Skip to content

Compare models

Put up to 4 models beside each other — token prices, context windows, capabilities and provider, from the same catalogue the model pages read.

  1. Perceptron Mk1.5PerceptronRemove
  2. GPT-6 LunaOpenAIRemove
  3. S2.1 ProFish AudioRemove
  4. Claude Opus 5.5AnthropicRemove

4 is the maximum. Remove one to add another.

perceptron-mk1.5 vs gpt-6-luna vs s2.1-pro vs claude-opus-5.5
AttributePerceptron Mk1.5perceptron-mk1.5GPT-6 Lunagpt-6-lunaS2.1 Pros2.1-proClaude Opus 5.5claude-opus-5.5
Pricing
Input$0.15 / 1M$0.10 / 1M$0 / 1M$4.00 / 1M
Output$1.50 / 1M$0.50 / 1M$0 / 1M$20.00 / 1M
Cache Write (5m)$0.15 / 1M$0.10 / 1MNot applicable$5.00 / 1M
Cache Write (1h)$0.15 / 1M$0.10 / 1MNot applicable$8.00 / 1M
Cache Read$0.15 / 1M$0.10 / 1MNot applicable$0.40 / 1M
Web Search$0 / 1M$0 / 1M$0 / 1M$0 / 1M
Context
Max context36.9K1.1MN/A1M
Max outputN/AN/AN/AN/A
Capabilities
VisionNoYesNoYes
Function CallingNoYesNoYes
JSON ModeNoYesNoYes
StreamingYesYesNoYes
Catalogue
ProviderPerceptronOpenAIFish AudioAnthropic
Categorychatchatvoicechat
Charge typePay As You GoPay As You GoPay As You GoPay As You Go
Released2026-09-25—2026-07-29—
Description
SummaryPerceptron Mk1.5 chat model that accepts audio input. Audio and text input are billed per token.GPT-6 Luna is the fast, cost-efficient model in OpenAI's GPT-6 series, optimized for high-volume and latency-sensitive workloads such as chat, classification, and lightweight agentic tasks. It combines low-cost, responsive inference with the GPT-6 family’s improvements in factual reliability and clear, concise communication. At higher reasoning effort, GPT-6 Luna can also handle complex software engineering and computer-use workflows that previously required a Sol-tier model, making it a versatile choice for scalable production applications that need to balance speed, cost, and capability.Fish Audio S2.1 Pro text-to-speech. Billed per UTF-8 byte of input text.Claude Opus 5.5 is Anthropic's flagship model for advanced reasoning, coding, and long-horizon agentic workflows, succeeding Opus 5. It excels at multi-step changes across large codebases, code review and bug detection, financial and scientific analysis, and understanding dense charts, diagrams, and screenshots, with stronger grounding when reporting figures and citing sources. Compared with Opus 5, it completes comparable tasks with fewer steps and lower token usage while providing clearer, more concise progress reporting. With adaptive thinking and configurable effort levels, Opus 5.5 can balance reasoning depth, latency, and cost, making it well suited for both demanding autonomous workflows and latency-sensitive professional tasks.