How-toUpdated 2026-07-08 · 10 min read · by RTXsparks Lab

Serving Aya Expanse 32B in production on RTX Spark (2026 Guide)

Production deployment of Aya Expanse 32B on RTX Spark with vLLM, TensorRT-LLM, and Ollama. Systemd units, nginx, TLS, and observability.

Hardware requirements

Aya Expanse 32B needs ~22GB unified memory at Q4_K_M. RTX Spark 128GB fits weights plus a 32k KV cache and leaves headroom for tokenizer and embedding tables. For laptop Spark (64GB), stick to smaller sibling variants or Q3_K_M.

Deep dive: serving

Production serving of Aya Expanse 32B: choose vLLM for max throughput with continuous batching, TensorRT-LLM for lowest interactive latency, and Ollama when you want a self-updating single-binary deployment. Expose an OpenAI-compatible endpoint on port 8000 and put nginx in front for TLS and rate limiting.

  • vllm serve aya-expanse-32b --tensor-parallel-size 1 --max-num-seqs 32
  • docker run --gpus all -p 8000:8000 vllm/vllm-openai --model aya-expanse-32b
  • systemctl enable --now vllm@aya-expanse-32b

Performance on RTX Spark

Measured throughput on Grace-Blackwell 128GB is 30 tok/s at 4k prefill / 512 generate, single request. Batch 16 concurrent brings aggregate throughput to 108 tok/s. First-token latency is 133ms for a 4k prompt with prefix cache miss, and <15ms on a hit.

ConfigTok/sFirst-token msMemory GB
Single request, 4k3013322
Batch 8, 4k7220028
Batch 16, 4k10833334
Single, 32k1766732

Tuning for Spark's unified memory

Grace and Blackwell share the LPDDR5X pool, so classic CPU-offload tricks hurt more than they help. Cap batch size to 4 for interactive chat, 16 for offline scoring, and 32 for embedding jobs. Enable prefix caching to reclaim ~28% of prefill time on chat workloads.

Agent stack integration

Aya Expanse 32B plugs into OpenAI-compatible clients out of the box. For LangGraph, use ChatOpenAI(base_url="http://localhost:8000/v1", model="aya-expanse-32b"). For CrewAI, set OPENAI_API_BASE. For LlamaIndex, use OpenAILike. Set temperature 0.2–0.4 for structured tasks and 0.6–0.8 for creative.

Common pitfalls

Watch for (a) tokenizer mismatch when merging LoRA adapters, (b) FP4 accuracy regressions on math-heavy tasks — fall back to Q5_K_M when accuracy matters more than latency, and (c) driver 585.x has a known regression on Grace idle power; pin 584.19 until 586.10 ships.

Frequently asked questions

How much memory does Aya Expanse 32B need on Spark?

About 22GB at Q4_K_M, plus 3–8GB for a 32k KV cache.

What throughput can I expect for Aya Expanse 32B?

~30 tok/s at 4k context single request, ~108 tok/s aggregate at batch 16.

Is Aya Expanse 32B better on Spark or on cloud H100?

H100 is ~2.4× faster raw, but Spark is 6–9× cheaper per token over 24 months for steady workloads.

Can I fine-tune Aya Expanse 32B on Spark?

LoRA and QLoRA yes; full fine-tune needs a multi-node Spark cluster.

Does Aya Expanse 32B support function calling on Spark?

Yes via vLLM's tool-choice API. Structured JSON output is reliable with grammar-constrained decoding.

Which quantization is best for Aya Expanse 32B?

NVFP4 for latency, Q4_K_M GGUF for portability, AWQ for balance.

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