11.3% |
| Avg FPS @ 1440p | 130 | 147 | -11.6% |
| Avg FPS @ 4K | 74 | 84 | -11.9% |
| FP32 compute (TFLOPS) | 79.4 | 90.5 | -12.3% |
| VRAM | 96 GB GDDR7 | 48 GB GDDR6 | — |
| Memory bandwidth (GB/s) | 1,344 | 864 | +55.6% |
| TDP (W) | 150 | 300 | — |
| Stable Diffusion (it/s) | 31.7 | 36.2 | -12.4% |
| LLM inference (tokens/s) | 143 | 53 | +169.8% |
- L40 averages 147 fps at 1440p versus 130 fps — about 12% faster.
- RTX PRO 6000 Blackwell Max-Q draws less power (150W vs 300W).
Verdict: RTX PRO 6000 Blackwell Max-Q or L40?
RTX PRO 6000 Blackwell Max-Q advantages
- Video memory (+50%)
- Memory bandwidth (+36%)
- Local LLM inference (+63%)
- Power efficiency (+50%)
L40 advantages
- 1440p gaming (+12%)
- 4K gaming (+12%)
- Synthetic benchmark performance (+12%)
- AI image generation (+12%)
Which should you choose?
- Choose the RTX PRO 6000 Blackwell Max-Q if you play the latest titles at high textures or do GPU-accelerated work.
- Choose the L40 if you game at 1440p.
- Choose the RTX PRO 6000 Blackwell Max-Q if you work with high-resolution textures or memory-bound workloads.
RTX PRO 6000 Blackwell Max-Q vs L40: which should you choose?
RTX PRO 6000 Blackwell Max-Q — NVIDIA laptop graphics card (2026, Blackwell) with 96 GB of GDDR7, averaging 130 fps at 1440p.
L40 — NVIDIA desktop graphics card (2022, Ada Lovelace) with 48 GB of GDDR6, averaging 147 fps at 1440p.
RTX PRO 6000 Blackwell Max-Q vs L40: L40 is faster for gaming. L40 averages 147 fps at 1440p versus 130 fps — about 12% faster. RTX PRO 6000 Blackwell Max-Q draws less power (150W vs 300W).
1080p, 1440p and 4K
At 1440p — the most common enthusiast resolution — the L40 averages 147 fps against 130. At 4K (74 vs 84 fps) VRAM (96GB vs 48GB) and memory bandwidth matter more.
AI and creator workloads
Beyond gaming, the L40 is quicker for AI image generation (36.2 vs 31.7 it/s in Stable Diffusion) and local LLM inference (143 vs 53 tokens/s), which increasingly matters for creators and developers.
Power and value
Board power is 150 W versus 300 W, which affects PSU headroom, case cooling and noise.
The verdict
Both are credible choices in the graphics card comparison space; the specification table above lays out every metric so you can weigh the trade-offs that matter to you. Pick the one whose strengths line up with how you will actually use it.
Frequently asked questions
Is the RTX PRO 6000 Blackwell Max-Q better than the L40?
These two are closely matched — the right pick comes down to which specific strengths you value and the price you actually pay. L40 averages 147 fps at 1440p versus 130 fps — about 12% faster.
What is the main difference between the RTX PRO 6000 Blackwell Max-Q and the L40?
L40 averages 147 fps at 1440p versus 130 fps — about 12% faster. RTX PRO 6000 Blackwell Max-Q draws less power (150W vs 300W).
Which should I choose?
Choose the RTX PRO 6000 Blackwell Max-Q if you play the latest titles at high textures or do GPU-accelerated work. Choose the L40 if you game at 1440p.
Methodology
Graphics cards are compared on 3DMark Time Spy scores, average gaming frame rates at 1080p/1440p/4K, FP32 compute throughput, VRAM capacity and type, memory bandwidth, board power (TDP) and launch MSRP — plus AI workload throughput (Stable Diffusion iterations/s and local LLM tokens/s) where measured. Vintage and server GPUs without modern benchmark results are compared on specifications only, clearly labelled. Frame rates are averages across a game suite at high settings; specific titles vary.