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

Model: RTX PRO 6000 Max-Q

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NVIDIA RTX PRO 6000 Max-Q: the multi-GPU density variant of the RTX PRO 6000. Same GB202 silicon with 24,064 CUDA cores, 96GB GDDR7 ECC at 1,792 GB/s, 752 Tensor Cores, 188 RT Cores. 300W TDP (half the Workstation Edition's 600W). Single-fan enclosed blower cooler exhausting heat out the rear bracket. Designed for up to 4 GPUs in a single workstation: 384GB combined VRAM, approximately 480 TFLOPS FP32 aggregate. 4x DisplayPort 2.1b. PCIe Gen 5 x16. MIG support for 4 isolated instances per card (16 total across 4 GPUs). Standard height dual-slot at 4.4 x 10.5 inches. The correct RTX PRO 6000 variant for multi-GPU AI workstations and multi-card GPU mining rigs.

Full Specifications

Model RTX PRO 6000 Max-Q
GPU Status Brand New (Low-Power Variant)
VRAM 96 GB GDDR7 ECC
Architecture Blackwell
TGP Max-Q (300W envelope)
Best for Dense AI workstations, thermally constrained chassis

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Product Details

NVIDIA RTX PRO 6000 Max-Q Workstation Edition 96GB: Multi-GPU Specifications, 4-Card Deployment Guide, and Value Proposition for AI Workstations and GPU Mining Rigs

The RTX PRO 6000 Max-Q is the card NVIDIA built for operators who need multiple high-end GPUs in a single system. The full Workstation Edition at 600W with double-flow-through cooling is a single-GPU product in practice, despite technically fitting in multi-GPU chassis. The Max-Q at 300W with enclosed blower cooling is the variant engineered from the ground up for 2-GPU and 4-GPU density. The thermal design difference is the entire purchase decision. The Workstation Edition's double-flow-through design pulls ambient air in through one side and exhausts it out the other side of the card, including into the adjacent PCIe slot. In a multi-GPU build, card two receives card one's exhaust as its intake air. Card three receives card two's already-heated exhaust. By card four, intake temperatures are catastrophic. The Max-Q's enclosed blower pulls ambient air in from the chassis interior, pushes it across the heatsink inside a sealed shroud, and exhausts 100 percent of it out the rear I/O bracket and out of the chassis entirely. Each card operates on ambient intake regardless of position. This is why multi-GPU workstation builders (Exxact, VRLA Tech, Puget Systems) exclusively validate the Max-Q for 4-GPU configurations. Exxact's published validation confirms: 4x RTX PRO 6000 Max-Q running sustained 300W per card (1,200W GPU total) with all four cards below 90 degrees Celsius in an air-cooled workstation chassis with optimized airflow. Without their cooling optimization, the same four cards thermal throttled and undervolted, leaving performance on the table. The takeaway: 4-GPU Max-Q deployment works but requires proper chassis selection and airflow engineering. Dropping four cards into any ATX case will not work. Core specifications match the Workstation and Server editions: 24,064 CUDA cores, 752 fifth-gen Tensor Cores with FP4 precision, 188 fourth-gen RT Cores, 96GB GDDR7 ECC memory at 1,792 GB/s on a 512-bit bus. Boost clock runs approximately 2.5 GHz versus 2.6 GHz on the 600W variants, per VideoCardz GTC 2025 reporting. That produces roughly 120 TFLOPS FP32 per card versus 125 TFLOPS, a 4 percent reduction that is trivial against the multi-GPU scaling advantage. Four cards in one system: 384GB combined GPU VRAM, approximately 480 TFLOPS FP32 aggregate, 16 MIG instances (4 per card). A single 4-GPU Max-Q workstation on AMD Threadripper PRO or Intel Xeon W runs 70B models at FP16 on one card, 120B at FP8, and frontier 400B+ models at INT4 across multiple cards. For AI teams running local inference, fine-tuning, RAG pipelines, and agent development, this single machine replaces monthly cloud GPU rental at a one-time hardware cost. For GPU mining operations, the Max-Q is the correct card for multi-card rigs. Four 300W cards produce approximately 3.8x the hashrate of a single 600W Workstation card (accounting for the slight clock reduction) while drawing 1,200W total versus 600W for one card. The per-watt hashrate efficiency is comparable, but the total hashrate per chassis is quadrupled with only one CPU, one motherboard, and one OS instance to manage. Mining operations running 20+ GPUs reduce their total chassis count by 75 percent switching from single-GPU workstation builds to 4-GPU Max-Q builds. Standard height dual-slot form factor at 4.4 x 10.5 inches. 4x DisplayPort 2.1b for local display interaction. PCIe Gen 5 x16.

NVIDIA RTX PRO 6000 Max-Q: 4 GPUs, 384GB, 300W per Card for Multi-GPU AI and Mining Builds

The Max-Q exists because you cannot build a 4-GPU workstation with the standard Workstation Edition. Four Workstation cards at 600W each means 2,400W of GPU load, which exceeds any desktop power supply. Worse, the Workstation's double-flow-through cooling dumps hot air sideways into adjacent card slots, causing thermal runaway in multi-GPU configs. The Max-Q solves both problems.300W TDP per card means four GPUs draw 1,200W total for GPU load, feasible on high-end workstation power supplies. The enclosed blower fan pulls air in, directs it across the heatsink inside the shroud, and exhausts it exclusively out the rear I/O bracket. No hot air recirculates into adjacent cards. Exxact validated a 4x Max-Q configuration running all four cards at sustained 300W below 90 degrees Celsius with their optimized chassis airflow solution.Same GB202 silicon as the other two variants: 24,064 CUDA cores, 96GB GDDR7 ECC, 752 Tensor Cores, 1,792 GB/s bandwidth. Boost clock runs approximately 2.5 GHz versus 2.6 GHz on the Workstation Edition, translating to roughly 120 TFLOPS FP32 versus 125 TFLOPS. The 4 percent performance difference per card is irrelevant when the Max-Q lets you run four cards where the Workstation Edition limits you to one.Four cards: 384GB combined GPU VRAM. That covers virtually every open-weight LLM released to date at various quantization levels. 16 MIG instances across the system. For GPU mining operations, four 300W cards produce four times the hashrate of a single card at better per-watt economics than a single 600W Workstation card running overclocked. Contact MillionMiner for pricing.

