NVIDIA RTX PRO™ 6000 Blackwell
The most powerful professional-GPU family for workstation and server-class AI.
The NVIDIA RTX PRO™ 6000 Blackwell extends the NVIDIA professional GPU portfolio to the Blackwell generation, available in three editions, Workstation, Max-Q, and Server, for desktop, compact / mobile workstation, and data-centre deployments.
The Workstation Edition ships with 96 GB of GDDR7 memory, 5th-generation Tensor Cores delivering 4,000 TOPS of AI performance, 4th-generation ray-tracing cores at 380 TFLOPS, PCIe Gen 5, and four DisplayPort 2.1 outputs.
AMBER configures RTX PRO 6000 Blackwell systems for European enterprises and research institutes that need professional-GPU capability alongside their AI infrastructure, the same audience that deploys AMBER's NVIDIA DGX™ and AI Factory systems.
Workstation Edition specifications
| GPU Architecture | NVIDIA Blackwell |
|---|---|
| AI TOPS | 4,000 |
| Tensor Cores | 5th Generation |
| Ray Tracing Cores | 4th Generation |
| NVIDIA Encoder (NVENC) | 4× 9th Generation |
| NVIDIA Decoder (NVDEC) | 4× 6th Generation |
| Memory Configuration | 96 GB GDDR7 with error-correcting code (ECC) |
| Memory Bandwidth | 1,792 GB/sec |
| Max Power Consumption | 600 W |
NVIDIA RTX PRO™ 6000 Blackwell Max-Q Workstation Edition
Density-optimised desktop GPU. Same Blackwell performance as the Workstation Edition, half the power envelope, designed to scale 1–4 GPUs per workstation.
The Max-Q Workstation Edition brings the full Blackwell GPU class into a 300 W power envelope optimised for high-density desktop workstations. Same 96 GB of GDDR7 memory and 5th-generation Tensor Cores as the Workstation Edition; half the maximum power consumption.
A 4.4″ × 10.5″ dual-slot PCIe card, sized to fit 1–4 GPUs in a single workstation chassis, up to 384 GB combined memory across a four-GPU configuration. PCIe Gen 5 connectivity and four DisplayPort 2.1 outputs.
AMBER configures Max-Q systems for European AI and data-science teams running multi-GPU local development pipelines where rack-mount data-centre infrastructure isn't available, the same audience that deploys AMBER's NVIDIA DGX™ systems.
Max-Q Workstation Edition specifications
| GPU Architecture | NVIDIA Blackwell |
|---|---|
| AI TOPS (FP4, theoretical, with sparsity) | 3,511 |
| Tensor Cores | 5th Generation |
| Ray Tracing Cores | 4th Generation, 333 TFLOPS |
| FP32 Single-Precision | 110 TFLOPS |
| NVIDIA Encoder (NVENC) | 4× 9th Generation |
| NVIDIA Decoder (NVDEC) | 4× 6th Generation (4:2:2 H.264 / HEVC) |
| Memory Configuration | 96 GB GDDR7 with error-correcting code (ECC) |
| Memory Bandwidth | 1,792 GB/sec |
| Max Power Consumption | 300 W |
| Form Factor | 4.4″ H × 10.5″ L, dual-slot PCIe |
| Display Outputs | 4× DisplayPort 2.1 |
| PCIe Generation | Gen 5 |
| Multi-Instance GPU (MIG) | Up to 4 fully isolated instances per GPU |
| Multi-GPU scaling | 1–4 GPUs per workstation (up to 384 GB combined memory) |
NVIDIA RTX PRO™ 6000 Blackwell Server Edition
Universal data-centre GPU for enterprise AI inference, virtual workstations via vGPU, and accelerated rendering across multi-GPU rack servers.

