Calculate the TPS of the Data Center GPU Max 1350 on local AI models

Intel 96 GB HBM2e 2,460 GB/s January 2023

Every model in our catalogue assessed against this card at the context length and minimum quality you choose. Speed is an estimate for a single request, calculated from this card's memory bandwidth and the size of each model once compressed.

Calculated for this card

609 of 679 models it can run

Largest model it holds

dots.llm1

142B · IQ4_XS · 11.7 tok/s

Fastest model

Gemma 3 QAT 1B

677 tok/s · 1B

What AI models can a Data Center GPU Max 1350 run?

Set the inputs, read the answer

More context means more memory for the conversation cache. Speed is for a fresh conversation and does not change with this setting.

Hides models that would only fit by being compressed below this point.

609 models match

Calculating
Quantisation Fit
677 tok/s

406–1,084 · low confidence

Gemma 3 1B 1B Mar 2025 1.8 GB 33k tokens Q8_0 Comfortable
677 tok/s

406–1,084 · low confidence

Gemma 3 QAT 1B 1B Apr 2025 1.8 GB 33k tokens Q8_0 Comfortable
677 tok/s

406–1,084 · low confidence

HGRN 1B (WT 103) 1B Nov 2023 1.8 GB 131k tokens ? Q8_0 Comfortable
677 tok/s

406–1,084 · low confidence

LLama 3..2 Typhoon 2 1B 1B Dec 2024 1.8 GB 131k tokens ? Q8_0 Comfortable
677 tok/s

406–1,084 · low confidence

OLMo-1B 1B Feb 2024 1.8 GB 131k tokens ? Q8_0 Comfortable
677 tok/s

406–1,084 · low confidence

Pythia-1b 1B Apr 2023 1.8 GB 131k tokens ? Q8_0 Comfortable
627 tok/s

376–1,003 · low confidence

OpenELM-1.1B 1.1B May 2024 1.9 GB 131k tokens ? Q8_0 Comfortable
616 tok/s

369–985 · low confidence

DeciCoder-1B 1.1B Aug 2023 1.9 GB 131k tokens ? Q8_0 Comfortable
616 tok/s

369–985 · low confidence

SantaCoder 1.1B Jan 2023 1.9 GB 131k tokens ? Q8_0 Comfortable
616 tok/s

369–985 · low confidence

TinyLlama-1.1B (1T token checkpoint) 1.1B Oct 2023 1.9 GB 131k tokens ? Q8_0 Comfortable
616 tok/s

369–985 · low confidence

TinyLlama-1.1B (3T token checkpoint) 1.1B Oct 2023 1.9 GB 131k tokens ? Q8_0 Comfortable
564 tok/s

339–903 · low confidence

EXAONE 4.0 (1.2B) 1.2B Jul 2025 2.0 GB 131k tokens ? Q8_0 Comfortable
564 tok/s

339–903 · low confidence

MinerU2.5 1.2B Sep 2025 2.0 GB 131k tokens ? Q8_0 Comfortable
564 tok/s

339–903 · low confidence

Pleias 1.0 1.2B 1.2B Dec 2024 2.0 GB 131k tokens ? Q8_0 Comfortable
564 tok/s

339–903 · low confidence

Pleias-RAG-1B 1.2B Apr 2025 2.0 GB 131k tokens ? Q8_0 Comfortable
551 tok/s

330–881 · low confidence

Llama 3.2 1B 1.2B Sep 2024 2.2 GB 131k tokens Q8_0 Comfortable
543 tok/s

326–869 · low confidence

MiniCPM-1.2B 1.2B Jun 2024 2.0 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

DeepSeek Coder 1.3B 1.3B Jan 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

DeepSeek-VL-1.3B 1.3B Mar 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

DigiRL 1.3B Jun 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

GLA Transformer 1.3B 1.3B Aug 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

Janus 1.3B 1.3B Oct 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

Kosmos-2.5 1.3B Aug 2024 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

Otter 1.3B May 2023 2.1 GB 131k tokens ? Q8_0 Comfortable
521 tok/s

313–834 · low confidence

Phi-1 1.3B Oct 2023 2.1 GB 131k tokens ? Q8_0 Comfortable

Speeds are estimates for a single request — one conversation at a time — calculated from memory bandwidth, model size and quantisation. Real throughput varies with the inference runtime and its version. Figures published by hardware vendors measure many simultaneous requests and are much higher.

