Gemma 3 270M TPS calculator

Open weights Google DeepMind 270M parameters August 2025

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

Calculated for this model

818 cards that can run it

818 cards we hold specifications for

Smallest card that fits

Tesla C1080

4 GB · Q8_0 · 137 tok/s

Fastest card

B200

12,549 tok/s · 180 GB

Which GPUs can run Gemma 3 270M?

Set the inputs, read the answer

A longer conversation needs more memory, which can push this model off smaller cards.

Hides cards that would only fit the model by compressing it below this point.

818 cards match

Calculating
Needs Quantisation Fit
12,549 tok/s

7,529–20,078 · low confidence

B200 NVIDIA 180 GB 8,000 GB/s Jan 2024 1.0 GB Q8_0 Comfortable
12,549 tok/s

7,529–20,078 · low confidence

B300 NVIDIA 288 GB 8,000 GB/s Sep 2025 1.0 GB Q8_0 Comfortable
10,021 tok/s

6,012–16,033 · low confidence

Radeon Instinct MI350X AMD 288 GB 8,190 GB/s Jan 2025 1.0 GB Q8_0 Comfortable
10,021 tok/s

6,012–16,033 · low confidence

Radeon Instinct MI355X AMD 288 GB 8,190 GB/s Jan 2025 1.0 GB Q8_0 Comfortable
8,014 tok/s

4,808–12,823 · low confidence

Radeon Instinct MI300 AMD 128 GB 6,550 GB/s Jan 2023 1.0 GB Q8_0 Comfortable
7,671 tok/s

4,602–12,273 · low confidence

H200 NVL NVIDIA 141 GB 4,890 GB/s Nov 2024 1.0 GB Q8_0 Comfortable
7,671 tok/s

4,602–12,273 · low confidence

H200 SXM 141 GB NVIDIA 141 GB 4,890 GB/s Nov 2024 1.0 GB Q8_0 Comfortable
7,341 tok/s

4,405–11,746 · low confidence

Radeon Instinct MI325X AMD 256 GB 6,000 GB/s Oct 2024 1.0 GB Q8_0 Comfortable
6,515 tok/s

3,909–10,424 · low confidence

Radeon Instinct MI300A AMD 128 GB 5,325 GB/s Dec 2023 1.0 GB Q8_0 Comfortable
6,515 tok/s

3,909–10,424 · low confidence

Radeon Instinct MI300X AMD 192 GB 5,325 GB/s Dec 2023 1.0 GB Q8_0 Comfortable
6,515 tok/s

3,909–10,424 · low confidence

Radeon Instinct MI308X AMD 192 GB 5,325 GB/s Dec 2023 1.0 GB Q8_0 Comfortable
6,180 tok/s

3,708–9,889 · low confidence

H100 NVL 94 GB NVIDIA 94 GB 3,940 GB/s Mar 2023 1.0 GB Q8_0 Comfortable
5,271 tok/s

3,162–8,433 · low confidence

H100 PCIe 96 GB NVIDIA 96 GB 3,360 GB/s Mar 2023 1.0 GB Q8_0 Comfortable
5,271 tok/s

3,162–8,433 · low confidence

H100 SXM5 80 GB NVIDIA 80 GB 3,360 GB/s Oct 2022 1.0 GB Q8_0 Comfortable
5,271 tok/s

3,162–8,433 · low confidence

H100 SXM5 94 GB NVIDIA 94 GB 3,360 GB/s Mar 2023 1.0 GB Q8_0 Comfortable
5,271 tok/s

3,162–8,433 · low confidence

H100 SXM5 96 GB NVIDIA 96 GB 3,360 GB/s Mar 2023 1.0 GB Q8_0 Comfortable
5,271 tok/s

3,162–8,433 · low confidence

H800 SXM5 NVIDIA 80 GB 3,360 GB/s Mar 2023 1.0 GB Q8_0 Comfortable
4,013 tok/s

2,408–6,421 · low confidence

Radeon Instinct MI250 AMD 128 GB 3,280 GB/s Nov 2021 1.0 GB Q8_0 Comfortable
4,013 tok/s

2,408–6,421 · low confidence

Radeon Instinct MI250X AMD 128 GB 3,280 GB/s Nov 2021 1.0 GB Q8_0 Comfortable
3,344 tok/s

2,007–5,351 · low confidence

Data Center GPU Max 1550 Intel 128 GB 3,280 GB/s Jan 2023 1.0 GB Q8_0 Comfortable
3,273 tok/s

1,964–5,237 · low confidence

Data Center GPU Max Subsystem Intel 128 GB 3,210 GB/s Jan 2023 1.0 GB Q8_0 Comfortable
3,200 tok/s

