Senior Controls Engineer

Posted 2 Days Ago
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San Francisco, CA, USA
In-Office
Senior level
Artificial Intelligence • Information Technology • Robotics • Software
The Role
Design, implement, and tune low-level and optimal controllers (PID, LQR, MPC) for real robots; build estimators, sensor-fusion, localization (SLAM/UKF) and path-planning; deploy and optimize real-time control code across a fleet; define fleet metrics and auto-tuning; collaborate with research, hardware, and deployment teams to diagnose and fix field failures.
Summary Generated by Built In
Our Mission

Expand human ambition in the physical world.

Critical infrastructure is constrained by labor shortages, hazardous working conditions, and operational complexity. Watney builds and deploys autonomous robotic systems that increase the speed and capacity of buildout, starting with data centers.

About the Role

At Watney, Controls Engineers build the algorithmic foundations that make robots move. Your work will directly unlock a new class of robot capabilities with a uniquely high bar across precision, stability, and compliance while operating in unstructured environments such as warehouses, factories, and data centers.
As a Controls Engineer you'll own the entire estimation & controls stack: formulating the math, writing highly optimized code, tuning in the lab, and deploying across a growing fleet of robots operating at customer sites. You will also collaborate with research, hardware, and deployment teams to diagnose and correct failure modes and to design new features for both our robots and teleoperation interfaces.
We're looking for someone with technical rigor and sharp engineering instincts who is equally comfortable deploying to robots in production, not just simulation. You should be able to derive controller formulations on a whiteboard, reason about what can cause closed-loop instability, understand and navigate large codebases.

What You'll Do
  • Own the control stack end-to-end: design, implement, and tune low-level controllers (i.e. PID,H2/H-infinity) and optimal control schemes (i.e. MPC) making sure they run reliably and high frequencies. Among many things, these controllers will be used to augment our robots capabilities (e.g. multi-robot coordination) or to make our teleoperation interface as seamless and intuitive as possible.

  • Own fleet controls metrics and guarantee its performance: evaluate and implement metrics that guarantee high-tracking accuracy and consistent behavior for all of our robots. This includes deploying adaptive-control and auto-tuning schemes to the entire fleet.

  • Build our robots’ autonomous navigation capabilities: implement optimization and sampling based path planning while localizing and mapping the environment using onboard sensors.

  • Close the loop with the field: partner with research, hardware, and deployment teams to diagnose real-world failures and translate them into more robust onboard behavior.

You May Be a Good Fit If You:
  • Have hands-on experience implementing and tuning low-level controllers (PID, LQR, etc.) on real-world systems — not just in simulation.

  • Have formulated and designed optimal and robust control algorithms (robust/stochastic MPC) and understand the tradeoffs between them.

  • Have worked on manipulation systems and implemented: inverse kinematics, inverse dynamics (RNEA) and planning algorithms

  • Have worked with real-time, low-latency systems and are comfortable profiling and optimizing performance-critical code.

  • Have worked with real-world sensors and built estimators, filters, and sensor-fusion pipelines.

  • Have implemented localization and mapping algorithms (SLAM, UKF) for wheeled or legged robots.

  • Have a strong mathematical foundation in linear algebra, calculus, and convex optimization.

We’re committed to building a diverse, inclusive team. At Watney Robotics, we welcome people of all backgrounds and identities, and we make hiring decisions based on skills, experience, and potential. If you’re passionate about robotics but don’t meet every requirement, we still encourage you to apply!

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Skills Required

  • Hands-on experience implementing and tuning low-level controllers (PID, LQR, H2/H-infinity) on real-world systems
  • Designed and implemented optimal and robust control algorithms (MPC, robust/stochastic MPC)
  • Experience with manipulation systems, inverse kinematics, and inverse dynamics (RNEA)
  • Experience with real-time, low-latency systems and profiling/optimizing performance-critical code
  • Built estimators, filters, and sensor-fusion pipelines for real-world sensors
  • Implemented localization and mapping algorithms (SLAM, UKF) for wheeled or legged robots
  • Implemented optimization-based and sampling-based path planning and navigation
  • Strong mathematical foundation in linear algebra, calculus, and convex optimization
Am I A Good Fit?
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The Company
HQ: San Francisco, California
13 Employees
Year Founded: 2024

What We Do

Join us on our mission to deploy an abundant, intelligent workforce. Watney develops autonomous robots to enable the growth of critical infrastructure. Having recently raised $21 million in seed funding from Conviction, Abstract and A*, we’re partnering with the world’s largest hyperscalers to accelerate datacenter buildout and breakfix. You'll work alongside - The former GSM for the iPhone - The former founding engineer at Worldcoin - The engineer who built the world’s fastest EV racecar at ETH Zurich - … and many more Join now for a ground-floor seat with outsized ownership and visibility as we scale from prototype to production fleets. Ship real systems, shape the rollout playbook, and leave fingerprints on a category-defining robotics company.

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