Teleoperations Research Engineer, Atlas

Boston DynamicsWaltham, MA
$150,284 - $200,001

About The Position

The Atlas team at Boston Dynamics is pushing the limits of robotic mobility and manipulation. As a Teleoperation Research Scientist, you will design and implement cutting-edge teleoperation and human-robot interaction systems that enable humanoid robots to execute complex, coordinated tasks in real-world environments. You will work closely with cross-functional teams in controls, perception, machine learning, and hardware to build intuitive and scalable teleoperation interfaces that bridge the gap between human demonstration and autonomous robot behavior, facilitate large-scale data collection for foundation models, and advance research in dexterous manipulation, whole-body mobile teleoperation, and human-robot interfaces. This role combines deep technical research with hands-on experimentation on one of the most advanced humanoid platforms in the world.

Requirements

  • 3+ years of industry experience or PhD in Robotics, Computer Science, Human-Computer Interaction, or a related field.
  • Experience with real-time control, sensing, and communication systems in robotics.
  • Proficiency in Python and/or C++
  • Strong analytical and debugging skills.
  • Strong communication and collaboration skills

Nice To Haves

  • PhD in Robotics, Computer Science, Human-Computer Interaction, or a related field.
  • Prior experience with VR/AR-based teleoperation systems, haptics, and force-feedback systems.
  • Experience with robot hardware and real-world robot deployments
  • Experience with user studies and quantitative evaluation of human-robot systems.
  • Familiarity with large-scale data collection for learning-based control or foundation model training.

Responsibilities

  • Implement and evaluate novel teleoperation interfaces (e.g., VR, motion capture, wearable devices, or mixed reality systems) to collect high-quality manipulation and locomotion demonstrations for learning-based control.
  • Integrate and optimize hardware and software components for low-latency, high-bandwidth communication and control.
  • Analyze demonstration data to improve data efficiency, operator ergonomics, and task performance.
  • Write high-quality (documented, tested, maintainable) C++ and Python code.
  • Support integration of teleoperation and learned policies into end-to-end proof-of-concept demonstrations.

Benefits

  • medical
  • dental
  • vision
  • 401(k)
  • paid time off
  • annual bonus structure
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