1,920–5,120 · low confidence

A100 SXM4 80 GB NVIDIA 80 GB 2,040 GB/s Nov 2020 1.0 GB Q8_0 Comfortable
3,200 tok/s

1,920–5,120 · low confidence

A100X NVIDIA 80 GB 2,040 GB/s Jun 2021 1.0 GB Q8_0 Comfortable
3,200 tok/s

1,920–5,120 · low confidence

A800 SXM4 80 GB NVIDIA 80 GB 2,040 GB/s Aug 2022 1.0 GB Q8_0 Comfortable
3,200 tok/s

1,920–5,120 · low confidence

H100 CNX NVIDIA 80 GB 2,040 GB/s Mar 2023 1.0 GB 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

Full specification

Everything on record for this model. Most of it describes how it was trained rather than how it runs — useful context for judging how much work went into it, and how it compares with models built at a different scale.

Origin

Who built this model, where, and when it was published.

Organisation
Google DeepMind
Organisation type
Industry
Country
United States of America
Published
14 August 2025

What it does

The problem areas the model was built for. A model can carry several of each.

Domain
Language
Task
Language modeling/generation, Question answering

Size

How large the model is and how much data it was trained on. Parameters are the figure that decides whether it fits on a given graphics card.

Parameters
270M

270M Compact and capable architecture: Our new model has a total of 270 million parameters: 170 million embedding parameters due to a large vocabulary size and 100 million for our transformer blocks.

Training data
6,000,000,000,000 tokens

"the 270M with 6 trillion tokens"

Training compute

The arithmetic performed to train the model, measured in floating-point operations. It is a measure of what the training run cost, not of how fast the finished model answers you.

Training compute
9.7 × 10²¹ FLOP

6 FLOP / parameter / token * 270 * 10^9 parameters * 6 * 10^12 tokens = 9.72e+21 FLOP

How it was established
Operation counting

Availability

Whether you can obtain the model and run it on your own hardware, which is what decides if any of the graphics-card figures on this page apply.

Weights
Open — downloadable
Model access
Open weights (restricted use)
Training code
Unreleased

Gemma license https://huggingface.co/google/gemma-3-270m

Hugging Face
google

How it is classified

Labels the source dataset applies when tracking notable models, and how confident it is in the entry.

Record confidence
Confident

Sources

Where this record came from and when it was last checked.

Reference
Introducing Gemma 3 270M: The compact model for hyper-efficient AI
Last updated
28 November 2025

The extremes

What the numbers mean

What you need to run it

Minimum card

Tesla C1080

Memory needed

1.0 GB

Fastest

12,549 tok/s

Gemma 3 270M is small enough at 270M parameters that hardware is rarely the obstacle — 818 of the cards we track can run it, including cards several years old.

The least hardware that works is a Tesla C1080. Its 4 GB is enough at Q8_0 compression, giving roughly 137 tokens per second.

At the other end, a B200 generates roughly 12,549 tokens per second on it, on the strength of 8,000 GB/s of memory bandwidth.

What this model is

Gemma 3 270M was published by Google DeepMind, in United States of America, in August 2025. industry is the category the publisher falls under.

It works in Language, and is recorded as doing language modeling/generation, Question answering.

Published weights mean the model runs on your machine rather than someone else's, which is what makes the hardware question below answerable at all. It is published under the google organisation on Hugging Face.

What decides the speed

Half the cards that hold it manage more than 352.4 tokens per second, and 818 exceed reading speed outright.

It is a dense model, so every parameter is read for every token produced. That makes speed track memory bandwidth almost exactly — a card with twice the bandwidth generates roughly twice as fast.

Memory here is estimated from size rather than computed from the architecture, which is not recorded for this model — the numbers are indicative rather than exact.

How it was trained

Training it took roughly 9.7 × 10²¹ FLOP of computation — a measure of what producing the model cost, not of how fast it answers.

The training set ran to roughly 6,000,000,000,000 tokens.

Step by step

How to choose a GPU for Gemma 3 270M

The table above has already assessed every card we hold specifications for against this model. Getting to your answer takes six steps.

  1. 01

    Start from the memory column

    Look at what Gemma 3 270M actually needs — around 1.0 GB at Q8_0. No amount of processing power compensates for a card that cannot hold it.

  2. 02

    Set the context length you will work at

    The conversation occupies memory too, and grows as it goes. Set the slider to the length you expect: at long context Gemma 3 270M can slip off a card that handles short questions easily.

  3. 03

    Set a quality floor

    Each card runs the least-compressed copy it can hold — Q8_0 on the smallest card that fits. Setting a floor drops the cards that only manage Gemma 3 270M by squeezing it further than you would want.