On record

Data Center GPU Max 1350 full specification

Everything on record for this board, ordered by how much it bears on running a language model rather than by how a spec sheet would list it. Memory comes first because it decides the outcome; the rest is context.

Memory

The two specifications that decide what this card can run and how quickly. Capacity sets which models fit; bandwidth sets how many tokens per second they produce once they do.

Memory size
96 GB
Memory bandwidth
2,460 GB/s
Memory type
HBM2e
Memory bus width
8,192 bit
Memory clock
1.2 GHz

The chip

Which processor is on the board and how it was manufactured. A smaller process size generally means more performance for the same power.

Graphics processor
Ponte Vecchio
Architecture
Generation 12.5
Generation
Data Center GPU(Ponte Vecchio)
Foundry
Intel
Process size
10 nm
Transistors
100 billion
Transistor density
78,100 K/mm²
Die size
1,280 mm²
Released
10 January 2023

Clock speeds

How fast the processor runs. Worth far less here than on a gaming benchmark: generating text is limited by memory bandwidth, so a higher clock barely moves the result.

Base clock
750 MHz
Boost clock
1.55 GHz

Processing units

What the chip contains. These drive graphics performance and matter mainly for processing a long prompt rather than for producing the answer.

Shading units
14,336
Texture mapping units
896
Ray tracing cores
112
L1 cache
64 KB
L2 cache
408 MB

Theoretical performance

Peak arithmetic rates published for the board. These are ceilings that no real workload reaches, and generating text reaches a small fraction of them because it is limited by memory rather than arithmetic.

Half precision (FP16)
44.4 TFLOPS
Single precision (FP32)
44.4 TFLOPS
Double precision (FP64)
44.4 TFLOPS
Texture rate
1,389 GTexel/s

The board

What it takes to physically install and power the card — the practical constraints that decide whether it fits the machine you already own.

Power draw (TDP)
450 W
Suggested power supply
850 W
Bus interface
PCIe 5.0 x16
Slot width
OAM Module

Software support

Which graphics and compute interfaces the card supports. CUDA compute capability is the one that bears on inference: below 7.0 there are no tensor cores, and modern inference software falls back to slower code paths.

DirectX
12.1
OpenGL
4.6
OpenCL
3.0
Shader model
6.6

Listings

Where to buy a Data Center GPU Max 1350

No vendor is currently listing this card. Listings come from vendors who publish them here directly — browse the vendor directory to see who is selling what.

What the numbers mean

Memory: the specification that decides everything

Memory

96 GB

Bandwidth

2,460 GB/s

Largest model

dots.llm1

With 96 GB of HBM2e, the Data Center GPU Max 1350 is in the class of hardware that holds the largest open-weight models without splitting them across machines. Roughly 86.4 GB of that is reachable by an inference runtime once the driver takes its share.

Its 2,460 GB/s across a 8,192-bit bus is at the top of what exists. Since each token means reading the whole model out of memory once, that translates almost directly into generation speed — this card is bandwidth-rich enough that model size stops being the limiting factor long before the bus does.

That comes from a 1.2 GHz memory clock across the bus width above. Widening the bus and raising the clock are the two levers a manufacturer has, which is why a card with unremarkable cores can still generate quickly.

The practical ceiling is dots.llm1 at 142B, held at IQ4_XS and running at roughly 11.7 tokens per second.

