Staff Mechanical Engineer – Upper Body Tech Lead

Apptronik Apptronik · Robotics · HQ · Hardware

Staff Mechanical Engineer to lead the design, integration, and verification of the upper body (torso, head, arms) of the Apollo humanoid robot. This role requires expertise in kinematics, complex mechanism design, high-density integration of compute, battery, and sensors, and translating industrial design into functional A-surfaces. The engineer will own the complete lifecycle of the upper body stack and mentor other engineers.

What you'd actually do

  1. Define the mechanical architecture for the torso, head, and arms.
  2. Serve as the primary bridge between Industrial Design (ID) and Engineering.
  3. Drive the development of high-performance robotic limbs.
  4. Lead the tight-space integration of the compute cluster (NVIDIA Jetson/SoMs), battery modules, and perception sensors (LiDAR, Depth Cameras) within the torso and head.
  5. Define and execute the Design Verification Test (DVT) plan for the upper body stack, including environmental, vibration, and lifecycle testing.

Skills

Required

  • Mechanical architecture definition
  • Kinematic design
  • Mechanism design
  • High-density integration
  • Packaging of compute, battery, and sensors
  • Industrial design integration
  • A-surface surfacing
  • Cable management for high-flex joints
  • Design Verification Testing (DVT)
  • Mechanical design of complex robotic systems
  • Expert-level proficiency in surfacing tools (SolidWorks, NX, Catia)
  • Design of multi-axis robotic arms or high-DOF dynamic mechanisms
  • Leadership and influence

Nice to have

  • Experience with ruggedized electronics packaging
  • Experience with automotive/aerospace interiors

What the JD emphasized

  • own the complete lifecycle
  • extreme "packaging" challenges
  • high-performance compute
  • high-density batteries
  • sensitive perception sensors
  • compact, dynamic, and thermally-constrained frame
  • visionary industrial design
  • high-fidelity, functional A-surfaces
  • complex surfacing
  • seamless transitions
  • structural elements
  • aesthetic covers
  • IP (Ingress Protection)
  • thermal venting requirements
  • high-performance robotic limbs
  • extreme dynamic loads
  • precision required for human-like manipulation
  • primary "chassis" (torso)
  • high-energy impact events
  • advanced materials
  • topology optimization
  • tight-space integration
  • multi-million cycle reliability
  • signal integrity
  • Design Verification Test (DVT)
  • environmental, vibration, and lifecycle testing
  • deep-dive design reviews
  • company-wide standards for high-performance robotic design
  • Drive Through Influence
  • Surfacing Expertise
  • Subject Matter Expertise
  • Packaging Mastery