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NVIDIA
Modello: RTX 4000 SFF Ada Generation
The smallest way to RTX 4000-class power: NVIDIA's RTX 4000 SFF Ada packs 6,144 Ada Lovelace CUDA cores and 20GB of GDDR6 ECC into a low-profile, half-height, dual-slot card for the most space-constrained professional workstations. Same compute as the full-size RTX 4000 Ada, in the compact SFF form. A certified professional GPU, not an AI training accelerator. Shipped worldwide DDP by MillionMiner.
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The RTX 4000 SFF Ada is a current-generation professional-visualization GPU, and its distinct place in this lineup is the small form factor: it delivers the full RTX 4000 Ada compute in the most compact physical package NVIDIA's professional line offers. Placing it honestly means being clear it is a professional graphics and light-compute card, not an AI training accelerator. The small-form-factor case. SFF means small form factor, and this card is a low-profile, half-height, dual-slot design with a fansink cooler, built for the most space-constrained professional systems: compact workstations, slim and low-profile chassis, and dense or specialized builds where even a standard full-height card will not fit. For those machines, the RTX 4000 SFF Ada is how real professional GPU capability gets in at all, the form factor is not a minor variation but the whole reason the card exists. The fansink cooling is matched to the compact enclosures it lives in. Uncompromised compute. The notable thing about the SFF is that the small size does not cost compute. It carries the full RTX 4000 Ada silicon: 6,144 Ada Lovelace CUDA cores, 19.2 TFLOPS of FP32 performance, 306.8 TFLOPS of Tensor performance, 48 third-generation RT cores for real-time ray tracing, 35.8 billion transistors, and 20GB of GDDR6 with ECC running at 320 GB/s over a PCIe 4.0 x16 interface. The 20GB ECC memory is the same professional-grade, error-correcting capacity as the full-size card, sized to hold substantial professional scenes, assemblies, and datasets. Certified drivers deliver the validated stability and vendor support the major CAD, DCC, and engineering applications require and consumer GeForce cards are not validated to provide. What it is, and is not, for. It is for professional visualization and design in the most compact systems: CAD and engineering, 3D modeling and rendering, content creation, design visualization, and the AI-accelerated compute built into those applications. It is not for training large AI models, which needs the HBM, fabric, and tensor throughput of the Hopper and Blackwell systems in this catalog. Its Tensor cores serve creative-application AI features and light inference, not large-model training. Within its tier and its form factor it is the right tool; mistaken for an AI accelerator, it is not. Where it fits, and how to buy it. The RTX 4000 SFF Ada is the small-form-factor, current-generation professional option in the GPU lineup. It carries the same compute as the full-size RTX 4000 Ada but in the most compact form, sits above the entry RTX 2000 Ada, beside the older Quadro RTX 5000 and 8000 it succeeds in generation, and apart from the training and visual-cloud GPUs. As a current product, units are new, and MillionMiner confirms the configuration and warranty in the quote. Every unit is tested before shipment and shipped worldwide DDP with duties handled. If your need is professional graphics in the smallest possible card, this is it; if it is AI training, MillionMiner will steer you to hardware that fits.
The RTX 4000 SFF Ada answers a precise need: the compute of a capable professional card in the smallest physical footprint NVIDIA's professional line offers. SFF stands for small form factor, and that is the entire proposition. The form factor. A low-profile, half-height, dual-slot card with a fansink cooler, sized for compact, low-profile, and space-constrained professional workstations, the small chassis and slim builds a full-height card cannot enter. For those systems, this is how you get real professional GPU power into a machine that physically rejects a standard card. The compute, which is not compromised. Despite the size, it carries the full RTX 4000 Ada silicon: 6,144 Ada Lovelace CUDA cores, 19.2 TFLOPS of FP32, 306.8 TFLOPS of Tensor performance, 48 third-generation RT cores, and 20GB of GDDR6 with ECC at 320 GB/s. ECC, error-correcting memory, gives professional and technical work the data integrity it requires. Certified drivers give the major professional applications the validated stability consumer cards lack. It is built for CAD, design, rendering, content creation, and the light AI-accelerated compute inside those tools, not for training large models, which is the Hopper and Blackwell systems' job. MillionMiner matches the card to your work and ships worldwide DDP.
