AI Model Comparison

Claude 4.1 Opus vs GPT-5.4

Verdict
Claude 4.1 Opus vs GPT-5.4: GPT-5.4 scores higher on the Intelligence Index

Head-to-head specifications

MetricClaude 4.1 OpusGPT-5.4Difference
Intelligence Index30.051.0-41.2%
Context window262K tokens1M tokens
Blended price ($/1M tokens)$1.68$1.14+47.4%
Output speed (tokens/s)30151-80.1%
AccessProprietary APIProprietary API
  • GPT-5.4 leads overall capability (Intelligence Index 51.0 vs 30.0).
  • GPT-5.4 is the cheaper model to run at $1.14/1M blended tokens — about 1.5× cheaper.
  • GPT-5.4 offers the larger context window (1M tokens), useful for long documents and codebases.

Verdict: Claude 4.1 Opus or GPT-5.4?

Our recommendation
GPT-5.4 is the clearly stronger overall choice, winning most of the dimensions that matter.

Claude 4.1 Opus advantages

  • No decisive advantage on the tracked metrics.

GPT-5.4 advantages

  • General intelligence (+41%)
  • Context window (+74%)
  • Affordability (+32%)
  • Output speed (+80%)

Which should you choose?

  • Choose the GPT-5.4 if you need the strongest overall reasoning and accuracy.

Value for money

GPT-5.4 offers more intelligence per dollar (2.5× the Intelligence-Index-per-cost of the alternative), making it the stronger value for high-volume use.

Claude 4.1 Opus vs GPT-5.4: which should you choose?

Claude 4.1 Opus — Anthropic multimodal model with an Intelligence Index of 30, a 262K-token context window and a blended price of $1.68/1M tokens.

GPT-5.4 — OpenAI multimodal model with an Intelligence Index of 51, a 1M-token context window and a blended price of $1.14/1M tokens.

Claude 4.1 Opus vs GPT-5.4: GPT-5.4 scores higher on the Intelligence Index. GPT-5.4 leads overall capability (Intelligence Index 51.0 vs 30.0). GPT-5.4 is the cheaper model to run at $1.14/1M blended tokens — about 1.5× cheaper.

Capability: intelligence, coding and agentic work

On the composite Intelligence Index the GPT-5.4 scores 51.0 versus 30.0. Composite indices summarize many evaluations, but always test on your own workload before committing.

Context window and speed

The GPT-5.4 accepts up to 1 million tokens per request, which sets how much documentation, transcript or code it can reason over at once. In measured throughput, GPT-5.4 generates faster (151 vs 30 tokens/s), which matters for interactive apps and high-volume pipelines.

Pricing and access

At blended per-token rates, GPT-5.4 is the cheaper model to run ($1.14 vs $1.68 per 1M tokens). Claude 4.1 Opus is proprietary api and GPT-5.4 is proprietary api. Open-weight models can be self-hosted, trading per-call cost for infrastructure you manage; for production also weigh rate limits, throughput and data-residency requirements.

The verdict

Both are credible choices in the ai model comparison space; the specification table above lays out every metric so you can weigh the trade-offs that matter to you. Pick the one whose strengths line up with how you will actually use it.

Frequently asked questions

Is the Claude 4.1 Opus better than the GPT-5.4?

GPT-5.4 is the clearly stronger overall choice, winning most of the dimensions that matter. GPT-5.4 leads overall capability (Intelligence Index 51.0 vs 30.0).

What is the main difference between the Claude 4.1 Opus and the GPT-5.4?

GPT-5.4 leads overall capability (Intelligence Index 51.0 vs 30.0). GPT-5.4 is the cheaper model to run at $1.14/1M blended tokens — about 1.5× cheaper.

Which is better value?

GPT-5.4 offers more intelligence per dollar (2.5× the Intelligence-Index-per-cost of the alternative), making it the stronger value for high-volume use.

Which should I choose?

Choose the GPT-5.4 if you need the strongest overall reasoning and accuracy.

Methodology

Large language models are compared on independent leaderboard metrics: an Intelligence Index (a composite of reasoning and knowledge evaluations), Coding and Agentic indices where measured, community arena Elo, maximum context window, a blended API price per million tokens (weighted across cache-hit, input and output rates), and measured output speed in tokens per second. Where a model ships multiple reasoning-effort variants, we report its strongest variant. Benchmarks capture only part of real-world quality, which also depends on tool use, latency, safety and task fit — and this space moves quickly, so figures reflect the leaderboard snapshot on the page date.

MC
Marcus Chen
Hardware & Product Analyst

Marcus benchmarks processors, GPUs, phones and vehicles and maintains normalized performance databases.

MSc Computer Engineering10+ years review experience
✓ Reviewed by Priya Nair, Data Quality Reviewer.
Last updated 2026-07-01
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