The chip and how it was built

The Data Center GPU Max 1350 is built on the Ponte Vecchio graphics processor, using Intel's Generation 12.5 architecture, as part of the Data Center GPU(Ponte Vecchio) generation.

The chip is manufactured by Intel, on a 10 nm process, with a die measuring 1,280 mm², holding 100 billion transistors. A smaller process generally means more performance for the same power, though for language models it matters far less than the memory subsystem.

It was released in January 2023, roughly 3 years ago. Inference software support tends to follow hardware by a year or two, so a card of this age generally has mature, well-optimised code paths available to it.

Compute throughput, and why it matters less than it looks

FP16

44.4 TFLOPS

FP64

44.4 TFLOPS

On paper the Data Center GPU Max 1350 reaches 44.4 TFLOPS at half precision and 44.4 TFLOPS at single precision. These are peak figures no real workload sustains, and generating text reaches only a small fraction of them — decoding is limited by memory rather than arithmetic, which is why a card can look enormously powerful here and still produce tokens at an ordinary rate.

Double-precision throughput is 44.4 TFLOPS. It has no bearing on running a language model — no inference runtime uses it — but it separates datacentre parts from consumer ones, since the latter deliberately restrict it.

Clocks run from 750 MHz at base to 1.55 GHz boosted. Worth far less here than on a gaming benchmark: raising the clock speeds up the arithmetic, and the arithmetic is not what generation is waiting on.

Cache and processing units

The Data Center GPU Max 1350 has 64 KB of L1 cache, backed by 408 MB of L2. Cache absorbs a share of the memory traffic that would otherwise hit the main bus, which is the one place on this page where a number other than bandwidth quietly affects generation speed — a large L2 lets more of the working set stay close to the cores.

There are 14,336 shading units, 896 texture mapping units. These drive graphics workloads and contribute to prompt processing, but they sit idle for much of the time a model spends generating a reply.

Power, size and installation

Power draw

450 W

The Data Center GPU Max 1350 is rated at 450 W, with a 850 W power supply suggested for the whole system. Running a language model keeps a card busy in bursts rather than continuously — it draws hard while generating and idles between requests — so sustained draw over a working day is usually well below the rated figure.

The board occupies a oam module. Worth checking against the case and power supply already in the machine, since the largest cards need considerably more of both than a typical desktop provides.

It connects over PCIe 5.0 x16. The interface governs how quickly a model is loaded from disk into the card, not how fast it runs once there, so a narrower link costs a few seconds at startup and nothing thereafter.

The extremes

The largest AI models a Data Center GPU Max 1350 can run

The biggest open-weight models that fit on this card, newest first. Each is shown at the best compression the card can hold.

  1. 01 Mistral Medium 3.5 128B · Q4_K_M · Apr 2026 12.2 tok/s
  2. 02 dots.llm1 142B · IQ4_XS · Jul 2025 11.7 tok/s
  3. 03 Pixtral Large 124B · Q4_K_M · Nov 2024 12.6 tok/s
  4. 04 xLAM-8x22B 141B · Q4_K_M · Sep 2024 11.1 tok/s
  5. 05 SaulLM-large 141B · Q4_K_M · Jul 2024 11.1 tok/s
  6. 06 Mixtral 8x22B 141B · Q4_K_M · Apr 2024 40.1 tok/s
  7. 07 WizardLM-2 8x22B 141B · Q4_K_M · Apr 2024 11.1 tok/s
  8. 08 Zephyr 141B-A39B 141B · Q4_K_M · Apr 2024 40.1 tok/s
  9. 09 APUS-xDAN-4.0(MoE) 136B · Q4_K_M · Apr 2024 11.5 tok/s
  10. 10 DBRX 132B · Q4_K_M · Mar 2024 43.4 tok/s

The fastest AI models on a Data Center GPU Max 1350

Where this card produces tokens quickest. Smaller models dominate here, because generating each token means reading the whole model out of memory once.

