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Field Robotics Operator Jobs in California (NOW HIRING)

Robotics Engineer

San Francisco, CA ยท On-site

$160K - $250K/yr

... and fields. We are looking for individuals with a proven record of exceptional ability and a ... Foundation is building a software platform that spans cloud infrastructure, robot operating systems ...

Robot Autonomy Engineer-Federal

Irvine, CA ยท On-site

$70K - $120K/yr

... reliable, and field-ready AI systems that address the most complex challenges in robotics ... Partner with customer teams to train and support operators in achieving operational readiness.

Robot Field Operator This is an overnight position running our robotics in the field with a rotating schedule. Location: Oxnard, CA (Our office is located in Santa Maria) As the Robot Field Operator ...

THIS IS AN OVERNIGHT POSITION RUNNING OUR ROBOTICS IN THE FIELD WITH A ROTATING SCHEDULE. Location: Oxnard, CA (Our office is located in Santa Maria) As the Robot Field Operator, you will work with ...

THIS IS ANOVERNIGHT POSITION RUNNINGOUR ROBOTICS IN THE FIELD WITH A ROTATING SCHEDULE. Location:Oxnard, CA (Our office is located in Santa Maria) As the Robot Field Operator, you will work with ...

Robot Field Operator Location: Oxnard, CA As the Robot Field Operator, you will work with cutting-edge technology and play an important role as we expand to farms across California's Central Coast.

Showing results 21-40

Field Robotics Operator information

What is the difference between Field Robotics Operator vs Drone Pilot?

AspectField Robotics OperatorDrone Pilot
CredentialsTechnical certifications, safety trainingRemote pilot certification, FAA license
Work EnvironmentConstruction sites, agricultural fields, industrial areasOpen outdoor spaces, urban environments
Industry UsageMining, agriculture, constructionMedia, surveying, inspection

Both roles involve operating remotely controlled equipment, but a Field Robotics Operator typically manages ground-based robots in industrial or agricultural settings, while a Drone Pilot operates aerial drones for surveying, inspection, or media purposes. The skills and certifications overlap in remote operation and safety, but the work environments and industry applications differ significantly.

How much do field robotics operators make?

Field robotics operators typically earn between $50,000 and $80,000 annually, depending on experience, location, and the complexity of the equipment they operate. Higher salaries are common for those with specialized skills, certifications, or experience working with autonomous systems and remote controls.

What does a field robotics operator do?

A field robotics operator is responsible for operating, monitoring, and maintaining robotic systems used in outdoor environments such as agriculture, construction, or mining. They troubleshoot technical issues, ensure safety protocols are followed, and often use remote controls or specialized software to manage robotic equipment. This role typically requires technical skills, familiarity with robotics tools, and adherence to safety standards.
Infographic showing various Field Robotics Operator job openings in California as of September 2026, with employment types broken down into 100% Full Time. Highlights an 84% In-person, and 16% Remote job distribution.

Founding Engineer, Robot Behavior and Decision-Making

San Francisco, CA โ€ข On-site

Other

Posted 10 days ago


Job description

The Bigger Picture

At Andromeda, we're building the social intelligence layer for humanoid robots - technology that allows robots to understand people, build relationships and become a meaningful part of everyday life.

Our first robot, Abi, is already doing this in aged care and healthcare, where she brings conversation, companionship and engagement to people every day.

Now we're scaling from early deployments into a platform that can operate across thousands of real-world environments. We're looking for individuals who want to tackle hard problems across robotics and AI, and help define what it means for robots to live and interact alongside people.

The Role

We are looking for an engineer to found our Mission Autonomy team, which will own our robotโ€™s long-duration decision-making layer and orchestrate the totality of Abiโ€™s day. Mission Autonomy continuously decides what Abi should do next, balances task-level trade-offs, and adapts the robotโ€™s plan across an eight-hour shift. It sits above and orchestrates Abiโ€™s existing layers that perform conversations, waypoint navigation and obstacle avoidance, perception, gestures, and operator tooling.

As the founding Mission Autonomy team member, you will propose and build Andromedaโ€™s Mission Autonomy (MA) architecture from the ground up, using frontier models and evaluation (both sim and real-world) to train and launch MA, and work with our voice agent, mobile autonomy, and gestures teams to design harnesses through which MA can execute behaviors on Abi. Once built, MA should guide Abi through a home, choose when to join an interaction, keep her character, and recover when the plan breaks. There is no playbook for this. Youโ€™ll need a keen eye for model evaluation and tradeโ€‘offs, balancing architectural leadership with strategic handsโ€‘on work. The work combines research with practical robotics.

