PaXini AI Showcased Robotics Tech in Pittsburgh
The company demonstrated its full-stack robotics lineup at the recent IROS 2026 conference.
Updated on Oct. 3, 2026 in Robotics

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PaXini AI exhibited a range of robotics products and tactile sensors during the IROS 2026 conference held in Pittsburgh. The event served as a platform for the company to connect with academic and industry leaders through its new research initiative.
Why it matters
By hosting industry events, PaXini AI aims to build consensus on tactile infrastructure and data standards for embodied artificial intelligence. These efforts are designed to harmonize technical routes across global research institutions.
The PX6AX GEN3 tactile sensors achieved a 67% insertion success rate, reducing interaction force by 60% and torque by 44%. The system demonstrated its precision by completing assembly tasks with a clearance of 0.05 mm.
The players
PaXini AI
This robotics technology firm focuses on developing tactile infrastructure and full-stack solutions for embodied AI.
Institute of Automation of the Chinese Academy of Sciences
This research institution explores automation technologies and presented experimental findings using new tactile sensors at the conference.
The details
PaXini displayed custom chips, dexterous hands, and data-collection gloves designed to capture tactile, visual, and joint-angle signals for model training. The company integration of perception and execution layers allows robots to achieve high levels of contact awareness during complex assembly operations.
Timeline
September 27 to October 1, 2026: IROS 2026 occurred in Pittsburgh.
August 2026: The PaXini Global Horizons program launched.
October 3, 2026: The activity report regarding these events was published.
The Tech Race
The development of standardized tactile sensors reflects an industry-wide shift toward creating more dexterous and contact-aware humanoid robots. This initiative positions the company to compete against legacy automation firms by establishing a common data framework for model training.
Advancements in robotic tactile sensing could soon lead to more precise automation in manufacturing, potentially improving the reliability of electronics production. While these tools currently serve researchers, they form the technical foundation for future robots capable of handling delicate tasks in human environments.
The takeaway
The integration of tactile sensors and data-collection gloves represents a significant step toward improving robotic dexterity in real-world scenarios. Researchers and engineers can follow the outcomes of the Global Horizons program to track shifts in how machines learn to interact with physical objects.
Further reading
Learn more about the latest innovations in robotics.
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