The Server Edition is the data-centre form factor in the RTX PRO 6000 Blackwell line. Two thermal options, both with 96 GB of GDDR7 ECC memory: dual-slot air-cooled FHFL for standard 2U / 4U rack servers, or single-slot passive liquid-cooled FHXL for dense liquid-cooled deployments. Configurable to up to 600 W.
24,064 CUDA cores, 5th-generation Tensor Cores delivering 4 PFLOPS FP4 compute, and 4th-generation RT Cores. Multi-Instance GPU (MIG) splits the card into up to four fully isolated instances; NVIDIA vGPU support for virtual workstations delivered from the data centre is on the roadmap.
AMBER configures Server Edition deployments for European enterprises building inference at scale, vGPU-delivered virtual workstations, and multi-tenant AI workloads as part of the NVIDIA AI Factory compute stack.
Server Edition specifications
| GPU Architecture | NVIDIA Blackwell |
|---|---|
| CUDA Cores | 24,064 |
| Tensor Cores | 5th Generation |
| RT Cores | 4th Generation, 188 cores, 355 TFLOPS peak |
| FP4 Tensor Core | 4 PFLOPS |
| FP8 Tensor Core | 2 PFLOPS |
| FP16 / BF16 Tensor Core | 1 PFLOP |
| TF32 Tensor Core | 234 TFLOPS |
| FP32 Single-Precision | 120 TFLOPS |
| Memory Configuration | 96 GB GDDR7 with error-correcting code (ECC) |
| Memory Interface | 512-bit |
| Memory Bandwidth | 1,597 GB/sec |
| Max Power Consumption | Up to 600 W (configurable) |
| Form Factor (Air-cooled) | Dual-slot FHFL (Full-Height, Full-Length) |
| Form Factor (Liquid-cooled) | Single-slot FHXL passive |
| Multi-Instance GPU (MIG) | Up to 4 fully isolated instances per GPU |
| Rack-server scaling | 2 / 4 / 8 GPUs per server (industry-standard 2U / 4U rack chassis) |
RTX PRO 6000 Blackwell, side-by-side
The three editions share the same Blackwell GPU class and 96 GB GDDR7 ECC memory. Form factor, power envelope, and target deployment differ.
| Specification | Workstation Edition | Max-Q Workstation Edition | Server Edition |
|---|---|---|---|
| Primary use case | Desktop workstation: design, 3D, simulation, local AI | High-density workstation: 4-GPU AI & data-science rigs | Data centre: AI inference, vGPU virtual workstations, HPC |
| Form factor | Desktop PCIe, full-size dual-slot | Desktop PCIe, 4.4″ × 10.5″, dual-slot | Air: dual-slot FHFL · Liquid: single-slot FHXL passive |
| Max power (TGP) | 600 W | 300 W | Up to 600 W (configurable) |
| Memory | 96 GB GDDR7 ECC | 96 GB GDDR7 ECC | 96 GB GDDR7 ECC |
| Memory bandwidth | 1,792 GB/s | 1,792 GB/s | 1,597 GB/s |
| CUDA cores | — | — | 24,064 |
| AI TOPS (FP4) | 4,000 | 3,511 (theoretical, sparsity) | 4 PFLOPS |
| FP32 throughput | — | 110 TFLOPS | 120 TFLOPS |
| RT Cores | 4th Gen, 380 TFLOPS | 4th Gen, 333 TFLOPS | 4th Gen, 188 cores, 355 TFLOPS peak |
| Multi-Instance GPU (MIG) | — | Up to 4 instances | Up to 4 instances |
| Display outputs | 4× DisplayPort 2.1 | 4× DisplayPort 2.1 | 4× DisplayPort 2.1 |
| Cooling | Active (fan) | Active (fan) | Air-cooled or passive liquid-cooled |
| Multi-GPU scaling | — | 1–4 GPUs per workstation | 2 / 4 / 8 GPUs per rack server |
| PCIe | Gen 5 | Gen 5 | — |
Specifications above are sourced from NVIDIA's product pages and reference documents and remain subject to NVIDIA's updates. Cells shown as — indicate values that NVIDIA does not disclose on the relevant product page or are pending AMBER verification; AMBER configures and quotes each system based on the most current NVIDIA specifications and the customer's deployment context. Talk to AMBER about the right RTX PRO 6000 Blackwell configuration →
The Future of Visual Computing for Professionals
NVIDIA RTX™ is the leading professional visual computing platform, offering a range of solutions for users to create breathtaking architectural and industrial designs, advanced special effects, and complex scientific visualizations.
With millions of creative and technical users relying on NVIDIA RTX™ to enhance their workflow, the platform transforms the challenges of today into successful solutions for tomorrow.
NVIDIA RTX™ and Quadro Solutions from Desktop to Cloud
No matter your requirements, the NVIDIA RTX™ platform provides a range of solutions to fit your workflow, including professional laptops, desktop workstations, EGX™ platforms, virtual workspaces, cloud solutions, specialty solutions, and embedded solutions.
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EGX™ Platform for Professional Visualization
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Driving Innovation Across Industries

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The NVIDIA RTX™ platform empowers millions of creative and technical professionals with the latest technology, so they can work faster, smarter, and more effectively.
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Creating innovative products of the future demands novel approaches in every aspect of development. The NVIDIA RTX™ visual computing platform, which can be accessed through physical or virtual workstations using NVIDIA vGPU software, enables cutting-edge design and engineering teams to utilize photorealistic visualization, real-time simulation, AI, and additive manufacturing to stay ahead of the competition and quickly bring innovative products to market.

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