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๐—™๐—ฟ๐—ผ๐—บ ๐—”๐—ฟ๐˜๐—ถ๐—ณ๐—ถ๐—ฐ๐—ถ๐—ฎ๐—น ๐—œ๐—ป๐˜๐—ฒ๐—น๐—น๐—ถ๐—ด๐—ฒ๐—ป๐—ฐ๐—ฒ ๐˜๐—ผ ๐—ฃ๐—ต๐˜†๐˜€๐—ถ๐—ฐ๐—ฎ๐—น ๐—œ๐—ป๐˜๐—ฒ๐—น๐—น๐—ถ๐—ด๐—ฒ๐—ป๐—ฐ๐—ฒ โ€“ ๐—ง๐—ต๐—ฒ ๐—ก๐—ฒ๐˜…๐˜ ๐—˜๐˜ƒ๐—ผ๐—น๐˜‚๐˜๐—ถ๐—ผ๐—ป ๐—ผ๐—ณ ๐—ฅ๐—ผ๐—ฏ๐—ผ๐˜๐—ถ๐—ฐ๐˜€? At the EMEA Humanoid Robot Summit 2026 in Munich, Johannes Winkler, Head of Electronics Circuits & Systems and Director R&D at Rosenberger, will discuss how advanced connectivity solutions are enabling the next generation of humanoid robots. Todayโ€™s AI can analyze, plan, and communicate. The real challenge begins when intelligence leaves the digital world and must operate in the physical one. This is where the concept of Physical Intelligence comes into play - systems that can not only understand, but also perceive, move, and interact with their environment in real time. For engineers and technology leaders, a critical question emerges: How do we integrate sensors, actuators, edge AI, power delivery, and high-speed data transmission into a reliable platform for humanoid robots? As robots become more autonomous, the importance of the following continues to grow: ๐Ÿ”น Real-time data communication ๐Ÿ”น Reliable signal and power transmission ๐Ÿ”น Miniaturized high-performance connectors ๐Ÿ”น Scalable system architectures ๐Ÿ”น Robust connectivity for dynamic motion The future of humanoid robotics will not be defined by algorithms alone, but by our ability to translate digital intelligence into reliable physical action. Donโ€™t miss Johannes Winklerโ€™s session on connectivity for next-generation humanoid robots: https://robot.clcc-sh.com/ #HumanoidRobots #PhysicalAI #Robotics #Connectivity #Engineering #Rosenberger #EMEAHumanoidRobotSummit

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