Key Responsibilities
  • Design the system. Challenge our initial concepts as you discover what a full shift actually needs: is it formulated as an agent harness ingesting scene graphs and acting over robust, typed action primitives? Or will you invoke World Models and VLA components? You will shape the Mission Autonomy roadmap for Andromeda.
  • Prototype the system. Get a mission autonomy loop running in simulation early. Use it to decide what we build, before the company commits teams to an architecture.
  • Coโ€‘design and build simulation capabilities with our simulation engineer.
  • Own the technical direction and run the design conversations with autonomy, chatbot, perception, audio and platform teams. Turn them into contracts those teams can build against.
  • Shape the action primitives. Work out what the mission needs from the layers underneath. Specify it properly. Get it built, whether that means convincing the owning team or writing it yourself.
  • Design for degradation. Define how Abi should behave when audio, perception, connectivity, navigation, or platform health degrades. Make those moments safe, useful, and legible to operators, while preserving Abiโ€™s character rather than treating every failure as a generic error state.
  • Establish deployment patterns. Create a repeatable path from simulation prototypes to demonstrations on the robot, with the configuration, observability, test gates, and rollback mechanisms needed to iterate safely.
  • Build the evaluation system. Define benchmarking protocols, evaluation methods, and reporting that let us continuously measure the longestโ€‘horizon missions Abi can complete, the interventions they require, and the failure modes that limit them.
Your first 90 days

Month 1: Learn about Abi in the real world: read the Concept of Operations document, challenge its assumptions, and spend time with Abi in an agedโ€‘care home. Bring the autonomy, conversational AI, perception, audio, platform, and simulation teams together to define how the system makes decisions and how the layers work together. Deliver the first architecture and a clear sixโ€‘month build plan, including what not to build.

Month 2: Build a working slice in simulation: Abi drives to a residentโ€™s room, arrives safely, and starts a conversation. Use simulation to discover what breaks when the resident is absent, the route changes, or a subsystem degrades. Turn those lessons into better interfaces, a repeatable evaluation harness, and the next set of hypotheses and assumptions to test.

Month 3: Take the prototype from simulation to Abi in the lab. Establish the deployment, monitoring, replay, and evaluation patterns that show how far Abi can run autonomously, what stops her, and why.

Skills and Experience Required
  • 5+ years of experience building autonomous systems, with an MS or PhD in Robotics, Computer Science, or a related field, or equivalent practical experience.
  • Previous autonomy experience in areas such as self-driving, mobile robotics, warehouse robotics, field robotics, or similar, including at least one deployment lifecycle from concept through deployment and operations.
  • Experience with ROS 2, Nav2, and simulation tools such as Isaac Sim, Gazebo, or MuJoCo.
  • Awareness of safetyโ€‘critical design principles for robots operating around people.
  • Strong software engineering skills in Python, C++, or Rust. Comfortable working across the stack, from highโ€‘level planning and behavior to lowโ€‘level robot interfaces and runtime constraints.
  • Practical robotics experience. Comfortable bringing up hardware, debugging sensors and actuators, and tinkering with the robot in the office.
  • Strong communication and influence skills, particularly when working across Australian teams and with engineers whose systems you do not directly own.
  • Architecture and software depth. Able to steer the system design, define interfaces and contracts, and write the first versions of the primitives rather than wait for another team.
Bonus points
  • Experience building mission autonomy systems in robotics, defense technology, or similar domains.
  • Research experience, ideally at masterโ€™s or PhD level, applying LLM techniques to longโ€‘duration robotic task planning, orchestration, tool use, or error recovery.
  • Experience designing simulationโ€‘based evaluation systems, including benchmarks, scenario harnesses, metrics, failure taxonomies, and reporting for longโ€‘horizon missions.
  • Experience with robot planning and behavior architectures, including Planning Domain Definition Language (PDDL), taskโ€‘andโ€‘motion planning, behavior trees, or finiteโ€‘state machines for baselining.
  • Technical judgment. Able to reason about tradeโ€‘offs explicitly, and earn the trust of senior autonomy engineers and the teams that own adjacent parts of the stack.

The expected base salary for this role is $200,000 to $240,000 USD.

PLEASE NOTE: The advertised salary range is intended as a guide. For an exceptional candidate whose experience and capabilities align strongly with this role, we are open to discussing a package that reflects the value they bring. Given the importance of this hire, we are committed to investing appropriately in the person best placed to help us achieve our mission.

We are an equal opportunity employer and value diversity at our company. We do not discriminate on the basis of race, religion, colour, national origin, gender, sexual orientation, age, marital status, veteran status, or disability status.

Our Values
  • Empathy โ€“ Kindness and compassion are at the heart of everything we do.
  • Play โ€“ Play sharpens focus. It keeps us curious, fast and obsessed with the craft.
  • Never Settle โ€“ A relentless ambition, bias toward action, and uncomfortable levels of curiosity.
  • Tenacity โ€“ Tenacious under pressure, we assume chaos and stay in motion to adapt and progress.
  • Unity โ€“ Different minds. Shared mission. No passengers.

Letโ€™s build the future together.

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