  1. 01 Gemma 3 QAT 1B 1B · Q8_0 · 1.8 GB 677 tok/s
  2. 02 Gemma 3 1B 1B · Q8_0 · 1.8 GB 677 tok/s
  3. 03 LLama 3..2 Typhoon 2 1B 1B · Q8_0 · 1.8 GB 677 tok/s
  4. 04 OLMo-1B 1B · Q8_0 · 1.8 GB 677 tok/s
  5. 05 HGRN 1B (WT 103) 1B · Q8_0 · 1.8 GB 677 tok/s
  6. 06 Pythia-1b 1B · Q8_0 · 1.8 GB 677 tok/s
  7. 07 OpenELM-1.1B 1.1B · Q8_0 · 1.9 GB 627 tok/s
  8. 08 TinyLlama-1.1B (1T token checkpoint) 1.1B · Q8_0 · 1.9 GB 616 tok/s
  9. 09 TinyLlama-1.1B (3T token checkpoint) 1.1B · Q8_0 · 1.9 GB 616 tok/s
  10. 10 DeciCoder-1B 1.1B · Q8_0 · 1.9 GB 616 tok/s

Step by step

How to work out the tokens per second of a Data Center GPU Max 1350

You do not have to calculate anything by hand — the gputps.com calculator on this page has already worked it out for every model this card can hold. Reading off the answer takes six steps.

  1. 01

    Start with the model, not the specification

    The table lists 609 models this Data Center GPU Max 1350 can run. Search by name, or by size — typing 27b matches on the parameter count even when the name never states it.

  2. 02

    Match the context to your work

    Drag the slider to the conversation length you plan to work at. The cache grows with the conversation, and on 96 GB it is often what pushes a large model over the edge.

  3. 03

    Pin the comparison to one quality level

    Compression is what lets bigger models fit. The quality control drops any model that needs more of it than you are willing to give.

  4. 04

    Read the speed and the range

    Each speed is an estimate for a single conversation, with a range beneath it — 677 tok/s on Gemma 3 QAT 1B at the top end here. The same card and model vary by thirty to fifty per cent between inference runtimes.

  5. 05

    Check the memory column before committing

    A tight fit runs but leaves no room to raise the context later; comfortable has headroom. The memory column shows what each model needs against the 96 GB available.

  6. 06

    Check the same model from the other side

    Every model name in the table links to its own page, which runs the same calculation across every card we hold. That is where you see whether the Data Center GPU Max 1350 is the right buy for it or merely a card that fits.

Answers

Data Center GPU Max 1350 — common questions

01

Who makes the Data Center GPU Max 1350?

The Data Center GPU Max 1350 is a Intel product, with the chip manufactured by Intel, on a 10 nm process.

02

When was the Data Center GPU Max 1350 released?

The Data Center GPU Max 1350 was released in January 2023.

03

How much power does a Data Center GPU Max 1350 use?

The Data Center GPU Max 1350 has a rated board power of 450 W, and a 850 W system power supply is suggested. Generating text draws hard in bursts and idles between requests, so average consumption over a working session is normally well below the rated figure.

04

How much cache does a Data Center GPU Max 1350 have?

The Data Center GPU Max 1350 has 64 KB of L1 cache, and 408 MB of L2 cache. Cache absorbs part of the memory traffic that would otherwise reach the main bus, so a larger L2 gives a modest lift to generation speed beyond what bandwidth alone predicts.

05

What are the TFLOPS of a Data Center GPU Max 1350?

The Data Center GPU Max 1350 is rated at 44.4 TFLOPS at half precision and 44.4 TFLOPS at single precision. These are peak arithmetic ceilings rather than achievable rates, and text generation reaches only a small fraction of them because it is limited by memory bandwidth instead.

06

Does the Data Center GPU Max 1350 support CUDA?

