Figure
Validation Engineer – Hand Subsystem
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Figure
Figure is an AI robotics company developing autonomous general‑purpose humanoid robots. The goal of the company is to ship humanoid robots with human level intelligence. Its robots are engineered to perform a variety of tasks in the home and commercial markets. Figure is based in San Jose, CA and requires 5 days/week in‑office collaboration.
We are seeking a Validation Engineer to lead the test development, validation, and performance characterization of Figure’s dexterous robotic hands. This role focuses on validating the entire hand subsystem, including electrical, firmware, mechanical, and actuation systems, from first article prototype through full robot integration, driving performance, durability, and reliability standards. You will design and execute validation workflows that stress the full range of motion, sensing, and control response across all joints. Success in this role requires deep technical understanding of mechatronic systems, strong cross‑disciplinary collaboration, and hands‑on experience building and testing high‑performance electromechanical assemblies.
Key Responsibilities
Develop and execute validation plans and automated test setups for hand subsystems, covering actuators, PCB/firmware, sensors, harnessing, and mechanics
Characterize torque, position, current, and thermal behavior across all degrees of freedom
Lead root‑cause analysis and drive design or process updates for reliability issues
Build Python‑based data logging and visualization tools to analyze performance and detect anomalies
Collaborate with integration, design, and controls teams to align validation coverage with system and robot‑level requirements
Requirements
5+ years of hands‑on validation experience with robotic, mechatronic, or actuation systems
Strong understanding of mechanics, kinematics, and actuator control principles
Proficiency in Python for automation, data acquisition, and analysis
Skilled with lab instrumentation (oscilloscopes, power analyzers, DAQs, thermal sensors)
Proven ability to debug hardware, firmware, and control‑loop issues
Strong understanding of statistical analysis (Cp/Cpk, DOE, variance studies) for component and system‑level characterization
Bachelor’s or Master’s in Mechanical, Electrical, Controls, or Mechatronics Engineering
Bonus Qualifications
Validation of robotic hands, grippers, or multi‑DOF actuation systems
Familiarity with CAN, SPI, I2C, and Ethernet communication protocols
Experience with control‑system tuning and system identification
Knowledge of CAD for fixture design and mechanical interface review
Comfort working in Linux and embedded development environments
Experience automating validation workflows or hardware‑in‑the‑loop setups
The US base salary range for this full‑time position is between $150,000 and $250,000 annually. The pay offered for this position may vary based on several individual factors, including job‑related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.
Seniority Level
Mid‑Senior level
Employment Type
Full‑time
Job Function
Quality Assurance
Industries: Machinery Manufacturing
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at
Figure
Figure is an AI robotics company developing autonomous general‑purpose humanoid robots. The goal of the company is to ship humanoid robots with human level intelligence. Its robots are engineered to perform a variety of tasks in the home and commercial markets. Figure is based in San Jose, CA and requires 5 days/week in‑office collaboration.
We are seeking a Validation Engineer to lead the test development, validation, and performance characterization of Figure’s dexterous robotic hands. This role focuses on validating the entire hand subsystem, including electrical, firmware, mechanical, and actuation systems, from first article prototype through full robot integration, driving performance, durability, and reliability standards. You will design and execute validation workflows that stress the full range of motion, sensing, and control response across all joints. Success in this role requires deep technical understanding of mechatronic systems, strong cross‑disciplinary collaboration, and hands‑on experience building and testing high‑performance electromechanical assemblies.
Key Responsibilities
Develop and execute validation plans and automated test setups for hand subsystems, covering actuators, PCB/firmware, sensors, harnessing, and mechanics
Characterize torque, position, current, and thermal behavior across all degrees of freedom
Lead root‑cause analysis and drive design or process updates for reliability issues
Build Python‑based data logging and visualization tools to analyze performance and detect anomalies
Collaborate with integration, design, and controls teams to align validation coverage with system and robot‑level requirements
Requirements
5+ years of hands‑on validation experience with robotic, mechatronic, or actuation systems
Strong understanding of mechanics, kinematics, and actuator control principles
Proficiency in Python for automation, data acquisition, and analysis
Skilled with lab instrumentation (oscilloscopes, power analyzers, DAQs, thermal sensors)
Proven ability to debug hardware, firmware, and control‑loop issues
Strong understanding of statistical analysis (Cp/Cpk, DOE, variance studies) for component and system‑level characterization
Bachelor’s or Master’s in Mechanical, Electrical, Controls, or Mechatronics Engineering
Bonus Qualifications
Validation of robotic hands, grippers, or multi‑DOF actuation systems
Familiarity with CAN, SPI, I2C, and Ethernet communication protocols
Experience with control‑system tuning and system identification
Knowledge of CAD for fixture design and mechanical interface review
Comfort working in Linux and embedded development environments
Experience automating validation workflows or hardware‑in‑the‑loop setups
The US base salary range for this full‑time position is between $150,000 and $250,000 annually. The pay offered for this position may vary based on several individual factors, including job‑related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.
Seniority Level
Mid‑Senior level
Employment Type
Full‑time
Job Function
Quality Assurance
Industries: Machinery Manufacturing
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