Product Code: RTX-PRO-6000-BW-MXQ-WS

NVIDIA RTX PRO 6000 Blackwell Max-Q Workstation Edition 96GB GDDR7 Graphics Card

  • NVIDIA Blackwell GPU architecture
  • AI Performance 3511 TOPS
  • Single-Precision (FP32) Performance 110 TFLOPS
  • 24,064 CUDA cores
  • 96GB GDDR7 memory with ECC
  • 4.4” H x 10.5”L, FHFL Dual Slot
  • Max Power Consumption: 300W
  • 4 x Multi-instance GPU (MIG)
  • 4 x DisplayPort 2.1
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Description

NVIDIA RTX PRO™ 6000 Blackwell Max-Q Workstation Edition (96GB GDDR7)

Overview & Value Proposition

The NVIDIA RTX PRO 6000 Blackwell Max-Q Workstation Edition combines flagship compute performance with optimized energy efficiency. Engineered around a 300W thermal envelope, this edition delivers Blackwell-architecture performance, 96GB GDDR7 VRAM, and enterprise reliability for high-density multi-GPU workstations and power-sensitive environments.

 

Key Features & Business Benefits

  • Max-Q Thermal Envelope (300W): Capped at a 300W maximum board power, allowing enterprise IT teams to pack higher GPU density per chassis while reducing cooling and power infrastructure demands.

  • 96GB GDDR7 Memory with ECC: Provides ultra-high memory bandwidth with Error-Correcting Code reliability, enabling teams to train large language models, load massive CAD assemblies, and render complex scenes locally without memory bottlenecks.

  • 5th-Gen Tensor Cores with FP4 Support: Accelerates generative AI fine-tuning, agentic AI frameworks, and local model inference with higher compute efficiency over prior generations.

  • 4th-Gen RT Cores & Hardware Media Engines: Speeds up photorealistic rendering and real-time ray tracing alongside dual hardware video encoders and decoders for high-resolution media pipelines.

  • Multi-Instance GPU (MIG) Virtualization: Enables IT administrators to partition a single physical GPU into up to four isolated virtual instances, maximizing resource utilization across multi-tenant teams.

  • Enterprise Stability & ISV Certifications: Rigorously certified with major professional software applications (Autodesk, Ansys, Adobe, Siemens) using dedicated enterprise drivers for mission-critical uptime.

 

Primary Use Cases

  • Dense Multi-GPU Workstations: Scaling two to four GPUs within a single desktop system without exceeding thermal limits or circuit capacities.

  • On-Premise Generative AI Development: Fine-tuning large language models, building domain-specific AI, and executing real-time local inference without cloud dependencies.

  • Real-Time 3D Rendering & Virtual Production: High-fidelity visual effects, real-time digital twin walk-throughs, and multi-display setups via DisplayPort 2.1 outputs.

  • Engineering Simulation & CAE: High-throughput computational fluid dynamics (CFD), finite element analysis (FEA), and structural modeling with memory integrity.

 

Frequently Asked Questions (FAQ)

Q: How does the Max-Q edition differ from the standard 600W RTX PRO 6000 Workstation Edition?

A: The Max-Q edition is tuned for lower power consumption and higher system density. It operates at a 300W maximum power cap compared to the full 600W standard model while keeping the complete 96GB GDDR7 frame buffer, CUDA core layout, and full enterprise feature set.

Q: Does the reduced 300W power limit affect memory capacity or display capabilities?

A: No. The card retains the complete 96GB GDDR7 capacity, 512-bit bus, ECC memory protection, MIG virtualization support, and four DisplayPort 2.1 outputs. Operating frequencies scale dynamically to maintain lower heat and power levels while keeping the full VRAM pool active.

Q: Can this GPU be partitioned for multiple users or workloads?

A: Yes. Multi-Instance GPU (MIG) technology allows hardware partitioning into up to four fully isolated GPU instances, each with dedicated memory and compute allocations.

Q: What system power supply is recommended for this card?

A: A single-card workstation configuration can run on a high-efficiency 700W–800W power supply. Multi-GPU configurations require scaled power capacity depending on the total number of installed units.

Description