Compare/MiniMax M1 80k vs Qwen3.6 35B A3B (Non-reasoning)

MiniMax M1 80kvsQwen3.6 35B A3B (Non-reasoning)

Side-by-side comparison of pricing, 12 benchmarks, and generation speed.

MiniMax

MiniMax M1 80k

Input
$0.55/M
Output
$2.2/M
Speed
TTFT
Alibaba

Qwen3.6 35B A3B (Non-reasoning)

Input
$0.38/M
Output
$2.25/M
Speed
137 tok/s
TTFT
2.05s

Winner by Category

Cheaper
Qwen3.6 35B A3B (Non-reasoning)
Faster (tok/s)
Qwen3.6 35B A3B (Non-reasoning)
Lower Latency
Qwen3.6 35B A3B (Non-reasoning)
Benchmarks (0-2)
Qwen3.6 35B A3B (Non-reasoning)

Pricing Comparison

MetricMiniMax M1 80kQwen3.6 35B A3B (Non-reasoning)
Input ($/M tokens)$0.55$0.38
Output ($/M tokens)$2.2$2.25
Cost for 1M input + 100K output tokens:
MiniMax M1 80k$0.77
Qwen3.6 35B A3B (Non-reasoning)$0.60

Speed Comparison

Output Speed (tokens/s) — higher is better
MiniMax M1 80k
Qwen3.6 35B A3B (Non-reasoning)
137 tok/s
Time to First Token (seconds) — lower is better
MiniMax M1 80k
Qwen3.6 35B A3B (Non-reasoning)
2.05s

Editorial Analysis

Verdict. Qwen3.6 35B A3B (Non-reasoning) takes the aggregate benchmark matchup 2–0 across 2 categories. Real workloads usually care about a handful of specific tasks — see the per-benchmark table above.

Pricing. Both models sit in the budget bracket for output-token pricing. At 1.0× the per-million-token cost, MiniMax M1 80k is meaningfully cheaper if your traffic is output-heavy (long completions, document generation, agent loops). MiniMax M1 80k makes more sense when output volume is low and absolute reasoning quality justifies the premium.

Strengths. MiniMax M1 80k is strongest on Intelligence Index (17.9). Qwen3.6 35B A3B (Non-reasoning) leads on Coding Index (28.1), Intelligence Index (24.6).

Speed. Speed data is incomplete for this pair; benchmark and price should decide.

Provider. MiniMax and Alibaba sell to overlapping but distinct developer audiences: MiniMax tends to ship frontier reasoning models with premium positioning, while Alibaba often prices more aggressively. Your existing vendor relationships, billing, and SLA preferences may matter as much as the raw numbers above.

Workload cost. Workload scenarios (per million requests at 30M input + 15M output tokens): MiniMax M1 80k costs $49.50 ($594/year); Qwen3.6 35B A3B (Non-reasoning) costs $45.15 ($542/year). At a smaller 5M-input/2M-output scale (single-developer tool or prototype): MiniMax M1 80k ≈ $7.15/run, Qwen3.6 35B A3B (Non-reasoning) ≈ $6.40/run. At agent/realtime scale (200M input / 100M output per million requests): MiniMax M1 80k ≈ $330/run, Qwen3.6 35B A3B (Non-reasoning) ≈ $301/run. Qwen3.6 35B A3B (Non-reasoning) becomes more attractive at higher volume — the absolute per-token pricing difference compounds when you ship at scale.

Recommendation. Both models have legitimate use cases — the right answer depends on whether you are optimizing for benchmark ceiling, latency, or unit cost. Start with the cheaper / faster model, evaluate against your specific task, and only switch if the upgrade shows a meaningful lift.

Benchmark Comparison

Data from Artificial Analysis API — 12 benchmarks

Intelligence Index
17.924.6
Coding Index
28.1
Math Index
GPQA Diamond
MMLU-Pro
LiveCodeBench
AIME 2025
MATH-500
Humanity's Last Exam
SciCode
IFBench
TerminalBench
MiniMax M1 80k0 wins
2 winsQwen3.6 35B A3B (Non-reasoning)

Frequently Asked Questions

Which is cheaper, MiniMax M1 80k or Qwen3.6 35B A3B (Non-reasoning)?

Qwen3.6 35B A3B (Non-reasoning) is cheaper overall. Its blended price (3:1 input/output ratio) is $0.85/M tokens vs $0.96/M for MiniMax M1 80k.

Which model performs better on benchmarks?

Qwen3.6 35B A3B (Non-reasoning) wins 2 out of 12 benchmarks compared to 0 for MiniMax M1 80k. See the detailed benchmark chart above for per-category results.

Which is faster for real-time applications?

Qwen3.6 35B A3B (Non-reasoning) generates tokens faster at 137 tok/s vs — tok/s. However, Qwen3.6 35B A3B (Non-reasoning) has lower time-to-first-token (2.05s vs —s).

When should I use MiniMax M1 80k vs Qwen3.6 35B A3B (Non-reasoning)?

Choose based on your priorities: Qwen3.6 35B A3B (Non-reasoning) for lower cost, Qwen3.6 35B A3B (Non-reasoning) for stronger benchmark performance, and Qwen3.6 35B A3B (Non-reasoning) for faster generation. For latency-sensitive apps, check the TTFT comparison above.