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Claude Mythos 5
Anthropic
Empowering trusted organizations with advanced, secure AI capabilities.
Claude Mythos 5 is Anthropic’s restricted-access Mythos-class AI model built for trusted organizations that require the highest level of Claude capability. The model shares the same underlying architecture as Claude Fable 5, but is offered with certain safeguards removed for approved use cases and vetted users. Claude Mythos 5 is designed for advanced cybersecurity, software engineering, scientific discovery, long-context reasoning, and autonomous research workflows. It is initially deployed through Project Glasswing for cyberdefenders and critical infrastructure providers. The model is intended to help security teams analyze complex systems, support defensive cybersecurity work, and protect important software environments. Claude Mythos 5 also demonstrates major potential in life sciences, where it can assist with protein design, binding-site selection, bioinformatics workflows, and research hypothesis generation. Anthropic reports that the model can carry out extended technical tasks, recover from failures, and operate with a high degree of autonomy. Its capabilities in genomics include assembling large-scale single-cell datasets and designing custom machine learning approaches for biological research. Because these capabilities may be dual-use, Anthropic limits access through trusted programs and applies a 30-day retention policy for Mythos-class traffic. The model is priced at $10 per million input tokens and $50 per million output tokens. Claude Mythos 5 helps vetted organizations apply frontier AI to critical defense, infrastructure, and scientific problems while maintaining controlled access and oversight.
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GPT-5.6 Terra
OpenAI
Empowering your workflows with balanced intelligence, speed, affordability.
GPT-5.6 Terra is a balanced model in OpenAI’s GPT-5.6 series, designed to provide strong performance for everyday work while keeping costs lower than the flagship Sol tier. The GPT-5.6 family includes Sol for the highest capability, Terra for balanced work, and Luna for fast and affordable use cases. Terra is positioned as a practical option for developers, businesses, and enterprise teams that need capable reasoning, coding, automation, research support, and defensive security assistance without always using the most expensive model. According to the pasted preview text, Terra offers competitive performance to GPT-5.5 while being 2x cheaper. It appears in GPT-5.6 benchmark previews for Terminal-Bench 2.1, GeneBench v1, ExploitBench, and ExploitGym, showing that the model is intended for technical and long-horizon tasks as well as general work. Terra can support coding workflows that require planning, iteration, command-line reasoning, and tool coordination. It can also support legitimate cybersecurity workflows such as code review, vulnerability research, patch development, debugging, security education, and defensive testing. The model is developed with layered safeguards matched to its capabilities, including trained refusals, real-time checks, misuse classifiers, monitoring, enforcement, and account-level review. OpenAI also describes automated red-teaming and third-party human expert red-teaming as part of the broader GPT-5.6 safety process. Terra is priced below Sol in the pasted API pricing structure, with lower input and output costs per 1 million tokens. GPT-5.6 Terra helps organizations use a capable GPT-5.6 model for production workflows where performance, cost efficiency, and safety controls all matter.
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Claude Opus 5
Anthropic
Empower your projects with intelligent, efficient AI solutions.
Claude Opus 5 is Anthropic’s advanced Opus model designed for high-value coding, knowledge work, problem-solving, automation, scientific research, and everyday AI workflows. The model is positioned as a thoughtful and proactive system that approaches the frontier intelligence of Claude Fable 5 at half the price. Anthropic says Claude Opus 5 delivers greatly improved performance for the same cost as Opus 4.8, with base pricing of $5 per million input tokens and $25 per million output tokens. The model supports effort settings that allow customers to optimize for deeper intelligence or conserve tokens for faster and cheaper results. Claude Opus 5 performs especially well on software engineering evaluations, including tasks that require debugging, code generation, root-cause analysis, test creation, and multi-step implementation. It also shows strong results on knowledge work, business automation, computer use, novel problem solving, and research-heavy tasks. Anthropic highlights that Opus 5 is better at checking its own work, iterating until it succeeds, and building supporting tools when a task requires it. The model improves on Opus 4.8 across life sciences evaluations, including structural biology, organic chemistry, bioinformatics, molecular structure inference, and protein function tasks. Claude Opus 5 includes alignment and safety protections that aim to allow beneficial cybersecurity and biology use cases while restricting riskier exploit generation, penetration testing, and certain autonomous misuse scenarios. It is available on Claude Max as the default model, on Claude Pro as the strongest model, and through the Claude API as claude-opus-5, with a Fast mode that runs around 2.5 times the default speed.
