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SHARE@NTU Corporate Laboratory focuses on the development of key technologies for humanoid robotics, aimed at enabling intelligent services, industrial assistance, and human-centric applications
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externally funded research projects is desirable. • Familiarity with or hands-on experience in UAVs (drones), opto-electronic systems (e.g., cameras and vision sensors), robotic systems, and
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rare opportunity to work across the complete development chain of a medical device: from designing the sensors, through the readout electronics and data analysis, to integrating the system with robotic
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candidate will contribute to the design, modelling, fabrication and testing of flexible sensors, wearable devices and robotic sensing solutions for human-robot interaction and healthcare robotics applications
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. Key Responsibilities: Develop and implement perception and control algorithms for robotic arms and embodied AI systems. Assist in integrating multimodal AI models (vision, language, force sensors) with
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Localization and Perception System based on Multi-sensor Fusion Job Description: Responsible for development of robust and reliable sensor fusion algorithms for localization and navigation algorithms of robot in
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sensing technology. You will refine and optimise a bespoke characterisation system, fabricate optical fibre sensors and evaluate their performance. You will also apply digital signal processing techniques
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This position focuses on the design, development, and evaluation of fluidic logic architectures for next-generation soft robotic systems. The work forms part of a research programme advancing
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frameworks, and technical risk assessments. Design and integrate sensors, actuators, embedded controllers, power systems, and electromechanical subsystems/components. Develop robotic platforms, manipulators
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- $137,500 + 17% superannuation About the opportunity The University of Sydney’s Australian Centre for Robotics (ACFR) is one of Australia’s leading robotics research groups and undertakes fundamental and