Robotics Engineer

OpenMindSan Francisco, CA
$130,000 - $180,000

About The Position

You will make robots work. OpenMind supports multiple platforms today, from quadrupeds to full-size humanoids, and now our own robots are here. You will own core autonomy capabilities across perception, SLAM, navigation, and manipulation, and you will bring up new hardware platforms from unboxing to deployment-ready. This is a role for an engineer who wants their code running on physical robots in customer environments, not in a simulator queue.

Requirements

  • Experience building software for physical robots, with strong engineering fundamentals in languages such as Python, Go, and/or C++
  • Hands-on depth in at least two of: SLAM, motion planning, perception, manipulation, sensor calibration
  • Experience with ROS2 and embedded compute platforms
  • Comfort owning problems across the stack, from driver-level issues to high-level behavior
  • Shipped software running on real hardware outside a lab

Nice To Haves

  • Experience with humanoids, quadrupeds, or other form factors such as wheeled robots
  • Experience building on top of pretrained vision-language-action foundation models and adapting them to new embodiments and tasks
  • Experience applying reinforcement learning to robot control problems such as locomotion, whole-body control, or manipulation, using frameworks like Isaac Lab or MJLab
  • Familiarity with NVIDIA Isaac, GMSL camera pipelines, or real-time middleware
  • Contributions to open-source robotics software

Responsibilities

  • Develop and harden core autonomy: 3D SLAM and navigation, localization, dynamic obstacle handling, and multi-floor traversal
  • Bring up new robot platforms: sensor integration, calibration, firmware interfaces, and SDK integration across vendors
  • Build shared fleet capabilities such as common memory and map sharing so that mapping one robot means mapping the fleet
  • Work on real-time performance: perception latency, compute budgeting on embedded platforms (NVIDIA Jetson and Thor), and sensor pipelines
  • Support deployments by making the software robust to the messiness of real environments: slopes, crowds, poor lighting, and unreliable networks
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