willitrun·ai

Can 1-bit Bonsai 27B run on RTX 5060 Ti 16GB?

YES — Runs Great

S89Excellent
Estimated from fit model

1-bit Bonsai 27B needs ~10.3 GB VRAM. RTX 5060 Ti 16GB has 16.0 GB. With Q1_0_G128 quantization, expect ~57 tok/s.

Runtime: llama.cppCapacity: RoomyBandwidth: LowStack: StandardBottleneck: Balanced
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Operating mode

Choose the run profile you care about

Interactive favors responsiveness, while light API and scale-out lean harder on serving readiness. The fit stays the same, but the recommendation lens changes.

Current mode

Balanced

Balanced for general local use. Keeps the ranking neutral across personal and serving workflows.

Capabilities:

Select quantization to explore

Q1_0_G128 (Very Low quality) 7.4 GB, 44.0 tok/s, Runs well
7.4 GB required16.0 GB available
46% VRAM used

Fit status

Runs well

Decode

44.0 tok/s

TTFT

4397 ms

Safe context

157K

Memory

7.4 GB / 16.0 GB

Memory breakdown

Weights3.9 GB
KV Cache1.0 GB
Runtime0.9 GB
Headroom1.6 GB

See how fast it feels

See how fast it feels1-bit Bonsai 27B on RTX 5060 Ti 16GB
1st promptCold start — includes initialization
>Write a Python function to sort a list
Here's a Python function that sorts a list using quicksort: def quicksort(arr): if len(arr) <= 1: return arr pivot = arr[len(arr) // 2] left = [x for x in arr if x < pivot] middle = [x for x in arr if x == pivot] right = [x for x in arr if x > pivot] return quicksort(left) + middle + quicksort(right) # Example usage numbers = [3, 6, 8, 10, 1, 2, 1] print(quicksort(numbers)) # [1, 1, 2, 3, 6, 8, 10] The algorithm picks a pivot, partitions the list into smaller, equal, and larger elements, then recursively sorts each partition and concatenates the results.
2nd promptWarm — model ready, no init overhead
>Now add type hints and a docstring
def quicksort(arr: list[int]) -> list[int]: """Sort a list using the quicksort algorithm. Args: arr: List of integers to sort. Returns: A new sorted list. """ if len(arr) <= 1: return arr pivot = arr[len(arr) // 2] left = [x for x in arr if x < pivot] middle = [x for x in arr if x == pivot] right = [x for x in arr if x > pivot] return quicksort(left) + middle + quicksort(right) Added type hints for the input and return type, plus a Google-style docstring.
Estimated: 44.0 tok/s decode · 4.4s TTFT (warm) · 110 tok/s prefill

What limits this setup

This setup is broadly balanced for this model.

No major red flags

This recommendation has enough memory headroom and acceptable estimated speed for the selected workload.

Best improvement path

Performance by workload

WorkloadGradeFitDecodeTTFTContext
ChatSRuns well56.8 tok/s1858 ms39K
CodingSRuns well56.8 tok/s3406 ms39K
Agentic CodingSTight fit56.8 tok/s4953 ms39K
ReasoningSRuns well56.8 tok/s4025 ms39K
RAGSTight fit56.8 tok/s6192 ms39K

Inference speed

1-bit Bonsai 27B inference speed — tokens per second by GPU & Mac

Estimated decode speed (tokens/sec) for 1-bit Bonsai 27B at Q1_0_G128 across popular GPUs and Apple Silicon, using the fastest local runtime per device. Fastest is RTX 5090 32GB at ~156 tok/s. Speed is memory-bandwidth bound, so cards that fit the whole model in VRAM run far faster than ones that offload to system RAM.