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The RTX 4000 SFF Ada is the most compact way to get serious professional GPU power. It carries the same 6,144 Ada Lovelace CUDA cores and 20GB of GDDR6 ECC as the full-size RTX 4000 Ada, but in a low-profile, half-height, dual-slot card built for the tightest professional workstations. The numbers are real: 19.2 TFLOPS of FP32, 306.8 TFLOPS of Tensor performance, 320 GB/s memory bandwidth, 48 third-generation RT cores. The small-form-factor design with a fansink cooler is the point, it fits the compact and low-profile systems a standard card cannot. Certified for professional applications, it is built for CAD, design, rendering, and content, not large-model training, which the catalog's Hopper and Blackwell silicon handles. Shipped worldwide DDP by MillionMiner.
The same 6,144 CUDA cores and 20GB ECC as the full-size RTX 4000 Ada, in a low-profile, half-height card. SFF power for the tightest workstations.
6,144 Ada Lovelace CUDA cores, 306.8 TFLOPS Tensor, 320 GB/s, 48 RT cores, and error-correcting memory. Current-gen, certified, uncompromised.
Professional graphics and light compute for CAD, rendering, and content. For model training, the catalog's Hopper and Blackwell hardware fits.
SFF is small form factor. This card is a low-profile, half-height, dual-slot design built for the most space-constrained professional systems, compact workstations, slim chassis, and dense builds where a standard full-height card will not fit. For those machines, the SFF is how real professional GPU capability gets in at all. The form factor is the card's entire reason to exist.
No, and that is the point. The RTX 4000 SFF Ada carries the same core silicon as the full-size RTX 4000 Ada: 6,144 Ada Lovelace CUDA cores, 19.2 TFLOPS of FP32, 306.8 TFLOPS of Tensor performance, 48 RT cores, and 20GB of GDDR6 ECC at 320 GB/s. You get full RTX 4000-class compute in a smaller package, not a cut-down version.
No. It is a professional-visualization and light-compute card for CAD, design, rendering, and content creation. Large-model training needs the HBM, fabric, and tensor throughput of the Hopper and Blackwell systems in this catalog; the SFF Ada is not built for that. Its Tensor cores serve AI-accelerated creative features and light inference, not training.
Same compute, different form. Both carry 6,144 CUDA cores and 20GB of ECC memory; the full-size RTX 4000 Ada is a single-slot full-height card, while this SFF is a low-profile, half-height card for even tighter spaces. Choose the SFF when your chassis cannot take a full-height card; choose the full-size when you have the room. MillionMiner matches the card to your workstation.
ECC, error-correcting memory, detects and corrects the bit errors professional and technical workloads cannot tolerate, in engineering, simulation, and precision design. The 20GB of GDDR6 with ECC is a professional feature consumer cards usually lack, and one reason this card suits production work.
6,144 Ada Lovelace CUDA cores, 19.2 TFLOPS FP32, 306.8 TFLOPS Tensor performance, 48 third-generation RT cores, 35.8 billion transistors, 20GB of GDDR6 ECC at 320 GB/s, PCIe 4.0 x16, in a low-profile small-form-factor design with a fansink cooler. The configuration and warranty are confirmed in the quote.
Professional visual work in compact systems: CAD and engineering, 3D modeling and rendering, content creation, design visualization, and the light AI-accelerated compute built into those applications. The combination of full RTX 4000 compute, 20GB ECC memory, certified drivers, and the smallest professional form factor is what defines it.
Yes. It is built on the current Ada Lovelace architecture, unlike the older Turing Quadro RTX 5000 and 8000 in this catalog. As a current product, units are new, confirmed in the quote.
Light AI-accelerated work, yes, the Tensor cores deliver 306.8 TFLOPS for creative-application AI features and light inference. It is not for training or serving large models at scale, which the catalog's Hopper and Blackwell hardware handles. For AI features inside professional tools and light inference, it is appropriate.
Submit your requirements through the quote form. A MillionMiner specialist confirms the card, quantity, and any compact-system considerations, with the warranty terms and delivery. Every unit is tested before shipment and shipped worldwide DDP with duties handled, and the specialist will tell you honestly if your workload would be better served by different hardware.