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Can the Apple M1 Ultra run Ling-3.0-flash?

Ling-3.0-flash · Apple M1 Ultra · 8,192 ctx · whole model residentQ6_K sizepublished dataSpeedestimate

IT FITS

Yes. 7 of 9 formats evaluated fit in 128 GB, the largest Apple M1 Ultra configuration, at 8,192 tokens. 5 of them are sized from a published file; the rest are rebuilt from the pinned architecture. The best quality that fits is Q6_K, needing 106.0 GB and running at an estimated 97 tokens per second.

Fitting in memory is not the same as loading. Whether the runtime and version you have supports this architecture and format on this machine has not been tested here.

7/9formats that fit
128 GBdevice memory, largest configuration
106.0 GBneeded at best quality
~97tokens per second, estimatedFaster than you read
800GB/s bandwidth

How long a conversation. At Q6_K, this pair holds 262,144 tokens of context — roughly 196,608 words — needing 118.3 GB. That is inclusionAI's own configured maximum of 262,144 tokens, not the card running out. A larger device does not extend it; a documented RoPE or YaRN extension might, and is a separate question from this one.

By memory configuration

The Apple M1 Ultra is sold with 64 or 128 GB of unified memory, and the amount decides the fit. Each row is the best format that fits in that much at 8,192 tokens, whole model resident.

MemoryBest format that fitsNeedsCalculator
64 GBQ2_K51.7 GBOpen →
128 GBQ6_K106.0 GBOpen →

Every format evaluated

5 of them are sized from a published file; the rest are rebuilt from the pinned architecture. The Basis column says which is which for each row. Decode and first-token figures are calibrated estimates, not runs on this card.

FormatNeedsOf 128 GBFitsDecodeFirst tokenBasis
FP16256.3 GB200%short by 128.3 GBdoes not run—published data
Q8_0136.8 GB107%short by 8.82 GBdoes not run—published data
Q6_K106.0 GB83%yes~97 tok/sno comparable peakpublished data
Q5_K_M91.7 GB72%yes~97 tok/sno comparable peakpublished data
Q5_090.2 GB70%yes~98 tok/sno comparable peaksize range
Q4_K_M78.2 GB61%yes~102 tok/sno comparable peakpublished data
Q4_075.4 GB59%yes~104 tok/sno comparable peaksize range
Q3_K_M65.0 GB51%yes~108 tok/sno comparable peaksize range
Q2_K51.7 GB40%yes~116 tok/sno comparable peaksize range

Sized at 8,192 tokens of context with the whole model resident — weights, the KV cache and the runtime reserve, offload off. Speed is only quoted for a format that fits: a rate for a configuration that cannot load is not a fact about anything.

Why the first-token figure is the same on every row

First token is modelled from the arithmetic the prompt requires, and that count does not change with the weight format — which is why it reads the same on every row. Real prefill does vary by format, because a quantized matmul is a different kernel; this model does not capture that, and the figure should be read as an order of magnitude rather than a ranking between formats.

What the labels mean
published data
Read from a published source — a file's byte count, a model's configuration or a manufacturer's specification — or exact arithmetic on such values. Not a measurement on a machine.
reconstructed size
Weight size reconstructed from the pinned architecture, because no published file exists.
size range
Only a lower and an upper bound are claimed for this weight size.
estimate
Calculated from sourced inputs by a stated method; an estimate, not a measurement.
Change anything

This page fixes the context at 8,192 tokens and one device. Batch, concurrent users, KV-cache format, clusters and rental cost are all in the calculator, already set to this pairing.

Open in the calculator →Everything the Apple M1 Ultra runsBest models for 128 GB

Where these numbers come from

Ling-3.0-flash’s architecture is read from its publisher’s own config.json at a pinned revision, and the Apple M1 Ultra’s 128 GB and 800 GB/s come from the manufacturer’s specification. How far each figure can be trusted is published, per format and worst case included, on the accuracy scorecard.

Building this into your own product? A free API key returns exactly these figures, and the widget puts this answer on a product page with one script tag.

Use this answer in your own product

As JSON, from the API
curl -s https://llmbottleneck.com/v1/analyze \
  -H "Authorization: Bearer $LLMB_KEY" -H "content-type: application/json" \
  -d '{"model":"inclusionai-ling-3-0-flash","quantization":"Q6_K","context":8192,"hardware":"apple-m1-ultra"}'

Same engine, same evidence, every field sourced. Free key in one step →

On your page, as a widget
<script src="https://llmbottleneck.com/widget.js"
  data-model="inclusionai-ling-3-0-flash" data-quantization="Q6_K"
  data-hardware="apple-m1-ultra" data-context="8192"></script>

No key needed. Unbranded, with your own buy button, on Pro and Business →

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catalogue 2026-10-03models 327devices 135