About this opportunity
Garuda Ventures lists this Senior Robotics Controls Engineer opportunity in brisbane, California. Review the employer’s description below for duties, qualifications and application requirements.
Job description
About Mytra
We’re creating an entirely new way to solve the most ubiquitous problem in industry - moving and storing material. We’re applying robotics and distributed software to create a new class of product for this $1T market. We’re focused on the supply chain industry first. The industry is in a massive bind with the continued growth of e-commerce, sharp rise in costs, and supply chain disruptions. What has been a “sleepy” industry for decades is now at the epicenter of sustaining the global economy.
Senior Robotics Controls Engineer
Mytra’s robotics team is developing next-generation warehouse automation using physics-based, first-principles design. We are seeking a Robotics Controls Engineer to architect and implement advanced motion control systems that integrate sensing, perception, and actuation into reliable, high-performance robotic platforms. This role spans real-time embedded software, communication architecture, and control algorithm design to deliver precise, safe, and efficient robot motion in complex environments. You will work across mechanical, electrical, and software disciplines to push the boundaries of warehouse robotics.
Responsibilities
Architect and implement motion control frameworks for multi-axis robotic systems, including actuator control, trajectory generation, and dynamic path execution
Design and integrate communication architectures for distributed controllers, sensors, and actuators, including pub/sub messaging frameworks (e.g., NATS, ROS2, custom protocols)
Develop, simulate, and tune control algorithms for position, velocity, torque, and force control, incorporating model-based techniques and Kalman filter–based state estimation
Lead sensor fusion and localization efforts to ensure robust, real-time state estimation in both simulated and physical environments
Define motor and sensor strategies, including hardware selection, calibration, and diagnostics, to meet performance, safety, and scalability requirements
Build and maintain simulation and automated test tools to prototype new control strategies, validate them in CI/CD, and translate them into production-ready implementations
Iterate between simulation and hardware testing to diagnose corner cases, improve algorithms, and ensure robustness in diverse real-world conditions
Deliver high-quality, maintainable code in C++ and Python for real-time and high-level control systems
Qualifications
Bachelor’s or Master’s degree in Mechanical Engineering, Electrical Engineering, Robotics, Computer Science, or related field
Strong background in control theory, kinematics, dynamics, and system modeling for electromechanical systems
Proficiency in C/C++ and/or Python for embedded and high-level control software
Demonstrated ability to balance control system complexity with simplicity, elegance, and robustness in production implementations
Experience with motor control (BLDC, stepper, servo), sensor integration (eg. encoders, IMUs, cameras), and real-time operating systems (e.g., FreeRTOS, RT Linux, Zephyr)
Familiarity with CAN, pub/sub communication frameworks, distributed control architectures, and safety-critical system design standards (ISO 13849, IEC 61508)
Ability to debug and optimize complex electromechanical systems with limited telemetry, using both software and hardware tools
Demonstrated experience in approaching challenges with a physics-based, first-principles mindset to develop innovative solutions
#J-18808-Ljbffr
Worksite address
brisbane, CA, 94005, US
Who can apply
Review the original listing for work authorization, qualifications and employer requirements.