LLM

How to deploy Hermes-3-Llama-3.1-70B on a GPU cloud

A 70.6B language model for chat and instruction-following. Full specs, license and use cases.

Hermes-3-Llama-3.1-70B size and hardware requirements

70.6B
Total parameters
Dense (no MoE)
Architecture
BF16
Published precision
157.7 GB
Min VRAM (native)
PrecisionWeight size on diskRequired VRAMCheapest live fitGPUs neededEst. $/hr (full fit)
BF16131.4 GB157.7 GBRTX 30907$1.03/hr
FP8 (quantized)65.7 GB78.8 GBRTX PRO 60001$1.64/hr
INT4 (quantized)32.9 GB39.4 GBRTX A60001$0.330/hr

How to run Hermes-3-Llama-3.1-70B

Run Hermes-3-Llama-3.1-70B with vLLM

From NousResearch/Hermes-3-Llama-3.1-70B's own deployment docs.

`vllm serve NousResearch/Hermes-3-Llama-3.1-70B`

Source: https://huggingface.co/NousResearch/Hermes-3-Llama-3.1-70B/raw/main/README.md

Run Hermes-3-Llama-3.1-70B with GGUF quantizations

Prebuilt GGUF weights published at bartowski/Hermes-3-Llama-3.1-70B-GGUF. Run with llama.cpp's llama-server or load the repo directly in LM Studio.

llama-server -hf bartowski/Hermes-3-Llama-3.1-70B-GGUF

Source: https://huggingface.co/bartowski/Hermes-3-Llama-3.1-70B-GGUF

Deploy Hermes-3-Llama-3.1-70B on Aquanode

Aquanode has no one-click deploy template for Hermes-3-Llama-3.1-70B; you install the inference engine yourself with the commands below. Aquanode sells GPU pods billed per second, not a hosted inference API.

  1. Launch a bare GPU pod sized to the requirement above (7× RTX 3090 or larger).
  2. Open a terminal on the pod, or save one of the commands above as a startup script so it runs automatically the first time the pod boots.
  3. Run the command and connect to the resulting endpoint.

Submit the job. Everything after that is ours.

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