  4. 04

    Sort by speed

    Sort by speed to see how cards rank for Gemma 3 270M. It will not match a gaming ordering — generation is bound by memory bandwidth, which is why the B200 tops it at 12,549 tok/s.

  5. 05

    Read the fit column last

    A tight fit runs Gemma 3 270M but leaves nothing spare for a longer conversation; comfortable has headroom. If you expect to grow the context, buy for comfortable.

  6. 06

    See what else that card runs

    Every card name links to its own page, which runs the same calculation across the whole model catalogue. Worth a look before buying for Gemma 3 270M alone — a card is usually bought for more than one model.

Answers

Gemma 3 270M — common questions

01

Who created Gemma 3 270M?

Gemma 3 270M was published by Google DeepMind, based in United States of America, categorised as industry.

02

When was Gemma 3 270M released?

Gemma 3 270M was published in August 2025.

03

What is Gemma 3 270M used for?

Gemma 3 270M works in Language, and is recorded as handling language modeling/generation, Question answering. These are the areas it was designed around; they describe intent rather than a hard boundary.

04

Where can I download Gemma 3 270M?

Its weights are published under the google organisation on Hugging Face. We do not host model files — this site calculates what hardware is needed to run them.

05

How much compute was used to train Gemma 3 270M?

Around 9.7 × 10²¹ FLOP. That measures what producing the model cost and says nothing about how quickly it answers once trained — inference speed comes from memory bandwidth, not from the training budget.

06

Can I run Gemma 3 270M if it does not fit in my GPU?

It can be split between the card and system memory, but Gemma 3 270M generates painfully slowly that way. Nothing on this page assumes offloading.

07

Would two GPUs run Gemma 3 270M faster?

Two cards buy memory rather than speed. That matters for Gemma 3 270M only if one card cannot hold it — 818 can, so a second adds little.

08

Why does the quantisation differ between cards for Gemma 3 270M?

Because capacity varies, so does how hard Gemma 3 270M has to be squeezed — 1 distinct levels appear in the table above. Set a minimum quality to compare at one.

09

How accurate are these Gemma 3 270M speed estimates?

Every figure is derived from memory bandwidth and model size, not benchmarked. That is why each is published as a range such as 7,529–20,078 tok/s on the B200 rather than a single number.

10

What GPU do I need to run Gemma 3 270M?

The smallest card in our catalogue that holds Gemma 3 270M is the Tesla C1080, with 4 GB of memory. It runs the model at Q8_0 using about 1.0 GB, and produces roughly 137 tokens per second. 818 cards in total can run it.

11

How fast is Gemma 3 270M on a GPU?

It depends on the card. The quickest we calculate is a B200 at about 12,549 tokens per second; the slowest that still runs it manages considerably less. Reading speed is around ten tokens per second, and 818 of the cards that can run Gemma 3 270M clear that.

12

How much VRAM does Gemma 3 270M need?

About 1.0 GB at Q8_0 compression, which is what the smallest card that runs it uses. Less compression needs more: the figures in the memory column above are recalculated for each card, because each one holds the least-compressed version it can.

13

Can I run Gemma 3 270M on a 8 GB GPU?

Yes. A CMP 170HX 8 GB with 8 GB runs it at Q8_0, using about 1.0 GB and generating roughly 2,337 tokens per second — a comfortable fit.

14

Can I run Gemma 3 270M on a 12 GB GPU?

Yes. A GeForce RTX 3080 Ti with 12 GB runs it at Q8_0, using about 1.0 GB and generating roughly 1,431 tokens per second — a comfortable fit.

15

Can I run Gemma 3 270M on a 16 GB GPU?

Yes. A Tesla V100 SXM2 16 GB with 16 GB runs it at Q8_0, using about 1.0 GB and generating roughly 1,773 tokens per second — a comfortable fit.

16

Can I run Gemma 3 270M on a 24 GB GPU?

Yes. A GeForce RTX 5090 D V2 with 24 GB runs it at Q8_0, using about 1.0 GB and generating roughly 2,102 tokens per second — a comfortable fit.

17

Is Gemma 3 270M open source?

Its weights are published, so Gemma 3 270M can be downloaded and run on your own hardware. Note that open weights is not the same as open source in the full sense — it says nothing about the training data, the training code, or the commercial terms attached.

18

How many parameters does Gemma 3 270M have?

Gemma 3 270M has 270M parameters. 270M Compact and capable architecture: Our new model has a total of 270 million parameters: 170 million embedding parameters due to a large vocabulary size and 100 million for our transformer blocks. That figure is the total, and it is what decides how much memory the model needs — roughly half a gigabyte per billion at the compression most people use.

Source

Original publication

Record last updated 28 November 2025

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