GPU / MacMemoryQuantSpeed (tok/s)Fits?
NVIDIARTX 5090 32GB
32 GBQ1_0_G128156.1Fits
RX 7900 XTX 24GB
24 GBQ1_0_G128132.5Fits
Mac Studio M3 Ultra 256GB
256 GBQ1_0_G128123.5Fits
MacBook Pro M4 Max 128GB
128 GBQ1_0_G128122.1Fits
MacBook Pro M4 Max 64GB
64 GBQ1_0_G128122.1Fits
Mac Studio M2 Ultra 128GB
128 GBQ1_0_G128102.9Fits
Mac Studio M1 Ultra 128GB
128 GBQ1_0_G12897.6Fits
NVIDIARTX 4090 24GB
24 GBQ1_0_G12889.7Fits
NVIDIARTX 3090 24GB
24 GBQ1_0_G12887.4Fits
NVIDIARTX 4080 Super 16GB
16 GBQ1_0_G12886.1Fits
MacBook Pro M4 Pro 48GB
48 GBQ1_0_G12876.9Fits
NVIDIARTX 3060 12GB
12 GBQ1_0_G12869.5Fits
NVIDIARTX 4070 12GB
12 GBQ1_0_G12853.3Fits
MacBook Pro M3 Max 64GB
64 GBQ1_0_G12853.2Fits
MacBook Pro M1 Max 64GB
64 GBQ1_0_G12848.8Fits
NVIDIARTX 4060 8GB
8 GBQ1_0_G12828.0Tight

Estimates for single-stream decoding at Q1_0_G128; real tokens/sec varies with prompt length, context, batch size, and runtime build. Prompt processing (prefill) is faster than the decode figures shown here.

Quantization options

How 1-bit Bonsai 27B (27B params) fits at each quantization level on RTX 5060 Ti 16GB (16.0 GB usable).

QuantBitsVRAMQualityFit
Q1_0_G128
1.125
3.9 GB
Very LowA84
Q2_0_G128
1.71
7.2 GB
LowS87
Q2_KBest for your GPU
2
10.5 GB
LowS86
Q3_K_S
3
13.2 GB
LowF0
NVFP4
4
15.1 GB
MediumF0
Q4_K_M
4
16.5 GB
MediumF0
Q5_K_M
5
19.4 GB
HighF0
Q6_K
6
22.1 GB
HighF0
Q8_0
8
28.9 GB
Very HighF0
F16
16
55.4 GB
MaximumF0

Get started

Copy-paste commands to run 1-bit Bonsai 27B on your machine.

Run

docker run --rm -it ghcr.io/ggerganov/llama.cpp:full \ --hf-repo "prism-ml/Bonsai-27B-gguf" \ --hf-file "Bonsai-27B-gguf-Q1_0_G128.gguf" \ -c 4096 -ngl 99

Frequently asked questions

Can RTX 5060 Ti 16GB run 1-bit Bonsai 27B?

Yes, RTX 5060 Ti 16GB can run 1-bit Bonsai 27B with a S grade (Runs well). Expected decode speed: 56.8 tok/s.

How much VRAM does 1-bit Bonsai 27B need?

1-bit Bonsai 27B (27B parameters) requires approximately 10.3 GB of memory with Q1_0_G128 quantization.

What is the best quantization for 1-bit Bonsai 27B?

The recommended quantization for 1-bit Bonsai 27B is Q1_0_G128, which balances quality and memory efficiency.

What speed will 1-bit Bonsai 27B run at on RTX 5060 Ti 16GB?

On RTX 5060 Ti 16GB, 1-bit Bonsai 27B achieves approximately 56.8 tokens per second decode speed with a time-to-first-token of 3406ms using Q1_0_G128 quantization.

Can RTX 5060 Ti 16GB run 1-bit Bonsai 27B for coding?

For coding workloads, 1-bit Bonsai 27B on RTX 5060 Ti 16GB receives a S grade with 56.8 tok/s and 39K context.

What context window can 1-bit Bonsai 27B use on RTX 5060 Ti 16GB?

On RTX 5060 Ti 16GB, 1-bit Bonsai 27B can safely use up to 39K tokens of context. The model's official context limit is 262K, but available memory constrains the safe maximum.

See all results for RTX 5060 Ti 16GBSee all hardware for 1-bit Bonsai 27B
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<iframe src="https://willitrunai.com/embed/bonsai-27b-on-rtx-5060-ti-16gb" width="400" height="180" frameborder="0" style="border:none;border-radius:12px;overflow:hidden;" title="Will It Run AI — fit result"></iframe>

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