Robotics Hardware Engineer, Reliability & Bring-up

Posted One Month Ago
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Redwood City, CA, USA
In-Office
150K-260K Annually
Mid level
Robotics
We are at the forefront of revolutionizing robotic manipulation
The Role
Own the reliability of a deployed humanoid robot fleet by diagnosing hardware, firmware, controls, and telemetry failures. Perform hands-on actuator and electronics repair, design test fixtures and mechanical modifications, build fleet health metrics and calibration tooling, analyze robot logs, improve observability, validate firmware and software changes, and document procedures. The role requires strong Python, motor-control and actuator knowledge, hardware troubleshooting, time-series analysis, and cross-functional collaboration.
Summary Generated by Built In

Dyna Robotics builds general-purpose robots powered by a proprietary embodied AI foundation model with top-in-industry generalization and real-world performance. Already deployed with customers across multiple industries, our robots do commercial-grade work in the physical world. Our team comes from Google DeepMind, Meta, and Cruise, and we're backed by CRV, First Round, and other leading investors.

The Role

We're looking for a hands-on engineer to own the reliability of our humanoid robots through early-stage hardware bring-up and prototyping. The hardware is still taking shape, and that's the point: your findings feed directly into the next revision, and the tools and standards you build now will define how reliability works at Dyna as we scale.

One day you're writing a degradation analysis; the next you're pulling an arm off a robot, probing a driver board, soldering a fix, and designing the bracket that makes it stick. You'll work across electrical, mechanical, software, and controls alongside a small team of engineers and researchers who dig into hard problems with you, and you'll be the person they call when a robot does something nobody can explain.

This is not a desk job. Expect at least 20% of your time hands-on with hardware, often much more. It's a role for people who enjoy working without a playbook, move fast on their own, and find Type 2 fun in hard, ambiguous problems.

What You'll Do
  • Root-cause failures on prototype hardware. Actuator dropouts, encoder drift, thermal events, CAN faults, and control-stack bugs, separating true hardware issues from firmware, calibration, and model-side causes.

  • Work hands-on at the bench. Test, rework, and repair actuators and electronics, from soldering and harness work to re-commissioning components on rigs you build yourself.

  • Design, build, and improve mechanical parts. Create fixtures, jigs, brackets, and robot modifications, and turn evidence about backlash, wear, and preload into concrete design changes with the mechanical team.

  • Build hardware health monitoring. Develop metrics and alerts that catch real faults, and wrangle telemetry (MCAP, npz, episode archives) from bandwidth-constrained robots.

  • Develop calibration and test tooling. Build calibration tools with safety gates, characterization sweeps for new hardware revisions, and validation harnesses, and review PRs across firmware, controls, and config.

  • Document and hand off. Write runbooks, SOPs, and incident reports clean enough that a teammate can pick up the work cold.

What You'll Bring
  • 5–10 years in robotics, mechatronics, hardware test, or reliability engineering, with significant time on early-stage robotic hardware.

  • Strong benchtop skills (soldering, multimeter, calipers, wire harnesses, basic power tools) and the ability to tear down, repair, and re-commission electromechanical assemblies on your own.

  • Mechanical intuition: how actuators fail through backlash, wear, preload loss, and end-stop damage, and how to connect physical evidence to design causes.

  • Proficiency in CAD and Altium, a working understanding of GD&T, and the ability to review drawings.

  • Firmware and motor control fundamentals: debugging PCBs, quasi-direct-drive actuators, encoders, CAN, and calibration and zeroing.

  • Working knowledge of state-space robot control and how it behaves on real hardware.

  • Strong data fundamentals and rigor about evidence (you know what a p-value actually represents).

  • Experience working cross-functionally with researchers and engineers.

Bonus Points For
  • Robotics startup experience

  • PCB design

  • Onshape

  • Familiarity with simulation

  • Building tools and SOPs that others actually adopt

At Dyna Robotics, we build technology for the real world, which requires a team as diverse as the environments our robots inhabit. We are an equal opportunity employer committed to technical rigor and mutual respect.

Don’t let a checklist stop you. Data shows that underrepresented groups often only apply if they meet 100% of the criteria. We value problem-solving and grit over keyword matching. If you’re passionate about robotics, no matter your discipline, we want to hear from you, even if you don't check every box.

Skills Required

  • 3 to 5 years of experience in robotics, mechatronics, hardware test, or reliability engineering, including significant fielded-hardware experience
  • Hands-on experience using soldering irons, multimeters, and calipers to tear down, repair, and recommission electromechanical assemblies
  • Understanding of actuator mechanical failures, including backlash, wear, preload loss, and end-stop damage
  • Working knowledge of robot control, including impedance and torque-controlled actuators, force-control parameters, and controller state lifecycles
  • Strong Python skills for data analysis and tooling
  • Experience with time-series analysis and signal statistics, including noise floors, drift, persistence rules, and alert quality
  • Fluency with actuators and motor control, including quasi-direct-drive systems, encoders, torque and current telemetry, CAN, and calibration procedures
  • Experience with observability stacks such as Datadog
  • Experience with Git and pull-request-based workflows
  • Experience with teleoperation systems, VR interfaces, or data-collection fleets
  • Experience with hardware qualification, including EVT, DVT, PVT, manufacturing, or incoming testing
  • Experience with MuJoCo simulation sanity-checking
  • Track record of building tools and SOPs adopted by other engineers
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The Company

What We Do

Our mission is to empower businesses by automating repetitive, stationary tasks with affordable, intelligent robotic arms. Leveraging the latest advancements in foundation models, we're driving the future of general-purpose robotics—one manipulation skill at a time

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