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Shaping Industry 5.0 with AI Powered
Robot Workers

Pushing the penetration of robotics based automation to new heights with intelligent robot workers

AI Powered Robot Workers as a Service  |  Robot Dexterity with a Monthly Fee  |AI Powered Robot Workers as a Service  |  Robot Dexterity with a Monthly Fee  |
 |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI   |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI   |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI   |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI   |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI   |   Unprecedented Humanlike Dexterity   |   Unmatched Reliability & ROI  

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Quantitative Automation Roadmaps

The wearable data collection system of Acumino allows for the collection of insights from all possible work stations within a factory.

This data can be analyzed against the AI robot model performance so as to extract an automation readiness score that determines how easy to automate a work station is.

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How and Where Do You Start Automating?  |   We Offer Quantitative Automation Roadmaps   |How and Where Do You Start Automating?  |   We Offer Quantitative Automation Roadmaps   |
 |   Don’t Waste Your Time With “Wordy” LLM Generated “Best Practices”  |    Maximize The Return Of Your Automation Investment    |    Future-Proof Your Decision Making Around Automation    |    Future-Proof Your Business |   Don’t Waste Your Time With “Wordy” LLM Generated “Best Practices”  |    Maximize The Return Of Your Automation Investment    |    Future-Proof Your Decision Making Around Automation    |    Future-Proof Your Business

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The Most accurate Data of Robot Interactions

Our data collection system, is a complete wearable platform that captures video, motion, and force / torque data of the robot interactions.

The robot end-effectors (robot grippers and hands) become extensions of the human body and humans become the proxies. This allows us to collect the most accurate data of the robot physical interactions.

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