Quadro RTX 4000 vs RTX 4000 Ada Generation
The RTX 4000 Ada Generation has more VRAM (20GB vs 8GB), making it better suited for large models and memory-intensive workloads. Memory bandwidth runs 16% ahead (416 GB/s versus 360 GB/s), which feeds straight through into quicker inference. The Quadro RTX 4000 is $957 USD cheaper than the RTX 4000 Ada Generation.
Maximum Capacity Reached. Remove a model to add another. (2/2)
Quadro RTX 4000 vs RTX 4000 Ada Generation: In-Depth Breakdown
VRAM: Quadro RTX 4000 vs RTX 4000 Ada Generation
The RTX 4000 Ada Generation carries 20GB of VRAM versus 8GB on the Quadro RTX 4000. VRAM capacity is the primary constraint for running AI models without quantization — a 70B-parameter model in FP16 requires roughly 140GB, and even smaller models benefit from extra headroom. The 12GB advantage here means the RTX 4000 Ada Generation can run larger models natively and handle bigger batch sizes in production.
Inference Speed: Memory Bandwidth
The rate data moves to the compute units — memory bandwidth — is what caps autoregressive inference speed (token generation in LLMs). Here the Quadro RTX 4000 reaches 416 GB/s against 360 GB/s for the RTX 4000 Ada Generation, a 16% advantage. Once a model is resident in VRAM, token throughput tracks this figure closely, so the Quadro RTX 4000 generates tokens proportionally faster on bandwidth-bound workloads.
AI Training & Compute
For model training, scientific simulation, and rendering, FP32 throughput is the key metric. The RTX 4000 Ada Generation delivers 26.7 TFLOPS against 7.1 TFLOPS for the Quadro RTX 4000 — a 276% compute advantage. Training runs and heavy matrix operations will complete proportionally faster on the RTX 4000 Ada Generation.
Price & Value
Pricing starts at $1,093 USD for the Quadro RTX 4000, a $957 USD saving over the RTX 4000 Ada Generation's $2,050 USD. Teams working within a tighter budget may find that saving worth more than the spec gap, particularly if the smaller card already covers their typical workload.
Which should you buy: Quadro RTX 4000 or RTX 4000 Ada Generation?
These cards suit different priorities. Choose the RTX 4000 Ada Generation if fitting larger models in VRAM is your constraint. Choose the Quadro RTX 4000 if your models already fit and you want faster inference throughput from its higher memory bandwidth.
Frequently Asked Questions
Can the Quadro RTX 4000 or RTX 4000 Ada Generation run large language models?
Which is faster for LLM inference, the Quadro RTX 4000 or the RTX 4000 Ada Generation?
Which is better for AI training?
Which should you buy: Quadro RTX 4000 or RTX 4000 Ada Generation?
Technical Specifications Comparison
Architecture & Cores
| Specification | Quadro RTX 4000 | RTX 4000 Ada Generation |
|---|---|---|
| Architecture | Turing | Ada Lovelace |
| CUDA Cores (CUDA Cores / CUDA Cores) | 2,304 | 6,144✓ |
Memory
| Specification | Quadro RTX 4000 | RTX 4000 Ada Generation |
|---|---|---|
| VRAM Capacity | 8 GB | 20 GB✓ |
| Memory Type | GDDR6 | GDDR6 |
| Memory Bus | 256-bit✓ | 160-bit |
| Bandwidth | 416 GB/s✓ | 360 GB/s |
Connectivity & Power
| Specification | Quadro RTX 4000 | RTX 4000 Ada Generation |
|---|---|---|
| Interface | PCIe 3.0 x16 | PCIe 4.0 x16 |
| TDP | 160 W | 130 W✓ |
| Released | Oct 2018 | — |
Workstation
| Specification | Quadro RTX 4000 | RTX 4000 Ada Generation |
|---|---|---|
| FP32 (TFLOPS) | 7.1 TFLOPS | 26.7 TFLOPS✓ |
| ECC | Yes | Yes |
| NVLink | No | No |
| Form factor | single-slot | single-slot |