Careers · Role Atlas

Every role in humanoid robotics.

19 published role guides across 12 stack areas. Each guide covers the work, the skills, the tools, the projects that prove ability, and the companies hiring today.

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Robot Controls

Controls Engineer

Controls engineers make humanoid robots move with stability, precision, compliance, and safety.

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Data & Teleoperation

Data & Teleoperation Engineer

Data and teleoperation engineers build the systems that turn human demonstrations, teleoperation sessions, robot logs, sensor streams, and field failures into useful training data and engineering feedback.

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Electrical Systems

Electrical Systems Engineer

Electrical systems engineers design, integrate, test, and improve the electrical hardware that lets a humanoid robot power up, sense, compute, move, charge, communicate, and survive real-world use.

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Field Robotics / Deployment / Customer-Site Engineering

Field Robotics Engineer

Field robotics engineers make robots work outside the lab.

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Locomotion and Whole-Body Control

Locomotion Engineer

Locomotion engineers make humanoid robots stand, walk, balance, step, turn, recover, and keep moving safely through the real world.

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Manipulation and Dexterity

Manipulation Engineer

Manipulation engineers make humanoid robots use their arms, hands, fingers, sensors, and learned behaviours to interact with the physical world.

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Perception and Sensor Intelligence

Perception Engineer

Perception engineers build the systems that let humanoid robots turn raw sensor data into useful understanding of the world.

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Robotics AI

Robotics AI Engineer

Robotics AI engineers build learning-based systems that help humanoid robots perceive, reason, choose actions, learn from data, and improve through evaluation on real robot tasks.

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Robotics Product Management / Customer Workflows / Product Strategy

Robotics Product Manager

Robotics product managers decide what a robot product should become, which customer problems matter first, what the robot must prove before launch, and which trade-offs are worth making across hardware, software, AI, safety, operations, cost, and deployment.

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Robotics Software

Robotics Software Engineer

Robotics software engineers build the software layer that lets a humanoid robot sense, decide, move, recover from errors, expose useful diagnostics, and operate safely outside a demo video.

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Robotics Systems Integration

Robotics Systems / Integration Engineer

Robotics Systems / Integration Engineers make the whole robot work.

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Robotics Technical Program Management / Systems Execution / Cross-Functional Delivery

Robotics Technical Program Manager

Robotics technical program managers help complex robot programs move from ambiguous idea to working hardware, tested software, pilot deployment, and eventually scalable production.

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Simulation and Robot Training Infrastructure

Simulation Engineer

Simulation engineers build the virtual worlds, robot models, physics pipelines, synthetic data systems, and test environments that let humanoid teams develop faster without putting every idea directly onto expensive hardware.

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