Source description
About the role
We are seeking hands-on Mechanical Engineer in Solutions Architecture Team to support the design and development of robotic hardware systems, with a focus on mechanism design and mechatronics integration. This role will contribute to rapid prototyping, iteration, and validation of mechanical subsystems, particularly for end-effectors and robotic assemblies. You’ll collaborate with Gear Lab Team known for influential work in multimodal foundation models, large-scale robot learning, embodied AI , and physics simulation , pushing the frontier of humanoid robotics .
What you'll be doing
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Design and develop mechanical components and assemblies for robotic systems, with emphasis on mechanisms and transmissions
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Contribute to end-effector and gripper design, including kinematics, packaging, and integration with actuators and sensors
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Prototype and iterate designs using rapid fabrication methods (3D printing, off-the-shelf components, vendor-fabricated parts)
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Collaborate with electrical and software engineers to integrate motors, sensors, and control systems
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Perform basic analysis and validation of designs (tolerance, strength, failure modes, etc.)
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Generate clear CAD models, drawings, and documentation for fabrication and assembly
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Support lab build, test, and debugging of hardware systems
What we need to see
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Bachelor’s or Master’s degree in Mechanical Engineering or related field with over 4 years' working experience
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Strong fundamentals in mechanical design, including mechanisms, linkages, gear trains, and actuation systems
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Experience with robotic systems, mechatronics, or precision mechanical design
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Proficiency in CAD (e.g., Onshape, SolidWorks, Fusion 360, or similar)
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Familiarity with motors, transmissions, and basic control concepts
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Understanding of design for manufacturing (DFM) and tolerance stack-up
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Hands-on experience building and debugging physical hardware
Ways to stand out from the crowd
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Experience with end-effectors or gripper design
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Familiarity with cable-driven systems, compliant mechanisms, or underactuated designs
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Experience working with vendors for CNC, sheet metal, or additive manufacturing
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Exposure to sensors (encoders, force/torque, tactile) and their integration
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Basic programming or scripting for testing and data collection
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