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GPT-5.4 mini
OpenAI
Fast, efficient AI model for high-performance, scalable tasks.
GPT-5.4 mini is a high-performance, efficient AI model designed to handle complex tasks while maintaining low latency and cost. It is part of the GPT-5.4 model family and brings many of the strengths of larger models into a more lightweight and faster format. The model is optimized for coding, reasoning, and multimodal tasks, allowing it to work with both text and image inputs effectively. It supports advanced features such as tool calling, function execution, and integration with external systems, making it highly adaptable for real-world applications. GPT-5.4 mini is particularly effective in scenarios where speed is critical, such as coding assistants, real-time decision systems, and interactive AI tools. It significantly improves upon earlier mini models by delivering faster response times and stronger performance across multiple benchmarks. The model is also well-suited for use in subagent systems, where it can handle smaller, specialized tasks within a larger AI workflow. This allows developers to combine it with larger models for more efficient and scalable architectures. GPT-5.4 mini performs well in tasks such as code generation, debugging, data processing, and automation. Its ability to interpret screenshots and visual data further enhances its usefulness in multimodal applications. With a large context window and strong reasoning capabilities, it can handle complex inputs and long-form interactions. At the same time, its efficiency makes it cost-effective for high-volume deployments. By balancing speed, capability, and scalability, GPT-5.4 mini enables developers to build powerful AI solutions that are both responsive and economical.
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GPT-5.4 nano
OpenAI
Fast, efficient AI for scalable automation and task execution.
GPT-5.4 nano is a highly efficient and lightweight AI model designed to deliver fast and cost-effective performance for simple and repetitive tasks. As part of the GPT-5.4 family, it focuses on speed and scalability rather than handling deeply complex reasoning workloads. The model is optimized for tasks such as classification, data extraction, ranking, and basic coding support. It is particularly well-suited for applications that require processing large volumes of requests with minimal latency. GPT-5.4 nano provides improved performance over earlier nano models while maintaining a significantly lower cost compared to larger models. It supports essential capabilities like tool integration, structured outputs, and automation workflows. The model is often used as a subagent in multi-model systems, where it efficiently handles smaller tasks while larger models manage more complex operations. This allows developers to design scalable architectures that balance performance and cost. GPT-5.4 nano is ideal for backend processes such as data labeling, content filtering, and information extraction. Its fast response times make it suitable for real-time applications and high-throughput environments. Despite its smaller size, it maintains strong reliability for well-defined tasks. The model can also be integrated into pipelines that require quick decision-making or preprocessing. By focusing on efficiency and speed, GPT-5.4 nano helps reduce operational costs while maintaining productivity. Overall, it is a practical solution for businesses and developers looking to scale AI workloads without sacrificing performance for simpler tasks.
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GPT-6
OpenAI
Revolutionizing AI: Empowering developers with advanced capabilities.
GPT-6 is an upcoming OpenAI model expected to become the next major generation in the GPT family, but it has not yet been officially released or documented as a public product. OpenAI’s current public model materials focus on the GPT-5.6 family, including GPT-5.6 Sol as the flagship model, GPT-5.6 Terra as a balanced option, and GPT-5.6 Luna as a cost-efficient model. Because GPT-6 has not been formally announced, there are no confirmed public details for its API model name, pricing, benchmark results, model card, system card, context window, modalities, safety profile, or availability. Any description of GPT-6 should therefore frame it as forthcoming rather than available today. Based on the trajectory of recent OpenAI models, GPT-6 is likely to target stronger reasoning, coding, professional knowledge work, scientific research, multimodal understanding, and agentic task execution. It may also extend OpenAI’s work on tools such as web search, file search, function calling, computer use, structured outputs, and long-context workflows. For enterprises, GPT-6 could become relevant for advanced internal copilots, AI agents, support automation, workflow orchestration, software development, document intelligence, and decision support. For developers, it may provide a more capable foundation for production AI applications that require reliability, tool use, reasoning depth, and scalable deployment. For researchers and technical teams, GPT-6 may support more complex analysis, code generation, experimentation, and multimodal problem solving. Until OpenAI publishes official details, teams should rely on GPT-5.6 and other documented OpenAI models for production planning. By describing GPT-6 as an upcoming model, teams can acknowledge OpenAI’s likely future direction while avoiding unsupported claims about capabilities or release details.