Robotics Engineer (Universal Robots, Bangalore - India)
Teradyne
Our Purpose
TERADYNE, where experience meets innovation and driving excellence in every connection. We are fueled by creativity and diversity of thought and in our workforce. Our employees are supported to innovate and learn something new every day.
We cultivate a culture of inclusion for all employees that respects their individual strengths, views, and experiences. We believe that our differences enable us to be a better team – one that makes better decisions, drives innovation and delivers better business results.
Opportunity Overview
We are seeking a versatile and hands-on Robotics Engineer to join the AI Partnerships team in Bangalore, India. This is a role within an established US-based team that is expanding into India. You will work at the intersection of robotics, AI, and systems integration, collaborating with model builders and end users to deploy intelligent robotic solutions in real-world industrial environments.
The AI Partnerships team is part of the Chief AI Officer's organization and works across Teradyne's robotics portfolio, including Universal Robots (UR), the global leader in collaborative cobots, and Mobile Industrial Robots (MiR), pioneers in autonomous mobile robots. Your primary focus will be on robot manipulation applications, with additional involvement in visual inspection and autonomous mobile robots (AMRs) / mobile manipulators.
This role requires a well-rounded robotics engineer with strong software development skills, as well as practical experience in mechanical and electrical integration of robotic systems. You will be responsible for deploying and supporting AI-enabled robotic solutions that operate reliably in dynamic, production environments.
Responsibilities
- Integrate AI models into robotic systems using ROS2, Python, and C++.
- Design, implement, and test robotic subsystems involving mechanical, electrical, and software components.
- Develop and validate manipulation and perception capabilities including object detection, classification, pose estimation, and grasping.
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