No. CUDA is NVIDIA-only, and the Data Center GPU Max 1350 is a Intel card. It runs language models through ROCm, Vulkan or Metal depending on the software, which are less mature than the CUDA path — our estimates apply a penalty for that.

07

What bus interface does the Data Center GPU Max 1350 use?

It uses PCIe 5.0 x16. This governs how fast a model is loaded onto the card rather than how fast it runs once loaded, so it costs a few seconds at startup and nothing during generation.

08

Is the Data Center GPU Max 1350 good for running local AI models?

Its memory is large enough for models most desktop hardware cannot touch and its bandwidth puts it among the fastest hardware available for generation. In total it runs 609 of the models we track. Whether that is enough depends entirely on which model you want — the table above answers that directly.

09

Can a Data Center GPU Max 1350 run a model that does not fit in its memory?

Offloading past the card's 96 GB is possible and usually a false economy: the system-memory portion is slow enough to dominate the result.

10

Would two Data Center GPU Max 1350 cards be twice as fast?

Capacity adds, throughput does not. Two of them give you 192 GB to work with rather than twice the tokens per second — every figure here is for a single Data Center GPU Max 1350.

11

What AI models can a Data Center GPU Max 1350 run?

609 of the 679 open-weight language models we track fit on a Data Center GPU Max 1350 and can be run locally on it. The table on this page lists every one, with the memory it needs, the quantisation it runs at and an estimated generation speed.

12

What is the largest AI model a Data Center GPU Max 1350 can run?

The largest model in our catalogue that fits on a Data Center GPU Max 1350 is dots.llm1 at 142B parameters, compressed to IQ4_XS. It generates roughly 11.7 tokens per second and needs about 78.3 GB of the card's memory.

13

How many tokens per second does a Data Center GPU Max 1350 produce?

It depends on the model. On a Data Center GPU Max 1350 the fastest model we track is Gemma 3 QAT 1B at about 677 tokens per second, while larger models run proportionally slower because each token requires reading the whole model out of memory once. Speeds are estimates for a single conversation at a time.

14

Can a Data Center GPU Max 1350 run a 7B model?

Yes. For example a Data Center GPU Max 1350 runs Multi-Token Prediction 7B at Q8_0, using about 7.9 GB of memory and generating around 101 tokens per second.

15

Can a Data Center GPU Max 1350 run a 13B model?

Yes. For example a Data Center GPU Max 1350 runs DeepSeekMoE-16B at Q8_0, using about 17.5 GB of memory and generating around 235 tokens per second.

16

Can a Data Center GPU Max 1350 run a 30B model?

Yes. For example a Data Center GPU Max 1350 runs ERNIE-4.5-VL-28B-A3B at Q8_0, using about 29.2 GB of memory and generating around 134 tokens per second.

17

Can a Data Center GPU Max 1350 run a 70B model?

Yes. For example a Data Center GPU Max 1350 runs Qwen3-Coder-Next at Q8_0, using about 80.7 GB of memory and generating around 47.0 tokens per second.

18

How much memory does a Data Center GPU Max 1350 have?

A Data Center GPU Max 1350 has 96 GB of HBM2e memory. Around a tenth of that is reserved by the inference runtime and the driver, leaving roughly 86.4 GB available for a model and its conversation.

19

What is the memory bandwidth of a Data Center GPU Max 1350?

The Data Center GPU Max 1350 has 2,460 GB/s of memory bandwidth, across a 8,192-bit memory bus. This is the single best predictor of how fast it generates text, because producing each token means reading the entire model out of memory once.

20

What type of memory does a Data Center GPU Max 1350 use?

It uses HBM2e clocked at 1.2 GHz. HBM types are found on datacentre accelerators and carry far more bandwidth than the GDDR used on desktop cards, which is why they generate tokens considerably faster at the same capacity.

The other direction

Looking at it from the other side?

This page starts from the hardware. If you already know which model you want and need to know what it takes to run it, start from the model instead.

All GPUs