AppleM4 MaxDesktop

Best AI Models for Mac Studio M4 Max (64 GB)

Memory:64 GB Unified·Bandwidth:546.0 GB/s·GPU Cores:40 GPU cores·CPU Cores:16 CPU cores·Neural Engine:38.0 TOPS

64 GB unified − 3.5 GB OS overhead = 60.5 GB available for AI models

With 64 GB of memory, this is a high-end configuration for local AI. You can comfortably run most open-source LLMs including large 70B parameter models at good quantization levels, making it one of the best setups for serious local AI work.

At this memory tier, nearly every popular open-source model is within reach. You can run Llama 3 70B at Q4_K_M or even Q5_K_M quantization with room to spare, handle coding assistants like DeepSeek Coder 33B at high quality, and easily run any 7B–30B model at full or near-full precision. Context windows remain generous even with larger models, so multi-turn conversations and long-document processing work smoothly.

Runs Well

  • 70B models (Llama 3 70B, Qwen 72B) at Q4–Q5
  • 30B models at Q6–Q8 quality
  • 7B–14B models at full FP16 precision
  • Vision models (LLaVA, CogVLM) without compromise

Challenging

  • Mixture-of-experts models like Mixtral 8x22B at higher quants
  • 120B+ models still require lower quantizations

What LLMs Can Mac Studio M4 Max (64 GB) Run?

138 models · 48 excellent · 32 good

Showing compatibility for Mac Studio M4 Max (64 GB)

LLM models compatible with Mac Studio M4 Max (64 GB) — ranked by performance
ModelVRAMGrade
Gemma 4 31B IT32.7B
Q4_K_M·18.0 t/s tok/s·262K ctx·DECENT
21.2 GBB58
Qwen3 8B8.2B
Q4_K_M·69.2 t/s tok/s·41K ctx·RUNS GREAT
5.5 GBS86
Qwen3.6 35B A3B36.0B
Q4_K_M·17.4 t/s tok/s·262K ctx·DECENT
21.9 GBB57
Phi 3.5 MoE Instruct41.9B
Q4_K_M·14.9 t/s tok/s·131K ctx·DECENT
25.7 GBB55
Qwen3 32B32.8B
Q4_K_M·18.8 t/s tok/s·41K ctx·DECENT
20.3 GBB58
Falcon 40B41.8B
Q4_K_M·13.8 t/s tok/s·DECENT
27.6 GBB53
Q4_K_M·76.6 t/s tok/s·33K ctx·RUNS GREAT
5.0 GBS87
Q4_K_M·72.1 t/s tok/s·131K ctx·RUNS GREAT
5.3 GBS86
Q4_K_M·17.8 t/s tok/s·262K ctx·DECENT
21.4 GBB58
Q4_K_M·46.4 t/s tok/s·262K ctx·RUNS WELL
8.2 GBA78
Q4_K_M·71.8 t/s tok/s·131K ctx·RUNS GREAT
5.3 GBS86
Q4_K_M·77.7 t/s tok/s·33K ctx·RUNS GREAT
4.9 GBS87
DeepSeek R1 0528 Qwen3 8B8.2B
Q4_K_M·69.2 t/s tok/s·131K ctx·RUNS GREAT
5.5 GBS86
Gemma 3 12B IT12.2B
Q4_K_M·47.5 t/s tok/s·33K ctx·RUNS WELL
8.0 GBA79
Qwen3 4B4.0B
Q4_K_M·131.8 t/s tok/s·41K ctx·RUNS GREAT
2.9 GBS95
Q4_K_M·18.6 t/s tok/s·33K ctx·DECENT
20.5 GBB58

Mac Studio M4 Max (64 GB) Specifications

Brand
Apple
Chip
M4 Max
Type
Desktop
Unified Memory
64 GB
Memory Bandwidth
546.0 GB/s
GPU Cores
40
CPU Cores
16
Neural Engine
38.0 TOPS
Release Date
2025-03-12

Get Started

Ollama (Recommended)

$curl -fsSL https://ollama.com/install.sh | sh
$ollama run llama3:8b

LM Studio

LM Studio

Download LM Studio, search for a model, and run it with one click.

Prompt Processing

Estimated for Dolphin Mistral 24B Venice Edition, the compute-bound phase that reads your prompt before the first reply token appears.

143.3tok/s prefill

Short chat

3.6 s

512 tok prompt

Long chat

28.6 s

4,096 tok prompt

Document / codebase

229 s

32,768 tok prompt

Prefill is compute-bound and a different number from the decode tok/s shown elsewhere on this page — how prompt processing works →

Performance figures are estimates calibrated as of 2026-07-30 see calibration basis →

Devices to Consider

Similar devices and upgrades with more memory or higher bandwidth

Frequently Asked Questions

Can Mac Studio M4 Max (64 GB) run Llama 3.1 70B Instruct?

Yes, the Mac Studio M4 Max (64 GB) with 64 GB unified memory can run Llama 3.1 70B Instruct, Llama 3.3 70B Instruct, Qwen2.5 72B Instruct, and 1653 other models. 897 models achieve excellent performance, and 354 run at good quality. Apple Silicon's unified memory architecture lets the GPU access the full memory pool without copying data, making it efficient for AI workloads.

How much memory is available for AI on Mac Studio M4 Max (64 GB)?

The Mac Studio M4 Max (64 GB) has 64 GB unified memory. After macOS reserves ~3.5 GB for the operating system, approximately 60.5 GB is available for AI models. Unlike discrete GPUs where VRAM is separate from system RAM, Apple Silicon shares one memory pool between the CPU and GPU — this means no data copying overhead, but you share memory with macOS and open apps.

Is Mac Studio M4 Max (64 GB) good for AI?

With 64 GB unified memory and 546.0 GB/s bandwidth, the Mac Studio M4 Max (64 GB) is excellent for running local AI models. It supports 1251 models at good quality or better. This is a premium configuration — you can run large 30B+ parameter models at good quality, and most 7B models at maximum quality. Ideal for professional AI workloads.

What's the best model for Mac Studio M4 Max (64 GB)?

The top-rated models for the Mac Studio M4 Max (64 GB) are Llama 3.1 70B Instruct, Llama 3.3 70B Instruct, Qwen2.5 72B Instruct. With this much memory, you can prioritize quality — use higher quantizations (Q5/Q6) for better output, or run larger 30B+ models for more capable reasoning.

How fast is Mac Studio M4 Max (64 GB) for AI inference?

With 546.0 GB/s memory bandwidth, the Mac Studio M4 Max (64 GB) achieves approximately 85 tok/s on a 7B model at Q4_K_M — that's very fast, well above conversational speed. A 14B model runs at ~43 tok/s. Apple Silicon achieves high efficiency (~70%) thanks to unified memory — there's no PCIe bottleneck between CPU and GPU.

tok/s = (546 GB/s ÷ model GB) × efficiency

Apple Silicon achieves ~70% bandwidth efficiency thanks to unified memory and Metal acceleration.

Estimated speed on Mac Studio M4 Max (64 GB)

Real-world results typically within ±20%.

Learn more about tok/s estimation →

Can I run AI offline on Mac Studio M4 Max (64 GB)?

Yes — once you download a model, it runs entirely on the Mac Studio M4 Max (64 GB) without internet. Applications like Ollama and LM Studio make it straightforward to download, manage, and run models locally. All your conversations stay private on your device with zero data sent to external servers. This is one of the key advantages of local AI: complete privacy, no API costs, and no rate limits.