by datastudy.nl

Head-to-head comparisons of frontier AI models, rebuilt daily from public benchmark data

Head to head

MiMo-V2.6-Flash vs Claude Opus 5.5

How MiMo-V2.6-Flash and Claude Opus 5.5 stack up across benchmarks, pricing, speed, and the workloads that matter.

MiMo-V2.6-Flash

Xiaomi · Open weights

Blended price$0.16per 1M tokens
Context1.05Mtokens
Speed6.7tok/s
Benchmarks16results
VS

Claude Opus 5.5

Anthropic · Proprietary

Blended price$5.78per 1M tokens
Context1Mtokens
Speed9.3tok/s
Benchmarks31results

MiMo-V2.6-Flash is the cheaper of the two at $0.16 per million blended tokens, about 37.13x less than Claude Opus 5.5 at $5.78. On coding, Claude Opus 5.5 leads by about 19 points in our normalized benchmark average.

The table below breaks down every workload axis where both models have published results. Each score is a normalized 0 to 1 average across the benchmarks tagged with that category. A gap of a few points is noise; a gap of ten or more is a real difference in capability. Where one model has not reported a result, the cell shows n/a and the missing benchmark does not drag its average down.

Benchmark scores by workload

WorkloadMiMo-V2.6-FlashClaude Opus 5.5Edge
Reasoning 67% 74% +6.8 pts
Coding 54% 73% +19.3 pts
Agents & tool use 55% 63% +7.8 pts
Math n/a 74% n/a
Vision & multimodal 78% 80% +1.8 pts
Writing 61% 61% +0.5 pts
Knowledge & factuality 71% 77% +5.6 pts

The headline benchmarks below are the most widely cited individual tests. GPQA Diamond measures graduate-level reasoning in physics, chemistry, and biology. SWE-Bench Verified tests whether a model can fix real GitHub issues. MMMU-Pro covers college-level multimodal understanding across six disciplines. AIME and FrontierMath push competitive and research math. BrowseComp measures web research ability.

Headline benchmarks

BenchmarkMiMo-V2.6-FlashClaude Opus 5.5

Benchmarks tell you what a model can do in a controlled setting. They do not tell you whether it will work on your specific task, with your specific data, at your specific scale. The recommendations below map each common workload to whichever of these two models scores higher on the relevant axis. Use them as a starting point, not a final answer.

Which should you choose?

Hard reasoning

Multi-step analysis, research, and problems that need sustained thought.

Claude Opus 5.5

Coding & software

Writing, reviewing, and debugging code across a real codebase.

Claude Opus 5.5

Agents & tool use

Long-running agents that call tools, browse, and act on their own.

Claude Opus 5.5

Math & science

Formal math, competitive problems, and quantitative science.

Claude Opus 5.5

Vision & documents

Reading images, screenshots, charts, and dense documents.

Claude Opus 5.5

Writing & drafting

Copy, emails, and long-form drafting where tone matters.

MiMo-V2.6-Flash

High-volume & cost-sensitive

Cheap, repetitive calls where the blended token price dominates.

MiMo-V2.6-Flash

Low latency & interactive

Chat, autocomplete, and real-time experiences that need snappy responses.

Claude Opus 5.5

Scores are normalized from public benchmarks published by llm-stats.com and averaged per workload. Pricing is the blended input/output cost per million tokens at an 8:1 mix. Refreshes daily. How this works.