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NVIDIA RTX PRO 6000 Max-Q 96GB: 300W Blower GPU for Multi-GPU Workstations and Mining Rigs

The multi-GPU variant of the RTX PRO 6000 family. Same 24,064 CUDA cores and 96GB GDDR7 ECC as the Workstation Edition at half the power: 300W TDP with enclosed blower cooling. Up to 4 cards per workstation delivers 384GB combined VRAM for frontier-scale AI models on a desktop. Blower design exhausts heat out the rear bracket, preventing hot air recirculation between adjacent cards. The correct thermal architecture for dense multi-GPU builds including mining rigs. PCIe Gen 5 x16. 4x DisplayPort 2.1b. MIG support. Standard height dual-slot.

300W Blower: The Multi-GPU RTX PRO 6000

Enclosed blower exhausts heat out the rear. No hot air recirculation between cards. 4 GPUs per workstation at 1,200W total.

4 Cards = 384GB VRAM on One Desktop

Run frontier AI models locally. 480 TFLOPS FP32 aggregate. 16 MIG instances. Eliminates cloud GPU rental dependency.

Same GB202: 24,064 CUDA, 96GB per Card

Identical silicon to Workstation and Server. 2.5 GHz boost (vs 2.6 GHz at 600W). 4 percent per-card difference, 4x the scaling.

FAQ

Frequently Asked Questions

Because you cannot practically run multiple 600W Workstation Edition cards in one system. The Max-Q cuts TDP to 300W and uses enclosed blower cooling that exhausts heat out the rear bracket instead of sideways into adjacent cards. This makes 2-GPU and 4-GPU workstation builds thermally viable. The Max-Q is the only RTX PRO 6000 variant designed for multi-GPU desktop deployment.

Approximately 4 percent lower per-card. The Max-Q boosts to roughly 2.5 GHz versus 2.6 GHz on the Workstation Edition, producing approximately 120 TFLOPS FP32 versus 125 TFLOPS. Same CUDA core count (24,064), same memory (96GB GDDR7 ECC at 1,792 GB/s), same Tensor and RT core count. The per-card difference is trivial when a single 4-GPU Max-Q system produces 480 TFLOPS aggregate versus 125 TFLOPS from one Workstation card.

No. While the cards physically fit dual-slot PCIe positions, 4x 300W at sustained load requires validated chassis airflow. Exxact documented that without optimized cooling, 4x Max-Q cards thermal throttle and undervolt in stock configurations. Proper deployment needs a workstation chassis engineered for multi-GPU density (Threadripper PRO or Xeon W platforms with 4x PCIe Gen 5 x16 slots and optimized fan placement).

AMD Threadripper PRO 7000/9000WX series and Intel Xeon W platforms with 4x PCIe Gen 5 x16 slot capability. Exxact, VRLA Tech, and other workstation integrators offer validated builds. The 4-GPU configuration requires a platform with sufficient PCIe lanes to run all four cards at full x16 bandwidth simultaneously.

The best RTX PRO 6000 variant for multi-card mining rigs. Four 300W cards in one chassis: 4x the hashrate on one CPU, one motherboard, one OS instance. The enclosed blower design prevents thermal runaway between adjacent cards, which is exactly the problem mining rigs with multiple flow-through cards face. Mining operations running 20+ GPUs reduce chassis count by 75 percent using 4-GPU Max-Q builds versus single-GPU configurations. Same caveat as other variants: GPU mining profitability is currently marginal on most coins.

384GB combined VRAM covers virtually every open-weight model. Single card (96GB): 70B at FP16, 120B at FP8. Two cards (192GB): frontier 140B+ models at FP16. Four cards (384GB): 400B+ models at INT4/FP4 quantization, or distributed inference and fine-tuning across multiple GPUs for faster throughput on smaller models.

Yes. 4x DisplayPort 2.1b supporting up to 8K at 240Hz. Unlike the Server Edition (headless), the Max-Q includes full display capability for local visual interaction with workloads. This makes it suitable for creative professionals, visualization engineers, and anyone needing to see their work locally while running compute on the same GPUs.

4x RTX 5090 (32GB each, ~575W, ~$5,000 each): 128GB combined, consumer-grade, no ECC, no MIG, no ISV certification, approximately $20,000 total. 4x RTX PRO 6000 Max-Q (96GB each, 300W, pricing on inquiry): 384GB combined, professional-grade, ECC, MIG, ISV certified. The Max-Q delivers 3x the VRAM, professional reliability, and concurrent workload isolation at similar or lower total power draw. For AI workloads requiring more than 32GB per GPU, the 5090 is not an option

Yes. The dual-slot blower design works in both tower workstations and rack-mount server chassis with standard PCIe slots. For dedicated rack deployment without display needs, the Server Edition (passive cooling, up to 8 GPUs) may be more appropriate. The Max-Q's advantage in a server context is its self-contained active cooling that does not depend on chassis airflow design.

Not recommended. Different thermal designs, different power profiles, and different firmware stacks. Mixing flow-through and blower cards in adjacent slots creates unbalanced thermal behavior. Build with one variant throughout your multi-GPU configuration.